Constant stress tensile creep tests were conducted to failure at temperatures of 423 and 473 K on an AZ 91 (Mg–9wt.%Al–1wt.%Zn) alloy reinforced with 20 vol.% Al2O3 short fibres and on an unreinforced AZ 91 matrix alloy. The creep resistance of the reinforced material was considerably improved by comparison with the matrix alloy. A microstructural investigation revealed that the most frequent morphology of the ?-phase precipitates in the composite is continuous Mg17Al12 platelets. Detailed investigations using transmission electron microscopy indicate that the matrix microstructure has no significant influence on the creep properties of these two materials. This result confirms the proposal that the creep strengthening of the composite is c...
The desire for fuel efficient, yet high performance, vehicles in the automotive industry has resulte...
In the present work, the creep behavior of a metal-matrix-composite was investigated under thermal c...
During creep, magnesium alloys undergo microstructural changes due to temperature and stress. These ...
Constant stress tensile creep tests were conducted on an AZ 91–20 vol.% Al2O3 short fiber composite ...
A comparison is made between the creep characteristics of two squeeze-cast magnesium alloys (AZ 91 a...
This work report some experimental results obtained in an investigation of the high temperature cree...
Discontinuously reinforced metal-matrix composites (MMCs) have extensive potential for use in struct...
The influence of 0.2 wt% Sc addition on the microstructure and creep characteristics of a cast AZ91 ...
The present study seeks the feasibility of using short carbon fibres recycled from polymer matrix co...
A study has been made on the tensile and creep properties of squeeze and die cast Mg alloys, with em...
The creep behaviour of a creep-resistant AE42 magnesium alloy reinforced with Saffil short fibres ...
A study has been made on the tensile and creep properties of squeeze and die cast Mg alloys, with em...
A growing impetus to enhance our understanding of the behavior of magnesium-based alloys for use in ...
The creep behaviour of a creep-resistant AE42 magnesium alloy has been examined in the temperature r...
In this study, the recycled short carbon fiber (CF)-reinforced magnesium matrix composites were fabr...
The desire for fuel efficient, yet high performance, vehicles in the automotive industry has resulte...
In the present work, the creep behavior of a metal-matrix-composite was investigated under thermal c...
During creep, magnesium alloys undergo microstructural changes due to temperature and stress. These ...
Constant stress tensile creep tests were conducted on an AZ 91–20 vol.% Al2O3 short fiber composite ...
A comparison is made between the creep characteristics of two squeeze-cast magnesium alloys (AZ 91 a...
This work report some experimental results obtained in an investigation of the high temperature cree...
Discontinuously reinforced metal-matrix composites (MMCs) have extensive potential for use in struct...
The influence of 0.2 wt% Sc addition on the microstructure and creep characteristics of a cast AZ91 ...
The present study seeks the feasibility of using short carbon fibres recycled from polymer matrix co...
A study has been made on the tensile and creep properties of squeeze and die cast Mg alloys, with em...
The creep behaviour of a creep-resistant AE42 magnesium alloy reinforced with Saffil short fibres ...
A study has been made on the tensile and creep properties of squeeze and die cast Mg alloys, with em...
A growing impetus to enhance our understanding of the behavior of magnesium-based alloys for use in ...
The creep behaviour of a creep-resistant AE42 magnesium alloy has been examined in the temperature r...
In this study, the recycled short carbon fiber (CF)-reinforced magnesium matrix composites were fabr...
The desire for fuel efficient, yet high performance, vehicles in the automotive industry has resulte...
In the present work, the creep behavior of a metal-matrix-composite was investigated under thermal c...
During creep, magnesium alloys undergo microstructural changes due to temperature and stress. These ...