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Design and development of an automotive magnetorheological semi-active differential

机译:汽车磁流变半主动差速器的设计与开发

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This paper describes a research activity concerning the design and the development of an automotive semi-active differential based on the use of a magnetorheological fluid that allows to control the locking torque and, consequently, to improve the vehicle handling. Starting from a gearbox of a common front wheel drive vehicle, the boundary volume of the new device was defined by means of reverse engineering techniques. Two alternative architectures were proposed and compared to select the best one in terms of functionality. Then, the selected functional scheme was modeled and optimized by means of multiphysics simulations. The definition of a reiterative process, based on the use of a specific cost function, allowed to optimize the design variables and to obtain the final virtual prototype. In order to evaluate the effectiveness of the proposed device, a physical prototype was realized. First experimental tests were carried out validating the design process.
机译:本文介绍了一项有关汽车半主动差速器的设计和开发的研究活动,该技术基于磁流变液的使用,该磁流变液可以控制锁止扭矩,从而改善车辆的操纵性能。从普通前轮驱动车辆的变速箱开始,通过反向工程技术定义了新设备的边界体积。提出了两种替代体系结构,并进行了比较,以选择功能最佳的体系结构。然后,通过多物理场仿真对选定的功能方案进行建模和优化。基于使用特定成本函数的重复过程的定义,可以优化设计变量并获得最终的虚拟原型。为了评估所提出的装置的有效性,实现了物理原型。进行了首次实验测试,验证了设计过程。

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