使用 VIKOR 和 RSM-DA 优化 9xc 钢的干车削工艺

Nhat Tan Nguyen, Anh Thang Nguyen, Tien Sy Nguyen
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引用次数: 0

摘要

干车削是降低加工过程中生产成本和环境影响的有效方法。本研究探讨了干车削过程中切削速度 (Vc)、进给量 (fz) 和切削深度 (ap) 对 9XC 钢表面粗糙度 (Ra) 和材料去除率 (MRR) 的影响。采用 Box-Behnken 实验设计分析了这些切削参数的主效应和交互效应。在这项研究中,采用了响应面方法--可取性方法(RSM-DA)和 VIseKriterijumska Optimizacija I Kompromisno Resenje(VIKOR)相结合的方法来解决多目标优化问题,并比较了这两种方法的性能。这两种方法都能找出同时优化表面质量和生产率的最佳参数集,而且计算效率高,易于实施,因此可以对这两种方法的结果进行评估。研究发现,RSM-DA 和 VIKOR 都能有效解决多目标优化问题,如优化干车削中的切削参数。RSM-DA 是一种统计工具,可将多个目标合并为一个函数,而 VIKOR 则是一种决策方法,可根据多个标准对备选方案进行排序。选择使用哪种方法取决于问题的具体要求和实施资源的可用性。研究结果表明,VIKOR 和 RSM-DA 都适用于解决车削工艺的多目标优化问题。根据 VIKOR 方法,最佳切削条件为切削速度 Vc 为 120 m/min,切削深度 ap 为 0.1 mm,进给率 fz 为 0.06 mm/rev,从而使表面粗糙度达到 0.209 um,材料去除率达到 0.72 cm3/min。同时,RSM-DA 预测的最佳 Ra 值和 MRR 值分别为 0.254 um 和 3.36 cm3/min;对应的 Vc 值为 180m/min,fz 值为 0.06mm/rev,ap 值为 0.3mm;也就是说,表面粗糙度值增加 21.5%,MRR 将增加 366.7%。本研究的结果可为在特定情况下选择适当的切削参数进行 9XC 钢的干式车削提供指导,以实现理想的表面粗糙度 Ra 和材料去除率 MRR。
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USING VIKOR AND RSM-DA IN THE OPTIMIZATION OF DRY TURNING OF 9XC STEEL
Dry turning is an effective method for reducing the production costs and environmental impact of machining processes. In this study, the effect of cutting speed (Vc), feed rate (fz), and depth of cut (ap) on the surface roughness (Ra) and material removal rate (MRR) of 9XC steel during dry turning was investigated. A Box-Behnken experimental design was employed to analyze the main effects and interaction effects of these cutting parameters. In this research, the combining Response Surface Methodology - Desirability Approach (RSM-DA) and VIseKriterijumska Optimizacija I Kompromisno Resenje (VIKOR) method were both employed for solving multiple objective optimization problems, and their performance was compared. The results from both methods can be assessed based on their ability to identify the optimal set of parameters that simultaneously optimize surface quality and production rate, as well as their computational efficiency and ease of implementation. Both RSM-DA and VIKOR have been found effective for solving multi-objective optimization problems, such as optimizing cutting parameters in dry turning. While RSM-DA is a statistical tool that combines multiple objectives into a single function, VIKOR is a decision-making method that ranks alternatives based on multiple criteria. The choice of which method to use depends on the specific requirements of the problem and the availability of resources for implementation. The research results show that both VIKOR and RSM-DA are suitable for solving the multi-objective optimization problem of the turning process. According to the VIKOR method, the optimum cutting conditions were found to be a cutting speed Vc of 120 m/min, a depth of cut ap of 0.1 mm a feed rate fz of 0.06 mm/rev, and, which resulted in a surface roughness of 0.209 um and a material removal rate of 0.72 cm3/min. Meanwhile, RSM-DA predicts the optimal Ra and MRR values of 0.254 um and 3.36 cm3/min, respectively; corresponding to the Vc of 180m/min, fz of 0.06mm/rev and ap of 0.3mm; That means, the increasing the value of surface roughness by 21.5% will increase the MRR by 366.7%. The findings of this study can provide guidance for selecting the appropriate cutting parameters for dry turning of 9XC steel to achieve desired surface roughness Ra and material removal rate MRR in the specific case.
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来源期刊
Journal of Applied Engineering Science
Journal of Applied Engineering Science Engineering-Engineering (all)
CiteScore
2.00
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0.00%
发文量
122
审稿时长
12 weeks
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