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Numerical investigation on J-integral testing of heterogeneous fracture toughness testing specimens: Part I ― weld metal cracks

机译:异质断裂韧性测试样品J积分测试的数值研究:第一部分―焊接金属裂纹

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Based on extensive two-dimensional(2D) finite element (FE) analyses, the present work provides the plastic η factor solutions for fracture toughness J-integral testing of heterogeneous specimens with weldments. Solutions cover practically interesting ranges of strength mismatch and relative weld width, and are given for three typical geometries for toughness testing: a middle cracked tension (M(T)) specimen, single edge cracked bend (SE(B)) specimen and (C(T)) specimen. For mismatched M(T) specimens, both plane strain and plane stress conditions are considered, whereas for SE(B) and C(T) specimens, only the plane strain condition is considered. For all cases, only deep cracks are considered, and an idealized butt weld configuration is considered, where the weld metal strip has a rectangular cross section.Based on the present solutions for the strength mismatch effect on plastic η factors, a window is provided, within which the homogeneous J estimation procedure can be used for weldment toughness testing. The effect of the weld groove configuration on the plastic η factor is briefly discussed, concluding the need for further systematic analysis to provide guidance to practical toughness testing.
机译:基于广泛的二维(2D)有限元(FE)分析,本工作为具有焊件的异种试样的断裂韧性J积分测试提供了塑性η因子解决方案。解决方案涵盖了实际令人感兴趣的强度不匹配和相对焊缝宽度范围,并针对三种典型的几何形状进行了韧性测试:中等裂纹张力(M(T))试样,单边缘裂纹弯曲(SE(B))试样和(C (T))标本。对于不匹配的M(T)试样,考虑了平面应变和平面应力条件,而对于SE(B)和C(T)试样,仅考虑了平面应变条件。在所有情况下,仅考虑深裂纹,并考虑理想的对接焊缝配置,其中焊接金属带的横截面为矩形。基于当前对塑性η因子的强度失配效应的解决方案,提供了一个窗口,其中均质J估计程序可用于焊件韧性测试。简要讨论了焊接坡口构型对塑性η因子的影响,认为需要进行进一步的系统分析以为实际韧性测试提供指导。

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