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Optimization of Cutting Parameters for Turning Operation of Titanium Alloy Ti-6Al-4V Material Workpiece using the Taguchi Method

机译:用TAGUCHI法测定钛合金Ti-6AL-4V材料工件转动操作的切削参数的优化

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One of the most important issues in turning operations is to choose suitable parameters in order to achieve a desired surface finish. The surface finish in machining operation depends on many parameters such as workpiece material, tool material, tool coating, machining parameters, etc. The purpose of this research is to focus on the analysis of optimum cutting parameters to get the lowest surface roughness in turning Titanium alloy Ti-6Al-4V with the insert with the standard code DNMG 110404 under dry cutting condition, by the Taguchi method. The turning parameters are evaluated as cutting speed of 14, 20 and 28 m/min, feed rate of 0.12, 0.14 and 0.16 mm/rev, depth of cut of 0.3, 0.6 and 1 mm, each at three levels. The Experiment was designed using the Taguchi method and 9 experiments were conducted by this process. The results are analyzed using analysis of variance method (ANOVA). The results of analysis show that the depth of cut has a significant role to play in producing lower surface roughness that is about 63.33% followed by feed rate about 30.25%, and cutting speed has less contribution on the surface roughness. Also it was realized that with the use of the confirmation test, the surface roughness improved by 227% from its initial state.
机译:转动操作中最重要的问题之一是选择合适的参数以实现所需的表面光洁度。加工操作中的表面光洁度取决于许多参数,如工件材料,工具材料,工具涂层,加工参数等。本研究的目的是专注于分析最佳切削参数,以获得转弯钛的最低表面粗糙度合金TI-6AL-4V与标准代码DNMG 110404在干切割条件下,通过TAGUCHI方法。转弯参数评估为切削速度为14,20和28m / min,进料速率为0.12,0.14和0.16mm / ref,切割深度为0.3,0.6和1mm,每个均为三个水平。使用Taguchi方法设计了实验,并通过该方法进行了9个实验。使用方差分析(ANOVA)分析结果。分析结果表明,切割深度在产生约63.33%后的较低表面粗糙度,其速率约为30.25%,切割速度对表面粗糙度的贡献较小。此外,通过使用确认试验,表面粗糙度从其初始状态提高了227%。

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