Effect of balls’ quantities, preload and raceway diameters on rotation accuracy and vibration of rigid rotor-bearing system based on nonlinear dynamic model
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引用次数: 0
Abstract
The rotation accuracy and vibration of the bearing-rotor system are important evaluation indicators for the working accuracy of machine tools. In this work, an innovative nonlinear dynamic model of the ball bearing-rotor system is first developed by considering the slip, spin and gyroscopic effects of ball and the whirl motion of cage. Secondly, this developed model is validated through experimental methods. On this basis, the coordination of balls' quantities and preload is studied to obtain the desired rotation accuracy and vibration of rotor. The effect of raceway diameters on the rotation accuracy and vibration of rotor is investigated. The influence mechanism of the odd and even number of balls in the left and right bearings on the rotation accuracy and vibration is revealed. The analyzed results illustrate that the reasonable contact load of the ball by adjusting the preload of the bearing-rotor system or the balls’ quantity can prompt good rotation accuracy and low vibration of rotor, here, the maximum contact loads of 65 N should be adopted in the left and right bearings to select the preload. Additionally, odd or even balls assembled in the left and right bearings synchronously are conducive to obtaining a favorable trajectory and rotating accuracy of rotor.
轴承-转子系统的旋转精度和振动是机床工作精度的重要评价指标。在这项工作中,首先通过考虑滚珠的滑移、自旋和陀螺效应以及保持架的旋转运动,建立了滚珠轴承-转子系统的创新非线性动态模型。其次,通过实验方法对该模型进行了验证。在此基础上,研究了滚珠数量和预紧力的协调,以获得所需的旋转精度和转子振动。研究了滚道直径对转子旋转精度和振动的影响。揭示了左右轴承中球的奇数和偶数对旋转精度和振动的影响机理。分析结果表明,通过调整轴承-转子系统的预紧力或滚珠数量来获得合理的滚珠接触载荷,可促使转子获得良好的旋转精度和较低的振动,在此,左右轴承应采用 65 N 的最大接触载荷来选择预紧力。此外,在左右轴承中同步装配奇数或偶数的滚珠有利于转子获得良好的运动轨迹和旋转精度。
期刊介绍:
The International Journal of Non-Linear Mechanics provides a specific medium for dissemination of high-quality research results in the various areas of theoretical, applied, and experimental mechanics of solids, fluids, structures, and systems where the phenomena are inherently non-linear.
The journal brings together original results in non-linear problems in elasticity, plasticity, dynamics, vibrations, wave-propagation, rheology, fluid-structure interaction systems, stability, biomechanics, micro- and nano-structures, materials, metamaterials, and in other diverse areas.
Papers may be analytical, computational or experimental in nature. Treatments of non-linear differential equations wherein solutions and properties of solutions are emphasized but physical aspects are not adequately relevant, will not be considered for possible publication. Both deterministic and stochastic approaches are fostered. Contributions pertaining to both established and emerging fields are encouraged.