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Original Articles

Antiwear and Extreme Pressure Properties of Nanofluids for Industrial Applications

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Pages 1072-1076 | Received 10 Feb 2014, Accepted 09 Jun 2014, Published online: 02 Oct 2014

REFERENCES

  • Siniawski, M. and Bowman, C. (2009), “Metal-Working Fluids: Finding Green in the Manufacturing Process,” Industrial Lubrication and Tribology, 6(3), pp 60–66.
  • Saidur, R., Leong, K.Y., and Mohammad, H.A. (2011), “A Review on Applications and Challenges of Nanofluids,” Renewable and Sustainable Energy Reviews, 15, pp 1646–1668.
  • Puzyr, A.P., Burov, A.E., Selyutin, G.E., Voroshilov, V.A., and Bondar, V.S. (2012), “Modified Nanodiamonds as Antiwear Additives to Commercial Oils,” Tribology Transactions, 55, pp 149–154.
  • Hu, X., Bekassy-Molnar, E., and Vatai, G. (2002), “Study of Ultrafiltration Behaviour of Emulsified Metalworking Fluids,” Wear, 149(1–3), pp 191–197.
  • Wong, K.V. and de León, O. (2010), “Applications of Nanofluids: Current and Future,” Advances in Mechanical Engineering, 2010, pp 11.
  • Taha-Tijerina, J., Peña-Paras, L., Narayanan, T.N., Garza, L., Lapray, C., Gonzalez, J., Palacios, E., Molina, D., García, A., Maldonado, D., and Ajayan, P.M. (2013), “Multifunctional Nanofluids with 2D Nanosheets for Thermal and Tribological Management,” Wear, 302(1–2), pp 1241–1248.
  • Eswaraiah, V., Sankaranarayanan, V., and Ramaprabhu, S. (2011), “Graphene Based Engine Oil Nanofluids for Tribological Applications,” ACS Applied Materials & Interfaces, 3(11), pp 4221–4227.
  • Szczerek, M. and Tuszynski, W. (2002), “A Method for Testing Lubricants under Conditions of Scuffing. Part I. Presentation of the Method,” Tribotest, 8(4), pp 273–284.
  • Taha-Tijerina, J., Narayanan, T.N., Gao, G., Rohde, M., Tsentalovich, D., Pasquali, M., and Ajayan, P.M. (2012), “Electrically Insulating Thermal Nano-Oils Using 2D Fillers,” ACS Nano, 6(2), pp 1214–1220.
  • Joly-Pottuz, L. and Ohmae, N. (2008), “Carbon-Based Nanolubricants,” Nanolubricants, Martin, J.M. and Ohmae, N. eds., John Wiley & Sons, Ltd.: West Sussex, England.
  • Peña-Paras, L. (2010), Dispersion of Carbon Nanotubes in Vinyl Ester Polymer Composites, Doctoral Thesis, Rice University, Department of Mechanical Engineering and Materials Science: Houston, TX.
  • Institute for Sustainable Technologies–National Research Institute. (2010), “T-02U Universal Four-Ball Testing Machine for Testing of Lubricants and Engineering Materials,” (Brochure) Radom, Poland.
  • Dean, R.B. and Dixon, W.J. (1951), “Simplified Statistics for Small Numbers of Observations,” Analytical Chemistry, 23(4), pp 636–638.
  • Rorabacher, D.B. (1991), “Statistical Treatment for Rejection of Deviant Values: Critical Values of Dixon Q Parameter and Related Subrange Ratios at the 95 Percent Confidence Level,” Analytical Chemistry, 63(2), pp 139–146.
  • Mosleh, M., Atnafu, N.D., Belk, J.H., and Nobles, O.M. (2008), “Modification of Sheet Metal Forming Fluids with Dispersed Nanoparticles for Improved Lubrication,” Wear, 267(5–8), pp 1220–1225.
  • Wu, Y.Y., Tsui, W.C., and Liu, T.C. (2007), “Experimental Analysis of Tribological Properties of Lubricating Oils with Nanoparticle Additives,” Wear, 262(7–8), pp 819–825.
  • Ni, B. and Sinnot, S.B. (2001), “Tribological Properties of Carbon Nanotube Bundles Predicted from Atomistic Simulations,” Surface Science, 487(1–3), pp 87–96.
  • Gara, L. and Zou, Q. (2012), “Friction and Wear Characteristics of Water-Based ZnO and Al2O3 Nanofluids,” Tribology Transactions, 55, pp 345–350.
  • Hu, Z.S., Lai, R., Lou, F., Wang, L.G., Chen, Z.L., Chen, G.X., and Dong, J.X. (2002). “Preparation and Tribological Properties of Nanometer Magnesium Borate as Lubricating Oil Additive,” Wear, 252(5–6), pp 370–374.
  • Hernández-Battez, A., Viesca, J.L., González, R., Blanco, D., Asedegbega, E., and Osorio, A. (2010), “Friction Reduction Properties of a CuO Nanolubricant Used as Lubricant for NiCrBSi Coating,” Wear, 268(1–2), pp 325–328.
  • Hu, K.H., Liu, M., Wang, Q.J., Xu, Y.F., Schraube, S., and Hu, X.G. (2009), “Tribological Properties of Molybdenum Disulfide Nanosheets by Monolayer Restacking Process as Additive in Liquid Paraffin,” Tribology International, 42(1), pp 33–39.
  • Verma, A., Jiang, W., Abu Safe, H.H., Brown, W.D., and Malshe, A.P. (2008), “Tribological Behavior of Deagglomerated Active Inorganic Nanoparticles for Advanced Lubrication,” Tribology Transactions, 51, pp 673–678.
  • Cursaru, D., Andronescu, C., Pirvu, C., and Razvan, R. (2012), “The Efficiency of Co-Based Single Wall Carbon Nanotubes (SWNTs) as an AW/EP Additive for Mineral Base Oils,” Wear, 290–291, pp 133–139.
  • Chang, H., Li, Z.Y., Kao, M.J., Huang, K.D., and Wu, H.M. (2010), “Tribological Property of TiO2 Nanolubricant on Piston and Cylinder Surfaces,” Journal of Alloys and Compounds, 495(2), pp 481–484.
  • Tuszynski, W., Michalczewski, R., Piekoszewski,W., and Szczerek, M.Effect of Ageing Automotive Gear Oils on Scuffing and Pitting,” Tribology International, 41(9–10), pp 875–888.

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