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Investigation of Macroscopic Mechanical Behavior of Magnetorheological Elastomers under Shear Deformation Using Microscale Representative Volume Element Approach

Author(s): Abdollahi I; Sedaghati R;

Magnetorheological elastomers (MREs) are a class of smart materials with rubber-like qualities, demonstrating revertible magnetic field-dependent viscoelastic properties, which makes them an ideal candidate for development of the next generation of adaptive ...

Article GUID: 38794567


Modeling and tracking control of dielectric elastomer actuators based on fractional calculus

Author(s): Wu J; Xu Z; Zhang Y; Su CY; Wang Y;

Dielectric elastomer actuators (DEAs) show broad application prospects in the area of soft robots since they offer merits of fast response, large deformation, light weight and high energy conversion efficiency. Practical soft robot applications would usuall ...

Article GUID: 36792481


Analysis of an Adaptive Periodic Low-Frequency Wave Filter Featuring Magnetorheological Elastomers

Author(s): Jafari H; Sedaghati R;

This study aims to enhance and tune wave-propagation properties (Bandgaps) of periodic structures featuring magnetorheological elastomers (MREs). For this purpose, first, a basic model of periodic structures (square unit cell with cross-shaped arms), which ...

Article GUID: 36772034


Folding photopolymerized origami sheets by post-curing.

Author(s): He X, Matte CD, Kwok TH

The paper presents a novel manufacturing approach to fabricate origami based on 3D printing utilizing digital light processing. Specifically, we propose to leave part of the model uncured during the printing step, and then cure it in the post-processing ste ...

Article GUID: 33490875


Multidisciplinary Design Optimization of a Novel Sandwich Beam-Based Adaptive Tuned Vibration Absorber Featuring Magnetorheological Elastomer.

Author(s): Asadi Khanouki M, Sedaghati R, Hemmatian M

Materials (Basel). 2020 May 14;13(10): Authors: Asadi Khanouki M, Sedaghati R, Hemmatian M

Article GUID: 32422988


Development and assessment of a stiffness display system for minimally invasive surgery based on smart magneto-rheological elastomers.

Author(s): Hooshiar A, Alkhalaf A, Dargahi J

Mater Sci Eng C Mater Biol Appl. 2020 Mar;108:110409 Authors: Hooshiar A, Alkhalaf A, Dargahi J

Article GUID: 31924050


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