Paper
9 August 2013 A novel epoxy/electrospun PLA nanofibre composite material: fabrication and characterisation
Y. Dong, T. Mosaval, H. J. Haroosh
Author Affiliations +
Proceedings Volume 8793, Fourth International Conference on Smart Materials and Nanotechnology in Engineering; 879302 (2013) https://doi.org/10.1117/12.2025370
Event: Fourth International Conference on Smart Materials and Nanotechnology in Engineering, 2013, Gold Coast, Australia
Abstract
Electrospun nanofibres as the potential reinforcement in manufacturing composite materials are recently attractive due to their simple fabrication process via electrospinning to produce continuous fibrous structures. This study concentrates on the development of novel epoxy composites laminated by layers of electrospun polylactic acid (PLA) nanofibre mats to evaluate their mechanical and thermal properties by means of flexural testing and differential scanning calorimetry (DSC), respectively. The moulded composite sheets were prepared at the fibre contents of 3 wt%, 5 wt% and 10 wt% using a solution casting method. The flexural moduli of composites have been shown to be increased by 50.8% and 24.0% for 5 wt% and 10 wt% fibre contents, respectively, as opposed to that of neat epoxy. This similar trend was also found for corresponding flexural strengths being increased by 31.6% and 4.8%. However, the flexural properties become worse at the fibre content of 3 wt% with decreases of flexural modulus by 36.9% and flexural strength by 22.9%. The examination of fractured surface morphology of composites using scanning electron microscopy (SEM) confirms a full penetration of cured epoxy matrix into electrospun PLA nanofibres despite some existences of typical fibrous structures/networks detected inside the large void cavities. On the other hand, the glass transition temperatures of composites have increased to 54-60°C due to the addition of electrospun fibres as compared to 50°C for that of epoxy, indicating that those fibrous networks may further restrict the intermolecular mobility of matrix for thermal effects.
© (2013) COPYRIGHT Society of Photo-Optical Instrumentation Engineers (SPIE). Downloading of the abstract is permitted for personal use only.
Y. Dong, T. Mosaval, and H. J. Haroosh "A novel epoxy/electrospun PLA nanofibre composite material: fabrication and characterisation", Proc. SPIE 8793, Fourth International Conference on Smart Materials and Nanotechnology in Engineering, 879302 (9 August 2013); https://doi.org/10.1117/12.2025370
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Cited by 2 scholarly publications.
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KEYWORDS
Composites

Epoxies

Scanning electron microscopy

Nanolithography

Glasses

Manufacturing

Thermal effects

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