Showing posts with label Lavochkin. Show all posts
Showing posts with label Lavochkin. Show all posts

Sunday, March 13, 2011

Lavochkin-Gorbunov-Gudkov LaGG-3

LaGG-3
A Series 35 LaGG-3 (Finnish markings).
Role fighter
Manufacturer Lavochkin-Gorbunov-Gudkov
First flight March 30, 1940
Introduced early 1941
Primary user Soviet Union
Produced 1941-1942
Number built 6,258
Variants Lavochkin La-5
Lavochkin La-7
The Lavochkin-Gorbunov-Gudkov LaGG-3 (Лавочкин-Горбунов-Гудков ЛаГГ-3) was a Soviet fighter aircraft of World War II. It was a refinement of the earlier LaGG-1, and was one of the most modern aircraft available to the Soviet Air Force at the time of Germany's invasion in 1941.

Contents

  • 1 Design and development
  • 2 Operational history
  • 3 Variants
  • 4 Operators
  • 5 Specifications LaGG-3 (data for LaGG-3 series 66)

Design and development

The prototype of the LaGG-3, I-301, was designed by Semyon A. Lavochkin, Vladimir P. Gorbunov and Mikhail I. Gudkov. It was designated LaGG-3 in serial production. Its airframe was almost completely made of timber, with crucial parts processed with Bakelite lacquer. This novel wood-laminate construction was more durable than regular timber, incombustible, and didn’t rot. It was, however, much heavier and pilots joked that rather than being an acronym of the designers' names (Lavochkin, Gorbunov, and Goudkov) "LaGG" stood for lakirovanny garantirovanny grob ("(the) varnished guaranteed coffin" - лакированный гарантированный гроб). The full wooden wing (with plywood surfaces) was analogous to that of the Yak-1. The only difference was that the LaGG’s wings were built in two sections. The fuselage was the same as the MiG-3’s.[1] But the LaGG-3’s armament was considered formidable. It consisted of a large-calibre BK machine gun, which was installed between the "V" of the cylinders of the engine and two synchronized ShKAS machine guns. Consequently the weight of fire was 2.65 kg/s, making the LaGG superior to all serial Soviet fighters, as well as the 1941 version of the Messerschmitt Bf 109.[2]

Operational history

The LaGG-3 rapidly replaced the LaGG-1 although the new fighter was too heavy for its engine. In fact, Lavochkin, Gorbunov and Gudkov had originally designed their prototype for the powerful Klimov M-106 engine. But it proved to be unreliable. So they were obliged to install the relatively weak Klimov M-105P. As a result, the LaGG was slow; its top speed was just 474 km/h, while its rate of climb at ground level was as slow as 8.5 meters/second. The LaGG-3 proved to be somewhat hard to control as it reacted sluggishly to stick forces. In particular, it was difficult to pull out of a dive, and if the joystick was pulled too hard, it tended to fall into a spin. As a consequence, sharp turns were difficult to perform.[2] A more powerful engine was installed, but the improvement was little so, the only solution was to lighten the airframe. The LaGG team re-examined the design and pared down the structure as much as possible. Fixed slats were added to the wings to improve climb and manoeuvrability and further weight was saved by installing lighter armament. But the improvement was slight and without an alternative powerplant thus, when the LaGG-3 was first committed to combat in July 1941, it was completely outclassed by the Messerschmitt Bf 109.[2]
Later in 1941, the LaGG-3 appeared with new armament options, an internally balanced rudder, retractable ski landing gear for the winter, retractable tailwheel and wing pipes for drop tanks.[3] The result was still not good enough. Even with the lighter airframe and supercharged engine, the LaGG-3 was underpowered.
The LaGG-3 proved immensely unpopular with pilots. Some aircraft supplied to the front line were up to 40 km/h (25 mph) slower than they should have been and some were not airworthy. In combat, the LaGG-3's main advantage was its strong airframe. Although the laminated wood did not burn it shattered when hit by high explosive rounds.
The LaGG-3 was improved during production, resulting in 66 minor variants in the 6,258 that were built. Experiments with fitting a Shvetsov M-82 radial engine to the LaGG-3 airframe finally solved the power problem, and led to the superb Lavochkin La-5[4]
Soviet pilots generally disliked this aircraft. Pilot Viktor M. Sinaisky recalled: "It was an unpleasant client! Preparing the LaGG-3 for flight demanded more time in comparison with other planes. All cylinders were supposed to be synchronized: God forbid you from shifting the gas distribution! We were strictly forbidden to touch the engine! But there were constant problems with water-cooled engines in winter: especially as there was no antifreeze liquid. You couldn't keep the engine running all night long, so you had to pour hot water into the cooling system in the morning. Furthermore, pilots didn't like flying the LaGG-3 - a heavy beast with a weak M-105 engine - but they got used to it. Even so, we had higher losses on LaGG-3 than on I-16s."[5]
Even with its limitations, some Soviet pilots managed to reach the status of ace flying the LaGG-3. G.I. Grigor'yev, from 178.IAP, was credited of at least 11 air victories plus two shared. But pictures of his LaGG-3 "Yellow 6", in November-December 1941, show 15 "stars", so his score was probably higher.[6]
.[6]

