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Titlebook: Nanotribology and Nanomechanics; An Introduction Bharat Bhushan Textbook 20051st edition Springer-Verlag Berlin Heidelberg 2005 Adhesion, F

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Surface Forces and Nanorheology of Molecularly Thin Filmsdels for the contributions of the adhesion force and external load to interfacial friction are illustrated with experimental data on both unlubricated and lubricated systems, as measured with the surface forces apparatus. We discuss rate-dependent adhesion (adhesion hysteresis) and how this is relat
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Friction and Wear on the Atomic Scalely revealed atomic structures in friction forces. This chapter will describe friction force microscopy experiments that reveal, more or less directly, atomic processes in the sliding contact..We will begin by introducing friction force microscopy, including the calibration of cantilever force sensor
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Nanomechanical Properties of Solid Surfaces and Thin Filmsact geometry and, hence, invalidate the standard analysis routines. Work hardening in the deformed region can also result in variations in mechanical behavior with indentation depth. A further unavoidable complication stems from the ratio of film to substrate mechanical properties and the depth of i
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Computational Modeling of Nanometer-Scale Tribologyn this chapter, a relatively complete discussion of the contribution that molecular dynamics and related simulations are making in the area of nanotribology is presented. The examples discussed above make it clear that these approaches are providing exciting insights into friction, wear, and related
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Nanotribology of Ultrathin and Hard Amorphous Carbon Filmse DLC coatings is amorphous or quasi-amorphous with small diamond, graphite, and other unidentifiable micro- or nanocrystallites. Most DLC coatings, except those produced by filtered cathodic arc, contain from a few to about 50 at% hydrogen. Sometimes hydrogen is deliberately incorporated in the spu
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