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A numerical exploration of the role of void geometry on void collapse and hot spot formation in ductile materials

机译:孔洞几何形状对延性材料中孔洞塌陷和热点形成作用的数值研究

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An Eulerian hydrocode was used to simulate the dynamic void collapse in OFHC copper, modeled with the Johnson-Cook (Johnson, G.R., Cook, W.H., 1985. Engineering Fracture Mechanics 21(1), 31) material model and the Cruneisen equation of state, to study hot spot formation and jetting. The computational techniques were first validated by a comparison to a series of two-dimensional experiments. The effect of the planar and axisymmetric geometries on the hot spot temperature and jet velocity in circular voids is explored. In addition, the effect of the apex angle in triangular voids on jetting and hot spot formation is studied. An effective apex angle for the highly nonspherical voids formed in closely packed circular particles is calculated. (C) 2000 Published by Elsevier Science Ltd. All rights reserved. [References: 14]
机译:使用Johnson-Cook(Johnson,GR,Cook,WH,1985.工程断裂力学21(1),31)材料模型和Cruneisen状态方程,使用欧拉水压法来模拟OFHC铜中的动态空隙塌陷。 ,研究热点的形成和喷射。首先通过与一系列二维实验的比较来验证计算技术。探索了平面和轴对称的几何形状对圆形孔隙中热点温度和射流速度的影响。另外,研究了三角形空隙中顶角对喷射和热点形成的影响。计算在紧密堆积的圆形颗粒中形成的高度非球形空隙的有效顶角。 (C)2000由Elsevier Science Ltd.出版。保留所有权利。 [参考:14]

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