Fatigue Failure Prediction for Fiber-Axial Compressive Cyclic Loading in CFRP Based on an Entropy Damage Criterion and Micro-Buckling Model

This study presents a framework for estimating the longitudinal compression–compression fatigue life of unidirectional carbon-fiber-reinforced polymer (UD-CFRP) by linking entropy-based matrix degradation to a fiber micro-buckling criterion. A reference effective fiber-direction shear modulus of 2000 MPa was selected using published shear responses of carbon/epoxy composites. Its degradation was prescribed phenomenologically using <!-- MathType@Translator@5@5@MathML2 (no namespace).tdl@MathML 2.0 (no namespace)@ -->

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Publication Details

Journal
Journal of Composites Science
Published
2026-10-09
DOI
https://doi.org/10.3390/jcs10100532
Primary Topic
Mechanical Behavior of Composites
Type
article
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article

Fatigue Failure Prediction for Fiber-Axial Compressive Cyclic Loading in CFRP Based on an Entropy Damage Criterion and Micro-Buckling Model

Yutong Li, Jun Koyanagi, Takumi Sekino, Akira Miyoshi
Journal of Composites Science
Mechanical Behavior of Composites
article

Fatigue Failure Prediction for Fiber-Axial Compressive Cyclic Loading in CFRP Based on an Entropy Damage Criterion and Micro-Buckling Model

Yutong Li, Jun Koyanagi, Takumi Sekino, Akira Miyoshi
article en

Abstract

This study presents a framework for estimating the longitudinal compression–compression fatigue life of unidirectional carbon-fiber-reinforced polymer (UD-CFRP) by linking entropy-based matrix degradation to a fiber micro-buckling criterion. A reference effective fiber-direction shear modulus of 2000 MPa was selected using published shear responses of carbon/epoxy composites. Its degradation was prescribed phenomenologically using <!-- MathType@Translator@5@5@MathML2 (no namespace).tdl@MathML 2.0 (no namespace)@ -->

Journal of Composites ScienceVol. 10(10)
Tokyo University of Science (JP)
Openalex Percentile: Top 22%
Mechanical Behavior of Composites
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