Claims
- 1. A propellant composition wherein substantially all the oxidizer is physically intertwined by a coprecipitation with certain simple decahydrodecaborate salts, comprising, by weight:
- (A) a polymeric binder system, in the range 8-35 percent;
- (B) curing agents, in the range 0-10 percent;
- (C) plasticizing agents, in the range 0-25 percent;
- (D) the resultant product, in the range 35-90 percent, of a process wherein a solid oxidizing agent is coprecipitated with certain simple decahydrodecaborate salts, having the common anion B.sub.10 H.sub.10.sup.-2, wherein the cation is selected from the group consisting of:
- (a) ammonium, wherein the salt has the formula (NH.sub.4).sub.2 B.sub.10 H.sub.10 ;
- (b) hydrazinium, wherein the salt has the formula (NH.sub.2 NH.sub.3)B.sub.10 H.sub.10 ;
- (c) substituted ammonium cations, wherein the salt has the general formula (R.sub.3 NH).sub.2 B.sub.10 H.sub.10, wherein further R is selected from the group consisting of hydrogen and alkyl radicals containing less than six carbon atoms;
- (d) substituted hydrazinium cations, wherein the salt has the general formula (R.sub.2 NNR.sub.2 H).sub.2 B.sub.10 H.sub.10 wherein further R is selected from the group consisting of hydrogen and alkyl radicals containing less than six carbon atoms, wherein said process comprises the steps of:
- (i) dissolving both the decahydrodecaborate (-2) salt and the oxidizing agent in a mutually soluble solvent, at a temperature sufficiently high to maintain said salt and said oxidizing agent in solution;
- (ii) forming a pressurized stream of said solution and bringing said solution stream together with a pressurized stream of a miscible nonsolvent, under conditions of extreme turbulence within a mixing chamber, to effect a substantially complete coprecipitation;
- (iii) recovering the coprecipitated product by filtering the effluent from said mixing chamber, and washing said product with an inert and nonsolvent fluid;
- (iv) drying the product to remove all remaining liquid.
- 2. A propellant composition wherein substantially all the oxidizer is physically intertwined by a coprecipitation with certain simple decahydrodecaborate salts, comprising, by weight:
- (A) a polymeric binder system, in the range 8-35 percent;
- (B) curing agents, in the range 0-10 percent;
- (C) plasticizing agents, in the range 0-25 percent;
- (D) the resultant product, in the range 35-90 percent, of a process wherein a solid oxidizing agent is coprecipitated with certain simple decahydrodecaborate salts, having the common anion B.sub.10 H.sub.10.sup.-2, wherein the cation is selected from the group consisting of:
- (a) tetramethylammonium, (CH.sub.3).sub.4 N.sup.+, tetraethylammonium, (CH.sub.3 CH.sub.2).sub.4 N.sup.+, and quaternary ammonium cations having the general formula R.sub.4 N.sup.+ where R is an alkyl radical;
- (b) pyrididinium, bipyridinium aryl-diazonium, aryl containing cations and substituted aryl containing cations, wherein said process comprises the steps of:
- (i) dissolving both the decahydrodecaborate (-2) salt and the oxidizing agent in a mutually soluble solvent, at a temperature sufficiently high to maintain said salt and said oxidizing agent in solution;
- (ii) forming a pressurized stream of said solution and bringing said solution stream together with a pressurized stream of a miscible nonsolvent, under conditions of extreme turbulence within a mixing chamber, to effect a substantially complete coprecipitation;
- (iii) recovering the coprecipitated product by filtering the effluent from said mixing chamber, and washing said product with an inert and nonsolvent fluid;
- (iv) drying the product to remove all remaining liquid.
