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首页> 外文期刊>European journal of physics: A journal of the European Physical Society >A simple experiment to determine the activation energy of the viscous flow of polymer solutions using a glass capillary viscometer
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A simple experiment to determine the activation energy of the viscous flow of polymer solutions using a glass capillary viscometer

机译:使用玻璃毛细管粘度计确定聚合物溶液粘性流的活化能的简单实验

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摘要

A simple viscometry experiment undertaken by an undergraduate polymer class as a research project is described. Viscosity is a measure of a fluid's resistance to flow and is affected by several factors, such as concentration and temperature. In this experiment, the viscosities of polyvinylpyrrolidone solutions (a polymeric material) of different concentrations were prepared in water and measured at various temperatures. The solution viscosity was found to increase gradually with increasing concentration up to 5 mass%, with a dramatic increase after this. The calculated viscosity of water at different temperatures was comparable to reported values. The activation energy of viscous flow (E_a) of the different solutions was calculated and followed a similar trend as that for the viscosities of solutions of various concentrations. This experiment allowed students to better understand and explain the behaviour of macromolecules with respect to changing concentration and temperature. Furthermore, students correlated the viscosity and E_a results to understand how an increase in the concentration of a polymer solution resulted in increased entanglement of the polymer chains, consequently leading to an increase in viscosity and an increase in the activation energy of viscous flow. This experiment is safe, low cost, simple and requires only readily available apparatus.
机译:描述了由本科生聚合物班作为研究项目进行的简单粘度测定实验。粘度是流体流动阻力的量度,并受浓度和温度等多个因素的影响。在该实验中,在水中制备了不同浓度的聚乙烯吡咯烷酮溶液(聚合物材料)的粘度,并在不同温度下进行了测量。发现溶液粘度随着浓度增加至5质量%而逐渐增加,此后急剧增加。在不同温度下计算出的水的粘度与所报告的值相当。计算了不同溶液的粘性流的活化能(E_a),并遵循了与各种浓度溶液的粘度相似的趋势。该实验使学生能够更好地理解和解释大分子在改变浓度和温度方面的行为。此外,学生将粘度和E_a结果进行关联,以了解聚合物溶液浓度的增加如何导致聚合物链的缠结增加,从而导致粘度增加和粘性流的活化能增加。该实验是安全的,低成本的,简单的并且仅需要容易获得的设备。

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