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Numerical simulation and experimental study on cold extrusion process for clutch outer gear hub with inner tooth shapes

机译:具有内齿形状的离合器外齿轮毂冷挤压过程的数值模拟与实验研究

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摘要

In this study, the clutch outer gear hub with inner tooth shapes was formed in five steps associated with three processes to pre-form the cup-shaped blank and two extrusion processes to perform the inner tooth shapes. The extrusion processes were the focus of this investigation because the dimensional accuracy of the inner tooth was the primary consideration to control the automobile transmission functionality. The cold extrusion process of the clutch outer gear hub was simulated by the finite element software DEFORM-3D, and the influences of process parameters such as the entrance angle of extruding punch, the thickness of initial blank, and the length of calibration band on forming load, tooth filling, and stress distribution were investigated. The simulation results show that the rounded corner of inner tooth in the clutch outer gear hub is fully filled, the effective stress and the forming load are relatively small with the entrance angle of extruding punch of 30 degrees, the thickness of initial blank of 6.0 mm, and the length of calibration band of 10 mm. Finally, the experiments were carried out by the cold extrusion forming of the clutch outer gear hub. The results prove the feasibility of the cold extrusion process and the correctness of the numerical simulation results.
机译:在本研究中,带内齿形的离合器外齿轮毂分五步成形,包括三个预成形杯形坯料的过程和两个挤压成形内齿形的过程。挤压工艺是本研究的重点,因为内齿的尺寸精度是控制汽车变速器功能的主要考虑因素。利用有限元软件DEFORM-3D模拟了离合器外齿毂的冷挤压过程,研究了挤压凸模入口角、初始毛坯厚度、校准带长度等工艺参数对成形载荷、充齿量和应力分布的影响。仿真结果表明,当挤压凸模入口角度为30°,初始毛坯厚度为6.0mm,校准带长度为10mm时,离合器外齿毂内齿圆角完全填满,有效应力和成形载荷相对较小。最后,对离合器外齿毂进行了冷挤压成形试验。结果证明了冷挤压工艺的可行性和数值模拟结果的正确性。

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