Dynamic-Mechanical Analysis of Epoxy Composites Reinforced with PALF Fibers
- Organization:
- The Minerals, Metals and Materials Society
- Pages:
- 7
- File Size:
- 273 KB
- Publication Date:
- Mar 1, 2018
Abstract
The society is increasingly the concern about the ambiental impacts, and demand for eco-friendly materials. The composites reinforced with synthetic fibers are been replaced by composites reinforced with natural fibers because of the environmental advantages. Besides the environmental advantages, those fibers have economical and properties advantages, like the low density and cost. Composites with up to 30%of PALF fibers were tested. The analyzed parameters were the loss modulus, the storage modulus and the delta tangent. The test was conducted in the temperature interval from 25 to 195 °C in a DMA equipment operating at 1 Hz of frequency under a nitrogen flow. The results showed that the incorporation of continuous and aligned PALF fibers tends to increase the viscoelastic stiffness of the epoxy matrix. Contrasting this, minor changes occurred in both the glass transition temperature and the damping capacity of the structure as measured by the tan delta peaks.
Citation
APA: (2018) Dynamic-Mechanical Analysis of Epoxy Composites Reinforced with PALF Fibers
MLA: Dynamic-Mechanical Analysis of Epoxy Composites Reinforced with PALF Fibers. The Minerals, Metals and Materials Society, 2018.