Microstructural and mechanical properties of pressureless sintered high-wear-resistant SiC composite materials

被引:7
作者
Shishkin, R. A. [1 ]
Yuferov, Y., V [1 ]
Karagergi, R. P. [2 ]
Schak, A., V [3 ]
机构
[1] Russian Acad Sci, Ural Branch, Inst Solid State Chem, Ekaterinburg, Russia
[2] Joint Stock Co, Res Inst Nucl Mat, Zarechniy, Sverdlovsk Regi, Russia
[3] Ural Fed Univ, Ekaterinburg, Russia
关键词
Silicon carbide; Composite material; Porous ceramics; Wear resistivity; Mechanical properties; METAL-MATRIX COMPOSITE; SILICON-CARBIDE CERAMICS; ABRASIVE WEAR; FABRICATION; BEHAVIOR; INFILTRATION; CORROSION; DENSIFICATION; PERMEABILITY; MEMBRANE;
D O I
10.1007/s43207-022-00242-9
中图分类号
TQ174 [陶瓷工业]; TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The microstructural and mechanical properties of pressuless sintered SiC-based composite materials with Al or Cu addition (0-10 wt.%) were studied. The introduction of 1-2 wt.% of metals to the SiC results in appreciable porosity decreases from 31 to 19 +/- 1%. Moreover, metallic aids considerably affects the phase composition of the materials. Cu suppresses the formation of mullite. In contrast, Al increases the content of the moissanite phase in the final material because of a thick oxide film on the surface of silicon carbide. However, metal content does not steadily increases due to the melt removes from the open pores during the sintering process. The hardness of the composite material mainly depends on the moissanite phase content, which could be enhanced by metal additives. Developed composite materials have up to 50 and 3 times greater resistance to abrasive and cavitation wear correspondingly than the original porous SiC.
引用
收藏
页码:75 / 89
页数:15
相关论文
共 77 条
[41]   The effect of rare earth oxides on the pressureless liquid phase sintering of α-SiC [J].
Liang, Hanqin ;
Yao, Xiumin ;
Zhang, Jingxian ;
Liu, Xuejian ;
Huang, Zhengren .
JOURNAL OF THE EUROPEAN CERAMIC SOCIETY, 2014, 34 (12) :2865-2874
[42]   Fabrication of deep micro-holes in reaction-bonded SiC by ultrasonic cavitation assisted micro-EDM [J].
Liew, Pay Jun ;
Yan, Jiwang ;
Kuriyagawa, Tsunemoto .
INTERNATIONAL JOURNAL OF MACHINE TOOLS & MANUFACTURE, 2014, 76 :13-20
[43]   Preparation of dense and high-purity SiC ceramics by pressureless solid-state-sintering [J].
Liu, Meng ;
Yang, Yong ;
Wei, Yuquan ;
Li, Yajie ;
Zhang, Heng ;
Liu, Xuejian ;
Huang, Zhengren .
CERAMICS INTERNATIONAL, 2019, 45 (16) :19771-19776
[44]   Flexural strength and wear resistance of C/C-SiC brake materials improved by introducing SiC ceramics into carbon fiber bundles [J].
Ma, Xu ;
Sun, Haodong ;
Kou, Sijie ;
Fan, Shangwu ;
Deng, Juanli ;
Zhang, Litong ;
Cheng, Laifei .
CERAMICS INTERNATIONAL, 2021, 47 (17) :24130-24138
[45]   Wetting of silicon carbide by Cu-Si alloys [J].
Marín, J ;
Olivares, L ;
Ordoñez, S ;
Martínez, V .
ADVANCED POWDER TECHNOLOGY III, 2003, 416-4 :487-492
[46]   Wetting of silicon carbide by copper alloys [J].
Martínez, V ;
Ordoñez, S ;
Castro, F ;
Olivares, L ;
Marín, J .
JOURNAL OF MATERIALS SCIENCE, 2003, 38 (19) :4047-4054
[47]  
Medvedovski E., 2000, P 2000 INT PIP C IPC, P223
[48]   An investigation of mechanical properties of aluminium based silicon carbide (AlSiC) metal matrix composite by different manufacturing methods [J].
Mhaske, Milind S. ;
Shirsat, Uddhav M. .
MATERIALS TODAY-PROCEEDINGS, 2021, 44 :376-382
[49]  
Muna Noori, 2015, Advanced Materials Research, V1128, P149, DOI 10.4028/www.scientific.net/AMR.1128.149
[50]  
Nair S. V., 1985, International Metals Reviews, V30, P275