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The onset of dilatant behaviour in non-inertial flow of dilute polymer solutions through channels with varying cross-sections

机译:通过不同横截面的通道发出稀聚光溶液非惯性流动的膨胀性行为

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摘要

The apparent viscosity of dilute polymer solutions in non-inertial flows through channels consisting of successive short tubes or slits separated by expansions displays a marked divergence from shear-thinning power-law behaviour beyond a critical shear rate calculated for constricted sections. The product of this critical shear rate by the Rouse relaxation time was found to be nearly constant for various coil polymers, solvent viscosities and polymer concentrations, independently of the exact geometric shape of the channels. When the critical shear rate is reached, the maximum stretch rate in the converging sections is greater than the inverse of the Rouse relaxation time. An elongation of macromolecules is thus expected and the dilatant behaviour can be attributed to the increased viscous dissipation due to the elongated state of macromolecules in the converging parts of flow.
机译:通过由膨胀分离的连续短管或狭缝组成的通道的非惯性流动中的稀释聚合物溶液的表观粘度显示出从剪切稀释功率行为的显着发散,超出针对收缩部分计算的临界剪切速率。对于各种线圈聚合物,溶剂粘度和聚合物浓度,唤醒弛豫时间的这种临界剪切速率的产物几乎是恒定的,溶剂粘度和聚合物浓度,独立于通道的精确几何形状。当达到临界剪切速率时,会聚部分中的最大拉伸速率大于加剧弛豫时间的倒数。因此,预期大分子的伸长率,并且膨胀性能可以归因于由于流量的聚集部分中的大分子细长状态而增加的粘性耗散。

著录项

  • 作者

    G. Chauveteau; M. Moan;

  • 作者单位
  • 年度 1981
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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