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Elastohydrodynamic problem for journal sliding bearing under reciprocating motion

机译:往复运动轴颈滑动轴承的弹性流体力学问题

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A plane elastohydrodynamic problem for a radial sliding bearing with a thin liner under reciprocating motion under a constant load is considered. It has been shown that at the moment of time when the velocity becomes equal to zero the thickness of the lubricating film exceeds zero and that it continues to decrease during a period of time after changing the direction of rotation of the shaft. Film thickness and pressure distributions at various moments in time, as well as time dependences of the eccentricity and the minimum film thickness along the spatial coordinate, are presented for various values of the dimensionless parameter, which depends on the period of reciprocating motion. It has been shown that the smallest value of film thickness over the entire period of reciprocating motion increases with shortening period of reciprocating motion.
机译:考虑了具有薄衬套的径向滑动轴承在恒定载荷下的往复运动下的平面弹性流体力学问题。已经表明,在速度等于零的时刻,润滑膜的厚度超过零,并且在改变轴的旋转方向之后的一段时间内,润滑膜的厚度持续减小。对于无量纲参数的各种值(取决于往复运动的周期),显示了在各个时间点的薄膜厚度和压力分布,以及沿空间坐标的偏心率和最小薄膜厚度的时间依赖性。已经表明,在往复运动的整个周期中,膜厚度的最小值随着往复运动的周期的缩短而增加。

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