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3D inkjet-printed UV-curable inks for multi-functional electromagnetic applications

机译:适用于多功能电磁应用的3D喷墨打印UV固化油墨

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摘要

Inkjet printing of multiple materials is usually processed in multiple steps due to various jetting and curing/sintering conditions. In this paper we report on the development of all inkjet-printed UV-curable electromagnetic responsive inks in a single process, and the electromagnetic characterization of the developed structure. The ink consists of iron oxide (Fe3O4) nanoparticles (nominal particle size 50–100 nm) suspended within a UV curable matrix resin. The viscosity and surface tension of the inks were tuned to sit within the inkjet printability range.ududMultiple layers of the electromagnetic active ink were printed alongside passive UV-curable ink in a single manufacturing process to form a multi-material waffle shape. The real permittivity of the cured passive ink, active ink and waffle structure at a frequency of 8–12 GHz were 2.25, 2.73 and 2.65 F/m, respectively. This shows the potential of additive manufacturing (AM) to form multi-material structures with tunable electromagnetic properties.
机译:由于各种喷射和固化/烧结条件,多种材料的喷墨印刷通常以多个步骤进行处理。在本文中,我们报告了在单个过程中所有喷墨印刷的紫外线可固化电磁响应性油墨的开发以及所开发结构的电磁特性。墨水由悬浮在UV可固化基体树脂中的氧化铁(Fe3O4)纳米粒子(标称粒径50-100 nm)组成。调整油墨的粘度和表面张力使其处于喷墨可印刷性范围内。 ud ud在单个制造过程中,将多层电磁活性油墨与无源UV固化油墨一起印刷,以形成多种材料的华夫格形状。固化的无源墨水,有源墨水和华夫格结构在8–12 GHz频率下的实际介电常数分别为2.25、2.73和2.65 F / m。这显示了增材制造(AM)形成具有可调电磁特性的多材料结构的潜力。

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