Effects of Electrospun GNP @ PEI Nanofibrous Mats on the Interlaminar Fracture Toughness and Viscoelasticity of CFRP Composites Laminates

ABSTRACT Preventing interlaminar crack propagation is essential to improve the properties of CFRP laminates. In this study, electrospun GNP@PEI nanofibrous mats were embedded into CFRP laminates. Flexible PEI nanofibers could form ductile interlayers to alleviate interfacial stress, and uniformly dispersed GNPs provide multi‐scale synergistic toughening. The influence of GNP content was systematically investigated via double cantilever beam (DCB) tests, end‐notched flexure (ENF) tests, and dynamic mechanical analysis (DMA). The research results indicated that the toughening effect exhibits a significant concentration‐dependent behavior. Specimens with 1.5 wt% GNPs exhibited optimal performance, whose Mode I ( G IC ) and Mode II ( G IIC ) fracture toughness values improved by 111% and 100%, respectively. However, the content of 2.0 wt% GNP caused local agglomeration, inducing stress concentration and weakening the toughening effect. Furthermore, DMA results showed that appropriate GNP introduction enhanced the interfacial restriction, successfully restoring the storage modulus and thermal stability. Finally, fracture morphology characterization confirmed the multi‐scale synergistic tuning mechanisms.

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Publication Details

Journal
Polymer Composites
Published
2026-09-18
DOI
https://doi.org/10.1002/pc.71633
Primary Topic
Mechanical Behavior of Composites
Type
article
Field-Weighted Citation Impact
0.00

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article

Effects of Electrospun GNP @ PEI Nanofibrous Mats on the Interlaminar Fracture Toughness and Viscoelasticity of CFRP Composites Laminates

Xuejuan Niu, Weiping Huo
Polymer Composites
Mechanical Behavior of Composites
article

Effects of Electrospun GNP @ PEI Nanofibrous Mats on the Interlaminar Fracture Toughness and Viscoelasticity of CFRP Composites Laminates

Xuejuan Niu, Weiping Huo
article en

Abstract

ABSTRACT Preventing interlaminar crack propagation is essential to improve the properties of CFRP laminates. In this study, electrospun GNP@PEI nanofibrous mats were embedded into CFRP laminates. Flexible PEI nanofibers could form ductile interlayers to alleviate interfacial stress, and uniformly dispersed GNPs provide multi‐scale synergistic toughening. The influence of GNP content was systematically investigated via double cantilever beam (DCB) tests, end‐notched flexure (ENF) tests, and dynamic mechanical analysis (DMA). The research results indicated that the toughening effect exhibits a significant concentration‐dependent behavior. Specimens with 1.5 wt% GNPs exhibited optimal performance, whose Mode I ( G IC ) and Mode II ( G IIC ) fracture toughness values improved by 111% and 100%, respectively. However, the content of 2.0 wt% GNP caused local agglomeration, inducing stress concentration and weakening the toughening effect. Furthermore, DMA results showed that appropriate GNP introduction enhanced the interfacial restriction, successfully restoring the storage modulus and thermal stability. Finally, fracture morphology characterization confirmed the multi‐scale synergistic tuning mechanisms.

Polymer Composites
Tiangong University (CN)
Natural Science Foundation of Tianjin City
Openalex Percentile: Top 19%
Mechanical Behavior of Composites
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