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用石英晶体谐振器研究聚合体系的高频动态特性。

Investigations of the high-frequency dynamic properties of polymeric systems with quartz crystal resonators.

机构信息

Department of Materials Science and Engineering, Northwestern University, 2220 Campus Dr., Evanston, Illinois 60208-3108.

出版信息

Biointerphases. 2020 Apr 14;15(2):021012. doi: 10.1116/1.5142762.

Abstract

Opportunities arising from the use of the rheometric quartz crystal microbalance (RheoQCM) as a fixed frequency rheometer operating at 15 MHz are discussed. The technique requires the use of films in a specified thickness range that depends on the mechanical properties of the material of interest. A regime map quantifying the appropriate thicknesses is developed, based on the properties of a highly crosslinked epoxy sample that is representative of a broad class of polymeric materials. Relative errors in the measured film properties are typically in the range of several percent or less and are minimized by using a power law model to relate the rheological properties at two different resonant harmonics of the quartz crystal. Application of the RheoQCM technique is illustrated by measuring the temperature- and molecular weight-dependent properties of polystyrene and poly(methyl methacrylate) in the vicinity of the glass transition.

摘要

讨论了使用流变学石英晶体微天平(RheoQCM)作为固定频率流变仪在 15MHz 下工作的机会。该技术需要使用特定厚度范围内的薄膜,这取决于感兴趣材料的机械性能。根据高度交联环氧树脂样品的性能,开发了一种量化适当厚度的状态图,该样品代表了广泛的聚合物材料类别。测量薄膜性能的相对误差通常在几个百分点或更小的范围内,并通过使用幂律模型将石英晶体两个不同谐振谐波处的流变性能相关联来最小化。通过测量聚苯乙烯和聚甲基丙烯酸甲酯在玻璃化转变附近的温度和分子量依赖性特性,说明了 RheoQCM 技术的应用。

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