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用于加工AM60B导电生物材料的线切割电火花加工参数研究

Parametric investigation of W-EDM factors for machining AM60B conductive biomaterial.

作者信息

Diviya M, Joel J Jebin, Subramanian M, Balasubramanian T, Madhusuthan A V, Monish N, Hasan Nasim

机构信息

Department of Computer Science and Engineering, Amrita School of Computing, Amrita Vishwa Vidyapeetham - Chennai Campus, Chennai, Tamil Nadu, 601103, India.

Department of Mechanical Engineering, St. Joseph's College of Engineering, Old Mamallapuram Road, Chennai, Tamil Nadu, 600119, India.

出版信息

Sci Rep. 2024 Jan 2;14(1):216. doi: 10.1038/s41598-023-50777-y.

Abstract

Wire-electrical discharge machining (W-EDM) is a precise and efficient non-traditional technology employed to cut intricate shapes in conductive biomaterials. These biomaterials are challenging to machine using traditional methods. This present study delves into the impact of various process parameters, namely discharge duration (D), spark gap time (S), discharge voltage (D), and wire advance rate rate (W). This research evaluates the impact of several factors on response variables, namely the machining rate (MR) and surface irregularity (SR), during the machining process of the AM60B magnesium alloy. The confirmation of the material used in the machining process is achieved via the utilisation of a scanning electron microscopy (SEM) image in conjunction with an energy dispersive spectroscopic (EDS) image. The experiment is designed as L9 orthogonal array by using Taguchi's approach, taking into account 4 factors with 3 levels. The objective of this experiment is to ascertain the most favourable values for machining parameters while working with AM60B magnesium alloy using brass wire. Through analysis of variance (ANOVA), the study confirms that wire advance rate (43.10%) is the most influencing parameter for machining rate and surface irregularity followed by spark gap time (33.91%) and discharge duration (11.48%). Additionally, The TOPSIS-CRITIC and the desirability approach were used in order to determine the optimum parameter combinations that provide the most favourable combined output. Confirmatory testing is used to evaluate the efficiency of the stated ideal conditions. The maximum improvement in Desirability approach is obtained at 4.56% and 4.193% for MR and SR respectively. The maximum improvement in TOPSIS approach is obtained at 1.77% and 2.78% for MR and SR respectively.

摘要

电火花线切割加工(W-EDM)是一种精确且高效的非传统技术,用于在导电生物材料上切割复杂形状。这些生物材料使用传统方法加工具有挑战性。本研究深入探讨了各种工艺参数的影响,即放电持续时间(D)、火花间隙时间(S)、放电电压(D)和电极丝进给速度(W)。本研究评估了在AM60B镁合金加工过程中,几个因素对响应变量的影响,即加工速率(MR)和表面粗糙度(SR)。通过结合扫描电子显微镜(SEM)图像和能量色散光谱(EDS)图像来确认加工过程中使用的材料。采用田口方法将实验设计为L9正交阵列,考虑4个因素,每个因素有3个水平。本实验的目的是确定使用黄铜丝加工AM60B镁合金时加工参数的最有利值。通过方差分析(ANOVA),研究证实电极丝进给速度(43.10%)是对加工速率和表面粗糙度影响最大的参数,其次是火花间隙时间(33.91%)和放电持续时间(11.48%)。此外,使用TOPSIS-CRITIC法和期望度法来确定提供最有利综合输出的最佳参数组合。使用验证性测试来评估所述理想条件的效率。期望度法在加工速率和表面粗糙度方面分别获得4.56%和4.193%的最大改进。TOPSIS法在加工速率和表面粗糙度方面分别获得1.77%和2.78%的最大改进。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f8a3/10761742/ddab0a9cc53e/41598_2023_50777_Fig1_HTML.jpg

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