论文标题
轻巧且高热性能石墨烯热管
A light-weight and high thermal performance graphene heat pipe
论文作者
论文摘要
热管是电子和电力系统中耗散散热的最有效工具之一。目前,加热管通常由铜,铝或不锈钢制成。由于它们的密度相对较高和热管的能力有限,因此在电力电子和功率模块中面临紧急挑战。在本文中,我们报告了一类新的石墨烯增强的热管,可以解决这些问题。石墨烯增强的热管由高热电导率石墨烯组装膜和纳米结构增强的石墨烯层状铜膜制成。研究表明,可以实现大幅提高的热量耗散能力,即6100 W M-2 K-1 G-1,比基于铜的商用热管高约3倍。这为在轻量和大容量冷却应用中使用石墨烯增强的加热管铺平了道路,如许多系统所需,例如航空电子产品,汽车电子设备,笔记本电脑计算机,手机和空间电子设备。
Heat pipe is one of the most efficient tools for heat dissipation in electronics and power systems. Currently, heat pipes are usually made of copper, aluminum or stainless steel. Due to their relatively high density and limited heat transmission capacity, heat pipes are facing urgent challenges in power electronics and power modules. In this paper, we report a new class of graphene enhanced heat pipes that can cope with these issues. The graphene enhanced heat pipes are made of high thermal conductivity graphene assembled film and graphene laminated copper films with nanostructure enhanced inner surfaces. The study shows that the dramatically improved heat dissipation capacity, 6100 W m-2 K-1 g-1, about 3 times higher than that of copper based commercial heat pipes can be achieved. This paves the way for using graphene enhanced heat pipes in light-weight and large capacity cooling applications, as required in many systems such as avionics, automotive electronics, laptop computers, handsets and space electronics.