To overcome the complicated and time-consuming difficulties of current models, a new lubrication equation based on boundary velocity slip model for solving the ultra-thin film gas lubrication in hard disk drives is pr...To overcome the complicated and time-consuming difficulties of current models, a new lubrication equation based on boundary velocity slip model for solving the ultra-thin film gas lubrication in hard disk drives is proposed by adopting the nanoscale effect function, Np. The present model is easy to calculate and applicable at nanoscale.The results of numerical calculations indicate that the present model produces a close approximation to that of the exact Boltzmann model.展开更多
基金This work was supported by the National Natural Science Foundation of China(Grant Nos.50175058 and 50390060).
文摘To overcome the complicated and time-consuming difficulties of current models, a new lubrication equation based on boundary velocity slip model for solving the ultra-thin film gas lubrication in hard disk drives is proposed by adopting the nanoscale effect function, Np. The present model is easy to calculate and applicable at nanoscale.The results of numerical calculations indicate that the present model produces a close approximation to that of the exact Boltzmann model.