International audienceTwo aluminium alloys with 6 wt% TiB2 particles are studied for applications where increased wear resistance and mechanical strength at high temperature are required. The incorporation of hard ceramic particles has a strong influence on the microstructure and properties of the alloys. TiB2 particles play an important role in the nucleation of the different phases of the alloys during solidification, and in the reduction of grain size and porosity. The solidification patterns of Al-Si7Mg0.3 + TiB2 (6 wt%) and Al-Cu5MgTi + TiB2 (6 wt%) materials are compared to their corresponding non-reinforced alloys, and the microstructures are analyzed
The abrasive wear resistance of in situ Al–4Cu/TiB2 composites has been compared with that of the ma...
Aluminum, the most common metallic element in the earth's crust, offers structural materials with hi...
AbstractMetal matrix composites were fabricated in an Al-6Cu-0.2Mg-1Mn matrix reinforced by particul...
Two aluminium alloys with 6 wt% TiB2 particles are studied for applications where increased wear res...
Le travail a été dédié à l'étude de l'influence de particules de di borure de titane (TiB2) sur la s...
The paper describes the influence of 5 wt % titanium diboride (TiB2) particles on the microstructure...
Micro-addition of alloying elements is not only an effective method to improve the overall performan...
Metal matrix composites (MMCs) have potential application in automobile and aerospace industries. Th...
Ce travail est dédié á l'étude de l'influence de nano-particules de alumina (Al2O3) et de di-borure ...
In the present study, aluminum alloys of the Al-Mg system with titanium diboride particles of differ...
The work has been focused on the study of the influence of TiB2 and Al2O3 nano-particles (up to 1 wt...
Aluminum alloys with ceramic reinforced particulates are made prospective in aerospace, transportati...
The addition of ceramic particles to aluminum based alloys can substantially improve mechanical prop...
Microstructural, physical and mechanical properties of Al–20 wt% Si matrix alloy powders and those r...
The nucleation undercooling of TiB2/7075 Al matrix composites, the microstructure observed after sol...
The abrasive wear resistance of in situ Al–4Cu/TiB2 composites has been compared with that of the ma...
Aluminum, the most common metallic element in the earth's crust, offers structural materials with hi...
AbstractMetal matrix composites were fabricated in an Al-6Cu-0.2Mg-1Mn matrix reinforced by particul...
Two aluminium alloys with 6 wt% TiB2 particles are studied for applications where increased wear res...
Le travail a été dédié à l'étude de l'influence de particules de di borure de titane (TiB2) sur la s...
The paper describes the influence of 5 wt % titanium diboride (TiB2) particles on the microstructure...
Micro-addition of alloying elements is not only an effective method to improve the overall performan...
Metal matrix composites (MMCs) have potential application in automobile and aerospace industries. Th...
Ce travail est dédié á l'étude de l'influence de nano-particules de alumina (Al2O3) et de di-borure ...
In the present study, aluminum alloys of the Al-Mg system with titanium diboride particles of differ...
The work has been focused on the study of the influence of TiB2 and Al2O3 nano-particles (up to 1 wt...
Aluminum alloys with ceramic reinforced particulates are made prospective in aerospace, transportati...
The addition of ceramic particles to aluminum based alloys can substantially improve mechanical prop...
Microstructural, physical and mechanical properties of Al–20 wt% Si matrix alloy powders and those r...
The nucleation undercooling of TiB2/7075 Al matrix composites, the microstructure observed after sol...
The abrasive wear resistance of in situ Al–4Cu/TiB2 composites has been compared with that of the ma...
Aluminum, the most common metallic element in the earth's crust, offers structural materials with hi...
AbstractMetal matrix composites were fabricated in an Al-6Cu-0.2Mg-1Mn matrix reinforced by particul...