ENERGETIC THERMOPLASTIC FILAMENTS FOR ADDITIVE MANUFACTURING AND METHODS FOR THEIR FABRICATION
An energetic thermoplastic filament comprising an energetic material bound within a thermoplastic matrix and methods for the fabrication of an energetic thermoplastic filament are disclosed. The energetic material comprises an energetic material selected from an explosive, a propellant, a pyrotechnic, an oxidizer, or combinations thereof. The thermoplastic comprises a TPE, ETPE, or combinations thereof. The thermoplastic filaments may be formed by extrusion. The energetic thermoplastic filaments are particularly suitable for additive manufacturing by thermal FDM style 3D printing systems.
1 . A method for the fabrication of an energetic thermoplastic filament, comprising the steps of:
providing an energetic thermoplastic composition to an extruder, the energetic thermoplastic composition comprising an energetic material and a thermoplastic elastomer;
extruding the energetic thermoplastic composition through an orifice of a heated nozzle to form an extrudate; and
reducing the temperature of the extrudate to immobilize the energetic material within a thermoplastic matrix and form the energetic thermoplastic filament.
2 . The method recited in claim 1 , comprising the step of:
reducing the particle size of the energetic thermoplastic composition constituents before providing the composition to the extruder.
3 . The method recited in claim 2 , wherein the step of reducing the particle size comprises placing the thermoplastic composition constituents in a device selected from the group consisting of a chopper, a ball mill, a rod mill, a cryochopper, a cryomill, an impact mill, and combinations thereof.
4 . The method recited in claim 1 , comprising the step of:
mixing the energetic thermoplastic composition into a homogeneous composition before providing the composition to the extruder.
5 . The method recited in claim 4 , wherein the mixing step comprises mixing the energetic thermoplastic composition constituents in a device selected from the group consisting of a high shear mixer, a dual asymmetric centrifugal mixer, an alpha blade mixer, a sigma blade mixer, a resonant acoustic mixer, a sonicator, a v-mixer, a multi-shaft mixer, and combinations thereof.
6 . The method recited in claim 1 , wherein the step of providing the energetic thermoplastic composition to the extruder includes providing the composition using a device selected from the group consisting of a vibratory shaker, a conveyor screw, a conveyor belt, a discharge elevator, a drag conveyor, a flood feeder, a starve feeder, and combinations thereof.
7 . The method recited in claim 1 , wherein the extruder is heated and temperature-controlled using a system selected from a hydronic heating system, an electric heating system, and combinations thereof.
8 . The method recited in claim 1 , wherein the heated nozzle has an inner nozzle diameter of at least about 1.5 mm.
9 . The method recited in claim 1 , wherein the heated nozzle has an inner nozzle diameter of not greater than about 4.0 mm.
10 . The method recited in claim 1 , wherein the heated nozzle is heated to a temperature of at least about 100° C.
11 . The method recited in claim 1 , wherein the heated nozzle is heated to a temperature of not greater than about 400° C.
12 . The method recited in claim 1 , wherein the cooling step comprises cooling the energetic thermoplastic extrudate in ambient air.
13 . The method recited in claim 1 , wherein the cooling step comprises cooling the energetic thermoplastic extrudate by forced air cooling, in a liquid bath, in a chiller, or combinations thereof.
14 . The method recited in claim 1 , wherein the extruder is a single screw extruder.
15 . An energetic thermoplastic filament comprising an energetic material and a thermoplastic elastomer, wherein the energetic material is bound and immobilized homogeneously within a thermoplastic elastomer matrix.
16 . The energetic thermoplastic filament recited in claim 15 , wherein the thermoplastic elastomer comprises a non-energetic thermoplastic elastomer.
17 . The energetic thermoplastic filament recited in claim 15 , wherein the thermoplastic elastomer comprises an energetic thermoplastic elastomer.
18 . The energetic thermoplastic filament recited in any on claim 17 , wherein the thermoplastic elastomer comprises an energetic oxetane.
19 . The energetic thermoplastic filament recited in claim 15 , wherein the energetic material comprises an explosive formulation.
20 . The energetic thermoplastic filament recited in claim 19 , wherein the explosive formulation comprises at least one of a primary explosive, a secondary explosive, a tertiary explosive, and mixtures thereof.
21 - 33 . (canceled)