TY - GEN
T1 - Design of transmission accuracy of the involute cylindrical gear-worm gear system under large temperature difference based on FE method
AU - Wang, Y.
AU - Peng, B.
AU - Liu, G.
AU - Liu, L.
N1 - Publisher Copyright:
© VDI Verlag GmbH Düsseldorf 2017.
PY - 2017
Y1 - 2017
N2 - Involute cylindrical gear transmission and worm gear drives are mechanical devices widely used in transmission mode. The design of precision not only directly affects the accuracy of the transmission, but also affects the cost and machining process. Since the system works under large temperature difference, the deformation of the system would be very different from the common condition and the accuracy of every component will be influenced. In this paper, the finite element analysis method is adopted to the structural analysis of thermal deformation. The main factors affecting transmission error of the gear-worm system mainly considered in this paper are: Center distance, tooth thickness variation, radial tooth-to-tooth composite variation, the bearing clearance and so on at the extreme temperature of -50℃ & 70℃. The results can be used to calculate the backlash increment caused by the temperature difference. Eventually, with further inspection and gradual rectification, the design precision is obtained which not only meet the requirements of backlash but also make no stuck in the system.
AB - Involute cylindrical gear transmission and worm gear drives are mechanical devices widely used in transmission mode. The design of precision not only directly affects the accuracy of the transmission, but also affects the cost and machining process. Since the system works under large temperature difference, the deformation of the system would be very different from the common condition and the accuracy of every component will be influenced. In this paper, the finite element analysis method is adopted to the structural analysis of thermal deformation. The main factors affecting transmission error of the gear-worm system mainly considered in this paper are: Center distance, tooth thickness variation, radial tooth-to-tooth composite variation, the bearing clearance and so on at the extreme temperature of -50℃ & 70℃. The results can be used to calculate the backlash increment caused by the temperature difference. Eventually, with further inspection and gradual rectification, the design precision is obtained which not only meet the requirements of backlash but also make no stuck in the system.
UR - http://www.scopus.com/inward/record.url?scp=85105931907&partnerID=8YFLogxK
M3 - 会议稿件
AN - SCOPUS:85105931907
SN - 9783180922911
SN - 9783180922928
SN - 9783180922935
SN - 9783180922942
SN - 9783180922959
SN - 9783180922966
SN - 9783180922973
SN - 9783180922980
SN - 9783180922997
SN - 9783180923000
SN - 9783180923017
SN - 9783180923024
SN - 9783180923031
SN - 9783180923048
SN - 9783180923055
SN - 9783180923062
SN - 9783180923079
SN - 9783180923086
SN - 9783180923093
SN - 9783180923109
SN - 9783180923116
SN - 9783180923123
SN - 9783180923130
SN - 9783180923147
SN - 9783180923154
SN - 9783180923161
SN - 9783180923192
T3 - VDI Berichte
SP - 1190
EP - 1200
BT - VDI Berichte
PB - VDI Verlag GMBH
T2 - International Conference on Gear Production, 2017 and International Conference on High Performance Plastic Gears, 2017
Y2 - 13 September 2017 through 15 September 2017
ER -