Sun Zheng, Li Linfeng, Cheng Xiaomin, Zhu Jiaoqun, Li Yuanyuan, Zhou Weibing
School of Materials Science and Engineering, Wuhan University of Technology, Wuhan 430070, China.
Materials (Basel). 2021 Jun 15;14(12):3296. doi: 10.3390/ma14123296.
This study focuses on the characterization of eutectic alloy, Mg-25%Cu-15%Zn with a phase change temperature of 452.6 °C, as a phase change material (PCM) for thermal energy storage (TES). The phase composition, microstructure, phase change temperature and enthalpy of the alloy were investigated after 100, 200, 400 and 500 thermal cycles. The results indicate that no considerable phase transformation and structural change occurred, and only a small decrease in phase transition temperature and enthalpy appeared in the alloy after 500 thermal cycles, which implied that the Mg-25%Cu-15%Zn eutectic alloy had thermal reliability with respect to repeated thermal cycling, which can provide a theoretical basis for industrial application. Thermal expansion and thermal conductivity of the alloy between room temperature and melting temperature were also determined. The thermophysical properties demonstrated that the Mg-25%Cu-15%Zn eutectic alloy can be considered a potential PCM for TES.
本研究聚焦于共晶合金Mg-25%Cu-15%Zn(相变温度为452.6℃)作为用于热能存储(TES)的相变材料(PCM)的特性。在100、200、400和500次热循环后,对该合金的相组成、微观结构、相变温度和焓进行了研究。结果表明,未发生显著的相变和结构变化,且在500次热循环后,合金中相变温度和焓仅出现了小幅下降,这意味着Mg-25%Cu-15%Zn共晶合金在反复热循环方面具有热可靠性,可为工业应用提供理论依据。还测定了该合金在室温至熔化温度之间的热膨胀和热导率。热物理性质表明,Mg-25%Cu-15%Zn共晶合金可被视为一种潜在的用于TES的PCM。