Near-infrared absorption film material with night vision compatible characteristic and preparation method thereof
A night-vision compatible, near-infrared technology, applied in radiation-absorbing coatings, chemical instruments and methods, epoxy resin coatings, etc., can solve the problems of unseen coating materials and film materials, and achieve light weight and reduce brightness loss , easy to use and quick effect
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Embodiment 1
[0033] (1) Use ethylene terephthalate (PET) film as the transparent substrate with a thickness of 0.1 mm.
[0034] (2) Coating material components of the near-infrared absorbing layer: acrylic resin (Kunshan East Asia resin, DY8236), 100 parts by mass; acrylic resin curing agent (Bayer, Desmodur-N75), 10 parts by mass; thiodiene type Nickel (molecular formula: C 28 h 20 NeS 4 ; Absorption peak λ max =855nm), 0.25 parts by mass; polymethine cyanine dyes (molecular formula: C 32 h 36 ClN 2 .I; absorption peak λ max =775nm), 0.15 parts by mass; dichloromethane, 50 parts by mass.
[0035] (3) Add the two near-infrared absorbers described in (2) into dichloromethane, and stir for 15 minutes by magnetic force to obtain a uniform solution. Then add the matrix resin and resin curing agent into the solution, and continue stirring with a magnetic stirrer for 30 minutes, and the near-infrared absorption coating material is obtained after the system is uniformly dispersed.
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Embodiment 2
[0043] (1) A PET film is selected as the transparent substrate with a thickness of 0.05mm.
[0044] (2) Coating material components of the near-infrared absorbing layer: fluorocarbon resin (Changshu Zhonghao resin, JF-4XB), 100 parts by mass; fluorocarbon resin curing agent (Japan Polyurethane Company, Coronate2030), 10 parts by mass; sulfur Substituted diene nickel (molecular formula: C 28 h 20 NeS 4 ; Absorption peak λ max =855nm), 0.1 parts by mass; anthraquinone dyes (molecular formula: C 42 h 36 o 2 N 4 ; Absorption peak λ max =755nm), 0.05 parts by mass; chloroform, 30 parts by mass.
[0045] (3) Add the two near-infrared absorbers described in (2) into chloroform, and stir for 10 minutes by magnetic force to obtain a uniform solution. Then add the matrix resin and resin curing agent into the solution, and continue stirring with a magnetic stirrer for 15 minutes. After the system is evenly dispersed, a near-infrared ray absorbing coating material is obtained.
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Embodiment 3
[0053] (1) Polycarbonate (PC) film is selected as the transparent substrate with a thickness of 0.1mm.
[0054] (2) The coating material component of the near-infrared absorbing layer: epoxy resin (Wuxi Blue Star Resin, WSR6101), 100 parts by mass; epoxy resin curing agent (Basf, Germany, Polyetheramine D 230), 20 parts by mass; free radical Type dye (molecular formula: C 62 h 92 N 6 .PF 6 ; Absorption peak λ max =950nm), 0.25 parts by mass; polymethine cyanine dyes (molecular formula: C 32 h 36 ClN 2 .I; absorption peak λ max =775nm), 0.15 parts by mass; acetone, 50 parts by mass.
[0055] (3) Add the two near-infrared absorbers described in (2) into acetone, and stir for 15 minutes by magnetic force to obtain a uniform solution. Then add the matrix resin and resin curing agent into the solution, and continue stirring with a magnetic stirrer for 30 minutes, and the near-infrared absorption coating material is obtained after the system is uniformly dispersed.
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Abstract
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