Charging device for water treatment agent based on vibrating screening
A technology of water treatment agent and charging device, which is applied in the direction of filter screen, solid separation, loading/unloading, etc., can solve the problems of poor filtering effect, long time consumption, low efficiency, etc., and achieve the purpose of improving charging efficiency, improving filtering effect, The effect of improving the service life
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Embodiment 1
[0041] see Figure 1-Figure 7 As shown, the present embodiment provides a charging device for water treatment agents based on vibratory screening, including a charging cylinder 100 and a vibrating screening device 200 inside the charging cylinder 100. The top of the charging cylinder 100 is communicated with a lower hopper 110. The bottom of the cylinder 100 is connected with a communication pipe 120, which can be inserted into the storage tank for water treatment, and then poured into the water treatment agent from the top opening of the lower hopper 110, so that the water treatment agent flows from the inside of the charging cylinder 100 along the communication pipe 120. Loaded into the storage barrel to ensure structural integrity, the vibratory screening device 200 includes at least:
[0042] Inserting ring 210, the outer wall of inserting ring 210 is provided with sealing arc plate 211, and sealing arc plate 211 is inserted inside charging cylinder 100, and the inner wall...
Embodiment 2
[0049] In order to improve the charging efficiency, the difference between this embodiment and embodiment 1 is that please refer to Figure 8 shown, where:
[0050] Support plate 224 is connected between the two convex plates 222, and there is rotating rod 2241 at the center of the top of supporting plate 224. The bottom of rotating rod 2241 is connected with anti-blocking motor 2244. The output shaft of the motor 2244 drives the rotating rod 2241 to rotate more easily on the support plate 224 top.
[0051] In order to brush off the water treatment agent blocked inside the filter screen 221, the outer wall of the rotating rod 2241 near the top is provided with an anti-blocking plate 2242, and the top of the anti-blocking plate 2242 is equidistantly provided with a plurality of anti-blocking brushes 2243, and the ends of the anti-blocking brushes 2243 Fitting the lower surface of the filter screen 221, the anti-blocking plate 2242 can be driven by the rotating rod 2241 to rota...
Embodiment 3
[0054] In order to facilitate the removal of the filter screen 221 and facilitate subsequent maintenance and replacement of the filter screen 221, the difference between this embodiment and Embodiment 1 is that please refer to Figure 9 shown, where:
[0055] The outer wall of the vibrating frame 220 near the top is provided with a card slot 226, the outer wall of the filter screen 221 is provided with a chute 2211, and a post 2212 slides inside the chute 2211, and the end of the post 2212 is fixedly connected to the end of the inner cavity of the chute 2211 The limit spring 2213, the card column 2212 is matched with the card slot 226, so that the card post 2212 can be inserted into the card slot 226, so that the filter screen 221 and the vibrating frame 220 are clamped and fixed. When dismounting, only need to press the card The column 2212 slides out from the inside of the card slot 226, and then slides into the inside of the chute 2211 to facilitate the removal of the filte...
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