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On a new method to determine the yield stress in lubricating grease

机译:确定润滑脂屈服应力的新方法

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摘要

An experimental study using both a controlled stress and a controlled strain rheometer has been undertaken to characterize lubricating grease in shear, creep, stress relaxation, and oscillatory flow, with a main focus on determining the yield stress. The yield stress was examined using a cone–plate and parallel-plate system with smooth and rough surfaces. Clear discrepancies were observed in the yield stress values obtained using different techniques where oscillatory strain sweep measurements seem to be the best choice. This technique is less sensitive to wall slip, shows good reproducibility, and is relatively easy to perform. The method also shows that the yield stress is a function of the imposed frequency and therefore of the time domain. At lower values of shear—that is, in the linear viscoelastic regime—there is no structural breakdown and the rheology of the grease can be described by the Maxwell model where the stress and the strain are almost proportional to each other. Based on this observation, a novel method to determine the yield stress is proposed: “The yield stress can be determined from the point where this linearity no longer applies.” This method is compared to those that are commonly used. The yield stress was found to depend exponentially on temperature and linearly on frequency.
机译:已经进行了使用可控应力和可控应变流变仪的实验研究,以表征剪切,蠕变,应力松弛和振荡流动中的润滑脂,主要侧重于确定屈服应力。使用具有光滑和粗糙表面的锥板和平行板系统检查了屈服应力。使用不同技术获得的屈服应力值存在明显差异,其中振荡应变扫描测量似乎是最佳选择。该技术对壁滑不太敏感,显示出良好的可重复性,并且相对容易执行。该方法还表明屈服应力是施加频率的函数,因此是时域的函数。在较低的剪切值下(即在线性粘弹性状态下),不会发生结构破坏,并且润滑脂的流变性可以通过Maxwell模型来描述,其中应力和应变几乎彼此成比例。基于此观察结果,提出了一种确定屈服应力的新颖方法:“可以从不再适用此线性的点确定屈服应力。”将该方法与常用方法进行比较。发现屈服应力与温度呈指数关系,而与频率呈线性关系。

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