[go: up one dir, main page]
More Web Proxy on the site http://driver.im/

Sun et al., 2023 - Google Patents

The rheological performance of shear-thickening fluids based on carbon fiber and silica nanocomposite

Sun et al., 2023

Document ID
8834892926997344015
Author
Sun L
Liang T
Zhang C
Chen J
Publication year
Publication venue
Physics of Fluids

External Links

Snippet

Current available shear-thickening fluid (STFs) may suffer from issues such as unsatisfactory energy dissipation performance and unstable dynamic stability for practical engineering applications. This paper investigates the innovated compounded STFs which are fabricated …
Continue reading at pubs.aip.org (other versions)

Similar Documents

Publication Publication Date Title
Sun et al. The rheological performance of shear-thickening fluids based on carbon fiber and silica nanocomposite
Yokohara et al. Rheological properties of polymer composites with flexible fine fibers
Murshed et al. A state of the art review on viscosity of nanofluids
Khandavalli et al. Extensional rheology of shear-thickening fumed silica nanoparticles dispersed in an aqueous polyethylene oxide solution
Vermant et al. Quantifying dispersion of layered nanocomposites via melt rheology
Fan et al. Rheology of multiwall carbon nanotube suspensions
Wei et al. Shear-thickening performance of suspensions of mixed ceria and silica nanoparticles
Wei et al. Rheological properties of multi-walled carbon nanotubes/silica shear thickening fluid suspensions
Pasanovic-Zujo et al. Effect of vinyl acetate content and silicate loading on EVA nanocomposites under shear and extensional flow
Żyła et al. Rheological profile of boron nitride–ethylene glycol nanofluids
Li et al. Effect of dispersing media and temperature on inter-yarn frictional properties of Kevlar fabrics impregnated with shear thickening fluid
Hidema et al. Effects of flexibility and entanglement of sodium hyaluronate in solutions on the entry flow in micro abrupt contraction-expansion channels
Labaume et al. Comparative study of interphase viscoelastic properties in polyethylene/polyamide blends compatibilized with clay nanoparticles or with a graft copolymer
Bossard et al. Linear and nonlinear viscoelastic behavior of very concentrated plate-like kaolin suspensions
Singh et al. Effect of addition of different nano-clays on the fumed silica-polyethylene glycol based shear-thickening fluids
Yu et al. Effect of particle modification on the shear thickening behaviors of the suspensions of silica nanoparticles in PEG
Pan et al. Reversal phenomena of molten immiscible polymer blends during creep-recovery in shear
Antosik et al. Influence of carrier fluid on the electrokinetic and rheological properties of shear thickening fluids
Sun et al. Effect of zirconia nanoparticles on the rheological properties of silica-based shear thickening fluid
White et al. Rheology of disentangled multiwalled carbon nanotubes dispersed in uncured epoxy fluid
Prabhu et al. Rheology and microstructure of discontinuous shear thickening suspensions
Islam et al. Effect of cellulose beads on shear-thickening behavior in concentrated polymer dispersions
Lin et al. The shape effect and mechanism of particle‐reinforced shear‐thickening gel composites
Tan et al. Dynamic response of shear thickening fluid reinforced with SiC nanowires under high strain rates
Truzzolillo et al. Depletion gels from dense soft colloids: Rheology and thermoreversible melting