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Optimization of machining parameters using WASPAS and MOORA

机译:使用WASPA和Moora优化加工参数

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Purpose - Nowadays, the applications of metal matrix composites are tremendously increasing in engineering fields. Consequently, the demand for precise machining of composites has also grown enormously. The purpose of this paper is to reduce production cost and simultaneously improve desired product quality through optimal parameter setting using WASPAS and MOORA. Design/methodology/approach - Metal matrix composites were fabricated using stir casting process, with aluminum 6063 as matrix and titanium carbide as reinforcement. Fabricated composite samples were machined on medium duty lathe using cemented carbide tool. All the experiments were carried out based on Box-Behnken design. Comparison of multi objective optimization based on ratio analysis and weighted aggregated sum product assessment in optimizing four parameters, namely, "cutting speed," "feed rate," "depth of cut" and "reinforcement weight percent of composite samples"; evaluating their influence on material removal rate, cutting force and surface roughness were carried out. Findings - The output achieved by both MOORA and WASPAS are in similar MCDM) techniques in the selection of machining parameters. Practical implications - The results obtained in the present paper will be helpful for decision makers in manufacturing industries, who work in metal cutting area, to select the suitable levels for the parameters by implementing the MCDM techniques. Originality/value - The novelty of this paper is making an attempt to select better MCDM technique based on the comparison of results obtained for the individual technique.
机译:目的 - 当今,金属基质复合材料的应用在工程领域具有巨大增加。因此,对复合材料的精确加工的需求也很大。本文的目的是通过使用WASPAS和Moora来降低生产成本,同时通过最佳参数设置同时提高所需的产品质量。设计/方法/方法 - 使用搅拌过程制造金属基质复合材料,用铝6063作为基质和碳化钛作为增强。使用粘合的硬质合金工具在中占床上加工制造的复合样品。所有实验都是基于Box-Behnken设计进行的。基于比率分析的多目标优化和加权聚集和产品评估在优化四个参数中的比较,即“切割速度”,“进料”,“切割深度”和“复合样品的加固重量百分比”;进行了对材料去除率,切割力和表面粗糙度的影响。调查结果 - Moora和WASPA所实现的输出在加工参数选择时处于类似的MCDM技术。实际意义 - 本文获得的结果将有助于制造业行业的决策者,在金属切割区域工作,通过实施MCDM技术选择参数的合适水平。原创性/值 - 本文的新颖性正在尝试根据对各个技术获得的结果的比较选择更好的MCDM技术。

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