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Optimization of friction stir welding parameters using multiple response surface methodology

机译:使用多响应面方法优化搅拌摩擦焊接参数

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摘要

Improving quality in today's complicated industrial systems is gaining more and more importance every day. Since applying these systems costs a lot, companies should try to offer the best outcomes and processes possible. One of the products most applied is Tailor Welding Blanks, which is widely used in automobile, aerospace, and other industries. One of the best methods of producing Tailor Welding Blanks is Friction Stir Welding. Using this technology, sheets dissimilar in material and thickness can be joined. In this paper, the possibility of welding thin sheets of 5083-H12 and 6061-T6 aluminum alloy by Friction Stir Welding with the thickness of 1.5mm is examined. To detect the impact of Friction Stir Welding parameters, i.e. rotational speed (r/min), linear speed (mm/ min), shoulder diameter (mm), and tilt angle (degrees), a Box-Behnken design was used and using multiple Response Surface Methodology values of robust optimization of tensile strength and elongation were derived. The optimization and experiment results were then compared. The results of the comparison showed a good correspondence.
机译:在当今复杂的工业系统中,提高质量每天都变得越来越重要。由于应用这些系统的成本很高,因此公司应尽量提供最佳的结果和流程。量身定制的产品之一是裁缝焊接毛坯,被广泛应用于汽车,航空航天和其他行业。量身定制的焊接毛坯的最佳方法之一是搅拌摩擦焊。使用该技术,可以将材料和厚度不同的纸张连接在一起。在本文中,研究了通过1.5毫米厚的搅拌摩擦焊焊接5083-H12和6061-T6铝合金薄板的可能性。为了检测摩擦搅拌焊接参数的影响,例如转速(r / min),线速度(mm / min),肩部直径(mm)和倾斜角(度),使用了Box-Behnken设计,并使用了多个得出了抗拉强度和伸长率鲁棒优化的响应面方法学值。然后比较了优化和实验结果。比较结果显示出良好的对应关系。

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