In this work, composites based on a phenolic matrix and untreated- and treated sisal fibers were prepared. The treated sisal fibers used were those reacted with NaOH 2% solution and esterified using benzophenonetetracarboxylic dianhydride (BTDA). These treated fibers were modified with the objective of improving the adhesion of the fiber-matrix interface, which in turn influences the properties of the composites. BTDA was chosen as the esterifying agent to take advantage of the possibility of introducing; the polar and aromatic groups that are also present in the matrix structure into the surface of the fiber, which could then intensify the interactions occurring in the fiber-matrix interface. The fibers were then analyzed by SEM and FTIR t...
Several researchers have shown how sisal fibres possess remarkable tensile properties that yield the...
The replacement of phenol with sodium lignosulfonate and formaldehyde with glutaraldehyde in the pre...
Lignocellulosic materials can significantly contribute to the development of biobased composites. In...
In this work, composites based on a phenolic matrix and untreated- and treated sisal fibers were pre...
Sisal fibers have been chemically modified by reaction with lignins, extracted from sugarcane bagass...
Sisal leaves were subjected to enzymatic retting method to extract the sisal fibre. A portion of the...
The aim of the present work was to investigate the toughening of phenolic thermoset and its composit...
Treated sisal fibers were used as reinforcement of polypropylene (PP) composites, with maleic anhydr...
Thermoset phenolic composites reinforced with sisal fibers were prepared to optimize the cure step. ...
A tannin-phenolic resin (40 wt% of tannin, characterized by H-1 nuclear magnetic resonance (NMR) and...
Sisal fiber was extracted from Sisal leaves by enzymatic retting method. A portion of the fiber was ...
AbstractThe use of natural fibers as reinforcement in polymeric composites for technical application...
Investigations were carried out on sisal fibers treated with different concentrations of sodium hydr...
Different grades of sisal fibres (S3, STOW, and SUG) were immersed in five different treatment solut...
Different grades of sisal fibres (S3, STOW, and SUG) were immersed in five different treatment solut...
Several researchers have shown how sisal fibres possess remarkable tensile properties that yield the...
The replacement of phenol with sodium lignosulfonate and formaldehyde with glutaraldehyde in the pre...
Lignocellulosic materials can significantly contribute to the development of biobased composites. In...
In this work, composites based on a phenolic matrix and untreated- and treated sisal fibers were pre...
Sisal fibers have been chemically modified by reaction with lignins, extracted from sugarcane bagass...
Sisal leaves were subjected to enzymatic retting method to extract the sisal fibre. A portion of the...
The aim of the present work was to investigate the toughening of phenolic thermoset and its composit...
Treated sisal fibers were used as reinforcement of polypropylene (PP) composites, with maleic anhydr...
Thermoset phenolic composites reinforced with sisal fibers were prepared to optimize the cure step. ...
A tannin-phenolic resin (40 wt% of tannin, characterized by H-1 nuclear magnetic resonance (NMR) and...
Sisal fiber was extracted from Sisal leaves by enzymatic retting method. A portion of the fiber was ...
AbstractThe use of natural fibers as reinforcement in polymeric composites for technical application...
Investigations were carried out on sisal fibers treated with different concentrations of sodium hydr...
Different grades of sisal fibres (S3, STOW, and SUG) were immersed in five different treatment solut...
Different grades of sisal fibres (S3, STOW, and SUG) were immersed in five different treatment solut...
Several researchers have shown how sisal fibres possess remarkable tensile properties that yield the...
The replacement of phenol with sodium lignosulfonate and formaldehyde with glutaraldehyde in the pre...
Lignocellulosic materials can significantly contribute to the development of biobased composites. In...