Thermal, mechanical, and electrical properties of difunctional and trifunctional epoxy blends with nanoporous materials

Author:

J Ganesan1ORCID,S Jeyadevi2,S Siva Kaylasa Sundari3ORCID,M Arunjunai Raj4,G Pitchaimari5,CT Vijayakumar6ORCID

Affiliation:

1. Department of Electrical and Electronics Engineering, Sree Sowdambika College of Engineering, Aruppukottai, India

2. Department of Electrical and Electronics Engineering, Kamaraj College of Engineering and Technology (Autonomous), Madurai, India

3. Department of Chemistry, Kamaraj College of Engineering and Technology (Autonomous), Madurai, India

4. Kompetenzzentrum Holz GmbH (W3C), Linz, Austria

5. Department of Chemical Engineering and Applied Chemistry, University of Toronto, ON, Canada

6. Department of Polymer Technology, Kamaraj College of Engineering and Technology (Autonomous), Madurai, India

Abstract

In the present study, the aim is to synthesize the particulate nanocomposites with difunctional and trifunctional epoxy blend as matrix and synthesized nanoporous materials as fillers. Organic/inorganic hybrid networks were prepared by the novel solvent free method. Viscoelastic, thermal, and electrical properties of di- and trifunctional epoxy and the effect of different nanoparticles in the particulate nanocomposites have been studied by dynamic mechanical analyzer, thermogravimetry (TGA), and dielectric strength. Epoxy mixed with different compositions of TGPAP and particulate nanocomposites by the addition of different types of nanomaterials shows higher storage modulus than the pure epoxy. The addition of TGPAP and nanofillers decreases the thermal stability of epoxy matrix. The evolved gas analysis (TG-FTIR) was also done in order to study the products formed during degradation. An increase in dielectric strength and impact strength (4%) was also observed in the particulate nanocomposites.

Publisher

SAGE Publications

Subject

Materials Chemistry,Polymers and Plastics

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