Variants

  • Gorbunov 105 - A lightened LaGG-3 with improved performance and improved rear vision with cut down rear decking, overtaken by newer aircraft such as the La-5.
  • LaGG-3IT - LaGG-3 66 series with a NS-37 Cannon

Operators

 Finland
 Germany
  • Luftwaffe operated captured examples for tests. One captured example was used for a propaganda movie in 1943.[8]
 Japan
 Soviet Union

Specifications LaGG-3 (data for LaGG-3 series 66)

Data from Jane’s Fighting Aircraft of World War II[10]
General characteristics
  • Crew: One
  • Length: 8.81 m (28 ft 11 in)
  • Wingspan: 9.80 m (32 ft 1.75 in)
  • Height: 2.54 m (8 ft 4 in)
  • Wing area: 17.4 m² (188 ft²)
  • Empty weight: 2,205 kg (4,851 lb)
  • Loaded weight: 2,620 kg (5,764 lb)
  • Max takeoff weight: 3,190 kg (7,018 lb)
  • Powerplant:Klimov M-105PF liquid-cooled V-12, 924 kW (1,260 hp)
Performance
Armament

Lavochkin La-9

La-9 "Fritz"
Role Fighter
Manufacturer Lavochkin
First flight 1946
Introduced August 1946
Status Out of service
Primary users Soviet Air Force
Romanian Air Force
North Korea Air Force
Produced 1946-1948
Number built 1,559
Variants Lavochkin La-11
The Lavochkin La-9 (NATO reporting name Fritz) was an early post-World War II Soviet fighter aircraft.

Contents

  • 1 Development
  • 2 Variants
  • 3 Operators
  • 4 Specifications (La-9)

Development

La-9 represents further development of the Lavochkin La-126 prototype. The first prototype, designated La-130 was finished in 1946. Similarity to the famous Lavochkin La-7 was only superficial – the new fighter had all-metal construction and a laminar flow wing. Weight savings due to elimination of wood from the airframe allowed for greatly improved fuel capacity and four-cannon armament. Mock combat demonstrated that La-130 was evenly matched with La-7 but was inferior to Yakovlev Yak-3 in both horizontal and vertical planes. The new fighter, officially designated La-9, entered production in August 1946. A total of 1,559 aircraft were built by the end of production in 1948.
Only one La-9 remains in airworthy condition today, ZK-LIX (pictured above at Warbirds Over Wanaka) in Wanaka, New Zealand, having been restored by Pioneer Aero Restorations between 2001 and '03. A handful of others remain in museums in China, Korea and one in Romania.

Variants

Like other aircraft designers at the time, Lavochkin was experimenting with using jet engines to augment performance of piston-engined fighters. One such attempt was La-130R with an RD-1Kh3 liquid fuel rocket engine in addition to the Shvetsov ASh-82FN piston powerplant. The project was cancelled in 1946 before the prototype could be assembled. A more unusual approach was La-9RD which was tested in 1947–1948. It was a production La-9 with a reinforced airframe and armament reduced to two cannons, which carried a single RD-13 pulsejet (likely of the German V-1 flying bomb origin) under each wing. The 70 km/h (45 mph) increase in top speed came at the expense of tremendous noise and vibration. The engines were unreliable and worsened the handling. The project was abandoned although between 3 and 9 La-9RD were reported to perform at airshows, no doubt pleasing the crowds with the noise.
Other notable La-9 variants were:
  • La-9UTI – two-seat trainer version. Built at GAZ-99 in Ulan-Ude. Two versions exist: with 12.7 mm UBS machine gun and with one 23 mm NS-23 cannon.
  • La-132 (La-132) – prototype with upgraded Shvetsov M-93 engine. Projected top speed 740 km/h (460 mph) at 6,500 m (21,325 ft). Engine proved a failure and the single prototype was equipped with an experimental Shvetsov ASh-82M instead. The aircraft did not proceed to production.
  • La-9M (La-134) – long-range fighter prototype, see Lavochkin La-11
  • La-9RD – one La-9 was fitted with two underwing RD-13 auxiliary pulsejet engines.
  • La-138 – one La-9 was fitted with two underwing PVRD-450 auxiliary ramjet engines.

Operators

 People's Republic of China
 North Korea
 Romania
 Soviet Union

Specifications (La-9)

La-9 Silh.jpg
General characteristics
Performance
Armament

Lavochkin La-7


La-7
La-7 at Khimki
Role Fighter
Manufacturer Lavochkin OKB
First flight February 1944
Introduced 1944
Primary user Soviet Air Forces
Number built 5,753
Developed from Lavochkin La-5
The Lavochkin La-7 (Russian: Лавочкин Ла-7) was a Soviet fighter developed during World War II. It was a development and refinement of the Lavochkin La-5, and the last in a family of aircraft that had begun with the LaGG-1 in 1938. It saw service with the Soviet Union from September 1944, served with the Czech Air Force through 1950, and the People's Liberation Army Air Force until at least 1954 [1].

