基于TSM压电传感器的胶体体系研究

R. M. Lec, J. Sorial
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引用次数: 4

摘要

胶体和悬浮液代表了在许多生物和化学应用中重要的一大组流体。胶体和悬浮物的力学和粘弹性特性,沉降过程,粒子之间相互作用的机制,以及涉及粒子与各种表面相互作用的界面过程是特别感兴趣的。在本文中,我们提出使用厚度剪切模式(TSM)谐振传感器来表征伴随沉降过程的各种现象的动力学。用TSM谐振器对1、10和90微米大小的悬浮缓冲盐水溶液组成的胶体体系进行了测试,测试频率为5 MHz基频及其谐波。测量参数包括沉降速率、介质粘弹性随时间、浓度和探测声横波穿透深度的变化。实验结果表明,该传感器具有较高的灵敏度和分辨率,可对胶体过程进行快速、准确的实时监测。
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The study of colloidal systems with TSM piezoelectric sensors
Colloids and suspensions represent a large group of fluids important in many biological and chemical applications. Mechanical and viscoelastic properties of colloids and suspensions, processes of sedimentation, mechanisms of interaction between particles, and interfacial processes involving interaction of particles with various surfaces are of special interest. In this paper we present the use of Thickness Shear Mode (TSM) resonant sensors for characterizing the kinetics of various phenomena accompanying the sedimentation process. The studied colloidal system which consisted of a polystyrene spheres of the size 1, 10 and 90 microns suspended buffered saline solution was tested with TSM resonators operating at the fundamental frequency of 5 MHz and its harmonics. The measured parameters included the sedimentation rate, and the changes in the viscoelastic properties of the medium as a function of time, concentration and the penetration depth of the probing acoustic shear wave. The obtained results showed that the TSM sensors can be used for a rapid and accurate monitoring colloidal processes in real time with high sensitivity and resolution.
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