In situ measurement of local strain in a metal matrix composite by the object grating technique
In situ measurement of local strain in a metal matrix composite by the object grating technique
复制标题
利用物栅技术原位测量金属基复合材料中的局部应变
DOI:
10.1016/s1359-6462(97)00013-4
复制
发表时间:
1997
影响因子:
6
通讯作者:
G. Fischer
中科院分区:
文献类型:
--
作者:
Y. L. Liu;G. Fischer
When the metal matrix composite (MMC) material is strained, deformation is highly localized in the vicinity of the reinforcement particles (l-5). The stress/strain localization during deformation affects the overall strain hardening behaviour and is directly related to the initiation of microdamage. It has been a subject which attracts a great attention theoretically and experimentally. Finite Element Modelling (FEM) simulations (1, 2, 4, 5) have been used to predict the local stress/strain fields in MMCs. On the other hand various experimental methods have been developed to measure the local distribution of stress/strain m MMCs for direct comparison with FEM simulations. TEM and EBSP (SEM), among others, have been used to determine the local dislocation density as an indirect measure of the local plastic strain (3, 6, 7).Various object grating methods (8-12) have been developed to characterize the strain fields on the specimen surface of inhomogeneous materials in the past decades. This technique combined with a stress-rig in an optical or a scanning electron microscope allows the local strain distribution studied insitu (10-12). The recent development of this technique is the use of microgrids (a few microns in distance), and computerized image analysis, which lead to improvements in the lateral resolution, strain measuring accuracy and calculating speed.