Claims
- 1. A sag resistant adhesive composition which does not contain a water retentive agent, the composition comprising in admixture:
- (A) an adhesive material selected from the group consisting of (a) materials capable of hardening at room temperature upon admixture with water, the materials being selected from among hydraulic cements and plaster of paris, and (b) room temperature hardening polymers; and
- (B) at least one non-fibrous compound selected from the group consisting of gelatinous metal hydroxides and metal salts capable of forming a gelatinous or hydrated hydroxide in the presence of a water soluble alkaline material, the compound or compounds being present in an amount at least sufficient to provide the desired sag resistance.
- 2. A composition according to claim 1 in which component (B) is present in an amount of at least about 0.2% by weight of the composition.
- 3. A composition according to claim 2 in which component (B) is present in an amount of from about 0.2 to about 5.0% by weight of the composition.
- 4. A composition according to claim 1 in which component (A) is a material selected from among hydraulic cements and plaster of paris.
- 5. A composition according to claim 4 in which the hydraulic cement is Portland cement.
- 6. A composition according to claim 4 which includes an inert filler.
- 7. A composition according to claim 6 in which the weight ratio of cement to inert filler is in the range from about 0.15:1 to about 4:1.
- 8. A composition according to claim 1 in which component (A) is a room temperature hardening polymer in the form of a resinous liquid or an emulsion, suspension, dispersion, partial solution or total solution.
- 9. A composition according to claim 1 wherein component (B) is a gelatinous metal hydroxide.
- 10. A composition according to claim 9 wherein the gelatinous metal hydroxide is aluminum hydroxide.
- 11. A composition according to claim 1 wherein component (B) is a metal salt capable of forming a gelatinous or hydrated hydroxide in the presence of a water soluble alkaline material.
- 12. A composition according to claim 11 wherein the metal salt comprises at least one anion and at least one cation, the cationic moieties being selected from among
- (i) aluminum cations,
- (ii) cations of the transition elements other than copper of Period 4 of the Periodic Table,
- (iii) the cations of cerium or antimony, and
- (iv) the mixed cations of the classification M.sup.I M.sup.III where M.sup.I is an alkali metal or ammonium cation and M.sup.III is a trivalent cation of Periods 3 and 4 of the Periodic Table, and the anionic moieties are selected from anions of strong mineral acids and of alkanoic acids having up to 20 carbon atoms in the chain.
- 13. A composition according to claim 11 wherein the metal salt is powdered aluminum sulfate.
- 14. A composition according to claim 1 wherein the water soluble alkaline material is lime.
- 15. A method of imparting sag resistance to an adhesive composition which does not contain a water retentive agent, the composition comprising (A) an adhesive material selected from the group consisting of (a) materials capable of hardening at room temperature upon admixture with water, the materials being selected from among hydraulic cements and plaster of paris, and (b) room temperature hardening polymers, the method comprising adding to said adhesive material at least one non-fibrous sag resistance imparting agent selected from the group consisting of gelatinous metal hydroxides and metal salts capable of forming a gelatinous or hydrated hydroxide in the presence of a water soluble alkaline material, the compound or compounds being present in an amount at least sufficient to provide the desired sag resistance.
- 16. A method according to claim 15 in which the sag resistant compound is added in an amount of at least about 0.2% by weight of the composition.
- 17. A method according to claim 16 in which the sag resistant compound is added in an amount of from about 0.2 to about 5.0% by weight of the composition.
- 18. A method according to claim 15 in which the adhesive material is selected from among hydraulic cements and plaster of paris.
- 19. A method according to claim 15 in which the adhesive composition includes an inert filler.
- 20. A method according to claim 19 in which the weight ratio of cement to filler is in the range from about 0.15:1 to about 4:1.
- 21. A method according to claim 15 in which the adhesive material is a room temperature hardening polymer in the form of a resinous liquid or an emulsion, suspension, dispersion, partial solution or total solution.
- 22. A method according to claim 15 wherein the sag resistance imparting agent is gelatinous aluminum hydroxide.
- 23. A method according to claim 15 wherein the sag resistance imparting agent is powdered aluminum sulfate.
- 24. In a method of installing floor and wall covering surfaces with sag resistant adhesive compositions, the improvement which comprises using a sag resistant adhesive composition which does not contain a water retentive agent and which comprises in admixture:
- (A) an adhesive material selected from the group consisting of (a) materials capable of hardening at room temperature upon admixture with water, the materials being selected from among hydraulic cements and plaster of paris, and (b) room temperature hardening polymers; and
- (B) at least one non-fibrous compound selected from the group consisting of gelatinous metal hydroxides and metal salts capable of forming a gelatinous or hydrated hydroxide in the presence of a water soluble alkaline material, the compound or compounds being present in an amount at least sufficient to provide the desired sag resistance.
- 25. A method according to claim 24 in which component (B) is present in an amount of at least about 0.2% by weight of the composition.
- 26. A method according to claim 25 in which component (B) is present in an amount of from about 0.2 to about 5.0% by weight of the composition.
- 27. A method according to claim 24 in which component (A) is a material selected from among hydraulic cements and plaster of paris.
- 28. A method according to claim 27 in which the hydraulic cement is Portland cement.
- 29. A method according to claim 24 which includes an inert filler.
- 30. A method according to claim 29 in which the weight ratio of cement to inert filler is in the range from about 0.15:1 to about 4:1.
- 31. A method according to claim 24 in which component (A) is a room temperature hardening polymer in the form of a resinous liquid or an emulsion, suspension, dispersion or partial solution or total solution.
- 32. A method according to claim 24 wherein component (B) is a gelatinous metal hydroxide.
- 33. A method according to claim 32 wherein the gelatinous metal hydroxide is aluminum hydroxide.
- 34. A method according to claim 24 wherein component (B) is a metal salt capable of forming a gelatinous or hydrated hydroxide in the presence of a water soluble alkaline material.
- 35. A method according to claim 34 wherein the metal salt comprises at least one anion and at least one cation, the cationic moieties being selected from among
- (i) aluminum cations,
- (ii) cations of the transition elements other than copper of Period 4 of the Periodic Table,
- (iii) the cations of cerium or antimony, and
- (iv) the mixed cations of the classification M.sup.I M.sup.III where M.sup.I is an alkali metal or ammonium cation and M.sup.III is a trivalent cation of Periods 3 and 4 of the Periodic Table, and the anionic moieties are selected from anions of strong mineral acids and of alkanoic acids having up to 20 carbon atoms in the chain.
- 36. A method according to claim 34 wherein the metal salt is powdered aluminum sulfate.
- 37. A method according to claim 24 wherein the water soluble alkaline material is lime.
CROSS-REFERENCE TO RELATED APPLICATION
This application is a continuation-in-part of copending application Ser. No. 749,946, filed Dec. 20, 1976 now U.S. Pat. No. 4,082,563.
US Referenced Citations (5)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
749946 |
Dec 1976 |
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