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首页> 外文期刊>Materials Chemistry Frontiers >Enhanced dual photo/thermal initiating systems for preparation of few layer graphene filler-based composites and 3D printing
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Enhanced dual photo/thermal initiating systems for preparation of few layer graphene filler-based composites and 3D printing

机译:增强型双光/热引发系统,用于制备基于石墨烯填料的少层复合材料和 3D 打印

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摘要

The photopolymerization synergistic thermal polymerization process has been successfully applied in the preparation of very opaque composites. In this work, the fabrication of opaque few layer graphene (FLG) composites was accomplished by an enhanced dual photo/thermally initiated photopolymerization process under LED@405 nm irradiation and in an open (to air) system. A significant improvement of the depth of cure (Doc) can be observed compared to the solely photochemical approach. Furthermore, the kinetics of the curing thickness was examined in detail, importantly, it was possible to obtain customized products with desired thicknesses by varying the time. In addition, scanning electron microscope (SEM) and energy dispersive X-ray spectroscopy (EDX) were used to access the homogeneity of the composites, and thermogravimetric analysis (TGA) and dynamic mechanical analysis (DMA) were used to examine the thermal and mechanical properties of the composites. Finally, the formulation was also employed successfully for 3D printing/direct laser write experiments.
机译:光聚合协同热聚合过程已成功应用于制备非常不透明复合材料。不透明的几层石墨烯(FLG)复合材料通过一个增强的双重图片/热下了光聚合过程LED@405 nm辐照和在一个开放的(在空气中)系统。治愈(Doc)可以观察仅仅相比光化学的方法。固化厚度的详细检查,重要的是,它有可能获得定制的通过改变产品所需的厚度时间。(SEM)和能量色散x射线光谱(EDX)是用于访问的同质性复合材料,热重分析(TGA)和动态力学分析(DMA)热物性参数和力学性能参数检查的复合材料。也成功地使用3 d打印/直接激光写实验。

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