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aluminum pigment
The as-prepared encapsulated aluminum pigment was characterized by Fourier transform infrared spectroscopy (FTIR), scanning electron microscopy (SEM), and X-ray photoelectron spectroscopy (XPS).
      
A possible application target is the improvement of the performance of aluminum pigment in waterborne coatings.
      
Stabilization of aluminum pigment in waterborne paints
      
The presence of the resins does not significantly affect the stabilization of the aluminum pigment at pH 10 by the corrosion inhibitors.
      
With the addition of corrosion inhibitors, the hydrogen volume evolved from aqueous aluminum pigment dispersions is surprisingly reduced by stirring.
      
However, when heated to +40°C aqueous aluminum pigment dispersions with inhibitors evolve more hydrogen; at pH 8 the results are still satisfactory even at +40°C.
      
Early versions contained flaking aluminum pigment to better limit moisture penetration into the film.
      
Over time, the plant has been expanded and adapted for use as an aluminum pigment manufacturing plant.
      
 

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