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Structure-induced variation of thermal conductivity in epoxy resin fibers

机译:Structure-induced变化的热电导率在环氧树脂纤维

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摘要

The ability to control thermal conductivity is important in a wide variety of applications, especially in heat removal, heat insulation, and thermoelectric energy conversion. Herein, we reveal that the thermal conductivity of epoxy resin fibers increases on decreasing the fiber diameter and surpasses the bulk value (0.25 W m(-1) K-1 at 300 K) for the fiber with a diameter of 211 nm. The variation of thermal conductivity in epoxy resin fibers can likely be attributed to their microstructure change-enhanced interface phonon scattering between amorphous and crystalline regions and the enhanced alignment of the molecular chain orientation.
机译:控制热导率的能力重要的在各种各样的应用程序,特别是在除热、隔热和热电能源转换。表明,环氧树脂的导热系数对减少增加树脂纤维纤维直径和超过大部分价值(0.25 W(1) K - 1在300 K)的纤维直径211海里。可能是由于在环氧树脂纤维其微观结构change-enhanced界面声子散射和非晶态之间水晶地区和增强的对齐的分子链取向。

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