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Erschienen in: Cellulose 12/2022

30.06.2022 | Review Paper

Mechanical properties of sugar palm lignocellulosic fibre reinforced polymer composites: a review

verfasst von: M. R. M. Asyraf, M. Rafidah, S. Ebadi, A. Azrina, M. R. Razman

Erschienen in: Cellulose | Ausgabe 12/2022

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Abstract

The significant reduction in petroleum resources and the growth of global environmental awareness on the use of conventional plastics are the motivating factors to accept natural fibres as green materials. Lignocellulosic fibre-reinforced polymer biocomposites have attracted considerable attention from engineers and researchers because of their sustainable nature and wide availability. Sugar palm is an emerging crop grown in Malaysia and Indonesia and is regarded as a significant candidate lignocellulosic fibre in biocomposites. Sugar palm fibres are mainly made up of cellulose, which leads to outstanding mechanical properties. From a literature review, no comprehensive review paper has been published on the mechanical behaviour of sugar palm lignocellulosic fibre biocomposites to provide a good source of literature for doing further research on this topic to consider them construction and building materials. The present review concentrates on recent work on the properties of sugar palm lignocellulosic fibres, starches, and nanofillers and their fabrication as biocomposites.

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Literatur
Zurück zum Zitat Atiqah A, Mastura MT, Jawaid M et al (2019) Interfaces in sugar palm fibres reinforced composites: a review. In: Kheng LG, Aswathi MK, De SRT, Thomas S (eds) Interfaces in particle and fibre reinforced composites: current perspectives on polymer, ceramic, metal and extracellular matrices. Woodhead Publishing Series, Amsterdam, pp 199–217 Atiqah A, Mastura MT, Jawaid M et al (2019) Interfaces in sugar palm fibres reinforced composites: a review. In: Kheng LG, Aswathi MK, De SRT, Thomas S (eds) Interfaces in particle and fibre reinforced composites: current perspectives on polymer, ceramic, metal and extracellular matrices. Woodhead Publishing Series, Amsterdam, pp 199–217
Zurück zum Zitat Bachtiar D, Sapuan SM, Zainudin ES, Khalina A, Dahlan KZHM (2011a) The effect of alkali treatment and compatibilising agent on tensile properties of short sugar palm fibre reinforced high impact polystyrene. BioResources 6:4815–4823 Bachtiar D, Sapuan SM, Zainudin ES, Khalina A, Dahlan KZHM (2011a) The effect of alkali treatment and compatibilising agent on tensile properties of short sugar palm fibre reinforced high impact polystyrene. BioResources 6:4815–4823
Zurück zum Zitat Bachtiar D, Salit MS, Zainudin E et al (2011b) Effects of alkaline treatment and a compatibilizing agent on tensile properties of sugar palm fibrereinforced high impact polystyrene composites. BioResources 6:4815–4823 Bachtiar D, Salit MS, Zainudin E et al (2011b) Effects of alkaline treatment and a compatibilizing agent on tensile properties of sugar palm fibrereinforced high impact polystyrene composites. BioResources 6:4815–4823
Zurück zum Zitat Bachtiar D, Sapuan SM, Zainudin ES et al (2013) Thermal properties of alkali-treated sugar palm fibre reinforced high impact polystyrene composites. Pertanika J Sci Technol 21:141–150 Bachtiar D, Sapuan SM, Zainudin ES et al (2013) Thermal properties of alkali-treated sugar palm fibre reinforced high impact polystyrene composites. Pertanika J Sci Technol 21:141–150
Zurück zum Zitat Chalid M, Prabowo I (2015) The effects of alkalization to the mechanical properties of the Ijuk fiber reinforced PLA biocomposites. Int J Chem Mol Nucl Mater Metall Eng 9:342–346 Chalid M, Prabowo I (2015) The effects of alkalization to the mechanical properties of the Ijuk fiber reinforced PLA biocomposites. Int J Chem Mol Nucl Mater Metall Eng 9:342–346
Zurück zum Zitat Dai X-Q (2006) Fibers. In: Li Y, Dai X-Q (eds) Biomechanical engineering of textiles and clothing, 1st edn. Elsevier, Boca Raton, FL, pp 163–177CrossRef Dai X-Q (2006) Fibers. In: Li Y, Dai X-Q (eds) Biomechanical engineering of textiles and clothing, 1st edn. Elsevier, Boca Raton, FL, pp 163–177CrossRef
Zurück zum Zitat Ilyas RA, Sapuan SM, Ishak MR et al (2018) Characterization of sugar palm nanocellulose and its potential for reinforcement with a starch-based composite. In: Sapuan SM, Sahari J, Ishak MR, Sanyang ML (eds) Sugar palm biofibers, biopolymers, and biocomposites, 1st edn. CRC Press, Boca Raton, FL, pp 189–220CrossRef Ilyas RA, Sapuan SM, Ishak MR et al (2018) Characterization of sugar palm nanocellulose and its potential for reinforcement with a starch-based composite. In: Sapuan SM, Sahari J, Ishak MR, Sanyang ML (eds) Sugar palm biofibers, biopolymers, and biocomposites, 1st edn. CRC Press, Boca Raton, FL, pp 189–220CrossRef
