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Comparison of ballistic impact effects between biological tissue and gelatin

机译:生物组织与明胶之间的弹道撞击效应的比较

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摘要

Abstract Gelatin is commonly used in ballistic testing as substitute for biological tissue. Comparison of ballistic impact effects produced in the gelatin and living tissue is lacking. The work in this paper was aimed to compare the typical ballistic impact effects (penetration trajectory, energy transfer, temporary cavity) caused by 4.8mm steel ball penetrating the 60kg porcine hind limbs and 10wt% gelatin. The impact event in the biological tissue was recorded by high speed flash X-ray machine at different delay time, while the event in the gelatin continuously recorded by high speed video was compared to that in the biological tissue. The collected results clearly displayed that the ballistic impact effects in the muscle and gelatin were similar for the steel ball test; as for instance, the projectile trajectory in the two targets was basically similar, the process of energy transfer was highly coincident, and the expansion of temporary cavity followed the same pattern. This study fully demonstrated that choosing gelatin as muscle simulant was reasonable. However, the maximum temporary cavity diameter in the gelatin was a little larger than that in the muscle, and the expansion period of temporary cavity was longer in the gelatin. Additionally, the temporary cavity collapse process in the two targets followed different patterns, and the collapse period in the gelatin was two times as long as that in the muscle.
机译:摘要明胶是弹道试验中常用的生物组织替代物。缺乏对明胶和活体组织产生的弹道冲击效应的比较。本文的工作旨在比较4.8mm钢球穿透60kg猪后肢和10wt%明胶的典型弹道撞击效应(穿透弹道、能量传递、临时空腔)。用高速闪光X光机在不同延迟时间记录生物组织中的撞击事件,同时将高速视频连续记录的明胶中的撞击事件与生物组织中的撞击事件进行比较。收集的结果清楚地表明,肌肉和明胶中的弹道冲击效应与钢球试验相似;例如,弹丸在两个目标中的弹道基本相似,能量传递过程高度一致,临时空腔的扩展遵循相同的模式。本研究充分证明,选择明胶作为肌肉模拟物是合理的。然而,明胶中的最大暂时空腔直径略大于肌肉中的最大暂时空腔直径,且明胶中暂时空腔的扩张期较长。此外,两个靶体内的暂时性空腔塌陷过程遵循不同的模式,明胶中的塌陷时间是肌肉中的两倍。

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