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A Process/Machine coupling approach: Application to Robotized Incremental Sheet Forming

机译:过程/机器耦合方法:在自动增量板材成型中的应用

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In this paper, a Process/Machine coupling approach applied to Robotized Incremental Sheet Forming (RISF) is presented. This approach consists in coupling a Finite Element Analysis (FEA) of the process with an elastic modelling of the robot structure to improve the geometrical accuracy of the formed part. The FEA, assuming a rigid machine, is used to evaluate the forces at the interface between the tool and the sheet during the forming stage. These forces are used as input data for the elastic model, to predict and correct the tool path deviations. In order to make the tool path correction more effective, the weight of three numerical and material parameters of the FEA on the predicted forces is investigated. Finally, the proposed method is validated by the comparison of the numerical and experimental tool paths and geometries obtained with or without correction of the tool path.
机译:在本文中,提出了一种应用于自动增量板材成型(RISF)的过程/机器耦合方法。该方法包括将过程的有限元分析(FEA)与机器人结构的弹性建模相结合,以提高成型零件的几何精度。假设机器是刚性的,则FEA用于评估成型阶段在工具和板材之间的界面处的力。这些力用作弹性模型的输入数据,以预测和校正刀具路径偏差。为了使刀具路径校正更有效,研究了有限元分析的三个数值和材料参数在预测力上的权重。最后,通过比较数值路径和实验路径以及在有无校正工具路径的情况下获得的几何形状,验证了所提出的方法。

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