Suppr超能文献

SS310合金电火花加工的加工性能、经济与环境分析及多准则优化

Machining performance, economic and environmental analyses and multi-criteria optimization of electric discharge machining for SS310 alloy.

作者信息

Hannan Abdul, Mehmood Shahid, Ali Muhammad Asad, Raza Muhammad Huzaifa, Farooq Muhammad Umar, Anwar Saqib, Adediran Adeolu A

机构信息

Department of Mechanical Engineering, University of Engineering and Technology, Taxila, 47080, Pakistan.

Department of Industrial and Manufacturing Engineering, Faculty of Mechanical Engineering, University of Engineering and Technology, Lahore, 54890, Pakistan.

出版信息

Sci Rep. 2024 Nov 22;14(1):28930. doi: 10.1038/s41598-024-79338-7.

Abstract

With the expansion of the manufacturing sector, it has become crucial to incorporate sustainable production methods in order to remain competitive in the market. This study focuses on addressing the needs of the manufacturing industry by conducting a sustainability analysis of electric discharge machining for SS310 alloy. The analysis explores the impact of various electrode materials, for instance, copper and brass, as well as different machining variables, including discharge current (I = 4-12 A), spark gap (SG = 6-12 mu), pulse duration (Pon = 15-45 μs), and duty cycle (DC = 75-85%) using Taguchi method. The objective is to optimize the machining performance measures, which includes material removal rate (MRR), surface roughness (Ra), electrode wear (EW), and energy consumption (EC). In addition, the economic analysis of the machining process takes into account factors such as energy cost, dielectric consumption cost, EW cost, labor cost, and machine depreciation cost for both types of electrodes. Furthermore, the study investigates the carbon emissions resulting from EC, dielectric consumption, and EW to assess the environmental impact of the machining process. Multi-criteria decision-making approach is employed to assess the sustainability of the machining process by taking into account several performance, cost and environmental factors simultaneously. From empirical analysis, it has been observed that the copper electrode outperformed the brass electrode in terms of MRR (2.67 mm/min), Ra (3.36 µm), EW (0.272 g), and EC (145.08 kJ) due to its superior electrical and thermal characteristics. In the cost analysis, copper offered lower costs for EC (2.02 PKR) attributed to its higher electrical conductivity while higher costs in terms of EW (5.5 PKR) and dielectric consumption (5.2 PKR) than brass. However, the analysis of labor and machine depreciation costs revealed that the application of copper electrode results in lower costs (80.1 and 99.3 PKR, respectively) than the brass electrode primarily due to its shorter machining time. The analysis of the environmental impact showed that the utilization of a copper electrode leads to reduced carbon emissions of 9.8 g CO due to its lower EC during the machining process. However, the copper electrode results in higher emissions from EW (5.07 g CO) and dielectric consumption (54.58 g CO) compared to the brass electrode. Based on the multi-criteria decision-making using the composite desirability function approach, it is evident that the copper electrode exhibits superior performance in terms of MRR, Ra, and total machining cost. Conversely, the brass electrode demonstrates better performance in terms of overall carbon emissions.

摘要

随着制造业的扩张,采用可持续生产方法对于在市场中保持竞争力变得至关重要。本研究通过对SS310合金的电火花加工进行可持续性分析,着重满足制造业的需求。该分析使用田口方法探究了各种电极材料(例如铜和黄铜)以及不同加工变量(包括放电电流(I = 4 - 12 A)、火花间隙(SG = 6 - 12 μ)、脉冲持续时间(Pon = 15 - 45 μs)和占空比(DC = 75 - 85%))的影响。目标是优化加工性能指标,包括材料去除率(MRR)、表面粗糙度(Ra)、电极磨损(EW)和能耗(EC)。此外,加工过程的经济分析考虑了两种电极的能源成本、电介质消耗成本、EW成本、劳动力成本和机器折旧成本等因素。此外,该研究调查了EC、电介质消耗和EW产生的碳排放,以评估加工过程的环境影响。采用多准则决策方法,通过同时考虑多个性能、成本和环境因素来评估加工过程的可持续性。从实证分析中可以观察到,由于其优越的电气和热特性,铜电极在MRR(2.67 mm/min)、Ra(3.36 µm)、EW(0.272 g)和EC(145.08 kJ)方面优于黄铜电极。在成本分析中,由于铜的电导率较高,其EC成本较低(2.02巴基斯坦卢比),而EW成本(5.5巴基斯坦卢比)和电介质消耗成本(5.2巴基斯坦卢比)高于黄铜。然而,劳动力和机器折旧成本分析表明,使用铜电极的成本(分别为80.1和99.3巴基斯坦卢比)低于黄铜电极,主要是因为其加工时间较短。环境影响分析表明,由于加工过程中EC较低,使用铜电极可减少9.8 g CO的碳排放。然而,与黄铜电极相比,铜电极的EW排放量(5.07 g CO)和电介质消耗排放量(54.58 g CO)更高。基于使用复合合意度函数方法的多准则决策,很明显铜电极在MRR、Ra和总加工成本方面表现出卓越性能。相反,黄铜电极在总体碳排放方面表现更好。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/a753/11582806/b4fcff401d3f/41598_2024_79338_Fig1_HTML.jpg

文献检索

告别复杂PubMed语法,用中文像聊天一样搜索,搜遍4000万医学文献。AI智能推荐,让科研检索更轻松。

立即免费搜索

文件翻译

保留排版,准确专业,支持PDF/Word/PPT等文件格式,支持 12+语言互译。

免费翻译文档

深度研究

AI帮你快速写综述,25分钟生成高质量综述,智能提取关键信息,辅助科研写作。

立即免费体验