- 3. A propellant composition wherein substantially all the oxidizer is physically intertwined by a coprecipitation with certain simple decahydrodecaborate salts, comprising, by weight:
- (A) a polymeric binder system, in the range 8-35 percent;
- (B) curing agents, in the range 0-10 percent;
- (C) plasticizing agents, in the range 0-25 percent;
- (D) the resultant product, in the range 35-90 percent, of a coprecipitation of a solid oxidizing agent with a simple decahydrodecaborate salt, having the anion B.sub.10 H.sub.10.sup.-2, wherein the cation is guanidinium, and the salt has the formula (C (NH.sub.2).sub.3).sub.2 B.sub.10 H.sub.10, comprising the steps of:
- (i) dissolving both the decahydrodecaborate (-2) salt and the oxidizing agent in a mutually soluble solvent, at a temperature sufficiently high to maintain said salt and said oxidizing agent in solution;
- (ii) forming a pressurized stream of said solution and bringing said solution stream together with a pressurized stream of a miscible nonsolvent, under conditions of extreme turbulence within a mixing chamber, to effect a substantially complete coprecipitation;
- (iii) recovering the coprecipitated product by filtering the effluent from said mixing chamber, and washing said product with an inert and nonsolvent fluid;
- (iv) drying the product to remove all remaining liquid.
- 4. A propellant composition wherein substantially all the oxidizer is physically intertwined by a coprecipitation with certain simple decahydrodecaborate salts, comprising, by weight:
- (A) a polymeric binder system, in the range 8-35 percent;
- (B) curing agents, in the range 0-10 percent;
- (C) plasticizing agents, in the range 0-25 percent;
- (D) the resultant product, in the range 35-90 percent, of a process wherein a solid oxidizing agent is coprecipitated with certain simple decahydrodecaborate salts, having the common anion B.sub.10 H.sub.10.sup.-2, wherein the cation is selected from the group consisting of metal ions derived from the elements in Groups 1, 2, 8, 3b, 4b, 5b, 6b, 7b, and the elements of Groups 3a, 4a, 5a, and 6a which have atomic numbers respectively greater than 5, 14, 33 and 52, wherein said process comprises the steps of:
- (i) dissolving both the decahydrodecaborate (-2) salt and the oxidizing agent in a mutually soluble solvent, at a temperature sufficiently high to maintain said salt and said oxidizing agent in solution;
- (ii) forming a pressurized stream of said solution and bringing said solution stream together with a pressurized stream of a miscible nonsolvent, under conditions of extreme turbulence within a mixing chamber, to effect a substantially complete coprecipitation;
- (iii) recovering the coprecipitated product by filtering the effluent from said mixing chamber, and washing said product with an inert and nonsolvent fluid;
- (iv) drying the product to remove all remaining liquid.
- 5. A propellant composition wherein substantially all the oxidizer is physically intertwined by a coprecipitation with certain simple decahydrodecaborate salts, comprising, by weight:
- (A) a polymeric binder system, in the range 8-35 percent;
- (B) curing agents, in the range 0-10 percent;
- (C) plasticizing agents, in the range 0-25 percent;
- (D) the resultant product, in the range 35-90 percent, of a process wherein a solid oxidizing agent is coprecipitated with certain metallic salts, selected from the group consisting of cesium decahydrodecaborate, Cs.sub.2 B.sub.10 H.sub.10, and potassium decahydrodecaborate, K.sub.2 B.sub.10 H.sub.10, wherein said process comprises the steps of:
- (i) dissolving both the decahydrodecaborate (-2) salt and the oxidizing agent in a mutually soluble solvent, at a temperature sufficiently high to maintain said salt and said oxidizing agent in solution;
- (ii) forming a pressurized stream of said solution and bringing said solution stream together with a pressurized stream of a miscible nonsolvent, under conditions of extreme turbulence within a mixing chamber, to effect a substantially complete coprecipitation;
- (iii) recovering the coprecipitated product by filtering the effluent from said mixing chamber, and washing said product with an inert and nonsolvent fluid;
- (iv) drying the product to remove all remaining liquid.
