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Corrigendum to 'Through-thickness microstructure and mechanical properties of electron beam welded 20 mm thick AISI 316L austenitic stainless steel'

机译:关于“电子束焊接的20毫米厚AISI 316L奥氏体不锈钢的全厚度组织和力学性能”的更正

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摘要

Through thickness microstructure and mechanical properties of defect-free electron beam welded 20 mm thick AISI 316L austenitic stainless steel are investigated as a function of beam power. The weld microstructure characterised by columnar and equiaxed dendritic ferrite in an austenite matrix. The dendritic structure was finer at the bottom of the weld zone. A microstructural boundary called "Parting" was seen along the weld centreline. Tensile tests, using digital image correlation technique, demonstrated that the highest strain concentrated in the FZ. The bottom section of the weld metal showed yield strength of about 14-52 MPa higher than the top section. The ultimate tensile strength in the bottom of the weld was also about 4% higher than the top. The final fracture was detected in the parting region. It was observed from the EBSD scan that the grains in the weld zone contained a weak orientation and showed high Schmid factor intensity with interception between some strong grains and soft grains at the weld centerline boundary. This explains the high weld ductility and the failure to happen in the parting region.
机译:通过无缺陷电子束焊接20毫米厚AISI 316L奥氏体不锈钢的厚度组织和力学性能,研究了电子束功率的函数。焊缝组织为奥氏体基体中的柱状等轴枝状铁素体。焊接区底部的树枝状结构更细。沿着焊缝中心线看到了一个名为“ Parting”的微观结构边界。使用数字图像相关技术的拉伸试验表明,最高的应变集中在FZ中。焊接金属的底部显示出比顶部高约14-52 MPa的屈服强度。焊缝底部的极限抗拉强度也比顶部高约4%。在分离区域中检测到最终的断裂。通过EBSD扫描观察到,焊缝区域的晶粒取向较弱,并显示出较高的Schmid因子强度,并且在焊缝中心线边界处截获了一些强晶粒和软晶粒。这解释了高焊接延展性以及在分型区域发生故障的原因。

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