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Fabrication Structure and Thermal Properties of Mg–Cu Alloys as High Temperature PCM for Thermal Energy Storage

机译:Mg-Cu合金的制造结构和热性能作为热能储存的高温PCM

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摘要

This work studied the thermophysical properties of Mg-24%Cu, Mg-31%Cu, and Mg-45%Cu (wt.%) alloys to comprehensively consider the possibility of using them as thermal energy storage (TES) phase change materials (PCMs) used at high temperatures. The microstructure, phase composition, phase change temperatures, and enthalpy of these alloys were investigated by an electron probe micro analyzer (EPMA), X-ray diffraction (XRD), and differential scanning calorimetry (DSC). The XRD and EPMA results indicated that the binary eutectic phase composed of α-Mg and Mg2Cu exists in the microstructure of the prepared Mg–Cu series alloys. The microstructure of Mg-24%Cu and Mg-31%Cu is composed of α-Mg matrix and binary eutectic phases, and Mg-45%Cu is composed of primary Mg2Cu and binary eutectic phases. The number of eutectic phases is largest in Mg-31%Cu alloy. The DSC curves indicated that the onset melting temperature of Mg-24%Cu, Mg-31%Cu, and Mg-45%Cu alloys were 485, 486, and 485 °C, and the melting enthalpies were 152, 215, and 91 J/g. Thermal expansion and thermal conductivity were also determined, revealing that the Mg–Cu alloys had a low linear thermal expansion coefficient and high thermal conductivity with respect to increasing temperatures. In conclusion, the thermal properties demonstrated that the Mg–Cu alloys can be considered as a potential PCM for TES.
机译:该工作研究了Mg-24%Cu,Mg-31%Cu和Mg-45%Cu(wt.%)合金的热物理性质,以全面地考虑使用它们作为热能储存(TES)相变材料的可能性( PCM)在高温下使用。通过电子探针微分析仪(EPMA),X射线衍射(XRD)和差示扫描量热法(DSC)研究了这些合金的微观结构,相位组成,相变温度和焓。 XRD和EPMA结果表明,由α-Mg和Mg2Cu组成的二元共晶相存在于制备的Mg-Cu系列合金的微观结构中。 Mg-24%Cu和Mg-31%Cu的微观结构由α-Mg基质和二元共晶相组成,Mg-45%Cu由初级Mg2Cu和二元共晶相组成。共晶相的数量是Mg-31%Cu合金中最大的。 DSC曲线表明Mg-24%Cu,Mg-31%Cu和Mg-45%Cu合金的起始熔融温度为485,486和485℃,熔点焓为152,215和91 j / g。还确定了热膨胀和导热率,揭示了Mg-Cu合金的线性热膨胀系数和高导热率相对于增加的温度。总之,热性能证明了Mg-Cu合金可以被认为是TES的潜在PCM。

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