- 6. A propellant composition according to claim 1 wherein said resultant coprecipitation process product further comprises said solid oxidizer being selected from the group consisting of ammonium nitrate, potassium nitrate, potassium perchlorate, ammonium perchlorate, guanidine nitrate, triaminoguanidine nitrate, potassium permanganate, sodium chromate, barium nitrate, barium chromate, barium manganate, sodium dichromate, tetramethylammonium nitrate and cesium nitrate.
- 7. A propellant composition according to claim 2 wherein said resultant coprecipitation process product further comprises said solid oxidizer being selected from the group consisting of ammonium nitrate, potassium nitrate, potassium perchlorate, ammonium perchlorate, guanidine nitrate, triaminoguanidine nitrate, potassium permanganate, sodium chromate, barium nitrate, barium chromate, barium manganate, sodium dichromate, tetramethylammonium nitrate and cesium nitrate.
- 8. A propellant composition according to claim 3 wherein said resultant coprecipitation process product further comprises said solid oxidizer being selected from the group consisting of ammonium nitrate, potassium nitrate, potassium perchlorate, ammonium perchlorate, guanidine nitrate, triaminoguanidine nitrate, potassium permanganate, sodium chromate, barium nitrate, barium chromate, barium manganate, sodium dichromate, tetramethylammonium nitrate and cesium nitrate.
- 9. A propellant composition according to claim 4 wherein said resultant coprecipitation process product further comprises said solid oxidizer being selected from the group consisting of ammonium nitrate, potassium nitrate, potassium perchlorate, ammonium perchlorate, guanidine nitrate, triaminoguanidine nitrate, potassium permanganate, sodium chromate, barium nitrate, barium chromate, barium manganate, sodium dichromate, tetramethylammonium nitrate and cesium nitrate.
- 10. A propellant composition according to claim 5 wherein said resultant coprecipitation process product further comprises said solid oxidizer being selected from the group consisting of ammonium nitrate, potassium nitrate, potassium perchlorate, ammonium perchlorate, guanidine nitrate, triaminoguanidine nitrate, potassium permanganate, sodium chromate, barium nitrate, barium chromate, barium manganate, sodium dichromate, tetramethylammonium nitrate and cesium nitrate.
- 11. A propellant composition as in claim 6 wherein said polymeric binder system is a composite propellant requiring a post-formulation cure and is selected from the group consisting of:
- polyester
- polyacrylate,
- epoxy,
- polysulfide,
- polyurethane,
- the copolymer of butadiene and acrylic acid (PBAA),
- the terpolymer of butadiene,
- acrylic acid,
- acrylonitrile (PBAN)
- carboxy-terminated polybutadiene (CTPB) and
- hydroxy-terminated polybutadiene (HTPB)
- 12. A propellant composition as in claim 7 wherein said polymeric binder system is a composite propellant requiring a post-formulation cure and is selected from the group consisting of:
- polyester
- polyacrylate,
- epoxy,
- polysulfide,
- polyurethane,
- the copolymer of butadiene and acrylic acid (PBAA),
- the terpolymer of butadiene,
- acrylic acid,
- acrylonitrile (PBAN)
- carboxy-terminated polybutadiene (CTPB) and
- hydroxy-terminated polybutadiene (HTPB)
- 13. A propellant composition as in claim 8 wherein said polymeric binder system is a composite propellant requiring a post-formulation cure and is selected from the group consisting of:
- polyester
- polyacrylate,
- epoxy,
- polysulfide,
- polyurethane,
- the copolymer of butadiene and acrylic acid (PBAA),
- the terpolymer of butadiene,
- acrylic acid,
- acrylonitrile (PBAN)
- carboxy-terminated polybutadiene (CTPB) and
- hydroxy-terminated polybutadiene (HTPB)
- 14. A propellant composition as in claim 9 wherein said polymeric binder system is a composite propellant requiring a post-formulation cure and is selected from the group consisting of:
- polyester
- polyacrylate,
- epoxy,
- polysulfide,
- polyurethane,
- the copolymer of butadiene and acrylic acid (PBAA),
- the terpolymer of butadiene,
- acrylic acid,
- acrylonitrile (PBAN)
- carboxy-terminated polybutadiene (CTPB) and
- hydroxy-terminated polybutadiene (HTPB)
- 15. A propellant composition as in claim 10 wherein said polymeric binder system is a composite propellant requiring a post-formulation cure and is selected from the group consisting of:
- polyester
- polyacrylate,
- epoxy,
- polysulfide,
- polyurethane,
- the copolymer of butadiene and acrylic acid (PBAA),
- the terpolymer of butadiene,
- acrylic acid,
- acrylonitrile (PBAN)
- carboxy-terminated polybutadiene (CTPB) and
- hydroxy-terminated polybutadiene (HTPB)
- 16. A propellant composition as in claim 6 wherein said polymeric binder system is selected from the group consisting of nitrocellulose, oxygen containing binders, and fluorine containing binders.
