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Influence of the Degree of Cure in the Bulk Properties of Graphite Nanoplatelets Nanocomposites Printed via Stereolithography

机译:固相印刷对石墨纳米薄片纳米复合材料本体性能的影响

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摘要

In this work, we report on the fabrication via stereolithography (SLA) of acrylic-based nanocomposites using graphite nanoplatelets (GNPs) as an additive. GNPs are able to absorb UV–Vis radiation, thus blocking partial or totally the light path of the SLA laser. Based on this, we identified a range of GNP concentrations below 2.5 wt %, where nanocomposites can be successfully printed. We show that, even though GNP is well-dispersed along the polymeric matrix, nanocomposites presented lower degrees of cure and therefore worse mechanical properties when compared with pristine resin. However, a post-processing at 60 °C with UV light for 1 h eliminates this difference in the degree of cure, reaching values above 90% in all cases. In these conditions, the tensile strength is enhanced for 0.5 wt % GNP nanocomposites, while the stiffness is increased for 0.5–1.0 wt % GNP nanocomposites. Finally, we also demonstrate that 2.5 wt % GNP nanocomposites possess characteristic properties of semiconductors, which allows them to be used as electrostatic dispersion materials.
机译:在这项工作中,我们报告了使用石墨纳米片(GNP)作为添加剂的丙烯酸基纳米复合材料通过立体光刻(SLA)的制造。 GNP能够吸收UV-Vis辐射,从而阻挡了SLA激光器的部分或全部光路。基于此,我们确定了低于2.5 wt%的GNP浓度范围,可以成功印刷纳米复合材料。我们表明,即使GNP沿聚合物基质充分分散,纳米复合材料的固化度也较低,因此与原始树脂相比,其机械性能更差。但是,在60°C的紫外线下进行1小时的后处理可消除这种固化程度的差异,在所有情况下均达到90%以上的值。在这些条件下,对于0.5 wt%的GNP纳米复合材料,其拉伸强度得以提高,而对于0.5–1.0 wt%的GNP纳米复合材料,其刚性得以提高。最后,我们还证明了2.5 wt%的GNP纳米复合材料具有半导体的特性,使其可以用作静电分散材料。

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