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Research Article

Tribological Characteristics of Rotary Vane Steering Gear Seals Under the Oil With Different Abrasive Particle Sizes

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Pages 1128-1138 | Received 22 Dec 2022, Accepted 15 Oct 2023, Published online: 07 Nov 2023

References

  • Witkowska, A., Tomera, M., and Śmierzchalski, R. (2007), “A Backstepping Approach to Ship Course Control,'' International Journal of Applied Mathematics and Computer Science, 17(1), pp 73–85. doi:10.2478/v10006-007-0007-2
  • Van Amerongen, J., van der Klugt, P. G. M., and Van Nauta Lemke, H. R. (1990), “Rudder Roll Stabilization for Ships,'' Automatica, 26(4), pp 679–690. doi:10.1016/0005-1098(90)90045-J
  • Im, I., Shin, D., and Jeong, J. (2018), “Components for Smart Autonomous Ship Architecture Based on Intelligent Information Technology,'' Procedia Computer Science, 134, pp 91–98. doi:10.1016/j.procs.2018.07.148
  • Liang, L., Wang, L., and Wang, J. (2018), “The Compensation for Nonlinear Friction of DDVC Flange-Type Rotary Vane Steering Gear,'' PLoS ONE, 13(11), p e0207018. doi:10.1371/journal.pone.0207018
  • Jiang, J., Su, W., and Liu, Q. (2008), “Direct Drive Electro-Hydraulic Servo Rotary Vane Steering Gear,'' Proceedings of the JFPS International Symposium on Fluid Power, 2008(7–2), pp 369–373. doi:10.5739/isfp.2008.369
  • Ayala, H. M., Hart, D. P., Yeh, O. C., et al. (1998), “Wear of Elastomeric Seals in Abrasive Slurries,'' Wear, 220(1), pp 9–21. doi:10.1016/S0043-1648(98)00232-4
  • Dong, C. L., Yuan, C. Q., Bai, X. Q., et al. (2015), “Study on Wear Behaviours for NBR/Stainless Steel Under Sand Water-Lubricated Conditions,'' Wear, 332–333, pp 1012–1020. doi:10.1016/j.wear.2015.01.009
  • Qin, K., Zhou, Q., Zhang, K., et al. (2019), “Non-Uniform Abrasive Particle Size Effects on Friction Characteristics of FKM O-Ring Seals Under Three-Body Abrasion,'' Tribology International, 136, pp 216–223. doi:10.1016/j.triboint.2019.03.051
  • Shen, M., Zheng, J., Meng, X., et al. (2015), “Influence of Al2O3 Particles on the Friction and Wear Behaviors of Nitrile Rubber Against 316L Stainless Steel,'' Journal of Zhejiang University-Science A, 16(2), pp 151–160. doi:10.1631/jzus.A1400217
  • Yuan, C., Guo, Z., Tao, W., et al. (2017), “Effects of Different Grain Sized Sands on Wear Behaviours of NBR/Casting Copper Alloys,'' Wear, 384–385, pp 185–191. doi:10.1016/j.wear.2017.02.019
  • Feng, K., Ji, J. C., Ni, Q., et al. (2023), “A Review of Vibration-Based Gear Wear Monitoring and Prediction Techniques,'' Mechanical Systems and Signal Processing, 182, p 109605. doi:10.1016/j.ymssp.2022.109605
  • Wieleba, W. (2007), “The Mechanism of Tribological Wear of Thermoplastic Materials,'' Archives of Civil and Mechanical Engineering, 7(4), pp 185–199. doi:10.1016/S1644-9665(12)60236-2
  • Myshkin, N. K., Petrokovets, M. I., and Kovalev, A. V. (2005), “Tribology of Polymers: Adhesion, Friction, Wear, and Mass-Transfer,'' Tribology International, 38(11), pp 910–921. doi:10.1016/j.triboint.2005.07.016
  • Zhang, S. W. (1992) “Wet Abrasion of Polymers,'' Wear, 158(1), pp 1–13. doi:10.1016/0043-1648(92)90026-5
  • Dong, C. L., Yuan, C. Q., Bai, X. Q., et al. (2015), “Tribological Properties of Aged Nitrile Butadiene Rubber Under Dry Sliding Conditions,'' Wear, 322–323, pp 226–237. doi:10.1016/j.wear.2014.11.010
  • Stachowiak, G. B., Stachowiak, G. W., and Brandt, J. M. (2006), “Ball-Cratering Abrasion Tests With Large Abrasive Particles,'' Tribology International, 39(1), pp 1–11. doi:10.1016/j.triboint.2004.10.010
  • Zhang, S. W. (1989), “Advances in Studies on Rubber Abrasion,'' Tribology International, 22(2), pp 143–148. doi:10.1016/0301-679X(89)90175-8
  • Lingesh, B. V., Ravikumar, B. N., and Rudresh, B. M. (2018), “Investigation on the Effect of Grit Size on Two Body Abrasive Wear Behavior of Polyamide66/Polypropylene (PA66/PP) Blends,'' Materials Today: Proceedings, 5(1, Part 3), pp 2444–2452. doi:10.1016/j.matpr.2017.11.024
  • Shen, M. X., Dong, F., Zhang, Z. X., et al. (2016), “Effect of Abrasive Size on Friction and Wear Characteristics of Nitrile Butadiene Rubber (NBR) in Two-Body Abrasion,'' Tribology International, 103, pp 1–11. doi:10.1016/j.triboint.2016.06.025
