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Exploring the contribution of unconventional parameters on spark gap formation and its minimization during WEDM of layered composite

机译:探讨分层复合材料WEDM中对火花隙形成的贡献及其最小化

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摘要

Cladded materials are heterogenous in nature and considered as difficult-to-cut especially via conventional machining operations. Gas and/or plasma cutting are common in practice to cut clad materials. However, these processes induce deeper heat-affected zones and provide very rough surface integrity. Wire electric discharge machining (WEDM) is a capable alternate yielding better cut quality. Formation of a significant spark gap between the cut surfaces is the iconic problem of WEDM which is addressed in this study. WEDM has been performed on stainless-clad steel with a focus on identifying the significant parameters affecting the amount of spark gap and its minimization in the final cut. Eight input control factors, namely workpiece orientation, thickness of individual layer, servo voltage, pulse on-time, wire diameter, wire feed, and pressure ratio, have been employed to investigate their effects on spark gap development. Experimentation has been performed according to L18 orthogonal array followed by comprehensive statistical analyses. ANOVA shows that wire diameter and pressure ratio are the two main influential parameters for spark gap having percentage contribution of 71% and 16%, respectively. Optimal settings of control variables are also achieved through S/N ratio analysis. Improvement of 23.4% towards spark gap reduction is realized.
机译:包覆材料本质上是异源性的,并且特别是通过常规加工操作特别难以切割。气体和/或等离子体切割在实践中是常见的,以切割包层材料。然而,这些过程诱导更深层次的热影响的区域并提供非常粗糙的表面完整性。电线放电加工(WEDM)是一种能力的替代,产生更好的切割质量。切割表面之间的显着火花间隙是本研究中解决的WEDM的标志性问题。 WEDM已经在不锈钢钢上进行,重点是识别影响火花隙量的重要参数及最终切割中的最小化。已经采用了八种输入控制因子,即工件取向,各个层,伺服电压,脉冲导通时间,线径,送丝和压力比的厚度,以研究它们对火花隙发育的影响。已经根据L18正交阵列进行了实验,然后进行了综合统计分析。 ANOVA表明,电线直径和压力比分别具有71%和16%的百分比的火花隙的两个主要影响参数。通过S / N比分析也实现了控制变量的最佳设置。实现了对火花隙减少的23.4%的提高。

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