We also compare the
macroparameters with the results of the simulation.
The microparameters were calibrated through uniaxial compression test to reproduce
macroparameters such as Young's modulus, strain behaviors, and uniaxial compressive strength [24, 25, 48].
A change in the segmental mobility of macromolecules in such a layer is surely bound to affect the
macroparameters of various properties, including the diffusion coefficient of nanocomposites.
The determination of the model parameters is closely related to the rock
macroparameters. Thus, the determined model parameters have certain physical meaning and a wider applicability.
For the present studies, a general temperature model as proposed by Yamaguchi (27) will be evaluated, regarding
macroparameters (applied normal force and sliding frequency) of the tribological system, rather than incorporating microparameters such as diffusion lengths in both contact bodies and surface roughness profiles (28).