STUDY OF INFLUENCE OF FILLER PARTICLE SIZE ON THE PROPERTIES OF COMPOSITE MATERIAL BASED ON EPOXY-DIANE RESIN
YVGYAA
DOI:
https://doi.org/10.25712/ASTU.2072-8921.2024.04.030Abstract
The paper investigated the influence of filler particle size on the properties of the composite material. The properties of highly filled composites with different sizes of filler particles are shown. The morphology of fillers of different sizes was studied using scanning electron microscopy (SEM). In addition, such physical, mechanical and technological characteristics of materials as hardness, density, shrinkage, viability and water absorption were studied. A production technology for the preparation of composites based on epoxy-diane resin filled with barium titanate is presented.
It has been established that when preparing single-modal compositions based on epoxy-diane resin for the production of dielectric materials, the use of filler powder of a larger fraction is preferable to the use of small particles.
References
Sebastian M. T. Dielectric Materials for Wireless Communication. Elsevier, 2008. 688 p.
Sebastian M. T., Ubic R., Jantunen H. Microwave Materials and Applications. Wiley, 2017. Vol. 1-2. 982 p.
Михайлин Ю. А. Конструкционные полимерные композиционные материалы. Научные основы и технологии / Ю. А. Михайлин. – Санкт-Петербург : Научные основы и технологии, 2010. 820 с.
Рез И. С., Поплавко Ю. М. Диэлектрики. Основные свойства и применения в электронике. Москва : Радио и связь, 1989. 288 с. – ISBN 5-256-00235-Х.
Synthesis and microwave characterisation of (Zr0.8Sn0.2)TiO4 - epoxy composite and its application in wideband stacked rectangular dielectric resonator antenna / R. K. Chaudhary [et. al.]. // IET Microwaves, Antennas Propagation. 2012. Vol. 6, no. 7. Р. 740–746. – DOI: 10.1049/iet-map.2011.0467.
Structure and optical properties of titania-PDMS hybrid nanocomposites prepared by in situ non-aqueous synthesis / A. R. M. Dalod [et al.]. // Nanomaterials. 2017. Vol. 7, no 12. P. 460–465.
Polymer ceramic composites for microwave substrate and antenna applications / S. George [et al.]. // Indian Antenna Week: A Workshop on Advanced Antenna Technology. 2010. Р. 1–4.
Spherical and flake-like BN filled epoxy composites: morphological effect on the thermal conductivity, thermo-mechanical and dielectric properties / L. Huang [et al.] // Journal of Materials Science: Materials Electronics. 2015. Vol. 26, no. 6. Р. 3564–3572.
Comparison of alumina and magnesia filled PTFE composites for microwave substrate applications / K. P. Murali [et al.] // Materials Chemistry and Physics. 2009. Vol. 113, no.1. Р. 290–295.
Производство изделий из полимерных материалов : учеб. пособие / В. К. Крыжановский [и др.] Санкт-Петербург : Профессия, 2008. 464 с. ISBN 978-5-93913-064-6.
Tchmyreva V. V., Ponomarenko A. T., Shevchenko V. G. Electrophysical Properties of Polymer Based Composites with Barium Titanate (BaTiO3) // Ferroelectrics. 2004. Vol. 307, no. 1. Р. 233–242. DOI: 10.1080/00150190490493276.
Вершинин В. И., Перцев Н. В. Планирование и математическая обработка результатов химического эксперимента. Омск: Изд-во ОмГУ, 2005. 216 с.
Свойства композиционных материалов, состоящих из эпоксидно-диановой смолы и титаната бария / Е. Н. Еремин [и др.]. // Ползуновский вестник. 2023. № 1. С. 223–229.
Downloads
Published
How to Cite
Issue
Section
License
Copyright (c) 2024 Evgeniy N. Eremin, Ksenia G. Kukushina
This work is licensed under a Creative Commons Attribution 4.0 International License.