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Optimization of weld bead geometry of MS plate (Grade: IS 2062) in the context of welding: a comparative analysis of GRA and PCA–Taguchi approaches

机译:在焊接中优化MS板的焊缝几何形状(等级:IS 2062):GRA和PCA-Taguchi方法的比较分析

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In the last few decades, researchers proceeded their foot for analyzing the weld characteristic index of materials since the development of novel materials began tremendously. Presently, evaluation of the optimum synchronization among considered input factors for materials are even now surviving into ill-defined mode;soliciting novel mathematical models as well as robustly designed decision support systems that could effectively handle nonpartial information (experimental data). In the present reporting, multiobjective optimization dilemmas have been answered in metal inert gas (MIG) welding process using MS plate (Grade: IS 2062) specimen. The considered specimen was checked to harmonize the optimum setting between input factors, for example, welding current, open circuit voltage, and thickness of plate, with respect to obtaining prosperous weld strength as well as bead geometry quality characteristics, for example, tensile strength, bead width, reinforcement, penetration, and dilution. In the present research work, the Taguchi’s L9orthogonal array (OA) design was preferred to conduct the experiments on MS plate (Grade: IS 2062) specimens in the domain of MIG weldingprocess. Thereafter, the evaluated multiple objectives transformed into a single response via exploration of grey relation analysis (GRA) and principal component analysis (PCA) approaches to determine the optimum setting between input factors. Next, the outset of signal-to-noise ratio (S/N ratio) along with Analysis of variance (ANOVA) productively was utilized to determine the priority weights against the defined input factors (significant factor). The significant contribution of the present report was to propose a robustly designed decision support system that could assist the readers/researchers to resolve the discussed problems.
机译:在过去的几十年中,自从新型材料的发展开始以来,研究人员就着手分析材料的焊接特性指标。目前,对考虑到的材料输入因素之间的最佳同步的评估甚至还处于不确定的模式;寻求新颖的数学模型以及设计稳健的决策支持系统,可以有效地处理非部分信息(实验数据)。在本报告中,在使用MS板(等级:IS 2062)试样的金属惰性气体(MIG)焊接工艺中,已经解决了多目标优化难题。为了获得良好的焊接强度和焊道几何形状质量特性(例如,拉伸强度),检查了所考虑的试样以协调输入因素(例如焊接电流,开路电压和板的厚度)之间的最佳设置,珠的宽度,补强,渗透和稀释。在目前的研究工作中,田口的L9正交阵列(OA)设计是首选的,以便在MIG焊接工艺领域的MS板(等级:IS 2062)标本上进行实验。此后,通过探索灰色关系分析(GRA)和主成分分析(PCA)方法,将评估的多个目标转换为单个响应,以确定输入因子之间的最佳设置。接下来,有效地利用信噪比(S / N比)的开始以及方差分析(ANOVA)来确定针对定义的输入因子(有效因子)的优先权重。本报告的重要贡献是提出了一个设计可靠的决策支持系统,该系统可以帮助读者/研究人员解决所讨论的问题。

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