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3D printing multi-functionality: Embedded RF antennas and components

机译:3D打印多功能:嵌入式RF天线和组件

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Significant research and press has recently focused on the fabrication freedom of Additive Manufacturing (AM) to create both conceptual models and final end-use products. This flexibility allows design modifications to be immediately reflected in 3D printed structures, creating new paradigms within the manufacturing process. 3D printed products will inevitably be fabricated locally, with unit-level customization, optimized to unique mission requirements. However, for the technology to be universally adopted, the processes must be enhanced to incorporate additional technologies; such as electronics, actuation, and electromagnetics. Recently, a novel 3D printing platform, Multi3D manufacturing, was funded by the presidential initiative for revitalizing manufacturing in the USA using 3D printing (America Makes - also known as the National Additive Manufacturing Innovation Intuitive). The Multi3D system specifically targets 3D printed electronics in arbitrary form; and building upon the potential of this system, this paper describes RF antennas and components fabricated through the integration of material extrusion 3D printing with embedded wire, mesh, and RF elements.
机译:最近的大量研究和媒体关注于增材制造(AM)的制造自由度,以创建概念模型和最终最终产品。这种灵活性使设计修改可以立即反映在3D打印的结构中,从而在制造过程中创建新的范例。 3D打印产品将不可避免地在本地制造,具有单位级别的定制功能,并针对独特的任务要求进行了优化。但是,为了使该技术得到普遍采用,必须增强流程以包含其他技术。例如电子,驱动和电磁学。最近,由总统倡议资助了一种新颖的3D打印平台,即Multi3D制造,以振兴美国使用3D打印的制造业(America Makes,也被称为国家增材制造创新直觉)。 Multi3D系统专门针对任意形式的3D打印电子产品。并基于此系统的潜力,本文介绍了通过将材料挤压3D打印与嵌入的导线,网格和RF元素集成在一起而制造的RF天线和组件。

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