Zurück zum Zitat Ilyas R, Sapuan S, Kadier A et al (2020) Properties and characterization of PLA, PHA, and other types of biopolymer composites. In: Al-Oqla FM, Sapuan SM (eds) Advanced processing, properties, and applications of starch and other bio-based polymers. Elsevier, Amsterdam, pp 111–138CrossRef Ilyas R, Sapuan S, Kadier A et al (2020) Properties and characterization of PLA, PHA, and other types of biopolymer composites. In: Al-Oqla FM, Sapuan SM (eds) Advanced processing, properties, and applications of starch and other bio-based polymers. Elsevier, Amsterdam, pp 111–138CrossRef
Zurück zum Zitat Ishak MR, Leman Z, Sapuan SM et al (2009) The effect of sea water treatment on the impact and flexural strength of sugar palm fibre reinforced epoxy composites. Int J Mech Mater Eng (IJMME) 4:316–320 Ishak MR, Leman Z, Sapuan SM et al (2009) The effect of sea water treatment on the impact and flexural strength of sugar palm fibre reinforced epoxy composites. Int J Mech Mater Eng (IJMME) 4:316–320
Zurück zum Zitat Ishak MR, Sapuan SM, Leman Z et al (2010) Chemical composition of sugar palm (Arenga pinnata) fibres: the effects of natural degradation. In: Proceedings of the international conference on design and concurrent engineering. Malacca, Malaysia Ishak MR, Sapuan SM, Leman Z et al (2010) Chemical composition of sugar palm (Arenga pinnata) fibres: the effects of natural degradation. In: Proceedings of the international conference on design and concurrent engineering. Malacca, Malaysia
Zurück zum Zitat Mazani N, Sapuan SM, Sanyang ML et al (2019) Design and fabrication of a shoe shelf from kenaf fiber reinforced unsaturated polyester composites. In: Ariffin H, Sapuan SM, Hassan MA (eds) Lignocellulose for future bioeconomy, 1st edn. Elsevier Inc., Amsterdam, pp 315–332CrossRef Mazani N, Sapuan SM, Sanyang ML et al (2019) Design and fabrication of a shoe shelf from kenaf fiber reinforced unsaturated polyester composites. In: Ariffin H, Sapuan SM, Hassan MA (eds) Lignocellulose for future bioeconomy, 1st edn. Elsevier Inc., Amsterdam, pp 315–332CrossRef
Zurück zum Zitat Mohd Nurazzi N, Khalina A, Sapuan SM et al (2017) A review: fibres, polymer matrices and composites. Pertanika J Sci Technol 25:1085–1102 Mohd Nurazzi N, Khalina A, Sapuan SM et al (2017) A review: fibres, polymer matrices and composites. Pertanika J Sci Technol 25:1085–1102
Zurück zum Zitat Mustafa MH, Dauda B (2014) Unsaturated polyester resin reinforced with chemically modified natural fibre\n. IOSR J Polym Text Eng 1:31–38CrossRef Mustafa MH, Dauda B (2014) Unsaturated polyester resin reinforced with chemically modified natural fibre\n. IOSR J Polym Text Eng 1:31–38CrossRef
Zurück zum Zitat Rashid B, Leman Z, Jawaid M et al (2017a) Dynamic mechanical analysis of treated and untreated. BioResources 12:3448–3462 Rashid B, Leman Z, Jawaid M et al (2017a) Dynamic mechanical analysis of treated and untreated. BioResources 12:3448–3462
Zurück zum Zitat Sahari J, Sapuan SM, Ismarrubie ZN, Rahman MZA (2012a) Physical and chemical properties of different morphological parts of sugar palm fibres. Fibres Text East Eur 91:21–24 Sahari J, Sapuan SM, Ismarrubie ZN, Rahman MZA (2012a) Physical and chemical properties of different morphological parts of sugar palm fibres. Fibres Text East Eur 91:21–24
Zurück zum Zitat Sapuan SM (2018) Development of sugar palm–based products: a community project. In: Sapuan SM, Sahari J, Ishak MR, Sanyang ML (eds) Sugar palm biofibers, biopolymers, and biocomposites, 1st edn. CRC Press, Boca Raton, FL, pp 245–266CrossRef Sapuan SM (2018) Development of sugar palm–based products: a community project. In: Sapuan SM, Sahari J, Ishak MR, Sanyang ML (eds) Sugar palm biofibers, biopolymers, and biocomposites, 1st edn. CRC Press, Boca Raton, FL, pp 245–266CrossRef
Zurück zum Zitat Shesan OJ, Stephen AC, Chioma AG et al (2019) Fiber–matrix relationship for composites preparation. In: Pereira A, Fernandes F (eds) Renewable and sustainable composites. IntechOpen, Rijeka Shesan OJ, Stephen AC, Chioma AG et al (2019) Fiber–matrix relationship for composites preparation. In: Pereira A, Fernandes F (eds) Renewable and sustainable composites. IntechOpen, Rijeka
Zurück zum Zitat Wang B, Panigrahi S, Tabil L et al (2003) Modification of flax fibres by chemical treatment. Csae/Scgr 6–9 Wang B, Panigrahi S, Tabil L et al (2003) Modification of flax fibres by chemical treatment. Csae/Scgr 6–9
Zurück zum Zitat Yusup EM, Mahzan S, Kamaruddin MAH (2019) Natural fiber reinforced polymer for the application of sports equipment using mold casting method. In: IOP conference series: materials science and engineering. IOP Publishing, p 12040 Yusup EM, Mahzan S, Kamaruddin MAH (2019) Natural fiber reinforced polymer for the application of sports equipment using mold casting method. In: IOP conference series: materials science and engineering. IOP Publishing, p 12040
Metadaten
Titel
Mechanical properties of sugar palm lignocellulosic fibre reinforced polymer composites: a review
verfasst von
M. R. M. Asyraf
M. Rafidah
S. Ebadi
A. Azrina
M. R. Razman
Publikationsdatum
30.06.2022
Verlag
Springer Netherlands
Erschienen in
Cellulose / Ausgabe 12/2022
Print ISSN: 0969-0239
Elektronische ISSN: 1572-882X
DOI
https://doi.org/10.1007/s10570-022-04695-3

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