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Microstructure Characterization and Mechanical Properties of Stainless Steel Clad Plate

机译:不锈钢复合板的组织和力学性能

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摘要

In this study the microstructure and mechanical properties of stainless steel clad plate are researched. Due to element diffusion (Fe, Cr, Ni, Mn), a 20 μm thick diffusion layer is formed between stainless steel and carbon steel clad plate. The diffusion layer has a stable mechanical performance without obvious grain microstructure, and its internal mechanical properties show a graded change in the thickness direction. This is beneficial to a strong bond between stainless steel and carbon steel and the stable transition of mechanical performance in the thickness direction, as well as further carbon diffusion changes in the microstructure and mechanical properties near the diffusion layer of clad plate. Carburization stainless steel with a thickness of 150 μm is formed in the stainless steel side and decarburization carbon steel with a thickness of 80 μm is formed in the carbon steel side.
机译:在这项研究中,研究了不锈钢复合板的组织和力学性能。由于元素扩散(Fe,Cr,Ni,Mn),在不锈钢和碳钢复合板之间形成了20μm厚的扩散层。扩散层具有稳定的机械性能,没有明显的晶粒微结构,并且其内部机械性能在厚度方向上显示出渐变。这有利于不锈钢和碳钢之间的牢固结合以及厚度方向上机械性能的稳定转变,以及复合板扩散层附近的微观结构和机械性能中的进一步碳扩散变化。在不锈钢侧形成厚度为150μm的渗碳不锈钢,在碳钢侧形成厚度为80μm的脱碳碳钢。

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