Please use this identifier to cite or link to this item: http://dspace.unimap.edu.my:80/xmlui/handle/123456789/33411
Title: Tensile and morphology properties of polylactic acid/ treated typha latifolia composites
Authors: Muthmirah, Ibrahim
Jalilah, Abd Jalil
Syarifah Nuraqmar, Syed Mahamud
Yusrina, Mat Daud
Salmah, Husseinsyah, Dr. Ir.
Muhammad Rafi’, Yahya
muthmirah@unimap.edu.my
jalilahjalil@unimap.edu.my
nuraqmar@unimap.edu.my
yusrina@unimap.edu.my
irsalmah@unimap.edu.my
muhammadrafiyahya@yahoo.com
Keywords: Natural, fiber
Polylactic Acid (PLA)
Polymer composite
Typha latifolia
Issue Date: Dec-2013
Publisher: Trans Tech Publications
Citation: Key Engineering Materials, vol.594-595, 2013, pages 775-779
Abstract: This paper is focused to investigate the effect of treated natural fiber (typha latifolia) content on tensile and morphology properties of polylactic acid (PLA)/treated typha latifolia (T-TyLa) composites. The composite was compounded using heated two roll mill and the composite samples were prepared through compression molding. Tensile test and scanning electron microscopy (SEM) analysis were carried out to study the properties of PLA/T-TyLa composites. The results showed that the tensile strength of PLA/T-TyLa composites was decreased for about 43% with initial addition of T-TyLa content. The tensile modulus of the composites was increased (23%-91%) with increasing of fiber content. However, increased in fiber content reduced the elongation at break for about 53%-67% of PLA/T-TyLa composites. The optimum increment was obtained at 30 wt% of fiber content. SEM results showed that fiber dispersion was better for PLA/T-TyLa composites at lower fiber content.
Description: Link to publisher's homepage at http://www.ttp.net/
URI: http://dspace.unimap.edu.my:80/dspace/handle/123456789/33411
ISSN: 1662-9795
Appears in Collections:Center of Excellence for Geopolymer and Green Technology (CEGEOGTECH) (Articles)
Muthmirah Ibrahim, Miss
Jalilah Abdul Jalil
Yusrina Mat Daud, Ts. Dr.
Syarifah Nuraqmar Syed Mahamud, Dr.
Salmah Husseinsyah, Assoc. Prof. Ir. Dr.
School of Materials Engineering (Articles)

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