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FLOW INDUCED VIBRATION AND FRETTING WEAR IN PWR FUEL

机译:PWR燃料中的流动引起的振动和微动磨损

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摘要

Fuel rod fretting wear is due to complex combinations of factors. Excitation of the fuel rod and motion relative to its supports can be caused by coolant flow and mechanical forces. The amplitude of response for a given set of flow and mechanical forces is dependent on the fuel rod and its support system. The fuel rod mass and stiffness and location of supports along its length dictate the mode shapes and natural frequencies. The contact geometry between the support system and fuel rod is also an important factor. The two primary areas covered in this paper are 1) the types of flow conditions that may exist in a reactor core and how they would result in excitation of the fuel rod and 2) how the relative motion of the rod to its supports can result in fretting wear. Numerous testing techniques, ranging from microscopic, to single grid cell tests, to high temperature and flow full scale multiple fuel assembly tests, are discussed.
机译:燃料棒微动磨损是由于多种因素综合造成的。冷却液流和机械力可能会引起燃料棒的激励和相对于其支撑的运动。给定的一组流量和机械力的响应幅度取决于燃料棒及其支撑系统。燃料棒的质量,刚度以及沿其长度的支撑位置决定了振型和固有频率。支撑系统与燃油杆之间的接触几何形状也是一个重要因素。本文涵盖的两个主要领域是:1)反应堆堆芯中可能存在的流动条件类型,以及它们如何导致激发燃料棒; 2)燃料棒与其支撑件的相对运动如何导致微动磨损。讨论了多种测试技术,从微观到单栅电池测试,再到高温和大流量满量程多燃料装配测试。

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