The effect on the mechanical properties at room temperature of Li and Ag additions to the Fe–Al (40 at.%)-based alloy produced by conventional casting were evaluated in this work. Alloying elements were added into a previously molted Fe–(40 at.%) aluminum-based alloy, stirred, and then cast into sand molds to directly produce tensile specimens. To determine the mechanical properties, tensile tests and hardness measurements were performed. The additions of both Ag and Li showed an increase in ductility and tensile strength of the intermetallic alloys. In addition, hardness was substantially increased with the Li addition. Lithium additions promoted a solid solution hardening, whereas 3 at.% of Ag additions promoted ductility due to a micr...
A series of aluminum-lithium or lightweight alloys containing up to 5 wt. % lithium was rapidly soli...
The microstructure and mechanical properties of the ultrahigh strength Al-Cu-Li-Ag-Mg alloy, Weldali...
The Fe-based Ti+Ni3Al+Al2O3 powder mixture is mechanically alloyed in a Spex ball mill. Composites w...
The effect on the mechanical properties at room temperature of Li and Ag additions to the Fe–Al (40 ...
As a major impurity element in aluminium-lithium (Al-Li) alloys, iron (Fe) reduces formability, frac...
Although utilization of lightweight aluminum alloys in transportation industry reduced harmful emiss...
Aluminium-lithium alloys hold promise of providing a breakthrough response to the crying need for li...
In the context of the development of new lightweight materials, Al-alloyed cast irons have a great p...
The continuous demand of the aerospace industry for structural components with increased power-to-we...
The intention of designing of innovative engineering materials with advanced properties found its ro...
In this study, the effect of small additions of lithium on the microstructure and morphology of Fe-c...
AbstractThe effect of α-Fe and β-Fe intermetallics concentration and morphology as well as α-Al morp...
Excellent high temperature properties of intermetallic aluminides recommend their use for structural...
The article of record as published may be found at http://dx.doi.org/10.1007/s11661-008-9698-8Fricti...
Aluminium-lithium alloys such as 8090 (Al-Li-Cu-Mg) have been developed with the aim of using them i...
A series of aluminum-lithium or lightweight alloys containing up to 5 wt. % lithium was rapidly soli...
The microstructure and mechanical properties of the ultrahigh strength Al-Cu-Li-Ag-Mg alloy, Weldali...
The Fe-based Ti+Ni3Al+Al2O3 powder mixture is mechanically alloyed in a Spex ball mill. Composites w...
The effect on the mechanical properties at room temperature of Li and Ag additions to the Fe–Al (40 ...
As a major impurity element in aluminium-lithium (Al-Li) alloys, iron (Fe) reduces formability, frac...
Although utilization of lightweight aluminum alloys in transportation industry reduced harmful emiss...
Aluminium-lithium alloys hold promise of providing a breakthrough response to the crying need for li...
In the context of the development of new lightweight materials, Al-alloyed cast irons have a great p...
The continuous demand of the aerospace industry for structural components with increased power-to-we...
The intention of designing of innovative engineering materials with advanced properties found its ro...
In this study, the effect of small additions of lithium on the microstructure and morphology of Fe-c...
AbstractThe effect of α-Fe and β-Fe intermetallics concentration and morphology as well as α-Al morp...
Excellent high temperature properties of intermetallic aluminides recommend their use for structural...
The article of record as published may be found at http://dx.doi.org/10.1007/s11661-008-9698-8Fricti...
Aluminium-lithium alloys such as 8090 (Al-Li-Cu-Mg) have been developed with the aim of using them i...
A series of aluminum-lithium or lightweight alloys containing up to 5 wt. % lithium was rapidly soli...
The microstructure and mechanical properties of the ultrahigh strength Al-Cu-Li-Ag-Mg alloy, Weldali...
The Fe-based Ti+Ni3Al+Al2O3 powder mixture is mechanically alloyed in a Spex ball mill. Composites w...