- 17. A propellant composition as in claim 7 wherein said polymeric binder system is selected from the group consisting of nitrocellulose, oxygen containing binders, and fluorine containing binders.
- 18. A propellant composition as in claim 8 wherein said polymeric binder system is selected from the group consisting of nitrocellulose, oxygen containing binders, and fluorine containing binders.
- 19. A propellant composition as in claim 9 wherein said polymeric binder system is selected from the group consisting of nitrocellulose, oxygen containing binders, and fluorine containing binders.
- 20. A propellant composition as in claim 10 wherein said polymeric binder system which is selected from the group consisting of nitrocellulose, oxygen containing binders, and fluorine containing binders.
- 21. A propellant composition as in claim 6 wherein said polymeric binder is an active binder selected from the group consisting of nitrocellulose, the copolymer of hexafluoropropylene and vinylidene fluoride, and the copolymer of chlorotrifluoroethylene and vinylidene fluoride.
- 22. A propellant composition as in claim 7 wherein said polymeric binder is an active binder selected from the group consisting of nitrocellulose, the copolymer of hexafluoropropylene and vinylidene fluoride, and the copolymer of chlorotrifluoroethylene and vinylidene fluoride.
- 23. A propellant composition as in claim 8 wherein said polymeric binder is an active binder selected from the group consisting of nitrocellulose, the copolymer of hexafluoropropylene and vinylidene fluoride, and the copolymer of chlorotrifluoroethylene and vinylidene fluoride.
- 24. A propellant composition as in claim 9 wherein said polymeric binder is an active binder selected from the group consisting of nitrocellulose, the copolymer of hexafluoropropylene and vinylidene fluoride, and the copolymer of chlorotrifluoroethylene and vinylidene fluoride.
- 25. A propellant composition as in claim 10 wherein said polymeric binder is an active binder selected from the group consisting of nitrocellulose, the copolymer of hexafluoropropylene and vinylidene fluoride, and the copolymer of chlorotrifluoroethylene and vinylidene fluoride.
- 26. A propellant composition according to claim 16 wherein said propellant composition further comprises from 0.01-25 percent, by weight, certain simple salts having the common anion B.sub.10 H.sub.10.sup.-2 wherein the cation is selected from the group consisting of:
- (i) ammonium, wherein the salt has the formula (NH.sub.4 .sub.2 B.sub.10 H.sub.10 ;
- (ii) hydrazinium, wherein the salt has the general formula (NH.sub.2 NH.sub.3) B.sub.10 H.sub.10 ;
- (iii) substituted ammonium cations, wherein the salt has the general formula (R.sub.3 NH).sub.2 B.sub.10 H.sub.10, wherein further R is selected from the group consisting of hydrogen and alkyl radicals containing less than six carbon atoms;
- (iv) substituted hydrazinium cations, wherein the salt has the general formula (R.sub.2 NNR.sub.2 H).sub.2 B.sub.10 H.sub.10 wherein further R is selected from the group consisting of hydrogen and alkyl radicals containing less than six atoms;
- (v) tetramethylammonium (CH.sub.3).sub.4 N.sup.+, tetraethylammonium (CH.sub.3 CH.sub.2).sub.4 N.sup.+, and quaternary ammonium cations having the general formula R.sub.4 N.sup.+ where R is an alkyl radical;
- (vi) pyrididinium, bipyridinium aryl-diazonium, aryl containing cations and substituted aryl containing cations;
- (vii) guanidinium, wherein the salt has the formula (C(NH.sub.2).sub.3).sub.2 B.sub.10 H.sub.10 ;
- (viii) metal ions derived from the elements in Groups 1, 2, 8, 3b, 4b, 5b, 6b, 7b, and the elements of Groups 3a, 4a, 5a, and 6a which have atomic numbers respectively greater than 5, 14, 33 and 52.
