Adding damped-oscillatory solvation pressure to a soft-lubrication model of an oscillating sphere over an ultrathin coating yields up to four orders-of-magnitude force and three orders-of-magnitude deflection amplification at sub-nanometer gaps.
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Influence of non-hydrodynamic forces on the elastic response of an ultra-thin soft coating under fluid-mediated dynamic loading
Adding damped-oscillatory solvation pressure to a soft-lubrication model of an oscillating sphere over an ultrathin coating yields up to four orders-of-magnitude force and three orders-of-magnitude deflection amplification at sub-nanometer gaps.