Mechanism of formation of antiwear films from zinc dialkyldithiophosphates

Recently developed experimental techniques have allowed better characterization of lubricant-derived antiwear and antifriction surface films. These techniques and the information obtained in earlier studies are being applied to fully formulated engine oils with the objective of assisting implementat...

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Published inTribology international Vol. 28; no. 3; pp. 177 - 187
Main Authors Willermet, P.A., Dailey, D.P., Carter, R.O., Schmitz, P.J., Zhu, W.
Format Journal Article
LanguageEnglish
Published Oxford Elsevier Ltd 01.05.1995
Elsevier
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Abstract Recently developed experimental techniques have allowed better characterization of lubricant-derived antiwear and antifriction surface films. These techniques and the information obtained in earlier studies are being applied to fully formulated engine oils with the objective of assisting implementation of advanced fuel efficient and emissions friendly oil technologies. Published results from those studies were combined with some new experimental results and with background information from related experiments and from experiments delineating the antioxidant chemistry of ZDTP to yield a more global view of antiwear film formation. This more global view has allowed us to propose an improved mechanism for the formation of lubricant-derived antiwear films, which accounts for a substantial body of experimental data, together with some unique observations resulting from our own investigations.
AbstractList Published results from earlier studies, combined with some new experimental results, background information from related experiments and experiments delineating the antioxidant chemistry of ZDTP, yield a more global view of antiwear film formation, allowing proposal of an improved mechanism for film formation. (X-ray) photoelectron spectroscopy calculations of element concentrations are much less ambiguous than the results from Auger emission spectroscopy; however the approach does provide a means to test whether Auger results are consistent with XPS results. (Original abstract-amended)
Recently developed experimental techniques have allowed better characterization of lubricant-derived antiwear and antifriction surface films. These techniques and the information obtained in earlier studies are being applied to fully formulated engine oils with the objective of assisting implementation of advanced fuel efficient and emissions friendly oil technologies. Published results from those studies were combined with some new experimental results and with background information from related experiments and from experiments delineating the antioxidant chemistry of ZDTP to yield a more global view of antiwear film formation. This more global view has allowed us to propose an improved mechanism for the formation of lubricant-derived antiwear films, which accounts for a substantial body of experimental data, together with some unique observations resulting from our own investigations.
Author Carter, R.O.
Schmitz, P.J.
Zhu, W.
Willermet, P.A.
Dailey, D.P.
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  surname: Zhu
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Issue 3
Keywords antiwear films
formation mechanisms
ZDTP
Lubricating oil
Surface layer
Organic ligand
Experimental study
Motor oil
Antifriction material
Phosphorus Organic compounds
Lubricant additive
Antiwear protective layer
Zinc Complexes
Formation mechanism
Surface conditions
Tribology
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SSID ssj0007497
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Snippet Recently developed experimental techniques have allowed better characterization of lubricant-derived antiwear and antifriction surface films. These techniques...
Published results from earlier studies, combined with some new experimental results, background information from related experiments and experiments...
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pascalfrancis
elsevier
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StartPage 177
SubjectTerms antiwear films
Applied sciences
Exact sciences and technology
formation mechanisms
Friction, wear, lubrication
Machine components
Mechanical engineering. Machine design
ZDTP
Title Mechanism of formation of antiwear films from zinc dialkyldithiophosphates
URI https://dx.doi.org/10.1016/0301-679X(95)98965-G
https://search.proquest.com/docview/27416634
Volume 28
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