Contents

  • 1 Design and development
  • 2 Operational history
    • 2.1 Tactical significance
  • 3 Variants
    • 3.1 La-7TK
    • 3.2 La-7R
    • 3.3 La-7PVRD
    • 3.4 La-7/M-71
    • 3.5 La-7UTI
  • 4 Operators
  • 5 Specifications (1945 production model)

Design and development

By 1943, the La-5 had become a mainstay of the Soviet Air Forces, yet both its head designer, Semyon Lavochkin, as well as the engineers at the Central Aerohydrodynamics Institute (Russian: TsAGI), felt that it could be improved upon. TsAGI refined earlier studies of aerodynamic improvements to the La-5 airframe in mid-1943 and modified La-5FN c/n[Note 1] 39210206 to evaluate the changes. These included complete sealing of the engine cowling, rearrangement of the wing center section to accommodate the oil cooler and the relocation of the engine air intake from the top of the cowling to the bottom to improve the pilot's view.[2]
The aircraft was evaluated between December 1943 and February 1944 and proved to have exceptional performance. Using the same engine as the standard La-5FN c/n 39210206 had a top speed of 684 kilometers per hour (425 mph) at a height of 6,150 metres (20,177 ft), some 64 kilometers per hour (40 mph) faster than the production La-5FN. It took 5.2 minutes to climb to 5,000 meters (16,404 ft). It was faster at low to medium altitudes than the La-5 that used the more powerful prototype Shvetsov M-71 engine.[3]
Lavochkin had been monitoring TsAGI's improvements and began construction in January 1944 of an improved version of the La-5 that incorporated them as well as lighter, but stronger, metal wing spars to save weight. The La-5, as well as its predecessors, had been built mostly of wood to conserve strategic materials such as aircraft alloys. With Soviet strategists now confident that supplies of these alloys were unlikely to become a problem, Lavochkin was now able to replace some wooden parts with alloy components. In addition Lavochkin made a number of other changes that differed from c/n 39210206. The engine air intake was moved from the bottom of the engine cowling to the wing roots, the wing/fuselage fillets were streamlined, each engine cylinder was provided with its own exhaust pipe, the engine cowling covers were reduced in number, a rollbar was added to the cockpit,[4] longer shock struts were fitted for the main landing gear while that for the tail wheel was shortened, an improved PB-1B(V) gunsight was installed, and a new VISh-105V-4 propeller with a Mach-resistant airfoil was fitted.[5] Three prototype 20 mm (0.79 in) Berezin B-20 autocannon armed the 1944 standard-setter (Russian: etalon), as the modified aircraft was designated.[4]
The etalon only made nine test-flights in February and March 1944 before testing had to be suspended after two engine failures, but quickly proved itself to be the near-equal of c/n 39210206. It was 180 kilograms (397 lb) lighter than the earlier aircraft, which allowed the etalon to outclimb the other aircraft (4.45 minutes against 5.2 minutes climb to 5,000 meters). However it was 33 kilometres per hour (20.5 mph) slower at sea-level, but only 4 kilometers per hour (2.5 mph) slower at 6,000 meters (19,685 ft). The flight-tests validated Lavochkin's modifications and it was ordered into production under the designation of La-7, although the B-20 cannon were not yet ready for production and the production La-7 retained the two 20-mm ShVAK cannon armament of the La-5.[6]
Five La-7s were built in March by Factory (Russian: Zavod) Nr. 381 in Moscow and three of these were accepted by the Air Force that same month. The Moscow factory was the fastest to complete transition over to La-7 production and the last La-5FN was built there in May 1944. Zavod Nr. 21 in Gorky was considerably slower to make the change as it did not exhaust its stock of wooden La-5 wings until October. The quality of the early production aircraft was significantly less than the etalon due to issues with the engine, incomplete sealing of the cowling and fuselage, and defective propellers. One such aircraft was tested, after these problems had been fixed, by the Flight Research Institute (Russian: Lyotno-Issledovatel'skiy Institut) and proved to be only 6 kilometers per hour (3.7 mph) slower than the etalon at altitude. Aircraft from both factories were evaluated in September by the Air Force Scientific Test Institute (Russian: NII VVS) and the problems persisted as the aircraft could only reach 658 kilometers per hour (409 mph) at a height of 5,900 meters (19,357 ft) and had a time to altitude of 5.1 minutes to 5,000 meters.[7]
Combat trials began in mid-September 1944 and were generally very positive. However four aircraft were lost to engine failures and the engines suffered from numerous lesser problems, despite its satisfactory service in the La-5FN. One cause was the lower position of the engine air intakes in the wing roots of the La-7 which caused the engine to ingest sand and dust. One batch of flawed wings was built and caused six accidents, four of them fatal, in October which caused the fighter to be grounded until the cause was determined to be a defect in the wing spar.[8]
Production of the first aircraft fitted with three B-20 cannon began in January 1945 when 74 were delivered. These aircraft were 65 kilograms (140 lb) heavier than those aircraft with the two ShVAK guns, but the level speed was slightly improved over the original aircraft. However, the time to climb to 5000 meters increased by two-tenths of a second over the older model. More than 2000 aircraft were delivered before the war's end, most by Zavod Nr. 21. A total of 5753 aircraft had been built by Zavod Nr. 21, Nr. 381, and Nr. 99 in Ulan-Ude,[9] when production ended in early 1946.[5]

