Radar-infrared-visible light multi-spectrum camouflage stealth structure and preparation method thereof
A visible light, multi-spectrum technology, used in protective equipment, camouflage devices, chemical instruments and methods, etc., can solve problems such as increasing the probability of weapons and equipment being discovered, and achieve the effects of low cost, strong controllability and small thermal conductivity
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preparation example Construction
[0047] Such as image 3 As shown, the preparation method of the radar-infrared-visible light multi-spectrum camouflage stealth structure provided by the embodiment of the present invention includes the following steps:
[0048] S301: Preparation of radar absorbing structural layer: dip the honeycomb panel on the surface layer in the aqueous solution of the first absorbent, spray the paint containing the second absorbent on the bottom layer on the surface of the honeycomb core, and dry it in an oven at 80°C. Then the surface layer and the bottom layer are bonded successively with three layers of skins; finally, the reflective layer is bonded to the bottom skin. After the bonding is completed, put it into an oven to cure at 80-100°C for more than 6 hours.
[0049] S302: Preparation of infrared heat-insulating stealth layer: spray coating containing infrared heat-insulating filler on the surface skin of the radar structure wave-absorbing coating prepared in S301, and cure at 110...
Embodiment 1
[0053] The composite board provided in Example 1 is sequentially provided with a radar absorbing structure layer, an infrared heat-insulating coating, an adhesive layer, and a wave-transmitting camouflage mesh layer from bottom to top. The radar absorbing structure layer from top to bottom is the surface skin, the surface honeycomb core, the interlayer skin, the bottom honeycomb core, the bottom skin, and the reflective layer.
[0054] In embodiment 1, the absorbent used in the first absorbing coating of the radar absorbing structure layer is carbon nanotubes, and the absorbing agent used in the second absorbing coating of the radar absorbing structure layer is carbonyl iron powder with high magnetic permeability and sendust powder. The components of the first wave-absorbing paint of the radar wave-absorbing structure layer include, by mass parts: 9.3 parts of carbon nanotubes, 100 parts of adhesive, 4 parts of wetting and dispersing agent, 1.5 parts of defoaming agent, and 50...
Embodiment 2
[0060] Following the preparation method of Example 1, the difference between Example 2 and Example 1 is that the components of the first wave-absorbing paint of the radar wave-absorbing structure layer include in parts by mass: the second wave-absorbing paint of the radar wave-absorbing structure layer The components of the wave paint include, in parts by mass: 40 parts of carbonyl iron powder, 35 parts of sendust powder, 20 parts of binder, and 30 parts of solvent. Infrared thermal insulation coating, 13 parts of adhesive, 11.5 parts of filler, 110 parts of diluent, cured at 110°C.
[0061] The stealth performance of embodiment 2 is: radar band L wave band (1-2GHz) average reflectivity-17.5dB, S wave band (2-4GHz) average reflectivity-14.8dB, C wave band (4-8GHz) average reflectivity The average reflectance of X-band (8-12GHz) is -19.4dB, the average reflectance of Ku-band (12-18GHz) is -26.1dB, and the average reflectance of Ka-band (26.5-40GHz) is -24.8dB; In the infrared ...
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