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Preparation of poly (vinyl alcohol)/ionic liquid composites with improved processability and electrical conductivity for fused deposition modeling

机译:具有改善的可加工性和电导率的聚乙烯醇/离子液体复合材料的制备,用于熔融沉积建模

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摘要

This work aims to realize the fused deposition modeling (FDM) process of poly (vinyl alcohol) (PVA), which is a multi-hydroxyl polymer with good comprehensive properties. However, achieving the FDM process for PVA is quite challenging due to its narrow thermal processing window. To address this problem, an ionic liquid (IL) was introduced to improve the thermal processability of PVA. The materials, the FDM process and properties of the FDM products were systematically evaluated. The results indicated that the PVA/IL composites exhibited significantly improved thermal processing properties. The PVA/IL filament prepared with a suitable viscosity and modulus ratio showed good printability. The tensile strength of the FDM parts increased from 8.7 MPa to 13.6 MPa due to the difference in the interlayer bond strength when the nozzle temperatures ranged from 170 degrees C to 200 degrees C. The zero shear rate viscosity, the relaxation time and the surface tension at different printing temperatures were analyzed and provide theoretical insight into the diffusion of polymer chains at the interface during the FDM process. Interestingly, the 3D printed composites were flexible and exhibited tailored electrical conductivity with a strong dependence on the printing temperature, revealing the potential to be functional parts in the field of flexible electronics. (C) 2018 Elsevier Ltd. All rights reserved.
机译:这项工作旨在实现聚乙烯醇(PVA)的熔融沉积建模(FDM)工艺,该工艺是一种具有良好综合性能的多羟基聚合物。然而,由于其狭窄的热处理窗口,实现用于PVA的FDM工艺非常具有挑战性。为了解决该问题,引入了离子液体(IL)以改善PVA的热加工性。系统地评估了FDM产品的材料,FDM工艺和性能。结果表明,PVA / IL复合材料表现出明显改善的热处理性能。以合适的粘度和模量比制备的PVA / IL长丝显示出良好的适印性。当喷嘴温度在170摄氏度至200摄氏度之间时,由于层间粘合强度的差异,FDM部件的抗拉强度从8.7 MPa增加到13.6 MPa。零剪切速率粘度,松弛时间和表面张力在不同的印刷温度下进行了分析,并为FDM过程中界面处聚合物链的扩散提供了理论依据。有趣的是,3D打印的复合材料是柔性的,并且显示出定制的导电性,并且对印刷温度的依赖性强,这揭示了在柔性电子领域中用作功能部件的潜力。 (C)2018 Elsevier Ltd.保留所有权利。

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