High-performance thermoplastic polyaryletherketone/carbon fiber composites: Comparison of plasma, carbon nanotubes/graphene nano-anchoring, surface oxidation techniques for enhanced interface adhesion and properties

被引:45
作者
Kumar, Sarath P. [1 ,2 ]
Jayanarayanan, Karingamanna [1 ,2 ]
Balachandran, Meera [1 ,2 ]
机构
[1] Coimbatore Amrita Vishwa Vidyapeetham, Amrita Sch Engn, Dept Chem Engn & Mat Sci, Coimbatore 641112, India
[2] Coimbatore Amrita Vishwa Vidyapeetham, Ctr Excellence Adv Mat & Green Technol CoE AMGT, Amrita Sch Engn, Coimbatore 641112, India
关键词
Carbon fiber; MWCNT; Graphene; Wettability; MECHANICAL-PROPERTIES; TRIBOLOGICAL PROPERTIES; STRENGTH; NANOCOMPOSITES; WETTABILITY; BEHAVIOR;
D O I
10.1016/j.compositesb.2023.110560
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
This investigation highlights the development and performance comparison of carbon fiber (CF)-poly-aryletherketone (PAEK) thermoplastic laminates prepared using CF, surface-modified with plasma, multi-walled carbon nanotubes (MWCNT), graphene, acid, and rare earth elements. Analysis of surface-treated CF by Fourier transform infrared spectroscopy (FTIR), and X-ray photoelectron spectroscopy (XPS) revealed development of functional groups and changes in elemental composition on the CF surface. Significant lowering of contact angle and improvement in wettability was achieved by plasma and MWCNT/graphene treatment on CF. Field emission scanning electron microscopy (FESEM) analysis gave insight into the surface irregularities caused by various surface treatment techniques. The CF-PAEK composites were prepared by film stacking and compression moulding. The plasma-treated PAEK-CF composites exhibited the highest tensile properties, flexural strength, fracture toughness, and interlaminar shear strength. The superior properties are credited to better interfacial adhesion between CF and PAEK arising from mechanical interlocking over the roughened surface and covalent bonds by functional groups grafted on CF surface by plasma. MWCNT and graphene-anchored CF-PAEK com-posites also showed significant improvement in mechanical properties attributed to the bridging effect and interfacial interaction arising from increased surface area and functional groups. The surface-treated CF-PAEK composites exhibited a positive shift in the glass transition temperature, which is evidence of better adhesion. In dynamic loading conditions, MWCNT anchored CF-PAEK composite presented the highest storage modulus and energy absorption characteristics. Examination of the tensile fracture surface and fiber pull-out gave insight into the failure pattern and interfacial adhesion mechanism for the individual surface modification techniques.
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页数:14
相关论文
共 53 条
[1]   Influence of surface activated carbon nano fiber on thermo-mechanical properties of high performance polymeric nano composites [J].
Ajeesh, G. ;
Bhowmik, Shantanu ;
Sivakumar, Venugopal ;
Varshney, Lalit ;
Kumar, Virendra ;
Abraham, Mathew .
JOURNAL OF COMPOSITE MATERIALS, 2017, 51 (08) :1057-1072
[2]  
Ajeesh G, 2016, FEASIBILITY POLYETHE, DOI [10.1504/IJNEST.2016.078961, DOI 10.1504/IJNEST.2016.078961]
[3]   The mechanical properties of plasma-treated carbon fiber reinforced PA6 composites with CNT [J].
Chang, Qiuxiang ;
Zhao, Haojie ;
He, Runqin .
SURFACE AND INTERFACE ANALYSIS, 2017, 49 (12) :1244-1248
[4]   Impact resistance and interlaminar shear strength enhancement of carbon fiber reinforced thermoplastic composites by introducing MWCNT-anchored carbon fiber [J].
Cheon, Jinsil ;
Kim, Minkook .
COMPOSITES PART B-ENGINEERING, 2021, 217
[5]   The effects of plasma surface treatment on the mechanical properties of polycarbonate/carbon nanotube/carbon fiber composites [J].
Cho, Beom-Gon ;
Hwang, Sang-Ha ;
Park, Miseon ;
Park, Jong Kyoo ;
Park, Young-Bin ;
Chae, Han Gi .
COMPOSITES PART B-ENGINEERING, 2019, 160 :436-445
[6]   Surface modification of carbon fibers and its effect on the fiber-matrix interaction of UHMWPE based composites [J].
Chukov, D. I. ;
Stepashkin, A. A. ;
Gorshenkov, M. V. ;
Tcherdyntsev, V. V. ;
Kaloshkin, S. D. .
JOURNAL OF ALLOYS AND COMPOUNDS, 2014, 586 :S459-S463
[7]   Insights into complex rheological behaviour of carbon fibre/PEEK from a novel numerical methodology incorporating fibre friction and melt viscosity [J].
Deignan, A. ;
Figiel, L. ;
McCarthy, M. A. .
COMPOSITE STRUCTURES, 2018, 189 :614-626
[8]   Influence of graphene oxide coatings on carbon fiber by ultrasonically assisted electrophoretic deposition on its composite interfacial property [J].
Deng, Chao ;
Jiang, Jianjun ;
Liu, Fa ;
Fang, Liangchao ;
Wang, Junbiao ;
Li, Dejia ;
Wu, Jianjun .
SURFACE & COATINGS TECHNOLOGY, 2015, 272 :176-181
[9]   The effect of carbon fiber plasma treatment on the wettability and interlaminar shear strength of geopolymer composite [J].
Diblikova, Linda ;
Masek, Zdenek ;
Kral, Michal .
JOURNAL OF THE AUSTRALIAN CERAMIC SOCIETY, 2019, 55 (04) :1139-1145
[10]  
Hamerton I, 2018, USE THERMOSETS MODER, V9, DOI [10.1016/B978-0-08-101021-1.00009-5, DOI 10.1016/B978-0-08-101021-1.00009-5]