Zhou Dongyi, Xiao Shuaizhe, Xiao Xianghua
School of Mechanical and Energy Engineering, Shaoyang University, Shaoyang 422000, China.
Key Laboratory of Hunan Province for Efficient Power System and Intelligent Manufacturing, Shaoyang University, Shaoyang 422000, China.
ACS Omega. 2023 Feb 21;8(9):8596-8604. doi: 10.1021/acsomega.2c07749. eCollection 2023 Mar 7.
A series of fatty acid binary eutectic mixture/expanded graphite (FABEM/EG) composite phase change materials (CPCMs) were prepared by absorbing a liquid FABEM into the EG. The thermal properties, thermostability, and thermoreliability were determined by differential scanning calorimetry (DSC), thermogravimetric analysis (TGA), and thermal cycling tests, respectively. Fourier transform infrared spectrometry (FT-IR) and scanning electron microscopy (SEM) were used to analyze the chemical structure and microstructure, respectively. Thermal conductivity measurements and heat storage/release experiments were carried out to study the heat transfer performance. The DSC test results show that the phase transition temperatures and latent heat of these CPCMs are in the range of 17.8-55.2 °C and 134.9-176.2 J/g, respectively. FT-IR analysis indicates there is only a simple physical adsorption between EG and the PCM and no chemical reaction occurs. SEM results show that the fatty acid binary eutectic mixtures are well adsorbed in the pores of EG, and EG can provide a certain mechanical strength and prevent phase change materials from leaking. The thermal conductivity measurement and heat storage/release experiment show that the addition of EG greatly improves the thermal conductivities of the CPCMs. TGA test results and thermal cycle tests show that the CPCMs have excellent thermal stability and long-term cycling thermal reliability.
通过将液态脂肪酸二元共晶混合物(FABEM)吸附到膨胀石墨(EG)中,制备了一系列脂肪酸二元共晶混合物/膨胀石墨(FABEM/EG)复合相变材料(CPCM)。分别通过差示扫描量热法(DSC)、热重分析(TGA)和热循环测试来测定其热性能、热稳定性和热可靠性。分别使用傅里叶变换红外光谱(FT-IR)和扫描电子显微镜(SEM)来分析化学结构和微观结构。进行了热导率测量和储热/放热实验以研究传热性能。DSC测试结果表明,这些CPCM的相变温度和潜热分别在17.8 - 55.2℃和134.9 - 176.2 J/g范围内。FT-IR分析表明,EG与相变材料之间仅存在简单的物理吸附,未发生化学反应。SEM结果表明,脂肪酸二元共晶混合物很好地吸附在EG的孔隙中,并且EG可以提供一定的机械强度并防止相变材料泄漏。热导率测量和储热/放热实验表明,EG的添加大大提高了CPCM的热导率。TGA测试结果和热循环测试表明,CPCM具有优异的热稳定性和长期循环热可靠性。