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Fine Dispersion of Carbon Black in Fluorene-Based Resin

机译:炭黑在氟基树脂中的精细分散

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摘要

The dispersion ability of fluorene-based epoxy resin (FBE), bisphenol A based epoxy resin (PBE), fluorene-based polyester (FBP), and polycarbonate (PC) in carbon black (CB) was evaluated. CB/FBE composite had a lower L value (reflectance, blackness) than that of CB/PBE composite, for the same CB content. Aggregations of CB in CB/FBE composites were much smaller than those in CB/PBE composites. The strong interaction between fluorene with cardo structure and CB resulted in a fine dispersion of CB in FBE. FBP had much higher dispersion ability of CB than PC. CB (50 wt%) was dispersed into FBP compared with the 10 wt% of CB dispersed in PC by melt blending. The effect of CB on the mechanical properties of FBP was much higher than that on PC due to fine dispersion of CB in FBP. The effect of CB addition on the T_g of FBP was also higher than that of CB on the T_g of PC. Computational simulation indicates that most stable energy between fluorene with a cardo structure and graphite structure was smaller than the energy between bisphenol A and graphite. It was also shown that the minimum energy appeared when the fluorene structure was almost parallel to the graphite plane.
机译:评价了芴系环氧树脂(FBE),双酚A系环氧树脂(PBE),芴系聚酯(FBP)和聚碳酸酯(PC)在炭黑(CB)中的分散能力。对于相同的CB含量,CB / FBE复合材料的L值(反射率,黑度)低于CB / PBE复合材料的L值。 CB / FBE复合材料中的CB聚集比CB / PBE复合材料中的CB聚集小得多。具有心脏结构的芴与CB之间的强相互作用导致CB在FBE中的良好分散。 FBP具有比PC高得多的CB分散能力。与通过熔融共混分散在PC中的10%的CB相比,CB(50 wt%)分散在FBP中。由于CB在FBP中的微细分散,CB对FBP力学性能的影响远高于对PC的影响。添加CB对FBP T_g的影响也高于CB对PC T_g的影响。计算仿真表明,具有Cardo结构的芴与石墨结构之间的最稳定能量小于双酚A与石墨之间的能量。还显示出当芴结构几乎平行于石墨平面时出现最小能量。

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