Claims
- 1. A composition comprising:
(a) a fluoropolymer comprising interpolymerized units derived from a nitrogen-containing cure site monomer; (b) a non-fluorinated catalyst composition that includes a compound having the general formula: {RA}(−){QR′k}(+) or the precursors thereof added separately or as a mixture; wherein R is hydrogen, a C1-C20 alkyl or alkenyl, C3-C20 cycloalkyl or cycloalkenyl, or C6-C20 aryl or aralkyl, A is an acid anion or an acid derivative anion, Q is phosphorous, sulfur, nitrogen, arsenic, or antimony, each R′ is, independently, hydrogen or a substituted or unsubstituted C1-C20 alkyl, aryl, aralkyl, or alkenyl group, provided that when Q is nitrogen and the only fluoropolymer in the composition consists essentially of a terpolymer of TFE, a perfluorovinylether, and a perfluorovinylether cure site monomer comprising a nitrile group not every R′ is H, and k is the valence of Q; and optionally (c) an alcohol of the general formula R2—OH, wherein R2 is an alkyl group having from 1 to 20 carbon atoms, and wherein R2 can be partially fluorinated.
- 2. A composition according to claim 1 wherein A is selected from: COO, 0 when R is hydrogen, aryl, or alkylaryl, SO3, SO2, SO2NH, PO3, CH2OPO3, (CH2O)2PO2, C6H4O, OSO3,
- 3. A composition according to claim 1 wherein RA has the general formula selected from: RCOOM, ROSO3M, RSO3M, and ROM, wherein M is hydrogen, or an alkali or alkaline earth metal.
- 4. A composition according to claim 1 wherein RA is selected from C6H5COO; PhO; CH3—(CH2)p—O—SO3 where p is 1 to 10; RCOO wherein R is an alkenyl, a C1-C10 alkyl, or a C6-C20 aryl; (−)OOC—(CH2)p—COO(−) wherein p is 0 to 10; and Ph—((CH2)p—COO(−))q wherein p and q are independently 1 to 4; and blends of two or more such compounds.
- 5. A composition according to claim 1 wherein RA is selected from the general formula (−)O2—Ph—Gy—Ph—Oz(−) wherein G is a bond or a difunctional aliphatic, cycloaliphatic, or C1-C13 aromatic radical, or a thio, oxy, carbonyl, sulfinyl, or sulfonyl radical, G and/or Ph are optionally substituted with at least one Cl atom, y is 0 or 1, z is 1 or 2, and any aromatic ring of the polyoxy compound is optionally substituted with at least one atom of Cl, or Br atom, or carboxyl, or an acyl radical, or an alkyl radical; and blends of two or more such compounds.
- 6. A composition according to claim 1 wherein RA is selected from the general formula (−)O—Ph—C(CX3)2—Ph—O(−), wherein X is H, or Cl; and blends of two or more such compounds.
- 7. A composition according to claim 1 wherein QR′k is selected from tetramethylphosphoniums, tributylallylphosphoniums, tributylbenzylphosphoniums, dibutyldiphenylphosphoniums, tetrabutylphosphonium, tributyl(2-methoxy) propylphosphoniums, triphenylbenzylphosphoniums, and tetraphenylphosphoniums.
- 8. A composition according to claim 1 wherein QR′k is selected from phenyltrimethylammoniums, tetrapentylammoniums, tetrapropylammoniums, tetrahexylammoniums, tetraheptylammoniums, tetramethylammoniums, tetrabutylammoniums, tributylbenzyl ammoniums, tributylallylammoniums, tetrabenzylammoniums, tetraphenylammoniums, diphenyl diethylamino ammoniums, triphenylbenzylammoniums, 8-benzyl-1,8-diazabicyclo[5.4.0]undec-7-eniums, benzyltris(dimethylamino) phosphoniums, and bis(benzyldiphenyl phosphine)iminiums.
- 9. A composition of claim 1 wherein the catalyst composition is prepared in situ.
