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Squeezing flaw of viscoplastic fluids subject to wall slip

机译:粘塑性流体的挤压缺陷会受到壁滑的影响

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摘要

Polymer processing operations such as compression molding, sheet forming and injection molding can be modeled by squeezing flows between two approaching parallel surfaces in relative motion. Squeezing flows also find applications in the modeling of lubrication systems, and in the determination of rheological properties. Here, analytical solutions are developed for the constant-speed squeezing flow of viscoplastic fluids. It is assumed that the fluid is purely viscous, and hence viscoelastic effects unimportant. The rheological behavior of the viscoplastic fluids is represented by the Herschel-Bulkley viscosity function. The deformation behavior of commonly encountered viscoplastic fluids is generally complicated by the presence of wall slip at solid walls, which is a function of the wall shear stress. The slip coefficient that relates the slip velocity to the shear stress is affected by the material of construction and also the roughness of the solid surfaces, leading to the possibility of different slip coefficients at various solid surfaces. The model developed in this study accommodates the use of different slip coefficients at different solid surfaces. The accuracy of the solutions is established, and the effects of various parameters such as slip coefficient and apparent yield stress are examined. The solutions provide useful design expressions that can be utilized for squeezing flows of viscoplastic fluids, with or without wall slip at the solid boundaries. [References: 27]
机译:可以通过以相对运动挤压两个接近的平行表面之间的流动来对诸如压塑,片材成型和注塑等聚合物加工操作进行建模。挤压流还可以应用于润滑系统的建模以及流变特性的确定。在此,为粘塑性流体的恒速挤压流开发了分析解决方案。假定流体是纯粘性的,因此粘弹性效应并不重要。粘塑性流体的流变行为由Herschel-Bulkley粘度函数表示。通常会遇到的粘塑性流体的变形行为由于在实壁处存在壁滑而变得复杂,这是壁剪切应力的函数。将滑移速度与剪切应力相关联的滑移系数受构造材料以及实体表面粗糙度的影响,从而导致在各种实体表面处具有不同的滑移系数的可能性。在这项研究中开发的模型可以在不同的实体表面上使用不同的滑移系数。确定了解决方案的准确性,并检查了诸如滑移系数和表观屈服应力等各种参数的影响。该解决方案提供了有用的设计表达式,可用于挤压粘塑性流体的流动,无论在固体边界处是否有壁滑。 [参考:27]

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