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Thermal and Mechanical Properties of Expanded Graphite/Paraffin Gypsum-Based Composite Material Reinforced by Carbon Fiber

机译:碳纤维增强膨胀石墨/石蜡石膏基复合材料的热力学性能

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摘要

Phase change material (PCM) is a kind of thermal energy storage material. Solid-liquid PCM composite materials must overcome the issues of material leakage and low thermal conductivity before they are suitable for widespread use in the fields of building and industry. In this study, porous expanded graphite (EG) is used as a carrier, which absorbs the PCM to fabricate EG/paraffin composites (EG/P) containing 90.6% paraffin, and a latent heat of up to 105.3 J/g was measured. Because gypsum board is widely used in buildings, therefore, EG/P composites are suitable to be integrated into gypsum to develop expanded graphite/paraffin gypsum-based composite material (EGPG) for thermal energy storage. In order to optimize the performance of EGPG, carbon fiber (CF) is used to reinforce their thermal and mechanical properties. The test results show that when 1 wt % CF is incorporated into the EGPG, the thermal conductivity increased 36.0%, and thus EGPG shows superior thermal control through the significantly increased efficiency of heat transfer. After 1 wt % CF was added, the flexural and compressive strength of EGPG were increased by 65.6% and 6.4%, respectively. The improved thermal and mechanical performance of EGPG modified by CF demonstrates that it is a structural-functional integrated building material suitable for building envelope system.
机译:相变材料(PCM)是一种储热材料。固液PCM复合材料必须先克服材料泄漏和导热系数低的问题,然后才能广泛应用于建筑和工业领域。在这项研究中,多孔膨胀石墨(EG)被用作载体,它吸收PCM来制造含90.6%石蜡的EG /石蜡复合材料(EG / P),并且测得的潜热高达105.3 J / g。由于石膏板广泛用于建筑中,因此,EG / P复合材料适合集成到石膏中,以开发用于储热的膨胀石墨/石蜡石膏基复合材料(EGPG)。为了优化EGPG的性能,碳纤维(CF)用于增强其热和机械性能。测试结果表明,当将1 wt%CF掺入EGPG中时,导热系数提高了36.0%,因此EGPG通过显着提高传热效率显示出优异的热控制性能。添加1 wt%CF后,EGPG的抗弯强度和抗压强度分别提高了65.6%和6.4%。 CF改良的EGPG的改进的热和机械性能证明它是一种结构功能完备的建筑材料,适用于建筑围护系统。

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