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CONTACT DEFORMATION AND PRE-CONTROL OF TRANSMISSION PROPERTIES OF POINT CONJUGATE GEAR 被引量:2

CONTACT DEFORMATION AND PRE-CONTROL OF TRANSMISSION PROPERTIES OF POINT CONJUGATE GEAR
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摘要 According to spatial conjugate principle and theory of elastic contact, a method to pre-control transmission properties and contact mark of point meshing gear is presented, while the deformation of tooth surface is under consideration. A new approach to improve the quality of spiral bevel gear is illustrated emphatically. According to spatial conjugate principle and theory of elastic contact, a method to pre-control transmission properties and contact mark of point meshing gear is presented, while the deformation of tooth surface is under consideration. A new approach to improve the quality of spiral bevel gear is illustrated emphatically.
出处 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2000年第1期76-80,共5页 中国机械工程学报(英文版)
关键词 Elastic Contact DEFORMATION Meshing Gear Elastic Contact Deformation Meshing Gear
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参考文献3

  • 1[1]Wu Xutang. The pre-control of mismatched transmission performance of point meshing conjugate tooth flank. Gear, 1988,12(3) :1~7(in Chinese)
  • 2[2]Wang Xiaochun. Three-order contact analysis and optimal tooth cutting calculation of curved bevel gears and hyerbolic gears. Gear, 1989,13(2) :23~28(in Chinese)
  • 3[3]Zeng Changqi. Gurved bevel gears and hypoid gears. Beijing:China Machine Press,1988(in Chinese)

同被引文献11

  • 1LIU Guran.THIRD-ORDER LOCAL CONTACT AND APPLICATION IN 5-AXIS MACHINING OF SCULPTURED SURFACES[J].Chinese Journal of Mechanical Engineering,2006,19(2):265-267. 被引量:8
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  • 3KISH1NAMI T,SUZUKI H.Theoretical analysis of cutting speed components on the rake face of circular cutting edge of ball end milling[J].Trans.Jap.Soc.Precision Eng.,1980,46(10):115-122.
  • 4FUJII Y,IWABE H.Relation between cutting force curve and working accuracy with ball-nose end mills[J].Trans.Jap.Soc.Precision Eng.,1982,48 (5):105-110.
  • 5VICKERS G W,BEDI S,HAW R.The definition and manufacture of compound curvature surfaces using G-surf[J].Computer Idust.,1985,6(2):173-183.
  • 6VICKERS G W,QUAN K W.Ball end mill verus end-mills for curved surface machining[J].Trans.ASME J.Eng.Idust.,1989,25 (2):22-26.
  • 7SUSAN X,LI R,JERARD B.5-axis machining of sculptured surfaces with a flat-end cutter[J].Computer-Aided Design,1994,126 (3):120-125.
  • 8MARCINAK K.Influence of surface shape on admissible tool positions in 5-axis face milling[J].Computer-Aided Design,1987,19 (5):24-30.
  • 9CHOI B K.Cutter-location data optimization in 5-axis surface machining[J].Computer-Aided Design,1993,25(6):70-75.
  • 10刘鹄然,袁文辉,李元君,李国顺.用圆柱铣刀加工高速机车流线型曲面的三阶切触原理[J].铁道学报,2000,22(4):99-102. 被引量:3

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