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Optimal design of metal forming die surfaces with evolution strategies

机译:具有演化策略的金属成形模具表面的优化设计

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A common characteristics in the simulation of automotive sheet metal forming processes is that nearly all die surfaces are manually created within conventional computer-aided design systems (CAD). The solutions produced using these CAD systems are undoubtedly valuable from the point of view of applicability in sheet metal forming practice. However, this approach is time consuming and most of the design time is spent within these CAD systems. This paper presents the development of a computer-based approach for the evolutionary automatic design (EAD) of geometry and process parameters for industrial metal forming processes. The main characteristics of the solution methodology are the use of evolution strategies within the optimizer, the use of sheet metal formability as objective functions and a parameterization of die surfaces. The results of a comparative study of our EAD die surface generation against conventional CAD die surface generation for a representative structural design problem show the efficiency of the former. It is observed that EAD often finds the region of the search space containing the global optimum, thus supporting engineers in practice with automatic generated sheet metal forming tools.
机译:汽车钣金成型过程仿真的一个共同特征是,几乎所有模具表面都是在常规计算机辅助设计系统(CAD)中手动创建的。从在钣金成形实践中的适用性的角度来看,使用这些CAD系统生产的解决方案无疑是有价值的。但是,这种方法很耗时,并且大多数设计时间都花在了这些CAD系统中。本文介绍了一种基于计算机的方法的开发,该方法用于工业金属成型工艺的几何形状和工艺参数的进化自动设计(EAD)。解决方案方法的主要特征是在优化程序中使用演化策略,将钣金可成形性用作目标函数以及对模具表面进行参数化。针对典型的结构设计问题,我们的EAD模具表面生成与常规CAD模具表面生成的比较研究结果显示了前者的效率。可以观察到,EAD通常会找到包含全局最优值的搜索空间区域,从而在实践中为工程师提供自动生成的钣金成形工具的支持。

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