  • Guo, H., Zhao, A., Zhi, C., et al. (2017), “Two-Body Abrasion Wear Mechanism of Super Bainitic Steel,'' Materials Science and Technology, 2017(7/8), p 33. doi:10.1080/02670836.2016.1245239
  • Kumar, S. L. V., Kannanth, M. S. V., and Vinay, D. R. (2015), ''Three Body Abrasive Wear Study on A356 Aluminum Alloy Under T6 Heat Treated Conditions,'' Scientific & Academic Publishing.
  • Mahesha, C. R., Shivarudraiah , Mohan, N., et al. (2017), “Three Body Abrasive Wear Studies on Nanoclay/Nanotio2 Filled Basalt-Epoxy Composites,'' Materials Today: Proceedings, 4(2, Part A), pp 3979–3986. doi:10.1016/j.matpr.2017.02.298
  • Thakare, M. R., Wharton, J. A., Wood, R. J. K., et al. (2012), “Effect of Abrasive Particle Size and the Influence of Microstructure on the Wear Mechanisms in Wear-Resistant Materials,'' Wear, 276–277, pp 16–28. doi:10.1016/j.wear.2011.11.008
  • Edmonds, J., Resner, M. S., and Shkarlet, K. (2000), ''Detection of Precursor Wear Debris in Lubrication Systems,'' 2000 IEEE Aerospace Conference.
  • Fan, B., Li, B., Feng, S., et al. (2017), “Modeling and Experimental Investigations on the Relationship Between Wear Debris Concentration and Wear Rate in Lubrication Systems,'' Tribology International, 109, pp 114–123. doi:10.1016/j.triboint.2016.12.015
  • Ma, L., Shi, H., Zhang, H., et al. (2020), “High-Sensitivity Distinguishing and Detection Method for Wear Debris in Oil of Marine Machinery,'' Ocean Engineering, 215, p 107452. doi:10.1016/j.oceaneng.2020.107452
  • Coronado, J. J., and Sinatora, A. (2009), “Particle Size Effect on Abrasion Resistance of Mottled Cast Iron With Different Retained Austenite Contents,'' Wear, 267(11), pp 2077–2082. doi:10.1016/j.wear.2009.08.011
  • Gao, W., M., Bie, Y., Quan, J. Zhu, et al. (2018), “Self-Healing, Reprocessing and Sealing Abilities of Polysulfide-Based Polyurethane,'' Polymer, 151, pp 27–33. doi:10.1016/j.polymer.2018.07.047
  • Pan, Q., Zeng, Y., Li Y., Jiang X., et al. (2021), “Experimental Investigation of Friction Behaviors for Double-Acting Hydraulic Actuators With Different Reciprocating Seals,'' Tribology International, 153, p 106506. doi:10.1016/j.triboint.2020.106506
  • Xie, L., Li, L., Jiang, G., et al. (2015), “Numerical Study of the Contact Pressure of Window-Type Vane Seals: Part I,” Sealing Technology, 2015, pp 7–12. doi:10.1016/S1350-4789(15)30051-9
  • Ding, C., Xing, Z., Wang, Z., et al. (2022), “The Comprehensive Effect of Tensile Strength and Modulus on Abrasive Wear Performance For Polyurethanes,” Tribology International, 169, p 107459. doi:10.1016/j.triboint.2022.107459
  • Hu, T., Xie, L., Fan, Z., et al. (2022), “Weight Analysis of the Factors Affecting Friction Performance of Textured Surface in Rotary Vane Actuator End Seal,” Tribology International, 174, p 107709. doi:10.1016/j.triboint.2022.107709
  • Zhang, L., C., Yuan, C., Dong, Y. Wu, et al. (2021), “Friction-Induced Vibration and Noise Behaviors of a Composite Material Modified by Graphene Nano-Sheets,'' Wear, 476, p 203719. doi:10.1016/j.wear.2021.203719
  • Dong, C., J., Mo, C., Yuan, X. Bai, et al. (2019), “Vibration And Noise Behaviors During Stick–Slip Friction,'' Tribology Letters, 67(4), p 103. doi:10.1007/s11249-019-1216-1
  • Dong, C., L., Shi, L., Li, X. Bai, et al. (2017), “Stick-Slip Behaviours of Water Lubrication Polymer Materials Under Low Speed Conditions,'' Tribology International, 106, pp 55–61. doi:10.1016/j.triboint.2016.10.027
  • Mujtaba, M. A., Muk Cho, H., Masjuki, H. H., et al. (2021), “Effect of Alcoholic and Nano-Particles Additives on Tribological Properties of Diesel–Palm–Sesame–Biodiesel Blends,” Energy Reports, 7, pp 1162–1171. doi:10.1016/j.egyr.2020.12.009
  • Zheng, L., Zhu, H., Zhu, J., et al. (2020), “Effects of Oil Film Thickness and Viscosity on the Performance of Misaligned Journal Bearings With Couple Stress Lubricants,'' Tribology International, 146, p 106229. doi:10.1016/j.triboint.2020.106229
  • Guo, Z., Xie, X., Yuan, C., et al. (2019), “Study on Influence of Micro Convex Textures on Tribological Performances of UHMWPE Material Under the Water-Lubricated Conditions,'' Wear, 426–427, pp 1327–1335. doi:10.1016/j.wear.2019.01.010

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