Operational history

A La-7 of the Czech Air Force on display at the Prague Aviation Museum, Kbely
The 63rd Guard Fighter Aviation Corps began combat trials of the La-7 in mid-September 1944 in support of the 1st Baltic Front. Thirty aircraft were provided for the trials, which lasted one month. During this time the new fighters made 462 individual sorties and claimed 55 aerial victories while losing four aircraft in combat. Four other La-7s were lost to non-combat causes, mostly related to engine problems. A total of three pilots were killed during the trials to all causes.[8]
One regimental commander, Colonel Ye. Gorbatyuk, a Hero of the Soviet Union, commented: "The La-7 exhibited unquestionable advantages over German aircraft in multiple air combats. In addition to fighter tasks, photo reconnaissance and bombing were undertaken with success. The aircraft surpasses the La-5FN in speed, manoeuverability, and, especially, in the landing characteristics. It requires changes in its armament, and urgent fixing of its engine."[8] The twin ShVAK armament inherited from the La-5 was no longer powerful enough to bring down later, more heavily armored German fighters, especially the Focke-Wulf Fw 190, in a single burst, even when Soviet pilots opened fire at ranges of only 50–100 meters (160–330 ft).[8]
The 156th Fighter Air Corps of the 4th Air Army was the next unit to receive the La-7 in October 1944. At one point during the month, they had fourteen aircraft simultaneously unserviceable with engine failures.[8] By 1 January 1945 there were 398 La-7s in front-line service of which 107 were unserviceable.[10] By 9 May 1945 this had increased to 967 aircraft, of which only 169 were unserviceable.[11] For the invasion of Japanese Manchuria 313 La-7s were assigned and only 28 of these were unserviceable on 9 August 1945.[12]
The La-7 was flown by the top Soviet ace of the war, Ivan Nikitovich Kozhedub. The Ukrainian-born Kozhedub, nicknamed "Ivan the Terrible", a three-time Hero of Soviet Union, scored his last 17 air victories in 1945 in the La-7 numbered 27, which is now preserved in the Central Air Force Museum at Monino on the outskirts of Moscow. The last German aircraft that he shot down was the Messerschmitt Me-262, of Sergeant (German: Unteroffizier) Kurt Lange from 1./KG(J)54, over Frankfurt an der Oder[13] on 15 February 1945.
One fighter regiment of the 1st Czech Composite Aviation Division was equipped with the La-7 and participated in the Slovak National Uprising of August–October 1944. It remained in service with the Czechs until 1950 and was designated postwar by them as the S-97. One of these aircraft survives in the Prague Aviation Museum, Kbely.[14]
Two La-7s from the People's Liberation Army Air Force shot down a Cathay Pacific airliner off the coast of Hainan Island on 23 July 1954.[15]
Production of the La-7 amounted to 5,753 aircraft, plus 584 La-7UTI trainers.[Note 2] Those aircraft still in service after the end of the war were given the NATO reporting name Fin.[16]
The follow-up model, the La-9, despite its outward similarity, was a completely new design.[17]

Tactical significance

The La-7 ended the superiority in vertical maneuverability that the Messerschmitt Bf 109G had previously enjoyed over other Soviet fighters.[18] Furthermore, it was fast enough at low altitudes to catch, albeit with some difficulties, Focke Wulf Fw 190 fighter-bombers that attacked Soviet units on the frontlines and immediately headed for German-controlled airspace at full speed. The Yakovlev Yak-3 and the Yakovlev Yak-9U with the Klimov VK-107 engine lacked a large enough margin of speed to overtake the German raiders. Only 115 La-7s were lost in air combat, only half the number of Yak-3s.[14]

Variants

La-7TK

One aircraft used to evaluate the TK-3 turbosupercharger in July 1944 in the hopes of improving high-altitude performance. It was destroyed when the TK-3 disintegrated in flight.[5]

La-7R

Testbed for a tail-mounted liquid-fuelled RD-1KhZ rocket engine.[19] The rocket was rated at 300 kilograms-force (660 lbf) of thrust and its fuel (90 liters (20 imp gal; 24 U.S. gal) of kerosene and 180 liters (40 imp gal; 48 U.S. gal) of red fuming nitric acid) was expected to last between three and three and a half minutes. While the rocket was firing it increased the fighter's speed by 80 kilometers per hour (50 mph), but the aircraft's other flying qualities deteriorated. Fifteen flights were made in the first quarter of 1945, although the rocket exploded on the ground on 12 May. The aircraft was repaired, but later had an explosion in flight although the pilot managed to land it safely. Details of any later flights are unknown, but the La-7R was displayed at the August 1946 Tushino Airshow with the rocket firing.[20]

La-7PVRD

Testbed for two underwing ramjet engines. The aircraft was expected to reach a speed of 800 kilometers per hour (497 mph) at a height of 6,000 metres (19,685 ft), but could not exceed 670 kilometers per hour (416 mph) due to the high drag of the ramjets.[21]

