Hybrid novolac polyurea/polyurethane
A hybrid polyurethane/polyurea polymer suitable for forming a coating on a structure which is in contact with water includes the reaction product of a polyol component consisting of one or more polyols, a polyamine, and a curing agent, such as a polyisocyanate. The polyol component includes a Novolac-type polyether polyol.
1. A hybrid polyurethane/polyurea polymer comprising the reaction product of: a polyol component, a polyamine, and a curing agent, the polyol component comprising a Novolac-type polyol having the general formula of Formula I:
where each R is independently selected from hydrocarbyl groups;
each R1 is independently selected from H and hydrocarbyl groups;
each R2 is independently selected from poly alkylene oxide groups; and
x is at least 1.
2. The hybrid polyurethane/polyurea polymer of claim 1 , wherein the reaction is carried out in the presence of a catalyst.
3. The hybrid polyurethane/polyurea polymer of claim 1 , wherein the reaction is carried out at a temperature of at least 100° C.
4. The hybrid polyurethane/polyurea polymer of claim 1 , wherein a molar ratio of the polyol component to polyamine is from 1:100 to 100:1.
5. The hybrid polyurethane/polyurea polymer of claim 1 , wherein a ratio by weight of the polyol component to polyamine is from 20:1 to 1:5.
6. The hybrid polyurethane/polyurea polymer of claim 1 , wherein the polyol component further comprises at least a second polyether polyol other than the Novolac-type polyol.
7. The hybrid polyurethane/polyurea polymer of claim 6 , wherein the second polyether polyol is selected from a glycerine and propylene oxide based polyether triol, a polyether triol, and mixtures thereof.
8. The hybrid polyurethane/polyurea polymer of claim 6 , wherein the at least a second polyether polyol includes at least one of a propylene glycol-based diol, a glycerine-initiated propylene oxide-based triol with an ethylene oxide cap, an amine-based polyol, a glycerine and sucrose-based polyol, and a Mannich-based polyol.
9. The hybrid polyurethane/polyurea polymer of claim 1 , wherein the Novolac-type polyol is derived from Cashew Nut Shell Liquid (CNSL).
10. The hybrid polyurethane/polyurea of claim 1 , wherein the Novolac-type polyol is derived from greater than 50 wt. % anacardic acid and less than 50 wt. % cardol or its methyl derivatives.
11. The hybrid polyurethane/polyurea of claim 1 , wherein the curing agent is a polyisocyanate is selected from diisocyanates and triisocyanates, and mixtures thereof.
12. The hybrid polyurethane/polyurea of claim 1 , wherein the polyamine is selected from diamines, triamines and tetramines, and mixtures thereof.
13. The hybrid polyurethane/polyurea polymer of claim 1 , wherein a ratio of moles isocyanate groups:moles of hydroxyl and amine groups is from 1.5:1 to 1:1.5.
14. A structure coated with a formulation comprising the hybrid polyurethane/polyurea polymer of claim 1 .
15. A coating formulation comprising the hybrid polyurethane/polyurea polymer of claim 1 .
16. A two component formulation for preparing a coating comprising the hybrid polyurethane/polyurea polymer of claim 1 , wherein the two component formulation includes a first component which includes the curing agent and a second component which includes the polyol component and polyamine.
17. A method for coating a structure comprising applying a two component formulation as a heated mixture to a structure, the two component formulation comprising a first component which includes a curing agent and a second component which includes a polyol component and polyamine, the polyol component comprising a polyether polyol with a phenol-based backbone, the first and second components reacting to form the hybrid polyurethane/polyurea polymer of claim 1 .
18. A hybrid polyurethane/polyurea polymer comprising the reaction product of: a polyol component, a polyamine, and a curing agent, the polyol component comprising a Novolac-type polyol having the general formula of Formula I:
wherein each R is independently selected from C8 and higher fatty acids and mixtures thereof;
each R1 is independently selected from H and hydrocarbyl groups;
each R2 is independently selected from ether groups and poly alkylene oxide groups; and
x is at least 1.
19. A method for forming a hybrid polyurethane/polyurea polymer comprising reacting a polyisocyanate, a polyol component, and a polyamine in the presence of a catalyst, the polyol component comprising a Novolac-type polyol, wherein the Novolac-type polyol has the general formula of Formula I:
where each R is independently selected from hydrocarbyl groups;
each R 1 is independently selected from H and hydrocarbyl groups;
each R 2 is independently selected from poly alkylene oxide groups; and
x is at least 1.