Abstract“Hairy” bacterial cellulose coated sisal fibres were created using a simple slurry dipping process. Neat sisal fibres were coated with BC to create (i) a dense BC coating around the fibres or (ii) “hairy” fibres with BC oriented perpendicular to the fibre surface. These fibres were used to produce hierarchical sisal fibre reinforced BC polylactide (PLLA) nanocomposites. The specific surface area of the BC coated fibres increased when compared to neat sisal. Single fibre tensile tests revealed no significant difference in the tensile modulus and tensile strength of “hairy fibres”. However, when sisal fibres were coated with a dense BC layer, the mechanical fibre properties decreased. The tensile, flexural and visco-elastic properties...
This study investigated mechanical properties of biocomposites developed from recycled polylactic ac...
AbstractNanocellulose is often being regarded as the next generation renewable reinforcement for the...
Dried and well-consolidated sheet of bacterial cellulose (BC) nanofibrils is a material structure th...
Abstract“Hairy” bacterial cellulose coated sisal fibres were created using a simple slurry dipping p...
AbstractA novel robust non-woven sisal fibre preform was manufactured using a papermaking process ut...
AbstractEndless rayon fibres (Cordenka®) were used to reinforce polyhydroxybutyrate (PHB) nanocompos...
For many applications, natural fibers provide reinforcement properties at lower cost, lower density,...
For many applications, natural fibers provide reinforcement properties at lower cost, lower density,...
Cellulose is an environmentally friendly material which is obtainable in vast quantities, since it i...
In this study, we investigated the mechanical response of polylactide (PLLA) reinforced with multipl...
One of the rate-limiting steps in the large-scale production of cellulose nanopaper-reinforced polym...
This thesis project aims at developing flax fibres surface treatment for the improvement of...
The use of cellulose nanopapers as reinforcement to produce high performance polymer composites is i...
The growing environmental awareness and the not so distant scarcity of fossil feedstocks are promoti...
Sisal fiber was extracted from Sisal leaves by enzymatic retting method. A portion of the fiber was ...
This study investigated mechanical properties of biocomposites developed from recycled polylactic ac...
AbstractNanocellulose is often being regarded as the next generation renewable reinforcement for the...
Dried and well-consolidated sheet of bacterial cellulose (BC) nanofibrils is a material structure th...
Abstract“Hairy” bacterial cellulose coated sisal fibres were created using a simple slurry dipping p...
AbstractA novel robust non-woven sisal fibre preform was manufactured using a papermaking process ut...
AbstractEndless rayon fibres (Cordenka®) were used to reinforce polyhydroxybutyrate (PHB) nanocompos...
For many applications, natural fibers provide reinforcement properties at lower cost, lower density,...
For many applications, natural fibers provide reinforcement properties at lower cost, lower density,...
Cellulose is an environmentally friendly material which is obtainable in vast quantities, since it i...
In this study, we investigated the mechanical response of polylactide (PLLA) reinforced with multipl...
One of the rate-limiting steps in the large-scale production of cellulose nanopaper-reinforced polym...
This thesis project aims at developing flax fibres surface treatment for the improvement of...
The use of cellulose nanopapers as reinforcement to produce high performance polymer composites is i...
The growing environmental awareness and the not so distant scarcity of fossil feedstocks are promoti...
Sisal fiber was extracted from Sisal leaves by enzymatic retting method. A portion of the fiber was ...
This study investigated mechanical properties of biocomposites developed from recycled polylactic ac...
AbstractNanocellulose is often being regarded as the next generation renewable reinforcement for the...
Dried and well-consolidated sheet of bacterial cellulose (BC) nanofibrils is a material structure th...