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Sizing

Aircraft Scale Models

Aircraft Models

Aircraft Scale Model Sizing

Aircraft Scale Model Chart
Below are the Lengths (L) and Wingspans (W) of the different scales/aircraft types in Cm's

1/200 scale1/400 scale1/500 scale
Aircraft TypeLength CMWingspan CMLength CMWingspan CMLength CMWingspan CM
Airbus A300-B427221311119
Airbus A300-60027221411119
Airbus A3102322121199
Airbus A31816178967
Airbus A31917178977
Airbus A32019179987
Airbus A321221711997
Airbus A330-200303015151212
Airbus A330-300/800/900323016151312
Airbus A340-200303015151212
Airbus A340-300323016151312
Airbus A340-500343217161413
Airbus A340-600373219161513
Airbus A350-900343317161313
Airbus A350-1000373318171513
Airbus A380364018201516
ATR-4211126655
ATR-7214147755
BAe146-10013137755
BAe146-20014137765
BAe146-30015138765
Boeing 7072322121199
Boeing 717-20019149786
Boeing 727-100201610887
Boeing 727-200231612897
Boeing 737-20015148766
Boeing 737-30017148776
Boeing 737-40018149776
Boeing 737-50016148766
Boeing 737-60016178967
Boeing 737-70017178977
Boeing 737-800201710987
Boeing 737-900211711987
Boeing 747SP283014151112
Boeing 747-200/300353018151412
Boeing 747-400353218161413
Boeing 757-2002419121098
Boeing 757-30027191410118
Boeing 767-20023241212910
Boeing 767-300272414121110
Boeing 767-400312615131210
Boeing 777-200323016151312
Boeing 777-300373018151512
Boeing 787-8283014151112
Boeing 787-9323016151312
Boeing 787-10343017151412
Concorde3113166125
CRJ-20013117554
CRJ-70016128675
CRJ-90018129675
Dash8-100/20014127655
Dash8-30013146755
Dash8-40016148776
DC-8-30/40/502322111199
DC-8-6224231211109
DC-8-61/6329231411119
DC-9-3018149776
DC-9-40191410786
DC-9-50201410786
DC-10-1028241412119
DC-10-30282514131110
Do328/328Jet11105544
EMB12010105544
ERJ13513107554
ERJ14014107564
ERJ14515107564
Embraer17015137765
Fokker7015148766
Fokker10018149776
MD-11312615131210
MD-81/82/83/88231611897
MD-87201610887
MD-90-3019169887
MD-90-402616138107
L-101127241412119
L-1011-500252513131010
Tu-1542419129108
Airfix Junkers JU87B-2/R 1:48 Kit
Airfix Junkers JU87B-2/R 1:48 KitAirfix Junkers JU87B-2/R 1:48 KitAirfix Junkers JU87B-2/R 1:48 KitAirfix Junkers JU87B-2/R 1:48 KitAirfix Junkers JU87B-2/R 1:48 KitAirfix Junkers JU87B-2/R 1:48 KitAirfix Junkers JU87B-2/R 1:48 KitAirfix Junkers JU87B-2/R 1:48 Kit
Airfix Junkers JU87B-2/R 1:48 Kit
Airfix Junkers JU87B-2/R 1:48 Kit

Airfix Junkers JU87B-2/R 1:48 Kit

Code: A07115
£36.95 Inc. VAT
£30.79 Ex. VAT
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Although usually associated with the Wehrmachts feared Lightning War attacks at the beginning of WWII, the Ju87B Stuka was also a highly effective maritime strike bomber. Capable of performing precision dive bombing attacks against any Allied vessel, the Stuka took a heavy toll of shipping in the English Channel, North Africa and in the Mediterranean.

Dimensions L230x W288mm

Parts:  158

The Stuka also saw service with the air forces of Italy, Romania, Bulgaria and Hungary, as well as remaining in Luftwaffe service throughout WWII. The attack dive of the Stuka was so severe, that quite a number of automatic features had to be incorporated into the manoeuvre.
At an altitude of approximately 15,000 ft., the pilot would locate his target through a bombsight window, which was located in the floor of the cockpit. His engine and propeller had automatic controls, to optimise the aircraft when in a dive, and an automatic trimmer would make the aircraft tail heavy, as the pilot initiated the dive. He would move the dive lever to the rear, which would limit the kick of the control column and quickly begin a defined sequence of actions, which if done correctly, would see his ordnance detonate on his intended target. He quickly set the trim tabs, reduced the throttle and closed the engine coolant flaps.

The aircraft would automatically become tail heavy and pitch over in a 180-degree roll, placing the aircraft in a steep nose-down dive at the same time, dive breaks were automatically deployed, to reduce the speed of the dive, to a constant 360 mph.
This was the point of no return the attack sequence had begun. As the strain on the body of the pilot increased, he still had much work to do.
The angle of his dive could be checked by looking at a series of red lines on the side of his cockpit window and lining them up against the horizon 60, 75, or 80 degree angle of attack. He would then look forward through the fixed gun sight, to line up his attack, before releasing his heavy main bomb - the optimum release height was indicated to the pilot, by a light flicking on in his altimeter. The bomb was carried on a large U-shaped cradle, which would swing down on release, throwing the bomb safely clear of the large propeller and on to the target. As all this action was taking place, the pilot would have certainly had at least a couple of reassuring glances at the red pins protruding up from the top of the wings, which informed him that the automatic dive recovery system was engaged, should he fall victim to a g-induced black-out.

All this would have been taking place in just a matter of a few, frantic seconds! Once the bombs had left the aircraft, it automatically began its dive recovery sequence. This was the point at which the maximum g loading on the crew would be felt and forces in excess of six times the force of gravity were regularly experienced, which could result in vision impairment at the very least. Once recovered and the nose of the aircraft was above the horizon, the dive breaks were automatically retracted, the throttle was opened and the propeller was set to climb the pilot then quickly had to manually open the coolant flaps, to prevent the engine from overheating and then resume flying the aircraft. This was the point that the Stuka was at its most vulnerable, flying at low level, at relatively slow speed and in hostile territory. His rear gunner may still be blacked out and indeed the pilot might still be feeling a little light headed, but every anti-aircraft gun, rifle and enemy fighter in the vicinity would be taking pot-shots at them, from every angle.

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