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Surface Roughness Model and Parametric Welding Optimization in Friction Stir Welded AA2017 Using Taguchi Method and Response Surface Methodology

机译:摩擦搅拌焊接AA2017的表面粗糙度模型和参数焊接优化使用TAGUCHI方法和响应表面方法

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This paper focuses on the development of a mathematical model of arithmetic mean heights of surface (Sa) in friction stir welded AA2017 aluminium alloy using Taguchi L_8 orthogonal design of experiments and response surface methodology. Machining variables such as rotation speed, traverse speed and tool shoulder diameter are considered in building the model. 3D surface topographies are used to characterize the surface roughness. The analysis of variance results showed that all the welding parameters are statistically significant at 95% confidence level. According to Main Factor Plots, an increase in the rotation speed decreases the surface roughness while any increase in the traverse speed or the tool diameter shoulder increases it.
机译:本文侧重于使用Taguchi L_8正交设计的摩擦搅拌焊接AA2017铝合金在摩擦搅拌焊接AA2017铝合金的算术平均高度的数学模型的发展。在建立模型中考虑加工变量,如转速,横向速度和肩肩直径。 3D表面地形用于表征表面粗糙度。方差结果分析表明,所有焊接参数在95%的置信水平下均有统计学意义。根据主要因子图,旋转速度的增加降低了表面粗糙度,而横向速度或工具直径肩部的任何增加会增加它。

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