The mechanical properties of alumina have been successfully improved by adding isolated boron carbide particles of two different shapes. A KIC of 7.26 ± 0.20 MPa·m1/2 for alumina-boron carbide whiskerlike composites and of 5.27 ± 0.12 MPa·m1/2 alumina-boron carbide shardlike particle composites has been achieved. The fracture toughness of these composites is dependent on the volume fraction of the boron carbide particles as well as their size and shape. The flexural strength is also appreciably enhanced to a constant value with from 5 to 20 vol% boron carbide additions. The whiskerlike particles increase the flexural strength by 25% and the shardlike particles produce a 47% improvement
Reinforcement particle size is very important for the performance of metal ceramic composites. This ...
The mechanical properties of composite ceramics composed of 0 to 20 vol% of titanium diboride partic...
In this study, Al-B4C composites were produced with various particle sizes (B4C: 3.5 and 20 µm) and ...
The mechanical properties of alumina have been successfully improved by adding isolated boron carbid...
The alumina-boron carbide composites were prepared by sintering and hot pressing. the mechanical pro...
Boron carbide particles and whiskers, and titanium dioboride particles are demonstrated to be effect...
The mechanical properties of boron carbide (B4C) with 10 and 20 vol% particulate inclusions of comme...
Boron carbide whisker and platelet reinforced alumina and boron carbide whisker reinforced silicon c...
Aluminum metal matrix composites reinforced by ceramic particles have a wide acceptance in engineeri...
A composite material is the combination of two or more materials, which are having different phases ...
The present research work has focused on the production and evaluation of mechanical properties by i...
This dissertation represents the culmination of extensive experimentation and research in the area o...
The properties of alumina can be improved by incorporating second phases like zirconia or carbides. ...
Particulate composites composed of boride and carbide ceramics were found to have remarkably high ha...
The processing problems associated with boron carbide and the limitations of its mechanical properti...
Reinforcement particle size is very important for the performance of metal ceramic composites. This ...
The mechanical properties of composite ceramics composed of 0 to 20 vol% of titanium diboride partic...
In this study, Al-B4C composites were produced with various particle sizes (B4C: 3.5 and 20 µm) and ...
The mechanical properties of alumina have been successfully improved by adding isolated boron carbid...
The alumina-boron carbide composites were prepared by sintering and hot pressing. the mechanical pro...
Boron carbide particles and whiskers, and titanium dioboride particles are demonstrated to be effect...
The mechanical properties of boron carbide (B4C) with 10 and 20 vol% particulate inclusions of comme...
Boron carbide whisker and platelet reinforced alumina and boron carbide whisker reinforced silicon c...
Aluminum metal matrix composites reinforced by ceramic particles have a wide acceptance in engineeri...
A composite material is the combination of two or more materials, which are having different phases ...
The present research work has focused on the production and evaluation of mechanical properties by i...
This dissertation represents the culmination of extensive experimentation and research in the area o...
The properties of alumina can be improved by incorporating second phases like zirconia or carbides. ...
Particulate composites composed of boride and carbide ceramics were found to have remarkably high ha...
The processing problems associated with boron carbide and the limitations of its mechanical properti...
Reinforcement particle size is very important for the performance of metal ceramic composites. This ...
The mechanical properties of composite ceramics composed of 0 to 20 vol% of titanium diboride partic...
In this study, Al-B4C composites were produced with various particle sizes (B4C: 3.5 and 20 µm) and ...