The paper describes the iterative development of verified predictive techniques, with examples taken from a wide range of lubricated and non-lubricated automotive components. The techniques can be used to propose a model which can be applied in real design situations where integration into an overall product engineering design strategy is required.
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References
1.
BowdenF. P.Royal Society discussion on friction. Proc. R. Soc., 1952, Ser. A, 212, 439.
2.
ArchardJ. F.HirstW.The wear of metals under unlubricated conditions. Proc. R. Soc., 1956, Ser A, 236, 397.
3.
NewcombT. P.Transient temperatures attained in disc brakes. Br. J. Appl. Phys., July 1959, 10, 339.
4.
FukanoA.MatsuiH.Development of disc-brake design method using computer simulation and heat phenomena. SAE paper 860634, 1986.
5.
JostH. P. (Chairman of Working Group). Lubrication (tribology) education and research. A report on the present position and industry's needs, 1966 (HMSO, London).
6.
BakerA. J. S.DowsonD.EconomouP.Piston ring dynamics and lubrication, CIMAC Congress 1977, paper B4.
7.
ParkerD. A.StaffordJ. V.KendrickM.GrahamN. A.Experimental measurements of the quantities necessary to predict piston ring-cylinder bore oil film thickness, and of the film thickness itself, in two particular engines. Proceedings of Conference on Piston ring scuffing, London, 1975, paper C71/75, p. 75 (Mechanical Engineering Publications, London).
8.
LawsA. M.ParkerD. A.TurnerB.Piston movement as a source of engine noise. Proceedings of Fourteenth International FISITA Congress, London, 1972, paper 1/6, p. 1/29 (Institution of Mechanical Engineers, London).
9.
LawsA. M.ParkerD. A.TurnerB.Piston movement in the diesel engine. Proceedings of Tenth International CIMAC Congress, Washington D.C., 1973, paper 33, p. 809.
10.
ParkerD. A.Développements récents en matière de segmentation. Part II: le dévcloppement des techniques prédictives de comportement. Ingénieurs de L'Automobile, September-October 1980, 6, 76.
11.
RangertB.Hydrodynamic piston ring lubrication with reference to lubricating oil consumption. Division of Machine Elements, Chalmers University of Technology, Göteborg, Sweden, 1974.
12.
RohdeS. M.A mixed friction model for dynamically loaded contacts, with application to piston ring lubrication. Proceedings of Seventh Leeds-Lyon Symposium on Tribology, 1980.
13.
HoltJ. W.HaisellO.Design and development of a two ring piston assembly. Proceedings of AE Technical Symposium, 1986, paper 29.
14.
RhodesM. L. P.ParkerD. A.AEconoguide—the low friction piston. SAE paper 840181, 1984.
15.
ParkerD. A.EttlesC. M. McC.RichmondJ. W.The AEconoguide low friction piston feature—analysis and further running experience. IMechE conference on Combustion engines—reduction of friction and wear, 1985, paper C70/85 (Mechanical Engineering Publications, London).
16.
BookerJ. F.Dynamically loaded journal bearings—mobility method of solution. Trans. ASME, J. Basic Engng, 1965, Ser. D, 187, 537.
17.
GoenkaP. K.Analytical curve fits for solution parameters of dynamically loaded bearings. ASME paper 83-Lub-33, 1983.
18.
JonesG. J.Crankshaft bearings: oil film history. Proceedings of Ninth Leeds-Lyon Symposium on Tribology, 1982.
19.
JonesG. J.LeeC. S.MartinF. A.Crankshaft bearings: advances in predictive techniques incorporating the effects of oil holes and grooving. Proceedings of AE Technical Symposium, 1982, paper 1.
20.
TaitW. H.PTFE impregnated bearings. UK Patent 657 085.
21.
PrattG. C.Recent developments in PTFE-based dry bearing materials and treatments. Proceedings of Fifth Convention on Lubrication and wear, 1967 (Institution of Mechanical Engineers, London).