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High-shear rate rheometry of micro-nanofibrillated cellulose (CMF/CNF) suspensions using rotational rheometer

机译:使用旋转流变仪的微纳米纤维纤维素(CMF / CNF)悬浮液的高剪切速率流变学

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摘要

Suspensions of cellulose micro- and nanofibrils are widely used in coatings, fibre spinning, 3D printing and as rheology modifiers where they are frequently exposed to shear rates 10(4) s(-1), often within small confinements. High-shear rate rheological characterisation for these systems is therefore vital. Rheological data at high-shear rates are normally obtained using capillary and microfluidic rheometers, which are found in relative scarcity within research facilities compared to rotational rheometers. Also, secondary flows and wall depletion prevalent at such high-shear rates often go unnoticed or unquantified, rendering the measurement data unreliable. Reliable high shear rate rheometry using rotational rheometers is therefore desirable. Suspension of TEMPO-oxidised CMF/CNF was tested for its high-shear rate rheological properties using parallel plate geometry at measurement gaps 150-40 A mu m and concentric cylinder at 1 mm gap. The errors from gap setting, radial dependence of shear stress and wall depletion were quantified and accounted for. Viscosity data from 0.1 to 30,000 s(-1) shear rates was constructed using both geometries in agreement. Possibilities of secondary flows, radial migration of fluid and viscous heating were ruled out.
机译:纤维素微纤维和纳米纤维的悬浮液广泛用于涂料,纤维纺丝,3D印刷和作为流变改性剂,它们经常暴露于剪切速率和GT; 10(4)S(-1),通常在小限制范围内。因此,这些系统的高剪切速率流变表征至关重要。通常使用毛细管和微流体流变仪获得高剪切速率的流变数据,与旋转流变仪相比,在研究设施中的相对稀缺中发现。此外,在这种高剪切速率下普遍存在的次流和壁耗尽通常不会被忽视或未查询,使测量数据不可靠。因此,希望使用旋转流变仪的可靠高剪切速率计流变仪。通过在测量间隙150-40 a mu m和1mm间隙的间隙下,使用平行板几何形状测试其高剪切速率流变性能的悬浮液的高剪切速率流变性能。量化剪切应力和墙壁耗尽的间隙设置,径向依赖性的误差被量化并占了。使用两个几何形式构建0.1至30,000 s(-1)剪切速率的粘度数据。排除了二次流动,流体和粘性加热的径向迁移的可能性。

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