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Ultra weighted support panels for main mirrors in the Extremely Large Telescopes

机译:超加权支撑面板,用于极大的望远镜中的主要镜子

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In the ELTs the weight of the mirror-systems is very important. In fact, the dimensioning both of the support structure and the auxiliary components, such as bearings and drives, depend on it. The mirrors require very stiff structures able to react quickly to dynamic and static stresses. Lightness and stiffness are therefore decisive elements to have a constant and excellent control of the mirror itself. An ultra-light and ultra-stiff panel, directly coupled to the mirror through actuators, allows to reduce to the minimum the quantity of material for the mirror and thus reducing also the weight, always guaranteeing the stiffness requirements. Therefore, this panel becomes an element constituting the mirror itself and it is also charged with the task of connection with the main structure of the cell. A chance for guaranteeing this weight-stiffness ratio is given by the use of the carbon fibre. Particularly, the use of high modulus fibre (pitch fibre) allows to obtain ultra-light mirror support structures with a 60% saving of weight compared to an equivalent steel structure. The in-depth study of the materials used (resin system, Carbon fibre type, adhesives, inserts) and the construction process, the number and the repeatability of the pieces, the experience acquired during the design and construction phases of the ALMA Prototype (Atacama Large Millimeter Array) allow to guarantee a proper control of the quality of the product with accessible and convenient costs considering also that the use of these materials allows to have lighter structures with lower operational costs and the maintenance of the materials in the years requires a lower use of resources.
机译:在elts中,镜子系统的重量非常重要。事实上,支撑结构和辅助部件(例如轴承和驱动器)的尺寸依赖于它。镜子需要非常僵硬的结构,能够快速地对动态和静态应力进行反应。因此,光敏和刚度是具有恒定和优异的镜子本身的常变元件的决定性元件。超光线和超硬刚性面板通过致动器直接连接到镜子,允许减少镜子的材料量,从而减少重量,始终保证刚度要求。因此,该面板成为构成镜子本身的元素,并且它也被充电有与单元的主要结构连接的任务。通过使用碳纤维给出了保证该重量刚度比的机会。特别是,与等效钢结构相比,使用高模量纤维(间距)允许获得超轻镜子支撑结构,其重量的重量保持60%。深入研究使用的材料(树脂系统,碳纤维型,粘合剂,插入物)和施工过程,数量和可重复性,在Alma原型的设计和施工阶段期间获得的经验(Atacama大型毫米阵列)允许保证对产品的适当控制,考虑使用这些材料的使用允许具有较低运营成本的较轻结构和多年材料的维护需要较低的结构使用资源。

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