Detail publikace
Microwave welding of polymers
MENSHIKH, M. DUSEK, F. BARTULI, E. LACIK, J. BOHACEK, J.
Anglický název
Microwave welding of polymers
Typ
Stať ve sborníku v databázi WoS či Scopus
Jazyk
en
Originální abstrakt
The growing demand for fast, efficient and environmentally friendly polymer joining techniques has intensified research on microwave welding methods. However, there remains a knowledge gap regarding the influence of susceptor composition, welded material properties, field strength and welding duration on joint strength, which limits the optimization of this technology for industrial applications. In this study, we investigate the effects of several susceptor types – polypropylene (PP) supplemented with 75% graphite admixtures, polylactic acid (PLA) with 20% of carbon, polyethylene terephthalate glycol (PET-G) with tungsten, PLA with 45% of iron and PET-G with magnetite, and such thermoplastics as PET-G, PLA and PP on the mechanical strength of welded joints. The microwave welding process is conducted using dielectric heating at the frequency of 2.45 GHz. The results demonstrate that the interaction effects between susceptor type and welded material are found to be significant, highlighting the necessity of multivariate optimization rather than single-factor tuning. This work provides practical insights into the development of reliable, energy-efficient, and scalable polymer joining processes. The presented findings contribute to advancing microwave welding techniques and can serve as a foundation for further industrial applications.
Klíčová slova anglicky
Polymers; Polymeric heat exchangers; Microwave welding; Microwave energy; Conductive polymeric composites
Vydáno
2026-03-12
Nakladatel
EDP Sciences
Místo
Les Ulis, Francie
Kniha
EPJ Web of Conferences
Časopis
EPJ Web of Conferences
Ročník
358
Číslo
2026
Strany od–do
1–5
Počet stran
5
BIBTEX
@inproceedings{BUT201714,
author="Filip {Dušek} and Maksim {Menshikh} and Erik {Bartuli} and Jaroslav {Láčík} and Jan {Boháček}",
title="Microwave welding of polymers",
booktitle="EPJ Web of Conferences",
year="2026",
journal="EPJ Web of Conferences",
volume="358",
number="2026",
pages="1--5",
publisher="EDP Sciences",
address="Les Ulis, Francie",
doi="10.1051/epjconf/202635801016",
issn="2100-014X",
url="https://www.epj-conferences.org/articles/epjconf/abs/2026/14/epjconf_efm2026_01016/epjconf_efm2026_01016.html"
}