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2020 | OriginalPaper | Buchkapitel

Physio-Mechanical Properties and Thermal Analysis of Furcreo Foetedo Mediopicta (ffm) Fibers: Its Potential Application as Reinforcement in Making of Composites

verfasst von : Pathan Yasin, M. Venkataramana, Shashidhar K. Kudari

Erschienen in: International Conference on Emerging Trends in Engineering (ICETE)

Verlag: Springer International Publishing

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Abstract

In the past few decades, vegetable fibers became the viable alternative to petroleum-based fibers in composite industry, due to their renewability, biodegradability and eco-friendly properties. In the present work, a new leaf fiber extracted from Furcraea Foetida Mediopicto (ffm) plant, has been characterized and reported. Morphological, physical, mechanical and thermal properties of ffm fiber were examined by performing comprehensive characterization. Findings revealed that ffm fibers have an average low density and better mechanical properties compared to other fibers. Micro structural examination revealed the cross-section of the ffm fiber is the honeycomb structure. XRD analysis indicated the 49.7% crystalline content of ffm fiber. TG and DTA analysis revealed that ffm fibers are thermally stable up to 360 ℃. Present investigation, indicates that ffm fibers are highly suitable as reinforcement agents in polymeric matrices for various light weight-medium load-thermal insulation applications.

