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Electrorheology of suspensions of elongated goethite particles

机译:细长甲石颗粒悬浮液的电风学

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We describe the rheology of moderately concentrated suspensions of elongated goethite (beta-FeOOH) particles with axial ratio around 8, both in the absence and presence of high-strength DC electric fields (up to 4.3 kV/mm). The selected liquid medium was a silicone oil with 1 Pa s nominal viscosity. The aim of this work is the evaluation of the electrorheological (ER) effect of suspensions containing highly anisotropic particles and the comparison with that exhibited by samples made of less anisotropic particles of similar chemical composition (hematite, alpha-Fe2O3). Under the application of large electric fields, goethite suspensions changed their theological behavior, as expected, from Newtonian - at zero field - to shear thinning, thus displaying electrorheological response. A well defined yield stress (sigma(y)) was observed in the electrified suspensions, that increases with both the field strength and particle concentration phi, although following different trends to those predicted by the classical chain models. sigma(y) was found to depend on phi in a parabolic fashion, as a consequence of the fact that field-induced structures in the suspensions do not consist of individual chains as the classical models consider, but of much more complex particle aggregates. The yield stress was found to be almost linearly dependent on the field strength, contrary to the predictions of the polarization model (sigma(y) infinity E-2). The field-induced enhancement of the conductivity of the host oil, leading to saturation of the electrical forces among polarized particles, is required to explain this deviation. The goethite suspensions were also analyzed under oscillating shear stresses for investigation of their viscoelastic properties as well. The results indicate that the ER effect was only noticeable for sufficiently high field strength and particle concentrations, typically >1 kV/mm and >4% in volume fraction, respectively. In such conditions the elastic modulus G' was independent of the shear frequency as corresponds to an elastic solid-like structure. Suspensions of goethite particles display an ER effect with the same characteristics as hematite dispersions (same tendencies of sigma(y) with both E and phi(2)), indicating that the physical mechanism responsible of such effects is the same in both cases. However, suspensions containing elongated particles produce a more efficient response to the electric field than those made of irregularly shaped solids, since the former give rise to higher yield stress for the same field strength, and exhibit a lower viscosity in absence of external excitation.
机译:我们描述了在不存在和存在的高强度直流电场(高达4.3kV / mm)的情况下,轴向比在8周围的轴向比的中间浓缩悬浮液的流变学。所选液体介质是硅油,具有1Pa的标称粘度。本作作品的目的是评估含有高各向异性颗粒的悬浮液的电气学(ER)效应,并与由类似化学成分(赤铁矿,α-Fe2O3)的各向异性颗粒制成的样品呈现的比较。在大电场的应用下,甲石悬浮液按预期从牛顿 - 在零场 - 剪切变薄时改变了他们的神学行为,从而显示了电流反应。在电气化的悬浮液中观察到明确的屈服应力(Sigma(Y)),其随着场强和颗粒浓度Phi增加,尽管跟随经典链模型预测的那些不同的趋势。发现Sigma(Y)以抛物线方式依赖于PHI,因此由于悬浮液中的现场诱导的结构不包括古典模型考虑的单独链,但更复杂的颗粒聚集体。发现屈服应力几乎线性地取决于场强,与偏振模型的预测相反(Sigma(Y)Infinity E-2)。可以说明偏振颗粒之间的电力的饱和度的现场诱导的主体油的导电性的增强,以解释这种偏差。在振荡剪切应力下也分析了可粘散悬浮液,用于研究其粘弹性性能。结果表明,ER效应仅针对足够高的场强和颗粒浓度,通常> 1kV / mm和> 4%的体积级分。在这种情况下,弹性模量G'与剪切频率无关,与弹性固体相同的结构相对应。甲酸酯颗粒的悬浮液显示与赤铁矿分散体相同的特征(Sigma(Y)与e和phi(2))相同的特征,表明在这两种情况下,负责这种效果的物理机制是相同的。然而,含有细长颗粒的悬浮液将产生比由不规则形状固体制成的电场的更有效的响应,因为前者导致相同场强的屈服应力更高,并且在没有外部激发的情况下表现出较低的粘度。

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