Knudsen Maximum Effect in Micro-Scale Gas Lubrication

Author:

Zhang Haijun1,Gu Xiaojun2,Yang Qin3,Zhao Wei1,Jiang Feilong1

Affiliation:

1. Jiaxing University College of Information Science and Engineering, , Jiaxing 314001 , China

2. STFC Daresbury Laboratory Department of Scientific Computing, , Warrington WA4 4AD , UK

3. Jiaxing University College of Data Science, , Jiaxing 314001 , China

Abstract

Abstract Micro-scale gas lubrication has been studied for several decades, with extensive research on non-equilibrium flow effects like velocity slip and thermal creep. However, the Knudsen maximum effect in micro-scale gas lubrication has not been reported yet. To address this, we analyzed the load capacity characteristics of slider bearings with ultra-thin film gas lubrication equations derived from the linearized Boltzmann-Bathnagar–Gross–Krook model equation (Fukui–Kaneko lubrication model) under the condition of constant bearing number. Our study reveals that there exists a maximum value of load capacity for slider bearings when the reference Knudsen number is about unity. This happens because the dimensionless mass flowrate of micro-scale gas flows has a minimum value when the reference Knudsen number approaches unity. Understanding the Knudsen maximum effect is crucial when designing micro-nano devices related to gas lubrication, as it implies that there exists an optimum clearance for maximum load capacity.

Publisher

ASME International

Subject

Surfaces, Coatings and Films,Surfaces and Interfaces,Mechanical Engineering,Mechanics of Materials

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