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Thermal and mechanical characterization of polymer composites filled with dispersed zeolite and oil shale

机译:填充有分散沸石和油页岩的聚合物复合材料的热和机械特性

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摘要

The thermal, viscoelastic, mechanical behavior of polymers filled with dispersed zeolite and oil shale is studied as a function of temperature, grain size, and filler concentration. It was found that the thermal conductivity of epoxy-zeolite composite increases with different zeolite grain sizes and takes a higher value in case of the 63 μm grain size composite. The observed enhancement in the thermal conductivity of zeolite composites correlates well with that of the electrical conductivity. The thermodynamic results exhibit a slight increase in the glass transition temperature of the polystyrene/oil shale composites, and shift in the observed relaxation peaks with increasing the oil shale content. The plastic deformation of PS/oil shale composites shows that the elastic modulus increases and the compressive yield stress decreases with oil shale content. The Eyring theory of yielding could predict the dependence of the yield stress on the applied strain rate. The predicted activation volume and activation energy showed dependence on the oil shale grains sizes and content.
机译:研究了填充有分散沸石和油页岩的聚合物的热,粘弹性,机械行为与温度,粒度和填料浓度的关系。已经发现,环氧-沸石复合材料的热导率随着沸石尺寸的不同而增加,并且在63μm粒径的复合材料的情况下具有更高的值。所观察到的沸石复合材料的导热率的增强与电导率的相关性很好。热力学结果显示,聚苯乙烯/油页岩复合材料的玻璃化转变温度略有增加,并且随着油页岩含量的增加,观察到的弛豫峰发生偏移。 PS /油页岩复合材料的塑性变形表明,随着油页岩含量的增加,弹性模量增加,压缩屈服应力减小。屈服的Eyring理论可以预测屈服应力对施加应变率的依赖性。预测的活化量和活化能显示出与油页岩晶粒尺寸和含量有关。

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