Electrode plate structure of novel electrostatic adsorption type air purifier
An air purifier and electrostatic adsorption technology, which is applied in the field of electrode plate structure, can solve the problem of not enough, micro particles will pass through, etc., to achieve the effect of increasing efficiency, prolonging the travel path, and good dust removal effect
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Embodiment 1
[0019] Such as figure 1 As shown, the electrode plate structure of a novel electrostatic adsorption air cleaner of the present invention includes an anode electrode plate 1 and a cathode electrode plate 2 arranged in parallel, and a capacitive airflow is formed between the anode electrode plate 1 and the cathode electrode plate 2 The airflow channel 5 passing through is arranged in a zigzag shape.
[0020] In this embodiment, the air flow channel 5 is formed by a plurality of anode electrode plate protrusions 3 arranged on the anode electrode plate 1 and a plurality of cathode electrode plate 4 protrusions arranged on the cathode electrode plate 2; wherein, the The anode electrode plate protrusions 3 and the cathode electrode plate protrusions 4 are alternately arranged sequentially.
[0021] In this embodiment, the sum of the lengths of the adjacent anode electrode plate protrusions 3 and the cathode electrode plate protrusions 4 is greater than or equal to the distance betw...
Embodiment 2
[0025] Such as figure 2 As shown, the electrode plate structure of a novel electrostatic adsorption air purifier includes an anode electrode plate 1 and a cathode electrode plate 2 arranged in parallel, and an air flow is formed between the anode electrode plate 1 and the cathode electrode plate 2. The airflow channel 5 is arranged in a zigzag shape. The airflow channel 5 is formed 2 by an anode electrode plate 1 and a cathode electrode plate arranged in a wave shape.
[0026] In this embodiment, the anode electrode plate and the cathode electrode plate are arranged as a wave-like structure parallel to each other, and the air flow channel formed between the anode electrode plate and the cathode electrode plate can make the air flow detour and advance between the electrode plates, and the microparticles are directly connected to the electrode plates. The chance of collision is greatly increased, as is the chance of being captured by the electrode plates.
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