Recycling of L-Poly-(lactide)-Poly-(butylene-succinate)-flax biocomposite

被引:49
作者
Bourmaud, Alain [1 ]
Akesson, Dan [2 ]
Beaugrand, Johnny [3 ,4 ]
Le Duigou, Antoine [1 ]
Skrifvars, Mikael [2 ]
Baley, Christophe [1 ]
机构
[1] Univ Bretagne Sud, EA 4250, LIMATB, BP 92116, F-56321 Lorient, France
[2] Univ Boras, Swedish Ctr Resource Recovery, S-50190 Boras, Sweden
[3] INRA, Fractionnement AgroRessources & Environm UMR614, F-51100 Reims, France
[4] Univ Reims, Fractionnement AgroRessources & Environm UMR614, F-51100 Reims, France
关键词
L-Poly-(lactide); Poly-(butylene-succinate); Flax fibre; Mechanical properties; Recycling; Fibre length; Nanoindentation; REINFORCED POLYPROPYLENE COMPOSITES; MELT RHEOLOGICAL BEHAVIOR; NATURAL FIBER COMPOSITES; MECHANICAL-PROPERTIES; FLAX FIBERS; TENSILE PROPERTIES; POLY(LACTIC ACID); POLYLACTIC ACID; POLYMER MELTS; GLASS-FIBER;
D O I
10.1016/j.polymdegradstab.2016.03.018
中图分类号
O63 [高分子化学(高聚物)];
学科分类号
070305 [高分子化学与物理];
摘要
The development of new plant fibre composites is a key point in the development of semi-structural biodegradable or biobased parts, especially for automotive applications. The aim of this original and innovating work is to study, at different scales, the recycling ability of a fully biodegradable L-Poly-(lactide)-Poly-(butylene-succinate)-flax (PLLA-PBS-flax) biocomposite. The biocomposites were manufactured by twin-screw extrusion followed by injection moulding, then the recycling behaviour was studied during successive injection moulding cycles. Firstly, we investigated the length of the flax fibre after compounding and injection, as well as the cell wall stiffness and hardness, by in-situ nano indentation tests. Secondly, we focused on the effects of recycling on thermal, rheological and tensile properties. We highlighted a severe evolution of the cell wall properties, especially concerning the polysaccharidic matrix after the first thermal cycle, nanoindentation properties remaining quasi-stable after this first drop. Furthermore, the biocomposites did not show any significant evolution of their mechanical performances during cycle three or four of the first injection cycles; after this plateau, the tensile strength and strain as well as impact energy were significantly altered due to the conjugated fibre length decrease and degradation of the PLLA, the latter being emphasized when the flax fibre is embedded. Nevertheless, this fully biodegradable composite exhibits a suitable recycling behaviour for 3 or 4 cycles, which is sufficient for industrial applications. (C) 2016 Elsevier Ltd. All rights reserved.
引用
收藏
页码:77 / 88
页数:12
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