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Fretting wear of laterally supported tube

机译:横向支撑管的微动磨损

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The fretting wear of a tube, which is in contact with a lateral support, is examined experimentally. A fretting wear tester is specifically designed. Elastic springs are used as the support, which can simulate the contact between a spacer grid and a fuel rod in pressurized water reactor fuel. The tubes and the springs are made of Zircaloy-4. The experiments are conducted in air at room temperature. The experimental conditions, i.e. the normal and shear forces on the contact, the slip range and the number of cycles, are set to be the same. To investigate the influence of the contact geometry on the wear, the spring supports have a concave, a flat or a convex contour. The influence on the axial and transverse slip directions is investigated to incorporate the actual tube motion caused by such a flow-induced vibration in the reactor. The wear on the tube is examined by the surface roughness tester, which measures the depth, and the contour of the worn surface of the tube. Since the shape and the distribution of wear are found arbitrary, a method for evaluating the wear volume is proposed using the signal processing technique. It is found that wear can be restrained when the slip direction is transverse, and if the support has a concave contour.
机译:通过实验检查了与侧向支撑件接触的管的微动磨损。微动磨损测试仪是专门设计的。弹性弹簧用作支撑,可以模拟压水堆燃料中间隔栅与燃料棒之间的接触。管和弹簧由Zircaloy-4制成。实验在室温下在空气中进行。实验条件,即接触上的法向力和剪切力,滑移范围和循环次数设置为相同。为了研究接触几何形状对磨损的影响,弹簧支座具有凹形,平面或凸形轮廓。研究了对轴向和横向滑移方向的影响,以纳入由反应堆中这种由流动引起的振动引起的实际管运动。管的磨损由表面粗糙度测试仪检查,该仪测量管的深度和磨损表面的轮廓。由于发现磨损的形状和分布是任意的,因此提出了一种使用信号处理技术评估磨损量的方法。已经发现,当滑动方向是横向的并且支撑件具有凹形轮廓时,可以抑制磨损。

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