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The mechanical property analysis of the large supportive stage with super smooth surface

机译:具有超光滑表面的大型支撑台的力学性能分析

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With the rapid development of satellite astronomy technique, In order to ensure the effective operation of the spacecraft in orbit, the spacecraft requires full ground physical simulation tests. So the construction of the ground simulation test system is an important guarantee for the development of space technology [1]. In the system of full physical simulation test for lunar orbit rendezvous and docking, the large supportive stage with super smooth surface is one of the most important large-scale precision test equipment, this stage can provide a high precision horizontal support surface in the range of 40m*30m for the test load, Each test load is usually supported by three circular air cushion, whose diameter is 200mm~400mm. High pressure gas is stored in the load equipment, and is released into the air through the air holes on the air cushion, A thin layer of air film is formed between the air cushion and the stage, the thickness of gas film is 10μm~15μm, The load equipment can freely move on the surface of a large stage with the gas film. There are strict requirements for the deformation of the system, Since the floating height is 10 μm and the test load is 3T. So the altitude difference of neighboring platforms is in range of 10μm. In order to guarantee the experiment effects, the paper analyses mechanical properties of the stage, distribute index of 10μm, and provide theoretical support for subsystem [2], [3].
机译:随着卫星天文学技术的飞速发展,为了确保航天器在轨道上的有效运行,航天器需要进行全地面物理模拟测试。因此,地面模拟测试系统的建设是空间技术发展的重要保证[1]。在月球交会对接的全物理模拟测试系统中,具有超光滑表面的大型支撑台是最重要的大型精密测试设备之一,该平台可在测试负载为40m * 30m,每个测试负载通常由直径200mm〜400mm的三个圆形气垫支撑。高压气体储存在负载设备中,通过气垫上的气孔释放到空气中,气垫与平台之间形成一层薄的气膜,气膜厚度为10μm〜15μm ,负载设备可以在带有气膜的大平台表面上自由移动。对系统的变形有严格的要求,因为浮动高度为10μm,测试负载为3T。因此,相邻平台的高度差在10μm的范围内。为了保证实验效果,本文分析了平台的力学性能,分配了10μm的折射率,为子系统[2],[3]提供了理论支持。

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