Claims
- 1. A laminate comprising a polyurethane foam core in which the polyurethane foam is a closed cell rigid polyurethane foam made using water as the sole blowing agent, which polyurethane foam is prepared from a polyol composition having a functionality greater than 2, and comprising at least one first component (1) which is prepared by reacting alkylene oxide with an initiator having a functionality of more than 2, at least one aromatic ring, and at least one amino nitrogen atom, where the viscosity of the first component is in the range of 3,500 to 20,000 cps at about 25.degree. C.; and at least one second component (2) selected from the group consisting of monohydroxy organic compounds, polyols, and mixtures thereof, said second component having a functionality or average functionality of at least 1 but less than 3 and a molecular weight (M.sub.w) or average molecular weight in the range of 250 to 4,000, said second component being free of polyester polyol and having a viscosity less than that of the first component at about 25.degree. C.; and which closed cell rigid polyurethane foam is scorch-free and has a density not greater than about 50 kg/m.sup.3.
- 2. The laminate of claim 1 wherein said initiator comprises a Mannich condensation product of at least one phenolic compound, formaldehyde, and a nitrogen-containing component selected from the group consisting of ammonia, alkanolamines and mixtures thereof.
- 3. A closed cell rigid polyurethane foam which is scorch-free and has a density of not greater than 50 kg/m.sup.3 and is prepared using water as the sole blowing agent and from a polyol composition having a functionality greater than 2, and comprising at least one first component (1) prepared by reacting alkylene oxide with an initiator comprising a Mannich condensation product of at least one phenolic compound, formaldehyde, and a nitrogen-containing component selected from the group consisting of ammonia, alkanolamines and mixtures thereof, where the viscosity of the first component is in the range of 3,500 to 20,000 cps at about 25.degree. C.; and at least one second component (2) selected from the group consisting of monohydroxy organic compounds, polyols, and mixtures thereof, said second component having a functionality or average functionality of at least 1 but less than 3 and a molecular weight (M.sub.w) or average molecular weight in the range of 250 to 4,000, said second component being free of polyester polyol and having a viscosity less than that of the first component at about 25.degree. C.
- 4. A polyol composition suitable for use in the production of polyurethane foam, said composition having an overall functionality of more than two and comprising at least one first component (1) prepared by reacting alkylene oxide with an initiator having a functionality of more than 2, at least one aromatic ring, and at least one amino nitrogen atom, where the viscosity of the first component is in the range of 3,500 to 20,000 cps at about 25.degree. C., and at least one second component (2) selected from the group consisting of monohydroxy organic compounds, polyols, and mixtures thereof, said second component having a functionality or average functionality of at least 1 but less than 3 and a molecular weight (M.sub.w) or average molecular weight in the range of 250 to 4,000, said second component being free of polyester polyol and having a viscosity less than that of the first component at about 25.degree. C.
- 5. The polyol composition of claim 4 wherein said at least one first component is an adduct of alkylene oxide and a Mannich condensation product of at least one phenolic compound, formaldehyde, and a nitrogen-containing component selected from the group consisting of ammonia, alkanolamines, and mixtures thereof.
- 6. The polyol composition of claim 5 wherein said nitrogen-containing component is selected from the group consisting of secondary alkanolamines.
- 7. The polyol composition of claim 4 wherein said monohydroxy organic compound is selected from the group consisting of monohydric phenols.
- 8. The polyol composition of claim 4 wherein said second component has a molecular weight (M.sub.w) or average molecular weight in the range 400 to 4,000.
- 9. The polyol composition of claim 4 wherein said at least one first component has a functionality of at least 3 and an OH number in the range 300 to 600.
- 10. The polyol composition of claim 4 wherein said at least one first component has a functionality in the range 3 to 5.
- 11. The polyol composition of claim 4 wherein said at least one second component has a functionality or average functionality of about 2.
- 12. The polyol composition of claim 4 wherein said second component is free of primary hydroxyl groups.
- 13. The polyol composition of claim 4 wherein said at least one second component is selected from the group consisting of propoxylated propylene glycol or propoxylated poly(propylene glycol).
- 14. The polyol composition of claim 4 wherein said at least one second component forms from 1 to 40% by weight of the mixture of the first and second components.
- 15. Insulation comprising polyurethane foam as claimed in claim 3.
- 16. Insulation comprising polyurethane foam as claimed in claim 4.
- 17. A laminate comprising a polyurethane foam core wherein the core comprises polyurethane foam as claimed in claim 3.
