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等离子体改性技术在碳纤维/PEK-C复合材料中的应用研究 被引量:7
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作者 李伟 姚树勇 +3 位作者 马克明 陈平 杨浩志 杨森 《高校化学工程学报》 EI CAS CSCD 北大核心 2014年第3期690-694,共5页
利用低温氧等离子体处理技术对碳纤维进行表面改性,采用X射线光电子能谱、原子力显微镜等手段对碳纤维的表面性质进行表征,考察了等离子体功率和处理时间对碳纤维/PEK-C树脂基复合材料的界面黏结性能和力学性能的影响。结果表明,等离子... 利用低温氧等离子体处理技术对碳纤维进行表面改性,采用X射线光电子能谱、原子力显微镜等手段对碳纤维的表面性质进行表征,考察了等离子体功率和处理时间对碳纤维/PEK-C树脂基复合材料的界面黏结性能和力学性能的影响。结果表明,等离子体处理能够增加碳纤维表面的活性含氧基团含量和粗糙度,复合材料的界面黏结性能得到明显改善。在应力作用下,复合材料的破坏模式由未处理的界面脱黏破坏转变为等离子体处理后树脂基体的破坏。碳纤维在200 W的等离子体功率下处理12.5 min时,复合材料的层间剪切强度(ILSS)和弯曲强度分别达到最大值94.12MPa和1316.76 MPa。 展开更多
关键词 含酚酞侧基的聚芳醚酮(PEK-C) 碳纤维 热塑性复合材料 等离子体改性 界面黏结 PHENOLPHTHALEIN polyaryletherketone (PEK-C)
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Synergetic Improvement of Interlaminar Fracture Toughness in Carbon Fiber/Epoxy Composites Interleaved with PES/PEK‑C Hybrid Nanofiber Veils 被引量:4
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作者 Jinli Zhou Chenyu Zhang +5 位作者 Chao Cheng Ming Wang Zhihui Yang Yanfei Yang Hongying Yang Muhuo Yu 《Advanced Fiber Materials》 SCIE EI 2022年第5期1081-1093,共13页
In this study,two types of soluble thermoplastic resins were added to epoxy resin at a fixed weight ratio to prepare a three-phase cast body.The cast was then manufactured into hybrid nanofiber as interleaves for inte... In this study,two types of soluble thermoplastic resins were added to epoxy resin at a fixed weight ratio to prepare a three-phase cast body.The cast was then manufactured into hybrid nanofiber as interleaves for interlaminar toughening of carbon fiber/epoxy resin(CF/EP)composites using a co-solvent method.The results revealed that when the hybrid components reached 15 wt%,Polyethersulfone(PES)and polyaryletherketone cardo(PEK-C)exhibited the best synergistic toughening effect,and the fracture toughness increased by 99.8%and 39.8%,respectively,compared with the reference or the same proportion of the single PES toughened sample.We used PES/PEK-C hybrid nanofibers with an areal density of 19.2 g per square meter(gsm)as composite toughening layers.Apart from the lack of significant influence of PES nanofiber on CF/EP composites,the interlaminar fracture toughness of mode I and mode II layers increased by 88.3%and 46.9%,respectively,compared to the reference sample.Scanning Electron Microscopy of the fracture surface and cross-section micromorphology of the laminate displayed that the thermoplastic microspheres of different sizes contribute differently to crack resistance:PEK-C consumes more energy due to the debonding and extraction of microspheres and resin,whereas the presence of the PES phase can induce more plastic deformation and crack deflection. 展开更多
关键词 Carbon fiber/epoxy resin POLYETHERSULFONE polyaryletherketone cardo Interlaminar fracture toughness NANOFIBER
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