国产T800炭纤维/环氧树脂单向复合材料动态压缩性能

Translated title of the contribution: Dynamic compressive properties of unidirectional composites made of TG800 carbon fiber and epoxy resin

Yue Xiu Pan, Jia Wei Bao, Fan Wen Wang, Ling Dong Zhang, Yang Wei Wang, Xing Wang Cheng, Yun Hua Yang*

*Corresponding author for this work

Research output: Contribution to journalArticlepeer-review

3 Citations (Scopus)

Abstract

The dynamic compressive properties of unidirectional composites made of TG800 carbon fibers and an epoxy resin were tested by the split Hopkinson pressure bar method. Effects of the fiber diameter and surface treatment by anodic oxidation on the dynamic compressive properties and fracture failure modes of the composites were investigated by SEM combined with numerical simulation. Results indicated that the TG800/epoxy resin composites had a brittle fracture behavior and strength increased as strain rate, interface strength or fiber diameter increased during dynamic compressive property testing. With strong interfacial bonding enabled by the surface treatment, when the fiber diameter was increased from 5 to 6 μm the dynamic compressive strength increased by about 18% and the primary failure mode changed from fiber breakage and debonding between fiber and resin to plastic deformation of the resin and debonding between fiber and resin. When 5.4 μm diameter fibers were used, a comparison of weak (not oxidized) versus strong interfacial bonding, showed that the dynamic compressive strength for the former was about 6% lower, and the failure mode of the latter was fiber breakage, plastic deformation of the resin, and debonding between fiber while the former was only debonding between fiber and resin.

Translated title of the contributionDynamic compressive properties of unidirectional composites made of TG800 carbon fiber and epoxy resin
Original languageChinese (Traditional)
Pages (from-to)785-792
Number of pages8
JournalXinxing Tan Cailiao/New Carbon Materials
Volume35
Issue number6
DOIs
Publication statusPublished - Dec 2020

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