首页> 外文会议>ASME international pipeline conference >A FAD-BASED PROCEDURE FOR DEFECT ASSESSMENTS OF WELDED STRUCTURES INCLUDING EFFECTS OF WELD STRENGTH MISMATCH: MICROMECHANICS APPROACH AND APPLICATION TO PIPELINE GIRTH WELDS
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A FAD-BASED PROCEDURE FOR DEFECT ASSESSMENTS OF WELDED STRUCTURES INCLUDING EFFECTS OF WELD STRENGTH MISMATCH: MICROMECHANICS APPROACH AND APPLICATION TO PIPELINE GIRTH WELDS

机译:基于FAD的焊接结构缺陷评估程序,包括焊接强度不匹配的效果:微机械方法和向管道周长焊接的应用

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ECA procedures of crack-like defects based upon the FAD philosophy have undergone extensive developments in the past decade to form the basis for industrial codes and guidelines for structural integrity assessments. However, the application of these procedures in welded structural components with mismatch in tensile properties between the weld and base metal remains a potential open issue. Weld strength mismatch may significantly alter the crack-tip driving forces, such as J and CTOD, thereby producing crack-tip stresses quite different than the fields that arise in corresponding homogeneous material. Weld strength mismatch also affects the plastic collapse load for the structural component which further complicates the interplay between fracture and plastic instability before gross yield section takes place. This work describes the development of a microme-chanics-based FAD methodology building upon a local fracture parameter, characterized by the Weibull stress (σ_w), to incorporate the effects of weld strength mismatch on crack-tip driving forces. As a further refinement, the study also addresses an exploratory application of a limit load analysis including effects of weld strength mismatch to correct the loading trajectory incorporated into the FAD procedure. Fracture testing of girth welds obtained from an API X80 pipeline steel provide the data needed to validate the proposed modified FAD procedure in failure predictions. Such an application serves as a prototype for a wide class of integrity assessment problems involving the effects of weld strength mismatch.
机译:基于FAD哲学的裂纹状缺陷的ECA程序在过去十年中经历了广泛的发展,以形成工业代码和结构完整性评估的指导方针的基础。然而,这些程序在焊接结构部件中的应用在焊缝和基础金属之间的拉伸性能中的不匹配仍然存在潜在的开放问题。焊接强度不匹配可以显着改变裂缝尖端驱动力,例如J和CTOD,从而产生与相应均匀材料中出现的场的裂纹尖端应力非常不同。焊接强度不匹配也影响结构部件的塑料塌陷载荷,这进一步使骨折和塑料不稳定性之间的相互作用在总收益率部分发生之前。该工作描述了在局部骨折参数上的基于微米螯合的FAD方法的发展,其特征在于Weibull应力(σ_w),以掺入焊接强度失配对裂缝尖端驱动力的影响。作为进一步的改进,该研究还解决了限制负荷分析的探索性应用,包括焊接强度失配校正掺入FAD过程中的装载轨迹的效果。从API X80管道钢中获得的周长焊缝的断裂测试提供了验证在故障预测中提出的修改的FAD程序所需的数据。这样的应用程序用作广泛的完整性评估问题的原型,涉及焊接强度不匹配的影响。

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