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首页> 外文期刊>Rheologica Acta >Viscoelastic measurement of complex fluids using forced oscillating torsion resonator with continuously varying frequency capability
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Viscoelastic measurement of complex fluids using forced oscillating torsion resonator with continuously varying frequency capability

机译:使用具有连续变化频率能力的强制振荡扭转共振器对复杂流体进行粘弹性测量

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摘要

Traditional torsional resonators, often obtaining the viscoelastic moduli of complex fluids only at one or several given discrete frequencies, lack the continuously varying frequency capability. This is an obvious disadvantage of the traditional torsional resonator technique. This paper presents an improved strategy, based on our previous discrete-frequency-measuring method (Wang et al., J Rheol 52:999–1011, 2008), to overcome such restriction and thus accomplish the continuously varying frequency capability of the traditional torsional resonator for measuring the viscoelastic properties of complex fluids. The feasibility of this strategy is demonstrated with the Newtonian fluids (several water–glycerol solutions) of viscosities varying from 10 to 1,400 cp by using our homemade torsion resonator apparatus in the 10 ~ 2,500 rad/s frequency range (continuous frequencies). Some results for typical viscoelastic polymers (two polyethylene oxide (PEO) aqueous solutions) are also given. Additionally, a comparison of the PEO results is made with the common rheometer technique. It is demonstrated that this improved strategy could enable the traditional torsional resonators, with one oscillating resonance mode, to work as the microrheological technique and the common rheometer technique in the continuous frequency range.
机译:传统的扭转谐振器通常只能在一个或几个给定的离散频率下获得复杂流体的粘弹性模量,但缺乏连续变化的频率能力。这是传统扭转共振器技术的明显缺点。本文基于我们先前的离散频率测量方法(Wang等人,J Rheol 52:999-1011,2008)提出了一种改进的策略,以克服这种限制,从而实现传统扭力的连续变化的频率能力共振器,用于测量复杂流体的粘弹性。通过使用我们的自制扭振共振器装置在10〜2500 rad / s的频率范围(连续频率)中,牛顿流体(几种水-甘油溶液)的粘度在10到1400 cp之间变化,证明了该策略的可行性。还给出了一些典型的粘弹性聚合物(两种聚环氧乙烷(PEO)水溶液)的结果。另外,使用常规流变仪技术对PEO结果进行比较。事实证明,这种改进的策略可以使具有扭转振荡模式的传统扭转共振器在连续频率范围内可以用作微流变技术和普通流变仪技术。

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