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首页> 外文期刊>Rheologica Acta >The effect of temperature gradients on the sharkskin surface instability in polymer extrusion through a slit die
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The effect of temperature gradients on the sharkskin surface instability in polymer extrusion through a slit die

机译:温度梯度对通过狭缝模头挤出的鲨鱼皮表面不稳定性的影响

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The sharkskin surface instability is commonly observed in the extrusion of polymer melts. We present a series of experiments in which a specifically designed rectangular slit die with insulated and independently heated sides and is used to induce precise temperature gradients across a flowing polyethylene melt. Our previous experiments demonstrated that the character of the surface distortions produced by the sharkskin instability was a function of the die wall temperature and therefore the extrudate had viscoelastic properties at the surface. In this paper, we explore the role of temperature and viscoelastic property gradients near the capillary wall. The amplitude of the sharkskin instability is quantified and plotted against apparent shear and extension rates. Analysis of the data demonstrates that the amplitude and frequency of the instability is independent of bulk temperature and temperature gradient and is dependent only on wall temperature. The data are normalized using a dimensionless Weissenberg number based on the extension rate to collapse the data collected over all temperatures and gradients onto a single master curve. We conclude with an example of a rectangular extrudate exhibiting varying surface roughness due to differential die heating and discuss the implications of our observations on the sharkskin surface instability mechanism and on commercial applications.
机译:鲨鱼皮的表面不稳定性通常在聚合物熔体的挤出过程中观察到。我们提出了一系列实验,在这些实验中,专门设计了具有绝缘和独立加热面的矩形狭缝模具,用于在流动的聚乙烯熔体上引起精确的温度梯度。我们以前的实验表明,由鲨鱼皮不稳定性产生的表面变形的特征是模具壁温度的函数,因此挤出物在表面具有粘弹性。在本文中,我们探索了毛细管壁附近温度和粘弹性梯度的作用。鲨鱼皮不稳定性的幅度被量化,并针对表观剪切和延伸速率作图。数据分析表明,不稳定性的幅度和频率与整体温度和温度梯度无关,并且仅与壁温有关。使用基于扩展率的无因次Weissenberg数对数据进行归一化,以将在所有温度和梯度下收集的数据折叠到一条主曲线上。我们以一个矩形挤出物为例进行了总结,该矩形挤出物由于不同的模具加热而呈现出不同的表面粗糙度,并讨论了我们的观察结果对鲨鱼皮表面不稳定性机理和商业应用的影响。

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