High stress abrasive wear behaviour of aluminium alloy (ADC-12)–SiC particle reinforced composites has been studied as a function of applied load, reinforcement size and volume fraction, and has been compared with that of the matrix alloy. Two different size ranges (25–50 and 50–80 μm) of SiC particles have been used for synthesizing ADC-12–SiC composite. The volume fraction of SiC particles has been varied in the ranges from 5 to 15 wt%. It has been noted that the abrasive wear rate of the alloy reduced considerably due to addition of SiC particle and the wear rate of composite decreases linearly with increase in SiC content. It has also been noted that the wear resistance of composite varies inversely with square of the reinforcement size...
An attempt has been made to understand the mechanism of material removal during two-body abrasive we...
In this study, abrasive wear behaviours of compacts produced by pressure infiltration technique were...
Aluminium-copper alloys fall into the category of aluminium-based alloys which attain high strength...
The wear behavior of SiC-particle reinforced aluminum matrix composites (MMC_P) was investigated by ...
WOS: 000175664000013The effect of the reinforcing particle size on the mechanical properties of 60 v...
This article presents an effect of matrix alloy and influence of SiC particle on the sliding wear ch...
In this study, the effects of SiC reinforcement volume fractions on hardness, porosity and abrasive ...
Three-body abrasive wear characteristics of a cast zinc–aluminium alloy—10 wt.% alumina particle com...
In this paper, effect of load, sliding speed, and particle size on the wear behavior of the Al alloy...
Aluminum hard particle composites were synthesized by the solidification processing technique and th...
Three-body abrasive wear characteristics of a cast zinc-aluminium alloy - 10 wt.% alumina particle c...
Three-body abrasive wear characteristics of a cast zinc–aluminium alloy—10 wt.% alumina particle com...
In the present study, an attempt was made to examine the synergic effect of SiC particle reinforceme...
In the present paper two-body abrasive wear behaviour of the cast aluminium alloy and aluminium allo...
This paper describes the results of dry sliding wear tests of aluminium alloy (Al–Zn–Mg) and alumini...
An attempt has been made to understand the mechanism of material removal during two-body abrasive we...
In this study, abrasive wear behaviours of compacts produced by pressure infiltration technique were...
Aluminium-copper alloys fall into the category of aluminium-based alloys which attain high strength...
The wear behavior of SiC-particle reinforced aluminum matrix composites (MMC_P) was investigated by ...
WOS: 000175664000013The effect of the reinforcing particle size on the mechanical properties of 60 v...
This article presents an effect of matrix alloy and influence of SiC particle on the sliding wear ch...
In this study, the effects of SiC reinforcement volume fractions on hardness, porosity and abrasive ...
Three-body abrasive wear characteristics of a cast zinc–aluminium alloy—10 wt.% alumina particle com...
In this paper, effect of load, sliding speed, and particle size on the wear behavior of the Al alloy...
Aluminum hard particle composites were synthesized by the solidification processing technique and th...
Three-body abrasive wear characteristics of a cast zinc-aluminium alloy - 10 wt.% alumina particle c...
Three-body abrasive wear characteristics of a cast zinc–aluminium alloy—10 wt.% alumina particle com...
In the present study, an attempt was made to examine the synergic effect of SiC particle reinforceme...
In the present paper two-body abrasive wear behaviour of the cast aluminium alloy and aluminium allo...
This paper describes the results of dry sliding wear tests of aluminium alloy (Al–Zn–Mg) and alumini...
An attempt has been made to understand the mechanism of material removal during two-body abrasive we...
In this study, abrasive wear behaviours of compacts produced by pressure infiltration technique were...
Aluminium-copper alloys fall into the category of aluminium-based alloys which attain high strength...