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Magnetorheological Fluid in Oscillatory Shear and Parameterization with Regard to MR Device Properties

机译:磁剪切流变中的磁流变液和有关MR设备属性的参数化

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摘要

Storage and loss moduli of an MRF submitted to a magnetic field, as measured by a plate-plate magnetorheometer versus shear amplitude in oscillatory shear, exhibit a complex non-linear response. Above a critical amplitude, the storage modulus decreases strongly, while the loss modulus passes through a distinct maximum. The periodic shear stress signal changes from sinusoidal to saw-tooth like. A mechanical analogue, consisting of a Bingham element (friction element and damper arranged in parallel) and elastic spring in series, is capable to capture the measured behaviour. Model predictions for the time-dependent shear stress and resulting moduli at agitation frequency (fundamental mode) for various amplitudes are discussed and the determination of model parameters from the experimental data is addressed. The linear radial shear strain profile in plate-plate geometry causes a smearing of the moduli and shift to higher amplitudes by about a factor of 4/3. The conversion from physical to engineering parameters for an MR device is demonstrated for disk clutches using cone-plate and plate-plate geometry. Complications due to a non-homogeneous shear in the device are addressed. The elastic modulus of the MRF may be relevant for vibration damping and may cause some shift in the resonance frequency of the device.
机译:MRF的磁场的存储模量和损耗模量(通过板-板磁流变仪测量)相对于振荡剪切中的剪切振幅表现出复杂的非线性响应。超过临界振幅,储能模量会大大降低,而损耗模量会经历一个明显的最大值。周期性的剪应力信号从正弦形变为锯齿形。由宾厄姆元件(摩擦元件和减震器并排布置)和串联的弹性弹簧组成的机械类似物能够捕获所测量的行为。讨论了随时间变化的剪切应力的模型预测以及在搅拌频率(基本模式)下各种振幅的模量,并讨论了根据实验数据确定模型参数的问题。板-板几何形状中的线性径向剪切应变曲线会导致模量变脏,并向较高的振幅偏移大约4/3倍。对于使用锥板和板-板几何形状的碟形离合器,演示了MR设备从物理参数到工程参数的转换。解决了由于装置中的不均匀剪切引起的并发症。 MRF的弹性模量可能与减振有关,并且可能导致设备的共振频率发生某些偏移。

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