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Replication of Lightweight Mirrors

机译:轻质镜子的复制

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摘要

The fabrication of lightweight mirror assemblages via a replication technique offers great potential for eliminating the high cost and schedule associated with the grinding and polishing steps needed for conventional glass or SiC mirrors. A replication mandrel is polished to an inverse figure shape and to the desired finish quality. It is then, coated with a release layer, the appropriate reflective layer, and followed by a laminate for coefficient of thermal expansion (CTE) tailorability and strength. This optical membrane is adhered to a mirror structural substrate with a low shrinkage, CTE tailored adhesive. Afterwards, the whole assembly is separated from the mandrel. The mandrel is then cleaned and reused for the next replication run. The ultimate goal of replication is to preserve the surface finish and figure of the optical membrane upon its release from the mandrel. Successful replication requires a minimization of the residual stresses within the optical coating stack, the curing stresses from the adhesive and the thermal stress resulting from CTE mismatch between the structural substrate, the adhesive, and the optical membrane. In this paper, the results on replicated trials using both metal/metal and ceramic/ceramic laminates adhered to light weighted structural substrates made from syntactic foams (both inorganic and organic) will be discussed.
机译:通过复制技术的轻质镜子组件的制造提供了消除与传统玻璃或SiC镜子所需的研磨和抛光步骤相关的高成本和调度的巨大潜力。复制心轴抛光到逆图形和所需的精制质量。然后,涂有剥离层,适当的反射层,然后是用于层叠体的层叠体,用于均衡和强度。该光学膜粘附到具有低收缩,CTE定制粘合剂的镜子结构基板。之后,整个组件与心轴分离。然后清除MandRel并重新利用下一个复制运行。复制的最终目标是在从心轴释放时保持光学膜的表面光洁度和图。成功复制需要最小化光学涂层堆内的残余应力,从粘合剂和由结构基板,粘合剂和光学膜之间的CTE失配导致的热应力。在本文中,将讨论使用金属/金属和陶瓷/陶瓷层压板的复制试验的结果,将讨论由句法泡沫(无机和有机)制成的光加权结构基质。

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