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Effect of floating axial holder on oscillating cold forging of spline shaft

机译:浮动轴向夹持器对花浆轴振荡锻造的影响

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Oscillating technique is applied into the axial forging process of spline shaft to decrease the forming load and improve the quality of products. A floating axial holder with dwell force is designed to control the material flow. The influences of the floating axial holder have been analysed by finite element (FE) simulation and then verified by experiments. A FE model that considers material property change, elastic recovery and elastoplastic friction was built. The constitutive material model, which is mainly composed of variable elastic modulus and rate-dependent hardening, was used to simulate changes in material properties. Results showed that material flow was improved by decreasing dwell force. Tooth shape can be controlled by changing the dwell force of floating axial holder. The nonlinear function between addendum circle diameter and dwell force has been found. Hence, an optimal value of dwell force was determined considering the forming force, forming defects and tooth shape. Based on the simulating results, the optimal and irrational parameters of dwell force and frequency have been compared in the experiments. The typical defects of flash and accumulation can be eliminated by using the floating axial holder with optimal parameters.
机译:振荡技术应用于花键轴的轴向锻造过程,以降低成型载荷并提高产品质量。具有停留力的浮动轴向架设计用于控制材料流动。已经通过有限元(Fe)模拟分析了浮动轴向保持器的影响,然后通过实验验证。建立了一种考虑材料性能变化,弹性回收和弹塑性摩擦的FE模型。本构体材料模型主要由可变弹性模量和速率依赖硬化组成,用于模拟材料特性的变化。结果表明,通过降低居住力来提高材料流动。可以通过改变浮动轴向支架的驻留力来控制齿形。已经找到了附录圆直径和停留力之间的非线性功能。因此,考虑到成形力,形成缺陷和齿形来确定停留力的最佳值。基于模拟结果,在实验中比较了停留力和频率的最佳和非理性参数。通过使用具有最佳参数的浮动轴承器,可以消除闪光和累积的典型缺陷。

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