- 10. A composition according to claim 1 wherein the catalyst composition is prepared from components dissolved in a solvent.
- 11. A composition according to claim 1 wherein the fluoropolymer comprises interpolymerized units derived from (i) tetrafluoroethylene, and optionally (ii) one or more perfluorovinyl ethers of the formula: CF2═CFO(R2fO)a(R3fO)bR4f
- 12. A composition according to claim 11 wherein the fluoropolymer further comprises interpolymerized units derived from monomers selected from: perfluoroolefins, partially-fluorinated olefins, non-fluorinated olefins, vinylidene fluoride, and combinations thereof.
- 13. A composition according to claim 1 wherein said cure site monomer is a fluorinated olefin.
- 14. A composition according to claim 1 wherein said cure site monomer is a nitrile-containing monomer having the formula CF2═CFO(CF2)LCN; CF2═CFO(CF2)uOCF(CF3)CN; CF2═CFO [CF2CF(CF3)O]q(CF2O)yCF(CF3)CN; or CF2═CF[OCF2CF(CF3)]rO(CF2)tCN;
wherein L=2-12; q=0-4; r=1-2; y=0-6; t=1-4, and u=2-6.
- 15. A composition according to claim 1 further comprising a filler selected from fluoropolymer filler, carbon black, and combinations thereof.
- 16. The composition of claim 1 wherein the fluoropolymer is selected from a fluoroelastomer and a fluoroplastic.
- 17. The composition of claim 1 wherein the composition has an induction time below about 15 minutes at a temperature of about 175° C.
- 18. The composition of claim 1 wherein the composition has a scorch resistance greater than the scorch resistance of a comparative composition tested at the same temperature, which comparative composition has the same fluoropolymer with a urotropin curative.
- 19. The composition of claim 1 further comprising an additional curative material, and optionally a coagent.
- 20. The composition of claim 19 wherein the additional curative material is selected from ammonia-generating compounds, substituted triazine derivatives, unsubstituted triazine derivatives, peroxides, bis-aminophenols, bis-amidooximes, and organo-tin compounds.
- 21. A shaped article comprising the fluoropolymer composition of claim 1.
- 22. The composition of claim 1 further comprising a fluoropolymer containing interpolymerized units derived from monomers selected from the group consisting of perfluoroolefins, partially-fluorinated olefins, non-fluorinated olefins, vinylidene fluoride, perfluorovinyl ethers, and combinations thereof.
- 23. The composition according to claim 22 comprising a curative that increases MDR torque in the fluoropolymer composition at 177° C. by at least about 0.01 Nm.
- 24. The composition of claim 22 further comprising a curative material selected from ammonium salts, ammonia-generating compounds, substituted triazine derivatives, unsubstituted triazine derivatives, peroxides, bis-aminophenols, bis-amidooximes, and organotin compounds; and optionally a coagent.
- 25. The composition of claim 24 wherein the coagent is selected from triallyl cyanurate; triallyl isocyanurate; tri(methylallyl) isocyanurate; tris(diallylamine)-s-triazine; triallyl phosphite; N,N-diallyl acrylamide; hexaallyl phosphoramide; N,N,N′,N′-tetraalkyl tetraphthalamide; N,N,N′,N′-tetraallyl malonamide; trivinyl isocyanurate; 2,4,6-trivinyl methyltrisiloxane; and tri(5-norbornene-2-methylene)cyanurate.
- 26. The composition of claim 22 wherein the additional fluoropolymer includes interpolymerized units containing a halogen that is capable of participation in a peroxide cure reaction and wherein the additional curative is a peroxide, and optionally further comprising a triallyl cyanurate coagent.
- 27. A shaped article comprising the fluoropolymer composition of claim 22.
- 28. The composition of claim 1 wherein RA is selected from acetate, benzoate, and carbonate.
