首页> 外文会议>ASME International Conference on Ocean, Offshore and Arctic Engineering >TWO-PARAMETER J-A ESTIMATION FOR WELD CENTERLINE CRACKS IN WELDED SINGLE-EDGE CRACKED PLATE UNDER TENSILE LOADING
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TWO-PARAMETER J-A ESTIMATION FOR WELD CENTERLINE CRACKS IN WELDED SINGLE-EDGE CRACKED PLATE UNDER TENSILE LOADING

机译:拉伸载荷作用下焊接单边裂纹板焊接中心裂纹的两参数J-A估计

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This work examines the J-A two-parameter characterization of elastic-plastic crack front fields for weld centerline cracks under tensile loading. Extensive finite element analyses (FEA) have been conducted to obtain solutions of constraint parameter A, which is the second parameter in a three-term elastic-plastic asymptotic expansion for the stress field near the tip of mode-I crack, for modified boundary layer (MBL) model and welded single-edge cracked plate (SECP). Solutions of the constraint parameter A were obtained for the material following the Ramberg-Osgood power law. The crack geometries analyzed include shallow and deep cracks, and remote tension loading levels cover from small-scale to large-scale yielding conditions. The effects of weld material mismatch and weld width on crack tip constraint were considered in the FEA. A constraint parameter A_M, only caused by material strength mismatch, is defined and its parametric equation was obtained. The total constraint in the bi-material weldment can be predicted by adding together A_M and A in the homogeneous material. Good agreements were achieved for welded SECP specimen with different crack size and weld width from small-scale to large-scale yielding conditions. This methodology would be useful for performing constraint-based elastic-plastic fracture analyses of other welded test specimens.
机译:这项工作研究了拉伸载荷作用下焊缝中心线裂纹的弹塑性裂纹前场的J-A两参数表征。为了修正边界层,已经进行了广泛的有限元分析(FEA)来获得约束参数A的解,约束参数A是在I型裂纹尖端附近应力场的三项弹塑性渐近扩展中的第二个参数(MBL)模型和焊接的单边裂纹板(SECP)。遵循Ramberg-Osgood幂定律,为材料获得了约束参数A的解。所分析的裂缝几何形状包括浅裂缝和深裂缝,远程拉伸载荷水平涵盖了从小规模到大规模屈服条件。有限元分析中考虑了焊接材料不匹配和焊接宽度对裂纹尖端约束的影响。定义仅由材料强度不匹配引起的约束参数A_M,并获得其参数方程式。可以通过将均质材料中的A_M和A加在一起来预测双材料焊件中的总约束。从小到大屈服条件,具有不同裂纹尺寸和焊缝宽度的SECP焊接试样都达成了良好的协议。该方法对于执行其他焊接试样的基于约束的弹塑性断裂分析将是有用的。

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