Energetic materials using amorphous metals and metal alloys
View Patent ↗A method for improving the characteristics of energetic materials uses amorphous metals as one or more reactant of said materials. Improvements in properties and energy release characteristics for a wide range of energetic materials are obtained thereby, particularly in terms of processability, mechanical properties, and ignition behavior for solid energetic materials.
1. An energetic material system, comprising a fuel consisting substantially of at least one reactant of amorphous metal or amorphous metal alloy and which constitutes at least a structural portion of a bullet, shell, missile, bomb, munition, drone or delivery system which incorporates the energetic material system.
2. The energetic material system according to claim 1 , wherein the amorphous metal or amorphous metal alloy is selected so as to have a large negative enthalpy of reaction with oxygen or with at least one of fluorine, chlorine and bromine.
3. The energetic material system according to claim 1 , wherein the amorphous metal or amorphous metal alloy comprises more than 50 atomic percent of at least one of lithium, beryllium, sodium, magnesium, aluminum, silicon, calcium, scandium, titanium, chromium, yttrium, zirconium, niobium, lanthanum, cerium, gadolinium, hafnium, and tantalum.
4. The energetic material system according to claim 1 , wherein said at least one reactant is capable of participating in at least one of a thermite reaction, an intermetallic synthesis reaction and a combustion reaction.
5. The energetic material system according to claim 1 , wherein the amorphous metal or amorphous metal alloy is at least one fuel in the energetic material system having an oxidizer and is combinable with the oxidizer.
6. The energetic material system according to claim 5 , where the oxidizer is a solid material.
7. The energetic material system according to claim 5 , wherein the oxidizer is one of an oxygen-bearing fluid and a halogenated fluid.
8. The energetic material system according to claim 1 , further comprising a metal or a nonmetal to be combinable with the amorphous metal or amorphous metal alloy in an intermetallic synthesis reaction.
9. Ammunition device incorporating the energetic material system according to claim 1 , wherein the amorphous metal or amorphous metal alloy is selected so as to provide shear-induced ignition.