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Multi-objective optimization of machining parameters to minimize surface roughness and power consumption using TOPSIS

机译:使用TOPSIS的加工参数的多目标优化最小化表面粗糙度和功耗

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Energy saving in the industrial sector is mandatory for emerging countries to reduce negative environmental impact. Manufacturing consumes a significant amount of energy and releases a large amount of waste (solid, liquid and gas), resulting in the substantial stress on the environment. Negative environmental impact is due to a large amount of energy consumption by the machine tools in discrete manufacturing processes like turning, milling and drilling etc. This paper presents a multi-objective optimization model to optimize the machining parameters in turning process. Two objectives, surface roughness and power consumption are simultaneously optimized. The machining parameters are cutting speed, feed rate and depth of cut. Technique for order preference by similarity to ideal solution (TOPSIS) is used to identify the optimal turning parameters and the obtained results indicate that depth of cut is the most significant factor followed by the feed rate and cutting speed. The results obtained by the TOPSIS approach are compared with the existing grey relational analysis approach results. It is found that both optimization techniques show different optimal values. The confirmations experiments are necessary to select the best optimization approach.
机译:工业部门的节能是新兴国家的强制性,以减少负面环境影响。制造消耗大量能量,并释放大量的废物(固体,液体和气体),导致对环境的重大压力。负环境影响是由于机床在转动,铣削和钻探等的离散制造工艺中的大量能耗。本文介绍了多目标优化模型,以优化转动过程中的加工参数。同时优化了两个目标,表面粗糙度和功耗。加工参数是切割速度,进料速率和切割深度。用于通过相似性与理想解决方案(TOPSIS)的顺序偏好技术来识别最佳转动参数,所获得的结果表明切割深度是最重要的因素,然后是进料速率和切割速度。通过TOPSIS方法获得的结果与现有的灰色关系分析方法结果进行了比较。结果发现,两种优化技术都显示出不同的最佳值。确认实验是选择最佳优化方法。

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