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Geometric functions of stress intensity factor solutions for spot welds in cross-tension specimens

机译:交叉拉伸试样中点焊应力强度因子解的几何函数

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摘要

Stress intensity factor solutions for spot welds in cross-tension specimens are investigated by finite element analyses. Three-dimensional finite element models are developed to obtain accurate solutions. Various ratios of sheet thickness, half specimen width and half effective specimen length to nugget radius are considered. The computational results confirm the functional dependence on the nugget radius and sheet thickness of Zhang’s analytical solutions. The results also provide three geometric functions in terms of normalized half specimen width and normalized half effective specimen length to Zhang’s analytical solutions. Based on the analytical and computational results, the dimensions of cross-tension specimens and the corresponding approximate stress intensity factor solutions are suggested.
机译:通过有限元分析研究了交叉拉伸试样中点焊的应力强度因子解。开发了三维有限元模型以获得准确的解决方案。考虑了板厚度,一半试样宽度和一半有效试样长度与熔核半径的各种比率。计算结果证实了功能对张氏分析溶液的块金半径和板厚的依赖性。结果还提供了三个几何函数,分别是标准化的半个样本宽度和标准化的半个有效样本长度。根据分析和计算结果,提出了交叉拉伸试样的尺寸以及相应的近似应力强度因子解。

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