Air guide component and air conditioner

By designing a avoidance structure on the blades of the air conditioner air guide component, the problem of restricted blade area is solved, the air flow guidance effect is enhanced, and the air guidance effect and air output are improved.

CN223138077UActive Publication Date: 2025-07-22GUANGZHOU HUALING REFRIGERATION EQUIP +1
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Patent Information

Application Number
CN202422411236.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-30
Publication Date
2025-07-22
Estimated Expiration
2034-09-30

AI Technical Summary

Technical Problem

In the air guide parts of existing air conditioners, the area of the blades is limited, which affects the air flow guidance effect and leads to poor air guidance effect.

Method used

Design a avoidance structure on the blades so that it can avoid the grille ribs, thereby increasing the area of the blades, making full use of the internal space of the guide style grid, and enhancing the airflow guidance effect.

Benefits of technology

By increasing the area of the louver, the air conduction effect of the air guide component is improved, the air flow is smoother, the flow loss is reduced, and the air output is increased.

✦ Generated by Eureka AI based on patent content.

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Abstract

The air guide component comprises an air guide grid and a louver mechanism, the air guide grid comprises grid ribs, the louver mechanism is arranged on the air guide grid and comprises a plurality of louver blades and a connecting rod, the louver blades are arranged in the first direction, each louver blade is rotationally connected with the air guide grid and the connecting rod, and the louver blades are arranged on the grid ribs. And avoiding structures for avoiding the grating ribs are formed on the louver blades. According to the air guide component provided by the embodiment of the utility model, the avoiding structures for avoiding the grating ribs are formed on the louvre blades, so that the internal space of the air guide grating can be fully utilized under the condition of avoiding interference between the louvre blades and the air guide grating, the area of the louvre blades is larger, and the air guide efficiency is improved by increasing the area of the louvre blades. The guiding effect of the louver blades on airflow can be enhanced, and then the overall air guiding effect of the air guiding component can be enhanced.
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Description

Technical Field

[0001] The utility model relates to the technical field of air conditioning equipment, and particularly relates to a wind guiding component and an air conditioner. Background Art

[0002] In the related art, a wind guiding component is often arranged in the air outlet channel of an air conditioner to adjust the air flow direction at the air outlet. In order to enhance the wind guiding effect, the wind guiding component includes a wind guiding grille and louver blades. However, due to the structural limitation of the wind guiding component itself, the area of the louver blades is small, which affects the air flow guiding effect of the louver blades. Therefore, this problem needs to be solved. Summary of the Utility Model

[0003] The utility model aims to at least solve one of the technical problems existing in the prior art. For this purpose, an object of the utility model is to provide a wind guiding component. By forming an avoidance structure on the louver blades for avoiding the grille ribs, the space inside the wind guiding grille can be fully utilized without interference between the louver blades and the wind guiding grille, so that the area of the louver blades can be increased. By increasing the area of the louver blades, the air flow guiding effect of the louver blades can be enhanced, and thus the overall wind guiding effect of the wind guiding component can be enhanced.

[0004] The utility model also provides an air conditioner having the above wind guiding component.

[0005] The wind guiding component according to the first aspect embodiment of the utility model includes: a wind guiding grille including grille ribs; a louver mechanism arranged on the wind guiding grille and including a plurality of louver blades and a connecting rod. The plurality of louver blades are arranged along a first direction, and each louver blade is rotatably connected to the wind guiding grille and the connecting rod. An avoidance structure for avoiding the grille ribs is formed on the louver blade.

[0006] For the wind guiding component according to the embodiment of the utility model, by forming an avoidance structure on the louver blades for avoiding the grille ribs, the space inside the wind guiding grille can be fully utilized without interference between the louver blades and the wind guiding grille, so that the area of the louver blades can be increased. By increasing the area of the louver blades, the air flow guiding effect of the louver blades can be enhanced, and thus the overall wind guiding effect of the wind guiding component can be enhanced.

[0007] According to some embodiments of the utility model, the avoidance structure includes at least one avoidance notch formed on the louver blade, and at least part of at least some of the grille ribs is received in the avoidance notch.

