Analysis of the Possibility of Elimination of Threats Resulting from the Modification of Bullet Trajectory after Hitting the Target in Garrison Shooting Ranges

Józef Gacek, W. Koperski, B. Marciniak, R. Woźniak, D. Tymiński, Ewa Morzyk, Konrad Suska, Przemysław Sidelnik, Przemysław Lewandowski
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Abstract

. During shooting operations in garrison shooting ranges, a phenomenon of random deflection of the bullet flight path was noticed which may cause secondary reflections from accidentally hit technical and ballistic shooting range elements and the ground of the actual plane of the shooting range (ricochets posing a threat to people and property within the shooting range and safety zones). Minimisation of this phenomenon must be considered during the design and operation of the shooting ranges. In 20202022 the Military Institute of Armament Technology (Zielonka, Poland) carried out tests with the aim of determining the impact of the shooting target or military target material or design (hereinafter referred to as the targets) on the risk of occurrence of modifications of bullet trajectory that cause the bullets to leave the shooting zone. The paper presents example results of these tests that show, but are not limited to, that the reasons to modify the direction of the bullet path after target penetration and any ricochets include: target material (flat or corrugated sheet metal, cardboard, plywood, etc.), target wooden legs, and even metal elements fixing the legs to the target. On the basis of the test it was shown that the metal targets prohibited on intermediate lines may cause significant deflections of the bullet flight path after penetration and dangerous ricochets. Due to the reason presented above, the metal targets are placed on the last line of targets before the main bullet trap only where the technical and ballistic parameters of the bullet trap ensure that any ricochets are captured. It was stated that the contact targets used on intermediate target lines and provided with wooden legs may cause bullet trajectory changes comparable to or even greater than in the case of the prohibited metal targets. To this end it is advisable to establish legal framework covering the ballistic inspection of the target materials to be used in garrison shooting ranges.
驻防射击场子弹命中目标后弹道修正威胁消除的可能性分析
. 在警备射击场射击作业中,注意到子弹飞行轨迹随机偏转的现象,这种现象可能会引起误射射击场技术和弹道元件与射击场实际平面地面的二次反射(弹跳对射击场和安全区内的人员和财产构成威胁)。在射击场的设计和操作过程中,必须考虑将这种现象最小化。20202022年,军备技术军事研究所(波兰Zielonka)进行了试验,目的是确定射击目标或军用目标材料或设计(以下简称目标)对发生导致子弹离开射击区域的子弹轨迹变化的风险的影响。本文给出了这些测试的示例结果,这些结果表明,但不限于,在目标穿透和任何反弹后改变子弹路径方向的原因包括:目标材料(扁平或波纹金属板,纸板,胶合板等),目标木腿,甚至将腿固定在目标上的金属元件。在试验的基础上表明,中间线上禁止的金属靶在穿深后会引起子弹飞行轨迹的明显偏转和危险的弹跳。由于上述原因,金属目标被放置在主子弹陷阱之前的最后一行目标上,只有在子弹陷阱的技术和弹道参数确保任何弹跳都被捕获的情况下。有人指出,在中间靶线上使用并装有木腿的接触靶可能造成与被禁止的金属靶相当甚至更大的子弹轨迹变化。为此,最好建立一个法律框架,涵盖对驻军射击场使用的靶材进行弹道检查。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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