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首页> 外文期刊>Journal of Rheology >Using creeping squeeze flow to obtain low-frequency linear viscoelastic properties: Low-shear rate measurements on polydimethylsiloxane
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Using creeping squeeze flow to obtain low-frequency linear viscoelastic properties: Low-shear rate measurements on polydimethylsiloxane

机译:使用蠕变挤压流动获得低频线性粘弹性:聚二甲基硅氧烷的低剪切率测量

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摘要

The problem of measuring the linear viscoelastic (LVE) properties of polymers at low frequencies is a long-standing one, especially for fractional melt index polyolefins with broad molecular weight distributions and small time-temperature shift factors. A squeeze-flow apparatus utilizing Newton's interference rings was devised that could measure minute displacements less than 1/4 the wavelength of the light used. Maximum transient stresses achieved with the prototype ranged from 0.3 to 70.3 kPa. Its simplicity allows several samples to be run simultaneously under vacuum, minimizing degradation and cost, both critical considerations for long experiments. This paper covers the design of the prototype and results for polydimethylsiloxane at room temperature.
机译:在低频下测量聚合物的线性粘弹性(LVE)特性是一个长期存在的问题,特别是对于分子量分布较宽且时间-温度漂移因子较小的分数熔融指数聚烯烃。设计了一种利用牛顿干涉环的挤压流动装置,该装置可以测量小于所用光波长的1/4的微小位移。原型获得的最大瞬态应力范围为0.3至70.3 kPa。它的简单性允许在真空下同时运行多个样品,从而最大程度地降低降解和成本,这是长时间实验的关键考虑因素。本文涵盖了原型设计和室温下聚二甲基硅氧烷的结果。

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