Showing posts with label Fighter. Show all posts
Showing posts with label Fighter. Show all posts

Tuesday, March 3, 2015

Kawasaki's first fighter

 Kawasaki Type 92


The Kawasaki Type 92 was the first production fighter to be built by the Kawasaki Kokuki Kogyo K.K" and entered production in 1932. Although Japanese in concept, the Type 92 made extensive use of advanced western techniques and, by contemporary standards, was an excellent warplane. The initial production model was the Type 92 Model 1 powered by a Kawasaki-built BMW VI engine of 500 h.p. This carried two 7.7-mm. machine guns and attained a maximum speed of 199 m.p.h., a range of 528 mls., and a service ceiling of 30,840 ft. An altitude of 9,840 ft. was attained in four minutes, and 16,400 ft. was reached in eight minutes. Span was 31 ft. 4 in., length was 23 ft. 3 ½ in., height was 10 ft. 4 1/3 in., and wing area was 258.334 sq. ft. Empty and loaded weights were 2,976 lb. and 3,748 lb. respectively. One hundred and eight Type 91 Model 1 fighters were built, these being followed by two hundred Type 92 Model 2 fighters which differed in having an engine uprated to- 600 h.p. A number of experiments were made with Type 92 fighters, although we have no record of one fitted with an enclosed cockpit canopy.


Variants

KDA-5
    Five prototypes.
Type 92 Model 1 Fighter
    Initial production variant with changed fin and rudder and faired headrest, 180 built.
Type 92 Model 2 Fighter
    Improved version with structural strengtheningand more powerful ( kW/750 hp) BMW VII engine, 200 built.

Mitsubishi A6M Zero: Terror of the Pacific

by Budd Davisson

Zero! Normally that’s a number signifying nothing, but to those who know history it indicates an able foe. A dainty, but lethal, dancer that cut a swath across the Pacific so bloody that for the first six months of World War Two it appeared as if nothing could stop it.

The stories that filtered back from the South Pacific initially painted a bleak picture: the Japanese had a secret weapon that could turn so sharp and hit so hard that our Wildcats and P-40’s were helpless against it.

The stories were so pervasive and the victories so lop sided that the Japanese themselves began to believe their airplane was invincible. But, they were wrong. Our pilots quickly learned how to fight the little devil (never turn with it, use slash and dash techniques). More important, the Zero was so successful that Japanese high command saw no reason to plan for a follow-on design. This was to be a fateful decision. Allied technology moved ever forward, eventually fielding designs that would rewrite the outcome of the war.

The secret to the Mitsubishi Reisen Type Zero A6M (code name Zeke) series of airplanes was a low power to weight ratio. However, when the design specifications were laid down in the late ‘30’s, there were few engines in Japan that put out much over 1000 hp, so Jiro Horikoshi, the Mitsubishi designer, had to meet the government’s goals with modest power. To get the speed and range demanded by the specifications required building an airframe that weighed 4,300 pounds empty, about the same weight as an AT-6 Texan, while a Hellcat weighed over twice that.

The Japanese high command was also mired down in the belief that aerial combat always came back down to the turning dogfight typical of WWI where a light wing loading was necessary to pull a tight circle. However, the very key to its success, its light weight, was also one of the keys to its undoing.

To build the airplane that light Horikoshi had to eliminate as much metal as possible. For instance, he made the fuselage formers an integral part of the wing spar and eliminated the center section. The one-piece wing made it impossible to produce sub components in widely scattered, easily protected cottage industry workshops.

The Zero was wildly labor intensive, which is why barely 10,000 Zero’s were built during its seven year life span. Nearly every American fighter topped the 10,000 mark in barely half the time.

The super light structure also meant the six .50 caliber machine guns on an American fighter could literally chew it to pieces. Designed strictly as an offensive machine, Japanese command saw no reason to mount self-sealing gas tanks or pilot armor. They couldn’t envision anyone getting in position to shoot at it so why protect the pilot? Enemy arrogance may well have been the single largest contributing factor to Allied victory.

By the end of the first year of war, we knew how to fight the Zero. By the second year, the rugged and tight turning Grumman F6F Hellcat and tank-like Corsair could take the fight to the enemy and whip it on its own playing field.

The Japanese eventually did put some competitive fighters into the fight, but it was too little, too late. In the end, the Zero and its peer group were overpowered by sheer numbers and advancing technology and, where it had once been the scourge of the skies, the Zero was reduced to a scrappy little foe just trying to survive.

Mitsubishi Navy Type 10 Carrier-borne Fighter.

Mitsubishi Navy Type 10 Carrier Fighter.

 Increased wing area was introduced on the second prototype of the 1MF1 fighter.

 First indigenous Japanese fighter built in quantity was the 1MF3, or Type 10-3


In February 1921 the Nagoya factory of Mitsubishi Nainenki Seizo KK (Mitsubishi Internal Combustion Engine Manufacturing Co Ltd), invited the former Sopwith engineer Herbert Smith, along with seven other former Sopwith engineers to assist the company in setting-up an aircraft design office to help design and manufacture military aircraft. The first effort of this new design team was the Navy Type 10 (the 10 signifying the 10th year of the Taisho dynasty, and the Japanese calendar year 2581, A D 1921) carrier-borne fighter for the Imperial Japanese Navy.

The first prototype aircraft, designated 1MF1 first appeared in October 1921, and was of wooden construction with fabric skinning, and was powered by a 300 hp Mitsubishi-built Hispano-Suiza eight-cylinder vee water-cooled engine. The aircraft was delivered to the Provisional Naval Aeronautics Institution at Kasumigaura the following month. After flight testing, the aircraft was accepted by the Navy in the following month as the first fighter of indigenous design. The second prototype, the 1MF1A, embodied a 1.21 sq m (13 sq ft) increase in wing area, the 1MF2 had two-bay wings and increased tail area. All had honeycomb type frontal radiators. These three models made-up the Type 10-1 series of aircraft

The next model to appear was the 1MF3, which discarded the frontal honeycomb radiator in favour of Lamblin-type radiators fitted beneath the centre fuselage. The last mentioned version entered series production for the Imperial Japanese Navy as the Type 10-2 Carrier Fighter. the 1MF3 was followed by the 1MF4, which differed from the former in having the cockpit moved forward, stagger reduced by forward shift of the lower wing and redesign of the vertical tail surfaces. Some of these models had a larger wing cut-out over the pilot's head for ease of egress and better visibility. The 1MF5A, also of the Type 10-2 series, had an even larger wing for use a carrier fighter trainer. This model had torpedo-shaped floats beneath the lower wing along with a jettisonable undercarriage for alighting on the water in an emergency.

In October 1921, the first flight of the Type 10 Fighter was made by William Jordan, a former Flt. Lieut. with the RNAS, who joined Mitsubishi with the Smith team. Jordan made nine take-offs from and landings on the flight deck of the IJNS Hosho (Flying Phoenix) with the new fighter in December 1923. With satisfactory tests of the aircraft completed, carrier operations were begun. The first operational flights of the Type 10 from the Hosho were made by Lieut. Shunichi Kira on 16 March, 1923. Until then Sopwith Pups and Gloster Sparrowhawks imported from Great Britain had served as the Navy's standard deck fighters; the Type 10 was the world's first fighter designed specifically for carrier operations. They served with operational units from 1923 to 1930. Some were later released for civilian use.

Technical Data
Manufacturer: Mitsubishi Nainenki Seizo KK (Mitsubishi Internal Combustion Engine Manufacturing Co Ltd).
Type: Single-engined Carrier-borne fighter.
Crew (1): Pilot in open cockpit.
Powerplant: One 300 hp Mitsubishi built-Hispano-Suiza eight-cylinder vee water-cooled engine, drivng a two-blade wooden propeller.
Armament: Two fixed forward-firing 7.7 mm (0.303 in) machine-guns.
Dimensions: Span (1MF1 prototype) 9.296 m (30 ft 0 in), (1MF3, Type 10-2) 8.50 m (27 ft 10 1/2 in); length (1MF1 prototype) 6.706 m (22 ft), (1MF3, Type 10-2) 6.90 m (22 ft 7 1/2 in); height (1MF1 prototype) 2.946 m (9 ft 8 in), (1MF3, Type 10-2) 3.10 m (10 ft 2 in); wing area 27.68 sq m (297.954 sq ft).
Weights: Empty (1MF1 prototype) 790 kg (1.741 lb), (1MF3, Type 10-2) 940 kg (2,073 lb); loaded (1MF1 prototype) 1,140 kg (2,513 lb), (1MF3, Type 10-2) 1,280 kg (2,821 lb); wing loading (1MF1 prototype) 41.2 kg/sq m (8.438 lb/sq ft); power loading (1MF1 prototype) 3.8 kg/hp (8.3 lb/hp), (1MF3. Type 10-2) 4.27 kg/hp (9.4 lb/hp).
Performance: Maximum speed (1MF1 prototype) 128 kt (147 mph), (1MF3, Type 10-2) 115 kt (132 mph); climb to 3,000 m (9,843 ft) in 10 min; service ceiling (1MF3, Type 10-2) 7,000 m (22,965 ft); endurance 2 1/2 hr.
Production: A total of 128 (including prototypes) were built by Mitsubishi Nainenki Seizo KK between October 1921 and December 1939.

