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Stress Corrosion Cracking Behavior of an Alloy 182-A533B Weld Joint with Continuous Material Properties

机译:用连续材料性能应力腐蚀裂缝行为焊接182-A533B焊接接头的焊接性能

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Primary loop recirculation (PLR) piping weld joints in light water reactor (LWR) environments are more susceptible to stress corrosion cracking (SCC). Limited experimental work also suggested the complicated material and mechanical property of the fusion zone and the heat affected zone (HAZ) especially in dissimilar weld joints might play an important role in promoting SCC growth. In our study, different from the former sandwich like weld joint, a model of continuous heterogeneity mechanical property was established, the effect of welded mechanical heterogeneity on the stress-strain field and J-integral along the crack fronts at different locations were simulated in an Alloy 182-A533B dissimilar weld joint by the elastic-plastic finite element method (EPFEM). The results indicate that the crack near the dividing line of base metal (BM) and HAZ has higher resistance to SCC. At the dividing line of HAZ and weld metal (WM), the crack is prone to propagate into the WM, and will present more complex crack morphology and behaviors.
机译:初级回路再循环(PLR)管道焊接接头在轻水反应器(LWR)环境中更容易受到应力腐蚀裂纹(SCC)的影响。有限的实验工作还提出了融合区的复杂材料和机械性能和尤其是不同的焊接接头的热影响区(HAZ)可能在促进SCC生长方面发挥重要作用。在我们的研究中,不同于焊接接头的前三明治,建立了连续异质性机械性能的模型,模拟了焊接机械异质性对不同位置处的裂缝前沿的应力 - 应变场和J-Intional的影响由弹性塑料有限元法(EPFEM)的合金182-A533B异种焊接接头。结果表明,基础金属(BM)和HAZ的分界线附近的裂缝具有更高的SCC抗性。在HAZ和焊接金属(WM)的分界线上,裂缝易于传播到WM中,并将呈现更复杂的裂纹形态和行为。

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