DocumentCode :
3493562
Title :
Study of horizontal shafting with spherical four-way structure
Author :
Yang, Libao
Author_Institution :
Changchun Inst. of Opt., Fine Mech. & Phys., Changchun, China
fYear :
2012
fDate :
23-25 Aug. 2012
Firstpage :
540
Lastpage :
543
Abstract :
Altazimuth photoelectric theodolite level shaft U-type and T-type structure, but with the expanding field of applications of photoelectric theodolite, the horizontal shaft structure occur great changes. For example, in the marine environment, shipboard conditions, the instrument has a waterproof, corrosion-resistant, easy maintenance and other functions, while carrier-based optoelectronic devices from a single visible television configure the development of integrated infrared system and ranging system as one of the single-station measurement system, due to the spherical structure has sufficient internal space exactly adapted to this need. In this paper, the horizontal axis of a spherical four-way structure. From aspects of the spherical four-way split in the form and shafting design and finite element analysis of the detailed design. A spherical four-way horizontal axis system, diameter 550mm, weight 19kg sphere, in the 40kg load, the maximum deformation of 3.3μm, fully meet the requirements. The shaft of the structure of the shaking is less than 2 arc seconds, the vibration test, the re-examination instrument accuracy change is less than 1 arc seconds. Verify that the structure is stable and reliable.
Keywords :
corrosion resistance; deformation; design engineering; dynamic testing; finite element analysis; maintenance engineering; measurement systems; optical instruments; photoelectric devices; shafts; theodolites; altazimuth photoelectric theodolite level shaft T-type structure; altazimuth photoelectric theodolite level shaft U-type structure; carrier-based optoelectronic device; corrosion-resistant; deformation; finite element analysis; horizontal shaft structure; integrated infrared system; internal space; maintenance; marine environment; mass 19 kg; mass 40 kg; reexamination instrument accuracy; shipboard condition; single visible television configuration; single-station measurement system; size 3.3 mum; size 550 mm; spherical four-way horizontal axis system; spherical four-way structure; vibration testing; waterproof; Finite element methods; Internal stresses; Shafts; Strain; Theodolites; Vibrations; finite element analysis; horizontal shafting; photoelectric theodolite; spherical four-way structure; vibration test;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Optoelectronics and Microelectronics (ICOM), 2012 International Conference on
Conference_Location :
Changchun, Jilin
Print_ISBN :
978-1-4673-2638-4
Type :
conf
DOI :
10.1109/ICoOM.2012.6316333
Filename :
6316333
Link To Document :
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