Cai, C., Zheng, H., Khan, M. S., & Hung, K. C.,2002. Modeling of material damping properties in ANSYS. In CADFEM Users’ Meeting & ANSYS Conference, pp. 9-11.
Ferdaus, M.M., Rashid, M.M., Bhuiyan, M.M.I. and Muthalif, A.G.B.A., 2014. Design and Performance Evaluation of a Self-Controlled Magneto-Rheological Damper. International Journal of Robotics and Mechatronics, 1(2), pp.74-80.10.21535/ijrm.v1i2.87
Ferdaus, M.M., Rashid, M.M., Hasan, M.H. and Rahman, M.A., 2014. Optimal design of Magneto-Rheological damper comparing different configurations by finite element analysis. Journal of mechanical science and technology, 28(9), pp.3667-3677.10.1007/s12206-014-0828-5
Gohil, G.S. and Srivastava, R., 2013, April. Mechatronic design of Magneto-rheological damper for automobiles. In 2013 Students Conference on Engineering and Systems (SCES) (pp. 1-6). IEEE.10.1109/SCES.2013.6547511
GONG, Z., MA, P. and CHEN, A.M., 2010. Multi-Objective Optimization of Magnetorheological Damper Based on the FEM [J]. Mechanical & Electrical Engineering Technology, Gurubasavaraju, T.M., Kumar, H. and Arun, M., 2017. Optimisation of monotube magnetorheological damper under shear mode. Journal of the Brazilian Society of Mechanical Sciences and Engineering, 39(6), pp.2225-2240.10.1007/s40430-017-0709-9
Gurubasavaraju, T.M., Kumar, H. and Mahalingam, A., 2018. An approach for characterizing twin-tube shear-mode magnetorheological damper through coupled FE and CFD analysis. Journal of the Brazilian Society of Mechanical Sciences and Engineering, 40(3), pp.1-14.10.1007/s40430-018-1066-z
Hemanth, K., Ganesha, A., Kumar, H. and Gangadharan, K.V., 2014. Analysis of MR damper based on finite element approach. In Applied Mechanics and Materials (Vol. 592, pp. 2006-2010). Trans Tech Publications Ltd.10.4028/www.scientific.net/AMM.592-594.2006
Hu, G., Lu, Y., Sun, S. and Li, W., 2016. Performance analysis of a magnetorheological damper with energy harvesting ability. Shock and Vibration, 2016.10.1155/2016/2959763
Hu, G., Xie, Z. and Li, W., 2015, June. Optimal design of a double coil magnetorheological fluid damper with various piston profiles. In World congress on structural and multidisciplinary optimisation, pp. 2-7.
Khan, M.S.A., Suresh, A. and Ramaiah, N.S., 2012. Analysis of magnetorheological fluid damper with various piston profiles. International Journal of Engineering and Advanced Technology, 2(2), pp.77-83.
Lee, J.H., Han, C., Ahn, D., Lee, J.K., Park, S.H. and Park, S., 2013. Design and performance evaluation of a rotary magnetorheological damper for unmanned vehicle suspension systems. The Scientific World Journal.10.1155/2013/894016360676623533366
Mangal, S.K., Kumar, A. and Chattopadhyay, K.D., 2014. Development of Mr damper modeling and its experimental validation. IUP Journal of Mechanical Engineering, 7(3), p.35.10.1155/2014/915694
Nguyen, Q.H., Choi, S.B. and Kim, K.S., 2009, February. Geometric optimal design of MR damper considering damping force, control energy and time constant. In Journal of Physics: Conference Series (Vol. 149, No. 1, p. 012076). IOP Publishing.10.1088/1742-6596/149/1/012076
Parlak, Z., Engin, T. and Çallı, İ., 2012. Optimal design of MR damper via finite element analyses of fluid dynamic and magnetic field. Mechatronics, 22(6), pp.890-903.10.1016/j.mechatronics.2012.05.007
Rashid, M.M., Ferdaus, M.M., Hasan, M.H. and Rahman, A., 2015. ANSYS finite element design of an energy saving magneto-rheological damper with improved dispersion stability. Journal of mechanical science and technology, 29(7), pp.2793-2802.10.1007/s12206-015-0608-x
Sternberg, A., Zemp, R. and De La Llera, J.C., 2014. Multiphysics behavior of a magneto-rheological damper and experimental validation. Engineering Structures, 69, pp.194-205.10.1016/j.engstruct.2014.03.016
Sung, K. G., Choi, S. B., & Park, M. K. (2011). Geometry optimization of magnetorheological damper for vehicle suspension via finite element method. Advanced Science Letters, 4(3), 805-809.10.1166/asl.2011.1435
WANG, J., WANG, Q. and LI, Y., 2005. Finite element analysis of magnetorheological damper. In Electrorheological Fluids and Magnetorheological Suspensions (Ermr 2004) (pp. 722-727).10.1142/9789812702197_0105
Wenliang, W.J.W.Q.H., 2004. Research on The Finite Element Analysis of Electromagnetic Field and Structure of Magneto-Rheological Dampers [J]. Journal of Ballistics.
WU, J. and WANG, H.F., 2008. Magnetic circuit optimum design of a magneto-rheological damper based on ANSYS [J]. Mechanical & Electrical Engineering Magazine,
Yang, B., Luo, J. and Dong, L., 2010. Magnetic circuit FEM analysis and optimum design for MR damper. International Journal of Applied Electromagnetics and Mechanics, 33(1-2), pp.207-216.10.3233/JAE-2010-1115
Yang, L., Chen, S.Z., Zhang, B. and Feng, Z.Z., 2011. A rotary magnetorheological damper for a tracked vehicle. In Advanced Materials Research (Vol. 328, pp. 1135-1138). Trans Tech Publications Ltd.10.4028/www.scientific.net/AMR.328-330.1135
Yinong, L.W.Z.L.L. and Yong, H., 2007. FEM Analysis of Magnetic Field of Piston-type MR Fluids Damper [J]. Transactions of the Chinese Society for Agricultural Machinery.
Yu, G.J., Du, C.B. and Sun, L.G., 2007. The design of a new-style composite MR damper and magnetic circuit simulation analysis. Ji Xie She Ji Yu Yan Jiu (Machine Design and Research), 23(3), pp.113-117.
ZHANG, H.H., LIAO, C.R., CH EN, W.M. and HUANG, S.L., 2004. Magnetic design of MR damper and FEM a nalysis on saturation [J]. Journal of Functional Materials and Devices.
Zhang, H.H., Liao, C.R., Chen, W.M. and Huang, S.L., 2006. A magnetic design method of MR fluid dampers and FEM analysis on magnetic saturation. Journal of intelligent material systems and structures, 17(8-9), pp.813-818.10.1177/1045389X06057537
Zhang, Z.X. and Huang, F.L., 2013. A new magneticrheological damper nonlinear bingham hysteretic model and ANSYS implementation. In Applied Mechanics and Materials (Vol. 351, pp. 1146-1151). Trans Tech Publications Ltd.10.4028/www.scientific.net/AMM.351-352.1146
ZHU, S., WU, W. and LIU, B., 2015. Magnetic Circuit Improving Design and Simulation Analysis for MR Damper of Hole-type. Machine Tool & Hydraulics, p.04.
Zhu, X., Wang, W., Yao, B., Cao, J. and Wang, Q., 2015, July. Analytical modeling and optimal design of a MR damper with power generation. In 2015 IEEE International Conference on Advanced Intelligent Mechatronics (AIM) (pp. 1531-1536). IEEE.10.1109/AIM.2015.7222759