Toughness characteristics of a heterogeneous silicon carbide with a coarsened and elongated grain structure and an intergranular second phase are evaluated relative to a homogeneous, fine-grain control using indentation–strength data. The heterogeneous material exhibits a distinctive flaw tolerance, indicative of a pronounced toughness curve. Quantitative evaluation of the data reveals an enhanced toughness in the long-crack region, with the implication of degraded toughness in the short-crack region. The enhanced long-crack toughness is identified with crack-interface bridging. The degraded short-crack toughness is attributed to weakened grain or interface boundaries and to internal residual stresses from thermal expansion mismatch. A prof...
The flexural strength and fracture toughness (K(IC)) of reaction-bonded silicon carbide (RBSC) made ...
Silicon carbide plate specimens containing a through-thickness crack, on which stress intensity can ...
Indentation based fracture toughness measurements remain one of the fastest and most convenient ways...
The fracture toughness of three silicon carbide-based materials were examined in the light of operat...
AbstractWe have used Hertzian and Vickers indentation to investigate contact damage in sintered SiC ...
thesisR-curve behavior of four different silicon carbide (SiC) materials was assessed using an inde...
Nanoindentation-based fracture toughness measurements of ceramic materials like silicon carbide (SiC...
We have used Hertzian and Vickers indentation to investigate contact damage in sintered SiC ceramics...
Instrumented and Vickers indentation testing and microstructure analysis were used to investigate zi...
Silicon carbide based materials are being increasingly used as a room temperature structural materia...
A series of in situ toughened, Al, B and C containing, silicon carbide ceramics (ABC-SiC) has been e...
Along with other desirable properties, the ability of silicon carbide (SiC) to retain high strength ...
For the characterization of brittle fracture in ceramics both short indentation cracks and long crac...
Through control of the grain-boundary structure, principally in the nature of the nanoscale intergra...
A robust atomistic to mesoscale computational multiscale/multiphysics modeling framework that explic...
The flexural strength and fracture toughness (K(IC)) of reaction-bonded silicon carbide (RBSC) made ...
Silicon carbide plate specimens containing a through-thickness crack, on which stress intensity can ...
Indentation based fracture toughness measurements remain one of the fastest and most convenient ways...
The fracture toughness of three silicon carbide-based materials were examined in the light of operat...
AbstractWe have used Hertzian and Vickers indentation to investigate contact damage in sintered SiC ...
thesisR-curve behavior of four different silicon carbide (SiC) materials was assessed using an inde...
Nanoindentation-based fracture toughness measurements of ceramic materials like silicon carbide (SiC...
We have used Hertzian and Vickers indentation to investigate contact damage in sintered SiC ceramics...
Instrumented and Vickers indentation testing and microstructure analysis were used to investigate zi...
Silicon carbide based materials are being increasingly used as a room temperature structural materia...
A series of in situ toughened, Al, B and C containing, silicon carbide ceramics (ABC-SiC) has been e...
Along with other desirable properties, the ability of silicon carbide (SiC) to retain high strength ...
For the characterization of brittle fracture in ceramics both short indentation cracks and long crac...
Through control of the grain-boundary structure, principally in the nature of the nanoscale intergra...
A robust atomistic to mesoscale computational multiscale/multiphysics modeling framework that explic...
The flexural strength and fracture toughness (K(IC)) of reaction-bonded silicon carbide (RBSC) made ...
Silicon carbide plate specimens containing a through-thickness crack, on which stress intensity can ...
Indentation based fracture toughness measurements remain one of the fastest and most convenient ways...