The Ki-100


The Ki-100, which was a development of the Ki-61 "Tony". Due to difficulties in keeping up with engine production late in the war (resulting in large numbers of engineless airframes kept in storage), engineers at Kawasaki fitted a Mitsubishi air-cooled radial to a basic Ki-61. The results were outstanding and orders were immediately given to convert all the airframes in storage to the radial engines.

This new fighter was so good that purpose built production was then begun with a cut down rear fuselage and "bubble" canopy ... called Ki-100-I-Otsu, this was possibly the best Japanese fighter to reach service. 271 of the conversions were built as well as 118 of the Otsu model.

Toryu Redux

First prototype Ki 45.01

 Second prototype Ki 45.02

 Third prototype Ki 45.03

 Seventh prototype Ki 45.07


 Hucks starting truck


The Ki 45 was Japan’s first twin-engine fighter and its most successful night fighter. It also served capably in a variety of missions, including ground attack, antishipping, and kamikaze.

By 1937 the notion of long-range strategic fighters, capable of escorting bomber fleets to targets and back, was becoming prevalent. Germany began successfully experimenting with its Messerschmitt Bf 110, which prompted the Imperial Japanese Army to adopt similar craft. That year it invited several companies into a competition, and Kawasaki, after many trials and prototypes, originated the Ki 45 Toryu (Dragon Slayer). This was a handsome, low-wing design with a pointed nose and a long, tandem cabin housing pilot and gunner. Initial flights revealed that the craft was underpowered, so a succession of better engines ensued until the Nakajima Ha–25 was utilized. Other problems centered around the landing gear, which were weak and hand-cranked in flight. With better motors and powered undercarriage, the Ki 45 showed promise, so in 1941 it entered production. A total of 1,701 were ultimately built, and they received the code name Nick during World War II.

The first Ki 45s were deployed in Southeast Asia and, despite exceptional maneuverability for their size, were at a disadvantage fighting single-engine opponents. Given their speed and heavy armament, however, they proved ideal for ground attacks and antishipping strikes. Moreover, the Ki 45 was also an effective bomber interceptor and played havoc with American B-24 formations throughout Burma and Indochina. When the B-24s switched to night attacks, the Ki 45 was converted into a night fighter by mounting heavy cannons on top of the fuselage in slanted fashion. Considerable success was achieved, which gave rise to the Ki 45 KAIc, a dedicated night-fighter version, in 1944. These machines also performed useful work against high-flying B-29s over Japan toward the end of the war. More ominously, on May 27, 1944, it fell upon four Nicks to perform the first army kamikaze attacks against American warships off Biak.

A6M5 Type 0 Model 52


Considered the most effective variant, the Model 52 was developed to face the powerful American F6F Hellcat and F4U Corsair, superior mostly for engine power and armament. The variant was a modest update of the A6M3 Model 22, with non-folding wing tips and thicker wing skinning to permit faster diving speeds, plus an improved exhaust system. The latter used four ejector exhaust stacks, providing an increment of thrust, projecting along each side of the forward fuselage. The new exhaust system required modified "notched" cowl flaps and small rectangular plates which were riveted to the fuselage, just aft of the exhausts. Two smaller exhaust stacks exited via small cowling flaps immediately forward of and just below each of the wing leading edges. The improved roll-rate of the clipped-wing A6M3 was now built in.

Sub-variants included:
    "A6M5a Model 52a «Kou»," featuring Type 99-II cannon with belt feed of the Mk 4 instead of drum feed Mk 3 (100 rpg), permitting a bigger ammunition supply (125 rpg)
    "A6M5b Model 52b «Otsu»," with an armor glass windscreen, a fuel tank fire extinguisher and the 7.7 mm (.303 in) Type 97 gun (750 m/s muzzle velocity and 600 m/1,970 ft range) in the left forward fuselage was replaced by a 13.2 mm/.51 in Type 3 Browning-derived gun (790 m/s muzzle velocity and 900 m/2,950 ft range) with 240 rounds. The larger weapon required an enlarged cowling opening, creating a distinctive asymmetric appearance to the top of the cowling.
    "A6M5c Model 52c «Hei»" with thicker armored glass in the cabin's windshield (5.5 cm/2.2 in) and armor plate behind the pilot's seat. The wing skinning was further thickened in localized areas to allow for a further increase in dive speed. This version also had a modified armament fit of three 13.2 mm (.51 in) guns (one in the forward fuselage, and one in each wing with a rate of fire of 800 rpm), twin 20 mm Type 99-II guns and an additional fuel tank with a capacity of 367 L (97 US gal), often replaced by a 250 kg bomb.
The A6M5 had a maximum speed of 540 km/h (340 mph) and reached a height of 8,000 m (26,250 ft) in nine minutes, 57 seconds. Other variants were the night fighter A6M5d-S (modified for night combat, armed with one 20 mm Type 99 cannon, inclined back to the pilot's cockpit) and A6M5-K "Zero-Reisen"(model l22) tandem trainer version, also manufactured by Mitsubishi.

Kawanishi A8K - projected fighter carrier

The A8K was based on the J6K Jinpu land-based interceptor projected for the 20-Shi competition in competition with the Mitsubishi A8M Rikufu and the Nakajima A8N.

Engine: Nakajima Homare 21 with 1990 hp
Speed: 688 km/h
Maximum altitude: 13000 m
Armament: 4 gun with 30 mm

Mitsubishi A7M3(-J) variant of the Reppu

The A7M3 has cooling lips aside the engine, depicted in most drawings of the A7M3 version.

The proposed A7M3 variant of the Reppu and the land based sub-variant (the A7M3-J) were to be powered by the Mitsubishi MK9C eighteen cylinder radial engine that was rated at 2,250 hp on take-off, 1,800 hp at 5,000 metres and 1,660hp at 8,700 metres. Armament comprised of six wing-mounted Type 99 Model 2 20mm cannons (for the A7M3) and four wing-mounted 30mm Model 5 cannons and two rear-fuselage mounted obliquely firing 30mm Model 5 cannons. The dimensions of the A7M3 and the A7M3-J were supposed to be identical to their predecessors however the weights and also the wing loading of these models were different to those of their predecessors. For the A7M3 model, the weight when empty stood at 3,392 kg and when loaded it was 5,040 kg, while the wing loading was 163.3 kg per square metre. For the A7M3-J model, the weight when empty stood at 3,955 kg and when loaded it was 5,732 kg, while the wing loading was 183.1 kg per square metre.

The Combined Fleet website says carrier fighter but, oddly, other sources say that the A7M3 (Model 23) was based on the airframe of the A7M2 (Model 22) but without the wing-folding mechanism.
Either way, the A7M3 was powered by a Mitsubishi MK9C (Ha-43-31 with three-stage two-speed compressor - 2,250 hp T/O, 2,000 hp at 1,800 m, 1,800 hp at 5,000 m, and 1,660 hp at 8,700 m). Armament was increased to six 20 x 101 mm Type 99 Model 2, all wing-mounted.
By contrast, the land-based A7M3-J was to be longer (presumably ahead of the firewall), have greater wing area, and would be powered by a turbocharged engine (Mitsubishi Ha-43-11 Ru). Armament was to be six 30 x 122 mm Type 5 cannons (2 x oblique fuselage-mounted, 4 x wing-mounted).
Other sources say that the A7M3 and A7M3-J were both powered by Mitsubishi MK9Cs, differing only in the armament fitted.

