Sains Malaysiana 45(11)(2016): 1733–1739
Tensile, Thermal and Water Absorption
Properties of Corn Stalk Filled Low Density Polyethylene Composites:
Effect of Coconut Oil Coupling Agent
(Sifat Tegangan, Terma dan Penyerapan Air Komposit Batang Jagung Terisi Polietilena
Ketumpatan Rendah:
Kesan Agen
Pangganding Minyak Kelapa)
SALMAH HUSSEINSYAH1*,
KOAY
SEONG
CHUN2,
CHAN
MING
YENG2
& AZIMAH
ISMAIL1
1School
of Material Engineering, Universiti
Malaysia Perlis, 02600 Jejawi, Perlis
Indera Kayangan
Malaysia
2School
of Engineering, Taylor’s University Lakeside Campus, No. 1, Jalan
Taylor’s,
47500
Subang Jaya, Selangor Darul Ehsan, Malaysia
Received: 22 February 2014/Accepted: 5 April 2016
ABSTRACT
In this study, the corn stalk
(CS) had been utilized as natural filler in low density polyethylene
(LDPE). The effect of CS loading
and coconut oil coupling agent (COCA) on tensile, thermal and
water absorption properties of LDPE/CS composites were investigated.
The increases of CS decreased the tensile strength
and elongation at break of LDPE/CS composites, but increased in
Young’s modulus. The incorporation of CS also contributed to high water
uptake of LDPE/CS composites. However, the presence
of CS has increased the crystallinity of composites and LDPE
matrix due to nucleating effect. The addition of
COCA has
significantly increased the tensile strength, elongation at break,
water resistivity and crystallinity of LDPE/CS composites, but slightly
reduced in Young’s modulus. The scanning electron microscope (SEM)
also evidence the presence of COCA improved the adhesion between
CS and LDPE matrix.
Keywords: Coconut oil coupling
agent; composites; corn stalk; low density polyethylene
ABSTRAK
Dalam kajian ini,
batang jagung (CS)
telah digunakan sebagai pengisi semula jadi dalam
polietilena berketumpatan
rendah (LDPE). Kesan pembebanan pengisi CS
dan agen pengganding
minyak kelapa
(COCA)
ke atas sifat
kekuatan tensil,
haba dan penyerapan
air komposit LDPE/CS telah
dikaji. Peningkatan pembebanan pengisi
CS
telah mengurangkan
kekuatan tegangan
dan pemanjangan pada takat putus
komposit LDPE/CS, tetapi
modulus Young meningkat. Penambahan
CS
juga menyumbang kepada
penyerapan air yang tinggi
bagi komposit LDPE/CS.
Walau bagaimanapun,
kehadiran CS telah
menyebabkan penghabluran
matriks LDPE yang tinggi,
ia disebabkan
oleh kesan
penukleusan. Penambahan COCA telah meningkatkan
kekuatan tegangan,
pemanjangan pada takat putus, rintangan
terhadap air dan
penghabluran komposit LDPE/CS,
tetapi modulus Young didapati
berkurang. Mikroskop imbasan
elektron (SEM) juga menunjukkan
bukti kehadiran
COCA
meningkatkan lekatan
antara CS dan
matriks LDPE.
Kata kunci: Agen
pengganding minyak
kelapa; batang jagung; komposit; poletilena ketumpatan rendah
REFERENCES
Aisaeed, T.,
Yousif, B.F. & Ku, H. 2013. The potential of using date palm fibre as
reinforcement for polymeric composites. Materials and
Design 43: 177-184.
Amri, F., Hussiensyah, S. & Hussin, K.
2013. Effect of sodium dodecyl sulfate on mechanical
and thermal properties of polypropylene/chitosan composites.
Journal of Thermoplastic Composite Materials 26: 878-892.
Balakrishna, N.S.,
Ismail, H. & Othman, N. 2012. The
effects of rattan filler loadings on properties of rattan powder-filled
polypropylene composites. BioResources
7: 5677-5690.
Chun, K.S. & Husseinsyah, S. 2014a. Polylactic acid/corn cob eco-composites: Effect of new coupling
agent. Journal of Thermoplastic Composite Materials 27:
1667-1678.
Chun, K.S. & Husseinsyah, S. 2014b. Agro-waste
based composites from cocoa pod husk and polypropylene: Effect
of filler content and chemical treatment. Journal
of Thermoplastic Composites Materials 0892705714563125.