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Literatur
1.
Zurück zum Zitat Mohammed L, Ansari MN, Pua G, Jawaid M, Islam MS (2015) A review on natural fiber reinforced polymer composite and its applications. Int J Polym Sci 1:1–15CrossRef Mohammed L, Ansari MN, Pua G, Jawaid M, Islam MS (2015) A review on natural fiber reinforced polymer composite and its applications. Int J Polym Sci 1:1–15CrossRef
2.
Zurück zum Zitat Lackey E, James GV, Kapil I (2008) Statistical characterization of pultruded composites with natural fiber reinforcements – part a: fabrication. J Nat Fibers 4:73–87CrossRef Lackey E, James GV, Kapil I (2008) Statistical characterization of pultruded composites with natural fiber reinforcements – part a: fabrication. J Nat Fibers 4:73–87CrossRef
3.
Zurück zum Zitat Shah DU, Schubel PJ, Clifford MJ (2013) Can flax replace E-glass in structural composites? A small wind turbine blade case study. Compos Part B: Eng 52:172–181CrossRef Shah DU, Schubel PJ, Clifford MJ (2013) Can flax replace E-glass in structural composites? A small wind turbine blade case study. Compos Part B: Eng 52:172–181CrossRef
4.
Zurück zum Zitat Popzyk, Klein (2017) DNFI awards. Discovery of natural fibres initiative Popzyk, Klein (2017) DNFI awards. Discovery of natural fibres initiative
5.
Zurück zum Zitat Paiva MC, Ammar I, Campos AR, Cheikh RB, Cunha AM (2017) Alfa fibers: mechanical, morphological and interfacial characterization. Compos Sc Tech 67:1132–1138CrossRef Paiva MC, Ammar I, Campos AR, Cheikh RB, Cunha AM (2017) Alfa fibers: mechanical, morphological and interfacial characterization. Compos Sc Tech 67:1132–1138CrossRef
6.
Zurück zum Zitat Arifuzzaman Khan GM, Shahrear Palash SR, Shamsul Alam M, Chakraborty AK, Gafur MA, Terano M (2012) Isolation and characterization of betel nut leaf fiber: its potential application in making composites. J Pol Comput 33:764–772CrossRef Arifuzzaman Khan GM, Shahrear Palash SR, Shamsul Alam M, Chakraborty AK, Gafur MA, Terano M (2012) Isolation and characterization of betel nut leaf fiber: its potential application in making composites. J Pol Comput 33:764–772CrossRef
7.
Zurück zum Zitat Sreenivasan VS, Somasundaram S, Ravindran D, Manikandan V, Narayanasamy R (2011) Microstructural physico-chemical and mechanical characterization of Sansevieriacylindricafibres – an exploratory investigation. J Mater Des 32:453–461CrossRef Sreenivasan VS, Somasundaram S, Ravindran D, Manikandan V, Narayanasamy R (2011) Microstructural physico-chemical and mechanical characterization of Sansevieriacylindricafibres – an exploratory investigation. J Mater Des 32:453–461CrossRef
9.
Zurück zum Zitat Santhanam K, Kumaravel A, Saravanakumar SS, Arthanarieswaran VP (2016) Characterization of new natural cellulosic fibre from the Ipomoea staphylina plant. IJPAC 21:267–274 Santhanam K, Kumaravel A, Saravanakumar SS, Arthanarieswaran VP (2016) Characterization of new natural cellulosic fibre from the Ipomoea staphylina plant. IJPAC 21:267–274
10.
Zurück zum Zitat Saravanakumar SS, Kumaravel A, Nagarajan T, Sudhakard P, Baskarane R (2013) Characterization of a novel natural cellulosic fiber from Prosopisjuliflora bark. Carbohydr Polym 92:1928–1933CrossRef Saravanakumar SS, Kumaravel A, Nagarajan T, Sudhakard P, Baskarane R (2013) Characterization of a novel natural cellulosic fiber from Prosopisjuliflora bark. Carbohydr Polym 92:1928–1933CrossRef
13.
Zurück zum Zitat Binoj JS, Edwin Raj R, Sreenivasan VS, Rexin Thusnavis G (2016) Morphological, physical, mechanical, chemical and thermal characterization of sustainable Indian Areca fruit husk fibres (Areca Catechu L.) as potential alternate for hazardous synthetic fibres. J Bionic Eng 13:156–165CrossRef Binoj JS, Edwin Raj R, Sreenivasan VS, Rexin Thusnavis G (2016) Morphological, physical, mechanical, chemical and thermal characterization of sustainable Indian Areca fruit husk fibres (Areca Catechu L.) as potential alternate for hazardous synthetic fibres. J Bionic Eng 13:156–165CrossRef
14.
Zurück zum Zitat Beakou A, Ntenga R, Lepetit J, Ateba JA, Ayina LO (2008) Physico-chemical and microstructural characterization of ‘‘Rhectophyllumcamerunense’’ plant fibre. Compos: Part A 39:67–74CrossRef Beakou A, Ntenga R, Lepetit J, Ateba JA, Ayina LO (2008) Physico-chemical and microstructural characterization of ‘‘Rhectophyllumcamerunense’’ plant fibre. Compos: Part A 39:67–74CrossRef
15.
Zurück zum Zitat Yusriah L, Sapuan SM, Zainudin ES, Mariatti M (2014) Characterization of physical, mechanical, thermal and morphological properties of agro-waste betel nut (areca catechu.) husk fibre. J Cleaner Prod 72:174–180CrossRef Yusriah L, Sapuan SM, Zainudin ES, Mariatti M (2014) Characterization of physical, mechanical, thermal and morphological properties of agro-waste betel nut (areca catechu.) husk fibre. J Cleaner Prod 72:174–180CrossRef