LINK

LINK

Nakajima Ki 44 Tojo - Redux


Very soon after the design of the Ki-43 Hayabusa had been started by Nakajima, the company received instructions from the Imperial Japanese Army to initiate the design of a new interceptor fighter. In this case however, manoeuvrability was required to give precedence to overall speed and rate of climb, and the company's design team selected the 1,250 hp (932 kw) Nakajima Ha-141 as the powerplant for this new project. Of similar configuration to the Ki-43, the new Nakajima Ki-44 prototypes also incorporated the manoeuvring flaps that had been introduced on that aircraft, and carried an armament of two 7.7 mm (0.303 in) and two 12.7 mm (0.50 in) machine guns. First flown on August 1940, the Ki-44 was involved in a series of comparative trials against Kawasaki's Ki-60 prototype, based on the use of the Daimler-Benz DB 601 engine, and an imported Messerschmitt Bf 109E. The result of the evaluation and extensive service trials, showed the Ki-44 to be good enough to enter production, and it was ordered under the designation Army Type 2 Single seat Fighter Model 1A Shoki (demon), company designation Ki-44-Ia, which carried the same armament as the prototypes. A total of only 40 Ki-44-I aircraft was produced, including small numbers of the Ki-44-Ib armed with four 12.7 mm (0.50 in) machine guns, and the similar Ki-44-Ic with some minor refinements.

When introduced into service the high landing speeds and limited manoeuvrability of the Shoki made it unpopular with pilots, and very soon the Ki-44-II with a more powerful Nakajima Ha-109 engine was put into production. Only small numbers of the Ki-44-IIa similarly armed to the Ki-44-Ia, were built, the variant being followed by the major production Ki-44-IIb which apart from the different engine was identical to the Ki-44-Ic. The Ki-44-IIc introduced much heavier armament, comprising of four 20 mm cannon or alternatively two 12.7 mm (0.50 in) machine guns and two 40 mm cannon, and these proved to be very effective when deployed against Allied heavy bombers attacking Japan. However the increased power had done nothing to eliminate the reasons for its unpopularity with the pilots, and in fact, the higher wing loading of this version meant that it had some violent reactions to high speed manoeuvres; however, it later regained their respect because of its capability as an interceptor.

Final production version was the Ki-44-III with a 2,000 hp (1491 kw) Nakajima Ha-145 radial engine, an increase in wing area and enlarged vertical tail surfaces, but comparatively few were built before production ended in late 1944. They included the Ki-44-IIIa and the similar Ki-44-IIIb, armed with four 20 mm cannon, and two 20 mm and two 37 mm cannon respectively.

Nakajima had built a total of 1,225 Ki-44's of all versions, including prototypes, and these were allocated the Allied codename 'Tojo'. They were deployed primarily in Japan, but were used also to protect vital targets, as in Sumatra where they defended the oil fields at Palembang.

Kawasaki Ki-102 Redux

Derived from the Ki-96 twin-engine single-seat fighter, development of which was abandoned after three prototypes had been completed, the Kawasaki Ki-102 was intended as a two-seat attack fighter for primary deployment in the close-support role. Some assemblies of the Ki-96 prototypes were incorporated into the three Ki-102 prototypes, the first of which was completed in March 1944. A cantilever mid-wing monoplane with a conventional tail unit, retractable tailwheellanding gear and two Mitsubishi Ha-112-II radial engines, the Ki-102 accommodated its two-man crew in separate enclosed cockpits in tandem. Completion of the prototypes was followed by the construction of 20 pre-production aircraft and in October 1944 the type was ordered into production under the official designation Army Type 4 Assault Plane (Kawasaki designation Ki-102b) and production was to total 215 aircraft. With the Imperial Japanese Army still anxious to procure a twin-engine high-altitude fighter, Kawasaki modified six of the preproduction Ki-102s to serve as prototypes of such an interceptor under the designation Ki-102a. This differed from the attack fighter by having improved two-seat accommodation, a revised tail unit and  Mitsubishi Ha-112-II Ru engines with turbochargers.

Successful testing of this version in mid-1944 resulted in a high-priority production order, but problems with the turbocharged engine resulted in only about 15 being delivered to the army before the war ended. The design had also been revised to produce a night-fighter version under the designation Ki-102c, but there was only time to complete two examples. These had increased wing span, a lengthened fuselage, redesigned tail surfaces, primitive Al radar, and armament comprising two 30mm Ho-105 cannon in the underfuselage and two 20mm Ho-5 cannon mounted obliquely in the fuselage to fire forward and upward. Ki-102b aircraft, which were allocated the Allied codename 'Randy', saw comparatively little service, some being used in action over Okinawa, but the majority were held in reserve in Japan.

Versions
Ki-102
    prototypes, 3 built
Ki-102a (Type Kō)
    Externally similar to the 102b, but with turbosuperchargers that enabled the engine to maintain its rating at higher altitudes. 57 mm (2.24 in) cannon was swapped in favour of a 37 mm (1.46 in) cannon, and the 12.7 mm (.50 in) rear gun was deleted, 26 built.
Ki-102b (Type Otu)
    Ground-attack variant similar to prototypes, except with revised tail wheel, 207 built.
Ki-102c (Type Hei)
    Night Fighter version with lengthened fuselage and span. Radar under a Plexiglas dome, oblique-firing 20 mm cannons, and the 20 mm cannons in the belly replaced with 30 mm (1.18 in) cannons completed the package, 2 built.
Ki-108
    High-altitude fighter prototype with pressurised cabin, two conversions from Ki-102b aircraft using the structural improvements used on the 102c.

Mitsubishi Ki 67 Peggy Redux


Resembling as it did a G4M Betty which had been put on a slimming diet, the Japanese Army’s Ki-67 Hiryu (Flying Dragon) was nevertheless the best Japanese twin-engined bomber of the Pacific War. It compared favourably with Allied contemporaries, but despite its official classification by the JAAF as a heavy bomber, it was more in the class of the American B-26 Marauder. Had the Peggy, as the Allies called her, been available before the coming of Allied aerial superiority, the Pacific War’s history might well have been different. Sadly for the Japanese, the plane was forced to fly with young crews fresh out of training school in most cases, and even those veterans who were lucky enough to fly the Hiryu had to operate her under almost suicidal conditions against swarms of high-performing enemy fighters.

Late in 1940, even as Nakajima’s Ki-49 Donryu was undergoing test, the Army Air Staff was drafting specifications for her future successor. The Japanese Army was still preparing for an ultimate showdown with the Soviet Union, and thus wanted a tactical “heavy” bomber. Mitsubishi was therefore instructed to build three prototypes to meet the following requirements: (a) an operating altitude of from 13,125 feet to 22,965 feet; (b) a maximum speed of 342 mph; (c) a radius of action of 435 miles with a 1,102-lb. bombload; (d) a maximum bombload of eight 220-lb. bombs, three 551-lb. bombs, or a single 1,102-lb. bomb; (e) a crew of from six to ten men, depending on the mission profile; (f) a defensive armament comprising one 7.7mm machine gun in each of the nose, port, and starboard positions, and a 12.7mm gun in each of the dorsal and tail positions; and (g) two engines chosen from the following types-the Mitsubishi Ha-101, Nakajima Ha-103, or Mitsubishi Ha-104.

Chief Engineer Ozawa’s team designed a clean, slender mid-wing monoplane powered by a pair of 1,900-hp Ha-104s. As mentioned before, the prototype looked like a G4M Betty that had been dieting, but aside from that, Ozawa made a commendable departure from previous Japanese design methods. To ease production, the Ki-67 was designed to be built by sub-assemblies from the start, and crew armour and self-sealing fuel tanks were also used from the beginning. Attention to these details rather delayed the operational debut of the Hiryu, but they turned out to be strong assets when the plane had to be built, maintained, and flown under the harsh conditions of the late-war period.

The three prototypes were not completed until December 1942, February 1943, and March 1943, respectively, but Mitsubishi had already been instructed to build additional prototypes and service-test machines. All three prototypes were armed similarly-one 7.92mm machine gun in each of the nose, port, and starboard beam positions, and one 12.7mm gun in dorsal and tail turrets. The first prototype left the earth on its maiden flight on December 27, 1942. It displayed some longitudinal instability and control oversensitivity under certain flight conditions, but overall, the Mitsubishi team and the Army were pleased with the new creation. Although the maximum speed was eight miles per hour slower than the specification called for, the Ki-67 easily met or exceeded every other requirement. Once the service-test machines were modified to improve their handling characteristics, the type was discovered to be both easy to fly and amazingly manoeuvrable. Without a bombload of any kind, the Hiryu could easily loop and turn tightly, and its controls remained smooth and effective even in dives of up to 373 mph. In addition to increased fuel capacity from 565 gallons to 855 gallons-and the extra tanks were self-sealing, no less-the service test examples had a revised armament. The nose gun was changed to a 12.7mm weapon, the dorsal turret’s gun became a 20mm cannon, and the beam positions became “blisters” rather than flush-mounted windows.

