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作 者:孙宝平[1] 段卓平[1] 皮爱国[1] 欧卓成[1] 黄风雷[1]
机构地区:[1]北京理工大学爆炸科学与技术国家重点实验室,北京100081
出 处:《爆炸与冲击》2012年第3期225-230,共6页Explosion and Shock Waves
基 金:国家自然科学基金项目(10832003;11076032);国家安全重大基础研究项目(61383)~~
摘 要:对侵彻过程中内部装药轴向应力和变形进行理论分析,并考虑装药的弹塑性变形,得到轴向应力和形变量沿着装药轴向分布函数,以内壁与装药摩擦生热和热传导为基础,得到装药温度的分布曲线、最高温度在装药中的相对位置。计算结果表明,装药最高温升以及最高温升在装药中的位置与炸药的物性参数、装药长度和过载最大值相关,临界装药长度可作为弹体装药设计的参考,计算结果为弹体侵彻过程中的装药设计和安全性分析提供理论依据。The axial stress and the axial deformation of the charge explosive in a projectile was theoretically analyzed during the penetration process.The corresponding distribution functions along the axis of the charge explosive were attained by considering the elastic and plastic deformation of the charge explosive.Based on the friction-induced heat as well as the heat conduction,the temperature distribution along the axis of the charge explosive was obtained.Calculated results show that the maximum temperature rise and its location in the charge explosive are dependent on the charge length and the overload peak in addition to the physical property parameters of the explosive.The calculated critical charge length can be taken as a reference for the charge design.This investigation can provide a theoretical basis for the charge design and the safety analysis in the engineering practice of the projectile penetration.
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