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首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Assessment of the stress relaxation characteristics of critical gels formed under unidirectional shear flow by controlled stress parallel superposition rheometry
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Assessment of the stress relaxation characteristics of critical gels formed under unidirectional shear flow by controlled stress parallel superposition rheometry

机译:通过控制应力平行叠加流变法评估单向剪切流下形成的关键凝胶的应力松弛特性

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Processes involving a unidirectional shear flow component are widespread in industrial manufacturing techniques such as printing and coating, or in physiological events such as blood coagulation. Standard rheometric techniques are usually employed under quiescent conditions and as such are inappropriate for the study of microstructural modification induced by the presence of a unidirectional shear flow. We demonstrate how controlled stress parallel superposition (CSPS) may be exploited to enable accurate detection of the Gel Point and analysis of Gel Point parameters for systems undergoing a viscoelastic liquid (VEL) to viscoelastic solid (VES) transition in the presence of a unidirectional flow field. Specifically, we note that certain features of the CSPS experiment, when performed near the Gel Point, may obviate previously reported concerns regarding the experiment. A biopolymer system (gelatin) which forms gels by thermoreversible gelation is employed as a model gelling material to confirm the ability of CSPS to characterise the stress relaxation characteristics of critical-gels in the presence of (a) progressively decreasing and (b) progressively increasing unidirectional strain rate and oscillatory strain amplitude. Additional validation of CSPS results is reported for a silicone dielectric gel used in the industrial production of printed electronic products. Finally, CSPS is used to investigate microstructural modification of fibrin thrombin gels as a consequence of clot formation under a unidirectional shear stress. The results confirm the validity of the CSPS technique in gelation studies and the technique is used, for the first time, to directly record the thermally induced VES to VEL transition in aqueous gelatin systems. (C) 2015 The Authors. Published by Elsevier B.V.
机译:涉及单向剪切流分量的过程广泛应用于工业制造技术(例如印刷和涂布)或生理事件(例如血液凝固)中。标准流变技术通常在静态条件下使用,因此不适用于研究由于存在单向剪切流而引起的微结构改性。我们演示了如何利用受控应力平行叠加(CSPS)来准确检测凝胶点,并分析存在单向流动时经历粘弹性液体(VEL)向粘弹性固体(VES)转变的系统的凝胶点参数领域。具体来说,我们注意到CSPS实验的某些功能在凝胶点附近执行时,可以避免先前报道的对该实验的担忧。通过热可逆凝胶形成凝胶的生物聚合物系统(明胶)用作模型胶凝材料,以确认在以下情况下,CSPS表征临界凝胶应力松弛特性的能力:(a)逐渐降低,(b)逐渐增加单向应变率和振荡应变幅度。据报道,用于印刷电子产品工业生产的有机硅介电凝胶CSPS结果得到了其他验证。最后,CSPS用于研究纤维蛋白凝血酶凝胶的微结构修饰,该修饰是由于单向剪切应力下血块形成所致。结果证实了CSPS技术在胶凝研究中的有效性,该技术首次用于直接记录热诱导的VES在水性明胶系统中向VEL的转变。 (C)2015作者。由Elsevier B.V.发布

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