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Silicone Modified Polyesters Vulcanizable at Room Temperature for Anti-corrosion Coatings on Tinplate

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【作者】 甘启茂WANG LiHUANG Long黄荣华

【Author】 GAN Qimao;WANG Li;HUANG Long;HUANG Ronghua;School of Power & Mechanical Engineering, Wuhan University;College of Civil Engineeringand Architecture, Zhejiang University;Engineering Center of New Tobacco Product,China Tobacco Hubei Industrial;

【通讯作者】 黄荣华;

【机构】 School of Power & Mechanical Engineering, Wuhan UniversityCollege of Civil Engineeringand Architecture, Zhejiang UniversityEngineering Center of New Tobacco Product,China Tobacco Hubei Industrial

【摘要】 Trimethoxysilyl Polyester (TMOS-PET) was prepared via hydrosilylation of trimethylsilane with acryl-terminated polyester.Copolymerization of TMOS-PET with trimethylmethoxysilane,tetramethoxysilane,and/or dimethyldimethoxysilane give silicone modified polyesters (Si-PET) containing=(SiO2)=,-(CH3SiO3/2)=,and/or–((CH32SiO)-units.Coatings from Si-PET were formed on tinplate surface via room temperature vulcanization with applicable curing time (the quickest tact free time and completely drying time are 2 h and 15 h,respectively).Mechanical properties,thermal stability,chemical resistance,and anti-corrosion of coatings were detected.Although the flexibility of the coatings were lowered by=(SiO2)=and-(CH3SiO3/2)=units,adhesion and thermal stability of coatings were both improved.On the contrary,(CH32SiO-units seem to improve the flexibility,while decrease the adhesive force for less crosslink points.Generally,the silicone modified polyesters act as an effective shielding for tinplate.According to electrochemical impedance spectroscopy (EIS),the electric resistance of coatings (Rc) were improved about 25 times and open circuit potential (OCP) increased about 0.10 V compared to the control.The chemical resistance and anti-corrosion of the coatings were decreased slightly after=(SiO2)=and-(CH3SiO3/2)=units were added,but they could be greatly improved by-(CH3SiO3/2)=units.Specially,after adding-(CH3SiO3/2)=units,coatings give doubled Rc,and its OCP is about 0.20 V higher than the control.

【Abstract】 Trimethoxysilyl Polyester (TMOS-PET) was prepared via hydrosilylation of trimethylsilane with acryl-terminated polyester.Copolymerization of TMOS-PET with trimethylmethoxysilane,tetramethoxysilane,and/or dimethyldimethoxysilane give silicone modified polyesters (Si-PET) containing=(SiO2)=,-(CH3SiO3/2)=,and/or–((CH32SiO)-units.Coatings from Si-PET were formed on tinplate surface via room temperature vulcanization with applicable curing time (the quickest tact free time and completely drying time are 2 h and 15 h,respectively).Mechanical properties,thermal stability,chemical resistance,and anti-corrosion of coatings were detected.Although the flexibility of the coatings were lowered by=(SiO2)=and-(CH3SiO3/2)=units,adhesion and thermal stability of coatings were both improved.On the contrary,(CH32SiO-units seem to improve the flexibility,while decrease the adhesive force for less crosslink points.Generally,the silicone modified polyesters act as an effective shielding for tinplate.According to electrochemical impedance spectroscopy (EIS),the electric resistance of coatings (Rc) were improved about 25 times and open circuit potential (OCP) increased about 0.10 V compared to the control.The chemical resistance and anti-corrosion of the coatings were decreased slightly after=(SiO2)=and-(CH3SiO3/2)=units were added,but they could be greatly improved by-(CH3SiO3/2)=units.Specially,after adding-(CH3SiO3/2)=units,coatings give doubled Rc,and its OCP is about 0.20 V higher than the control.

  • 【文献出处】 Journal of Wuhan University of Technology(Materials Science) ,武汉理工大学学报(材料科学版)(英文版) , 编辑部邮箱 ,2022年03期
  • 【分类号】TQ630.43
  • 【下载频次】15
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