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·188·                             精细化工   FINE CHEMICALS                                  第 37 卷

            PM-2-SP 漆膜相比纯苯丙漆膜腐蚀电位上升率为                              factors  affecting  performance  of  acrylic  latex  based  on  phosphate
            47.16% ,可达到 –0.391  V ,腐 蚀电 流下 降率 为                    emulsifier[J].  Paint  &  Coatings  Industry  (涂料工业),  2017,  47(5):
                                  –7
                                         2
            94.76%,可达到 1.95×10  A/cm ,耐盐雾时间达到                      38-43.
                                                               [13]  Yao Huang (姚煌), Yu Guoqiang (余国强), Xu Yixiang (许奕祥),
            144 h,所制备苯丙防锈涂料的性能优异。
                                                                   et al. Preparation and property of waterborne anticorrosive primer
                (3)存在的问题为对磷酸酯微观防锈研究不足,
                                                                   for commercial air conditioner[J]. Paint & Coatings Industry(涂料工
            下一步将继续对分子结构进行优化,提高涂料的防                                 业), 2017, 47(1): 41-48.
            锈性能。                                               [14]  Shang  Wu  (商武).  Synthesis  and  application  research  of  organic
                                                                   silicopn  modified  waterborne  acrylic  anti-corrosion  emulsion[D].
            参考文献:                                                  Guangzhou: South China University of Technology (华南理工大学),
            [1]   Zhong  Zeqin  (钟泽钦), Yu  Qian (余倩),  Yao  Huang  (姚煌),  et al.   2014.
                 Study  on  modifition  of  environmentally  friendly  anti-corrosion   [15]  Ruan Hongmei (阮红梅), Zhang Liangjun (张良均), Chen Gang (陈
                 styrene-acrylic  emulsion[J].  New  Chemical  Materials  (化工新型材  刚 ),  et al.  Study  on  synthesis  of  self-phosphorizing  styrene-
                 料), 2013, 41(9): 151-153.                         acrylonitrile anti-rust emulsion and its properties[J]. Modern Paint &
            [2]   Deng Xiangxian (邓象贤), Zhang Zhidong (张志东), Huang Jinsong   Finishing (现代涂料与涂装), 2018, 21(10): 10-13.
                 (黄劲松),  et al.  Development  of  lubricating  oil  thixotropic  antirust   [16]  Bao Yan (鲍艳), Chen Ying (陈颖). Effect of functional monomers
                 oil[J].  Petroleum  Products Application Research  (石油商技),  2017,   on  the  corrosion  resistance  of  polyacrylate  latex  film[J].  Polymer
                 39(2): 47-51.                                     Materials Science and Engineering (高分子材料科学与工程), 2018,
            [3]   Yu Qian (余倩), Yao Huang (姚煌), Yu Lin (余林), et al. A study on   34(6): 75-80.
                 the  synthesis  of  styrene-acrylic  emulsion  with  hydroxyl  phosphate   [17]  Wang Xiaorong (王小荣), Ma Guoyan (马国艳), Hui Ruimin (惠瑞
                 and  its  anti-corrosion  properties[J].  Fine  Chemicals  (精细化工),   敏),  et al.  Preparation  and  adhesive  properties  of  polyurethane/
                 2011, 28(8): 823-828.                             polyacrylate  emulsions  modified  with  functional  monomer[J].  Fine
            [4]   Mao Zhenghe (毛正和), Zhong Tao (钟涛), Zhu Aiping (朱爱萍), et al.   Chemicals (精细化工), 2017, 34(7): 761-766.
                 Preparation  of  organic  phosphate  modified  styrene-acrylate  grafted   [18]  Xu  Y,  Yu  Q,  Lin  T,  et al.  Synthesis  of  styrene-acrylic  emulsion
                 epoxy  resins  latex  and  its  anti-corrosion  property[J].  Paint  &   modified  with  hydroxyl  phosphate  and  its  corrosion  properties[J].
