A preparation method of flaky carbonyl iron powder coated with crosslinking resin
A technology of carbonyl iron powder and cross-linked resin, which is applied in the field of preparation of flaky carbonyl iron powder, can solve the problems of limited application, poor corrosion resistance coating modification, etc., and achieve simple coating process and easy access to raw materials and equipment , the effect of excellent chemical and electrochemical stability
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Embodiment 1
[0030] Step 1: Put 50 parts by mass of flaky carbonyl iron powder in a container, and add 200 parts by mass of 0.2 mol / L hydrochloric acid solution. After mixing and stirring for 5 minutes, it was filtered, and the separated flaky carbonyl iron powder was successively washed twice with 200 parts by mass of deionized water and ethanol. The acid-treated flaky carbonyl iron powder was dried under vacuum at 60°C for 12 hours.
[0031] Step 2, in the reactor, disperse 30 parts by mass of the flake carbonyl iron powder obtained in step 1 in 220 parts by mass of toluene, start stirring, and add 0.09 parts by mass of methacrylic acid (dissolved in 2.25 parts by mass of toluene), 2.4 parts by mass of polyvinylpyrrolidone (dissolved in 60 parts by mass of absolute ethanol). At 75°C constant pressure, inert gas protection, and under reflux conditions, drip polymerization reactants and azobisisobutyronitrile (7.8 parts by mass of styrene, 0.1 parts by mass of polybutadiene, 0.5 parts by ...
Embodiment 2
[0035] Step 1: Put 50 parts by mass of flaky carbonyl iron powder in a container, and add 200 parts by mass of 0.2 mol / L hydrochloric acid solution. After mixing and stirring for 5 minutes, it was filtered, and the separated flaky carbonyl iron powder was successively washed twice with 150 parts by mass of deionized water and ethanol. The acid-treated flaky carbonyl iron powder was dried under vacuum at 60°C for 12 hours.
[0036]Step 2, in the reactor, disperse 50 parts by mass of the flake carbonyl iron powder obtained in step 1 in 360 parts by mass of toluene, start stirring, and add 0.50 parts by mass of methacrylic acid (dissolved in 2.5 parts by mass of toluene), 0.5 parts by mass of polyvinylpyrrolidone (dissolved in 2 parts by mass of absolute ethanol). At 80 DEG C of constant pressure, inert gas protection, and under reflux conditions, drip polymerization reactants and azobisisobutyronitrile (0.3 parts by mass of styrene, 12 parts by mass of polybutadiene, 0.2 parts ...
Embodiment 3
[0040] Step 1: Put 50 parts by mass of flaky carbonyl iron powder in a container, and add 300 parts by mass of 0.5 mol / L hydrochloric acid solution. After mixing and stirring for 10 minutes, it was filtered, and the separated flaky carbonyl iron powder was washed with 200 parts by mass of deionized water and ethanol twice respectively. The acid-treated flaky carbonyl iron powder was dried under vacuum at 80°C for 12 hours.
[0041] Step 2, in the reactor, disperse 30 parts by mass of the flake carbonyl iron powder obtained in step 1 in 70 parts by mass of toluene, start stirring, and add 0.3 parts by mass of methacrylic acid (dissolved in 7.5 parts by mass of toluene), 0.3 parts by mass of polyvinylpyrrolidone (dissolved in 7.5 parts by mass of absolute ethanol). At 85 DEG C of constant pressure, inert gas protection, and under reflux conditions, drop polymerization reactants and azobisisobutyronitrile (0.3 mass parts styrene, 0.05 mass parts polybutadiene, 0.04 mass parts pe...
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