The abrasive wear resistance of in situ Al-4Cu/TiB2 composites has been compared with that of the matrix Al-4Cu alloy. The influence of wt.% of TiB2 particles, applied load and abrasive particle size has been studied. The test results indicate that the abrasive wear resistance of Al-4Cu alloy is significantly improved with TiB2 particles. Abrasive wear rate is inversely proportional to hardness of the in situ composites. Although the reinforcement particles (<2 μm) are smaller than the abrasive particle size (30 and 90 μm), the TiB2 reinforcement effectively improves the abrasive wear resistance of the matrix Al-4Cu alloy. The wear rate of Al-4Cu alloy and composites increases with increase in applied load and abrasive particle size
The present paper deals with the study of microstructure and wear characteristics of TiB2 reinforced...
The tribological behavior of sintered aluminum metal matrix composites (MMCs) containing various vol...
Particulates dispersed aluminium matrix composites are the major substitute for variety of applicati...
The abrasive wear resistance of in situ Al–4Cu/TiB2 composites has been compared with that of the ma...
Dry sliding wear of Al-4Cu-xTiB<SUB>2</SUB> (x = 0, 2.5, 5, 7.5 and 10 wt.%) in situ composites have...
Dry sliding wear of Al–4Cu–xTiB2 (x = 0, 2.5, 5, 7.5 and 10 wt.%) in situ composites have been studi...
Al-4Cu based composites reinforced by in-situ TiB2 and TiC particles were fabricated by the reaction...
This study pertains to observations made on the abrasive wear response of Al-TiC composites under va...
In situ TiB2/Al-4.5Cu composites with different TiB2 particle amounts were fabricated by the salt-me...
Tensile and wear properties of aluminium (Al) based metal matrix composites (MMCs) was prepared by a...
Solid particle erosion wear behaviour of A356 and A356/TiB2in situ composites has been studied. A356...
In the present investigation, Aluminium based metal matrix composites containing Titanium Dioxide (...
An Al–Cu (2014 Al) alloy reinforced with 10 vol.% Al2O3 particles (size: 75–150 μm), prepared by liq...
In this study, mechanical and wear properties of in-situ stir cast Al-TiB2 composites were investiga...
In this study, titanium boride (TiB) was used to make Al-TiB composites. The contents of TiB adde...
The present paper deals with the study of microstructure and wear characteristics of TiB2 reinforced...
The tribological behavior of sintered aluminum metal matrix composites (MMCs) containing various vol...
Particulates dispersed aluminium matrix composites are the major substitute for variety of applicati...
The abrasive wear resistance of in situ Al–4Cu/TiB2 composites has been compared with that of the ma...
Dry sliding wear of Al-4Cu-xTiB<SUB>2</SUB> (x = 0, 2.5, 5, 7.5 and 10 wt.%) in situ composites have...
Dry sliding wear of Al–4Cu–xTiB2 (x = 0, 2.5, 5, 7.5 and 10 wt.%) in situ composites have been studi...
Al-4Cu based composites reinforced by in-situ TiB2 and TiC particles were fabricated by the reaction...
This study pertains to observations made on the abrasive wear response of Al-TiC composites under va...
In situ TiB2/Al-4.5Cu composites with different TiB2 particle amounts were fabricated by the salt-me...
Tensile and wear properties of aluminium (Al) based metal matrix composites (MMCs) was prepared by a...
Solid particle erosion wear behaviour of A356 and A356/TiB2in situ composites has been studied. A356...
In the present investigation, Aluminium based metal matrix composites containing Titanium Dioxide (...
An Al–Cu (2014 Al) alloy reinforced with 10 vol.% Al2O3 particles (size: 75–150 μm), prepared by liq...
In this study, mechanical and wear properties of in-situ stir cast Al-TiB2 composites were investiga...
In this study, titanium boride (TiB) was used to make Al-TiB composites. The contents of TiB adde...
The present paper deals with the study of microstructure and wear characteristics of TiB2 reinforced...
The tribological behavior of sintered aluminum metal matrix composites (MMCs) containing various vol...
Particulates dispersed aluminium matrix composites are the major substitute for variety of applicati...