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Enhance the yield shear stress of magnetorheological fluids

机译:增强磁流变液的屈服剪切应力

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To enhance the yield shear stress of magnetorheological (MR) fluids is an important task. Since thick columns have a yield stress much higher than a single-chain structure, we enhance the yield stress of an MR fluids by changing the microstructure or MR fluids. Immediately after a magnetic field is applied, we compress the MR fluid along the field direction. SEM images show that the particle chains are pushed together to form thick columns. The shear force measured after the compression indicates that the yield stress can reach as high as 800 kPa under a moderate magnetic field, while the same MR fluid has a yield stress of 80 kPa without compression. This enhanced yield stress increases with the magnetic field and compression pressure and has an upper limit well above 800 kPa. The method is also applicable to electrorheological fluids.
机译:为了增强磁流变(MR)流体的屈服剪切应力是一项重要任务。由于厚柱具有高于单链结构的屈服应力,因此通过改变微观结构或MR流体来增强MR流体的屈服应力。在施加磁场之后,立即将MR流体压缩沿场方向压缩。 SEM图像显示粒子链被推动以形成厚柱。压缩后测量的剪切力表明屈服应力在中等磁场下可以高达800kPa,而相同的MR流体在没有压缩的情况下具有80kPa的屈服应力。这种增强的屈服应力随磁场和压缩压力而增加,并且上限高于800kPa。该方法也适用于电流流体。

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