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THE KINETIC ENERGY INCREMENT FOR AN UNSTABLE VIBRATION INDUCED BY SLIDING

机译:滑移引起的不稳定振动的动能增加

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The Mechanics of the bearing vibration induced by sliding is studied in the present paper. The phenomenon of this kind of sliding instability is carefully caught in a numerical simulation. Due to the complex contact conditions and the finite boundary, and because the size of the bearing is relatively very small compared to the travel length in a unit time for the stress waves, a spatial particle within a bearing pad moves in a rather random way. Nevertheless, the energy required to intensify the vibration is accumulated in a positive rate. It is found that the key factors are material properties, relative sliding velocity, friction coefficient, and normal pressure as well. In the present analysis, the energy accumulation is estimated and the characteristics of the threshold of such instability can be evaluated more accurately upon the result.
机译:研究了滑动引起的轴承振动的力学。此类滑动不稳定性的现象已在数值模拟中仔细发现。由于复杂的接触条件和有限的边界,并且由于与应力波在单位时间内的行进长度相比,轴承的尺寸相对很小,因此轴承垫内的空间粒子以相当随机的方式运动。然而,增强振动所需的能量以正速率累积。发现关键因素是材料特性,相对滑动速度,摩擦系数和常压。在本分析中,估计能量积累,并根据结果可以更准确地评估这种不稳定性阈值的特征。

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