Claims
- 1. A composition for producing smoke from phosphorus vapor, the composition comprising a blended mixture of the following ingredients in the following weight percentage ranges:
- red phosphorus--55% to 80%;
- oxidizing agent selected from the group consisting of sodium nitrate and ammonium nitrate--10% to 30%;
- metal fuel--5% to 10%;
- acid absorber--1% to 5%; and
- synthetic rubber binder--1% to 8%.
- 2. A composition according to claim 1, additionally comprising a titanium alcoholate (to generate titanium hydroxide on contact with moisture) selected from the group consisting of titanium iso-propoxide and titanium tert-butoxide.
- 3. A composition according to claim 2, wherein the metal fuel is selected from the group consisting of magnesium powder and aluminium flake.
- 4. A composition according to claim 3, wherein the metal fuel is aluminium flake.
- 5. A composition according to claim 4, wherein the aluminium flake is of an average particle size of about 10 .mu.m.
- 6. A composition acording to claim 5, wherein the oxidizing agent is sodium nitrate.
- 7. A composition according to claim 6, wherein the titanium alcoholate is titanium iso-propoxide.
- 8. A composition according to claim 7, wherein the synthetic resin binder is a polybutadiene binder.
- 9. A composition according to claim 8, wherein the acid absorber is calcium carbonate.
- 10. A composition according to claim 9, wherein the weight percentage of sodium nitrate in the fuel composition is 12% to 15%.
- 11. A composition according to claim 10, wherein the polybutadiene binder is a polybutadiene of high cis-1,4 configuration.
- 12. A composition according to claim 9, wherein the ingredients are present in the approximate weight percentages:
- red phosphorus--71%
- sodium nitrate--15%
- aluminium flake--8%
- calcium carbonate--1%
- titanium iso-propoxide--1%
- polybutadiene of high cis-1,4 configuration--4%.
- 13. A method of making a composition for producing smoke from phosphorus vapor, the method comprising the steps of:
- (a) mixing sufficient red phosphorus to give a weight percent in the final composition in the range of 55% to 80% with sufficient metal fuel to give a weight percent in the final composition in the range of 5% to 10% and sufficient acid absorber to provide a weight percent in the final composition in the range of 1% to 5%;
- (b) dissolving the synthetic rubber binder in a suitable organic solvent to provide a binder solution, wherein the weight percent of the binder in the final composition is in the range of 1% to 8%, and adding the binder solution to the mixture resulting from step (a);
- (c) mixing the ingredients of the preceding steps to form a mixture of pasty consistency;
- (d) adding to the mixture sufficient oxidizing agent selected from sodium nitrate and ammonium nitrate to give a weight percent in the final composition in the range of 10% to 30% and stirring the mixture to blend the oxidizing agent evenly into the mixture and form a homogeneous paste; and
- (e) drying the mixture to remove substantially all of the solvent.
- 14. A method according to claim 13, which further comprises before step (c) adding sufficient titanium alcoholate (which will generate titanium hydroxide on contact with moisture) to give a weight percent in the final composition in the range of 1% to 4%.
- 15. A method according to claim 14, wherein the titanium alcoholate is added to the binder solution before adding the binder solution to the red phosphorus, metal fuel and acid absorber mixture resulting from step (a).
- 16. A method according to claim 15, wherein the metal fuel is selected from the group consisting of magnesium powder and aluminium flake.
- 17. A method according to claim 16, wherein the metal fuel is aluminium flake.
- 18. A method according to claim 17, wherein the synthetic rubber binder is a polybutadiene binder.
- 19. A method according to claim 18, wherein the oxidizing agent is sodium nitrate.
- 20. A method according to claim 19, wherein the acid absorber is calcium carbonate.
- 21. A method according to claim 20, wherein the weight percentage of sodium nitrate in the final composition is 12% to 15%.
- 22. A method according to claim 21, wherein the polybutadiene binder is a polybutadiene of a high cis-1,4 configuration.
- 23. A method according to claim 22, wherein the titanium alcoholate is selected from the group consisting of titanium iso-propoxide and titanium tert-butoxide.
- 24. A method according to claim 23, wherein the titanium alcoholate is titanium iso-propoxide.
- 25. A method according to claim 24, wherein the aluminium flake is of an average particle size of about 10 .mu.m.
- 26. A method according to claim 19, wherein step (e) drying is effected at 60.degree.-70.degree. C.
- 27. A method according to claim 26, wherein the dried mixture is pressed into a pyrotechnic tube.
- 28. A method according to claim 26, wherein the dried mixture is pressed into the pyrotechnic tube at a pressure of about 10,000 psi.
- 29. A composition according to claim 12, wherein the red phosphorus used contains no more than traces of heavy metals and 90% thereof will pass through a 100 mesh sieve, the sodium nitrate is reagent grade and, before use, ground in a suitable mill and passed through a 40 mesh sieve, the aluminum flake is of an average particle size of about 10 .mu.m, the calcium carbonate is 40 mesh or finer and a chemically pure quality of precipitated chalk.
- 30. A pyrotechnic marker candle comprising a composition according to claim 9, pressed into a pyrotechnic tube.
- 31. A pyrotechnic marker candle according to claim 30, further comprising a conventional starter composition pressed into the tube.
Priority Claims (1)
Number |
Date |
Country |
Kind |
539912 |
Jun 1987 |
CAX |
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CROSS-REFERENCE TO RELATED APPLICATIONS
This application is a continuation-in-part of earlier application Ser. No. 119,343 filed Nov. 10, 1987 now abandoned.
US Referenced Citations (11)
Continuation in Parts (1)
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Number |
Date |
Country |
Parent |
119343 |
Nov 1987 |
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