Thermal and Dimensional Stability of Injection-Molded Sisal-Glass Fiber Hybrid PP Biocomposites

被引:0
作者
B. KC
J. Tjong
S. A. Jaffer
M. Sain
机构
[1] University of Toronto,Centre for Biocomposites and Biomaterials Processing (CBBP), Faculty of Forestry
[2] Ford Powertrain Engineering Research and Development Centre,undefined
[3] Total American Services Inc,undefined
来源
Journal of Polymers and the Environment | 2018年 / 26卷
关键词
Sisal fiber; Hybrid biocomposite; Injection modling; Thermal stability; Dimensional stability;
D O I
暂无
中图分类号
学科分类号
摘要
This article reports on the thermal and dimensional stability of sisal-glass fiber hybrid biocomposites with 30% fiber (wt%) reinforcement in polypropylene (PP) matrix. Hybrid-fiber effect on thermal properties such as specific heat (Cp), melting and crystallization behavior, thermal degradation and dimensional properties such as water absorption and volumetric coefficient of thermal expansion (CTE) was studied. Hybrid biocomposites showed a decrease in specific heat capacity, % crystallinity and thermal degradation at 210 °C (<0.4 wt%). The analysis of heating and cooling rates (5, 10, 15 °C/min) on crystallization kinetics of hybrid biocomposites showed no significant influence of on melting and crystallization enthalpies. Comparison of injection and extrusion process exhibited increased % crystallinity and fiber attrition in hybrid biocomposites after injection molding. Compared to sisal fibers, degradation in glass fiber length was 18.5 and 15% higher after extrusion and injection molding respectively. Difference in derivative thermograms (DTG) peaks after injection and extrusion process were within 2–3% suggesting the uniform distribution of fibers in PP. On the dimensional stability, hybrid biocomposites showed significant improvement (<0.3 wt%) in water absorption and CTE properties at sub-zero (30 to −30 °C) temperature.
引用
收藏
页码:1279 / 1289
页数:10
相关论文
共 131 条
[1]  
Thakur VK(2011)Biopolymers based green composites: mechanical, thermal and physico-chemical characterization J Polym Environ 20 412-421
[2]  
Singha AS(2014)Development of kenaf-glass reinforced unsaturated polyester hybrid composite for structural applications Compos Part B 56 68-73
[3]  
Thakur MK(2015)Hybrid biocomposites with enhanced thermal and mechanical properties for structural applications J Appl Polym Sci 132 42621-2476
[4]  
Atiqah A(2010)Analysis of shrinkage development of a semicrystalline polymer during injection molding Ind Eng Chem Res 49 2469-202
[5]  
Maleque MA(2013)Initial conditions for simulating glass fiber orientation in the filling of center-gated disks Compos Part A 49 192-1883
[6]  
Jawaid M(2007)Studies on the water absorption properties of short hemp–glass fiber hybrid polypropylene composites J Compos Mater 41 1871-18
[7]  
Iqbal M(2011)Cellulosic/synthetic fibre reinforced polymer hybrid composites: a review Carbohydr Polym 86 1-8
[8]  
KC B(2013)Development of flax/carbon fibre hybrid composites for enhanced properties Carbohydr Polym 96 1-49
[9]  
Panthapulakkal S(2015)High toughness hybrid biocomposite process optimization Compos Sci Technol 111 44-38
[10]  
Kronka A(2016)Emerging trends in automotive lightweighting through novel composite materials Sci Res Publ 7 26-294