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首页> 外文期刊>International Journal of Pressure Vessels and Piping >Weight functions for the determination of stress intensity factor and T-stress for edge-cracked plates with built-in ends
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Weight functions for the determination of stress intensity factor and T-stress for edge-cracked plates with built-in ends

机译:权重函数,用于确定带有内置端部的边缘开裂板的应力强度因子和T应力

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摘要

This paper presents the weight functions for the determination of the stress intensity factor and T-stress solutions for edge-cracked plates with built-in ends under complex stress distributions. First, a compliance analysis approach is used to calculate stress intensity factor and T-stress for edge cracks in finite width plates with built-in ends with uniform or linear stress distributions acting on the crack face. The results serve as the reference solutions for the next step in which the approaches of deriving weight functions from reference stress intensity factor and T-stress solutions developed for stress boundary conditions are extended to obtain the corresponding weight functions for edge-cracked plates with built-in ends. Finite element analysis is conducted to validate the derived solutions. The weight functions derived are suitable for obtaining stress intensity factors and T-stress solutions under any complex stress field.
机译:本文提出了权重函数,用于确定复杂应力分布下端部内装裂纹板的应力强度因子和T应力解。首先,使用顺应性分析方法来计算有限宽板中边缘裂纹的应力强度因子和T应力,该有限宽板具有内置两端,且均匀或线性应力分布作用在裂纹面上。结果可作为下一步的参考解决方案,其中扩展了从参考应力强度因子和针对应力边界条件开发的T应力解决方案导出权重函数的方法,从而获得了针对带有内置裂纹边板的相应权重函数。到底。进行了有限元分析以验证派生的解决方案。导出的权函数适合于在任何复杂应力场下获得应力强度因子和T应力解。

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