In December 1942, it was suggested that the new aircraft would make an excellent land-based torpedo bomber, and in January of the following year, Mitsubishi was instructed to fit an underbelly torpedo rack on 100 production Hiryus. The 17th and 18th production Ki-67s were used to test the plane’s suitability for this demanding role, and Major Sakamoto of the Army’s Air Examination Department took the two planes and their Army crewmen to the Yokosuka Naval Air Station for trials. The Hiryu proved so successful that Mitsubishi was directed to install torpedo racks on all Ki-67s beginning with the 161st aircraft, and the Army agreed to release some Hiryus for Naval service. The JNAF renamed them the Yasukuni, after the shrine near Tokyo devoted to honoured war dead.

The Army, in fact, was so pleased with the new bomber, that additional equipment was being continually planned for it, and actual adoption of the Ki-67 for service was delayed because no one apparently could agree on a standardized configuration for it. Finally, the Army Air Staff was forced by the demands of the war to quit dithering. The design was frozen on December 2, 1943, after one last change was made-the beam guns were changed to 12.7mm weapons-and it was formally accepted as the Army Type 4 Heavy Bomber Model 1 Hiryu (Ki-67-I).

The foolish delay in finalizing the design meant that the first combat use of the Peggy didn’t occur until the series of air-sea battles off the Formosan coast in October 1944. The Army’s 7th and 98th Sentais and the Navy’s 762nd Kokutai (Air Group) scored some hits on the American cruisers Houston and Canberra, but failed to sink either vessel (they were towed out of the battle zone), and all three units suffered heavy losses. But from then on, torpedo-carrying Ki-67s of both services fought side-by-side for the remainder of the war, being particularly active in opposing the American landings on Okinawa. In its original bomber role, the Hiryu was used by the JAAF over China, and Hamamatsu-based Ki-67s, staging through Iwo Jima, made repeated attacks on B-29 bases in the Marianas until Iwo was invaded.

Production of the Ki-67-I received the highest-priority rating, but only 698 were built. The parent company, Mitsubishi, built 606 at three different factories; Kawasaki built 91; and the Tachikawa Army Air Arsenal built one. Also, Nippon International Air Industries performed the final assembly of 29 Mitsubishi-built examples. Only one more major change was made: the single 12.7mm machine gun in the tail turret was replaced by a twin-gun mount starting with the 451st example. It was also planned to increase the bombload to 2,756 pounds beginning with the 751st aircraft, but Allied bombings and the December 1944 earthquake, which especially affected engine production, seriously impaired production of this and every other Japanese aircraft.

By the end of the war, several special or experimental versions of the Ki-67 were planned, but only one was actually built-the Ki-109 heavy fighter, described separately. Others that reached the drawing board, and in some cases prototype form, included the following:

Variants
    Ki-67-I: Prototypes. Diverse models with various types of weapons. 19 produced.
    Ki-67-Ia "Hiryu" Army Heavy Bomber Type 4, Model 1: Main production model. The majority (420+) were modified in the factory as land-based torpedo bombers (after work-number 160). Produced by Mitsubishi: 587; by Kawasaki: 91; by bu 1° Army Arsenal of Tachikawa: 1.
    Ki-67-Ib: Late production model. Reinforced the tail gun turret (2 × 20 mm).
    Ki-67-I KAI: Experimental model equipped with Mitsubishi Ha-104 Ru engines. 3 produced.
    Ki-67-I AEW variant: Equipment the early warning radar "Taki 1 Model II". 1 produced.
    Ki-67 "To-Go": Army special attack aircraft type 4: Improved version of the Ki-67 I for kamikaze, unarmed, without turrets, and with two 800 kg (1,760 lb) bombs in belly compartment.
    Ki-67 "guided missile mother ship": Experimental type for carrying guided missiles.(Kawasaki Ki-147 I-Go Type 1-Ko,Mitsubishi Ki-148 I-Go Type 1-Otsu, I-Go Type 1-Hei, "Ke-Go" IR, "Ko-Go","Sa-Go") 1 produced.
    Ki-67 long-range bomber variant: Equipped with widened wings and without turrets. Only a project.
    Ki-67 ground attack variant: Version armed with three remote-control ground-firing 5 × 30° 20 mm cannons, 20 mm defensive cannon in the tail position, three 13.2 mm (.51 in) machine guns in lateral and upper positions, and more fuel capacity for long range. Specifically designed for land strikes against B-29 bases in the Marianas. Only a project.
    Ki-67-II: Prototypes. Modified version of the Ki-67-I, with two Mitsubishi Ha-214 engines of 1,603 kW (2,150 hp) each. 2 produced.
    Ki-67 glider tug: A standard Ki67-I was used to tow the "Manazuru" (Crane) transport glider in tests.
    "Yasukuni": Naval torpedo bomber version of the Ki-67-I. Created from Ki-67-Is transferred from the IJAAF.
    Ki-69: Heavily-armed escort fighter model. Only a project.
    Ki-97: Transport model. Only a project.
    Ki-109: Night fighter prototypes. Ki-67-I modified for night fighting for operating in pairs, one with a radar/reflector (similar to the Douglas Havoc II "Turbinlite") for radar transmission and detection (the Ki-109a) and the other armed with heavy cannon to destroy the objective (Ki-109b). Only a project.
    Ki-109: Day Fighter prototypes. Ki-67-I modified for daylight fighting. One fixed 75 mm Type 88 Heavy Cannon in the nose and one mobile 12.7 mm (0.5 in) Ho-103 Type 1 machine gun in the tail. Equipped with Mitsubishi Ha-104 engines of 1,417 kW (1,900 hp) each or turbochargers Ha-104 Ru with 1,417 kW (1,900 hp) each. 2 produced.
    Ki-109 Army Heavy Fighter Interceptor: First non-prototype model of series. Lacking gun positions in upper and side positions and without bomb-bay compartments. Had a revised version of tail gun. 22 constructed by Mitsubishi.
    Ki-112: Wooden bomber model. Only a project.
    Ki-167 "Sakura-dan": Special attack version equipped with one thermite bomb of 2,900 kg (6,400 lb) in the fuselage behind the crew cabin. The shape of the bomb conducted the blast forward, projecting a jet capable of reaching nearly a mile with a maximum blast radius of 300 m (980 ft). The bomb was designed to breach emplacements as well as to destroy massed formations of armor. 2 produced.
    Q2M1 "Taiyo": A Navy variant based on the Ki-67-I, specifically designed for antisubmarine warfare. Equipped with radar units (Type3 Model 1 MAD (KMX), Type 3 Ku-6 Model 4 Radar, and ESM Antenna equipment). Had two Mitsubishi Kasei 25 Otsu engines of 1,380 kW (1,850 hp) each with six-blade propellers. Carried torpedoes or depth charges. Only a project.

Mitsubishi Ki-67 Hiryu (Peggy) Technical Data

Type:
Twin-engined “heavy” bomber, of all metal construction.

Accommodation:
Normal crew of six to eight in enclosed cabin; reduced to three for suicide attacks.

Powerplants:
(All Ki-67s except for experimental machines) Two Mitsubishi Ha-104 eighteen-cylinder air-cooled radial engines, rated at 1,900 hp for take-off, 1,810 hp at 7,220 ft., and 1,610 hp at 20,015 ft.

(16th and 17th Ki-67s) Two Mitsubishi Ha-214 eighteen-cylinder air-cooled radials, rated at 2,400 hp for take-off, 2,130 hp at 5,905 ft., and 1,930 hp at 27,230 ft.

(21st and 22nd Ki-67s) Two Mitsubishi Ha-104 Ru eighteen-cylinder turbo supercharged air-cooled radials, rated at 1,900 hp for take-off and 1,810 hp at 24,150 ft.

Armament:
(1st, 2nd, and 3rd prototypes) One flexible 7.92mm machine gun in each of the nose, port beam, and starboard beam positions, and one 12.7mm machine gun in each of the dorsal and tail turrets.

(4th-19th Ki-67s) One flexible 7.92mm machine gun in each of the beam positions, one flexible12.7mm machine gun in the nose and in the tail turret, and one 20mm cannon in the dorsal turret.

(20th-450th Ki-67s) One flexible 12.7mm machine gun in each of the nose, port and starboard beam, and tail positions, and one 20mm cannon in the dorsal turret.

