Formation of enclosed precipitates structure in a novel Mg-RE alloy to enhance high-temperature mechanical properties
Materials Letters(2022)
Abstract
The influences of Ag addition and heat treatment on precipitates evolution and high-temperature mechanical properties of a novel Mg-6Gd-2Y-Nd-0.4Zn-0.5Zr (GWN) alloy were investigated. The addition of Ag induced the precipitation of basal gamma '' phase and prismatic beta ' phase simultaneously resulting in the formation of special enclosed precipitates structure. Compared with the alloy without Ag, the peak hardness increased by 8.9%, while the ultimate tensile strength, yield strength and elongation at 250 degrees C increased by 24.8%, 23.9% and 7.6%, respectively, by adding 1.5 wt% Ag. The enclosed precipitates structure can effectively block dislocation slip, which is the primary reason for enhancing mechanical properties. Hence, the construction of the special enclosed precipitates structure provides an effective approach for designing and developing heat-resistant Mg alloys for aerospace applications.
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Key words
Mg-RE-Ag alloy,Microstructure,Age-hardening,Heat treatment
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