La-7/M-71

One aircraft was fitted with the Shvetsov M-71 for trials in 1944. However the engine was not yet ready for service and the program was cancelled.[5]

La-7UTI

Two-seat trainer version. Armament reduced to a single 20 mm gun and the oil cooler was relocated underneath the engine cowling.[5] Fitted with a radio compass and gun camera. Considerably heavier than the fighter at 3,500 kilograms (7,716 lb), but it retained the flying characteristics of the single-seat aircraft. 584 built, the last two delivered in 1947.[22]

Operators

 Czechoslovakia
 China
 Soviet Union
 North Korea

Specifications (1945 production model)

Data from [17]
General characteristics
  • Crew: 1
  • Length: 8.6 m (28 ft 3 in)
  • Wingspan: 9.8 m (32 ft 2 in)
  • Height: 2.54 m (8 ft 4 in)
  • Wing area: 17.59 m2 (189.3 sq ft)
  • Gross weight: 3,315 kg (7,308 lb)
  • Powerplant: 1 × Shvetsov ASh-82FN 14-cylinder, two-row, air-cooled radial, 1,096 kW (1,470 hp)
  • Propellers: 3-bladed VISh-105V-4
Performance
  • Maximum speed: 661 km/h (411 mph; 357 kn) @ 6,000 meters (19,685 ft)
  • Range: 665 km (413 mi; 359 nmi) (1944 model)
  • Service ceiling: 10,450 m (34,285 ft)
  • Time to altitude: 5.3 minutes to 5,000 meters (16,404 ft)
Armament
  • Guns: 2 × 20 mm ShVAK cannons with 200 rounds per gun or 3 × 20 mm Berezin B-20 cannons with 100 rpg
  • Bombs: 200 kg (440 lb) of bombs

Lavochkin La-5

La-5
Role Fighter aircraft
Manufacturer Lavochkin
Designed by Semyon Lavochkin
First flight March 1942
Introduced July 1942
Primary user Soviet Air Force
Number built 9,920
Variants Lavochkin La-7
The Lavochkin La-5 (Лавочкин Ла-5) was a Soviet fighter aircraft of World War II. It was a development and refinement of the LaGG-3 and was one of the Soviet Air Force's most capable types of warplane.

Contents

  • 1 Development
    • 1.1 Flying the La-5
  • 2 Operators
  • 3 Specifications (Lavochkin La-5FN)

Development

La-5 Moscow.jpg
The La-5's heritage began even before the outbreak of war, with the LaGG-1, a promising yet underpowered aircraft – turning a full circle, for example, took 20 seconds. The LaGG-3 was a modification of that design that attempted to correct this by both lightening the airframe and fitting a more powerful engine. Nevertheless, this was not enough, and the lack of power remained a significant problem.
In early 1942, two of the LaGG-1 and -3's designers, Semyon Lavochkin and Vladimir Gorbunov, attempted to correct this deficiency by experimentally fitting a LaGG-3 with the more powerful Shvetsov ASh-82 radial engine. Since the LaGG-3 was powered by an inline engine, they accomplished this by grafting on the nose section of a Sukhoi Su-2 (which used this engine). By now, the shortcomings of the LaGG-3 had caused Lavochkin to fall out of Joseph Stalin's favour, and factories previously assigned to LaGG-3 construction had been turned over to building the rival Yakovlev Yak-1 and Yak-7. The design work required to adapt the LaGG-3 to the new engine and still maintain the aircraft's balance was undertaken by Lavochkin in a small hut beside an airfield over the winter of 1941-1942, all completely unofficially.
When the prototype took flight in March, the result was extremely pleasing - the fighter finally had a powerplant that allowed it to perform as well in the air as it had been supposed to on paper. After flying, the LaG-5 (the change in name reflecting that one of the original LaGG designers was no longer with the programme), Air Force test pilots declared it superior to the Yak-7, and intensive flight tests began in April. After only a few weeks, the design was modified further, cutting down the rear fuselage to give the pilot better visibility.
By July, Stalin ordered maximum-rate production of the aircraft, now simply known as the La-5 and the conversion of any incomplete LaGG-3 airframes to the new configuration. The prototype was put in mass production almost immediately in factories located in Moscow and in the Yaroslav region. While still inferior to the best German fighters at high altitudes, the La-5 proved to be every bit their match closer to the ground. With most of the air combat over the Eastern Front taking place at altitudes of under 5,000 m (16,404 ft), the La-5 was very much in its element. Its rate of roll was excellent.
Further refinement of the aircraft involved a fuel-injected engine, further lightening of the aircraft, and fixed slats to improve all-round performance. This was designated the La-5FN and would become the definitive version of the aircraft. A full circle turn took 18–19 seconds - a beautiful dogfighter. Altogether, 9,920 La-5s of all variants were built, including a number of dedicated trainer versions, designated La-5UTI. Several La-5s had three Berezin B-20 cannon installed in the nose capable of a salvo of 3.4 kg/s rounds. Further refinements of the aircraft would lead to the Lavochkin La-7.
A number of La-5s continued in the service of Eastern Bloc nations after the end of the war, including Czechoslovakia.

