首页> 外文期刊>Proceedings of the Institution of Mechanical Engineers. Part K, Journal of Multi-body Dynamics >Influence of roller defect and coupled roller-inner-outer race defects on the performance of cylindrical roller bearing
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Influence of roller defect and coupled roller-inner-outer race defects on the performance of cylindrical roller bearing

机译:辊缺损和耦合辊内外外血液缺陷对圆柱滚子轴承性能的影响

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摘要

In the present study, a novel mathematical model is developed for the deformation between roller and races of cylindrical roller bearing using the effect of tilting and skewing of roller due to thrust load, radial deflection due to normal load, radial internal gap, and individual defect on roller as well as coupled defect on all races and roller. Also, novel roller defect function is proposed for the preparation of simultaneous nonlinear equations. MATLAB is used to solve nonlinear equations for equilibrium conditions of deflection, radial load, thrust load, moment in plane, and total roller loading. However, waviness due to surface irregularity on both races as well as out-of-balance assembly is not considered in this analysis. The bearing is analyzed for individual roller defect as well as coupled races-roller defects to identify the behavior of bearing under speed-varying conditions. The equation of motion is solved through Newmark-beta technique. Defect segment of roller consecutively in contact with both races results in higher acceleration. Time-to-impact concept is utilized for the analysis. The acceleration during roller-race defect interaction with intermittent connection is applied in the model for observation. The outcomes are shown in the time domain, orbit, and envelope analysis, which describe the complexity of the system with speed variation for roller defect and coupled roller-inner-outer race defects. The periodic, quasi-periodic, and chaotic phenomena are observed for roller and coupled defects. Simulated frequencies for all defects are compared with theoretical frequencies to validate the model.
机译:在本研究中,使用辊子轴承的滚子和圆柱滚子轴承梯子之间的变形来开发一种新的数学模型,使用辊子引起的推力负荷,径向偏转导致的径向偏转,径向内部间隙和单独的缺陷在所有种族和辊上的辊子以及耦合缺陷。而且,提出了用于制备同时非线性方程的新型辊缺损功能。 MATLAB用于求解非线性方程,用于偏转,径向载荷,推力负荷,平面矩和总滚子负载的平衡条件。然而,在该分析中不考虑由于两个种族的表面不规则引起的波纹,并且在该分析中不考虑。分析轴承的单个辊缺损以及耦合的梯子辊缺陷,以在速度变化条件下识别轴承的行为。通过纽马克-Beta技术解决运动方程。与两个种族连续接触的滚轮缺陷导致较高的加速度。利用时间到影响的概念进行分析。在模型中应用与间歇连接的滚子缺陷相互作用期间的加速度。结果在时域,轨道和包络分析中示出,描述了具有辊缺损和耦合辊内外血液缺陷的速度变化的系统的复杂性。对于辊和耦合缺陷,观察到周期性,准周期性和混沌现象。将所有缺陷的模拟频率与理论频率进行比较以验证模型。

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