A Novel Method of Incorporating CNT into Additive Manufacturing Electronics Dielectric Material

Daniel Slep, Fan Yang
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引用次数: 0

Abstract

Flexible Hybrid Electronics (FHE) Parts that are additively manufactured give engineers and designers greater flexibility in geometry, complexity, and variety or customizability. In this work, UV curable dielectric materials for additive electronics and incorporated Carbon Nano Tubes (CNTs) within a formulated UV/LED curable matrix was used. It will be shown that inkjet printing CNT mixture in specific manner with a commercial UV curable dielectric improves mechanical and thermal properties of the final dielectric compared to the dielectric without the CNT mixture, including a significant decrease in the coefficient of thermal expansion,  while keeping excellent electrical properties.
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将 CNT 纳入增材制造电子电介质材料的新方法
柔性混合电子(FHE)部件采用添加式制造,在几何形状、复杂性、多样性或可定制性方面为工程师和设计师提供了更大的灵活性。在这项工作中,使用了用于增材制造电子产品的紫外线固化电介质材料,并在配制的紫外线/LED 固化基质中加入了碳纳米管 (CNT)。研究表明,与不含碳纳米管混合物的电介质相比,以特定方式喷墨打印碳纳米管混合物与商用紫外线固化电介质可改善最终电介质的机械和热性能,包括显著降低热膨胀系数,同时保持优异的电气性能。
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