Flying the La-5

In the summer of 1943, a brand-new La-5 made a forced landing on a German airfield providing the Luftwaffe with an opportunity to test-fly the newest Soviet fighter. Test pilot Hans-Werner Lerche wrote a detailed report of his experience [1]. He particularly noted that the La-5FN excelled at altitudes below 3,000 m (9,843 ft) but suffered from short range and flight time of only 40 minutes at cruise engine power. All of the engine controls (throttle, mixture, propeller pitch, radiator and cowl flaps, and supercharger gearbox) had separate levers which served to distract the pilot during combat to make constant adjustments or risk suboptimal performance. For example, rapid acceleration required moving no less than six levers. In contrast, contemporary German aircraft, especially the BMW 801 radial engined variants of the Focke-Wulf Fw 190 front line fighter, had largely automatic engine controls with the pilot operating a single lever and electromechanical devices, like the Kommandogerät pioneering engine computer on the radial-engined Fw 190s, making the appropriate adjustments. Due to airflow limitations, the engine boost system (Forsazh) could not be used above 2,000 m (6,562 ft). Stability in all axes was generally good. The authority of the ailerons was deemed exceptional but the rudder was insufficiently powerful at lower speeds. At speeds in excess of 600 km/h (370 mph), the forces on control surfaces became excessive. Horizontal turn time at 1,000 m (3,281 ft) and maximum engine power was 25 seconds.
In comparison with Luftwaffe fighters, the La-5FN was found to have a comparable top speed and acceleration at low altitude. It possessed a higher roll rate and a smaller turn radius than the Bf 109 and a better climb rate than the Fw 190A-8. The Bf 109 utilizing MW 50 had superior performance at all altitudes, and the Fw 190A-8 had better dive performance. Lerche's recommendations were to attempt to draw the La-5FN to higher altitudes, to escape attacks in a dive followed by a high-speed shallow climb, and to avoid prolonged turning engagements.
The La-5 had its defects. Perhaps the most serious being the thermal isolation of the engine, lack of ventilation in the cockpit, and a canopy that was impossible to open at speeds over 350 km/h. To make things worse, exhaust gas often entered in the cockpit due to poor insulation of the engine compartment. Consequently, pilots ignored orders and frequently flew with their canopies open.[2]
In general, Soviet pilots appreciated the La-5 as an effective fighter. "That was an excellent fighter with two cannons and a powerful air-cooled engine", recalled pilot Viktor M. Sinaisky. "The first La-5s from the Tbilisi factory were slightly inferior, while the last ones from the Gorki plant, which came to us from Ivanovo, were perfect. At first we received regular La-5s, but then we got new ones containing the ASh-82FN engine with direct injection of fuel into the cylinders. It was perfect. Everyone was in love with the La-5. it was easy to maintain too."[3] Neverthless La-5 losses were high, the highest of all fighters in service in USSR, not considering those of the Yak-1. In 1941-45, VVS KA lost 2,591 La-5s, 73 in 1942, 1,460 in 1943, 825 the following year and 233 in 1945. [4]

Operators

 Czechoslovakia
 Mongolia
 Poland
 Soviet Union

Specifications (Lavochkin La-5FN)

Orthographically projected diagram of the Lavochkin La-5.
Data from Jane’s Fighting Aircraft of World War II[5]
General characteristics
Performance
Armament
  • 2 × 20 mm ShVAK cannons, 200 rpg
  • 2 × bombs up to 100 kg (220 lb) each

Lavochkin La-250

La-250
La-250A at the Monino air museum
Role Interceptor
Manufacturer Lavochkin
First flight 1956
Status Cancelled 1959
Primary user Soviet Air Forces
Number built 5
The Lavochkin La-250 "Anakonda" was a 1950s Soviet high-altitude interceptor aircraft prototype.

Contents

  • 1 Development
  • 2 Specifications (La-250A)

