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A Gas Surface Interaction Model for Spatial and Time Dependent Friction Coefficient in Reciprocating Contacts: Applications to Near Frictionless Carbon
P. L. Dickrell, W. G. Sawyer, J. A. Heimberg, I. L. Singer, K. J. Wahl, A. Erdemir
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A closed form time-dependent and position-dependent model for coverage,
based on the adsorption of environmental contaminants and their removal
through the pin contact, is developed for reciprocating contacts. The
model employs an adsorption fraction and removal ratio to formulate a
series expression for the entering coverage at any cycle and location
on the wear track. A closed-form solution to the series expression is
presented and compared to other coverage models developed for steady
state coverage for pin-on-disk contacts, reciprocating contacts, or the
time-dependent center point model for reciprocating contacts. The friction
coefficient is based on the average coverage under the pin contact. The
model is compared to position and time-dependent data collected on near
frictionless carbon (NFC) self-mated contact on a reciprocating tribometer
in a nitrogen atmosphere. There are many similarities between the model
curves and the data both in magnitude and trends. No new curve fitting
was performed in this manuscript, with all needed parameters coming from
previous models of average friction coefficient behavior.
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