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中国科学院长春光学精密机械与物理研究所
收稿日期:2007-05-14,
修回日期:2007-07-20,
网络出版日期:2008-01-22,
纸质出版日期:2008-01-22
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谭凡教,乔彦峰,李耀彬. 经纬仪主镜轻量化新方法[J]. 光学精密工程, 2008,16(1):22-28
A new Technology for Lightweight large Primary Mirror of Theodolite[J]. Optics and precision engineering, 2008, 16(1): 22-28.
谭凡教,乔彦峰,李耀彬. 经纬仪主镜轻量化新方法[J]. 光学精密工程, 2008,16(1):22-28 DOI:
A new Technology for Lightweight large Primary Mirror of Theodolite[J]. Optics and precision engineering, 2008, 16(1): 22-28. DOI:
为了优化2m口径经纬仪主镜概念轻量化结构形式,本文根据柔性极小化原则,采用了有限元拓扑分析方法。经过分析得出,不同材料镜面的优化轻量化结构,其重点保留位置比较接近,最外圈半径为889.5mm,最内侧圈半径为235mm,中间几个保留半径为720~730mm、610~620mm;从轻量化率看,非圆形孔结构平均为70%,圆形孔结构为50%以上;比较微晶玻璃镜面两种轻量化的优化结果,看出,固有频率均为300Hz左右,相对于实体镜,定位作用反力降低很多。分析SiC镜面各种轻量化结构的镜面变形和固有频率得出,圆形孔非均匀分布和封闭六边形结构的镜面位移为0.42~0.45e-5mm,圆孔均匀分布和开放式六边形结构为0.58~0.59e-5mm;圆形孔均匀分布结构的频率为1200Hz,圆形孔非均匀分布为1680Hz,六边形形式为1620~1670Hz左右。经过分析认为,镜面重力载荷分布是非线性的,镜背轻量化结构分布也是非均匀的,这有利于控制镜面变形和固有频率,可供轻量化设计参考。
In order to optimize conceptual lightweight structure for 2m aperture theodolite primary mirror
according minimum flexibility principle
the papers optimizes conceptual lightweight structure with FEA topology method. From the computation result
major remain radial is close for different mirror material
in which the outside radial is 889.5mm
the inner is 235mm
the middle radial places are 720-730mm
620-630mm; the mean lightweight rate of non-circular type is about 70%
the circular is to 50%. From optimization data of Zerodur mirror
natural frequency comes to 300Hz
location reaction force declines largely relatively. Comparing the deformation of SiC mirror surface with uniform lightweight structure
the displacement of non-uniform circular structure and close hexagon structure is close to 0.42-0.45e-5mm
while the uniform circular and open hexagon is 0.58-0.59e-5mm; and the natural frequency of uniform distribution circular is 1200Hz
while the non-uniform is 1680Hz
and the hexagon 1620-1670Hz. We get the conclusion
for the gravity load on mirror surface distributes nonlinear
the distribution of lightweight structure is uniform
which helps to control mirror surface deformation and natural frequency
to referent to lightweight design.
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