Development

By the mid-1950s, it became obvious that subsonic cannon-armed fighters like the Yakovlev Yak-25 would be unable to intercept fast high-altitude targets like the upcoming generation of strategic jet bombers. As a result, in 1953 Lavochkin OKB proposed addition of an air-to-air missile system to the Berkut air-defense system. Tasked with defense of Moscow, the Berkut system consisted of a large network of radars and surface-to-air missile sites as well as ground-controlled interceptor aircraft. Lavochkin's proposed missile, the G-300 utilized a guidance system based on vacuum tubes and was so heavy (about 1,000 kg (2,200 lb)) that no fighter in the Soviet arsenal could carry it. Instead, a Tupolev Tu-4 bomber (Soviet version of the Boeing B-29 Superfortress) was modified to carry four G-300s under the wings, with the whole system receiving designation G-310. For all this trouble, G-300 was expected to have a range of only 15 km (9 mi) and a ceiling of 20,000 m (65,600 ft). Although G-310 made ten flights in 1952, the system was abandoned as impractical.
In November 1952, the Soviet government ordered development of Kompleks K-15 (Complex K-15, a notion analogous to USAF's "weapon system" concept). K-15 was to consist of an interceptor "250" (later designated La-250) carrying "275" guided missiles. La-250 had to be able to intercept targets flying at 1,250 km/h (777 mph, Mach 1.18) at 20,000 m (65,600 ft) and up to 500 km (310 mi) from the airbase. Initial guidance was to be from Vozdukh-1 ground control with terminal onboard radar guidance for the last 40 km (25 mi) and automatic missile firing by the fire control system when in range. Missile "275" was projected to weigh 870 kg (1,915 lb) and, powered by a liquid fuel rocket motor, its top speed was to exceed 3,900 km/h (2,425 mph). With a 125 kg (275 lb) conventional warhead, it had a projected lethal radius of 50 m (165 ft). La-250 was to carry two "275" missiles semi-recessed into the underside of the fuselage in a tandem arrangement.
Problems with the K-15U radar and Klimov VK-9 engines forced a radical redesign of the aircraft to use the K-15M radar and, more importantly, much less powerful Lyulka AL-7F engines. This, in turn, led to the need to change "275" missiles to the lighter "275A" (interestingly, although total missile weight decreased to 800 kg/1,764 lb, the warhead actually grew to 140 kg/308 lb). The new airframe with a smaller fuselage and a delta wing instead of the earlier swept wing was designated La-250A. The "275" missiles were now carried on underwing pylons. The lighter airframe was not enough to overcome the weaker engines, and projected performance suffered compared to La-250. While busy redesigning the aircraft, Lavochkin OKB also had to develop new variants of the "275" missile - the semi-active radar homing "277," the nuclear-armed "279," and solid fuel rocket-powered "280." The first La-250A prototype was finally rolled out on June 16, 1956. Test flights of the five prototypes were plagued by crashes caused by failures of the hydraulic boost system and landing gear as well as poor forward visibility (the latter was corrected with fitting of a new slightly "drooped" nose). La-250A made a single test flight in 1956, only 6 flights in 1957, and a mere 14 flights in 1958. Frustrated by the lack of progress, VVS stopped all work on the K-15 system in 1959. Lessons learned with K-15 were used to develop new interceptor system requirements which led to the Tupolev Tu-28 interceptor.
The abortive, trouble-filled development of La-250 was mirrored in the West by the similarly complicated creation of Convair's delta-winged F-102 Delta Dagger and F-106 Delta Dart interceptors.

Specifications (La-250A)

General characteristics
  • Crew: 2
  • Length: 26.80 m (87 ft 11 in)
  • Wingspan: 13.90 m (45 ft 7 in)
  • Height: 6.50 m (21 ft 4 in)
  • Wing area: 80.0 m² (860.8 ft²)
  • Empty weight: 18,988 kg (41,775 lb)
  • Loaded weight: 24,500 kg (53,900 lb)
  • Max takeoff weight: 27,500 kg (60,500 lb)
  • Powerplant:Lyulka AL-7F turbojets, 98.0 kN (22,050 lbf) afterburning thrust each
Performance
Armament
  • 2 × Air-to-air missiles on underwing pylons, either "275," "277," "279," or "280." (see text for description)

Lavochkin La-152

Lavochkin Aircraft 152
Role Jet Fighter
National origin U.S.S.R.
Manufacturer Lavochkin
Designed by Semyon Alekseyevich Lavochkin
First flight 5th December 1946
Number built 1 x 152, 1 x 154(not completed), 2 x 156
Developed from Aircraft 150
Aircraft 152, USAF reporting name - Type 4, and its variants, was a jet fighter prototype designed and manufactured by the Lavochkin Design Bureau from 1945.[1]

Contents

  • 1 Design and development
  • 2 History
  • 3 Variants
  • 4 Specifications (Aircraft 156)

Design and development

Following the limited success of Lavochkin Aircraft 150, drastic changes were introduced to improve performance and ease of maintenance. The engine was moved to the front of the nose with the cockpit sat above the removable mid-set wings and the exhaust beneath the wings. This arrangement also facilitated maintenance of the engine and eased changes of engine type. The undercarriage attached to the fuselage, and retracted into the fuselage, in similar fashion to many German jet fighter projects such as the Messerschmitt P.1101.[1]

History

Flight trials were progressing well with manufacturers trials completed om 23rd of June 1947. State acceptance trials commenced on 12th July . Aircraft 152 crashed on the eightth flight of these trials when the engine failed on approach.[1] Development continued with "Aircraft 154", "Aircraft 156", "Aircraft 160", and "Aircraft 174TK" (no relation to "Aircraft 174" and "Aircraft 174D"). The afterburning "YuF", used in the "156" and "160", was developed separately from the "RD-10F" developed for Yakovlev's early jet fighters.

