Size Effect and Geometrical Effect of Polycrystals and Thin Film/Substrate System in Micro-indentation Test


Autoria(s): Wei YG(魏悦广); Zhao MH(赵满洪); Wang XZ(王学峥)
Data(s)

2002

Resumo

Micro-indentation test at scales on the order of sub-micron has shown that the measured hardness increases strongly with decreasing indent depth or indent size, which is frequently referred to as the size effect. Simultaneously, at micron or sub-micron scale, the material microstructure size also has an important influence on the measured hardness. This kind of effect, such as the crystal grain size effect, thin film thickness effect, etc., is called the geometrical effect by here. In the present research, in order to investigate the size effect and the geometrical effect, the micro-indentation experiments are carried out respectively for single crystal copper and aluminum, for polycrystal aluminum, as well as for a thin film/substrate system, Ti/Si3N4. The size effect and geometrical effect are displayed experimentally. Moreover, using strain gradient plasticity theory, the size effect and the geometrical effect are simulated. Through comparing experimental results with simulation results, length-scale parameter appearing in the strain gradient theory for different cases is predicted. Furthermore, the size effect and the geometrical effect are interpreted using the geometrically necessary dislocation concept and the discrete dislocation theory. Member Price: $0; Non-Member Price: $25.00

Identificador

http://dspace.imech.ac.cn/handle/311007/16138

http://www.irgrid.ac.cn/handle/1471x/814

Idioma(s)

英语

Fonte

Materials Research Society Symposium Proceedings,2002,731:275-280

Palavras-Chave #力学
Tipo

期刊论文