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Design of a yield stress characterizing platform for magnetorheological fluid magnetized by permanent magnets

机译:永磁体磁化磁流变液屈服应力特征平台的设计

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摘要

In this paper we proposed a platform for measuring shear force of magnetorheological (MR) fluid by which the relationship of yield stress and magnetic flux density of specific materials can be determined. The device consisted of a rotatable center tube placed in a frame body and the magnetic field was provided by two blocks of permanent magnets placed oppositely outside the frame body. The magnitude and direction of the magnetic flux were manipulated by changing the distance of the two permanent magnets from the frame body and rotating the center tube, respectively. For determining the magnetic field of the device, we adopted an effective method by fitting the finite element method result to the measured one and then rebuilt the absent components to approximate the magnetic field, which was hardly to be measured as different device setup were required. With the proposed platform and analytical methods, the drawing shear force and the corresponding yield stress contributed by MR fluid in respect to the magnitude and direction of given magnetic flux density could be evaluated effectively for specific designing purposes without the requirement of a large, complex, and expensive instrument.
机译:在本文中,我们提出了一种用于测量磁流变(MR)流体的剪切力的平台,可以确定屈服应力和磁通密度的关系。该装置由放置在框架主体中的可旋转中心管和磁场组成的装置由两块永磁体提供与框架主体外侧的两个永磁体提供。通过将两个永磁体与框架主体的距离改变并旋转中心管来操纵磁通量的幅度和方向。为了确定设备的磁场,我们采用了有效的方法,通过将有限元方法配合到测量的一个,然后重建非活动组件以近似磁场,这几乎不需要测量,因为所需的不同设备设置。利用所提出的平台和分析方法,可以有效地评估由MR流体对给定磁通密度的幅度和方向的提出的拉伸剪切力和相应的屈服应力,但对于特定的设计目的,可以有效地评估特定的设计目的,而无需大型复杂,和昂贵的仪器。

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