Study of Mechanical Behaviour of Jute-Carbon Fibre Reinforced Epoxy Composite with and without Filler

dc.contributor.authorPrashant Kumar, Singh
dc.contributor.authorSachin, Yadav
dc.contributor.authorSaroj Kumar, Sah
dc.contributor.authorVineet Kumar, Yadav
dc.date.accessioned2016-07-21T09:52:36Z
dc.date.available2016-07-21T09:52:36Z
dc.date.issued2016-07-21T09:52:36Z
dc.description.abstractA composite material can be defined as a combination of two or more materials that results in better properties than those of the individual components used alone. In contrast to metallic alloys, each material retains its separate chemical, physical, and mechanical properties. The two constituents are a reinforcement and a matrix. The main advantages of composite materials are their high strength and stiffness, combined with low density, when compared with bulk materials, allowing for a weight reduction in the finished part. The reinforcing phase provides the strength and stiffness. In most cases, the reinforcement is harder, stronger, and stiffer than the matrix. The reinforcement is usually a fiber or a particulate. Particulate composites have dimensions that are approximately equal in all directions. They may be spherical, platelets, or any other regular or irregular geometry. Particulate composites tend to be much weaker and less stiff than continuous fiber composites, but they are usually much less expensive. Particulate reinforced composites usually contain less reinforcement (up to 40 to 50 volume percent) due to processing difficulties and brittleness.en_US
dc.identifier.urihttp://hdl.handle.net/123456789/6312
dc.language.isoenen_US
dc.subjectStudy of Mechanical Behaviour of Jute-Carbon Fibre Reinforced Epoxy Composite with and without Filleren_US
dc.subjectPrashant Kumar Singhen_US
dc.subjectSachin Yadaven_US
dc.subjectSaroj Kumar Sahen_US
dc.subjectVineet Kumar Yadaven_US
dc.titleStudy of Mechanical Behaviour of Jute-Carbon Fibre Reinforced Epoxy Composite with and without Filleren_US
dc.typeOtheren_US
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