Synthesis and thermal characterization of composites based on Epidian 601 with flame retardants compounds

Author:

Wnuczek Krystyna1ORCID,Sowa Karolina1,Podkościelna Beata1ORCID,Klepka Tomasz2ORCID

Affiliation:

1. Department of Polymer Chemistry, Faculty of Chemistry , Institute of Chemical Sciences, Maria Curie-Skłodowska University , Gliniana 33, 20-614 , Lublin , Poland

2. Department of Technology and Polymer Processing, Faculty of Mechanical Engineering , Lublin University of Technology , Nadbystrzycka 36, 20-618 Lublin , Poland

Abstract

Abstract This study presents the preparation and flammability characteristics of polymeric composites based on the epoxy resin Epidian® 601. The triethylenetetramine (TETA) and commercial curing agents based on polyamines (IDA and PAC) were used as crosslinking compounds. Moreover, two flame retardant compounds were added to this composition, the commercial Fire Retardant (FR) and triphenyl phosphate (TP). The chemical structure of the composites and the course of curing processes were confirmed by the ATR/FT-IR (Attenuated Total Reflection–Fourier Transform Infrared) analysis. The influence of different amounts of FR or TP on the flammability and thermal resistance was discussed in detail. After the flammability test the samples were also studied to assess their thermal destruction. In addition, the composites were subjected to the swelling tests, solvent resistance, and microscopic observations. The DSC curves revealed that all materials were characterized by good thermal properties. All materials were temperature resistant up to 300 °C. Furthermore, the measurements of the hardness of the composite demonstrated that the material EP601 + TETA + 10 %FR is the hardest. The addition of FR and RP influenced the flammability of the composites increasing the thermal resistance. The ageing tests in methanol, acetone, hydrochloric acid, and potassium hydroxide were also carried out.

Funder

Polish Ministry of Science and Higher Education

Publisher

Walter de Gruyter GmbH

Subject

General Chemical Engineering,General Chemistry

Reference39 articles.

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2. E. D. Weil, M. Lewin. Mechanisms and modes of action in flame retardancy of polymers. in Fire Retardant Materials, A. R. Horrocks, D. Price (Eds.), pp. 31–68, CRC Press, Cambridge (2006).

3. C. Hobbs. Polymers 11, 224 (2019), https://doi.org/10.3390/polym11020224.

4. E. Feyz, Y. Jahani, M. Esfandeh. Macromol. Symp. 298, 130 (2010), https://doi.org/10.1002/masy.201000029.

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