Preparation, characterization, tribological and lubrication performances of Eu doped CaWO4 nanoparticle as anti-wear additive in water-soluble fluid for steel strip during hot rolling

[1]  D. Liang,et al.  Synthesis, characterisation, and tribological evaluation of Mn3B7O13Cl nanoparticle as efficient antiwear lubricant in the sliding wear between tantalum strips and steel ball , 2020, Lubrication Science.

[2]  A. Comfort,et al.  Stability, Thermal Conductivity, Viscosity, and Tribological Characterization of Zirconia Nanofluids as a Function of Nanoparticle Concentration , 2020, Tribology Transactions.

[3]  Da Li,et al.  Structure and luminescence properties of CaWO4-EuMO4 (M=Nb, Ta) solid solution , 2019, Journal of Luminescence.

[4]  Jianlin Sun,et al.  Preparation, characterization and lubrication performances of graphene oxide-TiO2 nanofluid in rolling strips , 2018, Carbon.

[5]  J. S. Dureja,et al.  Environment Friendly Machining of Inconel 625 under Nano-Fluid Minimum Quantity Lubrication (NMQL) , 2018, International Journal of Precision Engineering and Manufacturing.

[6]  M. A. Xavior,et al.  “Influence Of Nano Lubrication In Machining Operations - A Review” , 2018 .

[7]  Jianlin Sun,et al.  Effects of nano-SiO2 as water-based lubricant additive on surface qualities of strips after hot rolling , 2017 .

[8]  H. Masjuki,et al.  Dispersion Stability and Tribological Characteristics of TiO2/SiO2 Nanocomposite-Enriched Biobased Lubricant , 2017 .

[9]  Zhengyi Jiang,et al.  Analysis of TiO2 nano-additive water-based lubricants in hot rolling of microalloyed steel , 2017 .

[10]  Xiaobo Wang,et al.  Exploring the effect of nanoparticle size on the tribological properties of SiO2 / polyalkylene glycol nanofluid under different lubrication conditions , 2017 .

[11]  Zhengyi Jiang,et al.  Wear and friction behaviour of high-speed steel and indefinite chill material for rolling ferritic stainless steels , 2017 .

[12]  Jianlin Sun,et al.  Preparation, characterization and tribological mechanism of nanofluids , 2017 .

[13]  Zhengyi Jiang,et al.  A Novel Nano-TiO2 Additive Oil-in-Water Lubricant for Hot Steel Rolling , 2016 .

[14]  Samira Bagheri,et al.  Enhancing lubricant properties by nanoparticle additives , 2016 .

[15]  Xiangsheng Xia,et al.  Lubrication performance of MoS2 and SiO2 nanoparticles as lubricant additives in magnesium alloy-steel contacts , 2016 .

[16]  Yanqiu Xia,et al.  Tribological properties and insulation effect of nanometer TiO2 and nanometer SiO2 as additives in grease , 2015 .

[17]  L. Colla,et al.  Influence of Cu, TiO2 Nanoparticles and Carbon Nano-Horns on Tribological Properties of Engine Oil. , 2015, Journal of nanoscience and nanotechnology.

[18]  Donald A. Nield,et al.  Thermal instability in a porous medium layer saturated by a nanofluid: A revised model , 2014 .

[19]  R. Kreivaitis,et al.  Tribological properties of lubricant additives of Fe, Cu and Co nanoparticles , 2013 .

[20]  Ponnekanti Nagendramma,et al.  Development of ecofriendly/biodegradable lubricants: An overview , 2012 .

[21]  Yu Feng,et al.  Experimental and theoretical studies of nanofluid thermal conductivity enhancement: a review , 2011, Nanoscale research letters.

[22]  Wei-min Liu,et al.  Tribological Properties of CaCO3 Nanoparticles as an Additive in Lithium Grease , 2011 .

[23]  Yeon-Pun Chang,et al.  Tribological properties of diamond and SiO2 nanoparticles added in paraffin , 2009 .

[24]  S. Wongwises,et al.  Measurement of temperature-dependent thermal conductivity and viscosity of TiO2-water nanofluids , 2009 .

[25]  J. M. Martín,et al.  Anti-wear and Friction Reducing Mechanisms of Carbon Nano-onions as Lubricant Additives , 2008 .

[26]  Dae-Hwang Yoo,et al.  Study of thermal conductivity of nanofluids for the application of heat transfer fluids , 2007 .

[27]  Yuh-Yih Wu,et al.  Experimental analysis of tribological properties of lubricating oils with nanoparticle additives , 2007 .

[28]  Zhengyi Jiang,et al.  Characterisation of thin oxide scale and its surface roughness in hot metal rolling , 2006 .

[29]  Xiaohong Li,et al.  Surface-modification in situ of nano-SiO2 and its structure and tribological properties , 2006 .

[30]  J. Georges,et al.  Wear modes in lubricated brass-tungsten carbide contact , 1999 .

[31]  D. Jun-xiu,et al.  The synthesis and antiwear action of tungsten dithiolate , 1996 .

[32]  William R. D. Wilson,et al.  Mixed Lubrication of Strip Rolling , 1994 .