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.177口径空心点气枪子弹的能量依赖性膨胀。

Energy-dependent expansion of .177 caliber hollow-point air gun projectiles.

作者信息

Werner Ronald, Schultz Benno, Bockholdt Britta, Ekkernkamp Axel, Frank Matthias

机构信息

Landeskriminalamt Brandenburg (LKA BB), Forensic Institute, Tramper Chaussee 1, 16225, Eberswalde, Germany.

Department of Legal Medicine, University Medicine Greifswald, Kuhstraße 30, 17489, Greifswald, Germany.

出版信息

Int J Legal Med. 2017 May;131(3):685-690. doi: 10.1007/s00414-016-1528-8. Epub 2017 Jan 11.

Abstract

Amongst hundreds of different projectiles for air guns available on the market, hollow-point air gun pellets are of special interest. These pellets are characterized by a tip or a hollowed-out shape in their tip which, when fired, makes the projectiles expand to an increased diameter upon entering the target medium. This results in an increase in release of energy which, in turn, has the potential to cause more serious injuries than non-hollow-point projectiles. To the best of the authors' knowledge, reliable data on the terminal ballistic features of hollow-point air gun projectiles compared to standard diabolo pellets have not yet been published in the forensic literature. The terminal ballistic performance (energy-dependent expansion and penetration) of four different types of .177 caliber hollow-point pellets discharged at kinetic energy levels from approximately 3 J up to 30 J into water, ordnance gelatin, and ordnance gelatin covered with natural chamois as a skin simulant was the subject of this investigation. Energy-dependent expansion of the tested hollow-point pellets was observed after being shot into all investigated target media. While some hollow-point pellets require a minimum kinetic energy of approximately 10 J for sufficient expansion, there are also hollow-point pellets which expand at kinetic energy levels of less than 5 J. The ratio of expansion (RE, calculated by the cross-sectional area (A) after impact divided by the cross-sectional area (A ) of the undeformed pellet) of hollow-point air gun pellets reached values up of to 2.2. The extent of expansion relates to the kinetic energy of the projectile with a peak for pellet expansion at the 15 to 20 J range. To conclude, this work demonstrates that the hollow-point principle, i.e., the design-related enlargement of the projectiles' frontal area upon impact into a medium, does work in air guns as claimed by the manufacturers.

摘要

在市场上可供气枪使用的数百种不同弹丸中,空尖气枪铅弹格外引人关注。这些铅弹的特点是其尖端呈中空形状,发射时,弹丸进入目标介质后会膨胀至更大直径。这会导致能量释放增加,进而有可能造成比非空尖弹丸更严重的伤害。据作者所知,与标准空竹形铅弹相比,关于空尖气枪弹丸终端弹道特征的可靠数据尚未在法医学文献中发表。本研究的主题是将四种不同类型的.177口径空尖铅弹以大约3焦耳至30焦耳的动能水平射入水、弹道明胶以及覆盖有天然麂皮作为皮肤模拟物的弹道明胶中,观察其终端弹道性能(能量依赖型膨胀和穿透)。将测试的空尖铅弹射入所有研究的目标介质后,均观察到了能量依赖型膨胀。虽然一些空尖铅弹需要大约10焦耳的最小动能才能充分膨胀,但也有空尖铅弹在低于5焦耳的动能水平下就会膨胀。空尖气枪铅弹的膨胀率(RE,通过撞击后的横截面积(A)除以未变形铅弹的横截面积(A)计算得出)达到了高达2.2的值。膨胀程度与弹丸的动能相关,在15至20焦耳范围内铅弹膨胀达到峰值。总之,这项工作表明,空尖原理,即弹丸撞击介质时因设计而使前端面积增大,在气枪中确实如制造商所宣称的那样起作用。

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