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An accuracy degradation analysis of ball screw mechanism considering time-varying motion and loading working conditions

机译:考虑时变运动和加载工作条件的滚珠丝杠机制的精度降解分析

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摘要

Ball screw mechanism (BSM) plays a key role to transmit motion and power in a machine tool. The accuracy of the machine tool is greatly influenced by the accuracy of the BSM. Since accuracy degradation of BSM is primarily due to wear, the wear behavior of BSM is studied considering the time-varying motion and loading working conditions. A new wear prediction model of BSM is introduced in this research considering complex working conditions. Because BSM is subject to dynamic fluctuations of rotational speed and loading in the operation process, a loading model is established to describe the dynamic contact force between the ball and the raceway, and a motion model is developed to describe the dynamic sliding and rolling behaviors between the ball and the raceway. The degradation of BSM accuracy is analyzed considering time-varying motion and loading working conditions. Experiments have also been designed and conducted to demonstrate the effectiveness of the accuracy degradation analysis for BSM. Crown Copyright (C) 2018 Published by Elsevier Ltd. All rights reserved.
机译:滚珠丝杠机制(BSM)在机床中发射动作和电力的关键作用。机床的准确性受到BSM的准确性的大大影响。由于BSM的精度劣化主要是由于磨损而导致的,因此考虑时变动和加载工作条件,研究了BSM的磨损行为。本研究介绍了BSM的新磨损预测模型,考虑了复杂的工作条件。因为BSM在操作过程中受到转速和加载的动态波动的影响,建立了一种装载模型来描述球和滚道之间的动态接触力,并且开发了运动模型来描述之间的动态滑动和滚动行为球和赛道。考虑时变动和加载工作条件,分析了BSM精度的降解。还设计并进行了实验,以证明BSM精度降解分析的有效性。 Crown版权所有(C)2018由elestvier有限公司出版。保留所有权利。

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