[0008] According to some embodiments of the utility model, the grille ribs extend along the first direction, and a plurality of the grille ribs are arranged at intervals. A flow guiding channel is defined between two adjacent grille ribs, and at least part of at least some of the louver blades is located in the flow guiding channel.

[0009] According to some embodiments of the present utility model, the avoidance structure includes a plurality of avoidance notches formed on the louver blades, and the plurality of avoidance notches on a single louver blade are arranged at intervals.

[0010] According to some embodiments of the present utility model, the louver blade has a first end and a second end which are oppositely arranged, and first louver shafts are provided at both the first end and the second end. The air deflector grille includes a grille frame and grille ribs, the grille ribs are arranged on the grille frame, the louver blade is located inside the grille frame, louver shaft holes are provided on the grille frame, and the first louver shafts are rotatably installed in the louver shaft holes. The louver blade has a third end and a fourth end which are oppositely arranged, and the avoidance notch is formed at the third end.

[0011] According to some embodiments of the present utility model, an avoidance opening for avoiding a connecting rod is formed at the third end. In the direction from the first end to the second end, the avoidance notch located in the middle of the louver blade is a middle avoidance notch, the avoidance opening is located on one side of the middle avoidance notch adjacent to the fourth end, a second louver shaft is provided on the louver blade, the second louver shaft is located between the avoidance opening and the middle avoidance notch, and the connecting rod is rotatably connected to the second louver shaft.

[0012] An air conditioner according to an embodiment of the second aspect of the present utility model includes: a housing component including a housing and an air outlet frame, an air inlet and an air outlet are formed on the housing, the air outlet frame is located inside the housing and has an air outlet channel; a heat exchanger component and a fan component are arranged inside the housing, and the fan component is located between the heat exchanger component and the air outlet frame; a wind guiding component is located inside the air outlet channel and is the wind guiding component according to the above-mentioned first aspect embodiment, the air deflector grille is rotatably connected to the air outlet frame, and the rotation axis of the air deflector grille extends along a first direction.

[0013] According to the air conditioner of the embodiment of the present utility model, by forming an avoidance structure on the louver blade for avoiding the grille ribs, the space inside the air deflector grille can be fully utilized while avoiding interference between the louver blade and the air deflector grille, so that the area of the louver blade can be made larger. By increasing the area of the louver blade, the air guiding effect of the louver blade on the air flow can be enhanced, and thus it is beneficial to enhance the overall air guiding effect of the wind guiding component.

[0014] According to some embodiments of the present utility model, the air outlet frame includes an air outlet frame body and a partition block. The air outlet frame body has the air outlet channel, and the partition block is arranged inside the air outlet channel to divide the air outlet channel into a plurality of air outlet areas arranged along the first direction, and rotatable wind guiding components are respectively arranged in the plurality of air outlet areas.

[0015] According to some embodiments of the present utility model, the driving mechanism for driving the air guiding component to rotate is a first driving mechanism. There are multiple first driving mechanisms, which are the same in number as the air guiding components and correspond to each other one by one. Each first driving mechanism is connected to the corresponding air guiding component.

[0016] According to some embodiments of the present utility model, the connecting rods in two adjacent air guiding components are connected by a connecting column. The connecting rods in two adjacent air guiding components are rotatably connected to the corresponding connecting column. The driving mechanism for driving the louver mechanism to move is a second driving mechanism. The louver mechanisms of multiple air guiding components share one second driving mechanism.

[0017] According to some embodiments of the present utility model, both sides of the air guide grille along the first direction have a first surface. A rotating shaft is provided on the first surface. Rotating holes are provided on both the air outlet frame body and the partition block. The rotating shaft is rotatably received in the corresponding rotating hole. A through hole for the connecting column to pass through is provided in the rotating shaft.

