首页> 外文期刊>Forensic science international >Dynamic pressure measurement of cartridge operated vole captive bolt devices.
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Dynamic pressure measurement of cartridge operated vole captive bolt devices.

机译:插装式防静电螺栓装置的动态压力测量。

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INTRODUCTION: Vole captive bolt devices are powder actuated spring guns that are used as a pest control mean. After having triggered the explosion of the blank cartridge by touching a metal ring around the muzzle, the vole is killed by the massive propulsion of the gas jet. Improper use and recklessness while handling these devices may cause severe injuries with the hand of the operator at particular risk. Currently, there are no experimental investigations on the ballistic background of these devices. METHODS: An experimental test set-up was designed for measurement of the firing pressure and the dynamic force of the gas jet of a vole captive bolt device. Therefore, a vole captive bolt device was prepared with a pressure take-off channel and a piezoelectric transducer for measurement of the firing pressure. For measurement of the dynamic impact force of the gas jet an annular quartz force sensor was installed on a test bench. Each three simultaneous measurements of the cartridges' firing pressure and the dynamic force of the blast wave were taken at various distances between muzzle and load washer. RESULTS: The maximum gas pressure in the explosion chamber was up to 1100 bar. The shot development over time showed a typical gas pressure curve. Flow velocity of the gas jet was up to 2000 m/s. The maximum impact force of the gas jet at the target showed a strong inverse ratio to the muzzle's distance and was up to 11,500 N for the contact shot distance. Energy density of the gas jet for the close contact shot was far beyond the energy density required for skin penetration. CONCLUSION: The unique design features (short tube between cartridge mouth and muzzle and narrow diameter of the muzzle) of these gadgets are responsible for the high firing pressure, velocity and force of the gas jet. These findings explain the trauma mechanics of the extensive tissue damage observed in accidental shots of these devices.
机译:简介:田鼠固定装置是粉末致动的弹簧枪,用作害虫防治手段。通过触摸枪口周围的金属环而触发了空白弹药筒爆炸后,田鼠被大量喷射气体杀死。操作这些设备时不正确的使用和鲁ck的操作可能会严重伤害操作人员的手。当前,没有关于这些装置的弹道背景的实验研究。方法:设计了一个实验测试装置,用于测量田鼠固定螺栓装置的点火压力和气体射流的动力。因此,制备了具有压力引出通道和压电换能器以测量击发压力的田鼠固定螺栓装置。为了测量气体射流的动态冲击力,在测试台上安装了环形石英力传感器。在枪口和载荷垫圈之间的不同距离处,对弹药筒的发射压力和冲击波的动态力进行每三个同时测量。结果:爆炸室内的最大气压高达1100 bar。随着时间的推移,喷丸发展显示出典型的气压曲线。气体射流的流速高达2000 m / s。气体射流对目标的最大冲击力与枪口距离成反比,并且接触射击距离高达11500N。紧密接触射击的气体射流的能量密度远远超过皮肤渗透所需的能量密度。结论:这些小玩意的独特设计特征(药筒口与枪口之间的短管和枪口的直径狭窄)是造成高发射压力,气体喷射的速度和作用力的原因。这些发现解释了在意外拍摄这些设备时观察到的广泛组织损伤的创伤机理。

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