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ALLOWANCE FOR RESIDUAL STRESSES AND MATERIAL INTERFACES WHEN CALCULATING J IN AND CLOSE TO WELDED JOINTS

机译:计算焊接接头和靠近焊接接头的残余应力和材料界面的允许值

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摘要

The J-integral is used widely as a measure of crack driving force within structural integrity assessments of engineering structures. The calculation of J in and close to welds using the Equivalent Domain Integral (EDI) found in some finite element (FE) codes can give unreliable, domain-dependent, results. This arises because FE codes typically use simplified, "default" implementations of the EDI which do not allow for the non-uniform strain field, material interface and/or material inhomogeneity which are present as a result of the welding process. This paper provides guidance on the corrections that must be made to restore the domain-independence of the EDI, allowing J to be determined from the far stress field for cracks in and close to welds. Example calculations are presented to illustrate the effect of the modifications. The results are compared with those obtained using the default J post-processor built into a commercial FE code. Calculations are presented for cases where there is a material interface, where there are initial non-uniform strains, and where both of these phenomena occur together. It is shown that the default post-processor results are highly domain dependent, but that independence is restored using the corrected EDI formulation.
机译:J积分被广泛用作工程结构的结构完整性评估中裂缝驱动力的量度。使用在某些有限元(FE)代码中发现的等效域积分(EDI),计算焊缝中和焊缝附近的J可能会得出不可靠的,取决于域的结果。之所以会出现这种情况,是因为FE代码通常使用EDI的简化的“默认”实现方式,这些实现方式不允许由于焊接过程而出现的不均匀应变场,材料界面和/或材料不均匀性。本文为恢复EDI的域独立性而必须进行的校正提供了指导,从而可以根据远处的应力场确定焊缝内和附近裂纹的J。给出了示例计算以说明修改的效果。将结果与使用商业FE代码中内置的默认J后处理器获得的结果进行比较。给出了存在材料界面,初始应变不均匀以及这两种现象同时发生的情况的计算结果。结果表明,默认的后处理器结果高度依赖于域,但是使用更正的EDI公式可以恢复独立性。

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