Application of probability-based multi-objective optimization in material engineering

M. Zheng
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引用次数: 5

Abstract

Introduction/purpose: Althought many methods have been proposed to deal with the problem of material selection, there are inherent defects of additive algorithms and subjective factors in such algorithms. Recently, a probability-based multi-objective optimization was developed to solve the inherent shortcomings of the previous methods, which introduces a novel concept of preferable probability to reflect the preference degree of the candidate in the optimization. In this paper, the new method is utilized to conduct an optimal scheme of the switching material of the RF-MEMS shunt capacitive switch, the sintering parameters of natural hydroxyapatite and the optimal design of the connecting claw jig. Methods: All performance utility indicators of candidate materials are divided into two groups, i.e., beneficial or unbeneficial types for the selection process; each performance utility indicator contributes quantitatively to a partial preferable probability and the product of all partial preferable probabilities makes the total preferable probability of a candidate, which transfers a multi-objective optimization problem into a single-objective optimization one and represents a uniquely decisive index in the competitive selection process. Results: Cu is the appropriate material in the material selection for RF - MEMS shunt capacitive switches; the optimal sintering parameters of natural hydroxyapatite are at 1100°C and 0 compaction pressure; and the optimal scheme is scheme No 1 for the optimal design of a connecting claw jig. Conclusion: The probability-based multi-objective optimization can be easily used to deal with an optimal problem objectively in material engineering.
基于概率的多目标优化在材料工程中的应用
前言/目的:虽然已经提出了许多方法来处理材料选择问题,但这些算法存在固有的加性算法缺陷和主观因素。近年来,一种基于概率的多目标优化方法解决了以往方法的固有缺陷,该方法引入了优选概率的概念来反映优化过程中候选对象的偏好程度。本文利用该方法对RF-MEMS并联电容开关的开关材料、天然羟基磷灰石的烧结参数和连接爪夹具进行了优化设计。方法:将候选材料的所有性能效用指标分为有利型和不利型两组进行选择;每个性能效用指标定量地贡献了一个部分优选概率,所有部分优选概率的乘积即为候选产品的总优选概率,将多目标优化问题转化为单目标优化问题,是竞争选择过程中唯一的决定性指标。结果:Cu是RF - MEMS并联电容开关材料选择的理想材料;天然羟基磷灰石的最佳烧结温度为1100℃,压实压力为0;连接爪夹具优化设计的最优方案为方案1。结论:基于概率的多目标优化方法可方便客观地处理材料工程中的优化问题。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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