[0018] The additional aspects and advantages of the present utility model will be partially given in the following description, partially become obvious from the following description, or be understood through the practice of the present utility model. Description of the Drawings

[0019] The above and / or additional aspects and advantages of the present utility model will become obvious and easy to understand from the description of the embodiments in conjunction with the following drawings, where:

[0020] Figure 1 is a partial structural schematic diagram of an air conditioner indoor unit according to some embodiments of the present utility model;

[0021] Figure 2 is Figure 1 an exploded view of the air conditioner indoor unit in ;

[0022] Figure 3 is Figure 1 a three-dimensional schematic diagram of the assembly of the air outlet frame and the air guiding component in the air conditioner indoor unit in ;

[0023] Figure 4 is Figure 1 a schematic diagram of the air guiding component in the air conditioner indoor unit in ;

[0024] Figure 5 is Figure 4 a cross-sectional view taken along line A-A in ;

[0025] Figure 6 is Figure 4 a schematic diagram of the louver blades in the air guiding component in ;

[0026] Figure 7Yes Figure 6 A three-dimensional schematic diagram of the louver blades in

[0027] Reference numerals:

[0028] 100, indoor unit of air conditioner;

[0029] 1, housing component; 11, housing; 111, air outlet; 12, air outlet frame; 121, air outlet frame body; 122, partition block; 123, air outlet channel; 13, switch door; 131, third driving mechanism;

[0030] 2, air guiding component; 21, air guiding grille; 211, grille rib; 212, diversion channel; 213, grille frame; 214, louver shaft hole; 215, rotating shaft; 216, perforation; 217, connecting column; 22, louver mechanism; 221, connecting rod; 222, louver blade; 223, avoidance structure; 224, avoidance notch; 225, first end; 226, second end; 227, third end; 228, fourth end; 229, first louver shaft; 230, second louver shaft; 231, avoidance opening. Detailed implementation manners

[0031] The embodiments of the present utility model will be described in detail below. The examples of the embodiments are shown in the drawings, in which the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions from beginning to end. The embodiments described below by referring to the drawings are exemplary and are only used to explain the present utility model and should not be construed as a limitation to the present utility model.

[0032] Next, refer to Figures 1 - 7 to describe the air guiding component 2 according to the embodiments of the present utility model.

[0033] Refer to Figures 3 - 5 , for the air guiding component 2 according to the first aspect embodiment of the present utility model, the air guiding component 2 includes an air guiding grille 21 and a louver mechanism 22. The air guiding grille 21 includes grille ribs 211. The louver mechanism 22 is provided on the air guiding grille 21 and the louver mechanism 22 includes a plurality of louver blades 222 and a connecting rod 221. The plurality of louver blades 222 are arranged along a first direction (for example, the e1 direction in Figure 1 can be referred to). For example, the first direction can be the up and down direction. Each louver blade 222 is rotatably connected to both the air guiding grille 21 and the connecting rod 221. An avoidance structure 223 for avoiding the grille ribs 211 is formed on the louver blade 222. The louver mechanism 22 is provided on the air guiding grille 21. The air guiding grille 21 can play a role in supporting and protecting the louver mechanism 22. Each louver blade 222 is rotatably connected to both the air guiding grille 21 and the connecting rod 221. The movement of the connecting rod 221 can be driven to adjust the rotation amplitude of the louver blade 222, and thus the air flow direction and air flow rate flowing through the air guiding component 2 can be adjusted.

[0034] By forming an avoidance structure 223 on the louver 222 for avoiding the grille rib 211, it is convenient for the assembly between the air guide grille 21 and the louver 222, and the overall structure of the air guide grille 21 and the louver 222 can be made compact, and it can also reduce or prevent the possibility of interference between the louver 222 and the air guide grille 21; moreover, by forming an avoidance structure 223 on the louver 222 for avoiding the grille rib 211, the space inside the air guide grille 21 can be fully utilized, so that the area of the louver 222 can be made larger. By increasing the area of the louver 222, the guiding effect of the louver 222 on the air flow can be enhanced, which is conducive to enhancing the overall air guiding effect of the air guiding component 2.

