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高速撕裂射流的动能演化与损伤评估

Kinetic energy evolution and injury assessment of high-speed tear jets.

作者信息

Yang Guang-Ming, Li Hai-Peng, Wang Zheng, Zhao Yong-Sheng

机构信息

The Third Research Institute of the Ministry of Public Security, Shanghai, 200031, PR China.

, No.76 Yueyang Road, Shanghai, PR China.

出版信息

Forensic Sci Med Pathol. 2025 Feb 15. doi: 10.1007/s12024-025-00969-x.

Abstract

High-speed tear liquid ejectors, as novel less-lethal weapons, demonstrate significant potential in public security, counter-terrorism, and riot control applications. However, critical gaps persist in understanding their kinetic energy dissipation dynamics and associated injury risks, particularly when using traditional specific kinetic energy methods. Therefore, this study establishes an integrated experimental framework combining transient trajectory acquisition systems, ballistic gelatin targets, and dynamic impact force measurements. Key findings reveal that as the launch distance varies from 10 cm, 30 cm to 100 cm, and 200 cm, the trajectory transitions from a coherent stream to dispersed filaments with unstable energy density evolution. Initially, the jet velocity rises from 93.3 m/s to 101.1 m/s, then decreases to 91.7 m/s and 80.8 m/s. Additionally, the penetration depth in the ballistic gelatin decreases progressively with launch distance, measuring 91 mm, 80 mm, 38 mm, to 0 mm respectively, and the depths of penetration at 10 and 30 cm are similar to those of a 4.5 mm steel ball at 180 m/s. The transient impact force follows a similar pattern with velocity, first increasing and then decreasing, to 464 N, 518 N, 95 N, and 48 N respectively, underscoring potential injury risks within 100 cm ranges. This work establishes a framework for evaluating high-speed jet injuries and informs safety protocols for less-lethal weapon deployment.

摘要

高速泪液喷射器作为新型非致命武器,在公共安全、反恐和防暴应用中显示出巨大潜力。然而,在理解其动能耗散动态和相关伤害风险方面仍存在关键差距,特别是在使用传统比动能方法时。因此,本研究建立了一个综合实验框架,结合瞬态轨迹采集系统、弹道凝胶靶和动态冲击力测量。主要发现表明,随着发射距离从10厘米、30厘米变化到100厘米和200厘米,轨迹从连贯的液流转变为分散的细丝,能量密度演化不稳定。最初,喷射速度从93.3米/秒上升到101.1米/秒,然后降至91.7米/秒和80.8米/秒。此外,在弹道凝胶中的穿透深度随发射距离逐渐减小,分别为91毫米、80毫米、38毫米和0毫米,在10厘米和30厘米处的穿透深度与180米/秒的4.5毫米钢球相似。瞬态冲击力与速度遵循相似模式,先增加后减小,分别为464牛、518牛、95牛和48牛,突出了100厘米范围内的潜在伤害风险。这项工作建立了一个评估高速喷射伤害的框架,并为非致命武器部署的安全协议提供了参考。

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