Unmanned aerial vehicle aerial fire protection device
A fire-fighting device and unmanned aerial vehicle technology, used in fire-resistant coatings, coatings, fire rescue and other directions, can solve problems such as danger, time-consuming and labor-intensive, and achieve a high degree of automation, improve life safety, and save manpower.
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Embodiment 1
[0046] Such as Figures 1 to 9 As shown, a UAV aerial fire-fighting device includes a UAV body 1. The UAV body 1 adopts the multi-rotor UAV of DJI INSPIRE 2, and the maximum load capacity can reach 50 kg; in order to realize the UAV The function of shooting images of forest fire isolated areas and extinguishing small fires in forest fire isolated areas, as well as realizing the function of sprinkling water in forest fire isolated areas, is provided with a photography unit 3 and a water spray unit for shooting under the drone body 1 2. A 匚-shaped plate 10 is fixed below the drone body 1, and a water tank 11 is disassembled and connected to the opening of the 匚-shaped plate 10. The water tank 11 can be used to hold water, and the water tank 11 is a hollow closed cuboid , the water tank 11 is made of stainless steel; in order to add water to the water tank 11 conveniently, a water filling hole 111 and an air pressure balance hole 112 are provided on the top surface of the water t...
Embodiment 2
[0060] The difference with embodiment 1 is the preparation of water tank 11 surface fireproof coating, wherein the preparation method of fireproof coating is as follows:
[0061] Take the following components by weight for subsequent use: 55 parts of pentaerythritol, 56 parts of titanium dioxide, 63 parts of ammonium polyphosphate powder, 8 parts of char-forming agent, 22 parts of zinc borate, 22 parts of cellulose ether, 13 parts of polycarbonate, 8 parts of melamine, 33 parts of acetone, 74 parts of deionized water;
[0062] S1. Grinding: Mix pentaerythritol, titanium dioxide, ammonium polyphosphate powder, zinc borate, cellulose ether, polycarbonate, and melamine and stir evenly, then grind at a high speed in a ball mill until a powder with a mesh size of 35 is obtained;
[0063] S2. Preparation of color paste: add charcoal forming agent, water and acetone to the powder obtained in S1 and perform high-speed grinding until the fineness is 20 μm to obtain color paste;
[006...
Embodiment 3
[0069] The difference with embodiment 1 is the preparation of water tank 11 surface fireproof coating, wherein the preparation method of fireproof coating is as follows:
[0070] Take the following components by weight for subsequent use: 53 parts of pentaerythritol, 56 parts of titanium dioxide, 65 parts of ammonium polyphosphate powder, 6 parts of char-forming agent, 22 parts of zinc borate, 22 parts of cellulose ether, 13 parts of polycarbonate, 8 parts of melamine, 33 parts of acetone, 74 parts of deionized water;
[0071] S1. Grinding: Mix pentaerythritol, titanium dioxide, ammonium polyphosphate powder, zinc borate, cellulose ether, polycarbonate, and melamine and stir evenly, then grind at a high speed in a ball mill until a powder with a mesh size of 35 is obtained;
[0072] S2. Preparation of color paste: add charcoal forming agent, water and acetone to the powder obtained in S1 and perform high-speed grinding until the fineness is 20 μm to obtain color paste;
[007...
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