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zirconium diboride microparticles/magnesium hydrogen phosphate/silica nanoparticles/titania microparticles-filled 2,2-dimethylol butanoic acid/ε-caprolactone/polycaprolactone diol/1,4-butanediol/2,4-tolylene diisocyanate/hexamethylenediamine polymer-coated electrogalvanized steel

How does this work?

Based on

1 Patents
2015 Most recent source

Composition

1

polymer of 2,2-dimethylol butanoic acid, ε-caprolactone, polycaprolactone diol, 1,4-butanediol, 2,4-tolylene diisocyanate, and hexamethylenediamine, salt with triethylamine

Type Polymer
Formula
Role binder
2

zirconium diboride

zirconium boride
Type Single Compound
Formula ZrB2
Role fillers
3

magnesium hydrogen phosphate

Type Single Compound
Formula MgHPO4
Role fillers
4

silica nanoparticles

Snowtex N
Type Nano Material
Formula
Role fillers
5

titanium dioxide (rutile)

rutile
Type Single Compound
Formula TiO2
Role fillers

Properties

General physical and chemical properties

Property Value Nanomaterial Variant Source
formability

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Applications

Area Application Nanomaterial Variant Source
transport

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Preparation

Method 1

Type: Physical formation
Source:
Starting materials
  • hot dip galvannealed steel
  • zirconium diboride
  • magnesium hydrogen phosphate
See all (6)
  1. RwsEjbjGQFVtrYrewdJldR
Product

zirconium diboride microparticles/magnesium hydrogen phosphate/silica nanoparticles/titania microparticles-filled 2,2-dimethylol butanoic acid/ε-caprolactone/polycaprolactone diol/1,4-butanediol/2,4-tolylene diisocyanate/hexamethylenediamine polymer-coated electrogalvanized steel

Diameter: ~ 250 nm

Particle size: ~ 2200 nm

Thickness: 5000 nm

Medium: none

Support: hot dip galvannealed steel

Method 2

Type: Physical formation
Source:
Starting materials
  • hot dip galvannealed steel
  • zirconium diboride
  • magnesium hydrogen phosphate
See all (6)
  1. skjQymdxNckyP3FDPVRJZR
Product

zirconium diboride microparticles/magnesium hydrogen phosphate/silica nanoparticles/titania microparticles-filled 2,2-dimethylol butanoic acid/ε-caprolactone/polycaprolactone diol/1,4-butanediol/2,4-tolylene diisocyanate/hexamethylenediamine polymer-coated electrogalvanized steel

Diameter: ~ 250 nm

Particle size: ~ 2200 nm

Thickness: 5000 nm

Medium: none

Support: hot dip galvannealed steel

Method 3

Type: Physical formation
Source:
Starting materials
  • hot dip galvannealed steel
  • zirconium diboride
  • magnesium hydrogen phosphate
See all (6)
  1. FA1yWPMJ3LEcwymPFKcn4q
Product

zirconium diboride microparticles/magnesium hydrogen phosphate/silica nanoparticles/titania microparticles-filled 2,2-dimethylol butanoic acid/ε-caprolactone/polycaprolactone diol/1,4-butanediol/2,4-tolylene diisocyanate/hexamethylenediamine polymer-coated electrogalvanized steel

Diameter: ~ 250 nm

Particle size: ~ 2200 nm

Thickness: 5000 nm

Medium: none

Support: hot dip galvannealed steel

Method 4

Type: Physical formation
Source:
Starting materials
  • zirconium diboride
  • magnesium hydrogen phosphate
  • electrogalvanized steel
See all (6)
  1. PY7DTCblHRARA1dkX2yJSI
Product

zirconium diboride microparticles/magnesium hydrogen phosphate/silica nanoparticles/titania microparticles-filled 2,2-dimethylol butanoic acid/ε-caprolactone/polycaprolactone diol/1,4-butanediol/2,4-tolylene diisocyanate/hexamethylenediamine polymer-coated electrogalvanized steel

Diameter: ~ 250 nm

Particle size: ~ 2200 nm

Thickness: 5000 nm

Medium: none

Support: electrogalvanized steel

Method 5

Type: Physical formation
Source:
Starting materials
  • zirconium diboride
  • magnesium hydrogen phosphate
  • electrogalvanized steel
See all (6)
  1. sDaDEWHfnchiyJ59GpWBdG
Product

zirconium diboride microparticles/magnesium hydrogen phosphate/silica nanoparticles/titania microparticles-filled 2,2-dimethylol butanoic acid/ε-caprolactone/polycaprolactone diol/1,4-butanediol/2,4-tolylene diisocyanate/hexamethylenediamine polymer-coated electrogalvanized steel

Diameter: ~ 250 nm

Particle size: ~ 2200 nm

Thickness: 5000 nm

Medium: none

Support: electrogalvanized steel

References

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