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基于Archard理论分析弹体质量侵蚀
引用本文:郭磊,何勇,张年松,庞春旭,郑浩.基于Archard理论分析弹体质量侵蚀[J].爆炸与冲击,2014,34(5):622-629.
作者姓名:郭磊  何勇  张年松  庞春旭  郑浩
作者单位:南京理工大学智能弹药技术国防重点学科实验室,江苏 南京 210094
基金项目:国家自然科学基金项目,爆炸冲击防灾减灾国家重点实验室开放基金项目,the National Natural Science Foundation of China
摘    要:基于模具与工件磨损中的Archard粘着磨损理论,分析弹体表面微粒的细观塑性变形,建立弹体质量侵蚀表征模型,运用动态空腔膨胀理论得到弹体表面应力,再通过差分计算得到高速侵彻中弹体宏观轮廓的钝化回退过程。计算得到的弹体外部轮廓、质量损失及侵彻深度等参数与实验结果基本吻合。结果表明;弹体侵蚀效应对侵彻时间和深度的影响随着撞击速度的增大愈加显著;弹体侵彻过程中最大过载与刚性条件下有较大区别,提高弹体材料的屈服强度能有效减少侵彻过程中弹体的质量损失,提高最终侵彻深度。

关 键 词:爆炸力学    质量侵蚀    Archard理论    弹体    高速侵彻
收稿时间:2013-04-01

On the mass loss of a projectile based on the Archard theory
Guo Lei,He Yong,Zhang Nian-song,Pang Chun-xu,Zheng Hao.On the mass loss of a projectile based on the Archard theory[J].Explosion and Shock Waves,2014,34(5):622-629.
Authors:Guo Lei  He Yong  Zhang Nian-song  Pang Chun-xu  Zheng Hao
Institution:Ministerial Key Laboratory of ZNDY, Nanjing University of Science and Technology, Nanjing 210094, Jiangsu, China
Abstract:Based on the Archard's theory, a mass abrasion model for the projectile was proposed by using the multi-scale method of analyzing from the microscopic plastic deformation to the macroscopic mass loss of the projectile.In combination of the dynamic spherical cavity-expansion theory of the concrete materials and the abrasion model, the receding displacement of the point on the projectile surface was obtained.Thereby, the calculation results such as the shape of the projectile, the depth of penetration, the mass loss of the projectile, and so on, are consistent with the experimental results.Results show that the mass loss of the projectile has a great influence on the time and depth of the penetration with increasing impact velocity in the penetration process.The overload encountered by the projectile during the penetration is different from that of the rigid one.Improving the yield strength of the projectile can effectively reduce its mass loss and increase its depth of penetration.
Keywords:mechanics of explosion  mass loss  Archard theory  projectile  high velocity penetration
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