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两种高精度无损测量方法用于评估8.3米超低温膨胀 Subaru 主镜坯件热膨胀差异的比较。

Comparison of two high-precision nondestructive measurement methods for evaluating thermal expansion differences in the 8.3-m ultralow-expansion Subaru primary mirror blank.

作者信息

Hagy H E, Best M E

出版信息

Appl Opt. 1996 Mar 1;35(7):1126-8. doi: 10.1364/AO.35.001126.

Abstract

The building blocks for fabricating the 8.3-m Subaru primary mirror blank are ultralow-expansin solid hexagonal units that were subjected to rigorous ultrasonic examination to establish thermal expansion characterization as reported by Hagy [Appl. Opt. 12, 1440 (1973)]. Following assembly of the mirror by fusion and fine annealing, photoelastic analyses at hex-to-hex seals were used to calculate thermal expansion differences. These differences are found to be in excellent agreement with the ultrasonically established differences.

摘要

制造8.3米斯巴鲁主镜坯件的基础材料是超低膨胀实心六边形单元,这些单元经过了严格的超声检测,以确定其热膨胀特性,如哈吉所报告的那样[《应用光学》12, 1440 (1973)]。在通过熔合和精细退火组装镜子后,对六边形到六边形密封处进行光弹性分析,以计算热膨胀差异。发现这些差异与通过超声确定的差异非常吻合。

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