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Deformation strategy optimization of FAST cable-net structure for fatigue problem

机译:FAST索网结构疲劳问题的变形策略优化

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The reflector of Five-hundred-meter Aperture Spherical radio Telescope (FAST) is supported by cable-net structure, so that to enable its reflector surface to form a paraboloid from a sphere in real time through active control. However, such form-changing operation would lead to about 500MPa stress range for the cable-net structure. Such stress range is nearly twice as much of that defined by the relative standard. So the cable-net structure is the most critical and expendable part of FAST reflector system. The service life of FAST would directly depend on the residual fatigue life of its cable-net structure. Then, the present paper would make an effort to find a more appropriate deformation strategy to decrease the stress amplitude of the cable during form-changing operation.
机译:五百米口径球形射电望远镜的反射镜由电缆网结构支撑,以便通过主动控制使它的反射镜表面实时从球体形成抛物面。但是,这种形状改变操作将导致电缆网结构的应力范围约为500MPa。这样的应力范围几乎是相对标准所定义应力范围的两倍。因此,电缆网结构是FAST反射器系统最关键和最消耗部分。 FAST的使用寿命将直接取决于其电缆网结构的剩余疲劳寿命。然后,本文将努力寻找一种更合适的变形策略,以减小变形过程中电缆的应力幅值。

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