All-cellulose composites of Lyocell and high modulus/strength cellulose fibres were successfully prepared using a surface selective dissolution method. The effect of immersion time of the fibres in the solvent during composite's preparation and the effect of the starting fibre's structure on their properties were investigated. Scanning electron microscopy, X-ray diffraction, dynamic mechanical analysis, and tensile testing were used to assess the structure and properties of the composites. These all-cellulose composites of regenerated cellulose fibres demonstrate a promising route to biocomposites with excellent mechanical and thermal properties which can also be tuned depending upon a selection of fibres and preparation parameters. Crown C...
Biobased all-cellulose composites (ACCs), in which the matrix and the reinforcement are made out of ...
There is need for the bio‐based materials which could fully or partly replace the synthetic material...
Abstract In the present study, the dissolution of softwood fibers and fabrication of all-cellulose c...
All-cellulose composites of Lyocell and high modulus/strength cellulose fibres were successfully pre...
All-hemp (Cannabis sativa L.) cellulose composites were prepared by a mechanical blending technique ...
All-cellulose nanocomposites using bacterial cellulose (BC) as a single raw material were prepared b...
Currently, the production of fibre-reinforced composites with natural fibres based on thermoplastic ...
Wood pulp based regenerated cellulose fibers like Lyocell and viscose which are from natural origin ...
The copyright of this thesis rests with the author and no quotation from it or information derived f...
Abstract: All-cellulose composites were prepared by dispersing short softwood kraft fibers in dissol...
Newly developed all-cellulose composites (ACCs) can overcome the chemical incoherence between cellul...
All-cellulose composites (ACCs) in which both matrices and reinforcing fibers are made from lignocel...
Mechanically strong all-cellulose composites are very attractive in the terms of fully bio-based and...
Nowadays, there is greater demand for greener materials in societies due to environmental consciousn...
Biobased all-cellulose composites (ACCs), in which the matrix and the reinforcement are made out of ...
There is need for the bio‐based materials which could fully or partly replace the synthetic material...
Abstract In the present study, the dissolution of softwood fibers and fabrication of all-cellulose c...
All-cellulose composites of Lyocell and high modulus/strength cellulose fibres were successfully pre...
All-hemp (Cannabis sativa L.) cellulose composites were prepared by a mechanical blending technique ...
All-cellulose nanocomposites using bacterial cellulose (BC) as a single raw material were prepared b...
Currently, the production of fibre-reinforced composites with natural fibres based on thermoplastic ...
Wood pulp based regenerated cellulose fibers like Lyocell and viscose which are from natural origin ...
The copyright of this thesis rests with the author and no quotation from it or information derived f...
Abstract: All-cellulose composites were prepared by dispersing short softwood kraft fibers in dissol...
Newly developed all-cellulose composites (ACCs) can overcome the chemical incoherence between cellul...
All-cellulose composites (ACCs) in which both matrices and reinforcing fibers are made from lignocel...
Mechanically strong all-cellulose composites are very attractive in the terms of fully bio-based and...
Nowadays, there is greater demand for greener materials in societies due to environmental consciousn...
Biobased all-cellulose composites (ACCs), in which the matrix and the reinforcement are made out of ...
There is need for the bio‐based materials which could fully or partly replace the synthetic material...
Abstract In the present study, the dissolution of softwood fibers and fabrication of all-cellulose c...