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首页> 外文期刊>Journal of Non-Newtonian Fluid Mechanics >Validation of Optimal Fourier Rheometry for rapidly gelling materials and its application in the study of collagen gelation
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Validation of Optimal Fourier Rheometry for rapidly gelling materials and its application in the study of collagen gelation

机译:快速胶凝材料最佳傅里叶流变学的验证及其在胶原胶凝研究中的应用

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摘要

Rheological Gel Point measurements may incur errors in the case of rapid gelling systems due to the limitations of multiple frequency oscillatory shear techniques such as frequency sweeps and Fourier Transform Mechanical Spectroscopy, FTMS. These limitations are associated with sample mutation and data interpolation. In the present paper we consider how an alternative rapid characterisation technique known as Optimal Fourier Rheometry, OFR, can be used to study a rapidly gelling material, namely collagen at near physiological temperatures. The OFR technique is validated using a model reference gelling system whose GP characteristics have been widely reported. An analysis of the susceptibility of OFR measurements to rheometrical artefacts is made prior to its use in the study of rapid gelling collagen gels formed over a range of physiologically relevant collagen concentrations. The results of this OFR study are the first measurements of the stress relaxation characteristics of collagen gels performed in a single theological experiment. (C) 2015 The Authors. Published by Elsevier B.V.
机译:在快速胶凝系统中,由于多频振荡剪切技术(例如扫频和傅立叶变换机械光谱法,FTMS)的局限性,流变胶凝点的测量可能会导致错误。这些限制与样本突变和数据插值相关。在本文中,我们考虑如何使用一种称为“最佳傅里叶流变法”(OFR)的快速表征技术来研究一种快速胶凝材料,即在接近生理温度的胶原蛋白。使用模型参考胶凝系统验证了OFR技术,该系统的GP特性得到了广泛报道。在将OFR测量用于研究在一系列生理相关胶原浓度范围内形成的快速胶凝胶原凝胶之前,先进行了OFR测量对流变伪像的敏感性分析。这项OFR研究的结果是在单个神学实验中首次测量胶原蛋白凝胶的应力松弛特性。 (C)2015作者。由Elsevier B.V.发布

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