利用田口法对sus304拉丝工艺进行灰色关联分析优化

Al-Refaie Abbas , Ming-Hsien Li , Kuo-Cheng Tai
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引用次数: 36

摘要

在304不锈钢(sus304)拉丝过程中,优化模具寿命和线材抗拉强度是主要关注的问题,这是质量特征(QCH)类型。利用L9(34)正交阵列(OA)研究了还原比、润滑剂温度和拉伸速度三个控制因素。对归一化信噪比(S/N)进行灰色关联分析。然后使用灰色等级的序数值来确定最佳因子水平。预计模具寿命和线材抗拉强度的改善分别为25.31 h和22.50 kg/mm2。为了确定影响各QCH的显著因素,并预测各QCH的平均值,对信噪比和QCH进行方差分析。然后进行确认实验,在每个QCH的预测和确认间隔之间注意到良好的重叠。最后利用Hotelling T2和样本广义方差控制图对未来生产进行控制和监测。综上所述,利用田口法进行灰色关联分析是优化SUS拉丝工艺模具寿命和线材抗拉强度的有效方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Optimizing SUS 304 wire drawing process by grey relational analysis utilizing Taguchi method

In the stainless steel 304 (SUS 304) wire drawing process, optimizing the die life and wire tensile strength, which are the larger-the-better quality characteristics (QCH) types, is of main interest. Three control factors, involving reduction ratio, lubricant temperature, and drawing speed, were investigated utilizing L9(34) orthogonal array (OA). The grey relational analysis was conducted for the normalized signal-to-noise (S/N) ratios. The ordinal value of the grey grade was then used to decide optimal factor levels. The anticipated improvements in die life and wire tensile strength were estimated 25.31 h and 22.50 kg/mm2, respectively. To decide the significant factor which had effect on each QCH and predict the average value of each QCH, analysis of variance (ANOVA) was performed for S/N ratio and QCH. Confirmation experiments were then conducted, where a good overlap was noticed between the predicted and confirmation intervals for each QCH. The Hotelling T2 and the sample generalized variance control charts were finally utilized in controlling and monitoring future production. In conclusion, the grey relational analysis utilizing Taguchi method is an effective approach for optimizing the die life and wire tensile strength for SUS wire drawing process.

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