Ml. Greenfield et H. Ohtani, Molecular dynamics simulation study of model friction modifier additives confined between two surfaces, TRIBOL LETT, 7(2-3), 1999, pp. 137-145
We have used molecular dynamics simulations to investigate the molecular en
ergetics and orientation of surfactant-like model "friction modifier" (FM)
additives with and without hydrocarbon solvent and confined between idealiz
ed atomistic surfaces. The normal load, fluid layer thickness, and additive
surface concentration dependencies agree favorably with those measured exp
erimentally for model fluids using a surface forces apparatus. The simulati
ons predicted either a single or multiple free energy wells with increasing
surface separation, depending on the FM concentration. With no solvent add
ed, pure FMs showed oscillations in normal pressure and free energy with in
creasing surface separation; stable states corresponded to successive layer
s of FM molecules being expelled from the region between the adsorbed films
. In the case of FM/hydrocarbon solution, only a single stable position was
found. The equilibrium structure was also found to depend on the head grou
p structure of the FMs.