TY - JOUR
T1 - A method of optical non-contact measurement to rotary part's profile
AU - Shang, Yan
AU - Xu, Chunguang
AU - Xiao, Dingguo
AU - Meng, Fanwu
PY - 2008
Y1 - 2008
N2 - The research on the technology of non-contact measurement of rotary part's profile has important academic significance and practicability for improving the rotary part's manufacture precision. In this paper, a method of non-contact measurement to rotary part's profile is studied. This method can be used to measure rotary parts more efficiently and accurately. In order to measure the rotary part's profile continuously, a laser beam-blocking method is presented. One or two laser beam-blocking sensors are used. The part that be measured is placed between the sensor's emitter and receiver. The part will block some laser beam. From the sensor, the diameter in a certain section of the part can be got directly. In order to eliminate the influence brought by the part's position error, we should obtain the axes equation and contour line equations through curve fitting. Then we get the real surface size through coordinate transformation. In this paper, genetic algorithm is used to fit the contour line equations and the axes equation in order to improve the speed and precision of data processing. The experiments results show that the scheme presented in the paper is feasible, and the data processing method is correct.
AB - The research on the technology of non-contact measurement of rotary part's profile has important academic significance and practicability for improving the rotary part's manufacture precision. In this paper, a method of non-contact measurement to rotary part's profile is studied. This method can be used to measure rotary parts more efficiently and accurately. In order to measure the rotary part's profile continuously, a laser beam-blocking method is presented. One or two laser beam-blocking sensors are used. The part that be measured is placed between the sensor's emitter and receiver. The part will block some laser beam. From the sensor, the diameter in a certain section of the part can be got directly. In order to eliminate the influence brought by the part's position error, we should obtain the axes equation and contour line equations through curve fitting. Then we get the real surface size through coordinate transformation. In this paper, genetic algorithm is used to fit the contour line equations and the axes equation in order to improve the speed and precision of data processing. The experiments results show that the scheme presented in the paper is feasible, and the data processing method is correct.
KW - Genetic algorithm
KW - Laser beam-blocking method
KW - Non-contact measurement
KW - Profile measurement
KW - Rotary part
UR - http://www.scopus.com/inward/record.url?scp=60649091194&partnerID=8YFLogxK
U2 - 10.1117/12.819745
DO - 10.1117/12.819745
M3 - Conference article
AN - SCOPUS:60649091194
SN - 0277-786X
VL - 7130
JO - Proceedings of SPIE - The International Society for Optical Engineering
JF - Proceedings of SPIE - The International Society for Optical Engineering
M1 - 713055
T2 - 4th International Symposium on Precision Mechanical Measurements
Y2 - 25 August 2008 through 29 August 2009
ER -