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Simulation and experimental studies on braking response of inertial load using magnetorheological brake

机译:磁流变型制动器惯性载荷制动响应的仿真与实验研究

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The study is aimed to develop, model and simulate a magnetorheological brake (MRB) system. The drum-type MRB comprises of a rotating disk immersed in magnetorheological fluids (MRFs) and surrounded by an electromagnet coil. The magnetized coil causes a solidification of the MR fluid so that the shear stress between the moving part and static part increases resulting in the decrement speed of the moving part. The shear stress can be varied by applying different electric current to the winding coil. In this paper, the study began from the part design using 3D modeling software, following with the finite element simulations involving the magnetostatic analysis. The mathematical model is derived based on drum-type MR brake. The simulation and experimental study on the stopping time and braking torque were also performed and compared to each other. Several performances in terms of torque versus time and speed decrement versus time were investigated by applying various electric current.
机译:该研究旨在开发,模拟和模拟磁流变制动器(MRB)系统。 鼓型MRB包括浸入磁体流体(MRF)中的旋转盘并被电磁圈围绕。 磁化线圈导致MR流体的凝固,使得移动部件和静态部分之间的剪切应力增加,导致移动部件的减小速度。 可以通过向绕组线圈施加不同的电流来改变剪切应力。 本文使用3D建模软件从零件设计开始,涉及涉及静静压分析的有限元模拟。 基于鼓式MR制动器导出数学模型。 还进行了对停止时间和制动扭矩的模拟和实验研究,并彼此进行比较。 通过施加各种电流来研究在扭矩与时间和速度递增的时间和速度减小的几个性能。

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