【24h】

Directly Polished Light Weight Aluminum Mirror

机译:直接抛光的轻质铝镜

获取原文

摘要

During the last ten years, Astron has been a major contractor for the design and manufacturing of astronomical instruments for Space- and Earth based observatories, such as VISIR, MIDI, SPIFFI, X-Shooter and MIRI. The collaboration between optical- and mechanical designers at Astron led to new design philosophies and strategies. Driven by the need to reduce the weight of optically ultra-stiff structures, two promising techniques have been developed in the last years: ASTRON Extreme Lightweighting [1][2] for mechanical structures and an improved Polishing Technique for Aluminum Mirrors. Using one single material for both optical components and mechanical structure simplifies the design of a cryogenic instrument significantly, it is very beneficial during instrument test and verification, and makes the instrument insensitive to temperature changes. Aluminum has been the main material used for cryogenic optical instruments, and optical aluminum mirrors are generally diamond turned. The application of a polishable hard top coating like nickel removes excess stray light caused by the groove pattern, but limits the degree of lightweighting of the mirrors due to the bi-metal effect. By directly polishing the aluminum mirror surface, the recent developments at Astron allow for using a non-exotic material for light weighted yet accurate optical mirrors, with a lower surface roughness (~1nm RMS), higher surface accuracy and reduced light scattering. This paper presents the techniques, obtained results and a global comparison with alternative lightweight mirror solutions.
机译:在过去的十年中,Astron一直是设计和制造用于天文台和天文台的天文仪器的主要承包商,这些仪器包括VISIR,MIDI,SPIFFI,X-Shooter和MIRI。 Astron光学和机械设计师之间的合作带来了新的设计理念和策略。由于需要减轻光学超硬结构的重量,最近几年开发了两种有前途的技术:用于机械结构的ASTRON Extreme Lightweighting [1] [2]和一种改进的铝镜抛光技术。将单一材料用于光学组件和机械结构都大大简化了低温仪器的设计,这在仪器测试和验证过程中非常有益,并且使仪器对温度变化不敏感。铝一直是用于低温光学仪器的主要材料,光学铝镜通常是金刚石车削的。像镍一样的可抛光硬质顶部涂层的应用可消除由凹槽图案引起的多余杂散光,但由于双金属效应而限制了反射镜的轻量化程度。通过直接抛光铝镜表面,Astron的最新发展允许使用非异质材料来制造重量轻但精度高的光学镜,具有较低的表面粗糙度(〜1nm RMS),较高的表面精度和减少的光散射。本文介绍了这些技术,获得的结果以及与其他轻型镜面解决方案的全局比较。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号