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The Application of The Hole Drilling Method to Define The Residual Stress of Dissimilar Laser Welded Components

机译:孔钻法应用于不同激光焊接部件的残余应力

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Dissimilar metal welds between Ferritic steel and Austenitic steel (F/A)are commonly used in power plants, food industry, pharmaceutical industry and many other applications. There are many issues/problems associated with the joining of dissimilar materials, depending on the materials being joined and the process selected. During the laser welding process, residual stresses are introduced by a rise in temperature during the melting or heating process followed by a very quick cooling of the weld and the surrounding material. In this study, CO_2 continuous laser welding has been successfully applied for joining 316 stainless steel with AISI 1009 low carbon steel F/A. Design of Experiment techniques (DOE) has been used for some of the selected welding parameters (laser power, welding speed, and focus position) to model the dissimilar F/A joints in terms of its residual stresses. The Hole-Drilling Method technique was use for measuring the residual stress of dissimilar welded components. Taguchi approach for selected welding parameters was applied and the output response was the residual stresses. The results were analysed using analysis of variance (ANOVA) and signal-tonoise (S/N) ratios for the effective parameters combination.
机译:铁素体钢和奥氏体钢(F / A)之间的不同金属焊缝通常用于发电厂,食品工业,制药行业和许多其他应用。根据加入的材料和所选择的过程,存在许多与不同材料的问题相关的问题/问题。在激光焊接过程中,通过在熔化或加热过程中的温度上升之后,通过温度升高引入残余应力,然后在焊接和周围材料的非常快速地冷却。在本研究中,CO_2连续激光焊接已成功应用于使用AISI 1009低碳钢F / A连接316不锈钢。实验技术(DOE)的设计已用于一些选定的焊接参数(激光功率,焊接速度和焦点位置),以在其残余应力方面模拟不同的F / A关节。空穴钻孔方法技术用于测量不同焊接部件的残余应力。施加选定焊接参数的Taguchi方法,输出响应是残余应力。使用方差分析(ANOVA)和信号 - 儿童(S / N)比例分析结果,用于有效参数组合。

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