水性羧化聚酰亚胺施胶剂构建“刚柔”界面增强碳纤维/聚醚醚酮(CF/PEEK)复合材料界面

IF 14.2 1区 材料科学 Q1 ENGINEERING, MULTIDISCIPLINARY Composites Part B: Engineering Pub Date : 2025-06-01 Epub Date: 2025-03-08 DOI:10.1016/j.compositesb.2025.112388
Wentao Chen , Ke Zhang , Shuai Wang , Chunhai Chen , Xiaogang Zhao , Hongwei Zhou , Daming Wang
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引用次数: 0

摘要

聚酰亚胺(PI)作为碳纤维(CF)的有效施胶剂应用于CF/聚醚醚酮(PEEK)复合材料是一种很有前途的方法。本研究设计了一系列具有不同脂肪族比例的新型羧基水性PI施胶剂,以构建刚柔梯度界面相,以促进CF和PEEK之间的界面粘附。当刚性二胺单体与柔性二胺单体的摩尔比为7:3时,复合材料的力学性能最佳。拉伸模量(25.6%)、拉伸强度(19.8%)、弯曲模量(28.5%)、弯曲强度(15.8%)、冲击强度(24.3%)和IFSS(57.8%)等各种力学和界面性能均有显著提高。此外,复合材料的抗拉强度在高温下有较大的提高(27.2%),表明界面层的作用在高温下更为明显。利用原子力显微镜(AFM)峰力定量纳米力学成像(PF-QNM)模式对界面相进行分析,结果表明CF和PEEK之间形成了模量过渡区。该区域表现出模量的梯度变化,使复合材料在受到外力时能够更有效地传递和分配施加的载荷。因此,本研究的发现证明了水性PI施胶剂在CF上的应用潜力,为高性能CF/PEEK复合材料的表面改性提供了一条有前途的途径。
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Construction of “rigid-and-flexible” interphase by waterborne carboxylated polyimide sizing agent for interfacial enhancement of carbon fiber/poly ether ether ketone (CF/PEEK) composites
The application of polyimide (PI) as an effective sizing agent for carbon fiber (CF) in CF/poly ether ether ketone (PEEK) composites represents a promising approach. Here, a series of novel carboxylated waterborne PI sizing agents with different aliphatic ratios were designed to construct a rigid-flexible gradient interphase for the purpose of promoting interfacial adhesion between CF and PEEK. It was observed that the mechanical properties of the composites were optimal when the molar ratio of rigid diamine monomer to flexible diamine monomer reached 7:3. Significant augmentation was observed in various mechanical and interfacial properties, including tensile modulus (25.6 %), tensile strength (19.8 %), flexural modulus (28.5 %), flexural strength (15.8 %), impact strength (24.3 %), and IFSS (57.8 %). Furthermore, the tensile strength of the composites exhibited a greater increase (27.2 %) at elevated temperatures, thus indicating that the role of the interfacial layer was more pronounced at high temperatures. The interphase was analyzed by peak force quantitative nanomechanical imaging (PF-QNM) mode of atomic force microscopy (AFM), the results indicated the formation of a modulus transition zone between the CF and PEEK. This zone exhibited a gradient change of modulus, enabling the composite to transfer and distribute applied loads more effectively when subjected to external forces. Consequently, the findings of this study demonstrated the potential of waterborne PI sizing agents for application on CF, offering a promising avenue for surface modification of high-performance CF/PEEK composites.
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来源期刊
Composites Part B: Engineering
Composites Part B: Engineering 工程技术-材料科学:复合
CiteScore
24.40
自引率
11.50%
发文量
784
审稿时长
21 days
期刊介绍: Composites Part B: Engineering is a journal that publishes impactful research of high quality on composite materials. This research is supported by fundamental mechanics and materials science and engineering approaches. The targeted research can cover a wide range of length scales, ranging from nano to micro and meso, and even to the full product and structure level. The journal specifically focuses on engineering applications that involve high performance composites. These applications can range from low volume and high cost to high volume and low cost composite development. The main goal of the journal is to provide a platform for the prompt publication of original and high quality research. The emphasis is on design, development, modeling, validation, and manufacturing of engineering details and concepts. The journal welcomes both basic research papers and proposals for review articles. Authors are encouraged to address challenges across various application areas. These areas include, but are not limited to, aerospace, automotive, and other surface transportation. The journal also covers energy-related applications, with a focus on renewable energy. Other application areas include infrastructure, off-shore and maritime projects, health care technology, and recreational products.
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