Characterizing the Hygric Behavior of Composites by Suspending Method

Author:

Tsai Cho-Liang1,Cheng Ming-Chang2,Hwang Shun-Fa3,Tsai Yi-Shiun4

Affiliation:

1. Department of Construction Engineering National Yunlin University of Science & Technology Touliu, Yunlin 640, Taiwan

2. Graduate School of Engineering Science & Technology National Yunlin University of Science & Technology Touliu, Yunlin 640, Taiwan Department of Mechanical Engineering Southern Taiwan University of Technology Tainan 710, Taiwan

3. Department of Mechanical Engineering National Yunlin University of Science & Technology Touliu, Yunlin 640, Taiwan

4. General Education Center Hsiuping Institute of Technology Dali, Taichung 412, Taiwan

Abstract

The hygric behavior of composites is theoretically and experimentally investigated. The theoretical function of moisture concentration distribution caused by moisture diffusion in a plate submerged in water was derived based on Fick’s diffusion law, which involves the geometry of the plate, the material diffusivity of the plate, and the duration of submergence. The hygric strain induced by the moisture absorption was derived as a function of the moisture concentration. Consequently, the hygric strain of the plate was expressed as a function of its geometry, material diffusivity, and the duration. Experiments on composite laminates submerged in water were performed to obtain data of hygric strains versus durations of submergence to calculate the material diffusivity, which dominates the hygric behavior of the material. The technique, the suspending method, was employed to measure the hygric expansion of the plates and calculate their hygric strains. The diffusivity of the material in the function of the hygric strain was determined under the condition of optimizing the fitting of the theoretically predicted hygric strains to the experimental results. The minimization of the work involved in calculating the diffusivity with acceptable precision was discussed. The diffusivity in the thickness direction and the saturated moisture concentration of carbon–epoxy composite laminate were obtained.

Publisher

SAGE Publications

Subject

Materials Chemistry,Mechanical Engineering,Mechanics of Materials,Ceramics and Composites

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1. 2.14 Moisture Diffusion in PMCs;Comprehensive Composite Materials II;2018

2. Moisture-Induced Degradation;Long-Term Durability of Polymeric Matrix Composites;2011-08-22

3. Theoretical Study for Moisture Diffusion in a Carbon/Epoxy Composite Laminate Accompanied by Thermal Conduction;Journal of Composite Materials;2010-03-10

4. Tracking Hygrothermal Strains of Carbon/Epoxy Composite under Varying Temperature and Humidity;Journal of Composite Materials;2008-08

5. Advancing Boundary Model for Moisture Diffusion in A Composite Laminate;Journal of Composite Materials;2008-05

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