Variants

  • Aircraft 154 - A second 152 airframe intended to have a Lyul'ka TR-1 turbojet. Major delays with the TR-1 forced cancellation.[1]
  • Aircraft 156 (USAF reporting name - Type 5) - Originally known as Aircraft 152D (dooblyor - second prototype). Design work started on 22nd November 1946, on what was a modified 152 with a YuF afterburning RD-10. As well as the afterburning engine the 156 had improved wings, an ejection seat and cockpit armour.[1]
  • Aircraft 174TK (Tonkoye Krylo - thin wing) A purely experimental version of Aircraft 156, with a 6% thickness straight wing, (very thin in 1947), Rolls-Royce Derwent engine in the nose instead of under the wing, giving its distinctive bulged nose. First flown in January 1948, flight trials were successful, but performance was already overshadowed by the lower powered Aircraft 160 so further development abandoned.[2]

Specifications (Aircraft 156)

Data from Gordon,Yefim. Early Soviet Jet Fighters. Midland Publishing. Hinkley. ISBN 1 85780 139 3
General characteristics
  • Crew: One
  • Capacity: 1
  • Length: 29 ft 11 in (9.12 m)
  • Wingspan: 27 ft 11.43 in (8.52 m)
  • Wing area: 142.36 ft² (13.24 m²)
  • Empty weight: 5,608 lb (2,544 kg)
  • Gross weight: 7,672 lb (3,480 kg)
  • Powerplant: 1 × YuF afterburning RD-10, 1,984 lbf (8.83 kN)dry, 2,425 lbf (10.8 kN) with afterburner
Performance
  • Maximum speed: 559.8 mph (900 km/h)
  • Range: 385 miles (620 km)
  • Endurance: 1 hours  5 min
  • Service ceiling: 32,808 ft (10,000 m)
  • Rate of climb: 4,526 ft/min (23 m/s)
Armament
  • 3 x NS-23 23mm Cannon with 190 rounds total

Lavochkin La-15

La-15
La-15 at Monino
Role Fighter
Manufacturer Lavochkin / GAZ-21
First flight January 8, 1948(Aircraft 174)
Introduction 1949
Retired 1954
Primary user Soviet Air Force
Number built 235
Developed from Aircraft 174
The Lavochkin La-15 (GAZ-21 product code Izdeliye 52, USAF reporting name Type 21[1], NATO reporting name Fantail[2]), was an early Soviet jet fighter and a contemporary of the Mikoyan-Gurevich MiG-15.

Contents

  • 1 Development
  • 2 Variants
  • 3 Operators
  • 4 Specifications (La-15)

Development

The La-15 was the outcome of a series of development aircraft that began with Aircraft 150 in 1945 and culminated in Aircraft 176, later in 1948. They were designed for British engines Rolls-Royce Derwent V and Nene, acquired by the Soviets in 1947 and then copied by them as RD-500 and RD-45 respectively. The Derwent-powered Aircraft 174 was designed as a backup for the main program, the Nene-powered Aircraft 168, in case the British failed to deliver more powerful Nene engines with afterburners, (which they did fail to deliver). The first prototype of Aircraft 174 was flown just 9 days after its Mikoyan-Gurevich counterpart I-310, on January 8, 1948. The first prototype was however lost on May 11, 1948 due to vibrations. Trials were continued with an improved second prototype, designated Aircraft 174D, which underwent State Acceptance Tests from August to September 25 1948. In comparison with the Nene-powered MiG-15 it had almost the same maximum speed and better maneuverability, with somewhat reduced rate of climb. The type was ordered into production in September 1948, even while Aircraft 174D was undergoing flight trials, and given the official designation La-15 In April 1949.
The La-15 had a barrel-like fuselage, shoulder-mounted swept wings with 6 degrees anhedral, and stabilizers mounted high on the fin, almost like a T-tail. It was popular with pilots because of its easy handling and reliability, and its pressurized cockpit was an advantage at high altitude. Nevertheless, official enthusiasm for the La-15 was mild, largely because it was a complex design that required complicated and expensive production tooling. The Soviet authorities decided to produce only one fighter, and they chose the MiG-15bis because it was somewhat easier to mass-produce.
La-15.jpg

235 La-15s were built, and served with the Soviet Air Force until 1954. Although it had a number of technical advantages over the MiG-15, a combination of easier manufacture and lower costs, led to the MiG-15 being favoured.

Variants

  • Aircraft 174 - Rolls-Royce Derwent powered first prototype of La-15. Crashed due to structural vibrations caused by sympathetic resonant frequencies of tailplane and rear fuselage.
  • Aircraft 174D - (Dooblyor-second)- Second prototype with modifications shown to be required from Aircraft 174's flight tests.
  • Aircraft 180 - A two-seat trainer version was also developed as Aircraft 180 and was to be put into production as the UTI La-15 or La-15UTI, but as official interest in the La-15 waned, the trainer was cancelled before mass production began and only 2 were made.

Operators

 Soviet Union

Specifications (La-15)

Data from *Gordon,Yefim. Lavochkin's Last Jets. Midland Publishing. Hinkley. 2007. ISBN(10) 1 85780 253 3
General characteristics
  • Crew: one
  • Length: 9.56 m (31 ft 4 in)
  • Wingspan: 8.83 m (29 ft 0 in)
  • Height: 3.8 m (12 ft 5-39/64 in)
  • Wing area: 16.167 m² (173.83 ft²)
  • Empty weight: 3000 kg (6,500lb)
  • Loaded weight: 3,800 kg (8,490 lb)
  • Powerplant:Klimov RD-500 turbojet, 15.6 kN (3,495 lbf)
Performance
Armament

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