Detection of Voids in Carbon/Epoxy Laminates and Their Influence on Mechanical Properties

Author:

Di Landro Luca1,Montalto Aurelio2,Bettini Paolo1,Guerra Stefania3,Montagnoli Fabrizio4,Rigamonti Marco3

Affiliation:

1. Dipartimento di Scienze e Tecnologie Aerospaziali, Politecnico di Milano, 20156 Milano, Italy

2. Dipartimento di Meccanica, Politecnico di Milano, 20156 Milano, Italy

3. Technologies Lab Non-metallic Materials Science, AgustaWestland, 21017 Cascina Costa VA, Italy

4. NDI Unit, AgustaWestland, 21017 Cascina Costa VA, Italy

Abstract

Defects, such as voids and delaminations, may significantly reduce the mechanical performance of components made of composite laminates. Distributed voids and porosity are generated during composite processing and are influenced by prepreg characteristics as well as by curing cycle parameters. On the basis of rheological and thermal analyses, as well as observations of laminates produced by different processing conditions, curing pressure appears the most influent factor affecting the void content. This work compares different methods for void analysis and quantitative evaluation (ultrasonic scan, micro-computed tomography, acid digestion, SEM image analysis) evidencing their applicative limitations. Carbon/epoxy laminates were produced in autoclave or oven by vacuum bag technique, using different processing conditions, so that void contents ranging from 0% to 7% volume were obtained. Effects of porosity over laminates mechanical performances are analysed. The results of tensile and compressive tests are discussed, considering the effect that different curing cycles have over void content as well as over fibre/resin fraction. Interlaminar strength, as measured by short beam shear tests, which is a matrix-dominated property, exhibits a reduction of failure strength up to 25% in laminates with the highest void content, compared to laminates with no porosity.

Publisher

SAGE Publications

Subject

Materials Chemistry,Polymers and Plastics,Ceramics and Composites

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