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低速到中速速度冲击加载下 PBXs 的机械和点火-爆轰响应的数值模拟。

Numerical simulations of mechanical and ignition-deflagration responses for PBXs under low-to-medium-level velocity impact loading.

机构信息

State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, PR China.

State Key Laboratory of Explosion Science and Technology, Beijing Institute of Technology, Beijing 100081, PR China.

出版信息

J Hazard Mater. 2017 Sep 5;337:148-162. doi: 10.1016/j.jhazmat.2017.05.008. Epub 2017 May 8.

DOI:10.1016/j.jhazmat.2017.05.008
PMID:28521204
Abstract

An effective computational model is required to accurately predict the dynamic responses in accidental initiations of explosives. The present work uses a series of two-dimensional mechanical-chemical simulations performed via a hydrodynamic-code, DREXH-2D, to efficiently describe the mechanical and ignition-deflagration responses of cased cylindrical polymer-bonded explosives (PBXs) undergoing a low-to-medium-level impact (70-350m/s) in longitudinal direction. The ignition response was predicted based on an ignition criterion of effective plastic work. Slow burning and its growth to deflagration were described through a pressure-dependent reaction rate equation. The extreme value of effective plastic work was found to be useful to determine the ignition threshold velocity for PBXs. For low-level velocity impact, the incident stress wave reflection from lateral surfaces contributed to the formation of ignition regions. After the ignition, the deflagration was induced in the medium-level impact, and its violence was related to the shock strength. However, the low-strength stress wave only induced reaction at local regions, and sequent burning was no longer sensitive to the strength of incident wave. The predicted pressure and temperature results of PBXs were consistent with the medium-level impact tests performed by China Academy of Engineering Physics.

摘要

需要一个有效的计算模型来准确预测爆炸物意外引发时的动态响应。本工作使用通过流体动力学代码 DREXH-2D 进行的一系列二维机械化学模拟,以有效地描述在纵向方向上经历低到中等水平冲击(70-350m/s)的带壳圆柱形聚合物结合炸药(PBX)的力学和点火-爆轰响应。点火响应是基于有效塑性功的点火判据来预测的。慢燃及其增长到爆轰通过压力相关的反应速率方程来描述。发现有效塑性功的极值可用于确定 PBX 的点火阈值速度。对于低水平速度冲击,来自侧面的入射应力波反射有助于形成点火区域。点火后,在中等水平冲击下引发爆轰,其剧烈程度与冲击波强度有关。然而,低强度的应力波仅在局部区域引起反应,随后的燃烧对入射波的强度不再敏感。 PBX 的预测压力和温度结果与中国工程物理研究院进行的中等水平冲击测试一致。

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引用本文的文献

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Experimental and Numerical Investigation of Dynamic Damage and Load Transfer of PBX Substitute Material under Low Velocity Impact.PBX替代材料在低速冲击下动态损伤与载荷传递的实验与数值研究
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