冲击加载下孔洞形成微射流的最大侵彻深度

Maximal Penetration Depth of Micro-jet from Void Under Shock Loading

  • 摘要: 应用二维弹塑性流体力学欧拉程序MEPH,研究冲击载荷作用下孔洞形成的微射流.主要关注孔洞微射流的形成过程,重点分析冲击压力及孔洞半径等因素对于孔洞微射流最大侵彻深度的影响.分析孔洞塌缩形成射流的空间速度分布特征,并应用非定常射流理论,对不同冲击压力及孔洞半径条件下,微射流的最大侵彻深度进行估算,估算结果与数值模拟结果符合较好.

     

    Abstract: A two-dimensional elastic plastic hydrodynamics Eulerian code MEPH is applied to simulate micro-jet formation and penetration process of void in sample during shock loading.We focused on forming process of micro-jet.Maximal penetration depth versus key factors such as shock pressure and void diameter is analysed.Theoretical jet penetration is compared with numerical simulations of maximal penertration depth.

     

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