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Explicit modeling and investigation of friction torques in double-nut ball screws for the precision design of ball screw feed drives

机译:双螺母滚珠丝杠摩擦扭矩的明确建模与调查,用于滚珠螺杆馈电的精密设计

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摘要

Explicit friction torque model composed of an applied load and viscous friction terms is formulated for two-point contact double-nut ball screws. Precision friction torque test rig is developed to verify the model. Forward and reverse direction measurements show a small friction difference due to the asymmetric nut geometry. Experiments confirm the friction prediction accuracy of 89%. Although a large axial load is applied to a ball screw, a lower and smoother friction torque is obtained by a proper preload selection through the developed model. It is also applicable as a thermal boundary condition for the finite element analysis. Efficient, smooth and accurate feed systems are obtained through the optimization of ball screw design parameters by minimizing the friction model.
机译:由施加的载荷和粘性摩擦术语组成的显式摩擦扭矩模型用于双点接触双螺母螺杆。 开发精密摩擦扭矩试验台以验证模型。 向前和反向测量显示由于不对称螺母几何形状引起的小摩擦差。 实验证实了摩擦预测精度为89%。 尽管将大的轴向载荷施加到滚珠丝杠,但是通过通过开发的模型进行适当的预载选择来获得较低和更平滑的摩擦扭矩。 它还适用于有限元分析的热边界条件。 通过最小化摩擦模型,通过优化滚珠丝杠设计参数来获得高效,光滑和准确的进料系统。

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