Numerical simulation on thermal expansion coefficient of 3D braided C/C composites

被引:19
|
作者
Hu, Chun-Xia [1 ]
Li, He-Jun [1 ]
Zhang, Shou-Yang [1 ]
Song, Yong-Shan [2 ]
机构
[1] Northwestern Polytech Univ, State Key Lab Solidificat Proc, Carbon Carbon Composites Res Ctr, Xian 710072, Peoples R China
[2] Northwestern Polytech Univ, Sch Mechatron Engn, Xian 710072, Peoples R China
基金
中国国家自然科学基金;
关键词
3D braided C/C composites; Rosen-Hashin equation; Axial CTE; Simulation; UNIDIRECTIONAL COMPOSITES; THERMOPHYSICAL PROPERTIES; MICROSTRUCTURE;
D O I
10.1007/s12598-013-0083-4
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
To effectively get the thermal expansion coefficient (CTE) of three-dimensional (3D) braided C/C composites and study the variations, a VC++ program with graphical user interfaces was obtained, based on the yarn unit model and numerical analysis. With the limited basic properties of carbon fibers and carbon matrix, CTE of 3D braided C/C composites is obtained at 85 A degrees C. The deviation between the simulated and experimental axial CTE of 3D braided C/C composites is no more than 11 %. The effects of different parameters (including the braiding angle of 3D braided preform, the fiber volume fraction and the porosity of 3D braided C/C composites, and the elastic modulus, Poisson's ratio and CTEs of carbon fibers and carbon matrix) were analyzed with the program. The results show that the axial CTE of C/C composites decreases with the increase of the braiding angle, the fiber volume fraction, and the porosity of 3D braided C/C composites. The transverse elastic modulus of carbon fibers has the greatest effect on the axial CTE among the studied mechanical parameters, followed by the elastic modulus and Poisson's ratio of carbon matrix.
引用
收藏
页码:99 / 106
页数:8
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