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The rheological properties of shear thickening fluid reinforced with SiC nanowires

机译:SiC纳米线增强剪切增稠剂的流变特性

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The rheological properties of shear thickening fluid (STF) reinforced with SiC nanowires were investigated in this paper. Pure STF consists of 56vol% silica nano-particles and polyethylene glycol 400 (PEG 400) solvent was fabricated; and a specific amount of SiC nanowires were dispersed into this pure STF, and then the volume fraction of PEG400 was adjusted to maintain the volume fraction of solid phase in the STF at a constant of 56%. The results showed there was almost 30% increase in the initial and shear thickening viscosity of the STF reinforced with SiC nanowires compared to the pure STF. Combining with the hydrodynamic cluster theory, the effect of the mechanism of SiC nanowire on the viscosity of STF was discussed, and based on the experimental results, an analytical model of viscosity was used to describe the rheological properties of STF, which agreed with the experimental results.
机译:研究了用SiC纳米线增强的剪切增稠剂(STF)的流变性能。纯STF由56vol%的二氧化硅纳米颗粒组成,并制备了聚乙二醇400(PEG 400)溶剂;然后将一定量的SiC纳米线分散到该纯净的STF中,然后调节PEG400的体积分数,以使STF中固相的体积分数保持恒定在56%。结果表明,与纯STF相比,用SiC纳米线增强的STF的初始粘度和剪切增稠粘度增加了近30%。结合流体力学聚类理论,探讨了SiC纳米线机理对STF黏度的影响,并基于实验结果,采用黏度分析模型描述了STF的流变性质,与实验结果相吻合。结果。

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