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Dependence of viscosity of suspensions of ceramic nanopowders in ethyl alcohol on concentration and temperature

机译:陶瓷纳米粉在乙醇中的悬浮液粘度对浓度和温度的依赖性

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摘要

This work presents results of measurements of viscosity of suspensions including yttrium oxide (Y2O3), yttrium aluminum garnet (Y3Al5O12) and magnesium aluminum spinel (MgAl2O4) nanopowders in ethanol. Nanoparticles used in our research were either commercially available (Baikowski) or nanopowders newly developed in the Institute of Ceramics and Building Materials in Warsaw, Poland. The study was conducted in a wide range of shear rates (0.01 to 2,000 s−1) and temperature interval from -15°C to 20°C. A Haake Mars 2 rheometer from Thermo Fisher, Germany, was used in the Biophysics Laboratory at Rzeszów University of Technology. Most of the samples show a non-Newtonian behaviour. It was confirmed with a Rheo-NMR system from Bruker that 10% by weight of Y2O3 suspension is a non-Newtonian fluid. In this work, we also report an unexpected behaviour of the viscosity of some samples (Y2O3 and Y3Al5O12) due to sedimentation effect.
机译:这项工作提出了在乙醇中测量悬浮液粘度的结果,这些悬浮液包括氧化钇(Y2O3),钇铝石榴石(Y3Al5O12)和镁铝尖晶石(MgAl2O4)纳米粉。在我们的研究中使用的纳米颗粒是可商购的(Baikowski)或波兰华沙陶瓷与建筑材料研究所新开发的纳米粉。该研究在剪切速率(0.01至2,000 s -1 )和温度范围为-15°C至20°C的宽范围内进行。来自热电费舍尔的Haake Mars 2流变仪在热舒夫工业大学的生物物理实验室中使用。大多数样本显示非牛顿行为。用来自布鲁克的Rheo-NMR系统证实,按重量计10%的Y 2 O 3悬浮液是非牛顿流体。在这项工作中,我们还报告了由于沉降作用而引起的某些样品(Y2O3和Y3Al5O12)粘度的意外行为。

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