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具有不同碳纤维增强的层压聚醚醚酮基和聚酰亚胺基复合材料的变形行为与断裂模式

Deformation Behavior and Fracture Patterns of Laminated PEEK- and PI-Based Composites with Various Carbon-Fiber Reinforcement.

作者信息

Kosmachev Pavel V, Alexenko Vladislav O, Bochkareva Svetlana A, Panin Sergey V

机构信息

Institute of Strength Physics and Materials Science SB RAS, 2/4, Akademicheskii Pr., 634055 Tomsk, Russia.

Department of Materials Science, Engineering School of Advanced Manufacturing Technologies, National Research Tomsk Polytechnic University, 30, Lenina Pr., 634050 Tomsk, Russia.

出版信息

Polymers (Basel). 2021 Jul 10;13(14):2268. doi: 10.3390/polym13142268.

Abstract

Laminated composites based on polyetheretherketone (PEEK) and polyimide (PI) matrices were fabricated by hot compression. Reinforcing materials (unidirectional carbon-fiber (CF) tapes or carbon fabric) and their layout patterns were varied. Stress-strain diagrams after three-point flexural tests were analyzed, and both lateral faces of the fractured specimens and fractured surfaces (obtained by optical and scanning electron microscopy, respectively) were studied. It was shown that the laminated composites possessed the maximum mechanical properties (flexural elastic modulus and strength) in the case of the unidirectional CF (0°/0°) layout. These composites were also not subjected to catastrophic failure during the tests. The PEEK-based composites showed twice the flexural strength of the PI-based ones (0.4 and 0.2 GPa, respectively), while the flexural modulus was four times higher (60 and 15 GPa, correspondently). The reason was associated with different melt flowability of the used polymer matrices and varied inter- (intra)layer adhesion levels. The effect of adhesion was additionally studied by computer simulation using a developed two-dimensional FE-model. It considered initial defects between the binder and CF, as well as subsequent delamination and failure under loads. Based on the developed FE-model, the influence of defects and delamination on the strength properties of the composites was shown at different stress states, and the corresponding quantitative estimates were reported. Moreover, another model was developed to determine the three-point flexural properties of the composites reinforced with CF and carbon fabric, taking into account different fiber layouts. It was shown within this model framework that the flexural strength of the studied composites could be increased by an order of magnitude by enhancing the adhesion level (considered through the contact area between CF and the binder).

摘要

基于聚醚醚酮(PEEK)和聚酰亚胺(PI)基体的层压复合材料通过热压制成。增强材料(单向碳纤维(CF)带或碳纤维织物)及其布局模式有所不同。分析了三点弯曲试验后的应力 - 应变图,并研究了断裂试样的两个侧面和断裂表面(分别通过光学显微镜和扫描电子显微镜获得)。结果表明,在单向CF(0°/0°)布局的情况下,层压复合材料具有最大的力学性能(弯曲弹性模量和强度)。这些复合材料在测试过程中也未发生灾难性失效。基于PEEK的复合材料的弯曲强度是基于PI的复合材料的两倍(分别为0.4和0.2 GPa),而弯曲模量则高出四倍(分别为60和15 GPa)。原因与所用聚合物基体的不同熔体流动性以及层间(层内)粘合水平的变化有关。通过使用开发的二维有限元模型进行计算机模拟,进一步研究了粘合的影响。该模型考虑了粘合剂与CF之间的初始缺陷以及随后在载荷下的分层和失效。基于开发的有限元模型,展示了在不同应力状态下缺陷和分层对复合材料强度性能的影响,并报告了相应的定量估计。此外,还开发了另一个模型来确定用CF和碳纤维织物增强的复合材料的三点弯曲性能,同时考虑了不同的纤维布局。在该模型框架内表明,通过提高粘合水平(通过CF与粘合剂之间的接触面积来考虑),所研究复合材料的弯曲强度可提高一个数量级。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1ddd/8309362/b0ba038b1388/polymers-13-02268-g001.jpg

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