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Numerical Simulation Study on Wear of Spur Gears under Dynamic Conditions

Numerical Simulation Study on Wear of Spur Gears under Dynamic Conditions
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摘要 A numerical simulation model is proposed to predict the wear depth of gears,where Archard's wear equation and a nonlinear dynamic model are combined to establish a wear calculation model under dynamic conditions.The dynamic meshing force,determined by the non-linear dynamic model,and the sliding coefficient are used by Archard's wear equation to calculate the surface wear.Then the dynamic meshing force and sliding coefficient would be recalculated according to the surface wear state.After repeated iterations,the simulation results show that the peak and fluctuation of the meshing force increase first,then decrease,and eventually maintain stability during the process of wear.As for the distribution of wear depth,its fluctuation also increases first and then declines.Finally,the distribution of wear depth becomes V-shaped.Comparing the trends of the two factors,it is clear that the meshing force and wear depth are closely related.Moreover,the wear rate maintains a higher constant value first and then declines to a lower constant value. A numerical simulation model is proposed to predict the wear depth of gears,where Archard's wear equation and a nonlinear dynamic model are combined to establish a wear calculation model under dynamic conditions.The dynamic meshing force,determined by the non-linear dynamic model,and the sliding coefficient are used by Archard's wear equation to calculate the surface wear.Then the dynamic meshing force and sliding coefficient would be recalculated according to the surface wear state.After repeated iterations,the simulation results show that the peak and fluctuation of the meshing force increase first,then decrease,and eventually maintain stability during the process of wear.As for the distribution of wear depth,its fluctuation also increases first and then declines.Finally,the distribution of wear depth becomes V-shaped.Comparing the trends of the two factors,it is clear that the meshing force and wear depth are closely related.Moreover,the wear rate maintains a higher constant value first and then declines to a lower constant value.
出处 《Journal of Beijing Institute of Technology》 EI CAS 2019年第1期146-154,共9页 北京理工大学学报(英文版)
基金 Supported by the National Natural Science Foundation of China(51475044)
关键词 dynamic MESHING FORCE reconstruction of TOOTH profile GEAR WEAR Archard's WEAR EQUATION dynamic meshing force reconstruction of tooth profile gear wear Archards' wear equation
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  • 1李宝良,江亲瑜.凸轮机构系统磨损及可靠性寿命的数值仿真[J].摩擦学学报,2004,24(6):550-554. 被引量:16
  • 2董海军,沈允文,郜志英,刘梦军.转速激励下齿轮系统拍击振动的分岔特性[J].机械工程学报,2006,42(2):168-172. 被引量:10
  • 3陈予恕.机械故障诊断的非线性动力学原理[J].机械工程学报,2007,43(1):25-34. 被引量:55
  • 4王松年 苏诒福 江亲瑜.摩擦学原理与应用[M].北京:中国铁道出版社,1990.87-129.
  • 5孙桓,陈作模.机械原理[M].北京:高等教育出版社,2004:298~301
  • 6[苏] N·B·克拉盖尔斯基,等.摩擦磨损计算原理[M].北京:机械工业出版社,1982.
  • 7[苏]N.B.克拉盖尔斯基.摩擦磨损计算原理[M].北京:机械工业出版社.1982.
  • 8DING Huali, KAHRAMAN A. Interactions between nonlinear spur gear dynamics and surface wear [ J ]. Journal of Sound and Vibration. 2007,307:662 -679.
  • 9JOZEF W, VALENTIN O. Tooth wear effects on spur gear dynamics [ J ]. Mechanism and Machine Theory. 2003,38 : 161 - 178.
  • 10PARK D, KAHARAMAN A. A surface wear model for hypoid gear pairs [ J ]. Wear, 2009,267 : 1595 - 1604.

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