Thermal stability, rheological and morpho-structural properties of the magnetorheological fluid MRF122 employed in spherical joint mechanisms

Author:

Sârbu Daniela,Bîzdoacă Nicu George,Cioateră Nicoleta,Vladu Cristian Ionel,Rotaru Andrei,Pană Cristina Floriana,Pătraşcu Daniela Maria,Florian Gabriel,Rotaru Petre

Publisher

Springer Science and Business Media LLC

Subject

Physical and Theoretical Chemistry,Condensed Matter Physics

Reference58 articles.

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2. Isnikurniawan A, Kuroiwa J, Abell S, Sawada T. Investigation of cluster growth in MR fluids using ultrasonic wave propagation. J Phys Conf Ser. 2013;412:012019.

3. Horak W, Szczech M, Sapinski B. Magnetorheological fluids behavior in oscillatory compression squeeze: experimental testing and analysis. Acta Mech et Automat. 2019;13:221–5.

4. Pisuwala M, Upadhyay RV, Parekh K. Evaluation of static and dynamic yield stress for isotropic and anisotropic particle–based MR fluids: Modeling and analysis. Brazil J Phys. 2020;50:399–409.

5. Delivorias RP. Research on smart materials: Application of ER and MR fluid in an automotive crash energy absorber. Report no. MT04.18. Eindhoven University of Technology, Department of Mechanical Engineering, Automotive Engineering - Vehicle Safety. Eindhoven, March 16, 2004.

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