In order to investigate the influence on mechanical properties of grain size in the near-micrometer regime, samples of Fe with nearly full density were prepared using the spark plasma sintering (SPS) technique with average grain sizes of 1.0 mu m, 2.6 mu m and 4.0 mu m. In each of these samples the resulting sintered material was in a nearly fully-recrystallized condition with a random texture. The mechanical properties of the samples were examined via tensile testing. A strong dependence of the tensile flow characteristics on the average grain size was observed in this size regime, with the 1.0 mu m grain-size sample showing a very high strength, but no uniform elongation and a large yield drop developed in the 2.6 mu m grain-size sample. ...
A bimodal ferrite grain size distribution was developed in the microstructure of a warm-rolled ultra...
In the transportation industry, weight reduction is essential in order to reduce fuel consumption. A...
International audienceThree model powder materials (i) atomized, (ii) atomized + milled, and, (iii) ...
In the present study, plasticity of nanocrystalline Fe and its grain boundary structure have been st...
The influence of polycrystalline grain size on the ductile fracture toughness (Jic) of Armco iron ha...
International audiencePowder metallurgy associated to spark plasma sintering was used to elaborate n...
In this paper iron powders with two oxygen content (0.2 and 0.6% wt.) have been mechanically milled ...
Correlations between a materials microstructure and mechanical behavior are important for materials ...
In this paper iron powders with two oxygen content (0.2 and 0.6% wt.) have been mechanically milled...
The role of microstructure on material properties is a foundational principle in materials science. ...
The strength and ductility of bulk nanostructured and ultrafine-grained iron containing 0.39% oxygen...
The mechanical strengths of nano-scale individual crystal or nanopolycrystalline metals, and other d...
The classic data in the literature for the grain size dependence of the strength in many metals are ...
Ultrafine grained (UFG) metals processed by severe plastic deformation (SPD) are well known for thei...
Ultrafine grained (UFG) metals processed by severe plastic deformation (SPD) are well known for thei...
A bimodal ferrite grain size distribution was developed in the microstructure of a warm-rolled ultra...
In the transportation industry, weight reduction is essential in order to reduce fuel consumption. A...
International audienceThree model powder materials (i) atomized, (ii) atomized + milled, and, (iii) ...
In the present study, plasticity of nanocrystalline Fe and its grain boundary structure have been st...
The influence of polycrystalline grain size on the ductile fracture toughness (Jic) of Armco iron ha...
International audiencePowder metallurgy associated to spark plasma sintering was used to elaborate n...
In this paper iron powders with two oxygen content (0.2 and 0.6% wt.) have been mechanically milled ...
Correlations between a materials microstructure and mechanical behavior are important for materials ...
In this paper iron powders with two oxygen content (0.2 and 0.6% wt.) have been mechanically milled...
The role of microstructure on material properties is a foundational principle in materials science. ...
The strength and ductility of bulk nanostructured and ultrafine-grained iron containing 0.39% oxygen...
The mechanical strengths of nano-scale individual crystal or nanopolycrystalline metals, and other d...
The classic data in the literature for the grain size dependence of the strength in many metals are ...
Ultrafine grained (UFG) metals processed by severe plastic deformation (SPD) are well known for thei...
Ultrafine grained (UFG) metals processed by severe plastic deformation (SPD) are well known for thei...
A bimodal ferrite grain size distribution was developed in the microstructure of a warm-rolled ultra...
In the transportation industry, weight reduction is essential in order to reduce fuel consumption. A...
International audienceThree model powder materials (i) atomized, (ii) atomized + milled, and, (iii) ...