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Process modelling for air bending: validation by experiments and simulations

机译:空气弯曲的过程建模:通过实验和模拟进行验证

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In order to evaluate and justify the use of bending simulations in e.g. CAPP applications, the simulations have to be compared to realistic samples from shop floor practice. However, input data concerning e.g. material behaviour, sheet thickness and tool geometry can be controlled in an adequate, reproducible way if obtained under laboratory conditions.The bending setup leading to the experimental data is elaborated upon. The experiments mainly address the required punch displacement and the sheet length correction, being the main concerns in CAPP applications.The experiments are employed to evaluate results of simulations of the air bending process. In this case, the results of the equilibrium model, called the ABS model (air bending simulation) and a finite element method analysis (FEM) (both described in an accompanying publication), are involved in the experimental verification.Diverging trends in the analysis can indicate deficits in the simulations. Presumably, these aberrations can be reflected on the differing assumptions and principles applied in the models or assumptions. Concerning material behaviour.
机译:为了评估和证明弯曲模拟在例如在CAPP应用中,必须将仿真与车间实践中的真实样本进行比较。但是,输入数据涉及如果在实验室条件下获得材料的性能,板材的厚度和工具的几何形状,则可以通过适当的,可重复的方式进行控制。实验主要针对所需的冲头位移和板长校正,这是CAPP应用中的主要问题。该实验用于评估空气弯曲过程的仿真结果。在这种情况下,称为ABS模型(空气弯曲模拟)和有限元方法分析(FEM)(均在随附出版物中进行了描述)的平衡模型的结果将包含在实验验证中。可以指示模拟中的缺陷。据推测,这些像差可以反映在模型或假设中使用的不同假设和原则上。关于物质行为。

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