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Colloidal Stability and Magnetic Field-Induced Ordering of Magnetorheological Fluids Studied with a Quartz Crystal Microbalance

机译:用石英晶体微天平研究磁流变液的胶体稳定性和磁场诱导的有序性

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摘要

This work proposes the use of quartz crystal microbalances (QCMs) as a method to analyze and characterize magnetorheological (MR) fluids. QCM devices are sensitive to changes in mass, surface interactions, and viscoelastic properties of the medium contacting its surface. These features make the QCM suitable to study MR fluids and their response to variable environmental conditions. MR fluids change their structure and viscoelastic properties under the action of an external magnetic field, this change being determined by the particle volume fraction, the magnetic field strength, and the presence of thixotropic agents among other factors. In this work, the measurement of the resonance parameters (resonance frequency and dissipation factor) of a QCM are used to analyze the behavior of MR fluids in static conditions (that is, in the absence of external mechanical stresses). The influence of sedimentation under gravity and the application of magnetic fields on the shifts of resonance frequency and dissipation factor were measured and discussed in the frame of the coupled resonance produced by particles touching the QCM surface. Furthermore, the MR-fluid/QCM system has a great potential for the study of high-frequency contact mechanics because the translational and rotational stiffness of the link between the surface and the particles can be tuned by the magnetic field.
机译:这项工作建议使用石英晶体微量天平(QCM)作为分析和表征磁流变(MR)流体的方法。 QCM设备对接触其表面的介质的质量,表面相互作用和粘弹性的变化敏感。这些功能使QCM适合研究MR流体及其对变化的环境条件的响应。 MR流体在外部磁场的作用下会改变其结构和粘弹性,这是由颗粒体积分数,磁场强度和触变剂的存在等因素决定的。在这项工作中,QCM的共振参数(共振频率和耗散因数)的测量用于分析MR流体在静态条件下(即在没有外部机械应力的情况下)的行为。在颗粒接触QCM表面产生的耦合共振的框架中,测量并讨论了重力作用下的沉降和磁场施加对共振频率和耗散因数的影响。此外,MR-流体/ QCM系统在研究高频接触力学方面具有很大的潜力,因为可以通过磁场来调节表面和粒子之间连接的平移和旋转刚度。

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