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Elaboration of a composite material based on plaster reinforced with phase change material/Oakum Fiber: physical, thermal and mechanical properties

机译:基于相变材料/栎木纤维的石膏加固复合材料:物理,热和机械性能

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摘要

Clay mineral is an important material available in nature. Montmorillonite (MMT) is widely used in a variety of materials because of its natural sources, physical and chemical properties, chemical structure, and functional utilization. In this paper a novel stable composite phase change material (PCMs) is prepared by the encapsulation of Capric Acid (CA) and Lauric Acid (LA) in alginate sodium biopolymer and their integration with oakum fiber in a plaster matrix. The SEM and FTIR analyses showed the existence of homogenous confinement of PCMs with the additive materials and good compatibility among its constituents. After a thermal cycling, DSC test of composite material exhibits a good thermal and chemical stability with suitable phase change temperature of 16.54 degrees C and latent heat capacity of 35.18 J/gThe TGA analysis demonstrates the thermal stability of the capsules, all capsules show good stability up to 210 degrees C. The bending tests show that beads addition enhances the composites ductility.Due to the high latent heat, low cost and its melting temperature, the composite material can be considered as potential for energy storage in the building sector.
机译:粘土矿物是自然界中可用的重要材料。 Montmorillonite(MMT)由于其天然来源,物理和化学性质,化学结构和功能利用而广泛应用于各种材料。本文通过在藻酸盐钠生物聚合物中的癸酸(Ca)和月桂酸(La)包封并在石膏基质中与橡胶纤维的整合来制备一种新型稳定的复合相变材料(PCM)。 SEM和FTIR分析表明,在其成分中具有添加剂材料和良好的相容性,表明PCM的均匀限制存在。在热循环后,复合材料的DSC试验表现出良好的热和化学稳定性,具有适当的相变温度为16.54℃,潜热容量为35.18 j / g tga分析表明胶囊的热稳定性,所有胶囊都显示出良好的稳定性弯曲试验显示弯曲试验表明,珠子添加增强了复合材料延展性。为高潜热,低成本及其熔化温度,复合材料可被认为是建筑物中的能量储存的潜力。

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