This paper investigates the deformation mechanisms of MMCs subjected to micro-indentation by a spherical indenter using a three-dimensional finite element modeling. It was found that deformation behavior, hardness and work hardening of MMCs were highly dependant on the location of indentation relative to particles, volume percentage of the particle, and the size ratio of indenter to particle. The hardness of an MMC varied in a complex manner depending on the restriction on the matrix flow by reinforced particles and work hardening of the matrix material. Hardness increased with the increase of volume percentage of reinforced particles and decrease of the size ratio of indenter to particle. Matrix flow due to indentation was highly non-unifo...
The nano-indentation technique is a suitable technique to measure hardness and elastic moduli profil...
By using instrumental micro-indentation technique, the microhardness and Young’s modulus of SiC part...
AbstractBy using instrumental micro-indentation technique, the microhardness and Young’s modulus of ...
This paper investigates the deformation mechanisms of MMCs subjected to micro-indentation by a spher...
This paper investigates the inhomogeneous behavior of MMCs subjected to microindentation by a spheri...
Micro-indentation has been widely used to evaluate the mechanical properties of materials. It has al...
This paper investigates the inhomogeneous behaviour of metal matrix composites subjected to micro-in...
A finite element model is developed to quantify the effect of the depth and diameter of the reinforc...
AbstractBy using instrumental micro-indentation technique, the microhardness and Young’s modulus of ...
This study investigates effects of particle volume fraction and size on the indentation behavior of ...
This study investigates effects of particle volume fraction and size on the indentation behavior of ...
The finite element method has been used to study the behavior of an aluminum alloy during elastic-pl...
The nano-indentation technique is a suitable technique to measure hardness and elastic moduli profil...
The nano-indentation technique is a suitable technique to measure hardness and elastic moduli profil...
The nano-indentation technique is a suitable technique to measure hardness and elastic moduli profil...
The nano-indentation technique is a suitable technique to measure hardness and elastic moduli profil...
By using instrumental micro-indentation technique, the microhardness and Young’s modulus of SiC part...
AbstractBy using instrumental micro-indentation technique, the microhardness and Young’s modulus of ...
This paper investigates the deformation mechanisms of MMCs subjected to micro-indentation by a spher...
This paper investigates the inhomogeneous behavior of MMCs subjected to microindentation by a spheri...
Micro-indentation has been widely used to evaluate the mechanical properties of materials. It has al...
This paper investigates the inhomogeneous behaviour of metal matrix composites subjected to micro-in...
A finite element model is developed to quantify the effect of the depth and diameter of the reinforc...
AbstractBy using instrumental micro-indentation technique, the microhardness and Young’s modulus of ...
This study investigates effects of particle volume fraction and size on the indentation behavior of ...
This study investigates effects of particle volume fraction and size on the indentation behavior of ...
The finite element method has been used to study the behavior of an aluminum alloy during elastic-pl...
The nano-indentation technique is a suitable technique to measure hardness and elastic moduli profil...
The nano-indentation technique is a suitable technique to measure hardness and elastic moduli profil...
The nano-indentation technique is a suitable technique to measure hardness and elastic moduli profil...
The nano-indentation technique is a suitable technique to measure hardness and elastic moduli profil...
By using instrumental micro-indentation technique, the microhardness and Young’s modulus of SiC part...
AbstractBy using instrumental micro-indentation technique, the microhardness and Young’s modulus of ...