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首页> 外文期刊>Polymer engineering and science >What is the role of 'pressure' in the use of capillary and slit flows to determine the shear-rate dependent viscosity of a viscoelastic fluid?
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What is the role of 'pressure' in the use of capillary and slit flows to determine the shear-rate dependent viscosity of a viscoelastic fluid?

机译:在使用毛细管流和缝隙流确定粘弹性流体的剪切速率相关粘度时,“压力”的作用是什么?

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The purpose of this review article is to clear the confusion created by some investigators, who erroneously thought that the pressure transducers mounted on the wall of a capillary or slit die measured a quantity that could meaningfully be called "pressure," accurately stated "indeterminate isotropic contribution to the total stress," and then reported on the effect of "pressure" on the shear-rate dependent viscosity of a viscoelastic fluid. On the other hand, reference to such a quantity is not needed to calculate the wall shear stress and thus shear viscosity in fully developed flow of incompressible, viscoelastic polymer melts in a capillary or slit die; instead only information on the gradient of the total wall normal stress is needed. Further, it is pointed out that much of the literature discussing "pressure shift factor" to describe the effect of "pressure" on the viscosity of polymer melts in flow through a capillary or slit die is based on an erroneous belief that there exists a physically meaningful isotropic "pressure" that can be measured.
机译:这篇评论文章的目的是消除一些研究人员造成的困惑,他们错误地认为安装在毛细管或狭缝模具壁上的压力传感器测量的量可以有意义地称为“压力”,准确地说是“确定各向同性” ”,然后报道了“压力”对粘弹性流体的剪切速率依赖性粘度的影响。另一方面,在毛细管或狭缝模头中不可压缩的粘弹性聚合物熔体的充分展开的流动中,不需要参考该量来计算壁剪切应力,从而计算剪切粘度。相反,仅需要有关总壁法向应力梯度的信息。此外,要指出的是,许多讨论“压力转移因子”以描述“压力”对通过毛细管或狭缝模头流动的聚合物熔体粘度的影响的文献都是基于以下错误观点:可以测量的有意义的各向同性“压力”。

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