首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part L, Journal of Materials: Design and Application >Development of a computational optimisation system to determine constitutive equation constants for metal alloys
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Development of a computational optimisation system to determine constitutive equation constants for metal alloys

机译:确定金属合金本构方程常数的计算优化系统的开发

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Simulations of metal forming processes typically use constitutive equations to describe material properties over a wide range of temperatures and strain rates. Classically, determining a set of values for the large number of constants present in more complex constitutive models presented great difficulty to researchers. In this paper, an algorithmic method of determining the constants of such constitutive equations is presented. The Genetic Algorithm implementation utilising MATLAB is described, and example fits to experimental data are presented. A study is performed to improve the performance of the method by combining the Genetic Algorithm and Particle Swarm optimisation methods into a hybrid algorithm and to exploit the inherent advantages of both methods of solution. Comparative performance between the GA-only and hybrid algorithm are presented, and it is found that such a Hybrid Solver is significantly more computationally efficient and produces more accurate parameter estimations.
机译:金属成型过程的模拟通常使用本构方程来描述在宽范围的温度和应变速率下的材料性能。传统上,为更复杂的本构模型中存在的大量常数确定一组值给研究人员带来了很大的困难。本文提出了一种确定此类本构方程常数的算法方法。描述了利用MATLAB的遗传算法实现,并给出了适合实验数据的示例。通过将遗传算法和粒子群优化方法组合到混合算法中来进行研究以提高该方法的性能,并利用这两种解决方案的固有优势。提出了仅纯GA算法和混合算法之间的比较性能,并且发现这种混合求解器在计算效率上明显更高,并且可以产生更准确的参数估计。

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