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存在具有非零滑移屈服应力的壁面滑移时的粘塑性库埃特流。

Viscoplastic Couette Flow in the Presence of Wall Slip with Non-Zero Slip Yield Stress.

作者信息

Damianou Yiolanda, Panaseti Pandelitsa, Georgiou Georgios C

机构信息

Department of Mathematics and Statistics, University of Cyprus, Nicosia 1678, Cyprus.

出版信息

Materials (Basel). 2019 Oct 31;12(21):3574. doi: 10.3390/ma12213574.

Abstract

The steady-state Couette flow of a yield-stress material obeying the Bingham-plastic constitutive equation is analyzed assuming that slip occurs when the wall shear stress exceeds a threshold value, the slip (or sliding) yield stress. The case of Navier slip (zero slip yield stress) is studied first in order to facilitate the analysis and the discussion of the results. The different flow regimes that arise depending on the relative values of the yield stress and the slip yield stress are identified and the various critical angular velocities defining those regimes are determined. Analytical solutions for all the regimes are presented and the implications for this important rheometric flow are discussed.

摘要

假设当壁面剪应力超过阈值(即滑移屈服应力)时发生滑移,对服从宾汉塑性本构方程的屈服应力材料的稳态库埃特流进行了分析。首先研究了纳维滑移(零滑移屈服应力)的情况,以便于分析和讨论结果。根据屈服应力和滑移屈服应力的相对值确定了出现的不同流动状态,并确定了定义这些状态的各种临界角速度。给出了所有状态的解析解,并讨论了这种重要流变测量流动的意义。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0fe7/6862606/14085872477e/materials-12-03574-g001.jpg

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