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Investigation of Harmful Slip in a Rolling Bearing Using a Thermographic Camera With a Derotator

机译:使用带有灭失剂的热量摄像机的滚动轴承有害滑动的调查

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Due to their high availability and versatility, rolling bearings are a standard solution for mounting and support of rotating components. The service life of an entire rotating machine is often limited by the service life of rolling bearings. This can be shorter than expected if the rolling bearing is operated in harmful operating conditions, e.g. in the presence of slip. Slip means that there is a deviation between the theoretical angular velocity of the rolling element set and the actual angular velocity. In this context, slip is harmful if it leads to increased friction and thus heating of the bearing. The occurrence and properties of slip are not completely understood yet. Therefore, it is of interest to investigate a relationship between slip and heating of the rolling bearing in order to better understand damages of the rolling bearing. In this work, a method is presented in which, in addition to slip measurements with a high-speed camera, a thermal imaging camera is used to investigate the heating of the bearing during operation. Since the rotational movement and exposure time of the camera would cause motion blur, the thermal imaging camera is operated together with a derotator to optically eliminate the rotational movement. The investigations of the rolling bearing are carried out under different operating conditions (different loads and rotational speeds), which have an influence on the slip behavior of the bearing. Thus, the potential of this investigation method for deepening the understanding of heating and friction in rolling bearings is demonstrated.
机译:由于它们的高可用性和多功能性,滚动轴承是用于安装和支撑旋转部件的标准解决方案。整个旋转机器的使用寿命通常受滚动轴承的使用寿命的限制。如果滚动轴承在有害操作条件下操作,则这可以短于预期。在滑动的情况下。滑动装置在滚动元件组的理论角速度和实际角速度之间存在偏差。在这种情况下,如果它导致增加摩擦并因此加热轴承,则滑动是有害的。滑动的发生和性质尚未完全理解。因此,研究滑动和加热滚动轴承之间的关系,以便更好地理解滚动轴承的损坏。在这项工作中,提出了一种方法,其中除了用高速相机滑动测量,热成像相机用于研究操作期间轴承的加热。由于相机的旋转运动和曝光时间会导致运动模糊,因此热成像相机与灭直方体一起操作以光学消除旋转运动。滚动轴承的研究在不同的操作条件下进行(不同负载和转速),这对轴承的滑动行为产生影响。因此,对深化滚动轴承中加热和摩擦的理解的潜力进行了说明。

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