不同表面处理的钛板上电泳沉积CNTs的影响研究任务书

 2021-10-22 21:49:57

1. 毕业设计(论文)的内容和要求

纤维金属层板具有着金属材料和传统复合材料较高的比强度和较高的比刚度的优点,并具有较好的抗疲劳性,耐腐蚀性,较高的耐损伤性等优良性能。

而界面性能对这种复合层板的整体机械性能有着重要的影响,它能直接限制材料在使用过程中的应力传递特性,尤其是金属与树脂之间的界面。

因此,优化金属与树脂之间的界面粘合对于提高纤维金属层压板的实际应用有着重要科研意义和实际意义。

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2. 参考文献

[1] Y. Fu, J. Zhong, Y. Chen, Thermal postbuckling analysis of fiber-metal laminated plates including interfacial damage, Composites Part B: Engineering. 56 (2014) 358364. [2] M. Sadighi, R.C. Alderliesten, R. Benedictus, Impact resistance of fiber-metal laminates: A review, International Journal of Impact Engineering. 49 (2012) 7790. [3] S.E. Moussavi-Torshizi, S. Dariushi, M. Sadighi, P. Safarpour, A study on tensile properties of a novel fiber/metal laminates, Materials Science and Engineering A. 527 (2010) 49204925. [4] T. Sinmazelik, E. Avcu, M.. Bora, O. oban, A review: Fibre metal laminates, background, bonding types and applied test methods, Materials and Design. 32 (2011) 36713685. [5] A. Asundi, A.Y.N. Choi, Fiber metal laminates: An advanced material for future aircraft, Journal of Materials Processing Technology. 63 (1997) 384394. [6] J. Xue, W.X. Wang, Y. Takao, T. Matsubara, Reduction of thermal residual stress in carbon fiber aluminum laminates using a thermal expansion clamp, Composites Part A: Applied Science and Manufacturing. 42 (2011) 986992. [7] M.E. Mehr, H. Aghamohammadi, S.N.H. Abbandanak, G.R. Aghamirzadeh, R. Eslami-farsani, S.M.H. Siadati, International Journal of Adhesion and Adhesives E ff ects of applying a combination of surface treatments on the mechanical behavior of basalt fi ber metal laminates, International Journal of Adhesion and Adhesives. 92 (2019) 133141. [8] T. Mertens, H. Kollek, International Journal of Adhesion Adhesives On the stability and composition of oxide layers on pre-treated titanium, International Journal of Adhesion and Adhesives. 30 (2010) 466477. [9] Y.D. Boon, S.C. Joshi, L.S. Ong, Effects of Mechanical Surface Treatment on Bonding between Aluminum and Carbon / Epoxy Composites, Procedia Engineering. 184 (2017) 552559. [10] M. Akram, K.M.B. Jansen, L.J. Ernst, S. Bhowmik, International Journal of Adhesion Adhesives Atmospheric pressure plasma surface modification of titanium for high temperature adhesive bonding, International Journal of Adhesion and Adhesives. 31 (2011) 598604. [11] H. Aghamohammadi, S.N.H. Abbandanak, R. Eslami-farsani, S.M.H. Siadati, International Journal of Adhesion and Adhesives E ff ects of various aluminum surface treatments on the basalt fi ber metal laminates interlaminar adhesion, International Journal of Adhesion and Adhesives. 84 (2018) 184193. [12] L. Meng, D. Fan, C. Zhang, Z. Jiang, Y. Huang, Surface amination and hydrolyzation of carbon fibers treated with triethylene tetramine in supercritical water/ethanol system, Composites Part B: Engineering. 56 (2014) 575581. [13] A. Bj, F. Lapique, J. Walmsley, K. Redford, Anodising as pre-treatment for structural bonding, 23 (2007) 401412. [14] B. Soltannia, F. Taheri, Influence of nano-reinforcement on the mechanical behavior of adhesively bonded single- lap joints subjected to static , quasi-static , and impact loading, Journal of Adhesion Science and Technology. 29 (2015) 424442. [15] C. Wang, L. Chen, J. Li, S. Sun, L. Ma, G. Wu, F. Zhao, B. Jiang, Y. Huang, Enhancing the interfacial strength of carbon fiber reinforced epoxy composites by green grafting of poly(oxypropylene) diamines, Composites Part A: Applied Science and Manufacturing. 99 (2017) 5864. [16] Y. Xu, H. Li, Y. Yang, Y. Hu, J. Tao, Determination of residual stresses in Ti/CFRP laminates after preparation using multiple methods, Composite Structures. 210 (2019) 715723. [17] B. Gao, R. Zhang, C. Wang, Enhanced mechanical properties of carbon fiber composites by grafting different structural poly(amido amine) onto fiber surface, Polymer Testing. 56 (2016) 192199. [18] J.D. Schaefer, M.E. Guzman, C.S. Lim, A.J. Rodriguez, B. Minaie, Influence of functionalized carbon nanofibers on the single carbon fiber-epoxy matrix interface, Composites Part B: Engineering. 55 (2013) 4147. [19] A.R. Boccaccini, J. Cho, J.A. Roether, B.J.C. Thomas, E. Jane Minay, M.S.P. Shaffer, Electrophoretic deposition of carbon nanotubes, Carbon. 44 (2006) 31493160. [20] S. Murugesan, K. Myers, V.R. Subramanian, Amino-functionalized and acid treated multi-walled carbon nanotubes as supports for electrochemical oxidation of formic acid, Applied Catalysis B: Environmental. 103 (2011)

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