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Nuclear magnetic resonance imaging for viscosity measurements of non-Newtonian fluids using a miniaturized RF coil

机译:核磁共振成像,用于使用微型RF线圈测量非牛顿流体的粘度

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This work reports on applications of a miniaturized RF coil combined with a capillary tube for the design of a portable on-line/in-line magnetic resonance imaging (MRI) based viscometer. A microfabricated Helmholtz RF coil with the average diameter of 7 mm and a Teflon tube with ID = 1.02 mm were utilized. Tube flows of two aqueous CMC polymersolutions (2% with MW = 250k and l% with MW = 700k) of different viscosities at 1.99 uL s~-1 volumetric flow rate were monitored. It was shown that the RF coil and the capillary permit measurement of shear thinning phenomena during flow. A constitutive power law model was used to analyse the tube flows. Viscosity was successfully measured for both the CMC solutions. The less viscous CMC solution was found to have the power index n = 0.77 +- 0.06 and the flow consistency coefficient K = 1.68, whereas the more viscous CMC solution exhibited n == 0.5 1 0.03 and K = 7.23. The MRI measurements compared well with measurements of the same samples performed on a conventional rotational rheometer. The range of shear rates covered by the obtained MRI viscosity data was 3-20 s~-1.
机译:这项工作报告了将微型射频线圈与毛细管结合用于基于便携式在线/在线磁共振成像(MRI)的粘度计设计的应用。使用平均直径为7毫米的超细Helmholtz RF线圈和ID = 1.02毫米的特氟隆管。在1.99 uL s〜-1体积流量下,监测了两种粘度不同的CMC水性聚合物溶液(MW = 250k为2%,MW = 700k为1%)的管流量。结果表明,射频线圈和毛细管可以测量流动过程中的剪切稀化现象。本构幂律模型用于分析管道流量。成功测量了两种CMC溶液的粘度。发现粘性较小的CMC解决方案的功率指数为n = 0.77±0.06,流密度系数K = 1.68,粘性较大的CMC解决方案显示为n == 0.5 1 0.03,K = 7.23。 MRI测量结果与在常规旋转流变仪上进行的相同样品的测量结果很好地比较。所获得的MRI粘度数据涵盖的剪切速率范围为3-20 s〜-1。

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