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ROTATION ACCURACY ANALYSIS OF SPINDLE UNDER VARIABLE PRELOAD

机译:可变预紧力作用下主轴的旋转精度分析

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Variable preload technology is used to achieve appropriate preload applied on spindle bearing based on machining conditions. However, the bearing temperature rise will be directly affected by bearing preload as well as bearing rotation accuracy. So, the main objective of this paper is to propose a method to determine the rotation accuracy of the spindle affected by the thermal expensive due to heat generation under variable preloads. Five degrees of freedom (5-DOF) quasi-static model of angular contact ball bearing was established to investigate the internal load distribution of the contact areas between the race way and balls. Then local contact heat generation of the bearing is calculated based on hertz contact theory. Finally, an experimental platform equipped with hydraulic system is designed and fabricated, which is preloaded by a hydraulic chamber. Studies have shown that the rotation accuracy presents drastically with the spindle rotational speed. Moreover, the influence of the bearing preload has a secondary importance. Comparative analysis about the rotation accuracy between starting running state and stable running state after a few hours under the same preload has been investigated. Results show that the accuracy of rotation spindle present no obviously difference when the uneven thermal deformation of parts occurs in the spindle system.
机译:可变的预紧技术用于根据加工条件对主轴轴承施加适当的预紧力。但是,轴承的温升将直接受到轴承的预紧力以及轴承旋转精度的影响。因此,本文的主要目的是提出一种确定主轴的旋转精度的方法,该主轴的旋转精度受可变预紧力产生的热量所导致的热成本的影响。建立了角接触球轴承的五自由度(5-DOF)准静态模型,以研究滚道与滚珠之间接触区域的内部载荷分布。然后根据赫兹接触理论计算轴承的局部接触热量。最后,设计并制造了一个配有液压系统的实验平台,该平台由液压室预加载。研究表明,旋转精度与主轴转速密切相关。此外,轴承预紧力的影响具有次要的重要性。研究了在相同的预紧力下几个小时后启动运行状态与稳定运行状态之间的旋转精度的比较分析。结果表明,当主轴系统中零件发生不均匀的热变形时,旋转主轴的精度没有明显差异。

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