On the Mechanism of ZDDP Antiwear Film Formation
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[1] Juliane Benedet. Low and zero SAPS antiwear additives for engine oils , 2012 .
[2] P. Lugt,et al. Effect of Thickener Particle Geometry and Concentration on the Grease EHL Film Thickness at Medium Speeds , 2016, Tribology Letters.
[3] J. Barbera,et al. Contact mechanics , 1999 .
[4] Walter Tollmien,et al. Ein Gedankenmodell zur kinetischen Theorie der festen Körper , 1961 .
[5] A. Neville,et al. Study of the ZDDP Antiwear Tribofilm Formed on the DLC Coating Using AFM and XPS Techniques , 2007 .
[6] S. M. García,et al. 2014: , 2020, A Party for Lazarus.
[7] J. F. Archard,et al. The temperature of rubbing surfaces , 1959 .
[8] Hugh Spikes,et al. Friction Modifier Additives , 2015, Tribology Letters.
[9] R. W. Carpick,et al. Mechanisms of antiwear tribofilm growth revealed in situ by single-asperity sliding contacts , 2015, Science.
[10] Tom K Woo,et al. Molecular Mechanisms for the Functionality of Lubricant Additives , 2005, Science.
[11] K.-H. Hentschel,et al. The influence of molecular structure on the frictional behaviour of lubricating fluids , 1985 .
[12] H. Spikes,et al. A Study of the Lubrication of EHL Point Contact in the Presence of Longitudinal Roughness , 2015, Tribology Letters.
[13] H. Spikes,et al. Film thickness and roughness of ZDDP antiwear films , 2007 .
[14] S. N. Zhurkov. Kinetic concept of the strength of solids , 1965, International journal of fracture mechanics.
[15] Hugh Spikes,et al. The History and Mechanisms of ZDDP , 2004 .
[16] W. Tysoe,et al. Shear-Induced Mechanochemistry: Pushing Molecules Around , 2015 .
[17] J. C. Jaeger. Moving sources of heat and the temperature at sliding contacts , 1943, Journal and proceedings of the Royal Society of New South Wales.
[18] R. C. Coy,et al. The Chemistry of the Thermal Degradation of Zinc Dialkyldithiophosphate Additives , 1981 .
[19] M. S. Fuller,et al. Application of soft X-ray absorption spectroscopy in chemical characterization of antiwear films generated by ZDDP Part I: the effects of physical parameters , 1997 .
[20] Hugh Spikes,et al. In-Situ Measurement of ZDDP Films in Concentrated Contacts , 1993 .
[21] B. Hamrock. Ball bearing lubrication , 1981 .
[22] H. Spikes,et al. The Friction Reducing Properties of Molybdenum Dialkyldithiocarbamate Additives: Part I — Factors Influencing Friction Reduction , 2001 .
[23] H. Spikes,et al. Friction and Wear Behavior of Zinc Dialkyldithiophosphate Additive , 2000 .
[24] J. Tse,et al. Effects of Temperature and Pressure on ZDDP , 2007 .
[25] Juan V. Escobar,et al. Correlation between nanosecond X-ray flashes and stick–slip friction in peeling tape , 2008, Nature.
[26] H. Eyring. Viscosity, Plasticity, and Diffusion as Examples of Absolute Reaction Rates , 1936 .
[27] H. Spikes,et al. The Friction Reducing Properties of Molybdenum Dialkyldithiocarbamate Additives: Part II - Durability of Friction Reducing Capability , 2001 .
[28] D. Dowson,et al. A Semi-deterministic Wear Model Considering the Effect of Zinc Dialkyl Dithiophosphate Tribofilm , 2015, Tribology Letters.
[29] Hugh Spikes,et al. Study of Zinc Dialkydithiophosphate Antiwear Film Formation and Removal Processes, Part I: Experimental , 2005 .
[30] E. Liu,et al. An XPS Study on the Composition of Zinc Dialkyl Dithiophosphate Tribofilms and Their Effect on Camshaft Lobe Wear , 2014 .
[31] G. I. Bell. Models for the specific adhesion of cells to cells. , 1978, Science.
[32] J. Bishop. On the effect of friction on compression and indentation between flat dies , 1958 .
[33] H. Clausen‐Schaumann,et al. Mechanochemistry: the mechanical activation of covalent bonds. , 2005, Chemical reviews.
[34] D. Makarov. Perspective: Mechanochemistry of biological and synthetic molecules. , 2016, The Journal of chemical physics.
[35] A. Neville,et al. Non-ferrous coating/lubricant interactions in tribological contacts: Assessment of tribofilms , 2007 .
[36] K. Johnson. Contact Mechanics: Frontmatter , 1985 .
[37] Study of the tribochemical behavior of Al ion-implanted pure iron lubricated with ZDDP , 1998 .
[38] K. Laidler,et al. The theory of rate processes : the kinetics of chemical reactions, viscosity, diffusion and electrochemical phenomena , 1941 .
[39] M. S. Fuller,et al. Mechanisms of tribochemical film formation: stabilityof tribo- and thermally-generated ZDDP films , 1997 .
[40] K. Nakayama. Triboemission of charged particles and resistivity of solids , 1999 .
[41] S. Craig. Mechanochemistry: A tour of force , 2012, Nature.
[42] Bai Mingwu,et al. Tribological properties of silicon nitride ceramics coated with molybdenum films under boundary lubrication , 1993 .
[43] H. Spikes,et al. The formation of zinc dithiophosphate antiwear films , 2004 .
[44] Czeslaw Kajdas,et al. Importance of the triboemission process for tribochemical reaction , 2005 .
[45] B. Edmondson,et al. An experimental and theoretical study of the squeeze-film deformation and flow of elastoplastic fluids , 1994 .
[46] T. E. Tallian,et al. Ball bearing lubrication: The elastohydrodynamics of elliptical contacts , 1982 .
[47] S. Bec,et al. The two-layer structure of Zndtp tribofilms: Part I: AES, XPS and XANES analyses , 2001 .
[48] D. Marx,et al. Covalent Mechanochemistry: Theoretical Concepts and Computational Tools with Applications to Molecular Nanomechanics , 2012 .
[49] W. Tysoe,et al. On the Commonality Between Theoretical Models for Fluid and Solid Friction, Wear and Tribochemistry , 2015, Tribology Letters.
[50] H. Spikes,et al. Performance of Friction Modifiers on ZDDP-Generated Surfaces , 2007 .
[51] Y. Lin,et al. The theory of antiwear for ZDDP at elevated temperature in boundary lubrication condition , 1994 .
[52] N. Mosey,et al. A quantum chemical study of the unimolecular decomposition mechanisms of zinc dialkyldithiophosphate antiwear additives , 2004 .
[53] F. Lockwood,et al. Behaviour of boundary lubricating additives on DLC coatings , 2008 .
[54] J. Robinson,et al. Direct mechanochemical cleavage of functional groups from graphene , 2015, Nature Communications.
[55] J. Martin. Antiwear mechanisms of zinc dithiophosphate: a chemical hardness approach , 1999 .