Pre-oxidation is an effective method to eliminate machining damages and to improve mechanical properties. In this paper, ZrB2-30 vol% SiC ceramic was pre-oxidized at 800-1200 degrees C. The effect of pre-oxidation temperature on flexural strength was studied. The flexural strength of ZrB2-SiC ceramic was significantly improved after pre-oxidation treatment, and it was found that the ceramic had the highest flexural strength after pre-oxidation at 1000 degrees C. Besides, the residual stress state of ZrB2-SiC ceramic after pre-oxidation treatment was also investigated using indentation and nanoindentation methods. Pre-oxidation can generate different residual stress states in the oxidation layer and ceramic matrix. When the ZrB2-SiC ceramic ...
The mechanical properties of dense, hot-pressed ZrB2-30 vol% SiC ceramics were characterized from ro...
In this work, SiC ceramics were liquid phase sintered (LPS), using AIN-Y(2)O(3) as additives, and ox...
In this paper, we study the oxidation behaviour of a ZrB2/Al-doped SiC composite at 1500 degrees C. ...
B4C-30 vol% ZrB2 ceramic was prepared using hot pressing. The room temperature and high temperature ...
ZrB2 based ultra-high temperature ceramic (UHTC) is one of the most promising materials for thermal ...
High temperature flexural and oxidation behavior of hot-pressed B4C-ZrB2 ceramics with various ZrB2 ...
A critical point in the development of future generation space vehicles is the availability of mater...
ZrB₂–20 vol% SiC (ZS) ceramics based on ZrB₂ starting powders obtained by different boro/carbo-therm...
SiC-ZrB2 ceramic laminates with different SiC:ZrB2 ratios were prepared by tape casting, binder burn...
Ultra-high temperature ceramics are material candidate for application in aggressive environment, es...
Ultra-high temperature ceramics (UHTCs), such as ZrB2-based ceramic composites, have been identified...
Multilayered ceramics seem very promising for applications at very high temperatures in an oxidising...
Ultra-high temperature ceramics (UHTCs), such as ZrB2-based ceramic composites, have been identified...
Structural ceramics are potential mold materials for hot embossing, due to their superior mechanical...
A new testing instrument was developed to measure the high-temperature constitutive relation and str...
The mechanical properties of dense, hot-pressed ZrB2-30 vol% SiC ceramics were characterized from ro...
In this work, SiC ceramics were liquid phase sintered (LPS), using AIN-Y(2)O(3) as additives, and ox...
In this paper, we study the oxidation behaviour of a ZrB2/Al-doped SiC composite at 1500 degrees C. ...
B4C-30 vol% ZrB2 ceramic was prepared using hot pressing. The room temperature and high temperature ...
ZrB2 based ultra-high temperature ceramic (UHTC) is one of the most promising materials for thermal ...
High temperature flexural and oxidation behavior of hot-pressed B4C-ZrB2 ceramics with various ZrB2 ...
A critical point in the development of future generation space vehicles is the availability of mater...
ZrB₂–20 vol% SiC (ZS) ceramics based on ZrB₂ starting powders obtained by different boro/carbo-therm...
SiC-ZrB2 ceramic laminates with different SiC:ZrB2 ratios were prepared by tape casting, binder burn...
Ultra-high temperature ceramics are material candidate for application in aggressive environment, es...
Ultra-high temperature ceramics (UHTCs), such as ZrB2-based ceramic composites, have been identified...
Multilayered ceramics seem very promising for applications at very high temperatures in an oxidising...
Ultra-high temperature ceramics (UHTCs), such as ZrB2-based ceramic composites, have been identified...
Structural ceramics are potential mold materials for hot embossing, due to their superior mechanical...
A new testing instrument was developed to measure the high-temperature constitutive relation and str...
The mechanical properties of dense, hot-pressed ZrB2-30 vol% SiC ceramics were characterized from ro...
In this work, SiC ceramics were liquid phase sintered (LPS), using AIN-Y(2)O(3) as additives, and ox...
In this paper, we study the oxidation behaviour of a ZrB2/Al-doped SiC composite at 1500 degrees C. ...