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Original Articles

The Preparation and Nature of Surface Films from Zinc Dialkyldithiophosphate

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Pages 121-130 | Published online: 25 Mar 2008

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Read on this site (6)

Q. Wang, H.S. Cheng, C.A. Caracostas & M.E. Fine. (1994) Wear of Aluminum-Alloy Matrix Composites in Lubricated Conformal Contact with Case Hardened Steel. Tribology Transactions 37:4, pages 735-742.
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S. Gunsel, H.A. Spikes & M. Aderin. (1993) In-Situ Measurement of ZDDP Films in Concentrated Contacts. Tribology Transactions 36:2, pages 276-282.
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S. Plaza. (1987) The Adsorption of Zinc Dibutyldithiophosphates on Iron and Iron Oxide Powders. A S L E Transactions 30:2, pages 233-240.
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GeraldB. Kasting. (1985) The Composition of Four-Ball Wear Scar Films Produced by Crankcase Lubricants. A S L E Transactions 28:3, pages 351-357.
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Kiyoshi Inoue & Harumichi Watanabe. (1983) Interactions of Engine Oil Additives. A S L E Transactions 26:2, pages 189-199.
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P. Cann, H.A. Spikes & A. Cameron. (1983) Thick Film Formation by Zinc Dialkyldithiophosphates. A S L E Transactions 26:1, pages 48-52.
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Articles from other publishers (25)

Hongbing Ji, Mark A. Nicholls, Peter R. Norton, Masoud Kasrai, T. Weston Capehart, Thomas A. Perry & Yang-Tse Cheng. (2005) Zinc-dialkyl-dithiophosphate antiwear films: dependence on contact pressure and sliding speed. Wear 258:5-6, pages 789-799.
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M.D. Pauli, T.S. Rufael, J.K. Mowlem, M. Weinert, D.K. Saldin & W.T. Tysoe. (2005) X-ray absorption near-edge structure analysis of the chemical environment of zinc in the tribological film formed by zinc dialkyl dithiophosphate decomposition on steel. Tribology International 38:2, pages 195-204.
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Y.C. Lin & H. So. (2004) Limitations on use of ZDDP as an antiwear additive in boundary lubrication. Tribology International 37:1, pages 25-33.
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Lisa Taylor, Hugh Spikes & Hugo Camenzind. Film-Forming Properties of Zinc-Based and Ashless Antiwear Additives. Film-Forming Properties of Zinc-Based and Ashless Antiwear Additives.
H So & R.C Lin. (1999) The combined effects of ZDDP, surface texture and hardness on the running-in of ferrous metals. Tribology International 32:5, pages 243-253.
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D.R. Armstrong, E.S. Ferrari, K.J. Roberts & D. Adams. (1998) An examination of the reactivity of zinc di-alkyl-di-thiophosphate in relation to its use as an anti-wear and anti-corrosion additive in lubricating oils. Wear 217:2, pages 276-287.
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P. A. Willermet, R. O. Carter, P. J. Schmitz, M. Everson, D. J. Scholl & W. H. Weber. (1997) Formation, structure, and properties of lubricant-derived antiwear films. Lubrication Science 9:4, pages 325-348.
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Xiong Ren-Gen, Zuo Jing-Lin, Dong Jun-Xiu, Chen Yao, You Xiao-Zeng & Zhu Yong-Fa. (1996) An approach to improve the load-carrying capacity of zinc dithiophosphate. Tribology International 29:2, pages 137-143.
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A.J. Winn, D. Dowson & J.C. Bell. (1995) The lubricated wear of ceramics. Tribology International 28:6, pages 395-402.
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H. So & Y.C. Lin. (1994) The theory of antiwear for ZDDP at elevated temperature in boundary lubrication condition. Wear 177:2, pages 105-115.
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H. So, Y.C. Lin, Gibbs G.S. Huang & Terny S.T. Chang. (1993) Antiwear mechanism of zinc dialkyl dithiophosphates added to a paraffinic oil in the boundary lubrication condition. Wear 166:1, pages 17-26.
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L. Mattsson, B. Olsson, P.H. Nilsson & G. Wirmark. (1993) Wear and film formation in the presence of methanol and formic acid. Wear 165:1, pages 75-83.
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J.F. Hutton & J.A. Leather. 1993. Tribology of Reciprocating Engines. Tribology of Reciprocating Engines 147 153 .
J.S. Sheasby, T.A. Caughlin & J.J. Habeeb. (1991) Observation of the antiwear activity of zinc dialkyldithiophosphate additives. Wear 150:1-2, pages 247-257.
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Philip G. Harrison & Paul Brown. (1991) External reflection FTIR, 31P MAS NMR and SEM study of the thermal decomposition of zinc(II) bis(O,O'-dialkyldithiophosphates) on 316 stainless steel. Wear 148:1, pages 123-134.
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B. Olsson, L. Mattsson, P.H. Nilsson, B. Otterholm & G. Wirmark. 1991. Vehicle Tribology. Vehicle Tribology 429 437 .
Li Li Cao, Yang Ming Sun & Ling Qing Zheng. (1990) Chemical structure characterization of the boundary lubrication film using X-ray photoelectron spectroscopy and scanning Auger microprobe techniques. Wear 140:2, pages 345-357.
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T. Akagaki & K. Kato. (1989) Wear mode diagram in lubricated sliding friction of carbon steel. Wear 129:2, pages 303-317.
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T. Akagaki & K. Kato. (1987) Plastic flow process of surface layers in flow wear under boundary lubricated conditions. Wear 117:2, pages 179-196.
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J.M. Palacios. (1986) Thickness and chemical composition of films formed by antimony dithiocarbamate and zinc dithiophosphate. Tribology International 19:1, pages 35-39.
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J.M. Martin, J.L. Mansot, I. Berbezier & H. Dexpert. (1984) The nature and origin of wear particles from boundary lubrication with a zinc dialkyl dithiophosphate. Wear 93:2, pages 117-126.
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B. Jones & R.C. Watkins. (1983) Sliding wear rig. Tribology International 16:6, pages 297-301.
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F.T. Barcroft, R.J. Bird, J.F. Hutton & D. Park. (1982) The mechanism of action of zinc thiophosphates as extreme pressure agents. Wear 77:3, pages 355-384.
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Ph. Kapsa & J.M. Martin. (1982) Boundary lubricant films: a review. Tribology International 15:1, pages 37-42.
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Said Jahanmir. (1981) Wear of AISI 4340 steel under boundary lubrication. Wear 74:1, pages 51-65.
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