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Influence of post-weld heat treatments on microstructure and mechanical properties of AISI 431 martensitic stainless steel friction welds

机译:焊后热处理对AISI 431马氏体不锈钢摩擦焊缝的组织和力学性能的影响

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摘要

The relative effects of different post-weld heat treatments (PWHTs) on microstructure and mechanical properties of friction welded martensitic stainless steel type AISI 431 were studied. The weld microstructure consists of acicular martensite in equiaxed prior austenite grains and with heat treatment, the martensitic microstructure experiences coarsening. It was observed that retained austenite content decreases with an increase in the PWHT tempering temperature. The tensile properties of welds under different PWHTs were comparable to those of parent metal in the respective treatments. Welds exhibited higher notch tensile strengths than the parent metal in the respective heat treatment condition. Double tempering (670 deg C + 600 deg C) led to maximum reduction in hardness. Welds exhibited poor impact toughness in the as welded condition. The improvement in impact toughness was found satisfactory in welds subjected to double tempering, although did not match to the level of the parent metal at respective conditions. The mechanism and reasons for the observed behaviour have been discussed, correlating the microstructure, fracture features and mechanical properties.
机译:研究了不同的焊后热处理对AISI 431型摩擦焊接马氏体不锈钢的组织和力学性能的相对影响。焊缝组织包括等轴先验奥氏体晶粒中的针状马氏体,经热处理后,马氏体组织发生粗化。观察到,随着PWHT回火温度的升高,残余奥氏体含量降低。在不同的PWHT下,焊缝的拉伸性能与相应处理中的母体金属的拉伸性能相当。在相应的热处理条件下,焊缝的缺口抗拉强度高于母材。两次回火(670摄氏度+ 600摄氏度)导致最大程度的硬度降低。在焊接条件下,焊缝的冲击韧性差。发现在经受双回火的焊缝中,冲击韧性的改善是令人满意的,尽管在各个条件下与母体金属的含量不匹配。讨论了观察到的行为的机理和原因,将其微观结构,断裂特征和力学性能联系起来。

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