Humidifying micro-mixing burner
A burner, micro-mixing technology, applied in burners, gas fuel burners, combustion methods, etc., can solve the problems of insufficient fuel combustion, affecting users' health, slow air flow, etc., to avoid release and solve physical health problems Effect
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Embodiment 1
[0027] see Figure 1-Figure 3 Describe Example 1, a humidification micro-mixed burner in the figure, which is characterized in that it includes a burner body 1, an air intake assembly 7 and a humidification assembly 8, and the burner body 1 is provided with an inner ring 2 and an outer ring 3, The inner ring 2 communicates with the first air intake pipe 4, the outer ring 3 communicates with the second air intake pipe 5, and the first air intake pipe 4 and the second air intake pipe 5 are connected with an air delivery assembly 6 for combustion into the burner body 1 The air intake assembly 7 for supplementing air is installed on the burner body 1 and connected with the air delivery assembly 6, and the humidification assembly 8 for humidifying the burning part of the burner body 1 is installed in the air intake assembly 7;
[0028] see Figure 3-Figure 8 , the air intake assembly 7 in the illustration includes an air collecting hood 43 fixedly connected to the burner body 1, t...
Embodiment 2
[0038] see image 3 with Figure 9 Example 2 will be described. This embodiment will further explain Example 1. In the figure, the gas transmission assembly 6 includes two sets of connecting sleeves 36, and the two sets of connecting sleeves 36 are respectively located between the first air intake pipe 4 and the second air intake pipe 5. , and the inside is rotatably connected with a second wind wheel 37, one end of the second wind wheel 37 is fixedly connected with a second connecting shaft 38, and two sets of second connecting shafts 38 rotate with the first air intake pipe 4 and the second air intake pipe 5 respectively Connected, one end of the second connecting shaft 38 is connected with a transmission member 39 connected with the first bevel gear 23;
[0039] In this embodiment, when the first bevel gear 23 rotates, it will drive the transmission member 39 to run, and then will drive the two sets of second connecting shafts 38 to rotate, and then will drive the two sets...
Embodiment 3
[0041] see image 3 with Figure 9 Example 3 is described. This embodiment will further explain Example 2. In the figure, the transmission member 39 includes a transmission shaft 40 fixedly connected with the first bevel gear 23, and one end of the transmission shaft 40 is fixedly connected with a fourth spur gear 41. The fourth spur gear 41 is fixedly connected to the second connecting shaft 38, and the fifth spur gear 42 fixedly connected to another set of first connecting shafts 30 is meshed outside;
[0042] In this embodiment, when the first bevel gear 23 rotates, it will drive the transmission shaft 40 to rotate, and then will drive the fourth spur gear 41 to rotate, so it will drive the fifth spur gear 42 to rotate, and then will drive the two groups of first spur gears to rotate. The two connecting shafts 38 rotate, and because the rotation directions of the fourth spur gear 41 and the fifth spur gear 42 are opposite, the directions of the two sets of second wind whee...
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