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膨胀型手枪子弹。

Expanding handgun bullets.

作者信息

Padrta J C, Barone J E, Reed D M, Wheeler G

机构信息

Department of Surgery, The Stamford Hospital, Connecticut 06904-9317, USA.

出版信息

J Trauma. 1997 Sep;43(3):516-20. doi: 10.1097/00005373-199709000-00022.

Abstract

BACKGROUND

Many new types of expanding or fragmenting handgun ammunition have been developed. Knowledge of these unusual bullets may aid in the management of patients and their wounds.

METHODS

Eleven different expanding or fragmenting .45 caliber bullets and a nondeforming, full metal jacketed bullet for comparison were fired multiple times from the same handgun into both a water reservoir and ordnance gelatin. Performance was observed and recorded. Muzzle velocities were measured using a chronograph. Bullets were disassembled and cross-sectioned to facilitate inspection.

RESULTS

The distinguishing surface and internal features of each bullet are described. When fired into water and ordnance gelatin, the bullets reliably expanded to 1.49 to 1.89 times their prefired diameters. Rates of kinetic energy loss of bullets of equal mass fired into ordnance gelatin were plotted. Full metal jacketed bullets penetrated twice as deeply as deforming bullets. Jackets of some of the expanding bullets separated when fired into water.

CONCLUSION

Expanding/fragmenting bullets produce larger, shallower wounds than do full metal jacketed bullets. Recognition of the wound and roentgenographic appearances of these unusual bullets will help the trauma surgeon to properly treat gunshot victims. Because of the occurrence of jacket separation in water, ordnance gelatin should be used for optimal evaluation of bullet performance.

摘要

背景

已研发出多种新型膨胀或碎裂手枪弹药。了解这些特殊子弹有助于对患者及其伤口进行处理。

方法

从同一把手枪中多次发射11种不同的.45口径膨胀或碎裂子弹以及一种用于对比的非变形全金属被甲子弹,分别射入蓄水池和弹道明胶中。观察并记录其性能。使用测速仪测量初速。拆解子弹并进行横截面切割以便检查。

结果

描述了每种子弹独特的表面和内部特征。当射入水和弹道明胶时,子弹可靠地膨胀至其发射前直径的1.49至1.89倍。绘制了等质量子弹射入弹道明胶时的动能损失率。全金属被甲子弹的穿透深度是变形子弹的两倍。一些膨胀子弹射入水中时弹壳会分离。

结论

与全金属被甲子弹相比,膨胀/碎裂子弹造成的伤口更大且更浅。识别这些特殊子弹造成的伤口及其X线表现将有助于创伤外科医生妥善治疗枪伤受害者。由于在水中会出现弹壳分离的情况,应使用弹道明胶来最佳地评估子弹性能。

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