中国科学院机构知识库网格
Chinese Academy of Sciences Institutional Repositories Grid
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CAS IR Grid
机构
长春光学精密机械与物... [2]
武汉岩土力学研究所 [1]
采集方式
OAI收割 [3]
内容类型
会议论文 [3]
发表日期
2013 [1]
2012 [1]
2006 [1]
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Advanced astigmatism-corrected tandem Wadsworth mounting for small-scale spectral broadband imaging spectrometer (EI CONFERENCE)
会议论文
OAI收割
作者:
Lin G.-Y.
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浏览/下载:40/0
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提交时间:2013/03/25
Tandem gratings of double-dispersion mount make it possible to design an imaging spectrometer for the weak light observation with high spatial resolution
high spectral resolution
and high optical transmission efficiency. The traditional tandem Wadsworth mounting is originally designed to match the coaxial telescope and large-scale imaging spectrometer. When it is used to connect the off-axis telescope such as off-axis parabolic mirror
it presents lower imaging quality than to connect the coaxial telescope. It may also introduce interference among the detector and the optical elements as it is applied to the short focal length and small-scale spectrometer in a close volume by satellite. An advanced tandem Wadsworth mounting has been investigated to deal with the situation. The Wadsworth astigmatism-corrected mounting condition for which is expressed as the distance between the second concave grating and the imaging plane is calculated. Then the optimum arrangement for the first plane grating and the second concave grating
which make the anterior Wadsworth condition fulfilling each wavelength
is analyzed by the geometric and first order differential calculation. These two arrangements comprise the advanced Wadsworth mounting condition. The spectral resolution has also been calculated by these conditions. An example designed by the optimum theory proves that the advanced tandem Wadsworth mounting performs excellently in spectral broadband. 2012 Optical Society of America.
Optimum Arrangement of Prestressed Cables in Rock Anchorage
会议论文
OAI收割
Kunming, PEOPLES R CHINA, MAR 24-25, 2012
作者:
Liu Xiumin
;
Chen Congxin
;
Zheng Yun
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收藏
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浏览/下载:21/0
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提交时间:2018/06/05
Anchorage
Rock slope
Prestressed cable
Optimum arrangement
Cable spacing
Anchoring force
Displacement
Support technique of ultra thin mirror in space optics (EI CONFERENCE)
会议论文
OAI收割
2nd International Symposium on Advanced Optical Manufacturing and Testing Technologies: Large Mirrors and Telescopes, November 2, 2005 - November 5, 2005, Xian, China
作者:
Ren J.-Y.
;
Gao M.-H.
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浏览/下载:37/0
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提交时间:2013/03/25
With the development of space optical system
the technique of ultra thin mirror come forth and is paid more attention because of less difficulty in machining
low cost
lightweight
no disassembly during detecting and maintaining. The key technique takes advantage of deformation of ultra thin mirror as the influence of environment to adjust the surface figure. Its accuracy meets requirement. An analysis method is based on finite element analysis (FEA)
and many items
including the amount of support points
the way of arrangement
the optimum design of support component are studied. The finite element method was used to analyze the mirror and some different mirror support schemes. The principal aim of the mirror analysis is to get numbers of support points and the ways of the support. There are three schemes including 12-6-1
12-8-1 and 16-8-1 models. Deformation of deadweight is calculated under the three conditions. The way of 16-8-1 is more suitable than the designs of other two. The support subassembly is amended to meet with the mirror surface RMS in the range of 30m. Deformation of the mirror with support structure has been calculated. The result is 16.52nm
lower than a quarter of the wavelength
which indicates the feasibility of the support scheme applied to mirror. Theoretical result for the best way of support is presented. The result of analysis shows that requirement surface figure could be met through adjusting support points. It predicts feasibility of the support technique and provides theoretical value for active adjustment in the laboratory. At present
support and adjusting experiment of ultra thin mirror is being carried on.