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Determination of histories of SIF distributions for axial semi-elliptical surface cracks in hollow cylinders subjected to thermal shock

机译:确定中空圆柱在热冲击下轴向半椭圆形表面裂纹的SIF分布历史

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摘要

The basic equations for a 3D thermal weight function method for Mode I are derived. A novel technique, referred to as the multiple virtual crack extension (MVCE) technique, is proposed for solving the basic equations, Specially selected linearly independent VCE modes can be used directly as shape functions for the interpolation of unknown stress intensity factors (SIFs). The coefficient matrix of the final system of equations is a triple-diagonal matrix and the values of the coefficients on the main diagonal are large. The system of equations has good numerical properties. Complex situations in which the SIFs vary dramatically along crack fronts can be well simulated by the MVCE technique. Hollow cylinders with various axial semi-elliptical surface cracks were solved. Examples show high efficiency and good accuracy.
机译:推导了模式I的3D热重函数方法的基本公式。提出了一种新的技术,称为多重虚拟裂纹扩展(MVCE)技术,用于求解基本方程。特别选择的线性独立VCE模式可以直接用作形状函数,用于内插未知应力强度因子(SIF)。最终方程组的系数矩阵是三对角矩阵,主对角线上的系数值很大。方程组具有良好的数值特性。 MVCE技术可以很好地模拟SIF沿裂纹前沿变化很大的复杂情况。解决了具有各种轴向半椭圆形表面裂纹的空心圆柱体。实例显示了高效率和良好的准确性。

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