首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Multi-objective optimization of friction welding parameters in AISI 304L austenitic stainless steel and copper joints
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Multi-objective optimization of friction welding parameters in AISI 304L austenitic stainless steel and copper joints

机译:AISI 304L奥氏体不锈钢和铜接缝中摩擦焊接参数的多目标优化

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摘要

Friction welding is a solid-state joining technique, and joining of dissimilar materials has been witnessing tremendous development in various applications. In this study, friction welding is carried out in dissimilar materials, austenitic stainless steel and copper, which find application in power generators. The parameters such as friction pressure, upset pressure, rotational speed and burn-off length are considered to determine its influence on tensile strength, metal loss and weld time. Taguchi's L-27 orthogonal array is used for experimental design to maximize the tensile strength as well as minimize the metal loss and weld time. Optimal parameters are determined through multiple performance characteristics, and it is found that friction pressure of 22MPa, upset pressure of 108MPa, rotational speed of 500r/min and burn-off length of 1mm yield good mechanical and metallurgical properties.
机译:摩擦焊接是一种固态的连接技术,并且相互材料的连接在各种应用中一直在目睹巨大的发展。 在本研究中,摩擦焊接以不同的材料,奥氏体不锈钢和铜,在发电机中找到应用。 认为诸如摩擦压力,镦粗压力,转速和燃烧长度的参数,以确定其对拉伸强度,金属损耗和焊接时间的影响。 Taguchi的L-27正交阵列用于实验设计,以最大限度地提高拉伸强度以及最小化金属损耗和焊接时间。 通过多种性能特性确定最佳参数,发现22MPa的摩擦压力为108MPa的镦粗压力,500r / min的转速,燃烧长度为1mm,产生良好的机械和冶金性能。

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