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首页> 外文期刊>Transactions of the Canadian Society for Mechanical Engineering >Analysis of load distribution and contact stiffness of the single-nut ball screw based on the whole rolling elements model
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Analysis of load distribution and contact stiffness of the single-nut ball screw based on the whole rolling elements model

机译:基于整个滚动元件模型的单螺杆螺杆载荷分布及接触刚度分析

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摘要

This paper aims to investigate the load distribution and contact stiffness characteristics of the single-nut ball screw pair (SNBSP). First, the transformed relationship of coordinate systems is established. Then, the whole rolling elements load distribution model of the SNBSP is presented. Based on this, the whole rolling elements contact stiffness model is obtained. Applying the Newton-Raphson iterative method to solve the model, the normal force of rolling elements and the contact angles between balls and raceway surface are determined. The calculation results are reasonably consistent with those of the half pitch model. Then, the local contact stiffness and global contact stiffness are obtained. Furthermore, the effects of axial load and structural parameters of the SNBSP on the normal contact force, contact angle, and local and global contact stiffness are discussed using numeric analysis. Finally, a dynamic model of the z-axis feed system with time-varying axial stiffness is established, and the accuracy of the model is verified by experiments.
机译:本文旨在研究单螺母滚珠螺纹(SNBSP)的负载分布和接触刚度特性。首先,建立坐标系的变换关系。然后,提出了SNBSP的整个滚动元件负载分布模型。基于此,获得了整个滚动元件接触刚度模型。施加牛顿Raphson迭代方法来解决模型,确定滚动元件的正常力和球与滚道表面之间的接触角。计算结果与半间距模型的计算结果合理符合。然后,获得局部接触刚度和全局接触刚度。此外,使用数值分析讨论了SNBSP轴向载荷和SNBSP结构参数对正常接触力,接触角和局部和全局接触刚度的影响。最后,建立了具有时变轴刚度的Z轴进料系统的动态模型,并且通过实验验证了模型的准确性。

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