首页> 外文期刊>Wear: an International Journal on the Science and Technology of Friction, Lubrication and Wear >Machine-vision-based assessment of frictional vibration in water-lubricated rubber stern bearings
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Machine-vision-based assessment of frictional vibration in water-lubricated rubber stern bearings

机译:基于机器视觉的水润滑橡皮轴承摩擦振动评估

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摘要

Frictional vibration is a common but not entirely understood tribological phenomenon in water-lubricated rubber stern bearings. This paper proposes a transparent glass cylinder and rubber block model which reveals the frictional contact area under a high-speed camera. The local displacements of different grid points on the contact area can be measured by machine vision. A conjoint analysis method for friction coefficient, vibration, noise, and image information is used to determine the mechanisms of frictional vibration. The frequency of noise accompanying the vibrations can be exploited to divide frictional vibration phenomena in the bearing into "squeal" and "chatter" categories, each with different vibration modes. The frictional force and image information can be compared to determine the causes of frictional vibrations in different frequency bands. And a physical model which reflects frictional vibration effects on the stern tube bearing is created by images captured by high speed camera. The results presented here may provide a theoretical foundation for the manufacturing and optimization of water-lubricated rubber stern bearings.
机译:摩擦振动是一种常见的但不完全理解水润滑橡胶船尾轴承中的摩擦学现象。本文提出了一种透明的玻璃圆筒和橡胶块模型,其在高速相机下揭示了摩擦接触面积。可以通过机器视觉测量接触区域上不同网格点的局部位移。用于摩擦系数,振动,噪声和图像信息的联合分析方法来确定摩擦振动的机制。可以利用振动的噪声频率来利用轴承中的摩擦振动现象分成“尖叫”和“喋喋不休”类别,每个振动模式都有不同的振动模式。可以比较摩擦力和图像信息以确定不同频带中摩擦振动的原因。通过高速摄像机捕获的图像产生对船尾轴承的摩擦振动效应的物理模型。这里提出的结果可以为水润滑橡胶船体轴承的制造和优化提供理论基础。

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