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Nanodiamonds - Ethylene Glycol nanofluids: Experimental investigation of fundamental physical properties

机译:纳米金刚石-乙二醇纳米流体:基本物理性质的实验研究

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Two types of ethylene glycol (EG) based nanodiamonds (ND) nanofluids with various diamond phase were prepared. Nanodiamonds were characterized with various techniques like scanning and transmission electron microscopy (SEM, TEM), and energy-dispersive X-ray spectroscopy analysis (EDS). Diamond phases of the materials were 97% and 87% according to manufacturer declaration, and each type of nanofluids were prepared in various mass fraction from 0.01 to 0.1. The paper presents new detailed results on rheological, thermophysical and dielectric properties of these materials. It was presented that those material exhibit viscoelastic, non-Newtonian, thixotropy nature and it depends on purity of NDs. Experimental values of density measurements show that it does not depend on purity of nanodiamonds. On the other hand it was reported that isobaric heat capacity is higher for nanofluids containing ND with higher purity. Results of experiments show also that thermal conductivity enhancement in this material is rather low, and it is slightly higher for more pure NDs. Finally, dielectric profile of these nanofluids was presented, and it show that electrical conductivity of nanosuspension is slightly higher in nanofluids containing NDs with 97% purity.
机译:制备了具有各种金刚石相的两种类型的基于乙二醇(EG)的纳米金刚石(ND)纳米流体。纳米金刚石通过各种技术进行表征,例如扫描和透射电子显微镜(SEM,TEM)以及能量色散X射线光谱分析(EDS)。根据制造商的声明,材料的金刚石相分别为97%和87%,每种纳米流体的制备质量分数为0.01至0.1。本文介绍了有关这些材料的流变,热物理和介电性能的新的详细结果。结果表明,这些材料表现出粘弹性,非牛顿性,触变性,并且取决于ND的纯度。密度测量的实验值表明,它不取决于纳米金刚石的纯度。另一方面,据报道,含有较高纯度的ND的纳米流体的等压热容量较高。实验结果还表明,这种材料的热导率提高相对较低,而对于更纯净的ND,其导热率略高。最后,介绍了这些纳米流体的介电特性,结果表明,纳米悬浮液的电导率在含有纯度为97%的ND的纳米流体中略高。

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