2002•Lixue jinzhanRequires access

ADVANCES IN NANOMECHANICS

Hong Tao Wei

Open publisher page 12 citations

Abstract

Several research thrusts in nanomechanics for solid state matters are reviewed in thispaper. The scope of nanomechanics is defined, and the methods are introduced. These methodsinclude nanoscopic computations (massive MD simulation, combined continuum/atomistic simu-lation, quasi-continuum simulation and LMPM) and nanoscopic experiments (nano-moire methodand nanoindentation). The emerging research areas in nanomechanics such as superplastic defor-mation of nano-crystalline materials, nanofracture, mechaincs for nanotubes and nanoindentationare briefiy described.

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What this paper is about

Several research thrusts in nanomechanics for solid state matters are reviewed in thispaper. The scope of nanomechanics is defined, and the methods are introduced. These methodsinclude nanoscopic computations (massive MD simulation, combined continuum/atomistic simu-lation, quasi-continuum simulation and LMPM) and nanoscopic experiments (nano-moire methodand nanoindentation). The emerging research areas in nanomechanics such as superplastic defor-mation of nano-crystalline materials, nanofracture, mechaincs for nanotubes and nanoindentationare briefiy described.

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OpenAlex reports 12 citations for this work. Citation counts describe recorded attention and do not establish research quality.

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Available abstract

Several research thrusts in nanomechanics for solid state matters are reviewed in thispaper. The scope of nanomechanics is defined, and the methods are introduced. These methodsinclude nanoscopic computations (massive MD simulation, combined continuum/atomistic simu-lation, quasi-continuum simulation and LMPM) and nanoscopic experiments (nano-moire methodand nanoindentation). The emerging research areas in nanomechanics such as superplastic defor-mation of nano-crystalline materials, nanofracture, mechaincs for nanotubes and nanoindentationare briefiy described.

Key concepts: Nanomechanics, Nanoindentation, Superplasticity, Nanoscopic scale, Materials science, Nanotechnology, Atomic force microscopy, Composite material

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