                 Coatings Industry (涂料工业), 2012, 42(12): 24-28.    Advanced Materials Research, 2011, 233/234/235: 1157-1161.
            [5]   Xu X, Yu Q, Xu Z, et al. Synthesis of phosphate modified low   [19]  Peng Lixin (彭立新). Study on synthesis of styrene-acrylate emulsion
                 temperature  curing  styrene-acrylic  emulsion  and  its  corrosion   with core-shell struture and reparation of waterborne antirust coating[J].
                 protection properties[J]. Paint & Coatings Industry, 2010, 40(5): 4-7.   New Building Materials (新型建筑材料), 2008, 35(9): 43-45.
            [6]   Xu J, Liu G, Liu S, et al. Synthesis of epoxy modified styrene-acrylic   [20]  Yang Jingxia (杨敬霞), Shi Fangyuan (史芳沅), Su Kai (苏凯), et al.
                 emulsion  containing  phosphorus  for  antirust  emulsion[J].  Paint  &   The  synthesis  of  epoxy  phosphate  ester  resin  modified  acrylic
                 Coatings Industry, 2011, 41(3): 41-42.            emulsion[J]. Modern Paint & Finishing (现代涂料与涂装),  2018,
            [7]   He Lifan (何立凡), Li  Yu (李宇), Li  Xiaoyu (李效玉),  et al.   37(4): 7-11.
                 Preparation  and  improvement  of  waterborne  styrene-acrylate   [21]  Ge Jinlong (葛金龙), Qin Yingyue (秦英月), Wang Chuanhu (王传
                 anticorrosive varnish[J]. Paint & Coatings Industry (涂料工业), 2018,   虎),  et al.  Synthesis  and  properties  of  anti-rust  styrene-acrylic
                 48(6): 6-11.                                      emulsion anti-rusting agent[J]. New Chemical Materials (化工新型
            [8]   Zhong Z, Yu Q, Yao H, et al. Study of the styrene–acrylic emulsion   材料), 2011, 39(12): 90-91.
                 modified  by  hydroxyl-phosphate  ester  and  its  stoving  varnish[J].   [22]  Zhu Ke (朱科). Study on preparation and anticorrosin properties of
                 Progress in Organic Coatings, 2013, 76(5): 858-862.   acrylate-epoxy  resin  core-shell  emulsion  and  graphene  composites
            [9]   Chen L. Application of green commercial surfactant in preparing purely   coatings[D].  Xi’an:  Shanxi  University  of  Science  and  Technology
                 acrylic latex via semi-continuous seeded emulsion polymerization[J].   (陕西科技大学), 2013.
                 Journal of Surfactants and Detergents, 2013, 16: 197-202.   [23]  Qiu Zhenzhen (邱珍珍), Xia Zhengbin (夏正斌), Fan Fangqiang (范
            [10]  Guo Kang (郭康). Preparation of modified styrene-acrylic emulsion   方强), et al. Research progress in water-borne phosphorus-containing
                 and  its  application  in  waterproof  coating[D].  WuHan:  Wuhan   polymer in coatings[J].Chemical Industry and Engineering Progress
                 Institute of Technology (武汉工程大学), 2015.           (化工进展), 2013, 32(6): 1331-1336.
            [11]  Liu Xiaoqing (刘晓庆), Wang Chen (王琛), Bian Linfang (边林防),   [24]  Shan  Dandan  (山丹丹),  Huang  Xing  (黄兴), Liu Le  (刘乐),  et al.
                 et al.  Research  and  development  of  waterborne  acrylic  antirust   The effect of phosphate functionalmonomer on the performances of
                 coatings[J]. China Coatings (中国涂料), 2018, 33(9): 48-51.     styrene-acrylate  emulsion  and  its  waterborne  antirust  coatings[J].
            [12]  Wang Jun (王军), Li Weili (李为立), Xu Zexiao (徐泽孝). Study on   Paint & Coatings Industry (涂料工业), 2007, 37(9): 14-17.
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