Claims
- 1. Ignition element consisting of a combination of first and second ignition components, wherein the first ignition component contains a heat-conducting primer with a heat-conducting additive and a binder, and the second ignition component contains at least one ingredient that produces hot reaction particles, an oxidant, and a binder.
- 2. Ignition element according to claim 1, wherein the heat-conducting primer is silver azide.
- 3. Ignition element according to claim 1, wherein inorganic or organic heat-conducting substances are used as the heat-conducting additive.
- 4. Ignition element according to claim 1, wherein the heat conducting additive is selected from the group consisting of zirconium, aluminum, titanium, ferrotitanium, zirconium boride, zirconium hydride and mixtures thereof.
- 5. Ignition element consisting of a combination of first and second ignition components, wherein the first ignition component contains at least one primer selected from the group consisting of lead azide, diazodinitro-phenol, silver azide, picrate, and tricinate, at least one heat-conducting additive selected from the group consisting of zirconium, aluminum, titanium, ferrotitanium, zirconium boride, zirconium hydride and mixtures thereof, at least one oxidant and a binder; and the second ignition component contains at least one ingredient that produces hot reaction particles, an oxidant, and a binder.
- 6. Ignition element according to claim 5, wherein the ingredient producing the hot reaction particles in the second ignition component consists of zirconium in various crystal modifications, titanium, or mixtures thereof.
- 7. Ignition element according to claim 5, wherein at least one of KClO3 and KClO4 is used as the oxidant.
- 8. Ignition element according to claim 5, wherein polyvinyl acetate, polysulfone, or polyether sulfone, preferably polyvinyl acetate, is used as the binder.
- 9. Ignition element according to claim 5, wherein the first ignition component is a filament component and the second ignition component is a power component.
- 10. Ignition element according to claim 5, wherein the first ignition component contains lead picrate, zirconium KClO4 and polyvinyl acetate, and the second ignition component contains zirconium, KClO4 and polyvinyl acetate.
- 11. Ignition element according to claim 9, wherein the filament component consists of 20 to 80 parts of picrate, 80 to 20 parts of a mixture of heat-conducting additive and an oxidant comprising KClO3 and/or KClO4, and 1 to 6 parts of binder selected from the group consisting of polyvinyl acetate, polysulfone and polyether sulfone.
- 12. Ignition element according to claim 11, wherein the mixture of heat-conducting additive and oxidant consists of 60 to 90 parts of heat-conducting additive and 10 to 40 parts of KClO4.
- 13. Ignition element according to claim 9, the filament component consists of 100 parts of heat-conducting primer and 1 to 6 parts of binder.
- 14. Ignition component consisting of at least one primer, at least one heat-conducting additive selected from the group consisting of zirconium, aluminum, titanium, ferrotitanium, zirconium boride, zirconium hydride and mixtures thereof, at least one oxidant, and one binder, wherein the at least one heat conduction additive increases the ignition insensitivity of the ignition component without adversely affecting ignition delay time.
- 15. Ignition component according to claim 14, wherein lead azide, diazodinitro-phenol, silver azide, picrate, or tricinate is used as the primer.
- 16. Ignition component consisting of a heat-conducting primer with heat-conducting additive selected from the group consisting of zirconium, aluminum, titanium, ferrotitanium, zirconium boride, zirconium hydride and mixtures thereof, and a binder.
- 17. Ignition component according to claim 16, wherein silver azide is used as the heat-conducting primer.
- 18. Ignition component consisting of an ingredient that produces hot reaction particles, an oxidant, and a binder.
- 19. Ignition component according to claim 18, wherein the ingredient producing hot reaction particles consists of zirconium in various crystal modifications, titanium, or mixtures thereof.
- 20. Ignition component according to claim 14, wherein KClO3 and/or KClO4 is used as the oxidant.
- 21. Ignition component according to claim 14, wherein polyvinyl acetate, polysulfone, or polyether sulfone is used as the binder.
- 22. Ignition component according to claim 14, wherein it consists of 20 to 80 parts of picrate, 80 to 20 parts of a mixture of heat-conducting additive, and an oxidant comprising KClO3 and/or KClO4, and 1 to 6 parts of binder selected from the group consisting of polyvinyl acetate, polysulfone and polyether sulfone.
- 23. Ignition component according to claim 22, wherein the mixture of heat-conducting additive and oxidant consists of 60 to 90 parts of heat-conducting additive and 10 to 40 parts of KClO4.
Priority Claims (1)
Number |
Date |
Country |
Kind |
443 25 21 |
Sep 1994 |
DE |
|
CROSS REFERENCE TO RELATED APPLICATIONS
This application is a Continuation Application of Ser. No. 09/764,291 now abandoned, which application is a Continuation Application of Ser. No. 08/809,114, filed Mar. 13, 1997 now abandoned.
US Referenced Citations (18)
Continuations (2)
|
Number |
Date |
Country |
Parent |
09/764291 |
Jan 2001 |
US |
Child |
10/150059 |
|
US |
Parent |
08/809114 |
Mar 1997 |
US |
Child |
09/764291 |
|
US |