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Multi-performance optimisation in WEDM using Taguchi method embedded with utility concept

机译:嵌入实用程序概念的Taguchi方法在WEDM中实现多性能优化

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摘要

Traditional design of experiment approaches is suitable for single response problems. However, manufacturing industries need that products/processes must be evaluated based on the performance of several quality characteristics. In the present study, an investigation is made to simultaneously optimise two responses such as surface roughness and dimensional deviation in wire electrical discharge machining (WEDM) using utility concept coupled with Taguchi method. Experiments were conducted varying the process parameters namely pulse-on-time, pulse-off-time, wire feed, wire tension, spark gap, set voltage and servo feed. The machining parameter settings were determined using Taguchi's L27 orthogonal array. The individual surface roughness and dimensional deviation values are transformed into corresponding utility values. Individual utility values have been finally aggregated to compute overall utility degree which serves as representative objective function for optimisation using Taguchi method. The significance of the machining parameters is identified by analysis of variance (ANOVA) and the confirmation test has been conducted to validate the results. Experimental results reveal that the proposed method effectively improves the machining performance of WEDM process.
机译:传统的实验方法设计适用于单个响应问题。但是,制造业需要必须基于几种质量特征的性能来评估产品/过程。在本研究中,进行了研究,以结合效用概念和Taguchi方法同时优化两个响应,例如电火花线切割加工(WEDM)中的表面粗糙度和尺寸偏差。进行了各种工艺参数的实验,包括脉冲接通时间,脉冲断开时间,送丝,送丝张力,火花隙,设定电压和伺服送进。使用田口的L27正交阵列确定加工参数设置。将各个表面粗糙度和尺寸偏差值转换为相应的效用值。最后将各个效用值进行汇总,以计算总体效用程度,作为使用Taguchi方法进行优化的代表目标函数。通过方差分析(ANOVA)确定了加工参数的重要性,并进行了确认测试以验证结果。实验结果表明,该方法有效地提高了电火花线切割工艺的加工性能。

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