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Thermophysical Properties of Multifunctional Syntactic Foams Containing Phase Change Microcapsules for Thermal Energy Storage

机译:含有相变微胶囊的多功能句法泡沫的热物理性质用于热能储存

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摘要

Syntactic foams (SFs) combining an epoxy resin and hollow glass microspheres (HGM) feature a unique combination of low density, high mechanical properties, and low thermal conductivity which can be tuned according to specific applications. In this work, the versatility of epoxy/HGM SFs was further expanded by adding a microencapsulated phase change material (PCM) providing thermal energy storage (TES) ability at a phase change temperature of 43 °C. At this aim, fifteen epoxy (HGM/PCM) compositions with a total filler content (HGM + PCM) of up to 40 vol% were prepared and characterized. The experimental results were fitted with statistical models, which resulted in ternary diagrams that visually represented the properties of the ternary systems and simplified trend identification. Dynamic rheological tests showed that the PCM increased the viscosity of the epoxy resin more than HGM due to the smaller average size (20 µm vs. 60 µm) and that the systems containing both HGM and PCM showed lower viscosity than those containing only one filler type, due to the higher packing efficiency of bimodal filler distributions. HGM strongly reduced the gravimetric density and the thermal insulation properties. In fact, the sample with 40 vol% of HGM showed a density of 0.735 g/cm3 (−35% than neat epoxy) and a thermal conductivity of 0.12 W/(m∙K) (−40% than neat epoxy). Moreover, the increase in the PCM content increased the specific phase change enthalpy, which was up to 68 J/g for the sample with 40 vol% of PCM, with a consequent improvement in the thermal management ability that was also evidenced by temperature profiling tests in transient heating and cooling regimes. Finally, dynamical mechanical thermal analysis (DMTA) showed that both fillers decreased the storage modulus but generally increased the storage modulus normalized by density (E′/ρ) up to 2440 MPa/(g/cm3) at 25 °C with 40 vol% of HGM (+48% than neat epoxy). These results confirmed that the main asset of these ternary multifunctional syntactic foams is their versatility, as the composition can be tuned to reach the property set that best matches the application requirements in terms of TES ability, thermal insulation, and low density.
机译:组合环氧树脂和中空玻璃微球(HGM)的句法泡沫(SFS)具有可根据特定应用调节的低密度,高机械性能和低导热率的独特组合。在这项工作中,通过在43℃的相变温度下添加微胶囊化相变材料(PCM),进一步扩展环氧/ HGM SFS的多功能性。在此目的,制备具有最高可达40体积%的总填料含量(HGM / PCM)的十五个环氧(HGM / PCM)组合物并表征。实验结果配有统计模型,导致三元图,可视地代表三元系统的性质和简化的趋势识别。动态流变测试表明,由于较小的平均尺寸(20μm与60μm),PCM增加了超过HGM的环氧树脂的粘度,并且含有HGM和PCM的系统显示比仅含有一种填充型的系统较低的粘度,由于双峰填充分布的填充效率较高。 HGM强烈降低重量密度和绝热性能。实际上,具有40体积%HGM的样品显示密度为0.735g / cm 3(比整齐的环氧树脂-35%),导热率为0.12 w /(m = k)(比整齐的环氧树脂-40%-40%)。此外,PCM含量的增加增加了特定的相变焓,其具有40 Vol%的PCM的样品高达68J / g,因此在温度分析试验中也证明的热管理能力的改善在瞬态加热和冷却方案中。最后,动态机械热分析(DMTA)表明,两种填料都降低了储存模量,但通常在25℃下通过密度(E'/ρ)归一化的储存模量在25°C下,40体积%(E'/ρ)在25°C下归一化为2440MPa / cm 3) Hgm(+ 48%而不是整齐的环氧树脂)。这些结果证实,这些三元多功能句法泡沫的主要资产是它们的多功能性,因为可以调整组合物以到达最佳匹配特斯能力,保温和低密度的应用要求。

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