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An Integrated Approach of GRA Coupled with Principal Component Analysis for Multi-Optimization of Shielded Metal Arc Welding (SMAW) Process

机译:GRA的综合方法与屏蔽金属弧焊(SMAW)工艺多优化的主成分分析相结合

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摘要

Welding distortion is a critical issue as it leads to severe deterioration of structural integrity of welded work piece and dimensional precision. This study aims at studying the effects of shielded metal arc welding (SMAW) parameters on the evolution of mechanical properties, including tensile strength, impact toughness, and hardness, along with angular distortion on a welded joint from SA 516 grade 70. Such parameters are analyzed and optimized by employing the Taguchi method and Grey relational analysis. SA 516 grade 70 is commercially used for fabrication of storage tanks, boilers and pressure vessels. SMAW is investigated with three levels of root gap, groove angle, electrode diameter, and pre-heat temperature, which were varied on a butt joint in flat (1 G) position to determine their effects on response variables at room temperature. Nine experiments were designed using a Taguchi L9 orthogonal array, welded according to American Society of Mechanical Engineers (ASME) section IX, and samples were prepared and tested as per ASTM A 370. The Taguchi method and Grey relational analysis were employed to observe the most significant parameters and optimal levels that synergically yield improved responses. Results are validated by conducting confirmatory experiments that show good agreement with optimum results.
机译:焊接失真是一个关键问题,因为它导致焊接工件和尺寸精度的结构完整性严重劣化。本研究旨在研究屏蔽金属弧焊(SMAW)参数对机械性能的演变的影响,包括拉伸强度,冲击韧性和硬度,以及SA 516 70级的焊接接头上的角度变形。这些参数是通过使用Taguchi方法和灰色关系分析来分析和优化。 SA 516级70可商购用于制造储罐,锅炉和压力容器。通过三个水平的根间隙,沟角,电极直径和预热温度研究了Smaw,其在平坦(1g)位置的对接接头上变化,以确定它们在室温下对响应变量的影响。使用Taguchi L9正交阵列设计了九个实验,根据美国机械工程师(ASME)部分IX焊接,并且根据ASTM ASTM制备和测试样品A 370.塔本奇方法和灰色关系分析用于观察最多有效的参数和最佳水平协同产生改进的反应。通过进行确认实验,验证了验证实验,表现出与最佳结果良好的一致性。

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