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Time-resolved yield stress measurement of evolving materials using a creeping sphere

机译:使用蠕变球的时间分辨屈服应力测量演化材料

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摘要

Physicochemical phenomena influenced by aging or reaction can result in rheological changes across several orders of magnitude, but the classical rheometry methods available for analysis of concentrated suspensions can face challenges in correctly measuring the yield stress of aging/reacting (evolving) materials and need some precautions to enable precise measurement of the evolution of the yield stress with time. Here, a creeping sphere method has been applied to measure time-resolved yield stress; the force required to pull a solid sphere at very low velocity is used to calculate yield stress using previous analytical solutions for local flow of a creeping sphere in yield stress materials. The measured yield stress values agree well with the data recorded using vane-in-cup geometry for time-independent measurements using Carbopol gel. The creeping sphere is less affected by shear history because of the constantly changing shear region and therefore measures yield stress changes in evolving materials such as cement for a long time period in a single run, without altering ongoing structural network bond formation.
机译:受老化或反应影响的物理化学现象可能会导致流变变化跨越几个数量级,但是可用于分析浓缩悬浮液的经典流变方法在正确测量老化/反应(不断发展)材料的屈服应力方面可能面临挑战,需要采取一些预防措施以便精确测量屈服应力随时间的变化。在这里,已经采用蠕动球法来测量时间分辨的屈服应力。使用先前分析屈服应力材料中蠕变球的局部流动的解析方法,将以极低的速度拉动实心球所需的力用于计算屈服应力。所测得的屈服应力值与使用杯形叶片几何形状记录的数据非常吻合,以便使用Carbopol凝胶进行与时间无关的测量。由于剪切区域不断变化,因此蠕变球受剪切历史的影响较小,因此可以在单次运行中长时间测量不断演变的材料(例如水泥)中的屈服应力变化,而不会更改正在进行的结构网络键的形成。

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