Mechanical Behaviour and Analysis of Okra and Pineapple Reinforced Composite Materials |
Author(s): |
| Dukka Sreedhar , Viswanadha Institute of Technology and Management; M.Rambabu, Viswanadha Institute of Technology and Management |
Keywords: |
| Pineapple Fibre, Okra Fibre, Epoxy Resin, Mould Preparation Mechanical Properties |
Abstract |
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The cutting edge dynamic world cannot envision its improvement without getting the idea of progression material composite. Different explores are going on in this field to accomplish the ideal standard. Characteristic Fibre fortified polymer composite has an immense liking to supplant the composite made up of manufactured Fibre. This is essentially a result of the favorable circumstances like light weight, non-harmful, non-rough, simple accessibility, minimal effort, and biodegradable properties. The manufactured strands have higher end of mechanical properties like rigidity and pliable modulus anyway the particular mechanical properties like explicit malleable modulus and other explicit (properties/explicit gravity) of common Fibre gives a wonderful outcome for composites when contrasted with engineered Fibre based composites. Expanded ecological mindfulness and cognizance, has built up an expanding enthusiasm for normal strands and its applications in different fields. Common Fibre fortified composites assumes a key job in building applications like car parts, vehicle entryways, furniture and so on. The present work expects to decide the mechanical conduct of the pineapple/okra Fibre strengthened in Epoxy LY-556 sap. Pineapple and Okra filaments are separated from the bast of the Okra plant, pineapple leaf of the Tiliaceae family. Their utilization as a potential support in polymer composites requires the comprehension of their mechanical properties. Their utilization in the application world is enormous. The composites of the Pineapple/Okra fiber filaments fortified with the epoxy sap are made into examples and tried for their mechanical properties. The properties of hardness, sway, elasticity and pressure test are estimated. The malleable test is led on examples made by ASTM D-638-1. |
Other Details |
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Paper ID: IJSRDV8I60326 Published in: Volume : 8, Issue : 6 Publication Date: 01/09/2020 Page(s): 505-509 |
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