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Effects of nano-graphite content on the characteristics of spark plasma sintered ZrB2-SiC composites
被引:102
作者:
Asl, Mehdi Shahedi
[1
]
Zamharir, Mehran Jaberi
[2
]
Ahmadi, Zohre
[2
]
Parvizi, Soroush
[3
]
机构:
[1] Univ Mohaghegh Ardabili, Dept Mech Engn, Ardebil, Iran
[2] Mat & Energy Res Ctr, Ceram Dept, Karaj, Iran
[3] Shahid Rajaee Teacher Training Univ, Fac Mat Engn & New Technol, Tehran 16785136, Iran
来源:
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING
|
2018年
/
716卷
关键词:
Spark plasma sintering;
Zirconium diboride;
Graphite nano-flake;
Nanocomposite;
Densification;
Mechanical properties;
HOT-PRESSING PARAMETERS;
MECHANICAL-PROPERTIES;
FRACTOGRAPHICAL CHARACTERIZATION;
DENSIFICATION BEHAVIOR;
ZRB2-BASED COMPOSITES;
REINFORCEMENT SIZE;
FRACTURE-TOUGHNESS;
ZRO2/SIC RATIO;
C-SF;
MICROSTRUCTURE;
D O I:
10.1016/j.msea.2018.01.038
中图分类号:
TB3 [工程材料学];
学科分类号:
0805 ;
080502 ;
摘要:
In this study, ZrB2-25 vol% SiC composite containing 0, 2.5, 5, 7.5 and 10 wt% graphite nano-flakes were prepared by spark plasma sintering (SPS) process at 1900 degrees C for 7 min under 40 MPa. The fabricated composite samples were compared to examine the influences of nano-graphite content on the densification, microstructure and mechanical properties of ZrB2-SiC-based ultrahigh temperature ceramics. Fully dense composites were obtained by adding 0-5 wt% nano-graphite, but higher amounts of additive led to a small drop in the sintered density. The growth of ZrB2 grains was moderately hindered by adding nano-graphite but independent of its content. The hardness linearly decreased from 19.5 for the graphite-free ceramic to 12.1 GPa for the sample doped with 10 wt% nano-graphite. Addition of graphite nano-flakes increased the fracture toughness of composites as a value of 8.2 MPa m(1/2) was achieved by adding 7.5 wt% nano-graphite, twice higher than that measured for the graphite-free sample (4.3 MPa m(1/2)). The in-situ formation of ZrC and B4C nano-particles as well as the presence of unreacted graphite nano-flakes led to a remarkable enhancement in fracture toughness through activating several toughening mechanisms such as crack deflection, crack bridging, crack branching and graphite pullout.
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页码:99 / 106
页数:8
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