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Détail de l'auteur
Auteur Hongyuan Zhao
Documents disponibles écrits par cet auteur
Affiner la rechercheUnderstanding friction behavior in automatic transmission fluid LVFA test / Hongyuan Zhao in Transactions of the ASME . Journal of tribology, Vol. 133 N° 2 (Avril 2011)
[article]
in Transactions of the ASME . Journal of tribology > Vol. 133 N° 2 (Avril 2011) . - 09 p.
Titre : Understanding friction behavior in automatic transmission fluid LVFA test : a new positive curve parameter to friction coefficient ratio index evaluation Type de document : texte imprimé Auteurs : Hongyuan Zhao, Auteur ; Ardian Morina, Auteur ; Anne Neville, Auteur Année de publication : 2012 Article en page(s) : 09 p. Note générale : Tribology Langues : Anglais (eng) Mots-clés : Clutches Detergents Lubricating oils Mechanical contact Sliding friction Steel Index. décimale : 621.5 Energie pneumatique. Machinerie et outils. Réfrigération Résumé : The frictional characteristics of some basic additive systems used in automatic transmission fluids (ATFs) were assessed using a variable speed friction test machine. The test evaluates the coefficient of friction in unidirectional sliding contact over a range of speeds, loads, and temperatures. Tests were performed on a steel-versus-clutch friction material tribocouple, mainly to establish the link between the lubricant/surface interactions and additive system performance. A new parameter that measures the positive µ-v curve slope speed range was applied, together with friction coefficient ratio index, to show the antishudder property. It is suggested that this is a good complimentary method to the friction coefficient ratio index evaluation. Lubricant formulation is important to the overall friction performance. Both friction modifiers and detergents are shown to be important to the ATF antishudder performance. Oil absorption ability of the post-test friction material surface is proposed to be an important parameter to indicate the antishudder durability in the test. The detergent and antiwear agents are also suggested to be responsible for the decreased oil absorption and pore plugging of the friction material surface. DEWEY : 621.5 ISSN : 0742-4787 En ligne : http://scitation.aip.org/getabs/servlet/GetabsServlet?prog=normal&id=JOTRE900013 [...] [article] Understanding friction behavior in automatic transmission fluid LVFA test : a new positive curve parameter to friction coefficient ratio index evaluation [texte imprimé] / Hongyuan Zhao, Auteur ; Ardian Morina, Auteur ; Anne Neville, Auteur . - 2012 . - 09 p.
Tribology
Langues : Anglais (eng)
in Transactions of the ASME . Journal of tribology > Vol. 133 N° 2 (Avril 2011) . - 09 p.
Mots-clés : Clutches Detergents Lubricating oils Mechanical contact Sliding friction Steel Index. décimale : 621.5 Energie pneumatique. Machinerie et outils. Réfrigération Résumé : The frictional characteristics of some basic additive systems used in automatic transmission fluids (ATFs) were assessed using a variable speed friction test machine. The test evaluates the coefficient of friction in unidirectional sliding contact over a range of speeds, loads, and temperatures. Tests were performed on a steel-versus-clutch friction material tribocouple, mainly to establish the link between the lubricant/surface interactions and additive system performance. A new parameter that measures the positive µ-v curve slope speed range was applied, together with friction coefficient ratio index, to show the antishudder property. It is suggested that this is a good complimentary method to the friction coefficient ratio index evaluation. Lubricant formulation is important to the overall friction performance. Both friction modifiers and detergents are shown to be important to the ATF antishudder performance. Oil absorption ability of the post-test friction material surface is proposed to be an important parameter to indicate the antishudder durability in the test. The detergent and antiwear agents are also suggested to be responsible for the decreased oil absorption and pore plugging of the friction material surface. DEWEY : 621.5 ISSN : 0742-4787 En ligne : http://scitation.aip.org/getabs/servlet/GetabsServlet?prog=normal&id=JOTRE900013 [...]