Pineapple leaf fiber (PALF) which is rich in cellulose, relatively inexpensive, and abundantly available has the potential for polymer reinforcement. The present study investigated the tensile, flexural, and impact behavior of PALF-reinforced polyester composites as a function of fiber loading, fibe
Dynamic mechanical properties of pineapple leaf fiber polyester composites
β Scribed by L. Uma Devi; S.S. Bhagawan; S. Thomas
- Publisher
- Society for Plastic Engineers
- Year
- 2011
- Tongue
- English
- Weight
- 978 KB
- Volume
- 32
- Category
- Article
- ISSN
- 0272-8397
- DOI
- 10.1002/pc.21197
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β¦ Synopsis
Abstract
In the recent years, lignocellulosic fibers that originate from a renewable source have been found to provide good reinforcement in polymer matrices. Among the natural fibers, pineapple leaf fiber (PALF) exhibits excellent mechanical properties, besides possessing low density, high stiffness, and low cost. The dynamic mechanical properties, storage modulus (Eβ²), and loss tangent of PALFβreinforced polyester (PER) composites were evaluated at three frequencies 0.1, 1, and 10 Hz and temperatures ranging from 30 to 200Β°C. Addition of PALF of 30 mm length (aspect ratio 600) was found to increase the storage modulus leading to a maximum value at 40 wt%. The glass transition temperature (T~g~) of the composite of 40 wt% showed a positive shift indicating high polymer/fiber interaction. A new relaxation is observed at 40 wt% showing the presence of a strong interphase at all aspect ratios. SEM photographs of fracture surfaces of composites confirm the results obtained from static and dynamic mechanical analysis. POLYM. COMPOS., 2011. Β© 2011 Society of Plastics Engineers
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