Nanoscratching meets nanoindentation

Author:

Shakhverdova Irina P.1,Reibold Marianne2,Kochmann Werner3,Paufler Peter4

Affiliation:

1. Fraunhofer-Institut für Werkstoff- und Strahltechnik IWS Dresden,Winterbergstr. 28,01277 Dresden, Germany

2. Triebenberg-Labor, Institut für Strukturphysik, Technische Universität Dresden, Helmholtzstr. 10, 01069 Dresden, Germany

3. Krüllsstr.4b, 06766 Wolfen, Germany

4. Institut für Strukturphysik, Technische Universität Dresden, Helmholtzstr. 10, 01069 Dresden, Germany, Tel.: +49(0)351 46334679, Fax: +4946337048,

Abstract

Abstract A specimen of high-carbon nitrogen-doped steel has been synthesized to supplement previous studies on wootz-like steels. A comparison of different states of material as well as one of distinct methods of hardness testing has been performed. Electron microscopy of the specimens’ microstructure revealed nano-structuring similar to that observed with ancient sabers. Part of them was annealed so that the nano-structures dissolved. Nano-hardness values derived under ambient conditions from indentation as well as from scratch tests were determined and related to the microstructure prior to and after annealing. The disappearance of nanostructuring led to a significant drop of hardness. The ratio of indentation to scratch hardness proved a suitable indicator of hardening. From hardness as function of penetration depth and from friction as function of time and normal load various quantitative features of the mechanical properties and of the deformation process have been evaluated. When modeling friction, sliding and plowing parts have been distinguished quantitatively. Enhanced adhesion forces were attributed to surface layers.

Publisher

Walter de Gruyter GmbH

Subject

Inorganic Chemistry,Condensed Matter Physics,General Materials Science

Reference61 articles.

1. D. Tabor, The Hardness of Metals. Oxford University Press, Oxford, 1951 and 2000.

2. W. Ehrenberg, Quantitative Beziehungen zwischen Ritz-härte und Druckhärte. Z. f. Metallkunde1941, 33, 23.

3. B. W. Mott, Micro-indentation hardness testing. Butter-worths Publ., London 1956/Die Mikrohärteprüfung. Berliner Union, Stuttgart 1956.

4. F. P. Bowden, D. Tabor, The Friction and Lubrication of Solids. Clarendon Press, Oxford, 1950; Part II, 1964.

5. E. Meyer, Untersuchungen über Härteprüfungen und Härte. Zeitschr. d. Vereins deutscher Ingenieure1908, 52, 645, 740, 835.

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