Issue 32

N. Golinelli et alii, Frattura ed Integrità Strutturale, 32 (2015) 13-23; DOI: 10.3221/IGF-ESIS.32.02 23 [9] Becnel, A. C., Wereley, N. M., Demonstration of combined shear and squeeze strengthening modes in a searle-type magnetorheometer, in: Development and Characterization of Multifunctional Materials; Modeling, Simulation and Control of Adaptive Systems; Integrated System Design and Implementation, 1 (2013) V001T03A036. [10] Tang, X., Zhang, X., Tao, R., Rong, Y., Structure-enhanced yield stress of magnetorheological fluids, J. Appl. Phys., 87(5) (2000) 2634. [11] Guo, C., Gong, X., Xuan, S., Qin, L., Yan, Q., Compression behaviors of magnetorheological fluids under nonuniform magnetic field, Rheol. Acta, 52(2) (2013) 165–176. [12] Nguyen, Q., Choi, S., Optimal Design methodology of magnetorheological fluid based mechanisms, Smart Actuation Sens. Syst., (2012). [13] Nguyen, Q.-H., Choi, S.-B., Optimal design of a vehicle magnetorheological damper considering the damping force and dynamic range, Smart Mater. Struct., 18(1) 2009) 015013. [14] Gavin, H., Hoagg, J., Dobossy, M., Optimal design of MRF dampers, in: U.S. - Japan Workshop on Smart Structures for Improved Seismic Performance in Urban Regions, (2001) 225–236. [15] L. Corporation, MRF-140CG Magneto-Rheological Fluid. http://www.lord.com/products-and-solutions/magneto- rheological-(mr)/product.xml/1646. (2014)- [16] Carlson, J. D., Magnetorheological fluids, in Smart Materials, New York, NY, USA: CRC Press, (2008). [17] Lee, J.-H., Han, C., Ahn, D., Lee, J. K., Park, S.-H., Park, S., Design and performance evaluation of a rotary magnetorheological damper for unmanned vehicle suspension systems, Scientific World Journal., (2013) 894016. [18] Wereley, N. M., Magnetorheology: advances and applications. Royal Society of Chemistry, (2013). [19] Jang, K.-I., Min, B.-K., Seok, J., A behavior model of a magnetorheological fluid in direct shear mode, J. Magn. Magn. Mater., 323(10) (2011) 1324–1329. [20] Yang, G., Large-scale magnetorheological fluid damper for vibration mitigation: modeling, testing and control, University of Notre Dame, (2001). [21] Yang, G., Spencer, B. F., Carlson, J. D., Sain, M. K., Large-scale MR fluid dampers: modeling and dynamic performance considerations, Eng. Struct., 24(3) (2002) 309–323. [22] Meeker, D., FEMM 4.2 - Finite Element Method Magnetics Homepage. http://www.femm.info/wiki/HomePage, (2015).

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