Geometry of nanoindentation cube-corner cracks observed by FIB tomography: Implication for fracture resistance estimation

被引:24
|
作者
Cuadrado, N. [1 ]
Seuba, J. [2 ]
Casellas, D. [1 ]
Anglada, M. [3 ]
Jimenez-Pique, E. [3 ,4 ]
机构
[1] Fundacio CTM Ctr Tecnol, Manresa 08243, Spain
[2] CNRS St Gobain, Lab Synt & Fonctionnalisat Ceram, UMR3080, F-84306 Cavaillon, France
[3] Univ Politecn Catalunya Barcelona TECH, ETSEIB, Dept Mat Sci & Met Engn, Barcelona 08028, Spain
[4] UPC Barcelona TECH, Ctr Res NanoEngn, CRnE, Barcelona 08028, Spain
关键词
Nanoindentation; Fracture; Crack morphology; Tomography; ELASTIC-PLASTIC INDENTATION; TOUGHNESS; CERAMICS; COMPOSITES; ZIRCONIA; DAMAGE; FILMS; GLASS; LOAD;
D O I
10.1016/j.jeurceramsoc.2015.03.031
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
When indenting a brittle material with a sharp indenter, cracks can be generated at the corners of the imprint. From the length of these cracks, the fracture resistance can be estimated. This technique is simple and allows characterizing small volumes of materials, especially if nanoindentation cube-corners tips are used. For evaluation of fracture resistance, a number of different models based on crack morphology have been proposed. However, the morphology of the cracks is difficult to determine due to the small scales involved. In this work, indentation fracture with a cube-corner nanoindentation tip on different materials is investigated by FIB tomography to obtain the generated crack morphology. Experimental observations are rationalized in terms of applied load, tip geometry and crystal anisotropy. Once the crack morphology is visualized, the two most commonly used equations for calculating the fracture resistance are discussed. Finally, guidelines for better estimation of fracture resistance are proposed. (C) 2015 Elsevier Ltd. All rights reserved.
引用
收藏
页码:2949 / 2955
页数:7
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  • [1] Evaluation of fracture toughness of small volumes by means of cube-corner nanoindentation
    Cuadrado, N.
    Casellas, D.
    Anglada, M.
    Jimenez-Pique, E.
    [J]. SCRIPTA MATERIALIA, 2012, 66 (09) : 670 - 673