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Dynamic analysis and grinding tracks in the magnetic fluid grinding system Part II. The imperfection and ball interaction effects

机译:磁流体研磨系统中的动力学分析和研磨轨迹第二部分。缺陷和球的相互作用

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摘要

To model the effects of the geometrical imperfections on the ball motion and its grinding track, it is therefore necessary to combine a dynamic model of the support system of balls with the previous model. For the geometrical imperfections on the ball, because of the interaction between the contact loads and the ball-spin speed, it causes the friction contact condition to remain at the interfaces with lower contact loads and lower ball-spin speeds in the separation case at the initial stage. Consequently, the variation in the ball-spin angle and the area covered by the grinding tracks is small. However, when the intermittent separation occurs at the geometrical imperfections on the ball orbit, it causes a large oscillation in the ball-spin angle and the ball-spin speed. Consequently, the effect of the imperfections in the ball orbit on the area covered by the grinding tracks is larger than that of the ball geometry. Ball-ball contacts cause a large oscillation in the ball-spin angle resulting in a uniform distribution of the grinding tracks. Hence, the effect of ball-ball contacts is one of the most important mechanisms in achieving a uniform distribution of the grinding tracks.
机译:为了模拟几何缺陷对滚珠运动及其磨削轨迹的影响,因此有必要将滚珠支撑系统的动态模型与先前的模型相结合。对于滚珠上的几何缺陷,由于接触载荷与滚珠旋转速度之间的相互作用,因此在分离情况下,在分离情况下,摩擦接触条件保持在界面处,接触载荷较低且滚珠旋转速度较低。初期。因此,滚珠旋转角度和磨削轨迹所覆盖区域的变化很小。然而,当间歇分离发生在滚珠轨道上的几何缺陷处时,会引起滚珠旋转角度和滚珠旋转速度的大幅波动。因此,球轨道上的缺陷对磨削轨道所覆盖区域的影响大于球几何形状的影响。滚珠接触会导致滚珠自旋角产生较大的振动,从而导致磨削轨迹的均匀分布。因此,球-球接触的效果是实现磨削轨迹均匀分布的最重要机制之一。

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