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Geometrical Parameters Optimization for Tube Hydroforming using Response Surface Method

机译:用响应表面法对管液压成录进行几何参数优化

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In tube hydroforming (THF) the optimal thickness variation of a product is influenced by the geometrical, material and process parameters. In this study different values of initial tube length combined with various fillet and entry radii of the die are taken into account to predict an acceptable T-shaped tube of which the minimum wall thickness fulfills the industrial demand. To reach this goal, an integrated optimization approach, using the classical explicit dynamic (ED) incremental approach using ABAQUS? commercial code together with an optimization algorithm was developed. This latter consists in constructing an explicit form of the objective function by response surface methodology (RSM) based on diffuse approximation (DA) according to the design variables. To search the global optimum of the objective function, the sequential quadratic programming (SQP) algorithm has been used.
机译:在管液压成形(THF)中,产品的最佳厚度变化受几何,材料和工艺参数的影响。在该研究中,考虑到与模具的各种圆角和进入半圆角和进入半圆形的不同值,以预测可接受的T形管,其中最小壁厚满足了工业需求。为了实现这一目标,使用ABAQUS使用经典显式动态(ED)增量方法进行集成优化方法?开发了商业代码与优化算法一起开发。该后者包括根据设计变量基于漫反射近似(DA)来构建目标函数的明确形式。为了搜索目标函数的全局最优,已经使用了顺序二次编程(SQP)算法。

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