Title of article
The equivalent axisymmetric model for Berkovich indenters in power-law hardening materials
Author/Authors
Z. Shi، نويسنده , , X. Feng، نويسنده , , Y. Huang، نويسنده , , J. Xiao، نويسنده , , K.C. Hwang، نويسنده ,
Issue Information
روزنامه با شماره پیاپی سال 2010
Pages
8
From page
141
To page
148
Abstract
Nix and Gio [Nix, W.D., Gao, H.J., 1998. Indentation size effects in crystalline materials: a law for strain gradient plasticity. Journal of the Mechanics and Physics of Solids 46, 411–425] established an important relation between the micro-indentation hardness and indentation depth for axisymmetric indenters. For the Berkovich indenter, however, this relation requires an equivalent cone angle. Qin et al. [Qin, J., Huang, Y., Xiao, J., Hwang, K.C., 2009. The equivalence of axisymmetric indentation model for three-dimensional indentation hardness. Journal of Materials Research 24, 776–783] showed that the widely used equivalent cone angle from the criterion of equal base area leads to significant errors in micro-indentation, and proposed a new equivalence of equal cone angle for iridium. It is shown in this paper that this new equivalence holds for a wide range of plastic work hardening materials. In addition, the prior equal-base-area criterion does not hold because the Berkovich indenter gives much higher density of geometrically necessary dislocations than axisymmetric indenter. The equivalence of equal cone angle, however, does not hold for Vickers indenter.
Keywords
Berkovich indenter , Micro-indentation hardness , Indenter angle , 3D finite element analysis , strain gradient
Journal title
International Journal of Plasticity
Serial Year
2010
Journal title
International Journal of Plasticity
Record number
1254760
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