为了验证最适合防冰应用的 PCM 我们选择了月桂酸甲酯、十五烷、十四烷、十三烷和十二烷作为 PCM。对这些 PCM 的热物理使用 DSC 对这些 PCM 的热物理性质进行了研究。负载表示复合材料的储能能力。随着 PCM 负载的增加,储能能力也会增加。储能能力也随之增加。然而,随着 PCM 也需要避免 PCM 的泄漏。
To verify the most suitable PCM for anti-icing applications, we selected methyl laurate, pentadecane, tetradecane, tridecane, and dodecane as PCMs. The thermophysical properties of these PCMs were investigated using DSC. The load of the PCM indicates the energy-storage capacity of the composite. As the load of the PCM increases, the energy-storage capacity increases as well. However, for an increasing amount of PCM, the leakage of PCM also needs to be avoided.