Effects of ceramic layer height on the mechanical properties of C f /SiC ceramic matrix composites fabricated by fiber-laying-assisted material extrusion 3D printing

被引:10
作者
Wang, Wenqing [1 ]
Gao, Xiong [1 ]
Li, Zengchan [1 ]
Shen, Chujing [2 ]
He, Rujie [1 ]
机构
[1] Beijing Inst Technol, Inst Adv Struct Technol, Beijing Key Lab Lightweight Multifunct Composite M, Beijing 100081, Peoples R China
[2] Suzhou Fanbo Addit Mfg Technol Co Ltd, Suzhou 215299, Peoples R China
基金
中国国家自然科学基金;
关键词
Material extrusion; 3D printing; Continuous fiber reinforced SiC ceramic matrix; composites; Bending strength; Fracture toughness; PRECURSOR INFILTRATION; BEHAVIOR; MICROSTRUCTURE; STRENGTH;
D O I
10.1016/j.coco.2024.101926
中图分类号
TB33 [复合材料];
学科分类号
摘要
Tradition fabrication methods of continuous carbon fiber reinforced SiC ceramic matrix composites (C f /SiC CMCs) cannot meet the requirements of complex structures. In this research, C f /SiC CMCs were fabricated through a novel technology combined with fiber -laying -assisted material extrusion (ME) 3D printing with precursor infiltration and pyrolysis (PIP). The ME system was utilized to produce SiC slurry, while the fiber -laying system was employed to embed continuous carbon fibers, resulting in the integrated fabrication of C f /SiC CMC green bodies. Then C f /SiC CMCs underwent the PIP process to achieve densification. The impact of ceramic layer height on the microstructure and mechanical performance of 3D -printed C f /SiC CMCs was thoroughly examined. The gaps between continuous carbon fibers and SiC ceramic matrix could be reduced by lowering the ceramic layer height. The obtained C f /SiC CMCs showed delayed fracture behaviors. As the ceramic layer height increased, both the bending strength and fracture toughness initially improved before declining. High performance C f /SiC CMCs with a bending strength of 288.49 MPa and a fracture toughness of 15.19 MPa m 1/2 were simultaneously obtained when the ceramic layer height was 0.75 mm. This work can provide novel insights into the 3D printing of fiber reinforced ceramic matrix composites.
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页数:8
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