(451st and subsequent Ki-67s) One flexible 12.7mm machine gun in each of the nose and beam positions, twin flexible 12.7mm machine guns in the tail turret, and one 20mm cannon in the dorsal turret.

Bombload:
Normal-1,102 lbs.
Maximum--1,764 lbs.
Torpedo attack-one 1,764-lb. or one 2,359-lb. torpedo.
Suicide attack-up to 6,393 lbs.

Dimensions, weights, and performance:

Ki-67-I:
Wingspan, 73 ft. 9 13/16 in.;
length, 61 ft. 4 7/32 in.;
height, 25 ft. 3 5/32 in.;
wing area, 708.801 sq. ft.;
empty weight, 19,068 lb.;
loaded weight, 30,347 lb.;
maximum weight, N/A;
wing loading, 42.8 lb./sq. ft.;
power loading, 8 lb./hp;
maximum speed, 334 mph at 19,980 ft.;
cruising speed, 249 mph at 26,245 ft.;
climb to 19,685 ft. in 14 min. 30 sec.;
service ceiling, 31,070 ft.;
normal range, 1,740 miles; maximum range, 2,360 miles.

Nakajima Ki-87

Name: Ki-87
Manufacturer: Nakajima (Japan)

Background

The Nakajima Ki-87 was a Japanese high-altitude fighter-interceptor of World War II. It was a single, exhaust-driven turbo-supercharged engined, low-wing monoplane with a conventional undercarriage.
The Ki-87 was developed in response to American B-29 Superfortress raids on the Home Islands. It followed up on earlier research by Nakajima and the Technical Division of Imperial Army Headquarters into boosting a large radial engine with an exhaust-driven turbo-supercharger, which had begun in 1942, well before the B-29 raids began. The efforts of the Technical Division of Imperial Army Headquarters eventually culminated into the Tachikawa Ki-94-I, while the Ki-87 was developed as a fall-back project, using less stringent requirements. Nakajima started in July 1943 with the construction of three prototypes, to be completed between November 1944 and January 1945, and seven pre-production aircraft, to be delivered by April 1945. The Technical Division of Imperial Army Headquarters made itself felt during the development of the Ki-87 prototype when they insisted upon placing the turbo-supercharger in the rear-fuselage, and from the sixth prototype the Nakajima fighter was to have that arrangement. The Ki-87 had a Curtiss P-40 Warhawk-like undercarriage, as space in the wing was needed for ammunition for the wing-mounted cannon. The 90° rearwards retracting undercarriage was to provide that needed space.
Construction was delayed due to problems with the electrical undercarriage and the turbo-supercharger, and the first prototype was not completed until February 1945; it first flew in April, but only five test flights were completed, all with the undercarriage in the extended position.
A further variant, the Ki-87-II, powered by a 3,000 hp Nakajima Ha.217 (Ha.46) engine and with the turbo-supercharger in the same position as the P-47 Thunderbolt, never went further than the drawing board.

Dimensions

Wing Span: 44.03 ft. / 13.42 M
Length: 38.78 ft. / 11.82 M
Height: 14.76 ft. / 4.50 M
Wing Area: 279.86 Sq ft. / 26.00 Sq M
Aspect Ratio: ---
Weight Empty: 9,672 lb. / 4,387 Kg
Weight Takeoff: 12,416 lb. / 5,632 Kg
Max. Takeoff Weight: 13,448 lb. / 6,100 Kg

Power & Performance

Powerplant(s): 1x Nakajima Ha-44 18 cylinder radial engine
Engine Power: 1800 kilowatts / engine
Fuel Fraction: ---

Max. Thrust/Weight Loading: ---
Combat Thrust/Weight Loading: ---

Maximum Wing Loading: 48.05 lb. per Sq. ft.; 234.62 Kg / Sq. M
Takeoff weight Wing Loading: 44.37 lb. per Sq. ft.; 216.62 Kg / Sq. M

VMax High Altitude / VMax Low Altitude: -- / --
Max Speed: 378 knots, 434.7 mph, 700.056 km/h
Operational Ceiling: 42,175 ft. / 12,855 M

Armament

2 x 20mm cannon, 2 x 30mm cannon, 1 x 551 lb bomb

Users

Japan

Nakajima Ki 84 Hayate 'Frank'

Ki-84-I
The Nakajima Ki-84 Hayate (Gale) was numerically the most important fighter serving with the Japanese Army Air Force (JAAF) during the last year of the Pacific War, and was probably the best Japanese fighter aircraft to see large-scale operation during this period of the war. The Hayate was fully the equal of even the most advanced Allied fighters which opposed it, and was often their superior in many important respects. It was well armed and armoured, was fast, and was very manoeuvrable. Although it was generally outnumbered by Allied fighters which opposed it, it nevertheless gave a good account of itself in battles over the Philippines, over Okinawa, and over the Japanese home islands. So desperate was the need for Ki-84s in the last months of the war, Japan was building underground factories with a planned rate of 200 aircraft per month.

The history of the Ki-84 can be traced back to just after the beginning of the Pacific War between Japan and the United States. Just three weeks after Pearl Harbour, the Koku Hombu instructed the Nakajima Hikoki K.K. (Nakajima Aeroplane Co Ltd) to begin the design of a replacement for the Ki-43 Hayabusa, which itself had just entered service with the JAAF. The JAAF wanted a general-purpose long-range fighter that would be superior to those that were then under development in the USA and Britain. The specification called for an aircraft with the manoeuvrability of the Ki-43 Hayabusa coupled with the speed and climb of the Ki-44 Shoki. In addition, the aircraft was to be provided with armour protection for the pilot and was to be fitted with self-sealing fuel tanks.
The aircraft was to have a maximum speed of 398-423 mph, and was to be capable of operating at combat rating for 1.5 hours at distances as far as 250 miles from its base. The wing loading was not to exceed 35 pounds per square foot. The manoeuvrability requirements were relaxed somewhat as compared to those of the Ki-43, but were to exceed those of the Ki-44 which had been designed strictly as a bomber destroyer. The engine was to be the Nakajima Ha-45 eighteen-cylinder double-row air-cooled radial. The armament was to be two 12.7 mm Type 1 (Ho-103) machine guns and two 20-mm Ho-5 cannon.

T. Koyama was named as the project engineer, and work on the Ki-84 began in early 1942 at Nakajima's Ota plant in Gumma Prefecture. The first prototype was ready in March of 1943. The aircraft was a fairly conventional low-wing monoplane that bore an obvious family resemblance to the Ki-43 and Ki-44 fighters that preceded it. The 1800-hp Nakajima Ha-45 engine that powered the Ki-84 was a JAAF version of the Navy's NK9A Homare. Experimental models of the Homare engine had been test run as early as May of 1942, but the development of the Homare was long and difficult, and few Homares were available until August of 1943, and experimental production did not begin until late 1943 at Najajima's Musashi engine factory.

A big exhaust collector pipe was mounted on each side of the engine behind the cowling gills. The all-metal airframe followed the common Japanese practice of building the wing integral with the central fuselage in order to save the weight of heavy attachment points. The fuselage was of oval section, with flush-riveted stressed skin. The two-spar wing carried metal-framed, fabric-covered ailerons and was provided with hydraulically-operated Fowler flaps. A total of 220 US gallons of fuel was carried in tanks aft of the cockpit and in the wings. The engine mounting and cowling incorporated the oil cooler and intakes for the carburettor and supercharger. The three-part canopy had an aft-sliding central section. All three undercarriage members were hydraulically retractable. The main gear retracted inward and horizontally into the wings and was fully covered with flush-fitting doors. The non-steerable tailwheel retracted into the fuselage and was covered by a flush-fitting door. The rudder was of metal construction but was covered with fabric.

The tailplane was set well ahead of the vertical surfaces. Two 12.7 mm Ho-103 machine guns with 250 rpg were mounted in the upper cowling, and a 20-mm Ho-5 cannon with 150 rounds was mounted in each wing outboard of the main undercarriage leg. The pilot was protected by a 70-mm armoured windshield and by 13-mm armour plate in the rear and floor of the cockpit. Provision was made under the fuselage centreline for a single drop tank.

The Ki-84 prototype flew for the first time from Ojima Airfield in April of 1943. The second prototype flew in June. The first prototypes were assigned to the JAAF for trials at the Tachikawa Air Arsenal under the direction of combat-experienced pilots, and the modifications recommended were incorporated into the fourth prototype. The fourth prototype had a maximum speed of 394 mph at 21,800 feet, and could achieve a speed of 496 mph in a dive.

