A finite element model is developed to quantify the effect of the depth and diameter of the reinforcement in the hardness number of metal matrix composite. The model includes a spherical indenter pressed against a metal containing one reinforcing particle. The results are validated for the non-reinforced material comparing the results of the simulation with analytical models that calculate the properties of the material using Brinell and Meyer hardness and the load-displacement curve. A simple composite consisting of a ductile matrix containing one hard particle of size 0.25-1 of the indenter size and placed at depths 0.1-0.5 times the indenter radius are assumed. The diameters and depths of the impressions for reinforced and matrix materia...
This investigation focused on the finite element analyses of elastic and plastic properties of alumi...
A two-dimensional finite element model was developed to study effects of particle diameter, mechanic...
AbstractBy using instrumental micro-indentation technique, the microhardness and Young’s modulus of ...
This paper investigates the inhomogeneous behaviour of metal matrix composites subjected to micro-in...
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 ...
This paper investigates the inhomogeneous behavior of MMCs subjected to microindentation by a spheri...
A conceptual model is proposed in this paper to calculate the bulk hardness of particle-reinforced m...
This paper investigates the deformation mechanisms of MMCs subjected to micro-indentation by a spher...
An indentation test is an experimental method whereby an indenter is pressed into a specimen in orde...
A micromechanical model is utilized to estimate the elastic-plastic deformation characteristics of a...
A micromechanical model is utilized to estimate the elastic-plastic deformation characteristics of a...
This paper investigates the deformation mechanisms of MMCs subjected to micro-indentation by a spher...
By using instrumental micro-indentation technique, the microhardness and Young’s modulus of SiC part...
Micro-indentation has been widely used to evaluate the mechanical properties of materials. It has al...
This investigation focused on the finite element analyses of elastic and plastic properties of alumi...
A two-dimensional finite element model was developed to study effects of particle diameter, mechanic...
AbstractBy using instrumental micro-indentation technique, the microhardness and Young’s modulus of ...
This paper investigates the inhomogeneous behaviour of metal matrix composites subjected to micro-in...
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 ...
This paper investigates the inhomogeneous behavior of MMCs subjected to microindentation by a spheri...
A conceptual model is proposed in this paper to calculate the bulk hardness of particle-reinforced m...
This paper investigates the deformation mechanisms of MMCs subjected to micro-indentation by a spher...
An indentation test is an experimental method whereby an indenter is pressed into a specimen in orde...
A micromechanical model is utilized to estimate the elastic-plastic deformation characteristics of a...
A micromechanical model is utilized to estimate the elastic-plastic deformation characteristics of a...
This paper investigates the deformation mechanisms of MMCs subjected to micro-indentation by a spher...
By using instrumental micro-indentation technique, the microhardness and Young’s modulus of SiC part...
Micro-indentation has been widely used to evaluate the mechanical properties of materials. It has al...
This investigation focused on the finite element analyses of elastic and plastic properties of alumi...
A two-dimensional finite element model was developed to study effects of particle diameter, mechanic...
AbstractBy using instrumental micro-indentation technique, the microhardness and Young’s modulus of ...