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High-Performance and Lightweight Thermal Management Devices by 3D Printing and Assembly of Continuous Carbon Nanotube Sheets

机译:通过3D打印和连续碳纳米管板组装的高性能和轻量级热管理装置

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摘要

Free-standing carbon nanotube films or buckypaper can provide a significant platform to develop practical applications of nanocarbon materials. For this research, buckypaper with high thermal conductivity (20 W/m K) and large surface area (350 m(2)/g) was mass produced in-house to investigate for use in lightweight thermal management devices. Floating catalyst chemical vapor deposition carbon nanotube sheets were also studied in this work. We introduced two manufacturing techniques to use the sheets for heat dissipation: (1) printing conductive composite ink on the sheets to make lightweight thermal devices, such as heat sinks and (2) assembling the sheets directly into 3D structures that were mounted on the back of heat-generating devices. These manufacturing techniques resulted in extremely lightweight, high-performance heat dissipation devices compared with other heat sink materials.
机译:独立式碳纳米管薄膜或巴克巴珀可提供显着的平台,以开发纳米碳材料的实际应用。 对于该研究,具有高导热率(20W / M k)和大表面积(350μm(2)/ g)的蛋白质是在房屋内生产的,以研究轻质热管理装置。 在这项工作中还研究了浮动催化剂化学气相沉积碳纳米管板。 我们介绍了两种制造技术,使用散热片材的纸张:(1)在片材上印刷导电复合墨水,使轻质的热装置,例如散热器和(2)直接将纸张组装成后面安装的3D结构。 发热装置。 与其他散热材料相比,这些制造技术导致极其重量轻,高性能的散热装置。

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