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Characterization of 3D-printed capacitors created by fused filament fabrication using electrically-conductive filament

机译:使用导电灯丝的熔融灯丝制造产生的3D打印电容器的特性

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Desktop fused filament fabrication (FFF) printers (3D printers) are ubiquitous rapid prototyping (RP) and additive manufacturing (AM) devices used by small and large companies as well as hobbyists. Their attractiveness stems from the inexpensive hardware, inexpensive plastic materials, affordable CAD environments, and short training times. This research explores design of capacitors as passive electrical elements created by the FFF printing process using electrically-conductive graphene - polylactic acid (PLA) filament. Capacitors (6.5 pF to 63.9 pF) are designed, constructed, and characterized. A number of tests are performed resulting in a set of build recommendations. With this capability to directly create capacitors integrated within 3D printed physical objects designers can produce new and/or improved electrical and mechatronic devices.
机译:台式熔丝制造(FFF)打印机(3D打印机)是大小型公司和业余爱好者普遍使用的快速原型(RP)和增材制造(AM)设备。它们的吸引力来自廉价的硬件,廉价的塑料材料,负担得起的CAD环境以及较短的培训时间。这项研究探索了电容器的设计,这些电容器是通过FFF印刷工艺使用导电石墨烯-聚乳酸(PLA)丝制成的无源电子元件。电容器(6.5 pF至63.9 pF)的设计,构造和特性描述。执行了许多测试,从而得出了一组构建建议。通过直接创建集成在3D打印物理对象中的电容器的功能,设计人员可以生产新的和/或改进的电气和机电设备。

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