首页> 外文OA文献 >The rheology of aqueous solutions of ethyl hydroxy-ethyl cellulose (EHEC) and its hydrophobically modified analogue (hmEHEC): extensional flow response in capillary break-up, jetting (ROJER) and in a cross-slot extensional rheometer
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The rheology of aqueous solutions of ethyl hydroxy-ethyl cellulose (EHEC) and its hydrophobically modified analogue (hmEHEC): extensional flow response in capillary break-up, jetting (ROJER) and in a cross-slot extensional rheometer

机译:乙基羟乙基纤维素(EHEC)及其疏水改性类似物(hmEHEC)水溶液的流变学:毛细管破裂,喷射(ROJER)和跨槽拉伸流变仪中的拉伸流动响应

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摘要

Cellulose derivatives containing associating hydrophobic groups along their hydrophilic backbone are used as rheology modifiers in the formulation of water-based spray paints, medicinal sprays, cosmetics and printable inks. Jetting and spraying applications of these materials involve progressive thinning and break-up of a fluid column or sheet into drops. Strong extensional kinematics develop in the thinning fluid neck. In viscous Newtonian fluids, inertial and viscous stresses oppose the surface tension-driven instability. In aqueous solutions of polymers such as Ethyl Hydroxy-Ethyl Cellulose (EHEC), chain elongation provides additional elastic stresses that can delay the capillary-driven pinch-off, influencing the sprayability or jettability of the complex fluid. In this study, we quantify the transient response of thinning filaments of cellulose ether solutions to extensional flows in a Capillary Break-up Extensional Rheometer (CaBER) and in a forced jet undergoing break-up using Rayleigh Ohnesorge Jetting Extensional Rheometry (ROJER). We also characterize the steady state molecular deformations using measurements of the flow-induced birefringence and excess pressure drop in an extensional stagnation point flow using a Cross-Slot Extensional Rheometer (CSER). We show that under the high extension rates encountered in jetting and spraying, the semi-dilute solutions of hydrophobically modified ethyl hydroxy-ethyl cellulose (hmEHEC) exhibit extensional thinning, while the unmodified bare chains of EHEC display an increase in extensional viscosity, up to a plateau value. For both EHEC and hmEHEC dispersions, the low extensibility of the cellulose derivatives limits the Trouton ratio observed at the highest extension rates attained (close to 10[superscript 5] s[superscript −1]) to around 10–20. The reduction in extensional viscosity with increasing extension rate for the hydrophobically modified cellulose ether is primarily caused by the disruption of a transient elastic network that is initially formed by intermolecular association of hydrophobic stickers. This extensional thinning behavior, in conjunction with the low extensibility of the hydrophobically modified cellulose ether additives, makes these rheology modifiers ideal for controlling the extensional rheology in formulations that require jetting or spraying, with minimal residual stringiness or stranding.
机译:沿其亲水性主链包含疏水基团的纤维素衍生物在水基喷漆,医用喷剂,化妆品和可印刷油墨的配方中用作流变改性剂。这些材料的喷射和喷涂应用包括将流体柱或薄板逐渐变薄并破裂成液滴。稀疏的液体颈部发展出强大的伸展运动学。在粘性牛顿流体中,惯性应力和粘性应力与表面张力驱动的不稳定性相反。在诸如乙基羟乙基纤维素(EHEC)之类的聚合物的水溶液中,链伸长会提供额外的弹性应力,这些应力会延迟毛细管驱动的夹断,从而影响复杂流体的喷涂性或喷射性。在这项研究中,我们量化了纤维素醚溶液细化纤丝对毛细管破裂拉伸流变仪(CaBER)和使用瑞利·奥内斯堡喷射拉伸流变仪(ROJER)进行分解的强制喷射中的拉伸流的瞬态响应。我们还使用跨槽拉伸流变仪(CSER)通过测量流致双折射和扩展滞止点流中的过大压降来表征稳态分子变形。我们表明,在喷射和喷涂过程中遇到的高延伸率下,疏水改性的乙基羟基-乙基纤维素(hmEHEC)的半稀释溶液显示出延伸稀化,而EHEC的未修饰裸链显示出延伸粘度的增加,直至稳定值。对于EHEC和hmEHEC分散体,纤维素衍生物的低延展性将在达到的最高延伸率(接近10 [上标5] s [上标-1])下观察到的Trouton比限制为10-20。疏水改性的纤维素醚的拉伸粘度随扩展速率的增加而降低,主要是由于瞬时弹性网络的破坏引起的,该网络最初是由疏水性胶粘剂的分子间缔合形成的。这种延伸稀化行为,加上疏水改性的纤维素醚添加剂的低延展性,使得这些流变改性剂非常适合控制需要喷射或喷涂的配方中的延伸流变性能,并具有最小的残留拉丝或绞合现象。

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