Surface modification of high performance PBO fibers using radio frequency argon plasma

被引:36
|
作者
Liu, Dong [1 ]
Chen, Ping [1 ,2 ]
Chen, Mingxin [1 ]
Liu, Zhe [1 ]
机构
[1] Dalian Univ Technol, Sch Chem Engn, State Key Lab Fine Chem, Dalian 116024, Peoples R China
[2] Shenyang Aerosp Univ, Liaoning Key Lab Adv Polymer Matrix Composites Mf, Shenyang 110136, Peoples R China
来源
SURFACE & COATINGS TECHNOLOGY | 2012年 / 206卷 / 16期
基金
中国国家自然科学基金;
关键词
PBO fiber; Argon plasma; Surface properties; Adhesion; INTERFACIAL ADHESION; FIBER/BISMALEIMIDE COMPOSITE; MECHANICAL-PROPERTIES; POLYMER COMPOSITES; FILMS; TEMPERATURE;
D O I
10.1016/j.surfcoat.2012.02.033
中图分类号
TB3 [工程材料学];
学科分类号
0805 ; 080502 ;
摘要
The radio frequency argon plasma was applied to improve surface properties of the PBO fiber. The fiber tensile strength was measured, and the surface chemical components, topography and wettability were analyzed by X-ray photoelectron spectroscopy (XPS), atomic force microscopy and dynamic contact angle analysis (DCAA), respectively. Results suggested that over 90% of the fiber tensile strength was reserved after treatment at lower power levels. The surface oxygen atoms increased with a very small extent and the O/C ratio increased from 0.25 to 0.29. The plasma sputtering caused scission of chemical bonds and damage to the surface crystallizing layers, and thus created many active functional groups and roughened surface. However, at high power conditions the more effective ablation and sputtering effects dramatically reduced the tensile strength, surface oxygen contents and roughness. The fiber surface wettability was markedly increased as a result of the functionalization and roughening effects, but the calculated polar and dispersive free energy did not agree well with the measured surface chemical components due to the different effective depths of the surface layers analyzed by DCAA and XPS. The increased roughness was considered to be another reason. The treated fiber exhibited better adhesion with bismaleimide resin, but the maximum interlaminar shear strength of the PBO/bismaleimide composite could not be reproduced by increasing the treatment time at lower power level conditions. (C) 2012 Elsevier B.V. All rights reserved.
引用
收藏
页码:3534 / 3541
页数:8
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