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Springback Simulation and Compensation for High Strength Parts Using JSTAMP

机译:使用JStamp的高强度零件回弹仿真和补偿

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The stamping parts made from high strength steel have a large springback which is difficult to control. With the development of simulation technology, the springback can be accurately predicted using advanced kinematic material models and CAE systems. In this paper, a stamping process for a pillar part made from several classes of high strength steel was simulated using a Yoshida-Uemori kinematic material model and the springback was well predicted. To obtain the desired part shape, CAD surfaces of the stamping tools were compensated by a CAE system JSTAMP. After applying the compensation 2 or 3 times, the dimension accuracy of the simulation for the part shape achieved was about 0.5 mm. The compensated CAD surfaces of the stamping tools were directly exported from JSTAMP to CAM for machining. The effectiveness of the compensation was verified by an experiment using the compensated tools.
机译:由高强度钢制成的冲压部件具有大的回弹,难以控制。随着仿真技术的发展,可以使用先进的运动材料模型和CAE系统来准确地预测回弹。在本文中,使用Yoshida-Uemori运动材料模型模拟了由几种高强度钢制成的柱部件的冲压过程,并预测回弹。为了获得所需的部件形状,通过CAE系统JStamp补偿冲压工具的CAD表面。在施加补偿2或3次之后,所达到的部件形状的模拟的尺寸精度为约0.5mm。冲压工具的补偿CAD表面从JSTAMP直接导出到CAM以进行加工。通过使用补偿工具进行实验验证了补偿的有效性。

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