LED street lamp efficient in heat dissipation and capable of conducting self-cleaning
An LED street light, self-cleaning technology, applied in cleaning methods and utensils, cleaning methods using liquids, lighting and heating equipment, etc., can solve problems such as affecting the service life of LED lights, affecting pedestrian identification of road conditions, and covering lampshades with dust, etc. Achieve good use value, facilitate promotion and use, and save water.
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Embodiment 1
[0017] High-efficiency heat dissipation self-cleaning LED street light, please refer to Figure 1-2 As shown, it includes a lamp post 1, an LED street lamp 4 and a lamp post base 2, the bottom of the lamp post 1 is fixed to the lamp post base 2, and both sides of the top of the lamp post 1 are fixed to support columns 5; the support columns 5 are respectively It is rotationally connected with the first pulley 6 and the second pulley 7; the bottom end of the lamp post 1 is fixed to the fixed post 11, and the fixed post 11 is provided with a sliding rope 12; the surface of the lamp post 1 is sleeved with the connecting plate 3 , and the top of the connecting plate 3 is fixedly connected to the reservoir 8; the reservoir 8 is provided with a water pump 9, and the water delivery end of the water pump 9 is connected to the outlet pipe 14; Some water pump switches 901 are electrically connected; the top of the reservoir 8 is connected to the water inlet pipe 15, and the top of the w...
Embodiment 2
[0026] It is basically the same as Example 1, except that the high-efficiency heat dissipation material is made of at least the following components by weight: 50 parts of iron, 2.4 parts of chromium, 1.5 parts of tungsten, 2.24 parts of nickel, 0.52 parts of silicon, carbon 0.56 parts, manganese 0.32 parts, carbon nanotubes 4.7 parts, nano copper 2.8 parts, nano aluminum 1.3 parts, nano silver 0.12 parts.
Embodiment 3
[0028] It is basically the same as Example 1, except that the high-efficiency heat dissipation material is made of at least the following components by weight: 50 parts of iron and iron, 2.6 parts of chromium, 1.4 parts of tungsten, 2.28 parts of nickel, 0.48 parts of silicon, 0.54 parts of carbon, 0.32 parts of manganese, 4.3 parts of carbon nanotubes, 3.2 parts of nano copper, 1.7 parts of nano aluminum, and 0.08 parts of nano silver.
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