The test program went well, and a service trials batch of 83 machines were ordered in August of 1943. These were built between August of 1943 and March of 1944. The pre-production machines differed from each other in minor details, but fuselage changes were incorporated to ease production, and the area of the fin and rudder was increased to improve control on takeoff.

A few service trials machines were handed over to the Tachikawa Army Air Arsenal. JAAF pilots commented favourably on the machine, although its maximum speed was below the requirement. The aircraft had a maximum speed was 388 mph, could climb to 16,405 feet in 6 minutes 26 seconds, and had a service ceiling of 40,680. This made the Ki-84 the best-performing Japanese fighter aircraft then available for immediate production.

A few service-test Ki-84s were fitted experimentally with a ski undercarriage. The legs retracted into the normal wheel wells, with the skis lying flat underneath the wing roots. These aircraft were tested in Hokkaido during the winter of 1943-44. The ski installation increased the maximum weight, and thus had an adverse effect on maneuverability and reduced the maximum speed by 8 mph. Consequently, skis were not incorporated on production machines.

The Ha-45 engine entered full-scale production in April of 1944 as the Type 4. Production of the Type 4 engine was hampered by many setbacks, most of which were due to inadequate preparation, with shortages of jigs, tools, and skilled personnel being significant problems.

Service tests of the Ki-84 began in Japan under operational conditions in October 1943. The type was accepted for production as the Army Type 4 Fighter Model 1A Hayate (Gale) or Ki-84-Ia.
A second pre-production batch of 42 Ki-84s was started in April of 1944. These were built between March and June of 1944. These were built in parallel with the first production aircraft, which began to roll off the production lines in April of 1944. Both types were fitted with individual exhaust stacks, which provided some thrust augmentation, and could increase the maximum speed by some 9-10 mph.

Each of the two wing racks could carry a 44 Imp gall drop tank or a 551-pound bomb. Some of the aircraft of the second service test batch were tested with wings of increased span and area to serve as development aircraft for the projected Ki-84N and Ki-84P projects.

Early production machines had the 11 and 12 models of the Ha-45 engine, with takeoff ratings of 1800 hp and 1825 hp respectively. Later models had the model 21 version of this engine, delivering 1990 hp for takeoff. These engines were rather unreliable and were subject to numerous quirks.

Sudden loss of fuel pressure was a constant source of difficulty, and this was addressed by the adoption of the Army Type 4 radial Model 23 ([Ha-45]23) for even later production machines. This Model 23 engine was a modification of the Model 21 engine fitted with a low-pressure fuel injection system.

The Ki-84-Ia was followed on the production line by the Ki-84-Ib Army Type 4 Fighter Model Ib. In the Ki-84-Ib, the fuselage-mounted machine guns were replaced by a pair of 20-mm Ho-5 cannon, giving the aircraft a total armament of four 20-mm cannon.

The Ki-84-Ic was a specialized bomber destroyer variant armed with two 20-mm Ho-5 cannon in the fuselage and two wing-mounted 30-mm Ho-105 cannon. Only a small number of this version were built.

In March of 1944, the experimental squadron that was conducting the service test trials of the Ki-84 was disbanded, and its personnel transferred to the 22nd Sentai. This unit was re-equipped with production Hayates and transferred to China where it entered combat against the USAAF's Fourteenth Air Force in August of 1944. The Ki-84-Ia quickly established itself as a formidable foe that compared favourably with the best Allied fighters then available. The Hayate had an excellent performance and climb rate, and had none of the shortcomings of the earlier generation of Japanese fighters, being well armed and possessing adequate armour protection for the pilot. In addition to the penetration and interception roles, the aircraft was used as a fighter-bomber and dive bomber. The 22nd Sentai was later moved to the Philippines, where it was joined by the 1st, 11th, 21st, 51st, 52nd, 55th, 200th, and 246th Sentais.

Following encounters with the Ki-84-Ia, the Allied Technical Air Intelligence Unit (ATAIU), commanded by Colonel Frank McCoy, assigned the code name FRANK to this fighter. This code name had previously been assigned to a fictitious aircraft known as the "Mitsubishi T.K.4", which was erroneously believed to be under development in Japan. When the T.K.4 failed to materialize, Colonel McCoy decided to name the new Ki-84-Ia after himself.

The FRANK later appeared in the battle for Okinawa, serving with the 101st, 102nd, and 103rd Hiko Sentais. Two new Sentais, the 111th and the 200th were activated with Hayates. The Hayates were used for long-range penetration missions, fighter sweeps, strafing, interception and dive-bombing missions with considerable success. The Ki-84 proved faster than the P-51D Mustang and the P-47D Thunderbolt at all but the highest altitudes. At medium altitudes, the FRANK was so fast that it was essentially immune from interception. The climb rate was exceptionally good, 16,400 feet being attained in 5 minutes 54 seconds, which was superior to that of any opposing Allied fighters.

The Ki-84 had a close resemblance to the Ki-43 Hayabusa, which caused many Allied fighter pilots to confuse it with the earlier Nakajima fighter during the stress of combat. Many an American pilot, having sighted a Japanese fighter he believed to be a Ki-43 and salivating at the prospect of a quick and easy kill, suddenly found he had latched onto a different bird entirely. The Ki-84 even did well at the fighter-bomber role. On April 15, 1945, a flight of eleven Hayates from the 100th Sentai made a surprise air attack on American airfields on Okinawa, damaging or destroying a substantial number of aircraft on the ground. However, eight of the Hayates were destroyed in the attack, and one made a forced landing on a small islet near Kyushu.

Although the Ki-84 was intended for the offensive, penetration role, Hayates were assigned to the defensive role over the Japanese home islands during the last few weeks of the war, operating with the 10th Division responsible for the defence of Tokyo. The units assigned to home defence included the 47th, the 73rd, the 111th, and the 112th and the 246th Sentais. Since the Hayate was regarded as being essential for the interception role, relatively few were expended in Kamikaze attacks.

The Hayate was simple to fly, and pilots with only minimal training could fly the type with relatively little difficulty. However, the aircraft did have have certain poor control characteristics to which a veteran pilot could easily become become accustomed but which could be deadly in the hands of an inexperienced pilot. Taxiing and ground handling were generally rather poor. On takeoff, once the tail came up, continual pressure had to be maintained on the starboard rudder pedal to counteract a tendency to swing to port caused by the high engine torque. In flight, the controls were sluggish in comparison with those of the Hayabusa, and the elevators tended to be heavy at all speeds. The ailerons were excellent up to about 300 mph, after which they became rather heavy. The rudder was mushy at low speeds for angles near neutral.

However, most of the defects with the Ki-84 can be laid to poor quality control during manufacture, especially during the last few months of the Pacific war. When the Ki-84 was being designed, emphasis had been placed on ease of production, and the manufacture of the Ki-84 required less than half the tooling needed by the Ki-43 and Ki-44 which preceded it. However, many experienced workers had been drafted into the military, and this loss, acting in concert with the accelerated rates of production ordered by the Japanese Ministry of Munitions, resulted in a steady drop in quality standards of both the engine and the airframe of the Hayate as the war progressed.

The performance and reliability of production Hayates was seldom as good as that of the service test machines. As the quality of the workmanship steadily deteriorated, the performance of the Hayate steadily declined as production progressed, with later machines having successively poor and poorer performance and mechanical reliability. The hydraulic and fuel pressure systems were both poorly designed and were subject to frequent failures. The wheel brakes were notoriously unreliable, and the metal of the landing gear struts was often inadequately hardened during manufacture, which made them likely to snap at any time. This caused many Hayates to be written off in landing accidents, without ever having been damaged in combat.

Engine shortages and delays were a constant problem for the Hayate. Although the Ha-45 engine had been plagued with production difficulties all throughout its life, most of the delays in deliveries were caused by frequent visits of 20th Air Force B-29s to the Musashi engine plant during the last year of the war. This plant was hit by B-29 raids on no less than twelve occasions between November 24, 1944 and August 8, 1945. Production was able to continue at the Musashi plant until April 20, 1945, when it was finally put out of business for good and all production came to a standstill.

Operations were transferred to an underground plant at Asakawa. and to a new plant at Hamamatsu, and a trickle of engines still continued to flow, but the supply of engines never reached the previous peak. Because of the production delays and components shortages, the quality of the Ha-45 engines delivered steadily deteriorated as the months passed, and later engines were considerably less powerful and less reliable than those initially delivered. By June of 1945, the lowering of manufacturing standards had cut the climb rate of the fighter so severely that the aircraft was virtually useless at altitudes over 30,000 feet.

