Title :
Multi-field interactions simulation analysis of new hydraulic accumulator magnetorheological fluid chamber
Author :
Bin Li ; Lingxiao Quan ; Yutong Zhang ; Bin Yu ; Xiangdong Kong ; Qingsheng Guan
Author_Institution :
Sch. of Mech. Eng., Yanshan Univ., Qinhuangdao, China
Abstract :
There is a new type of hydraulic accumulator has been presented in this paper, and for the magnetorheological fluid(MRF) chamber of the new hydraulic accumulator, the modeling and the solving method for the fluid-solid interactions and magnetic- fluid interactions in the MRF chamber are provided and also studied by the finite element method. And also, using the ADINA software, the finite element network model of the MRF chamber has been established while ensuring the consistency between the simulation model and the physical model as far as possible. And as a result, the pressure and velocity characteristics, alone with the magnetic field distribution of the flow field in the MRF chamber can be obtained in uncontrolled or power-on state. In the end, experiment has been done to verify the performance of the MRF, which lays the foundation for the optimization of the MRF chamber.
Keywords :
finite element analysis; flow simulation; hydraulic control equipment; hydraulic systems; magnetic fluids; magnetorheology; ADINA software; MRF chamber; finite element network model; flow field; hydraulic accumulator magnetorheological fluid chamber; magnetic field distribution; magnetic-fluid interactions; magnetorheological fluid-solid interactions; physical model; pressure characteristics; simulation model; velocity characteristics; Damping; Finite element analysis; Fluids; Magnetic fields; Magnetomechanical effects; Mathematical model; Solid modeling;
Conference_Titel :
Advanced Intelligent Mechatronics (AIM), 2015 IEEE International Conference on
Conference_Location :
Busan
DOI :
10.1109/AIM.2015.7222566