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首页> 外文期刊>Journal of nanoscience and nanotechnology >Experimental Investigation of Thermal Conductivity and Viscosity of SiO2/Multiwalled Carbon Nanotube Hybrid Nanofluids
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Experimental Investigation of Thermal Conductivity and Viscosity of SiO2/Multiwalled Carbon Nanotube Hybrid Nanofluids

机译:SiO2 /多壁碳纳米管杂交纳米流体热导电性和粘度的实验研究

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In this study, the thermal conductivity and viscosity of SiO2/multiwalled carbon nanotube (MWCNTs) hybrid nanofluids are investigated. The volume fraction of the nanofluids varied in the range of 0.5% to 2%, while the SiO2 to MWCNTs volume proportion is either 95-5 or 90-10. The nanofluids are synthesized using a wet chemical method and a two-step technique is used to disperse nanoparticles in glycerol (base fluid). The thermal conductivities and viscosities of the nanofluids are measured using a modified transient hot-wire method and falling ball viscometer, respectively. The colloidal stability of the dispersion was investigated visually. Effective application of an ultrasonic disruptor and a suitable surfactant (gum arabic) enhance the dispersion behavior. When the effects of temperature and volume fraction on the thermal conductivity and viscosity of SiO2/multiwalled carbon nanotube (MWCNTs) hybrid nanofluids are studied, the results showed that the thermal conductivity of nanofluids increased with an increase in the volume fraction and temperature. Further, their viscosities increased with an increase in the volume fraction but decreased when the temperature increased. The thermal conductivity and viscosity of the hybrid nanofluids increased by 16.7% and 105.4%, respectively, at a volume fraction of 2% and volume proportion of 90-10. The experimental results are compared with those predicted by classical theoretical models. Two correlations for thermal conductivity and viscosity of hybrid nanofluids are proposed on the basis of the experimental results.
机译:在该研究中,研究了SiO 2 /多壁碳纳米管(MWCNT)杂交纳米流体的导热率和粘度。纳米流体的体积分数在0.5%至2%的范围内变化,而SiO 2至MWCNTs体积比例为95-5或90-10。使用湿化学方法合成纳米流体,并使用两步技术分散甘油(碱)中的纳米颗粒。使用改性的瞬态热线方法和下降球粘度计测量纳米流体的热导体和粘度。在视觉上研究分散体的胶体稳定性。有效施加超声波破坏器和合适的表面活性剂(阿拉伯语)增强了分散行为。当研究了温度和体积分数对SiO 2 /多壁碳纳米管(MWCNT)杂交纳米流体的导热率和粘度的影响时,结果表明,纳米流体的导热率随着体积分数和温度的增加而增加。此外,它们的粘度随着体积分数的增加而增加,但在温度增加时减少。杂交纳米流体的导热率和粘度分别增加16.7%和105.4%,体积分数为2%和90-10的体积比例。将实验结果与经典理论模型预测的那些进行比较。提出了在实验结果的基础上提出了杂化纳米流体的导热性和粘度的两个相关性。

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