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  • The new anticorrosion pigments were synthesized from oxides or carbonates through a high-temperature process during a solid phase. The formulated zinc ferrites had a nodular, lamellar, and needle-shaped particles. The synthesized anticorrosion pigments were used to prepare epoxy-resin based coatings that were subjected to tests for determining of physical-mechanical properties and anticorrosion properties. The synthesized anticorrosion pigments were used to formulate epoxy coatings with PVC = 10 % for the synthesized pigment and with the PVC/CPVC ratio = 0.3. The coatings were tested for physical-mechanical properties and in corrosion atmospheres. The corrosion tests results were compared with aluminum zinc phosphomolybdate. Comparisons of the lamellar ferrites with regard to the combinations of the Mg-Zn and Ca-Zn cations serve to detect the relatively stronger anticorrosion effects of the ferrites that contain the Ca-Zn combination. Of great benefit are the application and the method of synthesizing the anticorrosion pigments that do not contain any heavy metals and are environment-friendly.
  • The new anticorrosion pigments were synthesized from oxides or carbonates through a high-temperature process during a solid phase. The formulated zinc ferrites had a nodular, lamellar, and needle-shaped particles. The synthesized anticorrosion pigments were used to prepare epoxy-resin based coatings that were subjected to tests for determining of physical-mechanical properties and anticorrosion properties. The synthesized anticorrosion pigments were used to formulate epoxy coatings with PVC = 10 % for the synthesized pigment and with the PVC/CPVC ratio = 0.3. The coatings were tested for physical-mechanical properties and in corrosion atmospheres. The corrosion tests results were compared with aluminum zinc phosphomolybdate. Comparisons of the lamellar ferrites with regard to the combinations of the Mg-Zn and Ca-Zn cations serve to detect the relatively stronger anticorrosion effects of the ferrites that contain the Ca-Zn combination. Of great benefit are the application and the method of synthesizing the anticorrosion pigments that do not contain any heavy metals and are environment-friendly. (en)
Title
  • Corrosion inhibition and phycical properties of polymer coatings based on epoxy resin containing zincferrite particle
  • Corrosion inhibition and phycical properties of polymer coatings based on epoxy resin containing zincferrite particle (en)
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  • Corrosion inhibition and phycical properties of polymer coatings based on epoxy resin containing zincferrite particle
  • Corrosion inhibition and phycical properties of polymer coatings based on epoxy resin containing zincferrite particle (en)
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  • RIV/00216275:25310/13:39899310!RIV15-MSM-25310___
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  • 67155
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  • RIV/00216275:25310/13:39899310
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  • barrier effect; epoxy resin; anticorrosion pigment; polymer coating; zincferrite (en)
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  • [7BB1614485B9]
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  • Mikulov
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  • Praha
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  • Proceedings of the 1st International Conference on Chemical Technology
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  • Kalendová, Andréa
  • Ulbrich, Miroslav
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  • 000347470000031
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  • Česká společnost chemická
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  • 978-80-86238-55-5
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  • 25310
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