Chun, K.S., Husseinsyah, S. & Yeng, CM. 2015. Green composites from kapok
husk and recycled polypropylene: Processing torque, tensile, thermal,
and morphological properties. Journal of
Thermoplastic Composites Materials. 0892705715569822.
Chun, K.S., Husseinsyah, S. & Azizi, F.N. 2013a. Characterization and
properties of recycled polypropylene/coconut shell powder composites:
Effect of sodium dodecyl sulfate modification. Polymer-Plastics
Technology and Engineering 52: 287-294.
Chun, K.S., Husseinsyah, S. & Osman,
H. 2013b. Properties of coconut shell powder-filled polylactic
acid ecocomposites: Effect of meleic
acid. Polymer Engineering and Science 53: 1109-1116.
Chun, K.S., Husseinsyah, S. & Osman,
H. 2013c. Modified cocoa pod husk-filled polypropylene composites
by using methacrylic acid. BioResources 8: 3260-3275.
Chun, K.S., Husseinsyah, S. & Osman,
H. 2013d. Utilization of cocoa pod husk as filler in polypropylene biocomposites: Effect of maleated
polypropylene. Journal of Thermoplastic Composites Materials
28: 1507-1521.
Flandez, J., Gonzalez, I., Replandis,
J.B., Monsouri, N.E.E., Vilaseca,
F. & Mutje, P. 2012. Management
of corn stalk waste as reinforcement for polypropylene injection
moulded composites. BioResources
7: 1836-1849.
George,
J., Bhagawan, S.S. & Thomas, S.
1998. Effect of environment on the properties of low-density polyethylene
composites reinforced with pineapple-leaf fiber. Composites
Science and Technology 58: 1471-1485.
Husseinsyah, S.,
Chun, K.S., Hadi, A. & Ahmad, R.
2014. Effect
of filler loading and coconut oil coupling agent on properties
of low density polyethylene and palm kernel shell eco-composites.
Journal of Vinyl & Additive Technology 22(3): 200-205.
Jae,
G.G., Sun, Y.L., Sang, J.C., Geum, H.D.
& Jung, H.K. 2010. Effect of chemical treatment of
hybrid fillers on the physical and thermal properties of wood
plastic composites. Composites: Part A
41: 1491-1497.
Ndiaye, D.
& Tidjani, A. 2012. Effect of coupling agents on thermal behavior and mechanical properties
of wood flour/ polypropylene composites. Journal of
Composite Materials 46: 3607-3075.
Panthapulakkal, S.
& Sain, M. 2006. Injection
molded wheat straw and corn stem filled polypropylene composites.
Journal of Polymer and the Environment 14: 265-272.
Shash, V.
1983. Handbook of Polymer Testing. New
York: A Wiley Interscience Publication.
Suryadiansyah, Ismail,
H. & Azhari, B. 2007. Waste
paper filled polypropylene composites: the comparison effect on
ethylene diamine dilaurate as a new
compatibilizer with maleic polypropylene.
Journal of Reinforced Plastics and Composites 26: 51-67.
Wan,
T., Huang, R., Zhao, Q., Xiong, L.,
Luo, L., Tan, X. & Cai,
G. 2013. Synthesis and swelling properties of corn stalk-composites superabsorbent.
Journal of Applied Polymer Science 130: 698-703.
Xie, Y., Hill, C.A.S.,
Xiao, Z., Militz, H. & Mai, C. 2010. Silane coupling agents used for natural fiber/polymer composites:
A review. Composites: Part A 41:
806-819.
Yeng, C.M., Husseinsyah, S. & Ting, S.S. 2013. Modified
corn cob filled chitosan biocomposites
films. Polymer-Plastics Technology and Engineering 52:
1496-1502.
Zaaba, N.F.,
Ismail, H. & Jaafar, M. 2013. Effect of peanut shell powder content on the properties of recycled
polypropylene (RPP)/peanut shell powder (PSP) composites.
BioRecources 8: 5826-5841.
Zhao, Y., Qiu, J., Feng, H. & Zhang,
M. 2012. The interfacial modification of rice straw fiber reinforced poly(butylene succinate) composites: Effect of aminosilane with different alkoxy
groups. Journal of Applied Polymer Science 125: 3211-3220.
*Corresponding
author; email: irsalmah@unimap.edu.my