TY - JOUR
T1 - 芳纶纤维与树脂基体改性对复合材料剪切性能的影响
AU - Liang, Qirui
AU - Ye, Jinrui
AU - Yan, Bingyue
AU - Liu, Kai
AU - He, Jianfei
AU - Ji, Xiaolong
AU - Hou, Xiao
N1 - Publisher Copyright:
© 2024 Sichuan University. All rights reserved.
PY - 2024/2
Y1 - 2024/2
N2 - The surface inertness of aramid fiber will affect the wetting property and interface bonding strength between aramid fiber and resin, so the application of aramid fiber composite in aviation, aerospace, power transmission and other fields is limited. In order to compare the effects of fiber surface modification and resin matrix modification on the interlayer shear properties of aramid fiber composites, the effects of different modification techniques and treatment processes on the surface etching of aramid fiber were studied by combining optical and mechanical testing methods. The results show that acetic anhydride chemical etching can affect the surface groups of aramid fiber and increase the surface roughness. After thermal oxidation etching treatment, the surface roughness increases significantly, with obvious "gully" shape. However, when the chemical etching time of acetic anhydride is more than 6 h, and the thermal oxidation etching time is more than 4 min, the internal structure of the fiber is damaged, and the interlayer shear performance of the composite is reduced. After ultrasonic impregnation treatment, the surface roughness of the fiber increases to a certain extent, the gas attached to the fiber surface would be discharged, and the modification effect tends to be stable after more than 20 min. The use of coupling agent to modify the resin matrix can increase the bonding on the fiber surface. When the addition amount exceeds 3%, the excessive cross-linking between the resin molecules leads to the decrease of the interlayer shear performance of the composite. This paper provided a theoretical basis for improving the infiltration performance and interface strength of aramid composites, and has reference value for the design and manufacture of aramid composites in aerospace and power systems.
AB - The surface inertness of aramid fiber will affect the wetting property and interface bonding strength between aramid fiber and resin, so the application of aramid fiber composite in aviation, aerospace, power transmission and other fields is limited. In order to compare the effects of fiber surface modification and resin matrix modification on the interlayer shear properties of aramid fiber composites, the effects of different modification techniques and treatment processes on the surface etching of aramid fiber were studied by combining optical and mechanical testing methods. The results show that acetic anhydride chemical etching can affect the surface groups of aramid fiber and increase the surface roughness. After thermal oxidation etching treatment, the surface roughness increases significantly, with obvious "gully" shape. However, when the chemical etching time of acetic anhydride is more than 6 h, and the thermal oxidation etching time is more than 4 min, the internal structure of the fiber is damaged, and the interlayer shear performance of the composite is reduced. After ultrasonic impregnation treatment, the surface roughness of the fiber increases to a certain extent, the gas attached to the fiber surface would be discharged, and the modification effect tends to be stable after more than 20 min. The use of coupling agent to modify the resin matrix can increase the bonding on the fiber surface. When the addition amount exceeds 3%, the excessive cross-linking between the resin molecules leads to the decrease of the interlayer shear performance of the composite. This paper provided a theoretical basis for improving the infiltration performance and interface strength of aramid composites, and has reference value for the design and manufacture of aramid composites in aerospace and power systems.
KW - interface strength
KW - microtopography
KW - performance of infiltration
KW - resin matrix modification
KW - surface modification of aramid fiber
UR - http://www.scopus.com/inward/record.url?scp=85191593754&partnerID=8YFLogxK
U2 - 10.16865/j.cnki.1000-7555.2024.0020
DO - 10.16865/j.cnki.1000-7555.2024.0020
M3 - 文章
AN - SCOPUS:85191593754
SN - 1000-7555
VL - 40
SP - 91
EP - 100
JO - Gaofenzi Cailiao Kexue Yu Gongcheng/Polymeric Materials Science and Engineering
JF - Gaofenzi Cailiao Kexue Yu Gongcheng/Polymeric Materials Science and Engineering
IS - 2
ER -