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Fabrication of Composite Filaments with High Dielectric Permittivity for Fused Deposition 3D Printing

机译:熔融沉积3D打印用高介电常数复合丝的制备

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摘要

Additive manufacturing of complex structures with spatially varying electromagnetic properties can enable new applications in high-technology sectors such as communications and sensors. This work presents the fabrication method as well as microstructural and dielectric characterization of bespoke composite filaments for fused deposition modeling (FDM) 3D printing of microwave devices with a high relative dielectric permittivity ϵ = 11 in the GHz frequency range. The filament is composed of 32 vol % of ferroelectric barium titanate (BaTiO3) micro-particles in a polymeric acrylonitrile butadiene styrene (ABS) matrix. An ionic organic ester surfactant was added during formulation to enhance the compatibility between the polymer and the BaTiO3. To promote reproducible and robust printability of the fabricated filament, and to promote plasticity, dibutyl phthalate was additionally used. The combined effect of 1 wt % surfactant and 5 wt % plasticizer resulted in a uniform, many hundreds of meters, continuous filament of commercial quality capable of many hours of uninterrupted 3D printing. We demonstrate the feasibility of using the high dielectric constant filament for 3D printing through the fabrication of a range of optical devices. The approach herein may be used as a guide for the successful fabrication of many types of composite filament with varying functions for a broad range of applications.
机译:具有空间变化的电磁特性的复杂结构的附加制造可以在通讯和传感器等高科技领域实现新应用。这项工作提出了定制的复合细丝的制造方法以及微观结构和介电特性,用于在GHz频率范围内具有较高的相对介电常数ϵ = 11的微波设备的熔融沉积建模(FDM)3D打印。细丝由聚合丙烯腈-丁二烯-苯乙烯(ABS)基质中的32%的铁电钛酸钡(BaTiO3)微粒组成。在配制过程中添加了离子有机酯表面活性剂,以增强聚合物与BaTiO3之间的相容性。为了提高制成的细丝的可再现性和鲁棒性,并提高可塑性,还使用了邻苯二甲酸二丁酯。 1 wt%的表面活性剂和5 wt%的增塑剂的共同作用产生了一条具有数百米长,商业品质的连续长丝,能够连续数小时不间断3D打印。我们通过制造一系列光学设备,证明了将高介电常数灯丝用于3D打印的可行性。本文中的方法可以用作成功制造多种类型的复合丝的指南,这些复合丝具有广泛的应用范围。

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