Preparation method of Al/W/PTFE energetic material
A polytetrafluoroethylene and anhydrous ethanol technology is applied in the field of preparation of aluminum/tungsten/polytetrafluoroethylene energetic materials, which can solve the problem that Al/PTFE energetic materials cannot meet application requirements, and achieve the ability to increase damage targets. , The effect of increasing the strength limit and low cost
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Embodiment 1
[0019] A preparation method of aluminum / tungsten / polytetrafluoroethylene energetic material,
[0020] The Al / W / PTFE energetic material provided by this embodiment is composed of the following components by mass ratio: W40%, Al15.9%, PTFE44.1%
[0021] 1) Raw material powder preparation: Weigh out 40 g of W powder with a particle size of 3 μm, 15.9 g of Al powder with a particle size of 3 μm, and 44.1 g of PTFE powder with a particle size of 25 μm.
[0022] 2) Surface modification: Mix the aluminum powder and tungsten powder weighed above and immerse in an appropriate amount of absolute ethanol, add 0.559g of silane coupling agent therein, and soak for 6h.
[0023] 3) Powder mixing and drying step: Add the weighed PTFE powder to the above-mentioned surface-modified metal powder and immerse it in absolute ethanol, put it into a high-efficiency powder mixer and mix it thoroughly for 10 hours, then place it in an electric heating thermostat Dry, and set the temperature of the inc...
Embodiment 2
[0028] A preparation method of aluminum / tungsten / polytetrafluoroethylene energetic material,
[0029] The Al / W / PTFE energetic material provided by this embodiment is composed of the following components by mass ratio: W60%, Al10.6%, PTFE29.4%
[0030] 1) Raw material powder preparation: Weigh out 60 g of W powder with a particle size of 3 μm, 10.6 g of Al powder with a particle size of 3 μm, and 29.4 g of PTFE powder with a particle size of 25 μm.
[0031] 2) Surface modification: Mix the aluminum powder and tungsten powder weighed above and immerse in an appropriate amount of absolute ethanol, add 0.706g of silane coupling agent therein, and soak for 8 hours.
[0032] 3) Powder mixing and drying step: Add the weighed PTFE powder to the above-mentioned surface-modified metal powder and immerse it in absolute ethanol, put it into a high-efficiency powder mixer and mix it thoroughly for 8 hours, and place it in an electric heating thermostat To dry, set the temperature of the t...
Embodiment 3
[0037] A preparation method of aluminum / tungsten / polytetrafluoroethylene energetic material,
[0038] The Al / W / PTFE energetic material provided by this embodiment is composed of the following components by mass ratio: W20%, Al21.2%, PTFE58.8%
[0039] 1) Raw material powder preparation: Weigh out 20 g of W powder with a particle size of 3 μm, 21.2 g of Al powder with a particle size of 3 μm, and 58.8 g of PTFE powder with a particle size of 25 μm.
[0040] 2) Surface modification: Mix the aluminum powder and tungsten powder weighed above and immerse in an appropriate amount of absolute ethanol, add 0.412g of silane coupling agent therein, and soak for 10 hours.
[0041] 3) Powder mixing and drying step: Add the weighed PTFE powder to the above-mentioned surface-modified metal powder and immerse it in absolute ethanol, put it into a high-efficiency powder mixer and mix it thoroughly for 12 hours, then place it in an electric heating thermostat Dry, and set the temperature of t...
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