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首页> 外文期刊>Journal of thermal stresses >Three-dimensional thermal weight function method for the interface crack problems in bimaterial structures under a transient thermal loading
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Three-dimensional thermal weight function method for the interface crack problems in bimaterial structures under a transient thermal loading

机译:瞬态热载荷下双材料结构界面裂纹问题的三维热重量函数法

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摘要

Different from previous two-dimensional thermal weight function (TWF) method, a three-dimensional (3D) TWF method is proposed for solving elliptical interface crack problems in bimaterial structures under a transient thermal loading. The present 3D TWF method based on the Betti's reciprocal theorem is a powerful tool for dealing with the transient thermal loading due to the stress intensity factors (SIFs) of whole transient process obtained through the static finite element computation. Several representative examples demonstrate that the 3D TWF method can be used to predict the SIFs of elliptical interface crack subjected to transient thermal loading with high accuracy. Moreover, numerical results indicate that the computing efficiency can be enhanced when dealing with transient problems, especially for large amount of time instants.
机译:与先前的二维热重量函数(TWF)方法不同,提出了一种用于求解瞬态热载荷下双材料结构中椭圆界面裂纹问题的三维(​​3D)TWF方法。当前的基于贝蒂互易定理的3D TWF方法是处理瞬态热负荷的有力工具,这归因于通过静态有限元计算获得的整个瞬态过程的应力强度因子(SIF)。几个有代表性的例子表明,3D TWF方法可用于预测承受瞬态热载荷的椭圆形界面裂纹的SIF的高精度。此外,数值结果表明,在处理瞬态问题时,尤其是在大量时间瞬间,可以提高计算效率。

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