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Towards reliable elastic characterization of glass bead reinforced thermoplastic composites using impulse excitation and conventional testing

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dc.title Towards reliable elastic characterization of glass bead reinforced thermoplastic composites using impulse excitation and conventional testing en
dc.contributor.author Rech, Julian Niklas
dc.contributor.author Dresbach, Christian
dc.contributor.author Van Dorp Ramakers, Esther Dorothea Victoria
dc.contributor.author Möginger, Bernhard
dc.contributor.author Hausnerová, Berenika
dc.relation.ispartof Scientific Reports
dc.identifier.issn 2045-2322 Scopus Sources, Sherpa/RoMEO, JCR
dc.date.issued 2026
utb.relation.volume 16
utb.relation.issue 1
dc.type article
dc.language.iso en
dc.publisher Nature Research
dc.identifier.doi 10.1038/s41598-026-36346-z
dc.relation.uri https://www.nature.com/articles/s41598-026-36346-z
dc.relation.uri https://www.nature.com/articles/s41598-026-36346-z.pdf
dc.subject composite en
dc.subject elastic constant en
dc.subject impulse excitation technique en
dc.subject tensile testing en
dc.subject dynamic mechanical analysis en
dc.subject oscillatory torsion en
dc.description.abstract Reliable determination of elastic properties is essential for the structural use of polymer composites in engineering applications. This work aims to evaluate the impulse excitation technique (IET) as a method for determining elastic constants of glass bead‑reinforced polyamide 66 (PA66) and polybutylene terephthalate (PBT), and to compare its performance to tensile testing (TT), dynamic mechanical analysis (DMA), and oscillatory torsion (OT). Commercial PA66 and PBT grades with 0–40 wt% glass beads were injection‑molded and annealed; the addition of glass beads increased Young’s moduli by 60–70% for PA66 and 40–60% for PBT compared to the neat matrices, depending on filler content. IET, supported by finite element analysis, provided dynamic flexural and longitudinal moduli, shear modulus, and Poisson’s ratio which were comparable to those obtained from TT, DMA and OT. In the linear elastic regime IET data differed within the standard deviations of TT, DMA and OT. The moduli determined by flexural excitation using IET and DMA agreed within experimental uncertainty only above an amplitude threshold of approximately 110 μm, while Young’s moduli from TT and IET showed good agreement, though TT exhibited greater variability. Consistent trends were also found for shear modulus and Poisson’s ratio. The higher longitudinal moduli (4 to 8% for PA66 and 2 to 4% for PBT) measured by IET are explained by higher frequencies (3 to 4 orders of magnitude) and cross-sectional microstructural anisotropy and crystallinity differences confirmed by microscopy and calorimetry. The results demonstrate that IET is a much faster, non‑destructive and accurate method for obtaining elastic constants of thermoplastic composites particularly suited for the design and dimensioning of load‑bearing structural components.. en
utb.faculty University Institute
utb.faculty Faculty of Technology
dc.identifier.uri http://hdl.handle.net/10563/1012810
utb.identifier.scopus 2-s2.0-105029830314
utb.identifier.wok 001691102400005
utb.identifier.pubmed 41571759
utb.source j-scopus
dc.date.accessioned 2026-04-30T12:07:57Z
dc.date.available 2026-04-30T12:07:57Z
dc.description.sponsorship Open Access funding enabled and organized by Projekt DEAL. ; Please verify relation to: Hochschule Bonn-Rhein-Sieg (3353)
dc.description.sponsorship Hochschule Bonn-Rhein-Sieg (3353)
dc.rights Attribution 4.0 International
dc.rights.uri http://creativecommons.org/licenses/by/4.0/
dc.rights.access openAccess
utb.ou Centre of Polymer Systems
utb.contributor.internalauthor Rech, Julian Niklas
utb.contributor.internalauthor Hausnerová, Berenika
utb.fulltext.sponsorship Open Access funding enabled and organized by Projekt DEAL. This work was supported by the Ministry of Education, Youth, and Sports of the Czech Republic (DKRVO) under Grant [RP/CPS/2024-28/005]
utb.wos.affiliation [Rech, Julian; Dresbach, Christian; van Dorp, Esther Ramakers; Moginger, Bernhard] Bonn Rhein Sieg Univ Appl Sci, von Liebig Str 20, D-53359 Rheinbach, Germany; [Rech, Julian; Hausnerova, Berenika] Tomas Bata Univ Zlin, Ctr Polymer Syst, Univ Inst, Nam TG Masaryka 5555, Zlin 76001, Czech Republic; [Rech, Julian; Hausnerova, Berenika] Tomas Bata Univ Zlin, Fac Technol, Vavreckova 275, Zlin 76001, Czech Republic
utb.fulltext.projects DKRVO (RP/CPS/2024-28/005)
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