• 专利标题:   Method for optimizing corrosion inhibition efficiency of corrosion inhibitor in carrier, involves adding single carriers of composite carrier or load different corrosion inhibitor into corrosive solution or coating.
  • 专利号:   CN113777148-A, CN113777148-B
  • 发明人:   ZHANG D, YANG H, REN C, WANG J, WANG Y, MA L
  • 专利权人:   UNIV BEIJING SCI TECHNOLOGY
  • 国际专利分类:   C23F011/08, G01N027/416
  • 专利详细信息:   CN113777148-A 10 Dec 2021 G01N-027/416 202217 Chinese
  • 申请详细信息:   CN113777148-A CN10919990 11 Aug 2021
  • 优先权号:   CN10919990

▎ 摘  要

NOVELTY - The method involves adding two corrosion inhibitors to different corrosive solutions according to several different mass ratios, analyzing the metal samples immersed in the corrosive solutions, and determining one of the ratios as the best compounding ratio of the two corrosion inhibitors. Two corrosion inhibitors are loaded into the same micro-nano carrier through the control of the preparation process, so that the mass ratio of the corrosion inhibitors in the composite carrier is equal to the optimal compounding ratio. Each corrosion inhibitor is added into different micro-nano carriers, so that the mass ratio of the corrosion inhibitors in the two carriers is equal to the optimal compounding ratio. The composite carrier or two single carriers loaded with different corrosion inhibitors are added to the corrosive solution or coating, so that the whole system produces the best corrosion inhibition effect. USE - Method for optimizing corrosion inhibition efficiency of corrosion inhibitor in carrier of compound corrosion inhibitor system used in fields of construction, aerospace, and transportation. ADVANTAGE - The method enables to optimize corrosion inhibition efficiency of corrosion inhibitor in carrier, which is good for improving the corrosion performance of the carrier, the corrosion inhibitor carrier is prepared, the design field of the self-repairing anti-corrosion coating has wide application prospect. DESCRIPTION OF DRAWING(S) - The drawing shows a topography diagram of corrosion products produced on the surface of a Q235 carbon steel sample of the method for optimizing the corrosion inhibition efficiency of a corrosion inhibitor in a carrier.