不同形态石墨烯对水性丙烯酸防腐涂料的性能影响

王新潮1, 薄国帅2, 司云鹏2, 董亚楠2, 霍少丽2, 杨雪静2

化工新型材料 ›› 2019, Vol. 47 ›› Issue (7) : 150 -153.

PDF (4690KB)
化工新型材料 ›› 2019, Vol. 47 ›› Issue (7) : 150-153.
科学研究

不同形态石墨烯对水性丙烯酸防腐涂料的性能影响

    王新潮1, 薄国帅2, 司云鹏2, 董亚楠2, 霍少丽2, 杨雪静2
作者信息 +

Influence of graphene with different morphology on the property of waterborne acrylic anticorrosion coating

  • Wang Xinchao1, Bo Guoshuai2, Si Yunpeng2, Dong Yanan2, Huo Shaoli2, Yang Xuejing2
Author information +
文章历史 +
PDF (4801K)

摘要

石墨烯作为一种新型的碳材料,由于其优异的化学稳定性、独特的二维片层结构、突出的机械性能等特性得到了水性涂料领域的关注,通过对比不同形态的石墨烯(石墨烯粉体、石墨烯浆料),以水性丙烯酸体系防腐涂料为研究体系,讨论了不同形态石墨烯在水性防腐涂料的盐雾、硬度、附着力、耐磨、柔韧性等性能上的不同表现。

Abstract

Graphene,as a new type of carbon materials,has attracted much more attention in the field of waterborne coatings due to its excellent chemical stability,unique two-dimensional lamellar structure and outstanding mechanical properties.Through compared the different morphologies of graphene (graphene powder,graphene slurry),waterborne acrylic anticorrosive coating system was researched.The performances of of graphenes with different morphology in waterborne anticorrosion coating were discussed,such as salt fog,hardness,adhesion,flexibility and so on.

关键词

石墨烯粉体 / 石墨烯浆料 / 水性防腐涂料 / 丙烯酸

Key words

graphene powder / graphene slurry / waterborne anti-corrosion coating / acrylic acid

引用本文

引用格式 ▾
不同形态石墨烯对水性丙烯酸防腐涂料的性能影响[J]. 化工新型材料, 2019, 47(7): 150-153 DOI:

登录浏览全文

4963

注册一个新账户 忘记密码

参考文献

[1] Meyer J C,Geim A K,Katsnelson M I,et al.The structure of suspended graphene sheets[J].Nature,2007,446(7131):60-63.
[2] 周丹.锂/钠离子电池负极材料的设计及性能研究[D].北京:北京科技大学,2017.
[3] 张艳,戴雷,黄友元,等.石墨烯水性复合防腐涂料的研究进展[J].表面技术,2017,46(10):56-63.
[4] Park J H,Park J M.Electrophoretic deposition of graphene oxide on mild carbon steel for anti-corrosion application[J].Surface and Coatings Technology,2014,254(10):167-174.
[5] Haslam G E,Chin X Y,Burstein G T.Passivity and electrocatalysis of nanostructured nickel encapsulated in carbon[J].Physical Chemistry Chemical Physics,2011,13(28):12968-12974.
[6] 陈永军,候发秋,卿宁.丙烯酸酯涂料改性研究进展[J].材料导报,2013,27(5):236-240.
[7] 张松.石墨烯/水性环氧富锌涂料的制备及性能研究[D].哈尔滨:哈尔滨工业大学,2017.
[8] Bai H,Li C,Shi G.Functional composite materials based on chemically converted graphene[J].Advanced Materials,2011,23(9):1089-1115.
[9] Gass M H,Bangert U,Bleloch A L,et al.Free-standing graphene at atomic resolution[J].Nature Nanotechnology,2008,3(11):676-681.
[10] Nair R R,Blake P,Grigorenko A N,et al.Fine structure constant defines visual transparency of graphene[J].Science,2008,320(5881):1308.
[11] Chang K C,Ji W F,Li C W,et al.The Effect of varying carboxylic-group content in reduced graphene oxides on the anticorrosive properties of PMMA/Reduced Graphene Oxide Composites[J].Express Polymer Letters,2014,8(12):908-919.
[12] Loh K P,Bao Q L,Ang P K,et al.The chemistry of graphene[J].Journal of Materials Chemistry,2010,20:2277-2289.
[13] 许士才.石墨烯的制备、表征及光电性质应用研究[D].济南:山东师范大学,2014.
[14] Rein A,Jia X,Ho J,et al.Large area,few-layer graphene films on arbitrary substrates by chemical vapor deposition[J].Nano Letters,2009,9(1):30-35.
[15] 蓝席建,周福根,冯伟东.石墨烯导电海洋重防腐蚀涂料的研制[J].上海涂料,2014,52(12):17-20.

基金资助

菏泽学院科研基金(XY16BS33、XY18PY02、XY18PY08和XY17KJ10)

AI Summary AI Mindmap
PDF (4690KB)

732

访问

0

被引

导航
相关文章

AI思维导图

/