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Experimental study on the thermal conductivity and viscosity of ethylene glycol-based nanofluid containing diamond-silver hybrid material

机译:含金刚石杂交材料的乙二醇纳米流体的导热率和粘度的实验研究

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The development of carbon nanocomposites composed of nanodiamond nanostructures and metal nanoparticles has attracted much interest because of their large potential for technological applications such as nanofluids. In this experimental study, a new synthesis method was adapted for the addition of silver on the surface of functionalized nanodiamond nanoparticles (Di-Ag) in order to prepare hybrid nanofluids. The surface characterization of hybrid nanoparticles was performed by X-ray diffraction (XRD), scanning electron microscopy (SEM), transmission electron microscopy (TEM) and Fourier transforms infrared spectroscopy (FT-IR). The stability of the synthetized nanofluids was evaluated using UV-vis spectroscopy and visual detection of sedimentation. The thermo-physical properties (thermal conductivity, dynamic viscosity and density) of the prepared nanofluids were also investigated. The thermal conductivity of the hybrid nanofluid was measured using a thermal analyser based on the hot bridge methodology, and the measurements were performed at a temperature range of 10 to 60 degrees C and at a solid volume fraction range of 0 to 0.1% of nanodiamond. The results were compared with some well-known models for relative thermal conductivity, viscosity and density. The prepared nanofluids presented better thermal conductivity in comparison with the base-fluid, and the increase in thermal conductivity occurred as a function of the volumetric concentration of hybrid nanoparticles and of the temperature. The maximum increment obtained for thermal conductivity was from 6.92% to 0.1 vol%. For the viscosity, the maximum increment obtained was from 21.21% to 0.1 vol% at 10 degrees C. Therefore, the results indicate that the properties of these nanofluids are desirable and that they can be used as alternative fluids in heat transfer processes.
机译:由纳米金刚胺纳米结构和金属纳米颗粒组成的碳纳米复合材料的开发由于纳米流体等技术应用的巨大潜力而​​引起了很多兴趣。在该实验研究中,适于在官能化纳米胺纳米颗粒(DI-AG)表面上加入银,以制备杂交纳米流体的加入银。通过X射线衍射(XRD),扫描电子显微镜(SEM),透射电子显微镜(TEM)和傅里叶变换红外光谱(FT-IR)进行杂化纳米颗粒的表面表征。使用UV-Vis光谱评价合成的纳米流体的稳定性,并进行沉降的视觉检测。还研究了制备纳米流体的热物理性质(导热,动态粘度和密度)。使用基于热桥方法的热分析仪测量杂化纳米流体的导热率,测量在10至60℃的温度范围内,并在0至0.1%的纳米金刚胺的固体体积分数范围内进行。将结果与一些具有相对导热性,粘度和密度的众所周知的模型进行比较。与基础流体相比,制备的纳米流体呈现了更好的导热性,并且导热率的增加作为杂化纳米颗粒的体积浓度和温度的函数。热导率获得的最大增量为6.92%至0.1体积%。对于粘度,得到的最大增量在10℃下的21.21%至0.1体积%。因此,结果表明这些纳米流体的性质是理想的,并且它们可以用作传热过程中的替代流体。

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