Epoxidized linseed oil as a plasticizer for All-Cellulose Composites based on cellulose acetate butyrate and micronized pulp fibers

被引:6
作者
Valente, Bruno F. A. [1 ]
Karamysheva, Anna [1 ]
Silvestre, Armando J. D. [1 ]
Neto, Carlos Pascoal [2 ]
Vilela, Carla [1 ]
Freire, Carmen S. R. [1 ]
机构
[1] Univ Aveiro, Aveiro Inst Mat, Dept Chem, CICECO, P-3810193 Aveiro, Portugal
[2] Res Inst Forest & Paper Navigator Co, RAIZ, Rua Jose Estevao, P-3800783 Aveiro, Portugal
关键词
Biocomposites; Impact behaviour; Mechanical properties; Thermal properties; Plasticizer; REINFORCED POLYMER COMPOSITES; MECHANICAL-BEHAVIOR; BIOCOMPOSITES; BIODEGRADABILITY; NANOCOMPOSITES; MORPHOLOGY; DISPERSION; HYBRIDS;
D O I
10.1016/j.indcrop.2023.116980
中图分类号
S2 [农业工程];
学科分类号
0828 ;
摘要
All-Cellulose Composites (ACCs) with cellulose derivatives have been neglected in the composite industry due to their high brittleness, low impact strength, and flowability. Epoxidized vegetable oils are well-known plasticizers for several polymers and composites but have never been exploited on the production of ACCs. The present work investigates the potential of an epoxidized linseed oil (ELO) as a cost-effective additive to enhance the properties and processability of ACCs made with cellulose acetate butyrate (CAB) and micronized Eucalyptus pulp fibers. The thermo-mechanical characterization of the composites, obtained by melt-mixing, revealed that ELO significantly decreases the glass transition temperature (Tg) of the obtained composites without compromising their thermal stability. Moreover, an 84-fold improvement was achieved on the melt flow rate (MFR) with 30 wt% ELO, and growing amounts of this additive caused an augment on the elongation and flexural strains at break. High loads of ELO resulted also on a substantial improvement of the impact strength, with values raising from 5.3 & PLUSMN; 0.9 kJ.m 2 up to 29.5 & PLUSMN; 1.7 kJ.m 2. Furthermore, this eco-friendly plasticizer also led to higher water uptake values, as well as higher biodegradation rates than the non-plasticized ACCs. Therefore, these results evince a remarkable improvement on the ACCs processability, performance, and biodegradation upon addition of a biobased and cost-effective plasticizer.
引用
收藏
页数:13
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