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(1979)
Opredelenie mekhanicheskikh svoistv metallov po tverdosti (Determination of Mechanical Properties of Metals by Hardness)
(1990)
Ispytanie materialov nepreryvnym vdavlivaniem indentora (Testing Materials by Continuous Indentation)
W. Oliver, G. Pharr (2004)
Measurement of hardness and elastic modulus by instrumented indentation: Advances in understanding and refinements to methodologyJournal of Materials Research, 19
(2012)
Size effect and its influence on the mechanical properties of materials
(2004)
Opredelenie mekhanicheskikh svoistv materialov mikroindentirovaniem (Determination of Mechanical Properties of Materials by Microindentation), Moscow: Mosk
(2009)
Nanoindentirovanie i ego vozmozhnosti (Nanoindentation and Its Capabilities)
W.C. Oliver, G.M. Pharr (2004)
Measurement of hardness and elastic modulus by instrumented indentation: advances in understanding and refinements to methodologyMater. Res. Soc., 19
(2006)
Operativnaya diagnostika mekhanicheskikh svoistv konstruktsionnykh materialov (Quick Testing of Mechanical Properties of Structural Materials)
(2012)
Size effect and its influence on the mechanical properties of materials, Zavod
Techniques and instruments for the determination of mechanical properties of materials by scratch and indentation curves are discussed. The capabilities and advantages of the indentation techniques at different scale levels of the deformed volume are shown. A new technique for the hardness determination by the indentation curve of a pyramid is proposed. The scope of application of the indentation techniques for testing mechanical properties of materials is determined.
Inorganic Materials – Springer Journals
Published: Feb 18, 2017
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