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基于变形协调和间隙浮动的双路功率分流系统均载特性分析

董皓 方宗德 王宝宾 杜进辅

董皓, 方宗德, 王宝宾, 杜进辅. 基于变形协调和间隙浮动的双路功率分流系统均载特性分析[J]. 航空动力学报, 2013, 28(4): 872-877.
引用本文: 董皓, 方宗德, 王宝宾, 杜进辅. 基于变形协调和间隙浮动的双路功率分流系统均载特性分析[J]. 航空动力学报, 2013, 28(4): 872-877.
DONG Hao, FANG Zong-de, WNAG Bao-bin, DU Jin-fu. Load sharing characteristics analysis of power split system based on deflection compatibility and clearance floating[J]. Journal of Aerospace Power, 2013, 28(4): 872-877.
Citation: DONG Hao, FANG Zong-de, WNAG Bao-bin, DU Jin-fu. Load sharing characteristics analysis of power split system based on deflection compatibility and clearance floating[J]. Journal of Aerospace Power, 2013, 28(4): 872-877.

基于变形协调和间隙浮动的双路功率分流系统均载特性分析

基金项目: 国家自然科学基金(51175423)

Load sharing characteristics analysis of power split system based on deflection compatibility and clearance floating

  • 摘要: 针对双路功率分流系统的载荷均匀分布问题,建立了该系统的静力学模型,并根据系统构成功率流动闭环的特点,推导出扭转角变形协调条件,将该条件联立力矩平衡条件和弹性支承条件,计算出了各齿轮副传递的扭矩,得到系统的均载系数.从静力学角度分析了各构件安装误差和均载特性的关系,并分析了间隙浮动对均载特性的影响.结果表明:齿轮2存在安装误差为0.03mm的情况下,间隙量为0.8mm即可满足基本构件浮动,得到均载系数为1.0038,间隙浮动有利于提高均载性能.对比实验和理论分析的结果,同一误差条件下,功率分配分别为53.88%和53.50%,从而验证了该方法的正确性.

     

  • [1] Kish J G.Sikorsky aircraft advanced rotorcraft transmission (art) program-final report [R].NASA CR-191079, 1993.
    [2] Kish J G.Comanche drive system [R].Williamsburg,VA:Rotary Wing Propulsion Specialists' Meeting,American Helicopter Society,1993.
    [3] Krantz T L.A method to analyze and optimize load sharing of split path transmission [R].NASA TM-107201,1996.
    [4] Krantz T L,Delgado I R.Experimental study of split-path transmission load sharing [R].NASA TM-107212,1996.
    [5] White G.Split torque helicopter transmissions with widely separated engines[J].Journal of Aerospace Engineering,1989,203(1):53-65.
    [6] White G.Design study of a split-torque helicopter transmission[J].Journal of Aerospace Engineering,1998,212(2):117-123.
    [7] White G.Design study of a 375 kW helicopter transmission with split-torque epicyclic and bevel drive stages[J].Journal of Aerospace Engineering 1983,197(4):213-224.
    [8] 孙智民.功率分流齿轮传动系统非线性动力学研究[D].西安:西北工业大学,2002. SUN Zhimin.Research on nonlinear dynamics of split power gear system [D].Xi'an:Northwest Polytechnical University,2002.(in Chinese)
    [9] 日高照晃,衫本信行,石田武.遊星歯車装置の荷重等配機構における各種誤差と荷重配分の関係 [C]//日本機械学会論文集.東京:日本機械学会,1986:2200-2206.
    [10] 方宗德,沈允文,黄镇东.三路功率分流恒星式减速器的动态特性[J].航空学报,1990,17(7):341-350. FANG Zongde,SHEN Yunwen,HUANG Zhendong.The dynamic behaviour of star gearing with three branches[J].Acta Aeronuatica et Astronautic Sinica,1990,17(7):341-350.(in Chinese)
    [11] 袁擎宇,朱如鹏,朱自冰,等.两级星型齿轮传动静力学均载分析[J].机械科学与技术,2004,23(7):789-792. YUAN Qingyu,ZHU Rupeng,ZHU Zibing,et al.Analysis of static load sharing in a 2-stage star gearing system[J].Mechanical Science and Technology,2004,23(7):789-792.(in Chinese)
    [12] 袁茹,王三民,沈允文.行星齿轮传动的功率分流动态均衡优化设计[J].航空动力学报,2000,15(4):410-412,418. YUAN Ru,WANG Sanmin,SHEN Yunwen.Dynamic optimum design of power shared out equally among the planetary gears[J].Journal of Aerospace Power,2000,15(4):410-412,418.(in Chinese)
    [13] 谷建功,方宗德,庞辉,等.弧齿锥齿轮功率分流传动系统建模与承载特性分析[J].航空动力学报,2009,24(11):2625-2630. GU Jiangong,FANG Zongde,PANG Hui,et al.Modeling and load analysis of spiral bevel gears power split system[J].Journal of Aerospace Power,2009,24(11):2625-2630.(in Chinese)
    [14] 陆俊华,李斌,朱如鹏.行星齿轮传动静力学均载分析[J].机械科学与技术,2005,24(6):702-709. LU Junhua,LI Bin,ZHU Rupeng.Analysis of static load sharing in planetary gearing[J].Mechanical Science and Technology,2005,24(6):702-709.(in Chinese)
    [15] Kahramn A.Load sharing characteristics of planetary transmissions[J].Mechanism and Machine Theory,1994,29(8):1151-1165.
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出版历程
  • 收稿日期:  2012-05-02
  • 刊出日期:  2013-04-28

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