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Getting rid of the wires: Curved Layer Fused Deposition Modeling in Conductive Polymer Additive Manufacturing

机译:摆脱导线:导电聚合物增材制造中的弯曲层熔融沉积建模

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This paper describes an additive manufacturing technology that has the potential to print plastic components with integral conductive polymer electronic circuits. This could have a major impact in the fields of robotics and mechatronics as it has the potential to allow large wiring looms, often an issue with complex robotic systems, to be printed as an integral part of the products plastic shell. This paper describes the development of a novel Fused Deposition Modeling (FDM) process in which the layers of material that make up the part are deposited as curved layers instead of the conventional flat layers. This opens up possibilities of building curved plastic parts that have conductive electronic tracks and components printed as an integral part of the plastic component, thereby eliminating printed circuit boards and wiring. It is not possible to do this with existing flat-layer additive manufacturing technologies as the continuity of a circuit could be interrupted between the layers. With curved-layer fused deposition modeling (CLFDM) this problem is removed as continuous filaments in 3 dimensions can be produced, allowing for continuous conductive circuits.
机译:本文介绍了一种增材制造技术,该技术有可能印刷带有整体导电聚合物电子电路的塑料部件。这可能会在机器人技术和机电一体化领域产生重大影响,因为它有可能允许将大型布线机(通常是复杂的机器人系统遇到的问题)印刷为产品塑料外壳的组成部分。本文介绍了一种新颖的熔融沉积建模(FDM)工艺的开发过程,该工艺将组成零件的材料层沉积为弯曲层,而不是传统的平坦层。这提供了构建弯曲的塑料部件的可能性,该弯曲的塑料部件具有导电的电子轨道和印刷为塑料部件不可分割的一部分的部件,从而消除了印刷电路板和布线。现有的平层增材制造技术无法做到这一点,因为电路的连续性可能会在层之间中断。使用弯曲层熔融沉积建模(CLFDM)可以解决此问题,因为可以生产3维的连续细丝,从而可以实现连续的导电电路。

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