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首页> 外文期刊>Journal of Mechanical Science and Technology >Direct-write/cure conductive polymer nanocomposites for 3D structural electronics
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Direct-write/cure conductive polymer nanocomposites for 3D structural electronics

机译:用于3D结构电子学的直写/固化导电聚合物纳米复合材料

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摘要

The use of direct-write (DW) in the fabrication of conductive structures offers dramatic benefits over traditional technologies in terms of low-cost, print-on-demand conformal manufacturing. This DW process can be combined with direct-cure (DC) process as one-step manufacturing of conducting elements, whereas conventional methods need a manufacturing process of conducting elements followed by a relatively long time post-curing/baking process. A hybrid technology combined with direct-write/cure (DWC) and projection micros-tereolithography (PμSL) is presented in this work. Carbon nanotubes (CNTs) were dispersed in a photopolymer solution to introduce conductivity. The developed PμSL was used to create 3D structures, and DWC of conductive photopolymers with CNTs was utilized to produce conductive paths. To show the capabilities of the developed system and materials, a 3D structure with embedded conductive paths was designed and fabricated. Based on the experiments, it is thought that the suggested manufacturing process and materials are promising to produce 3D structural electronics.
机译:就低成本,按需印刷保形制造而言,在导电结构的制造中使用直接写入(DW)具有优于传统技术的显着优势。该DW工艺可以与直接固化(DC)工艺相结合,作为导电元件的一步制造,而常规方法需要导电元件的制造工艺,然后是相对较长时间的后固化/烘烤工艺。这项工作提出了一种结合了直接写入/固化(DWC)和投影微立体光刻(PμSL)的混合技术。将碳纳米管(CNT)分散在光聚合物溶液中以引入导电性。所开发的PμSL用于创建3D结构,而具有CNT的导电光聚合物的DWC被用于产生导电路径。为了展示开发的系统和材料的功能,设计并制造了带有嵌入式导电路径的3D结构。根据实验,可以认为建议的制造工艺和材料有望生产3D结构电子产品。

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