© 2017The nanoscale elastic-plastic deformation behavior of single crystal 6H-SiC was systematically investigated by using nanoindentation with a Berkovich indenter. The effect of loading rates on the critical pop-in load, pop-in displacement and maximum shear stress was observed which indicates that phase transformation in 6H-SiC is highly unlikely. Results further indicated that the elastic-plastic transition was evidenced by stable pop-in events under conditions of an indentation load of 0.54 mN with a loading rate of 20 µN/s. In the load-independent region, hardness was determined as 33 ± 2 GPa and elastic modulus had a stabilized value of 393 ± 8 GPa. The significant indentation size effect and depth independent hardness in 6H-SiC was ...
In this paper, we study the mechanical behaviour of silicon carbide at the nanoscale, with a focus o...
Silicon carbide (SiC) is a promising semiconductor material for making high-performance power electr...
The room temperature onset plastic deformation and crack behavior of 3C-SiC under contact load were ...
The nanoscale elastic-plastic response of single crystal 4H-SiC has been investigated by nanoindenta...
Silicon carbide (SiC) is a promising material ideally suited for small-scaled devices deployed in ha...
Silicon carbide (SiC) is an important orthopedic material due to its inert nature and superior mecha...
ABSTRACTSilicon carbide (SiC) is ideally suitable as a sensor material in harsh environments. Despit...
Due to the growing implementation and interest in nanoscience and nanotechnology, there has been an ...
This research aims at enhancing the fundamental understanding of mechanisms controlling the deformat...
Nanoindentation-based fracture toughness measurements of ceramic materials like silicon carbide (SiC...
The super-precise theory for machining single crystal SiC substrates with abrasives needs to be impr...
In order to explore the deformation law of nanoindentation dislocation on different crystal planes o...
In order to clarify the plastic deformation mechanism of silicon carbide in cubic phase (3C-SiC), mo...
Specimens of 6H-SiC single crystal were irradiated at room temperature with 2.3 MeV neon ions to thr...
Supplementary information files for 'Nanoscale investigation of deformation characteristics in a pol...
In this paper, we study the mechanical behaviour of silicon carbide at the nanoscale, with a focus o...
Silicon carbide (SiC) is a promising semiconductor material for making high-performance power electr...
The room temperature onset plastic deformation and crack behavior of 3C-SiC under contact load were ...
The nanoscale elastic-plastic response of single crystal 4H-SiC has been investigated by nanoindenta...
Silicon carbide (SiC) is a promising material ideally suited for small-scaled devices deployed in ha...
Silicon carbide (SiC) is an important orthopedic material due to its inert nature and superior mecha...
ABSTRACTSilicon carbide (SiC) is ideally suitable as a sensor material in harsh environments. Despit...
Due to the growing implementation and interest in nanoscience and nanotechnology, there has been an ...
This research aims at enhancing the fundamental understanding of mechanisms controlling the deformat...
Nanoindentation-based fracture toughness measurements of ceramic materials like silicon carbide (SiC...
The super-precise theory for machining single crystal SiC substrates with abrasives needs to be impr...
In order to explore the deformation law of nanoindentation dislocation on different crystal planes o...
In order to clarify the plastic deformation mechanism of silicon carbide in cubic phase (3C-SiC), mo...
Specimens of 6H-SiC single crystal were irradiated at room temperature with 2.3 MeV neon ions to thr...
Supplementary information files for 'Nanoscale investigation of deformation characteristics in a pol...
In this paper, we study the mechanical behaviour of silicon carbide at the nanoscale, with a focus o...
Silicon carbide (SiC) is a promising semiconductor material for making high-performance power electr...
The room temperature onset plastic deformation and crack behavior of 3C-SiC under contact load were ...