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Slip and Wear in Multi-Layer Azimuth Track Systems

机译:多层方位轨道系统中的滑动和磨损

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摘要

Many antennas use wheel-on-track systems in which track segments consist of wear plates mounted on base plates. The hardened wear plates are typically connected to the base plates using bolts, and the base plates are supported on grout and anchored to the underlying concrete foundation. For some antennas, slip has been observed between the wear plate and base plate, and between the base plate and the grout, with migration in the wheel rolling direction. In addition, there has been wear at the wear plate/base plate interface. This paper describes the use of finite element models (FEM's) of the wheel, track, and foundation to understand the behavior of the wheel-on-track system, and to evaluate possible retrofit concepts. The FEM's are capable of representing friction and slip, and the opening and closing of gaps at the interfaces between the wheel, wear plate, base plate, and grout. The FEM's can capture the behavior of the components as the wheel rolls forward. The paper also describes a method to estimate the amount of wear at the wear plate/base plate interface based on the relative slip and contact pressure between the wear plate and base plate.
机译:许多天线使用滚轮式轨道系统,其中轨道段由安装在基板上的耐磨板组成。硬化的耐磨板通常使用螺栓连接到基板,并且基板支撑在灌浆上并锚固到下面的混凝土基础上。对于某些天线,已经观察到在耐磨板和基板之间以及在基板和灌浆之间滑动,并且在车轮滚动方向上移动。另外,在耐磨板/基板的界面处有磨损。本文介绍了轮,轨和基础的有限元模型(FEM)的使用,以了解轮对轨系统的行为,并评估可能的改造概念。 FEM能够表现出摩擦和滑移,以及能够在车轮,耐磨板,基板和灌浆之间的界面处打开和关闭间隙。当车轮向前滚动时,FEM可以捕获组件的行为。该论文还描述了一种基于耐磨板与基板之间的相对滑动和接触压力来估算耐磨板/基板界面处的磨损量的方法。

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