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Mechanical Characterization of the Composites of Date Seed and Wood Apple Shell Powders Reinforced with Epoxy Resin

Authors: Jangam Yaswanth Kumar Yadav; Dr. B. Chandra Mohana Reddy;

Mechanical Characterization of the Composites of Date Seed and Wood Apple Shell Powders Reinforced with Epoxy Resin

Abstract

Composite materials hold significant importance in engineering because they are formed bycombining two or more distinct materials, resulting in a new material with enhanced propertiesthat surpass those of the individual components. Natural fibers are derived from plants,animals, or mineral sources and can be processed into yarns and textiles. These fibers arerenewable, biodegradable, and environmentally friendly, making them valuable for bothconventional and advanced applications. The increasing emphasis on sustainability andenvironmentally conscious solutions has driven greater interest in the use of bio-based fillersacross a wide range of industrial applications.In this research, Mechanical characterization tests are conducted on date seed powder andwood apple shell powder natural reinforcement composites. Initially, the required shell andseeds are collected from natural resources. Then these are dried by exposed to sunlight afterthat powder is made by grinding process. Next composites are prepared for the Date SeedPowder + Wood apple shell powder + Epoxy Resin by using of hand lay-up technique.After that Mechanical Characterization tests, which includes tensile, compression, flexural andimpact resistance tests are done for the fabricated hybrid composites. Based on the results acquired,Mechanical Properties of hybrid composite is evaluated. Then analyzed results are compared fordifferent composites of wood apple shell and date seed powders with epoxy resin composites toknow the better composite. Sample 6 (25% wood apple shell powder and 5% date seed powder)showed the highest tensile, compressive, and flexural strengths, while Sample 5 (20% wood appleshell powder and 10% date seed powder) exhibited the maximum impact strength.

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