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首页> 外文期刊>The European physical journal, E. Soft matter >A spatio-temporal study of rheo-oscillations in a sheared lamellar phase using ultrasound
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A spatio-temporal study of rheo-oscillations in a sheared lamellar phase using ultrasound

机译:超声在剪切层状相中流变振荡的时空研究

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We present an experimental study of the flow dynamics of a lamellar phase sheared in the Couette geometry. High-frequency ultrasonic pulses at 36 MHz are used to measure time-resolved velocity profiles. Oscillations of the viscosity occur in the vicinity of a shear-induced transition between a high-viscosity disordered fluid and a low-viscosity ordered fluid. The phase coexistence shows up as shear bands on the velocity profiles. We show that the dynamics of the rheological data result from two different processes: (i) fluctuations of slip velocities at the two walls and (ii) flow dynamics in the bulk of the lamellar phase. The bulk dynamics are shown to be related to the displacement of the interface between the two differently sheared regions in the gap of the Couette cell. Two different dynamical regimes are investigated under applied shear stress: one of small amplitude oscillations of the viscosity (δη/η approx= 25%) and one of large oscillations (δη/η approx= 3%). A phenomenological model is proposed that may account for the observed spatio-temporal dynamics.
机译:我们提出了在库埃特几何形状中剪切的层状相的流动动力学的实验研究。 36 MHz的高频超声脉冲用于测量时间分辨的速度曲线。粘度的振荡发生在高粘度无序流体和低粘度有序流体之间的剪切诱导转变附近。相位共存在速度曲线上显示为剪切带。我们表明,流变数据的动力学来自两个不同的过程:(i)两壁滑移速度的波动,以及(ii)整个层状相中的流动动力学。总体动力学显示与库埃特单元间隙中两个不同剪切区域之间的界面位移有关。在施加的剪切应力下,研究了两种不同的动力机制:一种是粘度的小振幅振荡(δη/η约等于25%),另一种是大振幅的振荡(δη/η约为3%)。提出了一种现象学模型,该模型可以解释观察到的时空动态。

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