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Science and Engineering of Composite Materials

Editor­in­Chief: Hoa, Suong V.

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Science and Engineering of Composite Materials

Editor­in­Chief: Hoa, Suong V.

Volume 21, Issue 2 (Mar 2014)

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Tensile behavior of hybrid epoxy composite laminate containing carbon and basalt fibers

I.D.G. Ary Subagia  / Yonjig Kim

Division of Mechanical Design Engineering, College of Engineering, Chonbuk National University, 567 Baekje­daero, Deokjin­gu, Jeonju, Korea

Mechanical Engineering, Faculty of Udayana University, Denpasar, Bali, Indonesia

Advanced Wind Power System Research Center, Chonbuk National University, Korea

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Corresponding author: Yonjig Kim, Division of Mechanical Design Engineering, College of Engineering, Chonbuk National University, 567 Baekje­daero, Deokjin­gu, Jeonju, 561­756 South Korea; and Advanced Wind Power System Research Center, Chonbuk National University, Korea, e­mail: (email); and Advanced Wind Power System Research Center, Chonbuk National University, Korea

Citation Information: Science and Engineering of Composite Materials. Volume 21, Issue 2, Pages 211–217, ISSN (Online) 2191­0359, ISSN (Print) 0792­1233, DOI: 10.1515/secm­2013­0003, August 2013

Publication History

Received:  2013­01­03 Accepted:  2013­06­23

Published Online:  2013­08­08

Abstract

This paper investigated the effect of the incorporation of basalt fibers on the tensile properties of carbon fiber­reinforced epoxy laminates manufactured by vacuum­ assisted resin transfer molding. The purpose of this research was to design a carbon­basalt/epoxy hybrid composite material that is of low cost in production, is lightweight, and has good strength and stiffness. The tensile strength and stiffness of the hybrid laminates demonstrated a steady, linear decrease with an increase in basalt fiber content, but the fracture strain gradually increased together with the increase in the basalt layer content. In this study, the incorporation of basalt fibers into the carbon fiber­reinforced polymer (CFRP) showed lower tensile strength than CFRP but has higher tensile strain. Furthermore, we found that the arrangement and enhancement of basalt fiber into the CFRP significantly influence the mechanical properties of interply hybrid composites.

Keywords: bonding; carbon fiber­reinforced plastic; composites; tensile test; vacuum­assisted resin transfer molding (VARTM)

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I.D.G Ary Subagia Authors Publication date Journal Volume Issue Pages Description Total citations Scholar articles

Tensile behavior of hybrid epoxy composite laminate containing carbon and basalt fibers

IDG Subagia, Yonjig Kim 2014/3/1 Science and Engineering of Composite Materials 21 2 211­217 Abstract This paper investigated the effect of the incorporation of basalt fibers on the tensile  properties of carbon fiber­reinforced epoxy laminates manufactured by vacuum­assisted  resin transfer molding. The purpose of this research was to design a carbon­basalt/epoxy  hybrid composite material that is of low cost in production, is lightweight, and has good  strength and stiffness. The tensile strength and stiffness of the hybrid laminates  demonstrated a steady, linear decrease with an increase in basalt fiber content, but the ... Cited by 2 Tensile behavior of hybrid epoxy composite laminate containing carbon and basalt fibers IDG Subagia, Y Kim ­ Science and Engineering of Composite Materials, 2014

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Tensile behavior of hybrid epoxy

composite laminate containing

carbon and basalt fibers

by I.d.g Ary Subagia

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TIME SUBMITTED 02-FEB-2016 04:13AM

SUBMISSION ID 626537757

WORD COUNT 3616

CHARACTER COUNT 18510

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Tensile behavior of hybrid epoxy composite laminate

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