TY - JOUR
T1 - Efficient Grinding Method for Face Gear with Long Radius Disk Wheel
AU - Wang, Yanzhong
AU - Chu, Xiaomeng
AU - Su, Guoying
AU - Zhao, Weiqiang
AU - He, Yueming
AU - Wu, Long
N1 - Publisher Copyright:
© 2019 Editorial Department of Journal of Beijing Institute of Technology.
PY - 2019/9/1
Y1 - 2019/9/1
N2 - In order to improve the machining efficiency of the dish wheel grinding face gear, two changes are proposed: a disk wheel grinding face gear with a long radius and a multi-axis movement optimization method for tooth surface correction. Based on the grinding principle of face gears, the equation of the long radius disk wheel is deduced. Based on the structure of the machining tool, the tooth surface equations of the face gear shaped by the long radius disk wheel are established. Furthermore, an optimization model of face gear tooth surface correction is established, and the machine tool motion optimization of face gear tooth surface correction is completed; Finally, a long radius disk wheel grinding face gear test is performed. After the face gear tooth surface correction, the maximum value of the tooth surface deviation is reduced from 180 μm to 16 μm which verified the correctness of the machining method.
AB - In order to improve the machining efficiency of the dish wheel grinding face gear, two changes are proposed: a disk wheel grinding face gear with a long radius and a multi-axis movement optimization method for tooth surface correction. Based on the grinding principle of face gears, the equation of the long radius disk wheel is deduced. Based on the structure of the machining tool, the tooth surface equations of the face gear shaped by the long radius disk wheel are established. Furthermore, an optimization model of face gear tooth surface correction is established, and the machine tool motion optimization of face gear tooth surface correction is completed; Finally, a long radius disk wheel grinding face gear test is performed. After the face gear tooth surface correction, the maximum value of the tooth surface deviation is reduced from 180 μm to 16 μm which verified the correctness of the machining method.
KW - Efficient grinding
KW - Face gear
KW - Long radius disk wheel
KW - Tooth surface correction
UR - https://www.scopus.com/pages/publications/85076715426
U2 - 10.15918/j.jbit1004-0579.18087
DO - 10.15918/j.jbit1004-0579.18087
M3 - 文章
AN - SCOPUS:85076715426
SN - 1004-0579
VL - 28
SP - 635
EP - 643
JO - Journal of Beijing Institute of Technology (English Edition)
JF - Journal of Beijing Institute of Technology (English Edition)
IS - 3
ER -