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INTERIOR BALLISTICS SIMULATIONS OF THE TWO CHAMBERS GLMAV LAUNCHER

机译:两个CHAMBERS GLMAV发射器的内部弹道模拟

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A Micro Air Vehicle (MAV) packaged in a projectile is launched using the energy delivered by a portable weapon. When it reaches the apogee the projectile is transformed in such a way that the MAV becomes operational over the zone to be observed. A light projectile of 80 mm caliber has to be launched with a low velocity. To achieve these velocities a very low pressure in the tube is needed. Hence the GLMAV launcher is designed as a two chambers system. Propellants and igniter are enclosed in a small high-pressure canister, which is connected to the tube with the projectile (low pressure chamber) by vent holes. The charge consists of two propellants in partially separated volumes; the fast burning GB propellant ignites the slow burning L1 propellant. The interior ballistics of the GLMAV launcher is solved by the zero dimensional model STANAG 4367 with an extension for the two chambers system. Calculated pressures in the high and low pressure chamber and the muzzle velocities are compared with ISL measurements. Although the used theoretical model cannot describe correctly all specific features of the GLMAV launcher, the differences between the calculated and measured maximum values are up to 10%.
机译:装在弹丸中的微型飞行器(MAV)使用便携式武器传递的能量发射。当它到达最高点时,弹头将进行转换,以使MAV在要观察的区域上开始工作。必须以较低的速度发射80毫米口径的轻弹。为了达到这些速度,需要管中的压力非常低。因此,GLMAV发射器设计为两室系统。推进剂和点火器封装在一个小的高压罐中,该高压罐通过排气孔与带有弹丸的管道(低压腔)相连。装药由部分分离体积的两种推进剂组成。快速燃烧的GB推进剂点燃了缓慢燃烧的L1推进剂。 GLMAV发射器的内部弹道由零尺寸STANAG 4367模型解决,该模型带有两室系统的扩展名。高压腔和低压腔中的计算压力以及枪口速度与ISL测量值进行了比较。尽管使用的理论模型无法正确描述GLMAV发射器的所有特定功能,但计算出的最大值和测量出的最大值之间的差异高达10%。

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