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Synthesis and properties of UV-cured porous polymeric composites: Thermal conductivity, mechanical and thermal properties

机译:紫外线固化多孔聚合物复合材料的合成与性能:导热系,机械和热性能

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Porous polymeric composites containing hollow microspheres such as hollow organic microsphere (HOM) and hollow glass microsphere (HGM), respectively, up to 50vol% were prepared by a UV-radiation photo-curing process. The non-porous sample was also prepared as a reference material. The comparative study on measured and theoretical thermal conductivity (k) revealed that HOM composites were in a category of the internal porous material (EMT model k parallel model) with spherical pore structure. In case of HGM composites which were considered as three-phasic material composed of bulk HPU matrix, thermal conductivity of HGM composites could be perfectly predicted by Felske model. From dynamic mechanical measurement, tensile and compression properties, it appeared that mechanical characteristics of hollow microspheres played an important role in storage modulus, T-g, and mechanical properties of composites. Especially, the incorporation of HGMs leaded to the reinforcement with increasing volume percentage of HGM in composites.
机译:通过紫外线 - 辐射光固化方法制备含有中空微球如中空微球,例如中空微球等中空微球(HOM)和中空玻璃微球(HGM)。还制备非多孔样品作为参考材料。对测量和理论导热率(k)的比较研究表明,HOM复合材料是具有球形孔结构的内部多孔材料(EMT模型<并联模型)。在被认为是由批量HPU基质组成的三相材料的HGM复合材料的情况下,富尔斯克模型可以完全预测HGM复合材料的热导率。根据动态机械测量,拉伸和压缩性能,似乎中空微球的机械特性在储存模量,T-G和复合材料的机械性能下起重要作用。特别是,通过增加复合材料的HGM体积百分比,掺入HGMS引起的增强物。

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