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圆筒外表面刻环型窄槽底端部应力强度因子K_1的数值计算
引用本文:宋顺成,袁书强,周重光,罗明蔚.圆筒外表面刻环型窄槽底端部应力强度因子K_1的数值计算[J].兵器材料科学与工程,2000,23(1):12-17.
作者姓名:宋顺成  袁书强  周重光  罗明蔚
作者单位:1. 西南交通大学
2. 兵器工业第五二研究所
基金项目:国家自然科学基金;19770242;
摘    要:用数值方法比较了圆筒外表面刻环形窄槽底端部与实心圆柱体中心处圆盘状窄槽底端部的应力分布,证明二者仅差一个常系数,从而以带圆盘状裂纹实心圆柱体的解为基础,给出了圆筒外表面刻环形窄槽底端部应力强度因子K1的有限元分析,为弹丸控制破片刻槽深度和刻槽宽度及弹体材料性能研究提供了重要参考。

关 键 词:圆筒刻槽  有限元  应力强度因子
文章编号:1004-244X(2000)01-0012-06
修稿时间:1999年1月11日

NUMERICAL CALCULATION OF STRESS INTENSITY FACTOR K1 OF BOTTOM-END OF RING-SHAPE THIN GROOVE ON OUTSIDE WALL OF CYLINDER
Song Shuncheng,Yuan Shuqiang,Zhou Chongguang,Luo Mingwei.NUMERICAL CALCULATION OF STRESS INTENSITY FACTOR K1 OF BOTTOM-END OF RING-SHAPE THIN GROOVE ON OUTSIDE WALL OF CYLINDER[J].Ordnance Material Science and Engineering,2000,23(1):12-17.
Authors:Song Shuncheng  Yuan Shuqiang  Zhou Chongguang  Luo Mingwei
Abstract:A numerical method is used on making a comparison of stress distribution between the bottom-end of ring shape thin groove on the outside wall of shell and the bottom end of a disk-shape crack at the center of solid cylinder.The results show there is only the difference of a constant factor between them.Thereby on the basis of the solution of solid cylinder with disk shape crack,the finite element analysis of the stress intensity factor K 1 of the bottom end of ring-shape thin groove on the outside wall of shell was given.It provides important theoretical basis for the design of width and depth of grooving of controlled fragment of projectile and the study of projectile material properties.
Keywords:shell with groove  finite element method  stress intensity factor
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