Fiber reinforced composites have been used in several applications for several years and the market is continuously growing. It is known that the addition of fibers for reinforcing of matrix has advantages, especially the mechanical properties of the composites. Environmental and economic concerns are stimulating new research in the development of sustainable fiber for reinforcing polymer matrix. Particularly attractive are new materials in which a good part is based on natural and renewable resources, hence aggravating the environmental concerns that may result in the depletion and dwindling of wood resources from forest. This assessment report provides detailed world production of natural fiber and the inherent looming danger envisaged if attention is not shifted from its continuous usage. It has been stated that natural fibers are renewable and sustainable, but they are in fact, neither i.e. living plants are renewable and sustainable, from which natural fibers are taken, but not the fibers themselves. The US market reports that the composite market was 2.7 billion pounds sterling in 2006 and it is estimated to reach 3.3 billion pound sterling by 2012 with a 3.3% annual growth. Natural fiber market in the US experienced a 13% growth rate (275 million kilograms) between 1994 and 2004 and the demand for the natural fibers continues to rise. The average global annual market growth for natural fibers between 2003 and 2007 was 38%, while Europe saw the highest annual growth rate of 48%. This market was estimated at 0.36 million metric ton in 2007 and it is expected to reach 3.45 million metric ton in 2020. Fiber reinforced market is a multibillion dollar business and the natural fiber composites take a fair part of it.
Abstract:In this paper, attempts were made to study the progression of fibre-matrix adhesion of five composite specimens taking into consideration the hand lay-up method of composite formation. The ampreg 21 epoxy resin was used as the matrix for the glass fibre-epoxy resin formation. E-Glass fibre was used as matrix reinforcement. The morphology and the XRD of these composites were examined. Key of the findings from the morphological analysis of these composites showed that the fractured surface of the samples depicted better adhesion between the matrix and the fibres. The micrographs and EDS of the composite specimens also showed the retention of elemental composition of the glass fibre which is in line with other published works. The XRD results of these composites indicated a peak at Bragg's angle 2θ=20.6 o , affirming the remnant crystalline silica in the composite. Hence, these composites are projected to possess better dimensional stability adaptable for high performance structural applications.
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