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[1]杨 明,陈国美,倪自丰*,等.40Cr基体表面GO/BTESPT硅烷复合膜的制备和性能表征[J].电镀与精饰,2020,(9):16-23.
 YANG Ming,CHEN Guomei,NI Zifeng*,et al.Preparation and Characterization of GO/BTESPT Silane Composite Film on 40Cr Substrate[J].Plating & Finishing,2020,(9):16-23.
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40Cr基体表面GO/BTESPT硅烷复合膜的制备和性能表征

参考文献/References:

[1] 巩校良, 金玉楠, 李昊, 等. 氧化参数对2196铝锂合金阳极氧化膜厚度和耐蚀性的影响[J]. 沈阳航空航天大学学报, 2018, 35(4): 67-76.
Gong X L, Jin Y N, Li H, et al. Effects of oxidation parameters on the thickness and corrosion resistance of anodizing film on 2196 aluminum lithium alloy[J]. Journal of Shenyang Institute of Aeronautical Engineering, 2018, 35(4): 67-76 (in Chinese).
[2] 郭晓斐, 王玥, 孙华, 等. 镀锌层三价铬钝化膜的制备工艺及性能研究[J]. 材料保护, 2012, 45(2): 35-37.
Guo X F, Wang Y, Sun H, et al. Study on preparation technology and properties of trivalent chromium passivation film for zinc coating[J]. Journal of Materials Protection, 2012, 45(2): 35-37 (in Chinese).
[3] 马建权, 田冰, 程兴德. 镀锌钢板有机无铬钝化技术研究的进展[J]. 轧钢, 2007, 24(1): 36-38.
Ma J Q, Tian B, Chen X D. Development of chromate free organic passivation for galvanizing sheet steel[J]. Steel Rolling, 2007, 24(1): 36-38 (in Chinese).
[4] 康佳, 刘胜林, 耿刚强, 等. 镀锌板无铬钝化技术研究进展[J]. 应用化工, 2017(5): 963-966.
Kang J, Liu S L, Geng G Q, et al. Research progress of chromate free passivation technology for zinc coating[J]. Applied Chemical Industry, 2017(5): 963-966 (in Chinese).
[5] 姚知深, 牛宗伟, 刘斌. 超声振动对65钢电解磷化膜表面形貌与耐蚀性的影响[J]. 电镀与精饰, 2019(9): 24-28.
Yao Z S, Niu Z W, Liu B. Effect of ultrasonic vibration on surface morphology and corrosion resistance of 65 steel electrolytic phosphating film[J]. Plating & Finishing, 2019(9): 24-28 (in Chinese).
[6] 胡文娇, 周勇, 李依旋, 等. Ni2+对铝合金磷化膜结构和耐蚀性的影响[J]. 电镀与精饰, 2012, 34(1): 1-4.
Hu W J, Zhou Y , Li Y X, et al. Effect of Ni2+ on structure and corrosion resistance of phosphate conversion coating on aluminum alloy[J]. Plating & Finishing, 2012, 34(1): 1-4 (in Chinese).
[7] 谢明, 李丽波, 李悠, 等. 常温锌锰系磷化工艺及磷化膜性能研究[J]. 电镀与环保, 2018, 8(6): 68-70.
Xie M, Li L B, Li Y, et al. Room temperature zinc-manganess phosphating technology and properties of phosphating film[J]. Electroplating & Pollution Control, 2018, 8(6): 68-70 (in Chinese).
[8] 李天一, 朱晓斐. 低碳钢表面复合硅烷膜的制备与防腐蚀性能[J]. 腐蚀与防护, 2016, 37(9): 711-714.
Li T Y, Zhu X F. Preparation and anti-corrosion behaviour of hybrid silane coating on surface of mild steel[J]. Corrosion and Protection, 2016, 37(9): 711-714 (in Chinese).
[9] Brusciotti F, Batan A, Graeve I D, et al. Characterization of thin water-based silane pre-treatments on aluminium with the incorporation of nano-dispersed CeO2 particles[J]. Surface & Coatings Technology, 2010, 205(2): 603-613.
[10] 冀晓丽, 张欣, 刘晓慧, 等. 金属表面有机硅复合膜的耐腐蚀性能[J]. 大连工业大学学报, 2014, 33(3): 193-196.
Ji X L, Zhang X, Liu X H, et al. Corrosion resistance of silane composite membrane on steel surface[J]. Journal of Dalian Institute of Light Industry, 2014, 33(3): 193-196 (in Chinese).
[11] 楚景慧, 佟立波, 江忠浩. 氧化石墨烯/硅烷自组装涂层对镁合金耐腐蚀和耐磨损性能的影响[J]. 表面技术, 2019(3): 62-68.
Chu J H, Tong L B, Jang Z H. Effect of graphene oxide/silane self-assemble coating on corrosion and wear resistance of Mg alloy[J]. Surface Technology, 2019(3): 62-68 (in Chinese).
[12] Pourhashem S, Rashidi A, Vaezi M R, et al. Excellent corrosion protection performance of epoxy composite coatings filled with amino-silane functionalized graphene oxide[J]. Surface and Coatings Technology, 2017, 317:1-9.
[13] Parhizkar N, Shahrabi T, Ramezanzadeh B. A new approach for enhancement of the corrosion protection properties and interfacial adhesion bonds between the epoxy coating and steel substrate through surface treatment by covalently modified amino functionalized graphene oxide film[J]. Corrosion science, 2017, 123: 55-75.
[14] 刘莉莉, 董锐. 氧化石墨烯改性丙烯酸树脂涂层的制备及性能研究[J]. 化工新型材料, 2016(8):183-185.
Liu L L, Dong R. Preparation and property of acrylic resin coating modified by grapheme oxide[J]. New Chemical Materials, 2016(8):183-185 (in Chinese).

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更新日期/Last Update: 2020-09-10