Study on Tensile and Hardness behavior of Sawdust Impregnated on Short Coir Fiber Reinforced Epoxy Composite
Moorthy M. Nair, K. Shambhavi Kamath, Nagaraj Shetty
DOI:
Volume , Issue 2 | Pages: 118-121
Abstract
Modern technology requires materials with distinctive combination of properties that is not possible to meet the
requirements by conventional metal alloys, ceramics, and polymer materials. Synthetic fibers such as E-glass,
carbon fibers are widely used due to their high stiffness and weight to strength ratio. These had a proclivity to
reduce due to high cost and increased environmental awareness which have diverged attention toward organic/
natural fibers composite adding advantages such as low cost, ease in availability, low density, enhanced energy
recovery, co2 neutrality, biodegradability, and satisfactory mechanical properties as well. In this study, short coir
fibers reinforced polymer composites were developed by hand layup with varying percentage of matrix (85, 80,
75, and 70%) and sawdust filler (0, 5, 10, and 15%) by weight. The developed composites were tested for tensile
and hardness property as per ASTM standards. The results showed an increase in tensile property by 12.75% with
addition of filler and with further increase in filler percentage, tensile property dropped by higher percentage.
Hardness property increased by 17.25% with an increase in filler percentage as sawdust led to an increase in
matrix surface resistance toward indentation. Microstructure analysis was carried out to study specimen surface
morphology. The results show that tensile property and hardness are greatly influenced by incorporating the
percentage by weight fraction of filler and suggest that coir reinforced polymer matrix composite impregnated
with sawdust filler has much structural and non-structural application.
Keywords
Epoxy Hardness Sawdust Short coir fiber Tensile strength.References
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Citation
Moorthy M. Nair, K. Shambhavi Kamath, Nagaraj Shetty. Study on Tensile and Hardness behavior of Sawdust Impregnated on Short Coir Fiber Reinforced Epoxy Composite. Indian J. Adv. Chem. Sci. -0001; (2):118-121.