[0035] For example, the air guiding component 2 is used for an air conditioner and is arranged in the air outlet passage 123 of the air conditioner. The air guiding component 2 can play a role in guiding the air flow in the air outlet passage 123, enabling the air flow to flow smoothly towards the air outlet 111, reducing the loss during the air flow process, and being conducive to increasing the air output; moreover, the louver mechanism 22 is arranged on the air guide grille 21. By driving the connecting rod 221 to move, the louver 222 can be driven to move. Furthermore, by adjusting the amplitude of the rotation of the louver 222, the air flow direction and air flow rate in the air outlet passage 123 can be further adjusted.

[0036] In the description of the present utility model, "a plurality of" means two or more.

[0037] According to the air guiding component 2 of the embodiment of the present utility model, by forming an avoidance structure 223 on the louver 222 for avoiding the grille rib 211, the space inside the air guide grille 21 can be fully utilized while avoiding interference between the louver 222 and the air guide grille 21, so that the area of the louver 222 can be made larger. By increasing the area of the louver 222, the guiding effect of the louver 222 on the air flow can be enhanced, which is conducive to enhancing the overall air guiding effect of the air guiding component 2.

[0038] Referring to Figures 5 - 7 , according to some embodiments of the present utility model, the avoidance structure 223 includes at least one avoidance notch 224 formed on the louver 222, and at least a part of the grille rib 211 is received in the avoidance notch 224. At least a part of the grille rib 211 being received in the avoidance notch 224 can fully utilize the space inside the air guide grille 21, making the overall structure of the air guide grille 21 and the louver 222 compact, and can also reduce or avoid the possibility of interference between the louver 222 and the air guide grille 21, and can make the area of the louver 222 larger. A larger area can enhance the guiding effect of the louver 222 on the air flow, which is conducive to enhancing the overall air guiding effect of the air guiding component 2.

[0039] Among them, at least a part of at least some of the grille ribs 211 being received in the avoidance notches 224 may include the following situations: For example, it may be that a part of some of the grille ribs 211 is received in the avoidance notches 224; for another example, it may be that a part of all of the grille ribs 211 is received in the avoidance notches 224.

[0040] Referring to Figure 3 , Figure 5 and Figure 6 , according to some embodiments of the present invention, the grille ribs 211 extend in a first direction, and there are a plurality of the grille ribs 211 arranged at intervals. A flow guiding channel 212 is defined between two adjacent grille ribs 211, and at least a part of at least some of the louvers 222 is located in the flow guiding channel 212. The plurality of grille ribs 211 arranged at intervals can enhance the overall structural strength of the air guiding grille 21 to a certain extent. The plurality of grille ribs 211 are arranged at intervals and a flow guiding channel 212 is defined between two adjacent grille ribs 211, which can guide the airflow flowing through the air guiding grille 21 and make the airflow distribution more uniform. By having at least a part of at least some of the louvers 222 located in the flow guiding channel 212, the direction of the airflow flowing through the flow guiding channel 212 can be further adjusted, and the space inside the air guiding grille 21 can be fully utilized, so that the area of the louvers 222 can be made larger and the overall structure of the louvers 222 and the air guiding grille 21 can be made more compact.

[0041] For example, the louvers 222 rotate in a first direction, and the air guiding grille 21 rotates in a second direction. The first direction intersects with the second direction. The rotation of the louvers 222 in the first direction can adjust the flow direction of the airflow in the first direction, and the rotation of the air guiding grille 21 in the second direction can adjust the flow direction of the airflow in the second direction, and the adjustment effect of the airflow flowing through the air guiding component 2 in multiple directions can be achieved.

[0042] Among them, at least a part of at least some of the louvers 222 being located in the flow guiding channel 212 may include the following situations: For example, it may be that a part of some of the louvers 222 is located in the flow guiding channel 212; for another example, it may be that a part of all of the louvers 222 is located in the flow guiding channel 212.

[0043] Referring to Figures 5 - 7 , according to some embodiments of the present invention, the avoidance structure 223 includes a plurality of avoidance notches 224 formed on the louvers 222, and the plurality of avoidance notches 224 on a single louver 222 are arranged at intervals. The plurality of avoidance notches 224 arranged at intervals can facilitate the accommodation of a part of the plurality of grille ribs 211 arranged at intervals in the avoidance notches 224, and further, the size of the louvers 222 can be made larger, thereby improving the air guiding effect of the louvers 222, and the overall structure of the louvers 222 and the air guiding grille 21 can be made compact.

