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首页> 外文期刊>RSC Advances >Preparation and thermal properties of crosslinked polyurethane/lauric acid composites as novel form stable phase change materials with a low degree of supercooling
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Preparation and thermal properties of crosslinked polyurethane/lauric acid composites as novel form stable phase change materials with a low degree of supercooling

机译:交联型聚氨酯/月桂酸复合材料的制备和热性能

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In this article, a series of crosslinked polyurethane/lauric acid composites was prepared as form stable phase change materials (FSPCMs) through a brief and solvent-free method. In the FSPCMs, lauric acid functioned as a phase change substance, and crosslinked polyurethane simultaneously functioned as a supporting material and phase change substance. Compared with traditional supporting materials in FSPCMs, the crosslinked polyurethane here obviously reduces the loss of latent heat from the supporting material and reduces the degree of supercooling of the obtained FSPCMs. The obtained FSPCMs were extensively studied by Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), X-ray diffraction (XRD), polarizing microscopy (POM), differential scanning calorimetry (DSC), thermal cycling tests and thermogravimetric analysis (TGA). The FTIR confirmed the chemical structure of the obtained FSPCMs. The XRD and POM results indicated that the FSPCMs exhibit comprehensive crystalline properties of polyurethane and lauric acid. DSC data showed that the FSPCMs have superior phase change properties with the phase change temperature and latent heat in the range of 26–38 °C and 90–131 J g?1. Moreover, low or no supercooling of the obtained FSPCMs was detected by DSC. The phase change temperature is suitable in the fields of solar energy saving and building engineering. Thermal cycling tests and thermogravimetric analysis (TGA) proved the good thermal reliability and stability of the obtained FSPCMs.
机译:在本文中,通过一种简短且无溶剂的方法,制备了一系列交联的聚氨酯/月桂酸复合材料,以形成稳定的相变材料(FSPCM)。在FSPCM中,月桂酸起相变物质的作用,而交联聚氨酯同时起支撑材料和相变物质的作用。与FSPCM中的传统支撑材料相比,此处的交联聚氨酯明显减少了来自支撑材料的潜热损失,并降低了所获得的FSPCM的过冷度。通过傅里叶变换红外光谱(FTIR),扫描电子显微镜(SEM),X射线衍射(XRD),偏光显微镜(POM),差示扫描量热法(DSC),热循环测试和热重分析( TGA)。 FTIR证实了所得FSPCM的化学结构。 XRD和POM结果表明,FSPCM具有聚氨酯和月桂酸的全面结晶性能。 DSC数据表明,在相变温度和潜热范围为26–38°C和90–131 J g ?1 范围内,FSPCM具有优异的相变特性。 。此外,通过DSC检测到所得FSPCM的过冷程度低或没有。相变温度适用于太阳能节能和建筑工程领域。热循环测试和热重分析(TGA)证明了所获得的FSPCM具有良好的热可靠性和稳定性。

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