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Multiresponse Optimization of Abrasive Water Jet Cutting Process Parameters Using TOPSIS Approach

机译:基于TOPSIS法的磨料射流切割工艺参数的多响应优化。

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This paper describes how optimization studies were carried out on an abrasive water jet (AWJ) cutting process with multiresponse characteristics based on Multi Criteria Decision Making Methodology (MCDM) using the Technique for Order Preference by Similarity Ideal Solution (TOPSIS) approach. The process parameters water jet pressure, traverse rate, abrasive flow rate, and standoff distance are optimized with multiresponse characteristics, including the depth of penetration (DOP), cutting rate (CR), surface roughness (R-a), taper cut ratio (TCR), and top kerf width (TKW). The optimized results obtained from this approach indicate that higher DOP and CR and lower R-a, TCR, and TKW were achieved with combinations of the AWJ cutting process parameters, such as water jet pressure of 300MPa, traverse rate of 120mm/min, abrasive flow rate of 360g/min, and standoff distance of 1mm. The experimental results indicate that the multiresponse characteristics of the AA5083-H32 unit used during the AWJ cutting process can be enhanced through the TOPSIS method. Analysis of variance was carried out to determine the significant factors for the AWJ cutting process.
机译:本文介绍了如何基于多准则决策方法(MCDM),使用基于相似理想解的顺序优先技术(TOPSIS)的方法,对具有多响应特性的磨料水喷射(AWJ)切割工艺进行优化研究。通过多重响应特性优化了工艺参数水射流压力,横移速率,磨料流速和支座距离,包括穿透深度(DOP),切削速率(CR),表面粗糙度(Ra),锥切比(TCR) ,以及顶部切口宽度(TKW)。通过这种方法获得的优化结果表明,通过结合AWJ切削工艺参数(例如300MPa的喷水压力,120mm / min的横向速度,磨料流速)可以实现更高的DOP和CR和更低的Ra,TCR和TKW。 360g / min,对峙距离为1mm。实验结果表明,通过TOPSIS方法可以增强AWJ切割过程中使用的AA5083-H32装置的多响应特性。进行了方差分析以确定AWJ切割过程的重要因素。

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