The Tensile, Thermal and Flame-Retardant Properties of Polyetherimide and Polyetherketoneketone Processed via Fused Filament Fabrication
Author:
Glaskova-Kuzmina Tatjana12ORCID, Dejus Didzis1, Jātnieks Jānis1, Vīndedze Elīna1, Bute Irina2, Sevcenko Jevgenijs2, Aniskevich Andrey2ORCID, Stankevich Stanislav2ORCID, Boobani Behnam3ORCID
Affiliation:
1. Baltic3D.eu, Braslas 22D, LV-1035 Riga, Latvia 2. Institute for Mechanics of Materials, University of Latvia, Jelgavas 3, LV-1004 Riga, Latvia 3. Latvian Academy of Sport Education, Brivibas 333, LV-1006 Riga, Latvia
Abstract
Polymer materials are increasingly widely used in high-fire-risk applications, such as aviation interior components. This study aimed to compare the tensile, thermal, and flame-retardant properties of test samples made from ultra-performance materials, polyetherimide (PEI) and polyetherketoneketone (PEKK), using the fused filament fabrication process (FFF). The tensile tests were performed for these materials at different raster angles (0, 45, and 90°). The thermomechanical tests were done in the axial, perpendicular, and through-thickness directions to the extruded filaments. The impact of printing parameters on the flame retardancy of 3D-printed samples was investigated in vertical burn tests with varying specimen thicknesses and printing directions. Experimentally, it was testified that PEKK had better isotropic behaviour than PEI for mechanical performance, thermal expansion, and fire-resistant properties, which are essential in fabricating intricately shaped products.
Funder
European Regional Development Fund COST Action ERDF
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