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Articles

Tribological behavior of ZnO-Si3N4 nanoparticles-based lubricating grease

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Pages 231-244 | Received 14 Aug 2017, Accepted 06 Aug 2018, Published online: 26 Dec 2018

References

  • Bao-Sen Z, Bin-Shi X, Yi X, et al. CU nanoparticles effect on the tribological properties of hydrosilicatepowders as lubricant additive for steel–steel contacts. Tribol Int. 2011;44:878–886.
  • Qi X, Lu L, Jia Z, et al. Comparative tribological properties of magnesium hexasilicateandserpentine powder as lubricating oil additives under High temperature. Tribol Int. 2012;49:53–57.
  • Tian X, Gu C, Zhu G, et al. Study on tribological properties of the lubricating oil containing Cu and La2O3-Ce2O3 nanoparticles. Marine Technology 2010;79–82:255–258.
  • Padgurskas J, Rukuiza R, Prosycevas I, et al. Tribological properties of lubricant additives of Fe, Cu and Co nanoparticles. Tribol Int. 2013;60:224–232.
  • Wang XL, Yin YL, Zhang GN, et al. Study on antiwear and repairing performances about mass of nano-copper lubricating additives to 45 steel. Phys Proc. 2013;50:466–472.
  • Qiang H, Anling L, Yuan S, et al. Design and application on experimental platform for high-speed bearing with grease lubrication. Adv Mech Eng. 2015;7:168781401561864.
  • Hernández Battez A, González R, Viesca JL, et al. CuO, ZrO2and ZnO nanoparticles as antiwear additive in oil lubricants. Wear. 2008;265:422–428.,
  • Ma S, Zheng S, Cao D, et al. Anti-wear and friction performance of ZrO2nanoparticles as lubricant additive. Particuology. 2010;8:468–472.
  • Zulkifli NWM, Kalam MA, Masjuki HH, et al. Experimental analysis of tribological properties of biolubricant with nanoparticle additive. Proc Eng. 2013;68:152–157.
  • Shenoy BS, Binu KG, Pai R, et al. Effect of nanoparticles additives on the performance of an externallyadjustable fluid film bearing. Tribol Int. 2012;45:38–42.
  • Wu YY, Tsui WC, Liu TC. Experimental analysis of tribological properties of lubricatingoils with nanoparticle additives. Wear. 2007;262:819–825.
  • Hernández Battez A, Viesca JL, González R, et al. Friction reduction properties of a CuOnanolubricant used as lubricant for a NiCrBSi coating. Wear. 2010;268:325–328.
  • Yadgarov L, Petrone V, Rosentsveig R, et al. Tribological studies of rhenium doped fullerene-like mos 2, nanoparticles in boundary, mixed and elasto-hydrodynamic lubrication conditions. Wear. 2013;297:1103–1110.
  • Kalin M, Kogovšek J, Remškar M. Mechanisms and improvements in the frictionand wear behaviorusing MoS2nanotubes as potential oil additives. Wear. 2012;280-281:36–45.
  • Huang H, Tu J, Gan L, et al. Preparation and tribological properties of graphene nanosheets as additive in liquid paraffin. Tribology. 2005;38:1495–1500.
  • Chu HY, Hsu WC, Lin JF. The anti-scuffing performance of diamond nano-particles as an oil additive. Wear. 2010;268:960–967.
  • Li B, Ma C, Jiang Q. Tribological properties of mixed Al2O3-Al-MgO nanoparticle additive in lithium grease. J Dalian Jiaotong Univ. 2010;6:80.
  • Abdullah MIHC, Abdollah MFB, Amiruddin H, et al. Optimization of tribological performance of hBN/AL2O3 nanoparticles as engine oil additives. Proc Eng. 2013;68:313–319.
  • Dong L, Xu G, Li H, et al. Tribological properties and self-repairing effect of SnO2/ZnO nanoparticles as lube additive. Petrol Process Petrochem. 2005;12.
  • Augustaitis VK, Bucinskas V. Dependency of bearing noise properties on surfaces lubrication. Mech. 2011;17:381–387.
  • Rho B-H, Kim D-G, Kim K-W. Noise analysis of cylindrical roller bearings operating under zero external load. Tribol Trans. 2005;48:238–244. April/June Vol. Issue
  • Ramamurthy S, Krousgrill CMS. Farshid vibration in grease lubricated bearing systems. Tribol Lubricat Technol. 2011;67:50–58.
  • Wenbing T, Haibin H, Luo Y. Vibration characteristics of rolling element bearings based on rolling elements' skidding feature. J Vibrat Shock. 2017;36:166–170.
  • Lu HM, Zhang LJ, Yu ZP. Effects of surface roughness on the friction-induced squeal noise. Tribology. 2011;31:473–479.
  • Liu M, Wang D, Jianxi LI. et al. Characteristics of the tribological wear, vibration and squeal noise of brake disc surfaces with grooves. J Vibrat & Shock. 2018;1(23):23–28.
  • Yang H, Yao L, Sun H. et al. Study on anti-wear properties for the lithium complex grease. Acta Petrol Sin. 2011;(27):71–75.
  • Bao-Liang LI, Chi MA, Jiang QY. Tribological properties of mixed Al_2O_3-Al-MgO nano-particle additive in lithium grease. J Dalian Jiaotong Univ. 2010;7:102–107.