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Influence of bearing kinematics hypotheses on ball bearing heat generation

机译:轴承运动学假设对滚珠轴承发热的影响

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Spindle dynamics is a key issue in machining. Thermo-mechanical models of spindle need to be developed to understand and predict the complex behavior of spindles at high speed. Accurate bearing stiffness model is required, since it is a boundary condition of the shaft. Besides, bearings also play an important role in heat generation in the spindle. Bearing models rely on kinematics hypotheses at the ball-race contacts. The aim of the paper is to study the influence of these kinematics hypotheses on bearing heat generation. The different kinematics hypotheses that can be found in literature are presented and implemented into the bearing friction model. Simulations of bearing dynamics are performed and contact force and torque at ball-race contacts are compared. Behavior of the bearing models with different kinematic models is studied using a coupled thermo-mechanical model of a specialized test bed. Loss torque and temperatures simulated are compared and validated by experiments.
机译:主轴动力学是加工中的关键问题。需要开发主轴的热机械模型,以了解和预测主轴的复杂行为。需要精确的轴承刚度模型,因为它是轴的边界条件。此外,轴承在主轴发热中也起着重要作用。轴承模型依赖于球-种族接触的运动学假设。本文的目的是研究这些运动学假设对轴承发热的影响。提出了可以在文献中找到的不同运动学假设,并将其实施到轴承摩擦模型中。进行了轴承动力学仿真,并比较了滚珠丝杠触点的接触力和扭矩。使用专用测试台的热力学耦合模型研究了具有不同运动学模型的轴承模型的行为。比较损失扭矩和模拟温度,并通过实验进行验证。

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