Aging response investigation of 2017 Al alloy processed by gravity and squeeze casting
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Najib Souissi
Abstract
Suitable pressure levels and heat treatment of casting wrought aluminum alloy are key process parameters in making components with better metallurgical properties. For this purpose, the effect of applied pressure and aging treatment on the microstructure and the mechanical properties of an industrial 2017 aluminum alloy manufactured by gravity and direct squeeze casting processes are investigated in this paper. After treating to various aging states, the correlation between these parameters and the characteristics of the cast alloy has been analyzed and discussed.
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Articles in the same Issue
- Original Contributions
- Thermodynamic re-assessment of the binary Cr–Ta system down to 0 K
- Thermodynamic analysis of precipitation behavior of M23C6 carbide in Nimonic 105 superalloy
- Texture evolution of magnesium alloy AZ31 during high temperature tensile deformation
- Effect of reciprocating extrusion temperature and passes on the microstructural evolution of Mg-5Sn-1Si-0.8Y alloy
- Constitutive modeling of flow behavior of CuZn39Pb2 alloy under hot working conditions
- The effect of austempering on the microstructure and mechanical properties of PM Fe-0.8c steel aloyed with copper and nickel
- Enhancing the microstructure and grain refining performance of Al-5Ti-1B master alloy by a gas atomization process
- Aging response investigation of 2017 Al alloy processed by gravity and squeeze casting
- Die-casting aluminum alloys for high-efficiency thermal radiation components
- Wear and corrosion of in-situ formed Al3Zr aluminide reinforced Al3003 surface composite
- Magnesium aluminate spinel ceramics infiltrated with lanthanum-glass for dental applications
- Short Communications
- Influence of pre-rolling on microstructural evolution of non-basal textured magnesium alloy