相变微胶囊对晶须增强磷石膏基复合材料性能的影响

IF 1.8 4区 材料科学 Q4 GREEN & SUSTAINABLE SCIENCE & TECHNOLOGY
Jingdong Wang, Peng Liu, Dewen Kong, Yuan Li, Yaxin Yang, Yongfa Wang, Mingsheng Chen, Shuangying Yang
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引用次数: 0

摘要

将 PCMs 应用于建筑材料制备的相变储能建筑材料兼具普通建筑材料和 PCMs 的优点,复合材料有助于调节室内温度,而 mPCMs 技术的引入可以弥补传统 PCMs 的不足。因此,本文在晶须增强型β-HPG基复合材料中掺入两种不同的mPCMs,制备出一种新型轻质保温储能建筑材料,在提高建筑材料热工性能的同时,也在一定程度上提高了磷石膏的利用率。本研究通过性能测试研究了新型建筑材料的力学性能、导热性能和储能性能,并与未掺入 PCMs 的 β-HPG 基复合材料进行了比较,结果表明两种 PCMs 都能提高材料的力学强度。mPCMs 的加入提高了复合材料的热导率,降低了吸水性。此外,TG-DSC 分析表明,mPCM 的加入改善了复合材料的蓄热性能,两种 mPCM 及其复合材料具有良好的热稳定性,可用于建筑材料。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Effect of phase change microcapsules on the properties of whisker-reinforced phosphogypsum-based composites
Phase change energy storage building materials prepared by applying PCMs to building materials have the advantages of both common building materials and PCMs, the composites can help to regulate the indoor temperature, while the introduction of mPCMs technology can make up for the shortcomings of traditional PCMs. Therefore, in this paper, two different mPCMs are blended into the whisker-reinforced β-HPG-based composites to prepare a new lightweight thermal insulation and energy storage building material, which improves the thermal performance of the building material while improving the utilization rate of phosphogypsum to a certain extent. In this study, the mechanical, thermal conductivity and energy storage properties of the new building material were investigated through performance tests and compared with β-HPG-based composites without doped PCMs, The results showed that both PCMs could improve the mechanical strength of the materials. The incorporation of mPCMs increased the thermal conductivity and decreased the water absorption of the composites. In addition, the TG-DSC analysis showed that the addition of mPCMs improved the thermal storage properties of the composites, and the two mPCMs and their composites have good thermal stability and can be used in construction materials.
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来源期刊
Green Materials
Green Materials Environmental Science-Pollution
CiteScore
3.50
自引率
15.80%
发文量
24
期刊介绍: The focus of Green Materials relates to polymers and materials, with an emphasis on reducing the use of hazardous substances in the design, manufacture and application of products.
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