Curable composition for use in a high temperature lithography-based photopolymerization process and method of producing crosslinked polymers therefrom
US-2024325117-A1 · Oct 3, 2024 · US
US2016137773A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2016137773-A1 |
| Application number | US-201514940729-A |
| Country | US |
| Kind code | A1 |
| Filing date | Nov 13, 2015 |
| Priority date | Nov 17, 2014 |
| Publication date | May 19, 2016 |
| Grant date | — |
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The invention relates to a cationically hydrophilized polyurethaneurea characterized in that it is synthesized from a) at least one aliphatic, araliphatic and/or cycloaliphatic polyisocyanate, b) polyols having a number-average molecular weight Mn≧400 and ≦6000 g/mol and a hydroxyl functionality of ≧1.5 and ≦4, comprising at least one polyester polyol b1), which has an amorphous structure and which comprises as synthesis component at least one aromatic dicarboxylic acid and/or the corresponding carboxylic anhydride, the fraction of aromatic dicarboxylic acids and/or their anhydrides in the polyester polyol being ≧35 wt %, based on the overall mass of the polyester polyol, c) at least one cationically hydrophilizing component which has at least one group that is reactive towards isocyanate groups, and has at least one cationic or potentially cationic group, d) at least one aliphatic, amino-functional compound which has at least two isocyanate-reactive amino groups, e) optionally at least one alcohol which has at least two hydroxyl groups and a molar mass ≧60 and ≦399 g/mol and f) optionally at least one compound which has a group that is reactive towards isocyanate groups. The invention further relates to an aqueous dispersion comprising the polyurethaneurea and to a coating composition comprising the polyurethaneurea or the corresponding aqueous dispersion. Further subjects of the invention are a method for coating substrates using the coating composition of the invention, and the coated substrate obtainable in such a method.
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1 .- 12 . (canceled) 13 . A cationically hydrophilized polyurethaneurea synthesized from a) at least one aliphatic, araliphatic and/or cycloaliphatic polyisocyanate, b) polyols having a number-average molecular weight Mn≧400 and ≦6000 g/mol and a hydroxyl functionality of ≧1.5 and ≦4, (i) comprising at least one polyester polyol b1), which has an amorphous structure and which comprises exclusively aromatic dicarboxylic acids and/or the corresponding carboxylic anhydrides as acid component, the fraction of aromatic dicarboxylic acids and/or their anhydrides in the polyester polyol being ≧35 wt %, based on the overall mass of the polyester polyol, and (ii) comprising at least one polyol b2), which comprises exclusively aliphatic dicarboxylic acids and/or the corresponding carboxylic anhydrides as acid component, wherein the weight ratio between polyester polyol b1) and polyesterpolyol b2) is between 2:1 and 1:3; c) at least one cationically hydrophilizing component which has at least one group that is reactive towards isocyanate groups, and has at least one cationic or potentially cationic group, d) at least one aliphatic, amino-functional compound which has at least two isocyanate-reactive amino groups, e) optionally at least one alcohol which has at least two hydroxyl groups and a molar mass ≧60 and ≦399 g/mol and f) optionally at least one compound which has a group that is reactive towards isocyanate groups. 14 . The polyurethaneurea according to claim 13 , wherein the polyester polyol b1) has a Tg≧−25° C., determined by dynamic scanning calorimetry DSC in accordance with DIN EN 61006, Method A. 15 . The polyurethaneurea according to claim 13 , wherein the polyurethaneurea has a cationic and/or potentially cationic group content of ≧0.2 and ≦5 milliequivalents per g of polymer. 16 . The polyurethaneurea according to claim 13 , wherein component a) comprises ≧95 wt % of isophorone diisocyanate IPDI, based on the overall mass of component a). 17 . The polyurethaneurea according to claim 13 , wherein component d) comprises ≧95 wt % of isophoronediamine IPDA, based on the overall mass of component d). 18 . The polyurethaneurea according to claim 13 , wherein the polyurethaneurea has no nonionically hydrophilizing groups. 19 . The polyurethaneurea according to claim 13 , wherein the polyurethaneurea is obtained by reaction of components a), b), c) and optionally e) to give an isocyanate-terminated prepolymer, subsequent reaction of the prepolymer with component d) and optionally components e) and f), and, if component c) comprises a potentially cationic group, neutralization of this group by an acid before, during or after the reaction of the isocyanate-terminated prepolymer with component d) and optionally components e) and f). 20 . An aqueous dispersion comprising the polyurethaneurea according to claim 13 . 21 . A coating composition comprising the polyurethaneurea according to claim 13 or an aqueous dispersion comprising the polyurethaneurea according to claim 13 . 22 . A method for the coating of substrates, comprising applying a coating composition according to claim 21 to a substrate. 23 . The Method according to claim 22 , wherein the substrate is wood or an MDF (medium-density fibreboard) panel. 24 . A coated substrate obtained by the method according to claim 22 .
derived from dicarboxylic acids and dialcohols · CPC title
derived from aromatic dicarboxylic acids and dialcohols · CPC title
Compositions for coatings · CPC title
and at least one isocyanate or isothiocyanate group linked to a secondary carbon atom of the cycloaliphatic ring, e.g. isophorone diisocyanate · CPC title
from polyesters · CPC title
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