Claims
- 1. A method of initiating an unconfined detonation in an atmosphere by a single-event process, said process comprising:
- (i) preparing a fuel-catalyst mixture housed in a container, said fuel-catalyst mixture comprised of from about 90 to about 98 weight percent fuel and from about 2 to about 10 weight percent of an initiating chemical catalyst when said detonation is achieved in an oxygen-sufficient atmosphere or in an oxygen-deficient atmosphere, said fuel selected from a volatile liquid of a lower molecular weight alkane or an epoxyalkane, aluminum powder, boron powder, and mixtures thereof, said initiating chemical catalyst selected from n-hexycarborane, carboranylmethyl propionate, ferrocene, and n-butylferrocene, and said fuel-catalyst mixture additionally containing an oxygen source when said detonation is achieved in an oxygen deficient atmosphere;
- (ii) dispersing said fuel-catalyst mixture from said container to form a cloud of atomized said fuel and atomized said initiating chemical catalyst, said cloud increasing in momentum as a result of interactions between said fuel, said initiating chemical catalyst, and oxygen carried into said cloud by air entrainment when said detonation is achieved in an oxygen-sufficient atmosphere, and said cloud increasing in momentum as a result of additional interactions between said fuel, said initiating chemical catalyst, and oxygen liberated from said oxygen source when said detonation is achieved in an oxygen-deficient atmosphere, endoatmosphere or exoatmosphere said interactions catalyzed by said initiating chemical catalyst during an induction time period which is the time from the time of said dispersion to the time of the explosion of said cloud, said induction time period controlled by the amount of said initiating chemical catalyst present in said fuel-catalyst mixture, and said explosion of said cloud completing the method of unconfined detonation by said single-event process.
- 2. The method of claim 1 wherein said fuel-catalyst mixture is prepared by including from about 10 to about 20 weight percent of an additional ingredient which functions as an enhancer for detonability, said enhancer for detonability being 1,2,3-tris[1,2-bis(difluoramino)ethoxy]propane.
- 3. The method of claim 1 wherein said detonation is achieved in an oxygen-deficient atmosphere, endoatmosphere or exoatmosphere and wherein said fuel-catalyst mixture contains a stoichiometric excess of said oxygen source which is ultrafinely-ground ammonium perchlorate.
- 4. The method of claim 3 wherein said fuel-catalyst mixture is prepared by including from about 10 to about 20 weight percent of an additional ingredient which functions as a further enhancer for detonability, said further enhancer for detonability being 1,2,3-tris[1,2-bis(difluoroamino)ethoxy]propane.
DEDICATORY CLAUSE
The invention described herein may be manufactured, used, and licensed by or for the Government for governmental purposes without the payment to me of any royalties thereon.
US Referenced Citations (5)