Journal of Applied Polymer Science· 2026Q2
Effect of Glass Fiber and Mineral Filler Reinforcement on the Dielectric Relaxation and Structural Dynamics of PA6 Hybrid Composites
- 0citations
- Q2SCImago
- 2026year
Short summary
Adding 20% glass fiber and a mineral filler mixture (talc/CaCO3) to PA6 composites increased the glass transition temperature (Tg) by 20-40 K, depending on thickness, due to an unplasticization effect.
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Key points
- PA6 hybrid composites with 20% glass fiber and mineral filler mixture were analyzed using dielectric spectroscopy.
- Reinforcement increased the glass transition temperature (Tg) by 20-40 K, depending on sample thickness.
- Maxwell-Wagner-Sillars (MWS), α-, β-, and γ-relaxations were identified.
- FT-IR and SEM confirmed filler effects on moisture absorption and incorporation.
AI-generated from the title and abstract; the full text is not read.
Abstract
ABSTRACT PA6 (Polyamide 6) hybrid composites (20% glass fiber (GF) and 20% mineral filler mixture of talc and CaCO 3 ) are studied using dielectric spectroscopy (DS) to determine dielectric and structural properties, and to highlight the effect of the reinforcement, filler material (glass fiber, talc, and CaCO 3 mixture), and thickness. FT‐IR and SEM characterization techniques are applied to reveal molecular and morphological structure. Dielectric measurements are performed over a temperature range of 223–373 K and a frequency interval of 1–10 6 Hz. Dielectric and structural parameters have been analyzed by Cole‐Cole and Vogel‐Fulcher‐Tamman (VFT) models, respectively, for sample thicknesses of 0.2, 0.75, and 2.5 mm. The results reveal the Maxwell‐Wagner‐Sillars (MWS), α ‐, β ‐, and γ ‐relaxations. Besides, and are defined to emphasize the effect of moisture absorption. It is detected that reinforcement increased the glass transition temperature () related to the unplasticization effect by 20 and 40 K for varying thicknesses. values obtained from the electric modulus () and the AC conductivity mechanism are consistent with each other. FT‐IR analysis and SEM images confirm the effect of fillers on moisture absorption and filler incorporation, respectively.
The authors' abstract, as published at the source. Journal of Applied Polymer Science, 2026 · DOI ↗
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Field: Polymers and Plastics
Polymers and PlasticsMaterials Science