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Numerical Study on the Flash Gutter of Forging Die Using Response Surface Methodology

机译:响应表面方法锻造锻模闪渠排水沟的数值研究

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Aiming at the lack of the traditional design method of the forging die, the response surface methodology based on design of experiments is proposed to optimize the parameters of flash gutter in forging die. According to the central composite inscribed experiment design, numerical simulation was carried out. On this basis, the quadratic polynomial response surface model was built by regressive analysis. The optimized flash gutter sizes are obtained by analyzing the response surface model with an objective of minimizing flash volume. The forging die of automobile flange has been studied as an illustration to validate the application of the response surface methodology. Finally, the comparison was done using genetic algorithms and the results show that the response surface methodology is better than the genetic algorithms with shorten time and better effect when the factor is small.
机译:旨在缺乏锻造模具的传统设计方法,提出了基于实验设计的响应面方法,以优化锻模中的闪光灯的参数。根据中央复合铭刻实验设计,进行了数值模拟。在此基础上,二次多项式响应面模型由回归分析构建。通过利用最小化闪光灯的目的来分析响应表面模型来获得优化的闪光沟槽尺寸。已经研究了汽车法兰的锻造模具作为验证响应表面方法的应用。最后,使用遗传算法进行比较,结果表明,当因子较小时,响应表面方法优于缩短时间和更好效果的遗传算法。

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