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首页> 外文期刊>Rheologica Acta: An International Journal of Rheology >The influence of fumed silica content, dispersion energy, and humidity on the stability of shear thickening fluids
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The influence of fumed silica content, dispersion energy, and humidity on the stability of shear thickening fluids

机译:烟雾二氧化硅含量,分散能和湿度对剪切增稠液稳定性的影响

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摘要

Shear thickening fluids (STFs) are smart materials that change from liquid to solid reversibly when undergoing critical stresses. These materials are good alternatives to improve applications where energy dissipation is important, for example, in the fabrication of liquid body armor and shock absorbing protective gear. However, as much as it is known about the effect of several variables on their properties, such as particle concentration and medium viscosity, the stability of these colloidal dispersions over time and over shearing is not yet well understood. The development and design of new applications depend on predicting for how long the material will keep its properties. In this project, we studied the influence of fumed silica content, ultrasonication energy used during dispersion of the silica particles, and humidity during storage to analyze the changes in properties of STFs. The influence of shearing magnitude on their properties was also studied. STFs with higher amounts of silica and produced using less dispersion energy showed the highest viscosity peak on initial tests, but they were also the least stable over time, due to flocculation of the particles. In stable samples, water absorption led to a large loss of maximum viscosity. The presence of humidity on samples diminished the overall viscosity, but did not prevent the sample from becoming a gel if the parameters used resulted in an unstable STF. Shearing the STF reduced its maximum viscosity, being more evident in samples with higher viscosity.
机译:剪切增稠液(STF)是在经历临界应力时可逆地从液体变为固体的智能材料。这些材料是改善能量耗散是重要的应用的良好替代方案,例如,在制造液体铠装和减震保护齿轮的制造中。然而,尽管如此,关于若干变量对其性质的影响,例如颗粒浓度和中粘度,这些胶体分散时间随时间和过度剪切的稳定性尚不清楚。新应用的开发和设计取决于预测材料将保持其性能的时间。在该项目中,我们研究了烟雾二氧化硅含量,在二氧化硅颗粒的分散过程中使用的超声能量,以及储存过程中使用的湿度来分析STF的性能变化。还研究了剪切幅度对其性质的影响。使用较少量的二氧化硅和使用较少的色散能量产生的STF在初始测试中显示出最高粘度峰值,但由于颗粒的絮凝,它们随着时间的推移也是最小的稳定性。在稳定的样品中,吸水率导致最大粘度的大损失。样品上的湿度的存在减少了整体粘度,但如果使用的参数导致不稳定的STF,则没有防止样品成为凝胶。剪切STF降低其最大粘度,在具有较高粘度的样品中更明显。

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