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- W220350071 abstract "The demand for miniaturized meso (100 μm–10 mm)/ micro devices (0.1–100 μm) with high aspect ratios and superior surfaces has increased rapidly in the aerospace, automotive, military and micro electronics packaging industries. The precision parts are generally degraded by four major processes: fracture, corrosion, wear, and unwanted deformation. Protective coatings provide a good solution for resistance against wear and corrosion. The mechanisms and dynamics of the interactions of two contact solids during relative motion, ranging from atomic- to microscale, need to be understood in order to develop a fundamental understanding of tribology processes that occur in harsh conditions. The critical differences at the micro- and nanoscale arise from the breakdown of the assumption of homogeneity in the micro- and nanostructure of the workpiece.As devices are miniaturized, their ratio of surface area to volume increases, resulting in a more important role for surface effects in their performance. Therefore, a powerful theoretical toolkit which can describe the microscopic world effectively is needed to investigate the physical essence on a small scale. Molecular dynamics (MD) simulation, by virtue of its high temporal and spatial resolution, offers an ideal approach for gaining an insight into atomic-scale processes and understanding their mechanisms. This chapter introduces and analyzes the origin of complex dynamics at the interface and the energy dissipation mechanism using a numerical simulation method which cannot be rationalized on the basis of continuum concepts. By correlating observations from computations, the possible mechanisms responsible for those phenomena are discussed." @default.
- W220350071 created "2016-06-24" @default.
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- W220350071 date "2015-01-01" @default.
- W220350071 modified "2023-10-17" @default.
- W220350071 title "An investigation into the tribological property of coatings on micro- and nanoscale" @default.
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- W220350071 doi "https://doi.org/10.1016/b978-0-85709-211-3.00002-9" @default.
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