Experimental analysis and numerical simulation of the behavior of smart sandwich beams in magnetorheological elastomer–honeycomb
Author:
Publisher
Springer Science and Business Media LLC
Subject
Mechanical Engineering,General Engineering,Aerospace Engineering,Automotive Engineering,Industrial and Manufacturing Engineering,Applied Mathematics
Link
https://link.springer.com/content/pdf/10.1007/s40430-023-04452-y.pdf
Reference47 articles.
1. Janbaz M, Googarchin HS (2020) Experimental and numerical analysis on magneto-hyper-viscoelastic constitutive responses of magnetorheological elastomers: a characterization procedure. Mechan Mater 154(5):103712. https://doi.org/10.1016/j.mechmat.2020.103712
2. Dargahi A, Sedaghati R, Rakheja S (2019) On the properties of magnetorheological elastomers in shear mode: Design, fabrication and characterization. Compos B 159:269–283. https://doi.org/10.1016/j.compositesb.2018.09.080
3. Bernat J, Gajewski P, Kołota JA (2023) Marcinkowska, "review of soft actuators controlled with electrical stimuli: IPMC, DEAP, and MRE. Appl Sci 13(3):1651. https://doi.org/10.3390/app13031651
4. Khairi MHA, Noor EEM, Ubaidillah U, Aziz SAA, Mazlan SA, Tarmizi SMA, Nordin NA (2022) Enhancement of magneto-induced modulus by the combination of filler and plasticizer additives-based magnetorheological elastomer. Materials 15(18):6396. https://doi.org/10.3390/ma15186396
5. Bhaktha S, Hegde S, Rao SU (2022) Experimental analysis of viscoelastic properties of room temperature vulcanized silicone based magnetorheological elastomer. Defen Sci J 72(1):98–104. https://doi.org/10.14429/dsj.72.17089
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