Claims
- 1. A composition comprising a high internal phase ratio emulsion having water as a continuous phase and a thermoplastic hydroxy-functional polyether as a disperse phase wherein the hydroxy-functional polyether has structural units represented by either of the formulae: ##STR16## where R.sup.1 is predominantly a hydrocarbylene moiety; R.sup.5 is independently in each occurrence hydrogen or alkyl; n is 0 or 1; R.sup.3 is ##STR17## and R.sup.4 is ##STR18## where R.sup.2 is predominantly a hydrocarbylene moiety or ##STR19## where R.sup.6 is predominantly hydrocarbylene; R.sup.7 is independently in each occurrence hydrogen or methyl; X is ##STR20## wherein R.sup.8 is independently in each occurrence C.sub.2 -C.sub.20 hydrocarbylene; Z is independently in each occurrence H, alkylamido, hydroxyl, alkoxy, alkylcarbonyl, aryloxy, arylcarbonyl, halo, or cyano, Y is predominantly a hydrocarbylene moiety; and each m is independently an integer from about 0 to 100.
- 2. The composition of claim 1 wherein R.sup.4 is ##STR21## m is 0; R.sup.1 is ethylene, propylene, hexamethylene, p-phenylene, or m-phenylene; R.sup.2 is p-phenylene, m-phenylene, or diphenylene-isopropylidene; and R.sup.5 is H.
- 3. The composition of claim 1 wherein the hydroxy-functional polyether has structural units represented by the formula: ##STR22## where R.sup.1 is 1,4-cyclohexylene, 1,3-cyclohexylene or 1,2-cyclohexylene, p-phenylene, m-phenylene, 2,6-naphthalene, diphenylene-isopropylidene, sulfonyldiphenylene, carbonyldiphenylene, oxydiphenylene, or 9,9-fluorenediphenylene; and R.sup.6 is methylene, ethylene, propylene, butylene, pentamethylene, hexamethylene, heptamethylene, octamethylene, nonamethylene, decamethylene, or dodecamethylene.
- 4. The composition of claim 3 where R.sup.1 is diphenylene-isopropylidene; R.sup.6 is tetramethylene; and the weight average molecular weight of the hydroxy-functional polyether is not less than 10,000 Daltons and not greater than 250,000 Daltons.
- 5. The composition of claim 1 which is prepared by the steps of:
- a) dissolving the hydroxy-functional polyether in a solvent or melting the polyether, to form a solution or a melt that is sufficiently immiscible with water so that a high internal phase ratio emulsion of the solution of the polyether in a water continuous phase can be formed;
- b) continuously merging into a disperser, in the presence of an emulsifying and stabilizing amount of a surfactant, a flowing stream of water flowing at a rate of r.sub.1, and a flowing stream containing the solution of the polyether flowing at a rate r.sub.2 ; and
- c) mixing the streams with a sufficient amount of shear to form the high internal phase ratio emulsion, wherein the ratio of the flow rates r.sub.2 :r.sub.1 is such that the particle size of the high internal phase ratio emulsion is not greater than 3 microns.
- 6. The composition of claim 5 wherein the surfactant comprises an anionic surfactant and a polymeric nonionic surfactant having the following formula: ##STR23## where R.sup.6 is predominantly hydrocarbylene; R.sup.3 is ##STR24## where each R.sup.5 is independently in each occurrence hydrogen or alkyl; R.sup.o is C.sub.2 -C.sub.12 alkylene; R.sup.9 is H, alkyl, or alkenyl; and n' and x' are positive integers.
- 7. The composition of claim 6 wherein the anionic surfactant is a sulfonate or sulfate of an ethoxylated phenol or a dialkyl ester of sodium sulfosuccinic acid; R.sup.6 is diphenylene-isopropylidene; R.sup.8 is ethylene, propylene, or butylene; R.sup.9 is H, C.sub.1 -C.sub.12 alkyl, or C.sub.2 -C.sub.12 alkenyl; wherein the mole:mole ratio of the anionic surfactant to the polymeric surfactant is not greater than about 2:1.
- 8. The composition of claim 7 wherein the anionic surfactant is a dioctyl ester of sodium sulfosuccinic acid; R.sup.9 is 2-dodecene-1-yl or H, and R.sup.8 is ethylene; wherein the mole:mole ratio of the anionic surfactant to the polymeric surfactant is not greater than about 1:1.
- 9. A composition comprising a stable aqueous dispersion of a thermoplastic hydroxy-functional polyether having structural units represented by either of the formulae: ##STR25## where R.sup.1 is predominantly a hydrocarbylene moiety; R.sup.5 is independently in each occurrence hydrogen or alkyl; n is 0 or 1; R.sup.3 is ##STR26## and R.sup.4 is ##STR27## where R.sup.2 is predominantly a hydrocarbylene moiety or ##STR28## where R.sup.6 is predominantly hydrocarbylene; R.sup.7 is independently in each occurrence hydrogen or methyl; X is ##STR29## wherein R.sup.8 is independently in each occurrence C.sub.2 -C.sub.20 hydrocarbylene; Z is independently in each occurrence H, alkylamido, hydroxyl, alkoxy, alkylcarbonyl, aryloxy, arylcarbonyl, halo, or cyano; Y is predominantly a hydrocarbylene moiety; and each m is independently an integer from about 0 to 100, which composition is stabilized by an emulsifying and stabilizing amount of a surfactant.
- 10. The composition of claim 9 wherein the hydroxy-functional polyether has structural units represented by the formula: ##STR30## where X is ##STR31## and Y is isopropylidenediphenylene, 1,3-phenylene, or 1,4-phenylene, wherein the weight average molecular weight of the polymer is not less than 1000 and not more than 100,000 Daltons.
- 11. The composition of claim 9 wherein hydroxy-functional polyether has structural units represented by the formula: ##STR32## where Y is isopropylidenediphenylene, 1,3-phenylene, or 1,4-phenylene, and the weight average molecular weight of the polymer is not less than 1000 and not more than 100,000 Daltons.
- 12. The composition of claim 11 which is formed by the reaction of a bisphenol with a diglycidyl ether or an epihalohydrin.
CROSS-REFERENCE TO RELATED APPLICATION
This application claims the benefit of U.S. Provisional Application No. 60/058,067 filed Sep. 5, 1997.
US Referenced Citations (20)
Foreign Referenced Citations (1)
Number |
Date |
Country |
WO 9639461 |
Dec 1996 |
WOX |
Non-Patent Literature Citations (1)
Entry |
Reinking, et al., Journal of Applied Polymer Science, "Polyhydroxyethers.I. Effect of Structure on Properties of High Molecular Weight Polymers from Dihydric Phenols and Epichlorohydrin," vol. 7, pp. 2135-2144 (1963) |