ISSN 0021-3454 (print version)
ISSN 2500-0381 (online version)
Menu

4
Issue
vol 67 / April, 2024
Article

DOI 10.17586/0021-3454-2017-60-11-1060-1063

UDC 681.786

SYNTHESIS OF REFLECTORS FOR AUTOCOLLIMATION MEASUREMENTS WITH INCREASED OPERATIONAL DISTANCE

I. A. Konyakhin
ITMO University; Professor


L. Renpu
ITMO University, Department of Optical-Electronic Devices and Systems; Post-Graduate Student


Read the full article 

Abstract. Relations between parameters of the trihedron-shaped reflector for autocollimation-based measurements of rotation angle are analyzed. In comparison to flat mirror, the use of the reflector allows to increase the operational distance of autocollimation measurements. Special configuration of the trihedron with reflective edge in the form of two separated sections is considered. It is shown that application of such configuration makes the effective reflection surface more than three times as large as for existing trihedron reflectors.
Keywords: autocollimation method of deformation measurement, collimation angle measurements, trihedron reflector, increased working distance, effective reflection surface

References:
  1. Anikst D.A., Kostantinovich K.M., Mes'kin I.V., Pankov E.D. Vysokotochnye uglovye izmereniya (High-Precision Angular Measurements), Moscow, 1987. 480 р.(in Russ.)
  2. TriAngle® Electronic Autocollimator, http://www.trioptics.com/triangle/description.php.
  3. http://taylor-hobson.ru/katalog-produktcii/avtokollimator-ultra.html.
  4. Korolev A.N., Gartsuev A.I., Polishchuk G.S, Tregub V.P. Journal of Optical Technology, 2009, no. 10(76), pp. 42–47. (in Russ.)
  5.  Konyakhin I.A., Van Phong Hoang, Artemenko Yu. et al. Proc. SPIE, 2015, no. 9525, рр. 952540-1-952540-8.
  6. Dzhabiev A.N., Konyakhin I.A., Pankov E.D. Avtokollimatsionnye ugloizmeritel'nye sredstva monitoringa deformatsiy (Basic Angle Measuring Means of Deformation Monitoring), St. Petersburg, 2000, 197 р. (in Russ.)
  7. Vanderwerf D.F. Applied Prismatic and Reflective Optics, Bellingham, WA,SPIE, 2010.
  8. Rityn' N.E. Journal of Optical Technology, 1967, no. 4, рр. 1–4. (in Russ.)