Stick-slip behavior of magnetorheological fluids in simple linear shearing mode
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- Type
- article
- Published
- 2015-09-22
- Cited by
- 13
- References
- 47
- OpenAlex
- https://openalex.org/W1723450675
- Semantic Scholar
- https://api.semanticscholar.org/CorpusID:94361553
Keywords
Slip (aerodynamics), Mechanics, Shearing (physics), Magnetorheological fluid, Dilatant
References
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- Stick-Slip as a Mechanism for Earthquakes
- Wall slip phenomena in concentrated ionic liquid-based magnetorheological fluids
- Particle roughness in magnetorheology: effect on the strength of the field-induced structures
- Laser diffraction determination of the crystalline structure of an electrorheological fluid.
- Temperature-induced enhancement of nanoscale friction.
- Variations in rupture process with recurrence interval in a repeated small earthquake
- Sliding friction on wet and dry sand.
- Stick–slip instabilities in the shear flow of magnetorheological suspensions
- Thin-Film Rheology and Tribology of Magnetorheological Fluids in Isoviscous-EHL Contacts
- Enhanced electrorheology of suspensions containing sea-urchin-like hierarchical Cr-doped titania particles
- Electrorheology of polymers and nanocomposites
- Fundamental mechanisms of interfacial friction. 2. Stick-slip friction of spherical and chain molecules
- Through Thick and Thin
- Suppression of friction by mechanical vibrations.
- Chemically triggered ejection of membrane tubules controlled by intermonolayer friction.
- The modified electrodes for the application of polar molecule dominated electrorheological (PM-ER) fluids
- Atomic-Scale Control of Friction by Actuation of Nanometer-Sized Contacts
Cited by
- N-like rheograms of concentrated suspensions of magnetic particles
- Tunable discontinuous shear thickening with magnetorheological suspensions
- Elegant Surface of CoNi Alloys toward Efficient Magnetorheological Performances Realized with Carbon Quantum Dots
- Scaling magneto-rheology based on Newtonian and non-Newtonian host fluids
- Shear thickening prevents slip in magnetorheological fluids
- Bio-inspired passion fruit-like Fe3O4@C nanospheres enabling high-stability magnetorheological performances.
- Tunable discontinuous shear thickening in capillary flow of MR suspensions
- Study on wall-slip effect of magnetorheological fluid and its influencing factors
- Effect of nano-silica-particle additive on magneto-rheological behavior
- STUDY OF FACTORS INFLUENCING THE WALL SLIP OF A MAGNETORHEOLOGICAL FLUID
- Analysis of the rheology of magnetic bidisperse suspensions in the regime of discontinuous shear thickening
- Ferrofluid-mediated active suppression methodology for stick-slip mitigation
- Viscoelastic behavior at high volume fraction of magnetorheological suspensions in the presence of discontinuous shear thickening
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