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Experimental evaluation of mechanical properties of a hemp fiber reinforced composite sandwich structured panel

Author: Mohammed Ahasanul Karim
Publisher: [Long Beach, California] : California State University, Long Beach, 2013.
Dissertation: M.S. California State University, Long Beach 2013
Series: California State University, Long Beach.; Master's thesis collection, Dept. of Mechanical and Aerospace Engineering.
Edition/Format:   Thesis/dissertation : Document : Thesis/dissertation   Computer File : English
Summary:
Abstract: Excessive use of petroleum based products and public concern over environment pollution motivates researchers and industries to look for more environment friendly products for our daily life. This research is based on the idea to make bio-based composite material by using potential natural fiber and to investigate the mechanical properties of the material. In this regard, composite sandwich structured  Read more...
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Details

Genre/Form: Academic theses
Material Type: Document, Thesis/dissertation, Internet resource
Document Type: Book, Computer File, Internet Resource
All Authors / Contributors: Mohammed Ahasanul Karim
ISBN: 9781303766619 1303766612
OCLC Number: 1015536137
Description: xi, 67 leaves : illustrations, charts
Series Title: California State University, Long Beach.; Master's thesis collection, Dept. of Mechanical and Aerospace Engineering.
Responsibility: by Mohammed Ahasanul Karim.

Abstract:

Abstract: Excessive use of petroleum based products and public concern over environment pollution motivates researchers and industries to look for more environment friendly products for our daily life. This research is based on the idea to make bio-based composite material by using potential natural fiber and to investigate the mechanical properties of the material. In this regard, composite sandwich structured panel will be fabricated by using hemp fiber as reinforcement, balsa wood as core material and bio-based epoxy resin as matrix material. Two different types of sample will be produced. One by using hand lay-up process and another one by using pre-cured natural fiber reinforced composite laminate as facing material. Tensile strength of the pre-cured laminate, sandwich facing properties, sandwich flexural stiffness and shear properties will be evaluated by following experimental test procedure of the ASTM test standards for composite sandwich constructions. Their mechanical properties will be compared. If the mechanical properties are significant then the composite sandwich structured panel may have application for furniture, interior, partitions and other construction works. This will eventually help to introduce eco-friendly materials for structural construction work.

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