基于概率多目标优化的材料加工参数设计

Jie Yu, M. Zheng
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摘要

材料加工参数设计对于在清洁生产条件下全面保障产品质量意义重大。本文从概率多目标优化(PMOO)的角度提出了一种合适的材料加工参数设计方法。该方法本质上具有概率论多目标并发优化的特点,并采用 "连续数论优化(SNTO)"进行连续深度优化离散化。此外,通过对每种方案的总优选概率进行评估,完成材料加工的优化设计。随后,分别以节能减排的 H7007C 轴承内圈磨削工艺参数设计问题和 AA 6082 铝合金毛坯热冲压件的加工优化问题为例,说明了该方法的流程。结果表明了该方法的合理性。该方法在未来的生产优化参数设计中具有广阔的应用前景。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Parameter Design of Materials Processing in Term of Probabilistic Multi-objective Optimization
Parameter design of material processing is quite significant to provide a safeguard to the quality of product comprehensively in condition of clean production especially. In this paper, an appropriate approach of parameter design of materials processing is proposed in term of probabilistic multi-objective optimization (PMOO). The approach has the characteristic of concurrent optimization of multiple objectives in spirit of probability theory inherently; furthermore the “sequential number-theoretic optimization (SNTO)” is employed to conduct the discretization of successive deep optimization. Besides, the optimal design of materials processing is completed by conducting the assessment of total preferable probability for each scheme. Subsequently, parameter design problems of grinding processes of H7007C bearing inner ring with energy saving and emission reduction, and processing optimization of aluminum alloy AA 6082 blank hot stamping, are taken as examples to illuminate the procedure of the approach, respectively. The results show the rationality of the approach. It has a bright prospect in parameter design of production optimization in the future.
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