Modern Firearms

Intro
Argentina
FARA 83
Australia
AICW
Austria
Steyr AUG
Steyr ACR
Belgium
FN FAL
FN FNC
FN F2000
FN SCAR
Brazil
IMBEL MD-2
IMBEL MD-97
LAPA FA 03
Canada
Diemaco C7A1 C7A2 C8
China, People Republic of
Type 56
Type 63
Type 81
Type 86s
Type 95 / QBZ-95
Type 03 / QBZ-03
CQ M311
Croatia
APS-95
Czech Republic / Czechoslovakia
SA Vz.58
Finland
Valmet Sako Rk.62 / 76 / 95
Valmet M82
France
FAMAS
Germany
MKb.42(H)
MKb.42(W)
MP-43 MP-44 Stg.44
Stg.45(M)
HK G3
HK HK33 & HK53
HK G41
HK G36
HK G11
HK 416
HK 417
Great Britain
Enfield EM-2
SA80 / L85
India
INSAS
Iran
Khaybar KH2002
Italy
Beretta BM 59
Beretta AR-70/223 & AR-70/90
Beretta ARX-160
Israel
Galil
Tavor TAR-21
Japan
Type 64
Type 89
Russia / USSR
Fedorov avtomat
AK-47 AKM
AK-74 AKS-74
AKS-74U
AK-101
AK-103
AK-102/104/105
AK-107/108
AN-94 Abakan
AEK-971
OC-14 Groza
AS Val
SR-3 Vikhr
9A-91
A-91M
APS underwater
Korobov TKB-408
Korobov TKB-517
Korobov TKB-022 new
Baryshev AB-7,62 AVB-7,62
Singapore
CIS SAR-80
CIS SR-88
ST Kinetics SAR-21
South Africa
Vector CR-21
South Korea
Daewoo K1 & K2
Spain
CETME mod. A, B, 58 and C
CETME mod. L and LC
Sweden
Bofors AK5
Interdynamics MKS
Interdynamics MKR
Switzerland
SIG 510 / Stgw.57
SIG 540 / 542 / 543
SIG 550 / 551 / 552
Taiwan
T65 T86 T91
Ukraine
Vepr
USA
Armalite AR-10
M14
M16 M16A1 M16A2
Colt CAR-15 XM-177
Colt M4 M4A1
Stoner 63
TRW LMR
Bushmaster M17s
Ruger AC-556 Mini 14GB
Armalite AR-18
XM8
XM29 OICW
RobArm M96 XCR
FN Mk.16 Mk.17 SCAR

all texts and some pictures
copyright © 1999-2008
by Max R. Popenker
and can not be used without author permission

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Steyr ACR - Advanced Combar Rifle (Austria)


Steyr ACR


Steyr ACR layout shematic


Steyr ACR action drawing from Steyr patent
gas piston in forward position, breech block with chamber in upper position

Caliber: 5.6 mm fleschette
Action: Gas operated, rising breech
Overall length: mm
Barrel length: 540 mm
Weigth: 3.23 kg w/o magazine
Rate of fire: rounds per minute
Magazine capacity: 24 rounds

The Advanced Combat Rifle program was started by the US Army in the late 1980s with the main goal to improve the hit probability of average infantry soldier by at least 100 percents above the M16A2 capabilities. During this trials, held in the early 1990s, some new and existing designs from several companies were tested, with more or less sucess, but no one achieved the 100% improvement in hit probablility over the existing M16 rifle, so program was terminated and all participating designs were freezed, which is pity. One of the most interesting participants was a design of the austrian company Steyr-Mannlicher AG.

The Steyr ACR was built as an attempt to revive the fleschette ammunition concept, first tried in the 1960s during US Army SPIW program. In 1960s, the fleschette concept was a failure. In 1990s, it was much more sucessful, but not enough to be worth of total rearming to the new infantry weapon system.

Steyr ACR is built around a specially designed cartridge of nominal caliber of 5.56mm. This cartridge has simple, cylindrically shaped plastic case. The fleschette, or dart, is totally enclosed in the case. Fleschette diameter is about 1.5 mm (.06 inch), lenght is about 41 mm (1.6 inch), weight 0.66 gramm (10 grains). Fleschette is partially enclosed into discarding sabot, and leaves the muzzle at impressive velocity of 1450 meters per second (4750 fps), still retaining velocity of 910 m/s (2980 fps) at the range of 600 meters. The plastic case had no rim or extracting groove, and priming compound is located annually at the inside wall of the case.

To fire such uncommon cartridge, Steyr ACR has equally uncommon design. Barrel of nominal caliber of 5.56mm, has a very slow rifling to give initial stabilisation to the fleschette, which is stabilised in flight by its own small fins. Instead of common linear-moving bolt, Steyr ACR have separate chamber (breech block), which can be moved up and down. The whole action is powered by gas drive, which has annual gas piston, located around the barrel. To understand this system i will explain how it works:
at first, lets suppose that chamber is empty and rifle is manually cocked for the first shot. In this position the chamber block is its lowest position, aligned with the topmost round in magazine. The gas piston with its operating rod is in its rearmost position and under the pressure of the return spring. When trigger is pressed, the operating rod with gas piston are released and started forward under the pressure of the return spring, which is located around the barrel. This movement, at first, via special rammer, feeds the first round forward from magazine and into the chamber, and then, via shaped cam and breech block spring, rises the breech block with the cartridge into the topmost position. In this position the fixed firing pin passes through the hole in the top of the chamber and penetrates the cartridge wall, igniting the primer composition and firing the round. When projectile (fleschette with sabot) passes the gas port, some of powder gases began to move the gas piston back. This movement, via the operating rod and shaped cam, loweres the breech block with empty case out of alignment with barrel and down to the magazine. When breech comes to stop in the lowest position, a separate rammer feeds next cartridge forward and out of magazine, chambering it. At the same time, the fired case is pushed forward out of the chamber by the next cartridge, and when cleared from the chamber, the spent case simply falls down out of the rifle via the ejection port. The ejection port is located at the bottom of the rifle, ahead of magazine, and this eliminates one of the biggest problems of any bull-pup rifle - a non-ambidextrous (or, in this case - fully ambidextrous) ejection.

If rifle is set to the full auto mode, the firing cycle is repeated as descibed above. Otherwise, the loaded breech remains in its lowest position, awaiting for the next trigger pull.

This quite comprehensive action was concealed in sleek and comfortable polymer case with AUG-styled pistol grip and large ventilated upper rib with fixed sights. Optical sights also were fitted. Due to extremely high projectile velocity, flight time was very short at any practical ranges, and trajectory was wery flat, giving the shooter almost ray-gun performance, which allowed to fire withouth prior calculations of point of impact - speaking simply, at any practical combat ranges shooter will hit where it aimed, regardless target movements (projectile flight time to the target at 300 meters is about 0.2 seconds). Due to high velocity, Steyr ACR had good killing power and armour piercing capablities, and due to the low weight of the projectile recoil was low. But it was not enough to double the M16 performance, so, for now, the Steyr ACR remains in prototype or preproductional state and the program is freezed if not abandoned at all.

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