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Titlebook: Nanotribology and Nanomechanics; An Introduction Bharat Bhushan Book 2008Latest edition Springer-Verlag Berlin Heidelberg 2008 Adhesion, Fr

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Nanomechanical Properties of Solid Surfaces and Thin Filmscal behavior of surfaces, thin films, and coatings to be studied with unprecedented accuracy. In this chapter, the various techniques available for studying nanomechanical properties are reviewed with particular emphasis on nanoindentation. The standard methods for analyzing the raw data obtained us
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Computer Simulations of Nanometer-Scale Indentation and Frictionvated the study of fundamental tribological processes with the ultimate aim of controlling and minimizing their impact. The recent development of miniature apparatus, such as microelectromechanical systems (MEMS) and nanometer-scale devices, has increased interest in atomic-scale friction, which has
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Mechanical Properties of Nanostructureselop and propagate under tensile stresses, leading to failure. Knowledge of the mechanical properties of nanostructures is necessary for designing realistic MEMS/NEMS and BioMEMS/BioNEMS devices. Elastic and inelastic properties are needed to predict deformation from an applied load in the elastic a
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Scale Effect in Mechanical Properties and Tribologyin gradient plasticity and the effect of dislocation-assisted sliding. Both single asperity and multiple asperity contacts are considered. The relevant scaling length is the nominal contact length – contact diameter for a single-asperity contact, and scan length for multiple-asperity contacts. For m
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Nanotribology of Ultrathin and Hard Amorphous Carbon Filmsng. Unfortunately, true diamond coatings can only be deposited at high temperatures and on selected substrates, and they require surface finishing. However, hard amorphous carbon – commonly known as diamond-like carbon or a DLC coating – has similar mechanical, thermal and optical properties to thos
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