- 27. A propellant composition according to claim 17 wherein said propellant composition further comprises from 0.01-25 percent, by weight, certain simple salts having the common anion B.sub.10 H.sub.10.sup.-2 wherein the cation is selected from the group consisting of:
- (i) ammonium, wherein the salt has the formula (NH.sub.4).sub.2 B.sub.10 H.sub.10 ;
- (ii) hydrazinium, wherein the salt has the general formula (NH.sub.2 NH.sub.3) B.sub.10 H.sub.10 ;
- (iii) substituted ammonium cations, wherein the salt has the general formula (R.sub.3 NH).sub.2 B.sub.10 H.sub.10, wherein further R is selected from the group consisting of hydrogen and alkyl radicals containing less than six carbon atoms;
- (iv) substituted hydrazinium cations, wherein the salt has the general formula (R.sub.2 NNR.sub.2 H).sub.2 B.sub.10 H.sub.10 wherein further R is selected from the group consisting of hydrogen and alkyl radicals containing less than six atoms;
- (v) tetramethylammonium (CH.sub.3).sub.4 N+, tetraethylammonium (CH.sub.3 CH.sub.2).sub.4 N+, and quaternary ammonium cations having the general formula R.sub.4 N+ where R is an alkyl radical;
- (vi) pyrididinium, bipyridinium aryl-diazonium, aryl containing cations and substituted aryl containing cations;
- (vii) guanidinium, wherein the salt has the formula (C(NH.sub.2).sub.3).sub.2 B.sub.10 H.sub.10 ;
- (viii) metal ions derived from the elements in Groups 1, 2, 8, 3b, 4b, 5b, 6b, 7b, and the elements of Groups 3a, 4a, 5a, and 6a which have atomic numbers respectively greater than 5, 14, 33 and 52.
- 28. A propellant composition according to claim 18 wherein said propellant composition further comprises from 0.01-25 percent, by weight, certain simple salts having the common anion B.sub.10 H.sub.10.sup.-2 wherein the cation is selected from the group consisting of:
- (i) ammonium, wherein the salt has the formula (NH.sub.4).sub.2 B.sub.10 H.sub.10 ;
- (ii) hydrazinium, wherein the salt has the general formula (NH.sub.2 NH.sub.3) B.sub.10 H.sub.10 ;
- (iii) substituted ammonium cations, wherein the salt has the general formula (R.sub.3 NH).sub.2 B.sub.10 H.sub.10, wherein further R is selected from the group consisting of hydrogen and alkyl radicals containing less than six carbon atoms;
- (iv) substituted hydrazinium cations, wherein the salt has the general formula (R.sub.2 NNR.sub.2 H).sub.2 B.sub.10 H.sub.10 wherein further R is selected from the group consisting of hydrogen and alkyl radicals containing less than six atoms;
- (v) tetramethylammonium (CH.sub.3).sub.4 N.sup.+, tetraethylammonium (CH.sub.3 CH.sub.2).sub.4 N.sup.+, and quaternary ammonium cations having the general formula R.sub.4 N.sup.+ where R is an alkyl radical;
- (vi) pyrididinium, bipyridinium aryl-diazonium, aryl containing cations and substituted aryl containing cations;
- (vii) guanidinium, wherein the salt has the formula (C(NH.sub.2).sub.3).sub.3 B.sub.10 H.sub.10 ;
- (viii) metal ions derived from the elements in Groups 1, 2, 8, 3b, 4b, 5b, 6b, 7b, and the elements of groups 3a, 4a, 5a, and 6a which have atomic numbers respectively greater than 5, 14, 33 and 52.
