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Modelling on Shock-Induced Energy Release Behavior of Reactive Materials considering Mechanical-Thermal-Chemical Coupled Effect

机译:考虑机械热化学耦合效应的反应材料震动能量释放行为的建模

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摘要

Reactive material (RM) is a new type of energetic material, which is widely used in the military technology fields such as fragmentation warheads and shaped charge warheads. Violent chemical reactions take place in the impact process of reactive materials, and how to realize the macro numerical simulation of shock-induced energy release behavior of reactive materials is one of the most urgent problems to be solved for its future military applications. In this study, a numerical simulation approach and procedure is proposed, which can simulate the shock-induced energy release behavior of reactive materials on a macro scale. Firstly, program implementation of the mechanical-thermal-chemical coupled effect model for RM is realized in the second-development interface of LS-DYNA software. Then, the adaptive simulated annealing algorithm is used to fit the chemical reaction kinetic parameters of RM using the direct ballistics test data. Finally, the simulation calculation of the fragment penetrating upon steel plate is carried out to expand the applicability of the numerical simulation approach proposed in this study. The results show that the numerical simulation approach proposed in this study can reproduce the results of the direct ballistics test more accurately, which assumes practical significance for the engineering application of reactive materials in the military field in the future.
机译:反应材料(RM)是一种新型的能量材料,广泛用于军事技术领域,如碎片弹头和形状的电荷弹头。剧烈的化学反应发生在反应材料的影响过程中,以及如何实现反应材料的冲击诱导的能量释放行为的宏观数值模拟是其未来军事应用的最紧迫问题之一。在该研究中,提出了一种数值模拟方法和程序,其可以模拟反应材料对宏观尺度的冲击诱导的能量释放行为。首先,在LS-DYNA软件的第二开发界面中实现了RM机械热化学耦合效果模型的程序实现。然后,使用直接弹道测试数据来使用自适应模拟退火算法来适应RM的化学反应动力学参数。最后,进行了穿透钢板的片段的模拟计算,以扩大本研究中提出的数值模拟方法的适用性。结果表明,该研究提出的数值模拟方法可以更准确地再现直接弹道仪测试的结果,这对未来军事领域的反应材料工程应用造成了现实意义。

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