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Magnetorheological Elastomer‐Based Materials and Devices: State of the Art and Future Perspectives

Advanced Engineering Materials, 2021
Magnetorheological elastomers based on the combination of a polymeric matrix with magnetic fillers allow the possibility of controlling their mechanical properties when an external magnetic field is applied.
A. G. Díez   +3 more
semanticscholar   +1 more source

Micromechanics of magnetorheological suspensions

Physical Review E, 2000
We apply optical trapping techniques in a magnetorheological (MR) suspension, allowing us to directly measure the mechanical properties of single dipolar chains, such as the rupturing tensions and strains under tensile and lateral deformations. Our results are in excellent agreement with calculations of the rupturing tensions using a self-consistent ...
E M, Furst, A P, Gast
openaire   +2 more sources

Magnetorheology in saturating fields

Physical Review E, 2019
Understanding magnetorheology in saturating fields is crucial for success in high torque applications. In this paper we use numerical computations, analytical developments, and experimental data (using a double-gap magnetocell) to study the saturation behavior of model magnetorheological fluids for different particle loadings.
Morillas Medina, José Rafael   +1 more
openaire   +3 more sources

Magnetorheological Finishing

Magnetic Field Assisted Finishing, 2021
D. Khan, Z. Alam, F. Iqbal
semanticscholar   +2 more sources

Piezoresistivity of magnetorheological elastomers

Journal of Physics: Condensed Matter, 2008
Magnetorheological elastomers are smart materials made by aligning magnetic microparticles inside a liquid polymer before the curing process has started. Once cured, the composite presents new properties such as a large change of elasticity when applying a magnetic field.
N, Kchit, G, Bossis
openaire   +2 more sources

Frequency-Dependent on the Magnetorheological Effect of Magnetorheological Plastomer

2020
A low cross-linked magnetic polymer matrix also known as magnetorheological plastomer (MR plastomer) containing micron-sized carbonyl iron particles (CIPs) is a new kind of MR materials. MR plastomer can be prepared by two main methods which are physically and chemically crosslinking. However, the study on the dynamic properties of involving chemically
N. M. Hapipi   +6 more
openaire   +1 more source

Recent progress of magnetorheological elastomers: a review

Smart materials and structures (Print), 2020
Magnetorheological elastomers (MREs) are one of the categories of smart materials, whose modulus increases considerably in the presence of a magnetic field.
A. Bastola, M. Paudel, Lin Li, Weihua Li
semanticscholar   +1 more source

An overview of magnetorheological polishing fluid applied in nano-finishing of components

Journal of Micromanufacturing, 2021
Surface quality is the most crucial factor affecting the product lifespan and performance of any component. Most earlier technologies display accuracy in the micrometre or submicrometre range, surface roughness in the nanometre range, and almost no ...
Manjesh Kumar   +3 more
semanticscholar   +1 more source

Design and modeling of a magnetorheological damper with double annular damping gap

Journal of Intelligent Materials Systems and Structures, 2022
In this paper, a design method of magnetorheological damper with double annular damping gap is proposed. The analytical solution of the annular damping gap and the calculation model of damping force at high velocity are obtained through theoretical ...
Jian Yan, Longlei Dong
semanticscholar   +1 more source

Magnetorheology of dimorphic magnetorheological fluids based on nanofibers

Smart Materials and Structures, 2014
We report a systematic experimental investigation on the use of nanofibers to enhance the magnetorheological (MR) effect in conventional (microsphere-based) MR fluids formulated in polyalphaolefin oil/1-octanol. Two kinds of nanofibers are employed that have very similar morphology but very different magnetic properties.
Antonio J F Bombard   +3 more
openaire   +1 more source

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