Air conditioner swing blade capable of adjusting air flow in multi-level mode
An air flow, multi-layer technology, applied in the field of air-conditioning swing blades, can solve the problems of inability to control the air outlet regulation on the back side of the air outlet, and can not meet the air outlet from the back side of the air outlet, etc., to improve the guiding strength and expand the circulation area. Effect
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Embodiment 1
[0045] Considering that the general column-shaped cabinet air conditioner has only one air outlet for air outlet, in order to expand the air outlet range, the side air outlet can be rotated, but this cabinet air conditioner is different from the hanging air conditioner in that it is different from the outside world. It is open in all directions. Unlike the wall-mounted air conditioner, which needs to be attached to the wall, the side is not open. However, if the cabinet air conditioner only expands the range through the rotation of the air outlet, it cannot satisfy the wind from the back side of the air outlet, because no matter the How to rotate the air outlet, there is no wind on the back side, and the existing air conditioner swing blades are only adjusted left and right or up and down, and the direction of the air flow is changed on the basis of the air outlet, and it is impossible to control the air out from the back side of the air outlet. In view of the adjustment proble...
Embodiment 2
[0051] In order to improve the guiding strength of the swing vane 110 and avoid the problem that the distance between the outer end of the swing vane 110 and the inner wall of the housing 210 is too large, so that the swing vane 110 cannot play a guiding role, the present embodiment discloses a side vane board 114, see Figure 7 As shown, a side blade 114 is slidably connected to one end of the swing vane 110 close to the inner wall of the housing 210, the outer end of the side vane 114 is a toothed structure, a gap is formed between adjacent teeth, and the side vane 114 is connected to the swing vane. The plates 110 are elastically connected by the connecting springs 1141 provided, and under the elastic force of the connecting springs 1141, the outer ends of the side vanes 114 always adhere to the inner wall of the casing 210, so that the air flow can only enter the guide grille 230 through the gap to prevent Improve the guiding strength of the swing blade 110 to the air flow...
Embodiment 3
[0056] Considering that the air flow cannot directly flow out through the guide grille 230 after passing through the gap, due to the guiding effect of the swinging blade 110, part of the air flow will first flow away from the guide grille 230, which reduces the For the air outlet efficiency of the air guide grille 230, please refer to Figure 9 As shown in the figure, a central cavity 122 is provided inside the pressing column 120, and sliding plates 1211 are symmetrically arranged on both sides of the central cavity 122. An air outlet cavity 1222 is formed on the side of the pressing column 120 close to the guide grille 230. The air outlet cavity 1222 and the sliding plate 1211 are both It communicates with the central cavity 122 , and the top and bottom of the integrated cavity formed by the three are in a sealed state. In addition, a plurality of fans 123 are arranged in the central cavity 122 at equal intervals along the length direction.
[0057] working principle:
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