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Analysis of high speed bearing based on virtual rods model

机译:基于虚拟杆模型的高速轴承分析

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摘要

The traditional high-speed ball bearing analysis is based on the quasi-static model proposed by Jones-Harris (J-H). This study gives another bearing analysis model based on the relative position of the ball center and the centers of curvature of the raceway grooves, described by the virtual rods. Specifically, the load and deformation of the virtual rods are determined according to the principle of force transmissibility, the translation theorem of a force, and elastic-contact deformation between steel ball bearings and raceway grooves. And the iterative variables such as the axial, radial and angular deformations are gradually introduced into the calculation model to solve the force and kinematic parameters under pure axial load, bidirectional and tri-directional combined loads. The correctness of the virtual rods model is verified by the contact angle for axial and bidirectional load. The influence of gyroscopic moment and raceway grooves control parameter on the actual contact angle under tridirectional loading conditions are calculated and analyzed respectively. The proposed model uses fewer equations and lower-dimension parameters than those used by the traditional highspeed ball bearing analysis method, improves the solution rate of the equations.
机译:传统的高速滚珠轴承分析基于Jones-Harris(J-H)提出的准静态模型。该研究提供了基于球中心的相对位置的另一轴承分析模型和由虚拟杆描述的滚道槽的曲率中心。具体地,虚拟杆的负荷和变形根据力传递率的原理确定力,转换定理和钢滚珠轴承和滚道槽之间的弹性接触变形。并且诸如轴向,径向和角度变形的迭代变量逐渐被引入计算模型中,以解决纯轴向载荷,双向和三方向组合负载下的力和运动学参数。通过用于轴向和双向负载的接触角来验证虚拟杆模型的正确性。陀螺仪矩和滚道槽对三维负载条件下的实际接触角对实际接触角的影响分别计算并分析。所提出的模型使用比传统的高速滚珠轴承分析方法使用的方程和低维参数,提高了方程的解决方案。

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