An efficient multi-scale model for needle-punched Cf/SiCm composite materials with experimental validation

被引:22
作者
Lim, Hyoung Jun [1 ]
Choi, Hoil [1 ]
Lee, Min Jung [3 ]
Yun, Gun Jin [1 ,2 ]
机构
[1] Seoul Natl Univ, Dept Mech & Aerosp Engn, Gwanak Ro 1,Bldg 301,Room 1308, Seoul 08826, South Korea
[2] Seoul Natl Univ, Inst Adv Aerosp Technol, Gwanak Ro 1, Seoul 08826, South Korea
[3] Agcy Def Dev, Daejeon, South Korea
关键词
3D needle-punched composites; Ceramic matrix composites (CMC); Finite element method; Multi-scale modeling; Subcell modeling; FINITE-ELEMENT MODEL; C/C-SIC COMPOSITES; 3D; DAMAGE;
D O I
10.1016/j.compositesb.2021.108890
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
In this paper, we present a novel efficient multi-scale modeling methodology for three-dimensional (3D) needlepunched (NP) carbon/silicon carbide (NP Cf/SiCm) with a complex microstructure. Variations of the material properties induced by the needle-punching process and complex geometrical features could pose challenges when estimating the material's behavior. A 3D microscopic high fidelity FE model is developed based on microCT images considering these composites' features. Novel and viable image processing techniques of micro-CT images are presented to generate the high fidelity model. The 3D high fidelity FE model is validated with the experimental test at room and high temperatures. A novel subcell modeling technique is developed for the 3D NP Cf/SiCm referring to the high fidelity FE model to expand to the macro-scale structural problem. The proposed models compare excellently with experimental results for mechanical behavior of tensile, shear, and bending under static loading conditions.
引用
收藏
页数:17
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