Core-shell structure thermite and preparation method thereof
A technology of core-shell structure and thermite, applied in the direction of explosives, etc., can solve the problems of low batch output, complex process equipment, long production cycle, etc., and achieve the effect of short production cycle, simple process and reduced activation energy
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Embodiment 1
[0022] Weigh 0.05g of silicon powder (100nm in diameter), place it in 100ml of isopropanol containing 0.05g of poly-4-vinylpyridine (P4VP) and sonicate for 4 hours, centrifuge, and wash away uncoated P4VP with isopropanol , after drying at 80°C for 12 hours, grind it for later use; place the obtained silicon powder coated with P4VP in 5ml of isopropanol, add 0.284g CuO, and ultrasonicate for 2 hours; dry it in vacuum at 80°C for 2 hours, grind and pulverize to obtain Silicon is the core, and CuO is the shell of the core-shell structure thermite. The DSC curves of the Si@CuO thermite and common Si / CuO thermite are shown in Figure 4 ,Depend on Figure 4 The obtained thermite had an initial ignition temperature of 658.6° C. and a calorific value per unit mass of 1061.4 J / g.
Embodiment 2
[0024] Weigh 0.05g of silicon powder (100nm in diameter), place it in 100ml of isopropanol containing 0.05g of poly-4-vinylpyridine (P4VP) and sonicate for 4 hours, centrifuge, and wash away uncoated P4VP with isopropanol , after drying at 80°C for 12 hours, grind it for later use; place the obtained silicon powder coated with P4VP in 5ml isopropanol, add 0.19g Fe 2 o 3 , sonicated for 2 hours; vacuum dried at 80°C for 2 hours, ground and pulverized to obtain silicon as the core, Fe 2 o 3 Si@Fe as the shell 2 o 3 Thermite with core-shell structure, the initial ignition temperature of the thermite is 670.9°C, and the heat per unit mass is 990.8J / g.
[0025] The obtained Si@MOx nanoscale core-shell structure thermite was characterized, and the results are shown in Figure 1-4 . figure 1 It is the XRD of the Si@CuO nanoscale core-shell structure thermite in Example 1. It can be seen from the figure that the characteristic diffraction peaks of Si and CuO appear. figure 2 I...
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