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Thermal insulating epoxy composite coatings containing sepiolite/hollow glass microspheres as binary fillers: morphology, simulation and application

机译:含有海泡石/空心玻璃微球作为二元填料的环氧隔热复合涂料:形态,模拟和应用

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Sepiolite and hollow glass microspheres (HGMs) are used as binary fillers to prepare thermal insulating composites to improve the protecting durability of epoxy composites on Mg alloy. Sepiolite can be evenly dispersed inside epoxy at around 10% (vol.%), while HGMs are also found evenly distributed in this matrix with content up to 45% (vol.%), as shown in the scanning electron microscope pictures. Their thermal stability and thermal insulation ability improve simultaneously with the increase of the inorganic filler, as shown in the thermal gravimetric analysis results and thermal insulting tests. According to the three-dimensional finite element analysis using ANSYS software (ANSYS Inc., USA), their thermal conductivity coefficients are found to decrease linearly with the increase in HGMs volume fractions. The tested temperature changes on the opposite side of the Mg alloy coated with sepiolite/HGMs/epoxy composites match well with those on the stimulant curves, indicating the reliability of the models and the thermal insulating functions provided by the fillers.
机译:将海泡石和空心玻璃微球(HGM)用作二元填料,以制备隔热复合材料,以提高环氧复合材料在Mg合金上的保护耐久性。如扫描电子显微镜照片所示,海泡石可以约10%(体积%)均匀地分散在环氧树脂中,而HGMs也均匀地分布在该基质中,含量高达45%(体积%)。如通过热重量分析结果和热绝缘测试所示,它们的热稳定性和绝热能力随着无机填料的增加而同时提高。根据使用ANSYS软件(美国ANSYS Inc.)进行的三维有限元分析,发现其导热系数随HGMs体积分数的增加而线性降低。用海泡石/ HGM /环氧树脂复合材料涂覆的Mg合金另一侧的测试温度变化与刺激曲线上的温度变化非常匹配,表明了模型的可靠性和填料提供的绝热功能。

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