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首页> 外文期刊>Advances in Mechanical Engineering >Research on the precision loss of ball screw with short-time overload impact:
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Research on the precision loss of ball screw with short-time overload impact:

机译:短期过载冲击下滚珠丝杠的精度损失研究:

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摘要

Ball screw is the driving functional component most frequently used for the precision equipment. To a certain extent, the transmission accuracy of precision equipment is affected by the position error of ball screw caused by the elastic–plastic deformation between ball and raceway under the overload impact. This article aims to investigate the precision loss of ball screw considering short-time overload impact. A novel precision loss model combining the Hertzian and Thornton contact theories is established to describe the variations in the axial deformation depths. Thus, the axial precision loss can be defined as the differential value between the initial no-loading travel variations and the loading stroke variations caused by the axial plastic deformation of raceway. Meanwhile, the maximum stress and the residual plastic deformation for four couples of ball-raceway materials are analyzed. Furthermore, the relationship between the precision loss and the elastic–plastic deformation is studied by the theore.
机译:滚珠丝杠是精密设备中最常用的驱动功能组件。在一定程度上,精密设备的传动精度会受到过载冲击下滚珠与滚道之间的弹塑性变形所引起的滚珠丝杠位置误差的影响。本文旨在研究考虑短期过载影响的滚珠丝杠的精度损失。建立了结合Hertzian和Thornton接触理论的新型精度损失模型,以描述轴向变形深度的变化。因此,轴向精度损失可以定义为初始空载行程变化与由滚道的轴向塑性变形引起的加载行程变化之间的差值。同时,分析了四对球道材料的最大应力和残余塑性变形。此外,通过理论研究了精度损失与弹塑性变形之间的关系。

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