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Experimental investigation and performance analysis of cemented carbide inserts of different geometries using Taguchi based grey relational analysis

机译:基于Taguchi灰关联分析的不同几何尺寸硬质合金刀片的实验研究与性能分析。

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摘要

In this work, effect of machining parameters cutting speed, feed rate and depth of cut, geometrical parameters cutting insert shape, relief angle and nose radius were investigated and optimized using Taguchi based grey relational analysis. 18 ISO designated uncoated cemented carbide inserts of different geometries were used to turn practically used automotive axles to study the influence of variation in carbide inserts geometry. Performance measures viz., flank wear, surface roughness and material removal rate (MRR) were optimized using grey relational grade, based on the experiments designed using Taguchi's Design of Experiments (DoE). A weighted grey relational grade is calculated to minimize flank wear and surface roughness and to maximize MRR. Analysis of variance shows that cutting insert shape is the prominent parameter followed by feed rate and depth of cut that contributes towards output responses. An experiment conducted with identified optimum condition shows a lower flank wear and surface roughness with higher MRR. The confirmation results obtained are confirmed by calculating confidence interval, which lies within the width of the interval.
机译:在这项工作中,使用基于Taguchi的灰色关联分析,研究并优化了加工参数切削速度,进给速度和切削深度,几何参数切削刀片形状,后角和刀尖半径的影响。使用18种由ISO指定的不同几何形状的未涂层硬质合金刀片来旋转实际使用的汽车车轴,以研究硬质合金刀片几何形状变化的影响。基于使用Taguchi的实验设计(DoE)设计的实验,使用灰色关联度优化了性能指标,即侧面磨损,表面粗糙度和材料去除率(MRR)。计算加权的灰色关联度,以最大程度地减少侧面磨损和表面粗糙度,并最大程度地提高MRR。方差分析表明,切削刀片的形状是最重要的参数,其次是进给速度和切削深度,这有助于提高输出响应。在确定最佳条件下进行的实验显示出较低的后刀面磨损和较高的MRR的表面粗糙度。通过计算置信区间来确认获得的确认结果,该区间位于区间的宽度内。

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