Polyurethane-resin doming is currently one of the fastest growing markets in the field of industrial graphics and product identification. Semi-rigid bio-based polyurethanes were prepared deriving from soybean oil as a valuable alternative to fossil materials for digital doming and applied to digital mosaic technology. Bio-resins produced can favorably compete with the analogous fossil polymers, giving high-quality surface coatings (ascertained by SEM analyses). In addition, polyurethane synthesis was accomplished by using a mercury- and tin-free catalyst (the commercially available zinc derivative K22) bringing significant benefits in terms of cost efficiency and eco-sustainability.

Preparation and characterization of soybean oil-based polyurethanes for digital doming applications

ANNESE, COSIMO
Methodology
;
COMPARELLI, ROBERTO
Formal Analysis
;
FRACASSI, Francesco
Formal Analysis
;
FINI, PAOLA
Formal Analysis
;
NACCI, Angelo
Data Curation
;
RUSSO, ANTONELLA
Funding Acquisition
;
D'ACCOLTI, Lucia
Writing – Original Draft Preparation
2017-01-01

Abstract

Polyurethane-resin doming is currently one of the fastest growing markets in the field of industrial graphics and product identification. Semi-rigid bio-based polyurethanes were prepared deriving from soybean oil as a valuable alternative to fossil materials for digital doming and applied to digital mosaic technology. Bio-resins produced can favorably compete with the analogous fossil polymers, giving high-quality surface coatings (ascertained by SEM analyses). In addition, polyurethane synthesis was accomplished by using a mercury- and tin-free catalyst (the commercially available zinc derivative K22) bringing significant benefits in terms of cost efficiency and eco-sustainability.
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11586/198991
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