Improvement of Natural Fiber Reinforced Composites Strength for Aerospace Application
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Abstract
Over the years, application of composite materials has got wider. So there is a
newlinenecessity for development of new materials to satisfy the environmental
newlinerequirements. It is viable through the process of hybridization of natural fibers
newlineto synthetic fibers. Tensile and flexural test carried out for various fiber
newlinecombinations and stacking sequence. Thus it is easy to identify the natural fiber
newlinehybrid combination with high mechanical properties under static and varying
newlinethermal load conditions. The various fiber materials are meticulously chosen
newlineand three conventional and six different hybrid laminates were fabricated with
newlinevarious stacking sequences of selected fibers using hand layup technique. The
newlinetensile and flexural properties are determined through mechanical testing and
newlinecompared with conventional materials. On analyzing the results, it is observed
newlinethat carbon-flax hybrid composites exhibit nearly equivalent specific strength at
newlinea reduced cost compared to the carbon/glass fiber hybrid composites and also
newlinethe effect of the stacking sequence in mechanical properties is elucidated.
newlineVarying thermal load analysis reveals that there is a considerable loss in
newlinemechanical properties due to thermal exposure.