Shear thickening fluids (STF) demonstrate the ability to simultaneously stiffen and increase their damping capacity above a critical shear strain, which depends on the particle concentration and aspect ratio in the STF. The present work considers two types of STF differing by their particle size distribution: one is monodisperse and the other one is based on aggregates. The focus is on the ability to model and predict the behaviour of sandwich structures containing these fluids at confined interfaces. The rheological properties of the STF are first measured as a function of strain and frequency. Damping characteristics of model sandwich beams are then measured, and a finite element model using Timoschenko beams is proposed to predict the fl...
The study analyses the potential for using shear thickening fluid (STF) within 3D printed structures...
The split Hopkinson pressure bar (SHPB) was used to study the compressibility of shear thickening fl...
A mixed numerical–experimental identification procedure for estimating the storage and loss properti...
A group of materials that have recently gained a lot of attention in research are shear thickening f...
Smart structures with tunable damping and stiffness characteristics are of high interest to aerospac...
Damping is an important parameter for vibration control, noise reduction, fatigue endurance or impac...
The compressive behaviour of sandwich panels with lattice truss core filled by shear thickening flui...
Highly concentrated suspensions of silica particles present shear thickening properties, shifting fr...
This work investigates particulate impact damping in sandwich structures. Experimental design and te...
This paper presents an analysis of the dynamic behaviour of constrained layer damping (CLD) beams wi...
Multilayered plates have become a field of interest for vehicle lightweighting and improving surviva...
Shear thickening fluids (STFs) of differing compositions were fabricated and characterised in order ...
Sandwich-fabric panels can provide for an alternative spacer material in a constrained layer damping...
This paper presents experiments aimed to critically examine the damping mechanisms in sandwich beams...
The damping property of sandwich structures is vital for the structural design since it influences t...
The study analyses the potential for using shear thickening fluid (STF) within 3D printed structures...
The split Hopkinson pressure bar (SHPB) was used to study the compressibility of shear thickening fl...
A mixed numerical–experimental identification procedure for estimating the storage and loss properti...
A group of materials that have recently gained a lot of attention in research are shear thickening f...
Smart structures with tunable damping and stiffness characteristics are of high interest to aerospac...
Damping is an important parameter for vibration control, noise reduction, fatigue endurance or impac...
The compressive behaviour of sandwich panels with lattice truss core filled by shear thickening flui...
Highly concentrated suspensions of silica particles present shear thickening properties, shifting fr...
This work investigates particulate impact damping in sandwich structures. Experimental design and te...
This paper presents an analysis of the dynamic behaviour of constrained layer damping (CLD) beams wi...
Multilayered plates have become a field of interest for vehicle lightweighting and improving surviva...
Shear thickening fluids (STFs) of differing compositions were fabricated and characterised in order ...
Sandwich-fabric panels can provide for an alternative spacer material in a constrained layer damping...
This paper presents experiments aimed to critically examine the damping mechanisms in sandwich beams...
The damping property of sandwich structures is vital for the structural design since it influences t...
The study analyses the potential for using shear thickening fluid (STF) within 3D printed structures...
The split Hopkinson pressure bar (SHPB) was used to study the compressibility of shear thickening fl...
A mixed numerical–experimental identification procedure for estimating the storage and loss properti...