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首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers, Part B. Journal of engineering manufacture >Parameter optimization for finishing hard materials with magnetorheological fluid using the penalized multi-response Taguchi method
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Parameter optimization for finishing hard materials with magnetorheological fluid using the penalized multi-response Taguchi method

机译:惩罚性多响应田口法用磁流变液精加工硬质材料的参数优化

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摘要

This paper presents a novel penalized multi-response Taguchi method that is used to determine the optimal conditions and parameters for a wheel-type magnetorheological (MR) finishing process that uses sintered iron-carbon nanotube (I-CNT) abrasives. The main goal of this study is to achieve the best compromise, within given boundary constraint conditions, between the maximum material removal rate and the minimum surface roughness. The proposed Taguchi method includes two main parameters, namely the weighting loss factor and the severity factor, that account, respectively, for the response weights and the constraint conditions and that control the optimality direction. The method is applied to the finishing of hard-disk slider surfaces made of Al_2O_3-TiC, and the effects of the weighting loss and severity factors, along with their significance and relative importance in optimizing the finishing process, are thoroughly examined.
机译:本文提出了一种新颖的惩罚性多响应Taguchi方法,该方法用于确定使用烧结铁碳纳米管(I-CNT)磨料的轮式磁流变(MR)精加工工艺的最佳条件和参数。这项研究的主要目的是在给定的边界约束条件下,在最大材料去除率和最小表面粗糙度之间取得最佳折衷。提出的Taguchi方法包括两个主要参数,即加权损失因子和严重性因子,分别考虑响应权重和约束条件并控制最优方向。将该方法应用于由Al_2O_3-TiC制成的硬盘滑块表面的精加工中,并仔细研究了重量损失和严重性因素的影响,以及它们在优化精加工过程中的重要性和相对重要性。

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