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首页> 外文期刊>International journal of impact engineering >Application of shell jetting analysis to determine the location of the virtual origin in shaped charges
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Application of shell jetting analysis to determine the location of the virtual origin in shaped charges

机译:壳喷射分析在确定成形装药中虚拟原点的位置中的应用

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摘要

Shaped charges are designed to produce high-velocity jets for penetration. During jet formation, the liner collapses and converges at a point source, also known as the virtual origin (VO), along the distance time plane. The location of the VO must be known to allow the development of penetration analytical models. Here we determined the location of the VO using the ANSYS (R) Autodyn 2D shaped charge jetting technique. Jetting analysis was conducted for two shaped charges of 18 and 32 mm diameter. The explosive and casing were represented by Eulerian two-dimensional finite difference grids, whereas the liner was modelled using a shell formulation. The summary/history of the jetting analysis was used to determine the VO position in the shaped charges. Interpolating the point of intersection on the liner between the jet velocity (U-Jet) and the cumulative jet mass revealed the location of the VO at a distance equivalent to approximately two-thirds of the inner cone diameter of the shaped charges, in agreement with earlier studies based on different methods. Validation of this technique using the DiPersio, Simon and Merendino (DSM) model based on the Allison-Vitalli equation also showed good agreement with the numerical results.
机译:聚能射孔弹的设计目的是产生高速射流以便穿透。在射流形成过程中,内衬沿距离时间平面在一个点源(也称为虚拟原点(VO))处收缩并会聚。必须知道VO的位置,以便开发渗透分析模型。在这里,我们使用ANSYS(R)Autodyn 2D成形电荷喷射技术确定了VO的位置。对两个直径为18和32 mm的成形装药进行喷射分析。炸药和套管用欧拉二维有限差分网格表示,而衬管则使用壳模型来建模。喷射分析的总结/历史被用来确定成形装药中的VO位置。在衬管上的射流速度(U-Jet)和累积射流质量之间的交点进行插值,可以得出VO的位置大约等于成形装药的内锥直径的三分之二,与基于不同方法的早期研究。使用基于Allison-Vitalli方程的DiPersio,Simon和Merendino(DSM)模型对该技术进行的验证也显示出与数值结果的良好一致性。

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