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THE THREE-DIMENSIONAL STRESS INTENSITY FACTOR UNDER MOVING LOADS ON THE CRACK FACES
作者姓名:Li  Xiangping  Liu  Chuntu
作者单位:Institute of Mechanics,Academia Sinica.Beijing,100080,P.R.China
基金项目:the National Natural Science Foundation of China
摘    要:The dynamic stress intensity factor history for a half plane crack in anotherwise unbounded elastic body,with the crack faces subjected to a tractiondistribution consisting of two pairs of combined mode point loads that move in adirection perpendicular to the crack edge is considered.The analytic expression for thecombined mode stress intensity factors as a function of time for any point along thecrack edge is obtained.The method of solution is based on the application of integraltransform together with the Wiener-Hopf technique and the Cagniard-de Hoop method.Some features of the solution are discussed and graphical results for various point loadspeeds are presented.

收稿时间:1 February 1993

THE THREE-DIMENSIONAL STRESS INTENSITY FACTOR UNDER MOVING LOADS ON THE CRACK FACES
Li Xiangping Liu Chuntu.THE THREE-DIMENSIONAL STRESS INTENSITY FACTOR UNDER MOVING LOADS ON THE CRACK FACES[J].Acta Mechanica Solida Sinica,1994,7(1):54-67.
Authors:Li Xiangping Liu Chuntu
Institution:(1) Institute of Mechanics, Academia Sinica, 100080 Beijing, P. R. China
Abstract:The dynamic stress intensity factor history for a half plane crack in an otherwise unbounded elastic body,with the crack faces subjected to a traction distribution consisting of two pairs of combined mode point loads that move in a direction perpendicular to the crack edge is considered.The analytic expression for the combined mode stress intensity factors as a function of time for any point along the crack edge is obtained.The method of solution is based on the application of integral transform together with the Wiener-Hopf technique and the Cagniard-de Hoop method. Some features of the solution are discussed and graphical results for various point load speeds are presented.
Keywords:Moving loads A half plane crack combined mode dynamic stress intensity factor
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