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首页> 外文期刊>The International Journal of Advanced Manufacturing Technology >Application of Grey Taguchi-based response surface methodology (GT-RSM) for optimizing the plasma arc cutting parameters of 304L stainless steel
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Application of Grey Taguchi-based response surface methodology (GT-RSM) for optimizing the plasma arc cutting parameters of 304L stainless steel

机译:基于灰色Taguchi的响应面方法(GT-RSM)在优化304L不锈钢的等离子弧切割参数中的应用

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摘要

Plasma arc cutting (PAC) is a highly promising thermal cutting process because of its wide industrial applications involving cutting of different materials at high speeds. The competing abilities of PAC with laser cutting combined with its less polluting nature have shifted the research attention towards the process. The cutting parameters like arc current, torch stand-off, cutting speed and gas pressure play an important role in determining the quality of a cut surface. In the present work, the quality characteristics of the cut surface were assessed by measuring the surface roughness and kerf width while cutting the 304 L stainless steel. The experimental trials were designed by Taguchi's L-18 orthogonal array unlike the central composite design used with traditional response surface methodology (RSM), and an integrated approach of Grey Taguchi-based response surface methodology (GT-RSM) was disclosed for predicting the optimal combination of cutting parameters. The GT-RSM approach was found to improve the quality characteristics studied in the work significantly. The results will offer a good cutting database for the textile, chemical and pharmaceutical processing industries.
机译:等离子弧切割(PAC)是一种非常有前途的热切割工艺,因为其广泛的工业应用涉及到高速切割不同的材料。 PAC具有激光切割的竞争能力以及其污染少的性质已将研究重点转移到了该过程上。诸如电弧电流,割炬支座,切割速度和气压之类的切割参数在确定切割表面的质量方面起着重要作用。在当前工作中,通过在切割304 L不锈钢时测量表面粗糙度和切缝宽度来评估切割表面的质量特性。 Taguchi的L-18正交阵列设计了实验试验,这与传统的响应面方法(RSM)所采用的中央复合设计不同,并且公开了基于灰色Taguchi的响应面方法(GT-RSM)的综合方法来预测最佳切削参数的组合。发现GT-RSM方法可以显着改善工作中研究的质量特征。结果将为纺织,化学和制药加工行业提供一个良好的切割数据库。

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