全部 标题 作者
关键词 摘要

OALib Journal期刊
ISSN: 2333-9721
费用:99美元

查看量下载量

相关文章

更多...
-  2015 

重载下准双曲面齿轮传动界面润滑机理分析
Analysis on Lubrication Performance of Hypoid Gears at Heavy Loads

DOI: 10.7652/xjtuxb201511010

Keywords: 准双曲面齿轮,重载,闪温,von Mises应力
hypoid gear
,heavy load,flash temperature,von Mises stress

Full-Text   Cite this paper   Add to My Lib

Abstract:

综合考虑了准双曲面齿轮传动接触几何、卷吸速度与椭圆主轴不重合、润滑剂流变特性等因素,建立了准双曲面齿轮传动界面润滑机理分析的统一数学模型,数值分析了重载下准双曲面齿轮传动一对啮合副从啮入到啮出过程中啮合点油膜、压力、闪温和von Mises应力的演变规律,探讨了小齿轮转速对传动界面润滑性能的影响。结果表明:从啮入到啮出过程中,啮合点的中心油膜厚度和最大von Mises应力呈现单调递减趋势,表面最大闪温则是先升高然后逐渐降低;转速对传动界面润滑状态的影响非常显著,随着转速的逐渐减小,啮合点中心油膜厚度也随之减小,由于工程中粗糙表面的存在,界面容易因滑动摩擦发生磨损;转速越高,啮合点的闪温也越高,此时齿面容易发生胶合失效,为了最大限度地避免齿面磨损和胶合,需要合理选择准双曲面齿轮的运行转速。
A unified lubrication model is established for hypoid gears considering the effects of contact geometry, the oblique angle between entrainment speed and principal axis of ellipse, as well as rheological properties. The pressure, film thickness, flash temperature and von Mises stress are obtained at different meshing points from beginning to the end of whole engagement process under heavy load conditions. Besides, the effect of speed on the lubrication performance is also studied. The results reveal that both the central film thickness and the max von Mises stress show a monotone decreasing tendency during the whole engagement process; the max flash temperature increases first and then gradually decreases; and the effect of rotational speed on the lubrication performance in contact surface is significant. The central film thickness decreases gradually with the decrease of rotational speed, leading to abrasion due to the sliding friction on rough surface. In addition, the higher the rotational speed is, the larger the flash temperature will be, which may lead to scuffing failure on the contact surface. Therefore, in order to avoid abrasion and scuffing failure as much as possible, it is necessary to properly select the rotational speed of hypoid gears

References

[1]  [5]SIMON V. Influence of machine tool setting parameters on EHD lubrication in hypoid gears [J]. Mechanism and Machine Theory, 2009, 44(5): 923??937.
[2]  [6]CHAO H C. A computer solution for the dynamic load, lubricant film thickness, and surface temperatures in spiral bevel gears [D]. Evanston, Illinois, USA: Northwestern University, 1982.
[3]  GU Jiangong, FANG Zongde, FU Bibo, et al. Study on surface flash temperature for spiral bevel gears under condition of mixed elasto??hydrodynamic lubrication [J]. Journal of Aerospace Power, 2010, 25(12): 2846??2850.
[4]  [8]苏华, 张永红, 陈国定, 等. 弧齿锥齿轮热摩擦学行为研究的几个方面 [J]. 机械科学与技术, 2000, 19(S1): 130??132.
[5]  [1]蒲伟, 王家序, 朱东, 等. 卷吸速度为任意方向的椭圆接触弹流润滑复合迭代解法 [J]. 机械工程学报, 2014, 50(13): 106??112.
[6]  [2]MARTIN H M. Lubrication of gear teeth [J]. Engineering, London, 1976, 102: 119??121.
[7]  [3]ZHU D, WANG Q. Elastohydrodynamic lubrication: a gateway to interfacial mechanics: review and prospect [J]. ASME J Tribol, 2011, 133(4): 041001.
[8]  [4]ZHU D, REN N, WANG Q. Pitting life prediction based on a 3??D line contact mixed EHL analysis and subsurface von Mises stress calculation [J]. ASME J Tribol, 2009, 131(4): 041501.
[9]  [7]谷建功, 方宗德, 扶碧波, 等. 混合弹流润滑下弧齿锥齿轮齿面闪温研究 [J]. 航空动力学报, 2010, 25(12): 2846??2850.
[10]  SU Hua, ZHANG Yonghong, CHEN Guoding, et al. On spiral bevel gear’s thermal tribology behavior [J]. Mechanical Science and Technology, 2000, 19(S1): 130??132.
[11]  PU Wei, WANG Jiaxu, ZHU Dong, et al. Semi??system approach in elastohydrodynamic lubrication of elliptical contacts with arbitrary entrainment [J]. Journal of Mechanical Engineering, 2014, 50(13): 106??112.
[12]  [9]PU W, WANG J, ZHANG Y, et al. A theoretical analysis of the mixed elastohydrodynamic lubrication in elliptical contacts with an arbitrary entrainment angle [J]. ASME J Tribol, 2014, 136(4): 041505.
[13]  [10]郑昌启. 弧齿锥齿轮和准双曲面齿轮 [M]. 北京: 机械工业出版社, 1988: 358??367.
[14]  [11]LITVIN F L. Gear geometry and applied theory [M]. Englewood Cliffs, NJ, USA: Prentice??Hall, 1994: 604??624.
[15]  [12]HU Y Z, ZHU D. A full numerical solution to the mixed lubrication in point contacts [J]. ASME J Tribol, 2000, 122(1): 1??9.
[16]  [13]LIU S B, WANG Q. Studying contact stress fields caused by surface tractions with a discrete convolution and fast Fourier transform algorithm [J]. Journal of Tribology, 2002, 124(1): 36??45.
[17]  [14]MARTINI A, ZHU D, WANG Q. Friction reduction in mixed lubrication [J]. Tribology Letters, 2007, 28(2): 171??181.
[18]  [15]ZHU D, CHENG H S. An analysis and computational procedure for EHL film thickness, friction and flash temperature in line and point contacts [J]. Tribology Transactions, 1989, 32: 364??370.
[19]  [16]HUANG C, ZHENG C, LI R. An analysis system of loaded tooth contact behavior of spiral gears [J]. Progress in Nature Science, 1992, 2(6): 556??560.

Full-Text

Contact Us

service@oalib.com

QQ:3279437679

WhatsApp +8615387084133