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On the elusive nature of Carbopol gels: 'model', weakly thixotropic, or time-dependent viscoplastic materials?

机译:在Carbopol凝胶的难以捉摸的本质上:“模型”,弱触变性或时间依赖性粘性材料?

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摘要

The question of whether Carbopol gels always behave as "model" yield stress material is addressed experimentally. Prompted by several simple hydrodynamic experiments performed with Carbopol gels that can not be fully understood within the commonly accepted "model" picture, we revisit the yielding behaviour of a Carbopol gel. When subjected to a loading/unloading process, the yielding of the Carbopol is gradual and exhibits a rheological hysteresis. By in-situ visualisation of the microstructure it is demonstrated that these features do not originate from a micro-structural damage of the micro-gel. A systematic description of the role of the rate at which the material is forced (loaded or unloaded) on the yielding scenario is given. In closing, the question of how simple a scalar model can be and yet accurately describe the experimentally observed yielding scenario of a Carbopol gel in a rheometric flow is addressed. It is concluded that simple scalar models may do such job as long as they are not too simple and include a minimal amount of physical ingredients.
机译:实验解决了Carbopol Gels是否始终表现为“模型”产量应力材料的问题。由几个简单的流体动力学实验提示使用Carbopol凝胶进行,无法在普通接受的“模型”图片中不能完全理解,我们重新审视Carbopol凝胶的产生行为。当经过装载/卸载过程时,Carbopol的屈服是渐进的并且表现出流变滞后。通过原位可视化微观结构,证明这些特征不源于微凝胶的微结构损伤。给出了在屈服场景上强制(加载或卸载)的速率的作用的系统描述。在结束时,标量模型可以尚能准确地描述如何描述在流变流程中的实验观察到的Carbopol凝胶的屈服场景。结论是,只要它们不是太简单并且包括最小量的物理成分,简单的标量模型可能会这样做这项工作。

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    Univ Nantes Lab Therm &

    Energie Nantes UMR 6607 CNRS Rue Christian Pauc BP 50609 F-44306 Nantes 3 France;

    Univ Chem Technol Prague Dept Organ Chem Tech 1905-5 Prague 16628 Czech Republic;

    Czech Acad Sci Inst Macromol Chem Heyrovskeho Nam 2 Prague 16206 Czech Republic;

    Univ Liverpool Sch Engn Lab Tech Phys Liverpool L69 3GH Merseyside England;

    Univ Nantes Lab Therm &

    Energie Nantes UMR 6607 CNRS Rue Christian Pauc BP 50609 F-44306 Nantes 3 France;

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  • 正文语种 eng
  • 中图分类 流体力学;
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