APPLICATION OF INTEGRATED TAGUCHI METHOD AND PRESENT-WORTH METHOD TO OPTIMIZE THE TURNING PARAMETERS OF INCONEL X750 ALLOY WITH AL2O3 NANOFLUID IN COCONUT OIL

Ebun Fasina, B. Sawyerr, W. Adedeji, K. Adedeji, Ridwan Majekodunmi Adegoke, S. Oke, E. Oyetunji
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Abstract

A previous study has shown the successful application of the Taguchi method in both the direct and indirect perspectives to compute the optimal parameters during the turning of Inconel x-750 alloy. The study deployed signal-to-noise ratios to minimize the output of surface roughness, tool wear and cutting force but the machining economic parameters were not mentioned. Yet, the techno-economic dimension of machining aids profitable adjustments of the turning operations. To correct this deficiency, the present article introduces a techno-economic dimension to the turning process using literature data. This paper is about combining three variants of the Taguchi methods in five distinct formulations. The Taguchi, Taguchi-Pareto and Taguchi-ABC methods are combined with the present worth method by introducing the interest rate and inflationary rate at different points in the S/N ratio (SNR) calculations. Aspect ratios and direct parameter combinations replace the traditional direct parameter analysis in the factor-level framework. The present worth, optimal parametric setting and performance flow analysis are needed for all five formulations to ascertain the direction of performance analysis for the turning process. Concerning the direct and aspect ratios, the cutting velocity (PWV, 949.1444) and the feed rate-cutting velocity ratio (PWF/V, 0.026) are the first and last positions, respectively. Regarding the Taguchi experimental run, the present worth of the feed rate-cutting velocity ratio (PWF/V, -155.403) was the first position while the present worth of the cutting velocity (PWV, -185.009) is the last position. Results for other formulations show promising attributes for the methods. The work could be useful for planning purposes in turning operations.
应用田口法和现值法对椰油中al2o3纳米流体对inconel x750合金车削工艺参数进行优化
已有研究成功地将田口法应用于Inconel x-750合金车削过程的直接和间接参数计算。该研究采用信噪比来最小化表面粗糙度、刀具磨损和切削力的输出,但没有提到加工经济参数。然而,加工的技术经济维度有助于对车削操作进行有利的调整。为了纠正这一缺陷,本文使用文献数据引入了车削过程的技术经济维度。本文将田口法的三种变体结合在五种不同的公式中。Taguchi、Taguchi- pareto和Taguchi- abc方法通过在信噪比(SNR)计算中引入不同点的利率和通货膨胀率,与现值法相结合。在因子层次框架中,纵横比和直接参数组合取代了传统的直接参数分析。为了确定车削过程性能分析的方向,需要对这五种配方进行现值、最优参数设置和性能流分析。在直径比和长径比中,切削速度(PWV, 949.1444)和进给速度-切削速度比(PWF/V, 0.026)分别为第一和最后位置。田口实验中,进给速度-切削速度比的现值(PWF/V, -155.403)为第一,切削速度的现值(PWV, -185.009)为最后。其他配方的结果显示了该方法的良好属性。这项工作可用于车削作业的规划目的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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