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Research on Rolling-Sliding Integrated Auxiliary Bearing and its Application in High Temperature Reactor

机译:滚动滑动辅助轴承的研究及其在高温反应堆中的应用

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The active magnetic bearings (AMB) ,with the advantages of no friction, no abrasion, no lubrication and active control, is used in the primary helium circulator for high-temperature gas-cooled reactor (HTR). But the magnetic bearing is a complex system, which contains sensor, controller, power amplifier circuit and actuators. Any part of failure is likely to make high-speed rotor off balanced position and fell in the inner ring of the bearing, causing huge impact and fiction heat that may damage the magnetic bearing. Therefore, it is necessary to bring the auxiliary bearing in the magnetic bearing to protect and temporarily support the high-speed rotor. The auxiliary bearings are mainly divided into two categories: rolling bearings and plain bearings. Generally speaking, for rolling bearings, the force of friction is smaller and the heat caused by it is lower during the touchdown. However, it needs to be detected online to ensure that it can work well in emergencies, and the rolling bearings has a smaller load capacity because of the point contact between the ball and the ring. Compared with the rolling bearings, the structure of plain bearings is simple and durable. With a larger load capacity and the advantage of non-contact detection, the plain bearing is gradually becoming a research hot-spot in the field of the auxiliary bearing. But the great friction and inevitable heat are also cannot be ignored. In High temperature gas-cooled reactor demonstration power station(HTR_PM), the work load of helium main fan is very large, once the support of electromagnetic bearing is out of work, the auxiliary bearing need to suffer from a very large drop impact load, which is accompanied by a huge friction fever. Therefore, it is important to develop a rolling-sliding integrated bearing which can bear heavy load and have little friction, combined with the advantages of plain bearings and rolling bearings. And that is an important direction of the development for the main helium pan in high temperature gas-cooled reactor nuclear power plant. This paper establish a simulation model for a horizontal rotor and rolling-sliding integrated auxiliary bearing system. In the case of synchronous rotation of the inner ring with the rotor, the speed of the outer race of the bearing is determined. and based on the main helium fan in HTR-PM, using the finite element analysis software LS-Dyna, the rolling-sliding integrated auxiliary bearing is proposed and the impact force and the MISES stress nephogram when the peak inflation occurred during the first impact and the axial axes displacement curve during rotor drop in the auxiliary bearing are preliminarily simulated in this paper., then certain theoretical reference is provided for the design and engineering application of the rolling-sliding integrated auxiliary bearing.
机译:主动磁轴承(AMB)具有无摩擦,无磨损,无需润滑和主动控制的优点,被用于高温气冷堆(HTR)的主氦循环器中。但是电磁轴承是一个复杂的系统,其中包含传感器,控制器,功率放大器电路和执行器。故障的任何部分都可能使高速转子偏离平衡位置并掉入轴承的内圈,从而造成巨大的撞击和摩擦热,从而可能损坏电磁轴承。因此,有必要将辅助轴承放入磁性轴承中以保护和临时支撑高速转子。辅助轴承主要分为两类:滚动轴承和滑动轴承。一般而言,对于滚动轴承,在着陆期间摩擦力较小,并且由摩擦力产生的热量较低。但是,需要在线对其进行检测,以确保其在紧急情况下也能正常工作,并且由于球与环之间的点接触,滚动轴承的负载能力较小。与滚动轴承相比,滑动轴承的结构简单耐用。滑动轴承具有更大的承载能力和非接触检测的优势,正逐渐成为辅助轴承领域的研究热点。但是巨大的摩擦力和不可避免的热量也不容忽视。在高温气冷堆示范电站(HTR_PM)中,氦气主风机的工作负荷非常大,一旦电磁轴承的支撑失灵,辅助轴承就需要承受很大的跌落冲击负荷,伴随着巨大的摩擦热。因此,结合滑动轴承和滚动轴承的优点,开发一种能够承受重载荷并且摩擦很小的滚动滑动一体轴承是很重要的。这是高温气冷堆核电站主氦锅发展的重要方向。建立了水平转子-滚动-滑动集成辅助轴承系统的仿真模型。在内圈与转子同步旋转的情况下,确定轴承外圈的速度。并基于HTR-PM中的主氦风扇,使用有限元分析软件LS-Dyna提出了滚动滑动式集成辅助轴承,并在首次撞击和撞击时出现峰值充气时的撞击力和MISES应力云图。初步模拟了辅助轴承转子掉落时的轴向位移曲线,为滚动滑动式辅助轴承的设计和工程应用提供了一定的理论参考。

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