The micromechanics of cellulose hydrogels have been investigated using a new rheological experimental approach, combined with simulation using a poroelastic constitutive model. A series of mechanical compression steps at different strain rates were performed as a function of cellulose hydrogel thickness, combined with small amplitude oscillatory shear after each step to monitor the viscoelasticity of the sample. During compression, bacterial cellulose hydrogels behaved as anisotropic materials with near zero Poisson’s ratio. The micromechanics of the hydrogels altered with each compression as water was squeezed out of the structure, and microstructural changes were strain rate-dependent, with increased densification of the cellulose network...
This study is focused on anomalous strain-rate-dependent behaviour of bacterial cellulose (BC) hydro...
This study is focused on anomalous strain-rate-dependent behaviour of bacterial cellulose (BC) hydro...
This study is focused on anomalous strain-rate-dependent behaviour of bacterial cellulose (BC) hydro...
The micromechanics of cellulose hydrogels have been investigated using a new rheological experimenta...
The mechanical properties of hydrated biomaterials are non-recoverable upon unconfined compression i...
Hemicelluloses exhibit a range of interactions with cellulose, the mechanical consequences of which ...
The mechanical characteristics of bacterially synthesized nano-cellulose (BNC) were studied with uni...
<div><p>Hemicelluloses exhibit a range of interactions with cellulose, the mechanical consequences o...
The tribology between biphasic materials is challenging to predict and interpret due to the interrel...
Bacterial cellulose (BC) has several current and potential future uses in the food industry because ...
This study presents a novel and simple method to modify the microstructure of bacterial cellulose (B...
This study presents a novel and simple method to modify the microstructure of bacterial cellulose (B...
This study presents a novel and simple method to modify the microstructure of bacterial cellulose (B...
This study presents a novel and simple method to modify the microstructure of bacterial cellulose (B...
Hemicelluloses exhibit a range of interactions with cellulose, the mechanical consequences of which ...
This study is focused on anomalous strain-rate-dependent behaviour of bacterial cellulose (BC) hydro...
This study is focused on anomalous strain-rate-dependent behaviour of bacterial cellulose (BC) hydro...
This study is focused on anomalous strain-rate-dependent behaviour of bacterial cellulose (BC) hydro...
The micromechanics of cellulose hydrogels have been investigated using a new rheological experimenta...
The mechanical properties of hydrated biomaterials are non-recoverable upon unconfined compression i...
Hemicelluloses exhibit a range of interactions with cellulose, the mechanical consequences of which ...
The mechanical characteristics of bacterially synthesized nano-cellulose (BNC) were studied with uni...
<div><p>Hemicelluloses exhibit a range of interactions with cellulose, the mechanical consequences o...
The tribology between biphasic materials is challenging to predict and interpret due to the interrel...
Bacterial cellulose (BC) has several current and potential future uses in the food industry because ...
This study presents a novel and simple method to modify the microstructure of bacterial cellulose (B...
This study presents a novel and simple method to modify the microstructure of bacterial cellulose (B...
This study presents a novel and simple method to modify the microstructure of bacterial cellulose (B...
This study presents a novel and simple method to modify the microstructure of bacterial cellulose (B...
Hemicelluloses exhibit a range of interactions with cellulose, the mechanical consequences of which ...
This study is focused on anomalous strain-rate-dependent behaviour of bacterial cellulose (BC) hydro...
This study is focused on anomalous strain-rate-dependent behaviour of bacterial cellulose (BC) hydro...
This study is focused on anomalous strain-rate-dependent behaviour of bacterial cellulose (BC) hydro...