16.
Zurück zum Zitat Spinace MAS, Lambert CS, Fermoselli KKG, De Paoli M-A (2009) Characterization of lignocellulosiccurauafibres. J. Carbohydr Polym 77:47–53CrossRef Spinace MAS, Lambert CS, Fermoselli KKG, De Paoli M-A (2009) Characterization of lignocellulosiccurauafibres. J. Carbohydr Polym 77:47–53CrossRef
17.
Zurück zum Zitat Biagiotti J (2004) A systematic investigation on the influence of the chemical treatment of natural fibers on the properties of their polymer matrix composites. Polym Compos 25:470–479CrossRef Biagiotti J (2004) A systematic investigation on the influence of the chemical treatment of natural fibers on the properties of their polymer matrix composites. Polym Compos 25:470–479CrossRef
18.
Zurück zum Zitat Liu W, Mohanty AK, Drzal LT, Askel P, Misra M (2004) Effects of alkali treatment on the structure, morphology and thermal properties of native grass fibers as reinforcements for polymer matrix composites. J Mater Sci 39:1051–1054CrossRef Liu W, Mohanty AK, Drzal LT, Askel P, Misra M (2004) Effects of alkali treatment on the structure, morphology and thermal properties of native grass fibers as reinforcements for polymer matrix composites. J Mater Sci 39:1051–1054CrossRef
19.
Zurück zum Zitat ASTM D3379-75 (1975) Test method for tensile strength and young’s modulus for high-modulus single-filament materials. ASTM standard ASTM D3379-75 (1975) Test method for tensile strength and young’s modulus for high-modulus single-filament materials. ASTM standard
20.
Zurück zum Zitat Murherjee PS, Satyanarayana KG (1984) Structure properties of some vegetable fibres, part 1. Sisal fibre. J Mater Sci 19:3925–3934CrossRef Murherjee PS, Satyanarayana KG (1984) Structure properties of some vegetable fibres, part 1. Sisal fibre. J Mater Sci 19:3925–3934CrossRef
21.
Zurück zum Zitat Zeriouh A, Belbirl L (1995) Thermal decomposition of a Moroccan wood under a nitrogen atmosphere. J Thermochimia Acta 258:243–248CrossRef Zeriouh A, Belbirl L (1995) Thermal decomposition of a Moroccan wood under a nitrogen atmosphere. J Thermochimia Acta 258:243–248CrossRef
22.
Zurück zum Zitat D’Almeida ALFS, Barreto DW, Calado V, d’Almeida JRM (2008) Thermal analysis of less common lignocellulosicfibres. J Therm Anal Cal 91:405–408CrossRef D’Almeida ALFS, Barreto DW, Calado V, d’Almeida JRM (2008) Thermal analysis of less common lignocellulosicfibres. J Therm Anal Cal 91:405–408CrossRef
23.
Zurück zum Zitat Amar B, Salem K, Hocine D, Chadia I, Juan MJ (2011) Study and characterization of composites materials based on polypropylene load with olive husk flour. J Appl Polym Sci 122:1382–1394CrossRef Amar B, Salem K, Hocine D, Chadia I, Juan MJ (2011) Study and characterization of composites materials based on polypropylene load with olive husk flour. J Appl Polym Sci 122:1382–1394CrossRef
24.
Zurück zum Zitat Sgriccia N, Hawley MC (2007) Thermal morphological and electrical characterization of microwave processed natural fibre composites. Compos Sci Technol 67:1986–1991CrossRef Sgriccia N, Hawley MC (2007) Thermal morphological and electrical characterization of microwave processed natural fibre composites. Compos Sci Technol 67:1986–1991CrossRef
25.
Zurück zum Zitat Yang H, Yan R, Chen H, Lee DH, Zheng C (2007) Characteristics of hemicelluloses, cellulose and lignin pyrolysis. Fuel 86:1781–1788CrossRef Yang H, Yan R, Chen H, Lee DH, Zheng C (2007) Characteristics of hemicelluloses, cellulose and lignin pyrolysis. Fuel 86:1781–1788CrossRef
26.
Zurück zum Zitat Zhang XJ, Yi XS, Xu YZ (2008) Cure-induced phase separation of epoxy/DDS/PEK-C composites and its temperature dependency. J Appl Polym Sci 109:2195–2206CrossRef Zhang XJ, Yi XS, Xu YZ (2008) Cure-induced phase separation of epoxy/DDS/PEK-C composites and its temperature dependency. J Appl Polym Sci 109:2195–2206CrossRef
27.
Zurück zum Zitat Li G, Li P, Zhang C, Yu Y, Liu H, Zhang S, Jia X, Yang X, Xue Z, Ryu S (2008) In homogeneous toughening of carbon fiber/epoxy composite using electro spun polysulfonenano fibrous membranes by in situ phase separation. J. Compos Sci Tech 68:987–994CrossRef Li G, Li P, Zhang C, Yu Y, Liu H, Zhang S, Jia X, Yang X, Xue Z, Ryu S (2008) In homogeneous toughening of carbon fiber/epoxy composite using electro spun polysulfonenano fibrous membranes by in situ phase separation. J. Compos Sci Tech 68:987–994CrossRef
Metadaten
Titel
Physio-Mechanical Properties and Thermal Analysis of Furcreo Foetedo Mediopicta (ffm) Fibers: Its Potential Application as Reinforcement in Making of Composites
verfasst von
Pathan Yasin
M. Venkataramana
Shashidhar K. Kudari
Copyright-Jahr
2020
DOI
https://doi.org/10.1007/978-3-030-24314-2_59

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