Page 144 - 摩擦学学报2025年第4期
P. 144
632 摩擦学学报(中英文) 第 45 卷
International Conference on Dynamics and Vibroacoustics of Engineering Failure Analysis, 2007, 14(8): 1680–1692. doi: 10.
Machines (DVM). Samara, Russia. IEEE, 2020: 1–6. doi:10.1109/ 1016/j.engfailanal.2006.11.061.
DVM49764.2020.9243903. [ 39 ] Kim H K, Nam J H, Hawong J S, et al. Evaluation of O-ring
[ 24 ] Liu Wei, Liu Ying, Huang Weifeng, et al. Effect of disturbances on stresses subjected to vertical and one side lateral pressure by
the dynamic performance of a wavy-tilt-dam mechanical seal[J]. theoretical approximation comparing with photoelastic
Tribology International, 2013, 64: 63–68. doi: 10.1016/j.triboint. experimental results[J]. Engineering Failure Analysis, 2009, 16(6):
2013.02.021. 1876–1882. doi: 10.1016/j.engfailanal.2008.09.028.
[ 25 ] Falaleev S V, Vinogradov A S. Analysis of dynamic characteristics [ 40 ] Medri G, Molari P G, Strozzi A. Numerical and experimental
for face gas dynamic seal[J]. Procedia Engineering, 2015, 106: stress-strain analysis on rubber-like seals in large elastic
210–217. doi: 10.1016/j.proeng.2015.06.026. deformations under unilateral contact[C]//8th Int. Conf. on Fluid
[ 26 ] Zhang Yimin. Mechanical vibrations[M]. 2nd ed. Beijing: Sealing BHRA, Cranfield, U. K. , 1978.
Tsinghua University Press, 2019 (in Chinese) [张义民. 机械振动[M]. [ 41 ] Medri G, Strozzi A. Mechanical analysis of elastomeric seals by
2版. 北京: 清华大学出版社, 2019]. numerical methods[J]. Industrial & Engineering Chemistry Product
[ 27 ] Badykov R R, Falaleev S V. Advanced dynamic model Research and Development, 1984, 23(4): 596–600. doi: 10.1021/
development of dry gas seal[J]. Procedia Engineering, 2017, 176: i300016a017.
344–354. doi: 10.1016/j.proeng.2017.02.331. [ 42 ] George A F, Strozzi A, Rich J I. Stress fields in a compressed
[ 28 ] Falaleev S V, Vinogradov A S. Development of a dynamic model unconstrained elastomeric O-ring seal and a comparison of
and study of the dynamic characteristics of an end gas dynamic computer predictions and experimental results[J]. Tribology
seal[J]. Journal of Machinery Manufacture and Reliability, 2017, International, 1987, 20(5): 237–247. doi: 10.1016/0301-679x(87)
46(1): 40–45. doi: 10.3103/S1052618817010058. 90023-5.
[ 29 ] Green I, Etsion I. Pressure and squeeze effects on the dynamic [ 43 ] Dragoni E, Strozzi A. Analysis of an unpressurized, laterally
characteristics of elastomer O-rings under small reciprocating restrained, elastomeric O-ring seal[J]. Journal of Tribology, 1988,
motion[J]. Journal of Tribology, 1986, 108(3): 439–444. doi: 10. 110(2): 193–200. doi: 10.1115/1.3261583.
1115/1.3261231. [ 44 ] English C. Stiffness determination of elastomeric O-rings using the
[ 30 ] Lindley P B, Compression characteristics of laterally-unrestrained finite element method[D]. Atlanta: Georgia Institute of
rubber orings[J]. Journal of the Institution of the Rubber Industry, Technology, 1989.
1967, (4): 209–213. doi: 10.1115/1.3261231. [ 45 ] Green I, English C. Analysis of elastomeric O-ring seals in
[ 31 ] Johannesson H L. Calculation of the pressure distribution in an O- compression using the finite element method[J]. Tribology
ring seal contact[C]//In: Proc 5th Leeds-Lyon Symp on Tribology, Transactions, 1992, 35(1): 83–88. doi: 10.1080/
Leeds. Mechanical Engineering Publications, London, 1978. 10402009208982093.
[ 32 ] Johannesson H L, Kassfeldt E. Calculation of the pressure [ 46 ] Maciejewski N J, Sefkow R B, Klamecki B E. Composite structure
distribution in an arbitrary elastomeric seal contact[J]. Wear, 1989, design of O-rings using material behavior to decrease strain energy
130(1): 3–15. doi: 10.1016/0043-1648(89)90217-2. and permanent deformation[J]. Journal of Tribology, 2009, 131(4):
[ 33 ] Karaszkiewicz A. Contact width and contact pressure of O-seals[J]. 042202. doi: 10.1115/1.3203147.
Przeglad Mechaniczny, 1979, 7: 14–16,25-26. [ 47 ] El Bahloul E, Aissaoui H, Diany M, et al. Finite element analysis
[ 34 ] Karaszkiewicz A. Geometry and contact pressure of an O-ring of the O-ring behavior under uniform squeeze levels and internal
mounted in a seal groove[J]. Industrial & Engineering Chemistry pressure[J]. WSEAS Transactions on Applied and Theoretical
Research, 1990, 29(10): 2134–2137. doi: 10.1021/ie00106a025. mechanics, 2022, 17: 226–234. doi: 10.37394/232011.2022.17.27.
[ 35 ] Dragoni E, Strozzi A. Theoretical analysis of an unpressurized [ 48 ] Zhou Zhihong, Zhang Kanglei, Li Jing, et al. Finite element
elastomeric O-ring seal inserted into a rectangular groove[J]. Wear, analysis of stress and contact pressure on the rubber sealing O-
1989, 130(1): 41–51. doi: 10.1016/0043-1648(89)90220-2. ring[J]. Lubrication Engineering, 2006, 31(4): 86–89 (in Chinese)
[ 36 ] Nicolin I, Nicolin B A. Physico-mathematical model of the contact [周志鸿, 张康雷, 李静, 等. O形橡胶密封圈应力与接触压力的有
between the sealing O-ring and the sealing surfaces[J]. Incas 限元分析[J]. 润滑与密封, 2006, 31(4): 86–89]. doi: 10.3969/j.
Bulletin, 2019, 11(2): 229–237. doi: 10.13111/2066-8201.2019.11. issn.0254-0150.2006.04.029.
2.19. [ 49 ] Guo Bozhi, Song Bifeng, Sun Faguo, et al. The finite element
[ 37 ] Johnson K L. Contact mechanics[M]. London: Cambridge analysis of O-ring[J]. Chinese Hydraulics & Pneumatics, 2009, (1):
University Press, l985. 31–34 (in Chinese) [郭博智, 宋笔锋, 孙法国, 等. O形圈的有限元
[ 38 ] Kim H K, Park S H, Lee H G, et al. Approximation of contact 分析[J]. 液压与气动, 2009, (1): 31–34]. doi: 10.3969/j.issn.1000-
stress for a compressed and laterally one side restrained O-ring[J]. 4858.2009.01.012.