A total of 1670 Hayates were built during 1944, making the aircraft numerically the most important Japanese fighter in production at that time. However, this was still far below JAAF requirements. Orders for 1944 alone totalled 2525 machines, almost a thousand more than were actually delivered. This shortfall was partly a result of the failure of subcontractors to deliver components on schedule, but became increasingly caused by Allied air attacks on Japanese industry as 1944 neared its end. On February 19. 1945, Nakajima's Ota plant was attacked by 84 B-29s, which seriously damaged the plant and destroyed some 74 Hayates on the assembly line. Further attacks on the plant by US carrier-based aircraft further damaged the plant to such an extent that an extensive dispersal program had to be carried out, with an accompanied sharp drop in production.

In May of 1944, Nakajima opened up a second Hayate manufacturing line at its Utsonomiya plant. This facility had built 727 fighters by July of 1945, less than half the number scheduled during this period. Construction of the Hayate was also assigned to the Mansyu Hikoki Seizo K.K. (Manchurian Aircraft Manufacturing Company), which started production in the spring of 1945 at its Harbin plant in Manchuria. However, only a hundred or so Hayates were built at Harbin before the end of the war brought production to an abrupt end. Total production of the Hayate by all factories was 3514, including prototypes and service trials aircraft.

In 1946, a captured late-production Hayate was restored and tested at the Middletown Air Depot in Pennsylvania. At a weight of 7490 pounds, the aircraft achieved a maximum speed of 427 mph at 20,000 feet, using war emergency power. This speed exceeded that of the P-51D Mustand and the P-47D at that altitude by 2 mph and 22 mph respectively. These figures were achieved with a superbly maintained and restored aircraft and with highly-refined aviation gasoline, and were not typical of Japanese-operated aircraft during the later stages of the war.

Specification of Nakajima Ki-84-1a:
Engine: One Army Type 4 eighteen-cylinder air-cooled radial (Nakajima Ha-45). The following engine models were used: [Ha-45]11 rated at 1800 hp for takeoff and 1650 hp at 6560 feet. [Ha-45]12 rated at 1825 hp for takeoff and 1670 hp at 7875 feet. [Ha-45]21 rated at 1990 hp for takeoff and 1850 hp at 5740 feet. [Ha-45]23 rated at 1900 hp for takeoff and 1670 hp at 4725 feet.
Performance (early production): Maximum speed 392 mph at 20,080 feet, cruising speed 277 mph. An altitude of 16,405 feet could be reached in 5 minutes 54 seconds. An altitude of 26,240 feet could be attained in 11 minutes 40 seconds. Service ceiling 34,450 feet. Normal range 1053 miles, maximum range 1347 miles.
Weights: 5864 pounds empty, 7955 pounds loaded, 8576 pounds maximum. Dimensions: Wingspan 36 feet 10 7/16 inches, length 32 feet 6 9/16 inches, height 11 feet 1 1/4 inches, wing area 226.04 square feet. Armament: Two fuselage mounted 12.7-mm Type 1 (Ho-103) machine guns and two wing-mounted 20-mm Ho-5 cannon (Ki-84-Ia). Two fuselage-mounted 20-mm Ho-5 cannon and two wing-mounted 20-mm Ho-5 cannon (Ki-84-Ib). Two fuselage-mounted 20-mm Ho-5 cannon and two wing-mounted 30-mm Ho-105 cannon (Ki-84-Ic). External stores included two 551-pound bombs or two 44-Imp gall drop tanks.

Ki-84-II Hayate Kai
The Ki-84-II or Hayate Kai was an attempt to conserve valuable supplies of aluminum by employing large numbers of wooden components in the manufacture of the Hayate. The rear fuselage, certain fittings, and modified wingtips were made of wood, with all the wood work being carried out at a shadow factory at Tanuma. The engine was the Nakajama [Ha-45] 21, 25 or 23 with low-pressure fuel injection. Armament consisted of four 20-mm or two 20-mm and two 30-mm cannon. The designation Ki-84-II was actually a Nakajima designation, the aircraft in JAAF service retaining the Ki-84-Ib or -Ic designation, depending on armament.

Specification of Ki-84-II:
Engine: One Army Type 4 eighteen-cylinder air-cooled radial (Nakajima Ha-45). The following engine models were used: [Ha-45]21 rated at 1990 hp for takeoff and 1850 hp at 5740 feet. [Ha-45]23 rated at 1900 hp for takeoff and 1670 hp at 4725 feet. [Ha-45]25 rated at 2000 hp for takeoff and 1700 hp at 19,685 feet.
Performance: Maximum speed 416 mph
Weights: 8495 pounds loaded.
Dimensions: Wingspan 36 feet 10 7/16 inches, length 32 feet 6 9/16 inches, height 11 feet 1 1/4 inches, wing area 226.04 square feet. Armament: Two fuselage-mounted 20-mm Ho-5 cannon and two wing-mounted 20-mm Ho-5 cannon. Alternatively, the two wing-mounted 20-mm Ho-5 cannon could be replaced by two 30-mm Ho-105 cannon. External stores included two 551-pound bombs or two 44-Imp gall drop tanks.

Ki-84-III
The Ki-84-III was a high-altitude version of the Hayate powered by a Ha-45 Ru engine with a turbosupercharger in the fuselage belly. This version was still on the drawing board when the war ended.

Ki-106
The Ki-106 was an all-wood version of the Ki-84 Hayate designed by Tachikawa Hikoki K.K., with the goal of achieving further savings of aluminium. Three airframes were built for Tachikawa by Ohji Koku K.K. (Prince Aircraft Co, Ltd) at Ebetsu, in Ishikari Prefecture on Hokkaido. The use of wood made it possible to employ lots of unskilled labour in the manufacture of the airframe. The Ki-106 was powered by a 1990 hp Nakajima [Ha-45] 21. The Ki-106 retained the external configuration of the Hayate, but the vertical surfaces had increased area and the skin was of plywood with a thick lacquer coating. The armament was four 20-mm cannon on the first Ki-106, but was reduced to only two cannon on the second and third prototypes to save weight.

Flight tests started in July of 1945. The use of wood rather than metal had raised the normal loaded weight to 8958 pounds (an increase of some 600 pounds), and this had an adverse effect on climb rate and manoeuvrability. An altitude of 26,240 feet could be attained in 13 minutes 5 seconds, this being nearly a minute and a half greater than that for the standard Hayate. However, because of the aircraft's exceptionally fine finish, the maximum speed of 384 mph at 24,000 feet compared closely to that of the standard metal Hayate.

During trials with the first prototype, the plywood skinning failed during a test flight and began to rip away. The aircraft managed to land safely, and steps were taken in order to anchor the skin more firmly to the airframe. Although the flight tests were quite satisfactory, the end of the war brought the Ki-106 project to an abrupt halt.

Specification of Nakajima Ki-106:
Engine: One Army Type 4 eighteen-cylinder air-cooled radial (Nakajima Ha-45/21) rated at 1990 hp for takeoff and 1850 hp at 5740 feet. Performance: Maximum speed 385 mph at 21,080 feet. Cruising speed 310 mph at 20,100 feet. An altitude of 16,405 feet could be reached in 5 minutes. Service ceiling 36,090 feet. Normal range 497 miles plus 1.5 hours of combat.
Weights: 6499 pounds empty, 8598 pounds loaded.
Dimensions: Wingspan 36 feet 10 7/16 inches, length 32 feet 7 3/4 inches, height 11 feet 9 5/16inches, wing area 226.04 square feet. Armament: Two fuselage-mounted 20-mm Ho-5 cannon and two wing-mounted 20-mm Ho-5 cannon. External stores included two 551-pound bombs or two 44-Imp gall drop tanks.

Ki-113
The Ki-113 was a version of the Ki-84-Ib partially built of steel. It was an attempt to conserve light alloys by using steel in place of aluminium in as many sub-assemblies as possible. It employed steel sheet skinning and the cockpit section, ribs, and bulkheads were made of carbon steel. The aircraft retained the Ha-45 Model 21 engine and had an armament of four 20-mm cannon.

