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An effective method of stress intensity factor calculation for cracks emanating from a triangular or square hole under biaxial loads

机译:计算双轴载荷下三角形或正方形孔产生的裂纹的应力强度因子的有效方法

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This paper is concerned with stress intensity factors for cracks emanating from a triangular or square hole under biaxial loads by means of a new boundary element method. The boundary element method consists of the constant displacement discontinuity element presented by Crouch and Starfied and the crack-tip displacement discontinuity elements proposed by the author. In the boundary element implementation, the left or the right crack-tip displacement discontinuity element is placed locally at the corresponding left or right crack tip on top of the constant displacement discontinuity elements that cover the entire crack surface and the other boundaries. The method is called a Hybrid Displacement Discontinuity Method (HDDM). Numerical examples are included to show that the method is very efficient and accurate for calculating stress intensity factors for plane elastic crack problems. In addition, the present numerical results can reveal the effect of the biaxial loads on stress intensity factors.
机译:本文通过一种新的边界元方法研究了在双轴载荷下三角形或方形孔产生的裂纹的应力强度因子。边界元法由Crouch和Starfied提出的恒定位移不连续性单元和作者提出的裂纹尖端位移不连续性单元组成。在边界元素实现中,左或右裂纹尖端位移不连续元素局部放置在覆盖整个裂缝表面和其他边界的恒定位移不连续元素顶部的相应左或右裂纹尖端。该方法称为混合位移不连续性方法(HDDM)。数值算例表明,该方法对于计算平面弹性裂纹问题的应力强度因子非常有效且准确。此外,目前的数值结果可以揭示双轴载荷对应力强度因子的影响。

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