TY - JOUR
T1 - Porous (SiCw-Si3N4w)/(Si3N4-SiC) composite with enhanced mechanical performance fabricated by 3D printing
AU - Xiao, Shanshan
AU - Mei, Hui
AU - Han, Daoyang
AU - Yuan, Wenyu
AU - Cheng, Laifei
N1 - Publisher Copyright:
© 2018 Elsevier Ltd and Techna Group S.r.l.
PY - 2018/8/15
Y1 - 2018/8/15
N2 - SiC whisker and Si3N4 whisker-reinforced Si3N4-SiC ((SiCw-Si3N4w)/(Si3N4-SiC)) composite was synthesized by 3D printing for the first time, by the combination of printed-Si-body nitridation and chemical vapor infiltration-SiC methods. The mechanical properties of the composite could be optimized through the adjustment of SiCw content and load direction. A SiCw content of 3 wt% was found to be the optimal scheme, and accordingly, the average bulk density increased by 22.4%, the bending strength increased by 63.6%, the compressive strength parallel to the printing layer increased by 404.8%, and the compressive strength perpendicular to the printing layer increased by 157.1%, compared with the bulks without whiskers. The enhanced mechanical performance was mainly attributed to the process of densification by CVI, and the effect of the homogeneous whiskers bridging, pull-out and deflecting crack to expend energy. The achieved indices meet the requirements for 3D-printed porous ceramic matrix composite targeted for commercial and military field applications.
AB - SiC whisker and Si3N4 whisker-reinforced Si3N4-SiC ((SiCw-Si3N4w)/(Si3N4-SiC)) composite was synthesized by 3D printing for the first time, by the combination of printed-Si-body nitridation and chemical vapor infiltration-SiC methods. The mechanical properties of the composite could be optimized through the adjustment of SiCw content and load direction. A SiCw content of 3 wt% was found to be the optimal scheme, and accordingly, the average bulk density increased by 22.4%, the bending strength increased by 63.6%, the compressive strength parallel to the printing layer increased by 404.8%, and the compressive strength perpendicular to the printing layer increased by 157.1%, compared with the bulks without whiskers. The enhanced mechanical performance was mainly attributed to the process of densification by CVI, and the effect of the homogeneous whiskers bridging, pull-out and deflecting crack to expend energy. The achieved indices meet the requirements for 3D-printed porous ceramic matrix composite targeted for commercial and military field applications.
KW - 3D printing
KW - Chemical vapor infiltration
KW - Mechanical property
KW - Reaction sintering
KW - Whisker reinforcement
UR - http://www.scopus.com/inward/record.url?scp=85046670946&partnerID=8YFLogxK
U2 - 10.1016/j.ceramint.2018.05.011
DO - 10.1016/j.ceramint.2018.05.011
M3 - 文章
AN - SCOPUS:85046670946
SN - 0272-8842
VL - 44
SP - 14122
EP - 14127
JO - Ceramics International
JF - Ceramics International
IS - 12
ER -