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UV-assisted three-dimensional printing of polymer nanocomposites based on inorganic fillers

机译:基于无机填料的高分子纳米复合材料的UV辅助三维印刷

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In this work, nanocomposites based on a UV-curable polymeric resin and different inorganic fillers were developed for use in UV-assisted three-dimensional (UV-3D) printing. This technology consists in the additive multilayer deposition of a UV-curable resin for the fabrication of 3D macro structures and microstructures of arbitrary shapes. A systematic investigation on the effect of filler concentration on the rheological properties of the polymer-based nanocomposites was performed. In particular, the rheological characterization of these nanocomposites allowed to identify the optimal printability parameters for these systems based on the shear rate of the materials at the extrusion nozzle. In addition, photocalorimetric measurements were used to assess the effect of the presence of the inorganic fillers on the thermodynamics and kinetics of the photocuring process of the resins. By direct deposition of homogeneous solvent-free nanocomposite dispersions of different fillers in a UV-curable polymeric resin, the effect of UV-3D printing direction, fill density, and fill pattern on the mechanical properties of UV-3D printed specimens was investigated by means of uniaxial tensile tests. Finally, examples of 3D macroarchitectures and microarchitectures, spanning features, and planar transparent structures directly formed upon UV-3D printing of such nanocomposite dispersions were reproducibly obtained and demonstrated, clearly highlighting the suitability of these nanocomposite formulations for advanced UV-3D printing applications. POLYM. COMPOS., 38:1662-1670, 2017. (c) 2015 Society of Plastics Engineers
机译:在该工作中,基于UV可固化聚合物树脂和不同无机填料的纳米复合材料用于UV辅助三维(UV-3D)印刷。该技术在于用于制造3D宏结构和任意形状的微结构的UV固化树脂的添加剂多层沉积。对填料浓度对基于聚合物基纳米复合材料的流变性能的系统研究进行了系统的研究。特别地,这些纳米复合材料的流变表征允许基于挤出喷嘴处的材料的剪切速率来识别这些系统的最佳可印刷性参数。此外,光核测量测量用于评估无机填料是否对树脂的光固化过程的热力学和动力学的存在。通过直接沉积UV固化聚合物树脂中不同填料的均匀溶剂纳米复合材料,研究了UV-3D印刷方向,填充密度和填充图案对UV-3D印刷样本的力学性能的影响单轴拉伸试验。最后,在UV-3D打印这种纳米复合分散体的UV-3D印刷上直接形成的3D宏观结构和微体系结构和平面透明结构的实例是可再现的,并明显突出了这些纳米复合配方对先进的UV-3D印刷应用的适用性。聚合物。 Compos。,38:1662-1670,2017。(c)2015年塑料工程师协会

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