Thermomechanical and crystallization behavior of polylactide-based flax fiber biocomposites

被引:0
作者
Andrea Arias
Marie-Claude Heuzey
Michel A. Huneault
机构
[1] École Polytechnique de Montréal,Chemical Engineering, Center for Applied Research on Polymers and Composites—CREPEC
[2] Université de Sherbrooke,Chemical and Biotechnological Engineering Department
来源
Cellulose | 2013年 / 20卷
关键词
Polylactide; Flax fiber; Biocomposite; Crystallization; Mechanical properties;
D O I
暂无
中图分类号
学科分类号
摘要
In this work, the rheological, thermal and mechanical properties of melt-compounded flax fiber-reinforced polylactide composites were investigated. The effect of compounding on fiber length and diameter, and the relationship between fiber content and the crystallization behavior of the biocomposites, at various temperatures, were also examined. After melt-compounding, fiber bundles initially present were, to a large extent, broken into individual fibers and the fiber length was decreased by 75 %, while the aspect ratio was decreased by nearly 50 %. The crystallization half-time was found to decrease with increasing flax fiber content, and showed a minimum value at 105 °C for all systems. The elastic modulus was increased by 50 % in the presence of 20 wt% flax fibers. The addition of maleic anhydride-grafted polylactide had a positive effect on the mechanical properties of the biocomposite. This system is particularly interesting in the context of sustainable development as it is entirely based on renewable resources and biodegradable.
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页码:439 / 452
页数:13
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[11]  
Barkoula NM(2007)Abaca fibre reinforced PP composites and comparison with jute and flax fibre PP composites Express Polym Lett 1 755-762
[12]  
Garkhail SK(2007)Could biopolymers reinforced by randomly scattered flax fibre be used in structural applications? Compos Sci Technol 67 462-470
[13]  
Bax B(2007)Dispersion and characteristics of surfactant modified cellulose whiskers nanocomposites Compos Interfaces 14 617-630
[14]  
Mussig J(2005)Crystallization behavior of poly(L-lactic acid) Eur Polymer J 41 569-575
[15]  
Bengtsson M(1973)Investigation of the structure of solution grown crystals of lactide copolymers by means of chemical reactions Kolloid-Z Z Polym 251 980-990
[16]  
Baillif ML(2001)A litterature review of poly(Lactic acid) J Polym Environ 9 63-84
[17]  
Biagiotti J(2001)Thermal degradation of green and upgraded flax fibres Adv Compos Lett 10 81-88
[18]  
Puglia D(2008)Improving mechanical performance of injection molded PLA by controlling crystallinity J Appl Polym Sci 107 2246-2255
[19]  
Bledzki AK(2007)Transcrystallization kinetics at the poly(3-hydroxybutyrate-co-3-hydroxyvalerate)/hemp fibre interface Compos A Appl Sci Manuf 38 1387-1394
[20]  
Mamun AA(2012)Grafting of maleic anhydride on poly(L-lactic acid). Effects on physical and mechanical properties Polym Test 31 333-344