- 29. A propellant composition according to claim 19 wherein said propellant composition further comprises from 0.01-25 percent, by weight, certain simple salts having the common anion B.sub.10 H.sub.10.sup.-2 wherein the cation is selected from the group consisting of:
- (i) ammonium, wherein the salt has the formula (NH.sub.4).sub.2 B.sub.10 H.sub.10 ;
- (ii) hydrazinium, wherein the salt has the general formula (NH.sub.2 NH.sub.3) B.sub.10 H.sub.10 ;
- (iii) substituted ammonium cations, wherein the salt has the general formula (R.sub.3 NH).sub.2 B.sub.10 H.sub.10, wherein further R is selected from the group consisting of hydrogen and alkyl radicals containing less than six carbon atoms;
- (iv) substituted hydrazinium cations, wherein the salt has the general formula (R.sub.2 NNR.sub.2 H).sub.2 B.sub.10 H.sub.10 wherein further R is selected from the group consisting of hydrogen and alkyl radicals containing less than six atoms;
- (v) tetramethylammonium (CH.sub.3).sub.4 N.sup.+, tetraethylammonium (CH.sub.3 CH.sub.2).sub.4 N.sup.+, and quaternary ammonium cations having the general formula R.sub.4 N.sup.+ where R is an alkyl radical;
- (vi) pyrididinium, bipyridinium aryl-diazonium, aryl containing cations and substituted aryl containing cations;
- (vii) guanidinium, wherein the salt has the formula (C(NH.sub.2).sub.3).sub.2 B.sub.10 H.sub.10 ;
- (viii) metal ions derived from the elements in Groups 1, 2, 8, 3b, 4b, 5b, 6b, 7b, and the elements of Groups 3a, 4a, 5a, and 6a which have atomic numbers respectively greater than 5, 14, 33 and 52.
- 30. A propellant composition according to claim 20 wherein said propellant composition further comprises from 0.01-25 percent, by weight, certain simple salts having the common anion B.sub.10 H.sub.10.sup.-2 wherein the cation is selected from the group consisting of:
- (i) ammonium, wherein the salt has the formula (NH.sub.4 .sub.2 B.sub.10 H.sub.10 ;
- (ii) hydrazinium, wherein the salt has the general formula (NH.sub.2 NH.sub.3) B.sub.10 H.sub.10 ;
- (iii) substituted ammonium cations, wherein the salt has the general formula (R.sub.3 NH).sub.2 B.sub.10 H.sub.10, wherein further R is selected from the group consisting of hydrogen and alkyl radicals containing less than six carbon atoms;
- (iv) substituted hydrazinium cations, wherein the salt has the general formula (R.sub.2 NNR.sub.2 H).sub.2 B.sub.10 H.sub.10 wherein further R is selected from the group consisting of hydrogen and alkyl radicals containing less than six atoms;
- (v) tetramethylammonium (CH.sub.3).sub.4 N.sup.+, tetraethylammonium (CH.sub.3 CH.sub.2).sub.4 N.sup.+, and quaternary ammonium cations having the general formula R.sub.4 N.sup.+ where R is an alkyl radical;
- (vi) pyrididinium, bipyridinium aryl-diazonium, aryl containing cations and substituted aryl containing cations;
- (vii) guanidinium, wherein the salt has the formula (C(NH.sub.2).sub.3).sub.2 B.sub.10 H.sub.10 ;
- (viii) metal ions derived from the elements in Groups 1, 2, 8, 3b, 4b, 5b, 6b, 7b, and the elements of Groups 3a, 4a, 5a, and 6a which have atomic numbers respectively greater than 5, 14, 33 and 52.
