Abstract This study investigated dry sliding wear properties of AZ31 magnesium alloy and B4C-reinforced AZ31 composites containing 5, 10, and 20 wt.% B4C with bimodal sizes under different loadings (10–80 N) at various sliding speeds (0.1–1 m/s) via the pin-on-disc configuration. Microhardness evaluations showed that when the distribution of B4C particles was uniform the hardness of the composites increased by enhancing the reinforcement content. The unreinforced alloy and the composite samples were examined to determine the wear mechanism maps and identify the dominant wear mechanisms in each wear condition and reinforcement content. For this purpose, wear rates and friction coefficients were recorded during the wear tests and worn surface...
AbstractIn the present study, wear test has been performed on wrought magnesium alloy AZ31 samples. ...
Reinforcement of magnesium alloys with ceramic particulates has engineered a new family of materials...
Reinforcement of magnesium alloys with ceramic particulates has engineered a new family of materials...
This study investigated dry sliding wear properties of AZ31 magnesium alloy and B4C-reinforced AZ31 ...
AbstractThe present work concerns with correlation between microstructure and wear behavior of AZX91...
2nd International Congress on Advances in Applied Physics and Materials Science (APMAS) -- APR 26-29...
This paper deals with the wear and mechanical (tensile, compressive, and microhardness) properties o...
164–169This paper deals with the wear and mechanical (tensile, compressive, and microhardness) prope...
AbstractThe present research deals with development and characterisation of magnesium–SiC–Gr hybrid ...
AbstractThis present study deals with the fabrication of aluminium/boron carbide metal matrix compos...
AbstractThis paper investigates the tribological characteristics of magnesium (Mg) composites prepar...
In this study, the effects of B4C and SiC particle reinforcements on wear properties of magnesium ma...
In the present paper, the statistical investigation on wear behavior of magnesium alloy (AZ91) hybri...
In automotive and aerospace fields, the use of lightweight materials is required. Magnesium and its ...
Reinforcement of magnesium alloys with ceramic particulates has engineered a new family of materials...
AbstractIn the present study, wear test has been performed on wrought magnesium alloy AZ31 samples. ...
Reinforcement of magnesium alloys with ceramic particulates has engineered a new family of materials...
Reinforcement of magnesium alloys with ceramic particulates has engineered a new family of materials...
This study investigated dry sliding wear properties of AZ31 magnesium alloy and B4C-reinforced AZ31 ...
AbstractThe present work concerns with correlation between microstructure and wear behavior of AZX91...
2nd International Congress on Advances in Applied Physics and Materials Science (APMAS) -- APR 26-29...
This paper deals with the wear and mechanical (tensile, compressive, and microhardness) properties o...
164–169This paper deals with the wear and mechanical (tensile, compressive, and microhardness) prope...
AbstractThe present research deals with development and characterisation of magnesium–SiC–Gr hybrid ...
AbstractThis present study deals with the fabrication of aluminium/boron carbide metal matrix compos...
AbstractThis paper investigates the tribological characteristics of magnesium (Mg) composites prepar...
In this study, the effects of B4C and SiC particle reinforcements on wear properties of magnesium ma...
In the present paper, the statistical investigation on wear behavior of magnesium alloy (AZ91) hybri...
In automotive and aerospace fields, the use of lightweight materials is required. Magnesium and its ...
Reinforcement of magnesium alloys with ceramic particulates has engineered a new family of materials...
AbstractIn the present study, wear test has been performed on wrought magnesium alloy AZ31 samples. ...
Reinforcement of magnesium alloys with ceramic particulates has engineered a new family of materials...
Reinforcement of magnesium alloys with ceramic particulates has engineered a new family of materials...