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Mechanical analysis and measurement of wheel-rail contact system in large aperture radio telescope

机译:大口径射电望远镜中轮轨接触系统的力学分析与测量

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The azimuth rotation part of a large aperture radio telescope usually takes one wheel-rail system; therefore, wheel-rail pointing errors and wheel-rail wear are very important to antenna point accuracy. First, this paper discusses the wheel-rail contact theory and some specific characteristics of wheel-rail system in large aperture radio telescope. Second, one 3D model of wheel-rail contact system is built according to the parameters of 50m antenna in China, and the model is analyzed by one whole body in MSC.Patran/Nastran. Third, we use the multi-body dynamic method to build the model of wheel-rail and simulate it in RecurDyn software. Comparing the simulation results, we find that the coupling of rigid-body and soft-body is much more precise than one whole body in describing the contact deformation. And the results also explain the crevice's influence on the mechanical properties of wheel-rail contact system. Finally, some experiments and measurements of 50m antenna are made, by which we get some useful tips for large aperture radio telescope. The test results show that the multi-body dynamic method is much more suitable to the mechanical analysis in wheel-rail contact system.
机译:大口径射电望远镜的方位角旋转部分通常采用一个轮轨系统。因此,轮轨指向误差和轮轨磨损对于天线指向精度非常重要。首先,本文讨论了大孔径射电望远镜的轮轨接触理论和轮轨系统的一些特殊特性。其次,根据我国50m天线的参数,建立了一个轮轨接触系统的3D模型,并在MSC.Patran / Nastran中对整个模型进行了分析。第三,我们使用多体动力学方法来构建轮轨模型,并在RecurDyn软件中对其进行仿真。比较仿真结果,我们发现在描述接触变形时,刚体和软体的耦合比一个整体要精确得多。结果还解释了缝隙对轮轨接触系统机械性能的影响。最后,对50m天线进行了一些实验和测量,得出了一些大口径射电望远镜的有用技巧。测试结果表明,多体动力学方法更适用于轮轨接触系统的力学分析。

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