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Characterization of near tip stresses for a plane-strain off-center crack in a strength mismatched weld

机译:强度不匹配焊缝中平面应变偏心裂纹的近尖端应力特征

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The past two decades have seen an increasing emphasis on the development of flaw assessment procedures accounting for the state of stress (constraint) near the crack tip. In-service inspections of many nuclear power plants have revealed that cracks are most likely to occur in a weld or in the regions near the weld. In recent work, the authors have proposed a novel three-parameter scheme to characterize the crack tip opening stress, for small-scale yielding, for a crack lying at the center of a strength mismatched weld. The proposed scheme was validated with detailed finite element analyses using the modified boundary layer formulation. In the present work, the previously proposed scheme is extended to an off-center crack lying in the weld region. Apart from analyzing an off-center crack, studies are performed on an interface crack in a weld having finite width. To validate the proposed scheme, modified boundary layer analyses are carried out for a wide range of offset ratio values (ratio of the crack tip-to-weld center distance to the weld half-width), ranging from 033 to 0.9, and strength mismatch ratio values (ratio of yield strength of weld to yield strength of base material), ranging from 0.6 to 1.6. Our studies revealed that the proposed analytical scheme works well for all offset ratios and weld mismatch ratios. For an interface crack, crack tip stresses depend mainly on the strength mismatch ratio between the base and weld material. Practically no significant effect is observed of the weld width on the crack tip opening stress of an interfacial crack. (C) 2015 Elsevier Ltd. All rights reserved.
机译:在过去的二十年中,越来越重视缺陷评估程序的开发,以解决裂纹尖端附近的应力(约束)状态。对许多核电厂的在役检查表明,裂纹最有可能发生在焊缝或焊缝附近区域。在最近的工作中,作者提出了一种新颖的三参数方案,以表征位于强度失配焊缝中心的裂纹的小规模屈服的裂纹尖端开口应力。使用改进的边界层公式,通过详细的有限元分析验证了所提出的方案。在当前工作中,先前提出的方案扩展到位于焊接区域的偏心裂纹。除了分析偏心裂纹外,还对宽度有限的焊缝中的界面裂纹进行了研究。为了验证所提出的方案,对较大的偏移比值(裂纹尖端到焊缝中心距离与焊缝半宽度的比)范围从033到0.9进行了改进的边界层分析,并且强度不匹配比率值(焊缝的屈服强度与基材的屈服强度之比)在0.6到1.6之间。我们的研究表明,提出的分析方案对所有偏移率和焊接失配率都适用。对于界面裂纹,裂纹尖端应力主要取决于基体和焊接材料之间的强度失配比。实际上,没有观察到焊接宽度对界面裂纹的裂纹尖端打开应力的显着影响。 (C)2015 Elsevier Ltd.保留所有权利。

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