Thermal Stability and Dynamic Mechanical Properties of Kenaf/Bamboo Fibre Reinforced Epoxy Composites

被引:43
|
作者
Chee, Siew Sand [1 ]
Jawaid, Mohammad [1 ,2 ]
Sultan, Mohamed T. H. [2 ,3 ]
机构
[1] Univ Putra Malaysia, Lab Biocomposite Technol, Inst Trop Forestry & Forest Prod INTROP, Upm Serdang 43400, Selangor Darul, Malaysia
[2] Univ Putra Malaysia, AMRC, Fac Engn, Level 7,Tower Block, Serdang, Selangor Darul, Malaysia
[3] Univ Putra Malaysia, Fac Engn, Dept Aerosp Engn, Upm Serdang 43400, Selangor Darul, Malaysia
来源
BIORESOURCES | 2017年 / 12卷 / 04期
关键词
Composite; Kenaf; Bamboo; Natural fibre polymer composite; Thermal stability; Dynamic mechanical properties; BAMBOO FIBER; CELLULOSE;
D O I
10.15376/biores.12.4.7118-7132
中图分类号
TB3 [工程材料学]; TS [轻工业、手工业、生活服务业];
学科分类号
0805 ; 080502 ; 0822 ;
摘要
An increased awareness of environmental concerns has increased the need for innovation to produce high performance engineering materials with natural renewable resources. In this study, 3 types of natural fibre (mat form) reinforced epoxy composites were prepared by the hand lay-up method, namely, kenaf (K)/Epoxy, bamboo (B)/Epoxy, and bamboo charcoal (BC)/Epoxy. The thermal stability of the specimens was investigated by thermogravimetric analysis (TGA) and the dynamic mechanical properties. Viscous elastic behaviour of the specimens was investigated via a dynamic mechanical analyzer (DMA). The TGA results revealed that the BC/Epoxy composite showed the highest thermal stability compared to K/Epoxy and B/Epoxy with the highest initial and final decomposition temperature at 348 degrees C and 463 degrees C, respectively. It also showed the highest charcoal content at 11.5%. From the DMA results, the K/Epoxy composite showed better dynamic mechanical properties with the highest complex modulus (E*) strength and the lowest damping behaviour (peak height of Tan delta). The DMA analysis also revealed that the glass transition temperature of the composites fell between 60 degrees C to 90 degrees C. This preliminary study may give a new path to develop a novel hybrid composite that offers unique properties unachievable in a single material system.
引用
收藏
页码:7118 / 7132
页数:15
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