- 29. The composition of claim 1 wherein {RA}(−){QR′k}(+) is selected from (QR′k)(+)(AQR′k)(−), (QR′4+)(CO32−)R, (QR′4+)2CO32−, (QR′4)2+SO42−, (QR′4)+OH−, (PR′4+)2CO32−, (PR′4)+OH−, (PR′4)2+SO42−.
- 30. The composition of claim 1 wherein QR′k is selected from tetrabutylphosphonium and tributyl(2-methoxy)propylphosphonium.
- 31. A method of making a fluoropolymer composition comprising forming a mixture comprising a fluoropolymer having interpolymerized units derived from a nitrogen-containing cure site monomer, a nonfluorinated catalyst composition comprising a compound having the formula: {RA}(−){QR′k}(+) or the precursors thereof added separately or as a mixture, wherein R is hydrogen, a C1-C20 alkyl or alkenyl, C3-C20 cycloalkyl or cycloalkenyl, or C6-C20 aryl or alkylaryl, A is an acid anion or an acid derivative anion group, which may be heterocyclic, Q is P, S, N, As, or Sb, and each R′ is, independently, hydrogen or a substituted or unsubstituted C1-C20 alkyl, aryl, aralkyl, or alkenyl group, provided that when Q is nitrogen and the only fluoropolymer in the composition consists essentially of a terpolymer of TFE, a perfluorovinylether, and a perfluorovinylether cure site monomer comprising a nitrile group not every R′ is H, and k is the valence of Q, and optionally in the presence of an alcohol of the general formula R2—OH, wherein R2 is a C6-C20 alkyl group.
- 32. The method of claim 30 further comprising:
a) shaping the mixture; b) optionally curing the shaped mixture; and c) optionally heat aging the cured mixture.
- 33. A method according to claim 32 wherein the catalyst is added in a form selected from a compound and a mixture of catalyst precursors.
- 34. A method according to claim 32 wherein individual components of the catalyst are separately added to the fluoropolymer composition.
- 35. A method according to claim 32 wherein the step of curing further comprises press-curing and optionally post-curing.
- 36. A cured article prepared according to the method of claim 32.
- 37. A method for increasing the induction period in a curable fluoropolymer composition comprising the steps of:
a) providing a fluoropolymer comprising interpolymerized units derived from a nitrogen-containing cure site monomer; and b) incorporating, into the fluoropolymer, a nonfluorinated catalyst composition that includes a compound having the general formula: {RA}(−){QR′k}(+) or the precursors thereof added separately or as a mixture, wherein R is hydrogen, a C1-C20 alkyl or alkenyl, a C3-C20 cycloalkyl or cycloalkenyl or a C6-C20 aryl or alkylaryl; A is an acid anion or an acid derivative anion; Q is P, S, N, As, or Sb; each R′ is, independently, hydrogen or a substituted or unsubstituted C1-C20 alkyl, aryl, aralkyl, or alkenyl group, provided that when Q is N and the only fluoropolymer in the composition consists essentially of a terpolymer of TFE, a perfluorovinylether, and a perfluorovinylether cure site monomer comprising a nitrile group not every R′ is H; and k is the valence of Q.
- 38. The method of claim 37 further comprising the step of incorporating an alcohol of the general formula R2—OH, wherein R2 is a C1-C20 alkyl group, and wherein R can be partially fluorinated.
- 39. The method of claim 37 further comprising:
c) shaping the composition; d) optionally curing the shaped composition; and e) optionally heat aging the cured composition.
- 40. The method of claim 39 wherein the step of curing comprises press-curing, and optionally post-curing.
- 41. A shaped article prepared according to the method of claim 37.
CROSS REFERENCE TO RELATED APPLICATIONS
[0001] This application claims priority to pending prior application U.S. Ser. No. 60/283,535 filed on Apr. 12, 2001, the disclosure of which is herein incorporated by reference.
Provisional Applications (1)
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Number |
Date |
Country |
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60283535 |
Apr 2001 |
US |