Al-4Cu based composites reinforced by in-situ TiB2 and TiC particles were fabricated by the reaction of molten Al with halide salts and graphite. The processing conditions were controlled to get only TiB2 and TiC particles by suppressing the formation of brittle Al3Ti phase in these composites. The composites show significant improvement in strength without any significant loss of ductility. The mechanical properties are better than the conventional Al-SiC and Al-Al2O3 composites. The wear results indicate that the addition of reinforcement decreases the wear rate significantly and an increase in the amount of the reinforcement increases the wear resistance of the composites
Aluminium based in-situ metal matrix composites (MMCs) have better properties and performance when c...
Aluminium-based TiB 2 reinforced composite is a promising material to be used as brake drum material...
Aluminium-based TiB2 reinforced composite is a promising material to be used as brake drum material,...
Dry sliding wear of Al-4Cu-xTiB<SUB>2</SUB> (x = 0, 2.5, 5, 7.5 and 10 wt.%) in situ composites have...
In situ TiB2/Al-4.5Cu composites with different TiB2 particle amounts were fabricated by the salt-me...
The abrasive wear resistance of in situ Al-4Cu/TiB2 composites has been compared with that of the ma...
In this study, mechanical and wear properties of in-situ stir cast Al-TiB2 composites were investiga...
Various contents (0%, 2%, 5% and 8%,mass fraction,the same below) of TiB2/Al-4.5Cu composites were p...
Tensile and wear properties of aluminium (Al) based metal matrix composites (MMCs) was prepared by a...
Aluminium (Al) based in-situ metal matrix composites (MMCs) have better properties and performance w...
Al-7Si alloy reinforced with in situ TiB<SUB>2</SUB> particles was synthesized successfully by using...
Dry sliding wear of Al–4Cu–xTiB2 (x = 0, 2.5, 5, 7.5 and 10 wt.%) in situ composites have been studi...
Composite materials based on aluminum, reinforced withparticles of titanium carbide and intermetalli...
Al-4Cu-xTiB<SUB>2</SUB> (x = 2.5, 5, 7.5 and 10 wt.%) in situ composites have been successfully prep...
The abrasive wear resistance of in situ Al–4Cu/TiB2 composites has been compared with that of the ma...
Aluminium based in-situ metal matrix composites (MMCs) have better properties and performance when c...
Aluminium-based TiB 2 reinforced composite is a promising material to be used as brake drum material...
Aluminium-based TiB2 reinforced composite is a promising material to be used as brake drum material,...
Dry sliding wear of Al-4Cu-xTiB<SUB>2</SUB> (x = 0, 2.5, 5, 7.5 and 10 wt.%) in situ composites have...
In situ TiB2/Al-4.5Cu composites with different TiB2 particle amounts were fabricated by the salt-me...
The abrasive wear resistance of in situ Al-4Cu/TiB2 composites has been compared with that of the ma...
In this study, mechanical and wear properties of in-situ stir cast Al-TiB2 composites were investiga...
Various contents (0%, 2%, 5% and 8%,mass fraction,the same below) of TiB2/Al-4.5Cu composites were p...
Tensile and wear properties of aluminium (Al) based metal matrix composites (MMCs) was prepared by a...
Aluminium (Al) based in-situ metal matrix composites (MMCs) have better properties and performance w...
Al-7Si alloy reinforced with in situ TiB<SUB>2</SUB> particles was synthesized successfully by using...
Dry sliding wear of Al–4Cu–xTiB2 (x = 0, 2.5, 5, 7.5 and 10 wt.%) in situ composites have been studi...
Composite materials based on aluminum, reinforced withparticles of titanium carbide and intermetalli...
Al-4Cu-xTiB<SUB>2</SUB> (x = 2.5, 5, 7.5 and 10 wt.%) in situ composites have been successfully prep...
The abrasive wear resistance of in situ Al–4Cu/TiB2 composites has been compared with that of the ma...
Aluminium based in-situ metal matrix composites (MMCs) have better properties and performance when c...
Aluminium-based TiB 2 reinforced composite is a promising material to be used as brake drum material...
Aluminium-based TiB2 reinforced composite is a promising material to be used as brake drum material,...