Finite Element Modeling of Diamond Indentation Creep in MgO

Author:

Hu Jin Hua1,Henshall Leslie2

Affiliation:

1. Yanshan University

2. BLEN Enterprises Ltd.

Abstract

The modified dislocation creep model and the power law breakdown creep model were proposed to be used in the indentation creep deformation analyses for single crystal MgO at low temperature varying from 293K to 873K. A FE indentation creep modeling procedure was proposed and implemented. The activation energy and the shear flow stress for low temperature creep in single crystal MgO were predicted based on the analytical indentation creep analyses.

Publisher

Trans Tech Publications, Ltd.

Subject

General Engineering

Reference11 articles.

1. D. Tabor, Microindentation Techniques in Materials Science and Engineering (edited by P.J. Blau and B. R. Lawn), ASTM Special Publ. 889, pp.129-159 (1985).

2. A. G. Atkins, A. Siverio and D. Tabor, J. Inst. Metals 94, 369 (1966).

3. W. W. Walker, The Science of Hardness Testing and its Research Applications (edited by J. H. Westbrook and H. Conrad), pp.258-273. Am. Soc. Metals, Metals Park, Ohio (1973).

4. G. M. Carter, J. L. Henshall and R. M. Hooper, 2nd Int. Conf. on Materials and Engineering Design. Inst. Of Metals, London (1988).

5. G. M. Carter, J. L. Henshall and R. M. Hooper, Commun. Am. Ceram. Soc. 71, C-27 (1988).

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