Influence of the Second-Phase Resin Structure on the Interfacial Shear Strength of Carbon Fiber/Epoxy Resin

Author:

Liu Hansong1ORCID,Sun Jinsong1,Zhang Lianwang1,Liu Zhaobo2,Huang Chengyu2,Sun Mingchen2,Duan Ziqi3,Wang Wenge3,Zhong Xiangyu1,Bao Jianwen13

Affiliation:

1. AVIC Manufacturing Technology Institute Composite Technology Center, Beijing 101300, China

2. School of Materials Science and Engineering, Beihang University, Beijing 100191, China

3. AVIC Composite Corporation Ltd., Beijing 101300, China

Abstract

The toughening modification of epoxy resin has received widespread attention. The addition of the second-phase resin has a good toughening effect on epoxy resin. In order to investigate the effect of the second-phase resin on the interphase of composites, in this work the interfacial properties of carbon fiber (CF)/epoxy resin with the second-phase resin structure were investigated. Methodologies including surface structure observation, chemical characteristics, surface energy of the CF, and micro-phase structure characterization of resin were tested, followed by the micro-interfacial performance of CF/epoxy composites before and after hygrothermal treatment. The results revealed that the sizing process has the positive effect of increasing the interfacial bonding properties of CF/epoxy. From the interfacial shear strength (IFSS) test, the introduction of the second phase in the resin reduced the interfacial bonding performance between the CF and epoxy. After the hygrothermal treatment, water molecules diffused along the interfacial paths between the two resins, which in turn created defects and consequently brought about a reduction in the IFSS.

Funder

National Key Laboratory of Advanced Composites Project

Publisher

MDPI AG

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