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首页> 外文期刊>Journal of Rheology >Response of elastoviscoplastic materials to large amplitude oscillatory shear flow in the parallel-plate and cylindrical-Couette geometries
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Response of elastoviscoplastic materials to large amplitude oscillatory shear flow in the parallel-plate and cylindrical-Couette geometries

机译:弹性粘塑性材料对平行板和圆柱库伊特几何形状中大振幅振荡剪切流的响应

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摘要

Most investigations of large amplitude oscillatory shear (LAOS) rheometry to date have presumed uniform shear. The study of structured materials would especially benefit from LAOS rheometry but require the use of the larger gaps and roughened surfaces in parallel-plate and cylindrical-Couette geometries. However, in these geometries, the shear profiles are not homogeneous throughout the deformation field. For elastoviscoplastic materials undergoing LAOS in these geometries, both elastic and viscoplastic deformations may occur simultaneously, complicating the data analysis. By means of model simulations, we provide a comprehensive picture of a model elastoviscoplastic material undergoing oscillatory shear deformation in the parallel-plate and cylindrical-Couette geometries, and we compare the oscillatory signals to those obtained from a uniform-shear field. Both displacement-controlled and torque-controlled oscillatory flows were simulated. We show that using popular linear formulas for mapping displacement to strain and torque to stress results in strain and stress signals that deviate significantly from their uniform-shear counterparts. For some limited cases, specifically displacement-controlled parallel-plate and torque-controlled cylindrical-Couette oscillatory rheometry, the use of advanced mapping methods to improve the calculation of strain and stress signals was demonstrated. As an alternative, we suggest that analyzing LAOS signals via constitutive modeling provides a unifying approach.
机译:迄今为止,大多数关于大振幅振荡剪切(LAOS)流变学的研究都假定了均匀剪切。结构材料的研究将特别受益于LAOS流变法,但需要在平行板和圆柱库埃特几何形状中使用较大的间隙和粗糙的表面。然而,在这些几何形状中,在整个变形场中,剪切轮廓不是均匀的。对于在这些几何结构中经历LAOS的弹性粘塑性材料,弹性变形和粘塑性变形可能同时发生,从而使数据分析复杂化。通过模型仿真,我们提供了在平行板和圆柱-库埃特几何形状中经历振荡剪切变形的弹性粘塑性材料模型的完整图片,并将振荡信号与从均匀剪切场获得的振荡信号进行了比较。模拟了位移控制和转矩控制的振荡流。我们表明,使用流行的线性公式来将位移映射到应变,将扭矩映射到应力会导致应变和应力信号明显偏离其均匀剪切对应物。对于某些有限的情况,特别是位移控制的平行板和转矩控制的圆柱-库埃特振荡流变仪,证明了使用先进的映射方法来改进应变和应力信号的计算。作为替代方案,我们建议通过本构模型分析LAOS信号提供了一种统一的方法。

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