聚酰胺(PA6)多道次面铣削多目标优化的Grasshopper优化算法

IF 0.6 Q4 TRANSPORTATION SCIENCE & TECHNOLOGY SAE International Journal of Materials and Manufacturing Pub Date : 2023-10-30 DOI:10.4271/05-16-04-0027
Aissa Laouissi, Hammoudi Abderazek, Mourad Nouioua, M. Sait Sadiq
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引用次数: 0

摘要

铣削是一种普遍的加工技术,用于各种工业生产金属和非金属部件。本文重点研究了使用硬质合金刀具优化聚酰胺(PA6)的切削参数,利用最近开发的多目标、自然启发的元启发式算法,即多目标蚱蜢优化算法(MOGOA)。该优化过程的主要目标是最小化表面粗糙度和最大化材料去除率。通过应用MOGOA算法,验证了该算法在优化切削参数方面的有效性。这项研究的结果突出了MOGOA算法在PA6加工过程中有效微调切削参数的能力,从而在降低表面粗糙度和提高材料去除率方面改善了结果。
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Grasshopper Optimization Algorithm for Multi-objective Optimization of Multi-pass Face Milling of Polyamide (PA6)
Milling is a prevalent machining technique employed in various industries for the production of metallic and non-metallic components. This article focuses on the optimization of cutting parameters for polyamide (PA6) using carbide tools, utilizing a recently developed multi-objective, nature-inspired metaheuristic algorithm known as the Multi-Objective Grasshopper Optimization Algorithm (MOGOA). This optimization process’s primary objectives are minimizing surface roughness and maximizing the material removal rate. By employing the MOGOA algorithm, the study demonstrates its efficacy in successfully optimizing the cutting parameters. This research’s findings highlight the MOGOA algorithm’s capability to effectively fine-tune cutting parameters during PA6 machining, leading to improved outcomes in terms of surface roughness reduction and enhanced material removal rate.
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来源期刊
SAE International Journal of Materials and Manufacturing
SAE International Journal of Materials and Manufacturing TRANSPORTATION SCIENCE & TECHNOLOGY-
CiteScore
1.30
自引率
12.50%
发文量
23
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