The anomalous change of the sound property of electrorheological fluid

T. Xiao, X.R. Zhang
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Abstract

The properties of ultrasonic wave propagating in electrorheological (ER) fluid as a function of the intensity of electrical field and the concentration of particles are researched. Three kinds of dielectric particles (BaTiO/sub 3/, SrTiO/sub 3/ and KNbO/sub 3/)-are used as the suspensions particles. The applied electric field is in the range of 200 V to 3000 KV. Experimental results show that the time of flight depends on the kind of dielectric particles and is related to the intensity of electrical field and the concentration of particles. There is a critical intensity of electrical field and an optimization concentration of particles for the largest change of the time of flight to occur. When the intensity of applied electrical field increases to the critical value, the particle chain (or bridged fibrils) form. The stronger the electrical field the smaller the amplitude of ultrasound is, when the intensity of electrical field is larger than the critical value. The experimental system, measurement method, experimental results and discussion are presented.
电流变流体声特性的异常变化
研究了超声波在电流变流体中的传播特性与电场强度和粒子浓度的关系。采用三种介电粒子(BaTiO/sub 3/、SrTiO/sub 3/和KNbO/sub 3/)作为悬浮粒子。外加电场在200v至3000kv范围内。实验结果表明,介质粒子的飞行时间取决于介质粒子的种类,并与电场强度和介质粒子浓度有关。有一个电场的临界强度和粒子的最佳浓度使飞行时间发生最大的变化。当外加电场强度增加到临界值时,粒子链(或桥接原纤维)形成。当电场强度大于临界值时,电场越强超声振幅越小。介绍了实验系统、测量方法、实验结果及讨论。
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