POLYURETHANE HAVING HIGH LIGHT REFRACTION
The present invention relates to the use of solvent-free low-monomer polyisocyanates based on araliphatic diisocyanates for the production of light- and weather-resistant polyurethane bodies having a high light refraction and low dispersion.
1 . Method of producing light-fast compact or foamed polyurethane bodies using solvent-free polyisocyanate components A) which are built up from at least two araliphatic diisocyanates and have a content of isocyanate groups of from 10 to 22 wt. % and a content of monomeric diisocyanates of less than 1.0 wt. %.
2 . Method according to claim 1 , wherein the polyisocyanate components A) have uretdione, allophanate, isocyanurate, iminooxadiazinedione and/or biuret structures.
3 . Method according to claim 1 , wherein the polyisocyanate components A) are polyisocyanates based on 1,3-bis(isocyanatomethyl)benzene, 1,4-bis(isocyanatomethyl)benzene and/or 1,3-bis(2-isocyanatopropan-2-yl)benzene having a content of isocyanate groups of from 11 to 21.5 wt. % and a content of monomeric diisocyanates of less than 0.8%.
4 . Method according to claim 3 , wherein the polyisocyanate components A) are polyisocyanates based on 1,3-bis(isocyanatomethyl)benzene having a content of isocyanate groups of from 15 to 21 wt. % and a content of monomeric diisocyanate of less than 0.5%.
5 . Method according to claim 1 , wherein in the preparation of the polyisocyanate components A), the unreacted monomeric araliphatic diisocyanate is removed from the reaction product by extraction or thin film distillation.
6 . Method according to claim 1 , which produces compact transparent polyurethane bodies.
7 . Method according to claim 6 , wherein the polyurethane bodies are glass substitute parts.
8 . Method according to claim 6 , wherein the polyurethane bodies are optical, optoelectronic or electronic components.
9 . Method according to claim 6 , wherein the components are optical lenses or spectacle lenses.
10 . Method according to claim 6 , wherein the components are light-emitting diodes.
11 . Process for the production of light-fast polyurethane bodies comprising solvent-free reacting of:
A) a polyisocyanate component which is built up from at least two araliphatic diisocyanates and has a content of isocyanate groups of from 10 to 22 wt. % and a content of monomeric diisocyanates of less than 1.0 wt. %, with
B) reaction partners which are reactive towards isocyanate groups and have an average functionality of from 2.0 to 6.0, and optionally co-using
C) further auxiliary substances and additives,
maintaining an equivalent ratio of isocyanate groups to groups which are reactive towards isocyanates of from 0.5:1 to 2.0:1.
12 . Process according to claim 11 , wherein hydroxy-, amino- and/or mercapto-functional compounds having an average molecular weight of from 60 to 12,000 are employed as component B).
13 . Process according to claim 11 , wherein polyether polyols, polyester polyols, polycarbonate polyols and/or aminopolyethers having an average molecular weight of from 106 to 12,000, polythioether thiols, polyester thiols, sulfur-containing hydroxy compounds and/or low molecular weight hydroxy- and/or amino-functional components having an average molecular weight of from 60 to 500 are employed as component B).
14 . Process according to claim 11 , wherein catalysts, UV stabilizers, antioxidants and/or mould release agents are employed as component C.
15 . Process according to claim 11 , wherein the reaction of the reaction partners is carried out at a temperature of up to 180° C. under a pressure of up to 300 bar.