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Stress Corrosion Cracking Threshold for Dissimilar Capacitive Discharge Welding Joint with Varied Surface Geometry

机译:不同表面几何形状不同电容排放焊接接头的应力腐蚀裂缝阈值

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摘要

Stress corrosion cracking (SCC) is known as a major factor that should be considered in the assessment of welding joint structure integrity. Despite the promising and wide application of dissimilar metal joints, the currently available SCC mitigation technique of dissimilar metal joints is not adequate. The challenge is to obtain a good joint while different melting points exist. This article reports a novel SCC mitigation method on a brass–steel dissimilar metal joint by modifying the geometry of the surface. It is evidenced that the sharpened steel (α1 specimen) significantly improves the SCC resilience of the joint. The evaluation of SEM/EDS photos reveals that the α1 geometry induces a smaller pore area around brass–steel micro-joint interfaces which in turn produces stronger joints.
机译:应力腐蚀裂解(SCC)被称为应考虑在评估焊接联合结构完整性时应考虑的主要因素。尽管有前途和广泛应用的不同金属关节,但目前可用的异种金属关节的SCC缓解技术不足。挑战是获得一个良好的关节,而存在不同的熔点。本文通过修改表面的几何形状,在黄铜钢不同金属接头上报告了一种新型SCC缓解方法。证明锐化的钢(α1样本)显着提高了关节的SCC弹性。 SEM / EDS照片的评估显示,α1几何形状引起围绕黄铜微关节接口周围的孔区域,这又产生了更强的关节。

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