This paper reviews the technology of the tribological components of engines and presents a basic understanding of their design and operation. The availability of this basic understanding is put forward as an essential counterpart to computerized performance analysis programs for components with variable loads and speeds, such as crankshaft bearings, piston rings and cams and followers.
MasseyI. D.MacQuarrieN. A.CostonN. F.EasthamD. R.Development of crankshaft bearing materials for highly loaded applications. Seventeenth Leeds-Lyon Symposium on Tribology: vehicle tribology, 1990, paper III (IV) (Elsevier, Barking).
3.
ChristophersonD. G.Developments in diesel engine bearings. Br. Power Engng, November 1960.
4.
MartinF. A.StanojevicM.Oil flow in connecting rod bearings. Seventeenth Leeds-Lyon Symposium on Tribology: vehicle tribology, 1990, paper IV (III) (Elsevier, Barking).
5.
Conway-JonesJ. N.GojonR.Heat flow in crankshaft bearings. Seventeenth Leeds-Lyon Symposium on Tribology: vehicle tribology, 1990, paper III (III) (Elsevier, Barking).
6.
LloydT.The hydrodynamic lubrication of piston rings. Proc. Instn Mech. Engrs, 1968–9, 183(5).
7.
HamiltonG. M.MooreS. L.The lubrication of piston rings. Proc. Instn Mech. Engrs, 1974, 188, 253–268.
8.
ParkerD. A.The tribology of automotive components: Development of verified predictive design techniques. Proc. Instn Mech. Engrs, Part D, 1990, 204(D1), 1–19.
9.
DysonA.Elastohydrodynamic lubrication and wear of cams bearing against cylindrical tappets. SAE preprint 770018, 1977.
10.
TaylorC. M.Valve train lubrication analysis. Seventeenth Leeds-Lyon Symposium on Tribology: vehicle tribology, 1990, paper VI (I) (Elsevier, Barking).