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Optimization of laser butt welding parameters based on the orthogonal array with fuzzy logic and desirability approach

机译:基于逻辑和期望的正交阵优化激光对接参数。

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This paper presents the study carried out on 3.5 kW cooled slab laser welding of 904 L super austenitic stainless steel. The joints had butts welded with different shielding gases like argon, helium and nitrogen at a constant flow rate. Super austenitic stainless steel (SASS) normally contains high amount of Mo, Cr, Ni, N and Mn. The mechanical properties are controlled to obtain good welded joints. The quality of the joint is evaluated by studying the features of weld bead geometry such as bead width (BW) and depth of penetration (DOP). In this paper, the tensile strength and bead profiles (BW and DOP) of laser welded butt joints made of AISI 904 L SASS are investigated. Taguchi approach is used as statistical design of experiment (DOE) technique for optimizing the selected welding parameters. Fuzzy logic and desirability approach are applied to optimize the input parameters considering multiple output variables simultaneously. Confirmation experiment has also been conducted for both the analyses to validate the optimized parameters.
机译:本文介绍了对904 L超级奥氏体不锈钢进行的3.5 kW冷却板坯激光焊接进行的研究。接头的对接处以恒定的流速焊接了不同的保护气体,例如氩气,氦气和氮气。超级奥氏体不锈钢(SASS)通常包含大量的Mo,Cr,Ni,N和Mn。控制机械性能以获得良好的焊接接头。通过研究焊缝几何形状的特征(如焊缝宽度(BW)和熔深(DOP))来评估接头的质量。本文研究了AISI 904 L SASS激光焊接对接接头的拉伸强度和焊道轮廓(BW和DOP)。 Taguchi方法被用作实验的统计设计(DOE)技术,以优化所选的焊接参数。应用模糊逻辑和合意性方法来同时考虑多个输出变量来优化输入参数。还对两种分析均进行了确认实验,以验证优化参数。

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