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Robust design of roll-formed slide rail using response surface method

机译:滚动曲面滑轨的响应面设计

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摘要

Roll-formed slide rail used as a linear guide in the smooth movement of drawers and electric home appliances requires geometric accuracy because of a high slenderness ratio and repetitive usage. The slide rail members are generally manufactured by the roll forming process. The members need to be improved through optimization of the roll forming process instead of the designer's experience. The aim of this study is to determine the optimal roll forming parameters by using robust optimization technique which simultaneously satisfies three criteria such as the shape difference factor, bowing factor and modified inverse safety factor. In analyzing the roll forming process of a slide rail, the pass in which the largest deformation occurred is designated as the target pass. The positions and the curvature of rolls are set as the design variables in the target pass. The cost function, which is comprised of the shape difference factor, the bowing factor, and the modified inverse safety factor, is obtained using design-of-experiments of the response surface method. The cost function is minimized by using robust optimization techniques and showed the improved the straightness and the durability value. Using robust design methodology, it is able to be constructed a multi-objective function, and optimized three criteria, simultaneously.
机译:由于细长比高和重复使用,在抽屉和家用电器的平滑运动中用作线性导轨的滚动成型滑轨需要几何精度。滑轨构件通常通过辊压成型工艺来制造。需要通过优化轧制过程而不是设计师的经验来改进构件。这项研究的目的是通过使用鲁棒的优化技术来确定最佳的轧制参数,该技术同时满足形状差异系数,弯曲系数和修正的反安全系数三个标准。在分析滑轨的轧制过程中,将发生最大变形的道次指定为目标道次。轧辊的位置和曲率被设置为目标道次中的设计变量。成本函数由形状差异因子,弯曲因子和修正的逆安全因子组成,是使用响应面方法的实验设计获得的。通过使用强大的优化技术,成本函数得以最小化,并显示出改进的直线度和耐用性值。使用强大的设计方法,可以构造一个多目标函数,并同时优化三个标准。

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