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Measurement of thermal conductivity of nanofluids and thermal interface materials using the laser-based transient thermoreflectance method

机译:利用基于激光的瞬态热反射法测量纳米流体和热界面材料的热导率

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The transient thermoreflectance (TTR) method was used to measure the thermal properties of two types of non-solid substances. First, the method was used to measure the thermal conductivity of several fluids including deionized water, 3M Fluorinert F-770 and a nanofluid composed of a colloidal suspension of 1.33 nm diameter single-wall carbon nanotube in water. The results show a slight increase in the thermal conductivity of the nanofluid (0.664 W/m-K) as compared to the properties of pure water (0.58 W/m-K). The second part presents the results of measuring the thermal properties of several thermal greases used in the electronics industry. Both the intrinsic thermal conductivity and the interface thermal resistance were measured concurrently. The thermal conductivity values of three out of four thermal greases measured were found to be much lower that the values reported by the manufacturer. Since the TTR method is an optical, pump-and-probe approach that relies on reflecting light from a mirror-like surface, measuring the thermal properties of transparent materials or non-solid substances requires the use of a reflective layer between the optics and the non-reflective material of interest. For the present investigation, a layer of gold was deposited on a microscope slide that was then placed upside down on top of the fluids and greases that were tested.
机译:瞬态热反射(TTR)方法用于测量两种非固体物质的热性能。首先,该方法用于测量包括去离子水,3M氟化物F-770的几种流体的导热率和由水中的胶体悬浮液的胶体悬浮液组成的纳米流体。与纯水的性质(0.58W / m-K)相比,结果表明纳米流体(0.664W / m-K)的导热率略有增加。第二部分介绍了测量电子工业中使用的几种热润滑脂的热性能的结果。同时测量内在导热率和界面热阻。发现测量的四种热润滑脂中的三种热导率值要降低,因此制造商报告的值要低得多。由于TTR方法是一种光学,泵和探针方法,其依赖于来自镜状表面的反射光,测量透明材料的热性能或非固体物质需要使用光学器件和透明层之间的反射层兴趣的非反映材料。对于本研究,将一层金沉积在显微镜载玻片上,然后在经过测试的流体和润滑脂上倒置。

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