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三水醋酸钠-乙二醇复合相变材料的制备及其在热舒适和治疗应用中的增强热物理性能。

Development of sodium acetate trihydrate-ethylene glycol composite phase change materials with enhanced thermophysical properties for thermal comfort and therapeutic applications.

机构信息

Heat Management Group, Defence Laboratory Jodhpur, Rajasthan, 342011, India.

Department of Physics & Centre for Energy, Indian Institute of Technology Jodhpur, Rajasthan, 342011, India.

出版信息

Sci Rep. 2017 Jul 12;7(1):5203. doi: 10.1038/s41598-017-05310-3.

Abstract

The heat packs using phase change materials (PCMs) are designed for possible applications such as body comfort and medical applications under adverse situations. The development and performance of such heat packs rely on thermophysical properties of PCMs such as latent heat, suitable heat releasing temperature, degree of supercooling, effective heat releasing time, crystallite size, stability against spontaneous nucleation in metastable supercooled liquid state and thermal stability during heating and cooling cycles. Such PCMs are rare and the available PCMs do not exhibit such properties simultaneously to meet the desired requirements. The present work reports a facile approach for the design and development of ethylene glycol (EG) and aqueous sodium acetate trihydrate (SAT) based composite phase change materials, showing these properties simultaneously. The addition of 2-3 wt% EG in aqueous SAT enhances the softness of SAT crystallites, its degree of supercooling and most importantly the effective heat releasing time by ~10% with respect to aqueous SAT material. In addition, the maximum heat releasing temperature of aqueous SAT has been tailored from 56.5 °C to 55 °C, 54.9 °C, 53.5 °C, 51.8 °C and 43.2 °C using 2%, 3%, 5%, 7% and 10 wt% EG respectively, making the aqueous SAT-EG composite PCMs suitable for desired thermal applications.

摘要

相变材料(PCM)的热包设计用于可能的应用,例如在不利情况下的身体舒适和医疗应用。这种热包的开发和性能依赖于 PCM 的热物理性质,例如潜热、合适的放热温度、过冷度、有效放热时间、晶粒尺寸、亚稳过冷液体状态下自发成核的稳定性以及加热和冷却循环期间的热稳定性。这样的 PCM 很少,并且可用的 PCM 不能同时表现出这些特性以满足所需的要求。本工作报告了一种设计和开发乙二醇(EG)和三水合乙酸钠(SAT)基复合相变材料的简便方法,同时显示出这些特性。在水性 SAT 中添加 2-3wt%的 EG 可以提高 SAT 晶体的柔软性、过冷度,最重要的是有效放热时间提高了约 10%,相对于水性 SAT 材料。此外,通过分别使用 2%、3%、5%、7%和 10wt%的 EG,使水性 SAT 的最大放热温度从 56.5°C 分别调至 55°C、54.9°C、53.5°C、51.8°C 和 43.2°C,使得水性 SAT-EG 复合 PCM 适合所需的热应用。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/3c50/5507881/7c1f508373e3/41598_2017_5310_Fig1_HTML.jpg

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