The Ki-113 was designed in the autumn of 1944, and a single example was completed in early 1945. However, it never flew since it was decidedly overweight.
Specification of Nakajima Ki-113:
Engine: One Army Type 4 eighteen-cylinder air-cooled radial (Nakajima Ha-45/21) rated at 1990 hp for takeoff and 1850 hp at 5740 feet. Performance (estimated): Maximum speed 385 mph at 21,325 feet. An altitude of 16,405 feet could be reached in 6 minutes 54 seconds. 33,800 feet service ceiling. Normal range 621 miles plus 1.5 hours combat.
Weights: 6349 pounds empty, 8708 pounds loaded.
Dimensions: 36 feet 10 7/16 inches, length 32 feet 6 9/16 inches, height 11 feet 1 1/4 inches, wing area 226.04 square feet. Armament: Two fuselage-mounted 20-mm Ho-5 cannon and two wing-mounted 20-mm Ho-5 cannon (Ki-84-Ib). External stores included two 551-pound bombs or two 44-Imp gall drop tanks.

Ki-116
No effort on the part of Najajima seemed to succeed in turning the Ha-45 engine into a truly reliable powerplant, so the JAAF began to look for other sources of engines for the Hayate. In view of the successful adaptation of the Kawasaki Ki-61-II Hien airframe to take the Mitsubishi Ha-112-II air-cooled radial engine, the JAAF thought that the Ha-45 engine problems might be solved by replacing this engine with the Mitsubishi Ha-112 in the Ki-84.

The designation Ki-116 was applied to the fourth Mansyu-built Ki-84-I adapted to take a 1500-hp Mitsubishi [Ha-33] 62 (Ha-112-II) driving a three-bladed propeller. This engine was borrowed from a Ki-46-III twin-engined reconnaissance aircraft. This engine was substantially lighter than the HA-45 that it replaced, and required that the engine mounts be lengthened in order to maintain the centre of gravity. In order to compensate for the additional length, the tail surfaces had to be enlarged. The Ki-116 weighted only 4850 pounds empty, a full 1000 pounds lighter than the standard Ki-84-Ia. The Ki-116 showed considerable promise and had a performance approximating that of the Ki-100. Test pilots were extremely enthusiastic about its capabilities, but the Japanese surrender brought an end to further development.

Specification of Ki-116:
Engine: One Army Type 4 fourteen-cylinder air-cooled radial (Mitsubishi Ha-33) rated at 1500 for take off, 1350 hp at 6560 feet and 1250 hp at 19,030 feet.
Performance: Maximum speed 385 mph.
Weights: 4938 pounds empty, 7039 pounds loaded.
Dimensions: wingspan 36 feet 10 7/16 inches, height 11 feet 3 13/16 inches, wing area 226.04 square feet.
Armament: Two fuselage mounted 12.7-mm Type 1 (Ho-103) machine guns and two wing-mounted 20-mm Ho-5 cannon.

Ki-84N
The Ki-84N was a projected high-altitude interceptor version of the Hayate powered by a 2500-hp eighteen-cylinder twin-row Nakajima [Ha-44] 13 (Ha-219) air cooled radial engine. The wing area was increased from 226 square feet to 249.19 square feet. The production version of the Ki-84N was assigned the Kitai number of Ki-117, and the aircraft was in the initial design stage when the war in the Pacific ended.

Ki-84P
The Ki-84P was another high-altitude interceptor version of the Hayate powered by the 2500-hp eighteen-cylinder twin-row Nakajima [Ha-44] 13 (Ha-219). The Ki-84P differed from the Ki-84N in having the wing area further increased to 263.4 square feet. The Ki-84P was abandoned in favour of the less-ambitious Ki-84R.

Ki-84R
The Ki-84R was a projected high-altitude version of the Ki-84-I Hayate powered by a 2000 hp Nakajima [Ha-45] 44 with a mechanically-driven two-stage three-speed supercharger. At the time of the Japanese surrender, the first prototype was eighty percent complete.

Mitsubishi J4M1 "Senden"

This radical Imperial Japanese Naval Air Force interceptor project provides the subject matter for the second in a regular series devoted to the lesser-known projects from the annals of Japanese aviation.

The Mitsubishi J4M Senden ("Flashing Lighting") or Navy Experimental 17-Shi Otsu B Type Interceptor Fighter Senden, Allied reporting name Luke, was a Japanese World War II fighter aircraft proposed by Mitsubishi for use by the Imperial Japanese Navy. The J4M project did not proceed beyond the design stage.

To provide the Imperial Japanese Navy with a land-based high-performance interceptor aircraft, Mitsubishi designed the J4M. It was to have been a single-seat, twin-boom, low-wing monoplane with a central nacelle housing an unstepped cockpit and a 1,590-kilowatt (2,130-hp) Mitsubishi Ha-43 radial engine behind the pilot driving a four-bladed pusher propeller rotating between the booms. The booms were to extend aft from the leading edge of the wing and were mounted below the central nacelle. The aircraft was to have had tricycle landing gear and an armament of one 30-mm and two 20-mm cannon.

Design of the initial J4M1 version ended when the Navy put its support behind the competing Kyūshū J7W fighter, and Mitsubishi did not build a prototype. The Allies nonetheless assigned the J4M the reporting name "Luke" during World War II.

Specifications
General characteristics
    Crew: One
    Length: 13.00 m (42 ft 8 in)
    Wingspan: 12.5 m (41 ft 0 in)
    Height: 4.10 m (13 ft 5 in)
    Wing area: 22.00 sq m (236.80 sq ft)
    Empty weight: 3,400 kg (7,496 lbs)
    Max takeoff weight: 5,255 kg (11,585 lbs)
    Powerplant: 1 × Mitsubishi Ha-43[4] radial piston engine, 1,590 kW (2,130 hp)
Performance
    Maximum speed: 703 km/h (437 mph; 380 knots) at 8,000 m (26,245 ft)
    Cruising speed: 500 km/h (310.5 mph; 270 knots)
    Service ceiling: 12,000 m (39,370 ft)
Armament
    1× 30-mm cannon
    2× 20-mm cannon

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Nakajima J5N1 Tenrai


During the spring of 1943, the JNAF issued an 18-Shi specification for a single-seat twin-engine interceptor capable of reaching a top speed of 666 km/h (414 mph) at 6,000 m (19,690 ft). Nakajima submitted a proposal based on the earlier J1N1 Gekko three-seat night fighter, although this new aircraft – designated J5N1 – was slightly smaller. The layout of the J5N was similar to the J1N, a low set wing on which were mounted the two engines, these being 1,484 kW (1,990 hp) Nakajima Homare 21 18-cylinder air-cooled radial engines, with a long fuselage ending in a conventional tail arrangement. For maximum utilization of the power from the twin engines, large four-blade propellers were fitted, and these also featured large spinners – as fitted to the J1N. The main wheels retracted rearwards into the engine nacelles, and the tailwheel was fixed. The cockpit was set above the wing, and featured a starboard-opening canopy. The nose was streamlined to offer the pilot an excellent forward view during landing, take-off and taxiing.

The armament of the J5N was impressive, and consisted of two 30 mm and two 20 mm cannon, and provision was made for a centreline 250 kg (550 lb) bomb. The J5N was designed to combat the heavily-armed US fighters in the Pacific Theatre at that time, and, thus, the armament would have done severe damage to these aircraft. To concentrate the firepower, the four cannons were mounted in the nose of the J5N.

Impressed with the design, the JNAF authorized the development of the J5N1, assigned the name Tenrai ("Heavenly Thunder"), and six prototypes were requested to be built. The first prototype – lacking its armament – made its first flight July 13, 1944, and was something of a disappointment. The top speed attained was only 597 km/h (371 mph) – far below the specified 666 km/h (414 mph) of the requirement. Despite the other five prototypes flying as well, with numerous enhancements, the aircraft never achieved its design speed, and the project was abandoned soon after.

Specifications (J5N1)
General characteristics
    Crew: one, pilot
    Length: 11.46 m (37 ft 7 in)
    Wingspan: 14.00 m (45 ft 11 in)
    Height: 2.38 m (7 ft 9 in)
    Wing area: 32 m² (344 ft²)
    Empty weight: 5,195 kg (11,429 lb)
    Loaded weight: 7,350 kg (16,170 lb)
    Powerplant: 2 × Nakajima Homare 21 18-cylinder radial engines, 1,485 kW (1,990 hp) each
Performance
    Maximum speed: 619 km/h (387 mph)
    Rate of climb: 900 m/min (2,950 ft/min)
    Wing loading: 230 kg/m² (47 lb/ft²)
    Power/mass: 0.40 kW/kg (0.24 hp/lb)
Armament
    2 × 30 mm cannon and/or 2 × 20 mm Type 99-2 cannon
    1 × 250 kg (551 lb) bomb