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An experimentally verified finite element study of the stress-strain response of crack geometries experiencing large-scale yieding

机译:大规模YEDING裂纹几何形状应力 - 应变响应的实验验证有限元研究

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Large-strain, three-dimensional finite element analyses with incremental plasticity were performed for a variety of crack geometries to study local crack-tip stress-strain fields and associated global fracture parameters under conditiolns of large-scale yielding. The geometries analyzed include thin, single-edge crack tension, single-edge crack bending, and centr-crack tesion fracture speciments with varying crack depth (a/W) ratios. Two materials were investigated: a high-ardening, low strength steel and a moderate-hardening, high-strength steel. Mesh refinement studies were performed to ensure convergence of the finite element predictions. The studies eamine the effects of in-plane crack-tip element size, intial crack-tip radius size, and number of through-thickness layers on predicted distributions of crack-tip stress and plastic strain and predicted values of the J-integral and CTOD. In addition, the finite element predictions of specimen behavior were verifed experimentally by direct measurements, namely load displacement, load longitudinal strain, and load CTOD, made during and following testing of the fracture specimens.
机译:对于各种裂缝几何形状进行大应变,具有增量可塑性的三维有限元分析,以研究局部裂纹尖端应力场和大规模屈服的条件下的局部裂缝尖端应力场和相关的全局裂缝参数。分析的几何形状包括薄,单边缘裂缝张力,单边缘裂缝弯曲和具有不同裂纹深度(A / W)比率的中心裂纹凹槽裂缝类。研究了两种材料:高温,低强度钢和中等硬化,高强度钢。进行网眼细化研究以确保有限元预测的收敛性。研究磁氨定突破面内裂纹尖端元件尺寸,intian裂纹尖端半径尺寸和贯通层数对裂纹尖端应力和塑性应变的预测分布以及J-Intional和CTOD的预测值。此外,通过直接测量,即负载位移,负载纵向应变和载荷CTOD进行实验进行试样行为的有限元预测,在裂缝样本的测试期间和载荷。

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