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Thermal shape change of some CFRP-aluminum honeycomb sandwiched structures

机译:某些CFRP-铝蜂窝夹芯结构的热形变化

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Carbon fiber reinforced plastic (CFRP) is a suitable material for space and ground-based telescope structures. CFRP has a high stiffness-over-weight ratio and a low thermal expansion coefficient. Together with aluminum honeycomb, CFRP can form very strong light-weight sandwiched structures. These sandwiched structures, which can support high bending moments and shear forces without much deformation, are used widely in the existing and future large-space or ground-based telescopes. However, some special CFRP-aluminum honeycomb sandwiched structures have shape change problems when the absolute temperature changes. In this paper, some of these thermal shape changes are discussed. The designers of the future large telescopes should be fully aware of the shape change problem of these structures.
机译:碳纤维增强塑料(CFRP)是适用于太空和地面望远镜结构的材料。 CFRP具有高的刚度重量比和低的热膨胀系数。 CFRP与铝蜂窝一起可以形成非常坚固的轻质夹层结构。这些夹层结构可在不产生较大变形的情况下支撑高弯矩和剪切力,已广泛用于现有和未来的大空间或地面天文望远镜中。但是,某些特殊的CFRP-铝蜂窝夹层结构在绝对温度变化时会发生形状变化的问题。在本文中,讨论了其中一些热形状变化。未来大型望远镜的设计人员应充分意识到这些结构的形状变化问题。

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