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Effect of Solution Treatment Time on Microstructure Evolution and Properties of Mg-3Y-4Nd-2Al Alloy.

Lili Zhao,Sicong Zhao, Yicheng Feng,Lei Wang, Rui Fan, Tao Ma,Liping Wang

Materials (Basel, Switzerland)(2023)

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Abstract
In order to explore the microstructure evolution of an Mg-RE alloy refined by Al during solution treatment, an Mg-3Y-4Nd-2Al alloy was treated at 545 °C for different time periods. Phase evolution of the alloy was investigated. After solution treatment, the Mg-RE eutectic phase in the Mg-3Y-4Nd-2Al alloy dissolves, the granular AlRE phase does not change, the acicular AlRE phase breaks into the short rod-like AlRE phase, and the lamellar AlRE phase precipitates in the grains. With the extension of solution time, the precipitated phase of the lamellar AlRE increased at first and then decreased, and its orientation relationship with the matrix is <112>Al2RE//<21¯1¯0>Mg and {111}Al2RE//{0002}Mg. The undissolved granular AlRE phase can improve the thermal stability of the alloy grain by pinning the grain boundary, and the grain size did not change after solution treatment. Solution treatment significantly improved the plasticity of the alloy. After 48 h of solution treatment, the elongation increased to 17.5% from 8.5% in the as-cast state.
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Key words
Mg-3Y-4Nd-2Al,grain size,phase evolution,plasticity,solution treatment
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