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Articles

Grafting acrylate functionalities at the surface of carbon fibers to improve adhesion strength in carbon fiber–acrylate composites cured by electron beam

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Pages 2352-2366 | Received 29 Nov 2012, Accepted 12 Feb 2013, Published online: 13 Mar 2013

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Y.W. Liu, C.H. Zhang, Y.L. Chen & L.L. Tong. (2015) Effect of γ-ray irradiation grafting on the surface property and the bulk structure of M40J fiber. Journal of Adhesion Science and Technology 29:5, pages 347-359.
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Na Sun, Bo Zhu, Xun Cai, Hengke Du, Xiaomin Yuan, Ye Zhang, Jiaqi Zhou, Shuhan Yan, Mingzhe Zhou & Kun Qiao. (2024) 3-isocyanatopropyltriethoxysilane block-graft engineering tailoring carbon fiber surface to manipulate interface properties of carbon fiber/polyamide 6 composites. Colloids and Surfaces A: Physicochemical and Engineering Aspects 682, pages 132920.
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Zhang Ailing, Zhang Youheng, Wang Song, Li Sanxi & Guo Tingting. (2016) Electrochemical copolymerization of acrylic acid and acrylamide on the carbon fiber surface. High Performance Polymers 29:4, pages 386-395.
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Frederic Vautard, Hippolyte Grappe & Soydan Ozcan. (2014) Engineered Interface Chemistry to Improve the Strength of Carbon Fiber Composites Cured by Electron Beam. Industrial & Engineering Chemistry Research 53:32, pages 12729-12736.
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Frédéric Vautard, Philippe Fioux, Loı̈c Vidal, Frédéric Siffer, Vincent Roucoules, Jacques Schultz, Michel Nardin & Brigitte Defoort. (2014) Use of Plasma Polymerization to Improve Adhesion Strength in Carbon Fiber Composites Cured by Electron Beam. ACS Applied Materials & Interfaces 6:3, pages 1662-1674.
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F. Vautard, P. Fioux, J. Schultz, M. Nardin & B. Defoort. (2013) Using the thiol-ene reaction to improve adhesion strength in carbon fiber-acrylate composites cured by ultra violet light. Applied Surface Science 286, pages 12-21.
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