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Numerical simulation of non-circular spinning: a rotationally non-symmetric spinning process

机译:非圆形纺丝的数值模拟:旋转非对称纺丝过程

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This paper describes the peculiarities encountered in the numerical modeling of non-circular spinning processes using motion-controlled roller tools and applying the Finite Element Method (FEM). This process is suitable for producing non-circular, hollow components in small to medium-sized production lots. Numerical simulation can be used to optimize the process. Therefore, it is necessary to make a realistic sheet thinning and wrinkling calculation by using the FEM. This can be achieved through the definition of the real kinematics, a suitable flow curve and an optimal sheet meshing strategy using solid elements. An optimal sheet meshing strategy is particularly necessary in order to realistically calculate the process within an acceptable computing time. Reference experiments with the rotationally non-symmetric mandrel types, the "Tripode" and "Pagoda", were carried out to compare simulations and experiments. A comparison of the reference experiments with the "Tripode" mandrel demonstrated that it is possible to simulate non-circular spinning with a deviation of less than 5% with respect to minimum sheet thickness. It is also possible to predict wrinkling in critical, non-circular spinning processes. This has been confirmed by comparing the "Pagoda" reference experiment with the FEM simulation.
机译:本文介绍了使用运动控制辊工具并应用有限元方法(FEM)对非圆形纺丝过程进行数值建模时遇到的特殊情况。该方法适用于中小批量生产非圆形空心部件。数值模拟可用于优化过程。因此,有必要使用FEM进行实际的薄板起皱计算。这可以通过定义实际运动学,合适的流动曲线以及使用实体元素的最佳板材啮合策略来实现。为了在可接受的计算时间内真实地计算过程,最佳的图纸网格划分策略特别必要。进行了旋转非对称心轴类型“ Tripode”和“ Pagoda”的参考实验,以比较模拟和实验。参考实验与“ Tripode”心轴的比较表明,可以模拟非圆形纺丝,相对于最小片材厚度的偏差小于5%。还可以预测关键的非圆形纺丝工艺中的起皱。通过将“宝塔”参考实验与FEM仿真进行比较,可以证实这一点。

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