- 18. A method of obtaining a substantially closed cell rigid polyurethane foam by reaction of a polyol with a polyisocyanate in the presence of a blowing agent characterized in that the polyol comprises a composition having an overall functionality of more than two and comprising at least one first component (1) which is prepared by reacting alkylene oxide with an initiator having a functionality of more than 2, at least one aromatic ring, and at least one nitrogen atom, where the viscosity of the first component is in the range of 3,500 to 20,000 cps at about 25.degree. C.; and at least one second component (2) selected from the group consisting of monohydroxy organic compounds, polyols, and mixtures thereof, said second component having a functionality or average functionality of at least two but less than 3 and a molecular weight (M.sub.w) or average molecular weight in the range 250 to 4,000, said second component being free of polyester polyol and having a viscosity less than that of the first component at about 25.degree. C., and water is the sole blowing agent.
- 19. The method of claim 18 wherein the polyisocyanate comprises polymethylene polyphenyl isocyanate having a functionality in the range 2.1 to 3.2 and an equivalent weight in the range 120 to 180.
- 20. The method of claim 18 wherein water is used in an amount in the range 1% to 5% by weight, based on the weight of polyol, to give a foam having a density of 50 kg/m.sup.3 or less.
- 21. A laminate comprising a polyurethane foam core in which the polyurethane foam is a closed cell rigid polyurethane foam made using water as the sole blowing agent, which polyurethane foam is prepared from a polyol composition having a functionality greater than 2, and consisting of at least one first component (1) which is prepared by reacting alkylene oxide with an initiator having a functionality of more than 2, at least one aromatic ring, and at least one amino nitrogen atom, where the viscosity of the first component is in the range of 3,500 to 20,000 cps at about 25.degree. C.; and at least one second component (2) selected from the group consisting of alkoxylated monohydroxy organic compounds, polyols, and mixtures thereof, said second component having a functionality or average functionality of at least 1 but less than 3 and a molecular weight (M.sub.w) or average molecular weight in the range of 250 to 4,000, said second component being free of polyester polyol and having a viscosity less than that of the first component at about 25.degree. C.; and which closed cell rigid polyurethane foam is scorch-free and has a density not greater than about 50 kg/m.sup.3.
- 22. A closed cell rigid polyurethane foam which is scorch-free and has a density of not greater than 50 kg/m.sup.3 and is prepared using water as the sole blowing agent and from a polyol composition having a functionality greater than 2, and consisting of at least one first component (1) which is prepared by reacting alkylene oxide with an initiator comprising a Mannich condensation product of at least one phenolic compound, formaldehyde, and a nitrogen-containing component selected from the group consisting of ammonia, alkanolamines and mixtures thereof, where the viscosity of the first component is in the range of 3,500 to 20,000 cps at about 25.degree. C.; and at least one second component (2) selected from the group consisting of alkoxylated monohydroxy organic compounds, polyols, and mixtures thereof, said second component having a functionality or average functionality of at least 1 but less than 3 and a molecular weight (M.sub.w) or average molecular weight in the range of 250 to 4,000, said second component being free of polyester polyol and having a viscosity less than that of the first component at about 25.degree. C.
- 23. A polyol composition suitable for use in the production of polyurethane foam, said composition having a functionality greater than 2, and consisting of at least one first component (1) which is prepared by reacting alkylene oxide with an initiator having a functionality of more than 2, at least one aromatic ring, and at least one amino nitrogen atom, wherein the at least one first component has a functionality of at least 3 and an OH number in the range 300 to 600, and 1 to 40% by weight of at least one second component (2) selected from the group consisting of alkoxylated monohydroxy organic compounds, polyols, and mixtures thereof, said second component having a functionality or average functionality of at least 1 but less than 3 and a molecular weight (M.sub.w) or average molecular weight in the range of 250 to 4,000, wherein the second component is free of primary hydroxyl groups and free of polyester polyol.
Priority Claims (1)
Number |
Date |
Country |
Kind |
8823528.8 |
Jun 1988 |
GBX |
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Parent Case Info
This is a continuation of copending application Ser. No. 07/413,367 filed on Sep. 27, 1989, now abandoned.
US Referenced Citations (12)
Foreign Referenced Citations (1)
Number |
Date |
Country |
1061210 |
Mar 1967 |
GBX |
Non-Patent Literature Citations (1)
Entry |
"Advances in Technology and Uses of Rigid Urethane Foams"; Frisch et al. (Modern Plastics 40, 165 (Oct. 1962)). |
Continuations (1)
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Number |
Date |
Country |
Parent |
413367 |
Sep 1989 |
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