Aryloxyphosphazene-Modified and Graphite-Filled Epoxy Compositions with Reduced Flammability and Electrically Conductive Properties

Author:

Konstantinova Anastasia1,Yudaev Pavel1ORCID,Orlov Alexey1,Loban Oleg1,Lukashov Nikolay1,Chistyakov Evgeniy1ORCID

Affiliation:

1. Department of Chemical Technology of Plastics, Mendeleev University of Chemical Technology of Russia, Miusskaya Sq. 9, 125047 Moscow, Russia

Abstract

A method has been developed for producing an epoxy composition based on a low-viscosity epoxy-resorcinol resin, a phosphazene-containing curing agent, isophoronediamine, and thermally expanded graphite as a filler. The degree of cure and the absence of side reactions during the curing process were confirmed using IR spectroscopy. The influence of the content of phosphazene-containing curing agent and filler on the physico-mechanical properties of the composition, its fire resistance, and antistatic properties were studied. Using the UL-94 HB horizontal burning test, it was found that the addition of 10 and 20 wt. % phosphazene-containing curing agent (relative to isophoronediamine) reduces the burning speed by 10 times compared to a sample without phosphazene. The addition of a filler to a composition containing phosphazene reduces the burning speed by 25 times compared to a composition without phosphazene and imparts antistatic properties to the epoxy composition, as evidenced by the specific volume electrical resistance of the order of 101 Ohm·m. Phosphazene-containing curing agent had no statistically significant effect on specific volume electrical resistivity (p > 0.05). Tests of physico-mechanical and adhesive properties (tensile strength, compressive strength, water absorption, water solubility, abrasion resistance, and adhesive strength) of filled epoxy compositions with 10 and 20 wt. % phosphazene-containing curing agent demonstrated that these properties met the requirements for floor coverings in construction and parts of electrical devices.

Funder

Russian Science Foundation

DST

Publisher

MDPI AG

Subject

Engineering (miscellaneous),Ceramics and Composites

Reference49 articles.

1. Integral Assessment of Antistatic Properties of Materials Used in Individual Safety Gear;Belitskaya;Mater. Sci. Forum,2023

2. Polymer composite for antistatic application in aerospace;Yadav;Def. Technol.,2020

3. Research progress of antistatic-reinforced polymer materials: A review;Liu;Polym. Adv. Technol.,2023

4. The inventions in nanotechnologies as practical solutions. Part II;Ivanov;Nanotechnol. Constr.,2022

5. The inventions in nanotechnologies as practical solutions. Part IV;Ivanov;Nanotechnol. Constr.,2019

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