混合模式加载下平面界面裂纹应力强度因子的变化

Chun-hui Xu, N. Noda, Y. Takase
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引用次数: 4

摘要

本文以体力法为基础,利用奇异积分方程对三维双材料的混合模式界面裂纹进行了分析。在数值分析中,未知的体力密度近似为基本密度函数与幂级数的乘积,其中选择基本密度函数来准确表达二维界面裂纹。结果表明,该方法能较准确地得到混合模态应力强度因子沿裂纹前沿的平滑变化。在此基础上,讨论了裂纹形状对三维界面裂纹应力强度因子的影响。然后,发现应力强度因子KII和KIII对剪切模量的变化不敏感,且仅由泊松比决定。应力强度因子随矩形形状和泊松比的变化以表格和图形表示。
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Variations of Stress Intensity Factors of a Planar Interfacial Crack Subjected to Mixed Mode Loading
In this paper, a mixed-mode interfacial crack in three dimensional bimaterials is analyzed by singular integral equations on the basis of the body force method. In the numerical analysis, unknown body force densities are approximated by the products of the fundamental density functions and power series, where the fundamental density functions are chosen to express a two-dimensional interface crack exactly. The results show that the present method yields smooth variations of mixed mode stress intensity factor along the crack front accurately. The effect of crack shape on the stress intensity factor for 3D interface cracks is also discussed on the basis of present solution. Then, it is found that the stress intensity factors KII and KIII are always insensitive to the varying ratio of shear modulus, and determined by Poisson's ratio alone. Distributions of stress intensity factor are indicated in tables and figures with varying the rectangular shape and Poisson's ratio.
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