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CRACK GROWTH SIMULATION UNDER COMPLICATED STRESS FIELD USING S-VERSION FEM

机译:使用S型有限元模拟复杂应力场下的裂纹扩展

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In the S-version finite element method (S-FEM), a local detailed finite element mesh (local mesh) is superimposed on a coarse finite element model (global mesh) representing the global structure. In the S-FEM developed by Tokyo University of Science, the virtual crack closure integral method is employed to evaluate the stress intensity factor, and a local mesh is re-meshed automatically, which enables easy simulations of crack growth by users. Using S-FEM, crack growth can be simulated in both two- and three-dimensional stress fields, under thermal stress field, under welding residual stress field, and in multiple materials. This paper reports the latest results of the simulations of crack growth in the presence of complicated stress fields.
机译:在S-Version有限元方法(S-FEM)中,局部详细的有限元网格(本地网格)叠加在表示全局结构的粗略有限元模型(全局网格)上。在由东京科学大学开发的S-FEM中,采用虚拟裂缝闭合积分方法来评估应力强度因子,并且自动重新啮合局部网格,这使得能够通过用户轻松模拟裂纹增长。使用S-FEM,在焊接残余应力场下的热应力场下的两维应力场和多种材料下可以模拟裂缝生长。本文报告了复杂应力场存在下裂纹增长模拟的最新结果。

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