- 31. A propellant composition according to claim 11 wherein said polymeric composite propellant binder selected is hydroxy-terminated polybutadiene.
- 32. A propellant composition according to claim 12 wherein said polymeric composite propellant binder selected is hydroxy-terminated polybutadiene.
- 33. A propellant composition according to claim 13 wherein said polymeric composite propellant binder selected is hydroxy-terminated polybutadiene.
- 34. A propellant composition according to claim 14 wherein said polymeric composite propellant binder selected is hydroxy-terminated polybutadiene.
- 35. A propellant composition according to claim 15 wherein said polymeric composite propellant binder selected is hydroxy-terminated polybutadiene.
- 36. A propellant composition as in claim 21 wherein said binder selected is nitrocellulose.
- 37. A propellant composition as in claim 22 wherein said binder selected is nitrocellulose.
- 38. A propellant composition as in claim 23 wherein said binder selected is nitrocellulose.
- 39. A propellant composition as in claim 24 wherein said binder selected is nitrocellulose.
- 40. A propellant composition as in claim 25 wherein said binder selected is nitrocellulose.
- 41. A propellant composition as in claim 26 wherein said binder selected is nitrocellulose.
- 42. A propellant composition as in claim 27 wherein said binder selected is nitrocellulose.
- 43. A propellant composition as in claim 28 wherein said binder selected is nitrocellulose.
- 44. A propellant composition as in claim 29 wherein said binder selected is nitrocellulose.
- 45. A propellant composition as in claim 30 wherein said binder selected is nitrocellulose.
- 46. A propellant composition as in claim 40 wherein said resultant product is the coprecipitate of cesium decahydrodecaborate with potassium nitrate.
- 47. A propellant composition as in claim 46 wherein said coprecipitate is cesium decahydrodecaborate, approximately 25 parts by weight, and potassium nitrate, approximately 75 parts by weight.
- 48. A propellant composition as in claim 35 wherein said resultant product is the coprecipitate of cesium decahydrodecaborate with potassium nitrate.
- 49. A propellant composition as in claim 48 wherein said coprecipitate is cesium decahydrodecaborate, approximately 25 parts by weight, and potassium nitrate, approximately 75 parts by weight.
- 50. A propellant composition as in claim 37 wherein said resultant product is the coprecipitate of tetramethylammonium decahydrodecaborate with potassium nitrate.
- 51. A propellant composition as in claim 50 wherein said coprecipitate is tetramethylammonium decahydrodecaborate, approximately 15 parts by weight and potassium nitrate, approximately 85 parts by weight.
- 52. A propellant composition as in claim 30 wherein said binder contains fluorine and is the copolymer of hexafluoropropylene and vinylidene fluoride, said resultant product is the coprecipitate of cesium decahydrodecaborate with potassium nitrate, and said simple salt selected is potassium decahydrodecaborate.
- 53. A propellant composition as in claim 52 wherein, by weight, said binder is approximately 25 percent, said coprecipitate is approximately 65 percent, and said simple salt is approximately 10 percent.
CROSS-REFERENCES TO RELATED APPLICATIONS
This application is a continuation-in-part of our copending application COPRECIPITATED PYROTECHNIC COMPOSITION PROCESSES AND RESULTANT PRODUCTS, Ser. No. 694,626, filed June 10, 1976, which in turn is a continuation-in-part of the application entitled HIGH BURN PROPELLANT COMPOSITIONS, Serial No. 585,216, filed June 6, 1975, and now abandoned.
This application is also a related case to our copending applications COMPOSITE PROPELLANTS INCORPORATING BURNING RATE ENHANCERS, Ser. No. 696,323, filed June 15, 1976, and ACTIVE BINDER PROPELLANTS INCORPORATING BURNING RATE CATALYSTS, Ser. No. 696,324, filed June 15, 1976.
US Referenced Citations (7)
Continuation in Parts (2)
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Number |
Date |
Country |
Parent |
694626 |
Jun 1976 |
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Parent |
585216 |
Jun 1975 |
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