A substitution of synthetic fillers by natural fillers decreases an environmental burden, namely both in terms of saving fossil sources, and of a minimization of energy demands on a preparation of a reinforcement for composite systems. Last but not least the natural fibres are available and so they decrease a price of a final product. Performed experiment describes strength characteristics of white and brown coir fibres and biocomposites with the synthetic matrix and these fibres prepared by a vacuum infusion. Water solution of NaOH (6%, 12 h) was used for treating of the fibre surface. The strength characteristics of the fibres differ depending on time of their harvesting – the tensile strength of previously harvested white fibres reached ...
Coir fiber was chosen for this study due to its low cost, high lignin content, low density, low tens...
Coir fiber was chosen for this study due to its low cost, high lignin content, low density, low tens...
Studies on the use of natural fibers as replacement to man-made fiber in fiber-reinforced composites...
A substitution of synthetic fillers by natural fillers decreases an environmental burden, namely bot...
A substitution of synthetic fillers by natural fillers decreases an environmental burden, namely bot...
A substitution of synthetic fillers by natural fillers decreases an environmental burden, namely bot...
A substitution of synthetic fillers by natural fillers decreases an environmental burden, namely bot...
A substitution of synthetic fillers by natural fillers decreases an environmental burden, namely bot...
Fiber reinforced polymer composites has been used in a variety of application as class of structure ...
Fiber-reinforced polymer composites have played a dominant role for a long time in a variety of ...
The material mechanical properties of coir fibre/epoxy composite were evaluated. High increase in co...
The need to pursue an environmentally safer future has prompted the researchers to look beyond the a...
Natural fibres have emerged as a renewable and cheaper substitute to synthetic materials such as gla...
Coir fiber was chosen for this study due to its low cost, high lignin content, low density, low tens...
Natural fiber has a vital role as a reinforcing agent due to its renewable, low cost, biodegradable,...
Coir fiber was chosen for this study due to its low cost, high lignin content, low density, low tens...
Coir fiber was chosen for this study due to its low cost, high lignin content, low density, low tens...
Studies on the use of natural fibers as replacement to man-made fiber in fiber-reinforced composites...
A substitution of synthetic fillers by natural fillers decreases an environmental burden, namely bot...
A substitution of synthetic fillers by natural fillers decreases an environmental burden, namely bot...
A substitution of synthetic fillers by natural fillers decreases an environmental burden, namely bot...
A substitution of synthetic fillers by natural fillers decreases an environmental burden, namely bot...
A substitution of synthetic fillers by natural fillers decreases an environmental burden, namely bot...
Fiber reinforced polymer composites has been used in a variety of application as class of structure ...
Fiber-reinforced polymer composites have played a dominant role for a long time in a variety of ...
The material mechanical properties of coir fibre/epoxy composite were evaluated. High increase in co...
The need to pursue an environmentally safer future has prompted the researchers to look beyond the a...
Natural fibres have emerged as a renewable and cheaper substitute to synthetic materials such as gla...
Coir fiber was chosen for this study due to its low cost, high lignin content, low density, low tens...
Natural fiber has a vital role as a reinforcing agent due to its renewable, low cost, biodegradable,...
Coir fiber was chosen for this study due to its low cost, high lignin content, low density, low tens...
Coir fiber was chosen for this study due to its low cost, high lignin content, low density, low tens...
Studies on the use of natural fibers as replacement to man-made fiber in fiber-reinforced composites...