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A study on optimal design of process parameters in calibre rolling by simulated annealing algorithm

机译:模拟退火算法优化口径轧制工艺参数的研究

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摘要

This study adopted the complex analytical model and simulated annealing algorithm to analyse calibre rolling process and to find out the optimal combination of the important process parameters. Since the simulated annealing algorithm has the capacity of getting global optimum, which does not require the calculation of objective function and the gradient data of constraint function, and meanwhile, has no limits to the kind of design variables, the optimal design of the parameter combination is thus proceeded. By focusing square-to-oval of the calibre rolling, this study intends to obtain the optimal combination with the important process parameters such as calibre radius, reduction percentage of central height, the ratio of width to thickness, rolling speed, and roll diameter. The shape quality and consumed power needed for deformation after the process of such combination are indeed the best. In this study, we have combined numerical analysis and optimisation algorithm to obtain the optimal process parameters of calibre rolling process correctly and quickly, which will facilitate the analysis in the engineering of calibre rolling design.
机译:本研究采用复杂的分析模型和模拟退火算法来分析口径轧制过程,并找到重要工艺参数的最佳组合。由于模拟退火算法具有全局最优的能力,因此不需要目标函数的计算和约束函数的梯度数据,并且对设计变量的种类,参数组合的最优设计没有限制。因此进行。通过集中研究口径轧制的方形到椭圆形,本研究旨在获得与重要工艺参数(例如口径半径,中心高度减小百分比,宽度与厚度之比,轧制速度和轧辊直径)的最佳组合。这种组合过程后变形所需的形状质量和消耗的功率确实是最好的。本研究将数值分析与优化算法相结合,正确,快速地获得了口径轧制过程的最佳工艺参数,为口径轧制设计工程中的分析提供了方便。

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