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Pressure effects on viscosity and flow stability of polyethylene melts during extrusion

机译:压力对挤出过程中聚乙烯熔体粘度和流动稳定性的影响

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摘要

In the present work, the effects of pressure on the viscosity and flow stability of four commercial grade polyethylenes (PEs) have been studied: linear-low-density polyethylene copolymer, high-density polyethylene, metallocene polyethylenes with short-chain branches (mPE-SCB), and metallocene polyethylenes with long chain branching (mPE-LCB). The range of shear rates considered covers both stable and unstable flow regimes. “Enhanced exit-pressure” experiments have been performed attaining pressures of the order of 500×105 Pa at the die exit. The necessary experimental conditions have been clearly defined so that dissipative heating can be neglected and pressure effects isolated. The results obtained show an exponential increase in both shear and entrance-flow pressure drop with mean pressure when shear rate is fixed and as long as flow is stable. These pressure effects are described by two pressure coefficients, βS under shear and, βE under elongation, that are calculated using time–pressure superposition and that are independent of mean pressure and flow rate. For three out of four PE, pressure coefficient values can be considered equal under shear and under elongation. However, for the mPE-LCB, the pressure coefficient under elongation is found to be about 30% lower than under shear. Flow instabilities in the form of oscillating flows or of upstream instabilities appear at lower shear rates as mean pressure increases. Nevertheless, the critical shear stress at which they are triggered remains independent of mean pressure. Moreover, it is found that the βS values obtained for stable flows do not differ much from the values obtained during upstream instability regimes, and differ really from pressure effects observed under oscillating flow and slip conditions.
机译:在目前的工作中,已经研究了压力对四种商业级聚乙烯(PE)的粘度和流动稳定性的影响:线性低密度聚乙烯共聚物,高密度聚乙烯,带有短链分支的茂金属聚乙烯(mPE- SCB)和具有长链支化的茂金属聚乙烯(mPE-LCB)。所考虑的剪切速率范围涵盖了稳定和不稳定的流动状态。已经进行了“增强出口压力”实验,以在模头出口获得大约500×105 Pa的压力。已经明确定义了必要的实验条件,因此可以忽略耗散的加热并隔离压力影响。获得的结果表明,当剪切速率固定且流量稳定时,剪切力和入口压力降均随平均压力呈指数增长。这些压力效应由两个压力系数来描述,剪切力下的βS和伸长下的βE,这两个压力系数是使用时间-压力叠加来计算的,并且与平均压力和流量无关。对于四分之一的PE,在剪切力和伸长率下,压力系数值可以认为相等。然而,对于mPE-LCB,发现伸长时的压力系数比剪切时低约30%。随着平均压力的增加,以较低的剪切速率出现振荡流动或上游不稳定形式的流动不稳定性。尽管如此,触发它们的临界剪切应力仍然与平均压力无关。此外,发现稳定流动获得的βS值与上游不稳定状态下获得的值没有太大差异,并且与振荡流动和滑动条件下观察到的压力效应确实存在差异。

著录项

  • 来源
    《Rheologica Acta》 |2006年第3期|209-222|共14页
  • 作者单位

    Laboratoire de Rhéologie Université Joseph Fourier-Grenoble I Institut National Polytechnique de Grenoble CNRS (UMR 5520) Domaine Universitaire;

    Laboratoire de Rhéologie Université Joseph Fourier-Grenoble I Institut National Polytechnique de Grenoble CNRS (UMR 5520) Domaine Universitaire;

    Laboratoire de Rhéologie Université Joseph Fourier-Grenoble I Institut National Polytechnique de Grenoble CNRS (UMR 5520) Domaine Universitaire;

    Laboratoire de Rhéologie Université Joseph Fourier-Grenoble I Institut National Polytechnique de Grenoble CNRS (UMR 5520) Domaine Universitaire;

    Laboratoire de Rhéologie Université Joseph Fourier-Grenoble I Institut National Polytechnique de Grenoble CNRS (UMR 5520) Domaine Universitaire;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Extrusion; PE; Pressure dependence; Shear viscosity; Flow stability; Entrance flow;

    机译:挤出;PE;压力依赖性;剪切粘度;流动稳定性;入口流;

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