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首页> 外文期刊>International communications in heat and mass transfer >Influence of ultrasonication duration on Theological properties of nanofluid: An experimental study with alumina-water nanofluid
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Influence of ultrasonication duration on Theological properties of nanofluid: An experimental study with alumina-water nanofluid

机译:超声持续时间对纳米流体流变学特性的影响:氧化铝-水纳米流体的实验研究

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Nanofluid is being considered as a promising fluid for heat transfer and other applications. The performance of nanofluid is depends on its preparation processes, including the ultrasonication period. The objective of this study was to analyze the influence of ultrasonication period on Theological properties of nanofluids. A 0.5 vol.% of Al_2O_3 nanoparticle was suspended in distilled water and ultrasonicated for the periods of 0 to 5 h. Before and after dispersion, micrographs of nanoparticles were observed by electron microscopes. Rheological properties as viscosity at different shear rates were measured for different temperatures from 10 ℃ to 50 ℃. Other flow characteristics as the flow behavior index and consistency index were also studied for the nanofluids prepared by different periods of ultrasonication. Better colloidal dispersion and lower viscosity were observed for the increase of sonication time. Furthermore, with the increase of temperature, viscosity decreased rapidly, but moved towards non-Newtonian fluids. The research concluded that better colloidal dispersion as well as lower viscosity could be achieved with the use of possible higher periods of ultrasonication.
机译:纳米流体被认为是用于热传递和其他应用的有前途的流体。纳米流体的性能取决于其制备过程,包括超声处理时间。这项研究的目的是分析超声作用时间对纳米流体的流变性质的影响。将0.5体积%的Al_2O_3纳米颗粒悬浮在蒸馏水中,并超声处理0至5小时。分散前后,通过电子显微镜观察纳米颗粒的显微照片。在10℃至50℃的不同温度下测量了不同剪切速率下的流变学特性(粘度)。还研究了通过不同超声处理时间制备的纳米流体的其他流动特性,如流动行为指数和稠度指数。随着超声时间的增加,观察到更好的胶体分散性和更低的粘度。此外,随着温度的升高,粘度迅速降低,但向非牛顿流体转移。研究得出的结论是,使用更长的超声处理时间可以实现更好的胶体分散以及更低的粘度。

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