火力与指挥控制2024,Vol.49Issue(2) :26-32.DOI:10.3969/j.issn.1002-0640.2024.02.004

复合型非致命动能弹冲击能量耗散特性数值模拟

Numerical Simulation of Energy Dissipation Characteristics of Compound Non-lethal Kinetic Energy Projectile Impact

孙映斌 汪送 乔玲龙
火力与指挥控制2024,Vol.49Issue(2) :26-32.DOI:10.3969/j.issn.1002-0640.2024.02.004

复合型非致命动能弹冲击能量耗散特性数值模拟

Numerical Simulation of Energy Dissipation Characteristics of Compound Non-lethal Kinetic Energy Projectile Impact

孙映斌 1汪送 2乔玲龙3
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作者信息

  • 1. 武警工程大学研究生大队,西安 710086
  • 2. 武警工程大学装备管理与保障学院,西安 710086
  • 3. 武警工程大学军事基础教育学院,西安 710086
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摘要

非致命动能弹药应用广泛,传统型非致命动能弹常常发生过度伤害的问题,研发新一代兼具安全性和有效性的复合型非致命动能弹很有必要.为了揭示复合型非致命动能弹致伤机理,评估其对人体的冲击损伤,通过数值模拟的方法,比较传统型非致命动能弹与复合型非致命动能弹以相同速度冲击靶标以及复合型非致命动能弹以不同速度冲击靶标所获得的数据,深入分析复合型非致命动能弹冲击能量耗散特性,为我国自主研发新一代非致命动能弹药提供一定参考.

Abstract

Non-lethal kinetic energy ammunition is widely used.Traditional non-lethal kinetic energy ammunition often causes excessive injury problems.It is necessary to develop a new generation of compound non-lethal kinetic energy ammunition with both safety and effectiveness.In order to reveal the injury mechanism of compound non-lethal kinetic energy and to assess its impact damage to human body,through the numerical simulation,the data are compared and they are obtained from the traditional non-lethal kinetic energy projectile and compound non-lethal kinetic energy projectile impacting targets at the same speed and compound non-lethal kinetic energy projectile impacting target at different speed impacting targets The energy dissipation characteristics of compound non-lethal kinetic energy projectile are deeply analyzed,which provides a certain reference for China to independently research and development the next generation of non-lethal kinetic energy projectile.

关键词

非致命动能弹/复合型/能量耗散/数值模拟

Key words

non-lethal kinetic energy projectile/compound/dissipation of energy/numerical simulation

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基金项目

中国博士后科学基金(2019M664027)

国家自然科学基金(71401179)

陕西省自然科学基础研究计划一般项目(2022JM-049)

出版年

2024
火力与指挥控制
火力与指挥控制研究会,火力与指挥控制专业情报网

火力与指挥控制

CSTPCDCSCD北大核心
影响因子:0.312
ISSN:1002-0640
参考文献量15
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