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非冲击点火质量惯性约束装药燃烧反应演化模型研究

潘传鱼 黄熙龙 李平 李涛 傅华 尚海林

爆炸与冲击2026,Vol.46Issue(2):11-22,12.
爆炸与冲击2026,Vol.46Issue(2):11-22,12.DOI:10.11883/bzycj-2024-0404

非冲击点火质量惯性约束装药燃烧反应演化模型研究

Investigation on combustion reaction evolution model of charge with mass inertia constraint via non-shock ignition

潘传鱼 1黄熙龙 1李平 1李涛 1傅华 1尚海林1

作者信息

  • 1. 中国工程物理研究院流体物理研究所冲击波物理与爆轰物理全国重点实验室,四川 绵阳 621999
  • 折叠

摘要

Abstract

To develop an engineering model based on the physical mechanism of the non-shock initiation reaction of structural charge,which can be used to describe the reaction evolution process and quantify the reaction intensity for evaluating weapons and ammunition safety.Considering the cavity expansion volume,a constrained charge combustion reaction evolution model was established in this paper,with fracture toughness and reaction pressure as the main parameters based on the main control mechanism of charge reaction crack propagation,which can describe the combustion gaseous product pressurization and shell constraint strength during combustion evolution.Relevant details for the control model establishment process were given.The model reliability of confined charge reaction combustion evolution was verified via the experiments of PBX-3(87%HMX)explosive combustion reaction evolution under mass inertial confinement.The mass velocity time was recorded by PDV(photonic Doppler velocimetry)transducers,the pressure-time profiles were recorded via pressure transducers,and the experimental process was captured via a high-speed camera.The experimental results were compared with calculated results from the control model proposed in this work.The results show that the reaction pressurization process calculated via the model is roughly consistent with the pressure-increasing trend in the experiment(calculated by the mass velocity).The control model considering the structural venting effect can reflect the competition mechanism between combustion gas pressurization and venting in the pressure-increasing process,and the relationship between the pressure-increasing trend and the vent coefficient is in line with the mechanism analysis expectation.The results can support deepening the understanding of the accidental explosive combustion reaction evolution mechanism.

关键词

非冲击点火/燃烧演化/质量惯性约束/模型验证/燃烧裂纹

Key words

non-shock ignition/combustion evolution/mass inertia constraint/model verification/burning crack

分类

数理科学

引用本文复制引用

潘传鱼,黄熙龙,李平,李涛,傅华,尚海林..非冲击点火质量惯性约束装药燃烧反应演化模型研究[J].爆炸与冲击,2026,46(2):11-22,12.

基金项目

国家自然科学基金(12402445) (12402445)

国防基础稳定支持项目(JCKYS2024212108) (JCKYS2024212108)

冲击波物理与爆轰物理全国重点实验室基金(2024CXPTGFJJ06404) (2024CXPTGFJJ06404)

爆炸与冲击

1001-1455

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