[0044] Referring toFigures 5 - 7 , according to some embodiments of the present utility model, the louver blade 222 has a first end 225 and a second end 226 which are oppositely arranged. Both the first end 225 and the second end 226 are provided with a first louver shaft 229. The air guide grille 21 includes a grille frame 213 and grille ribs 211. The grille ribs 211 are arranged on the grille frame 213. The louver blade 222 is located within the grille frame 213. The grille frame 213 is provided with a louver shaft hole 214. The first louver shaft 229 is rotatably installed in the louver shaft hole 214. The louver blade 222 has a third end 227 and a fourth end 228 which are oppositely arranged. An avoidance notch 224 is formed at the third end 227. The louver shaft hole 214 can facilitate the accommodation of the first louver shaft 229 therein, facilitate the assembly between the air guide grille 21 and the louver blade 222, and can make the overall structure of the louver blade 222 and the air guide grille 21 compact. Multiple spaced-apart avoidance notches 224 are formed at the third end 227 of the louver blade 222, which can facilitate the accommodation of at least part of the grille ribs 211 therein, so that the area of the louver blade 222 is relatively large, thereby improving the air guiding effect of the louver blade 222.

[0045] Refer to Figure 3 , Figure 5 and Figure 7 , according to some embodiments of the present utility model, an avoidance opening 231 for avoiding the connecting rod 221 is formed at the third end 227. In the direction from the first end 225 to the second end 226, the avoidance notch 224 located in the middle of the louver blade 222 is the middle avoidance notch. The avoidance opening 231 is located on the side adjacent to the fourth end 228 of the middle avoidance notch. A second louver shaft 230 is provided on the louver blade 222. The second louver shaft 230 is located between the avoidance opening 231 and the middle avoidance notch. The connecting rod 221 is rotatably connected to the second louver shaft 230. The avoidance opening 231 can facilitate the accommodation of the connecting rod 221 therein, thereby facilitating the assembly between the connecting rod 221 and the louver blade 222 and making the overall structure of the connecting rod 221 and the louver blade 222 compact. The rotatable connection between the connecting rod 221 and the second louver shaft 230 can realize the rotatable connection between the louver blade 222 and the connecting rod 221.

[0046] For example, the driving mechanism for driving the louver mechanism 22 to move is a second driving mechanism. The second driving mechanism can drive the connecting rod 221 to move, thereby adjusting the rotation amplitude of the louver blade 222, regulating the flow direction and air flow rate of the air flowing through the air guide channel, and further adjusting the air flow direction at the air outlet 111.

[0047] Refer to Figures 1 - 3, An air conditioner according to the second aspect embodiment of the present utility model includes a housing component 1, a heat exchanger assembly, a fan assembly, and a wind guiding component 2. The housing component 1 includes a housing 11 and an air outlet frame 12. An air inlet and an air outlet 111 are formed on the housing 11. The air outlet frame 12 is located inside the housing 11 and has an air outlet passage 123. The heat exchanger assembly and the fan assembly are arranged inside the housing 11. The fan assembly is located between the heat exchanger assembly and the air outlet frame 12. When the air conditioner is operating, the fan assembly can drive air flow to enter the housing component 1 through the air inlet and flow towards the heat exchanger assembly. The air after heat exchange by the heat exchanger assembly can flow towards the air outlet 111 through the air outlet passage 123, and then be blown out through the air outlet 111 into the room to cool or heat the room.

[0048] The wind guiding component 2 is located inside the air outlet passage 123, and the wind guiding component 2 is the wind guiding component 2 according to the above-mentioned first aspect embodiment. The air guiding grille 21 is rotatably connected to the air outlet frame 12, and the rotation axis of the air guiding grille 21 extends along the first direction. The wind guiding component 2 is located inside the air outlet passage 123, which can guide the air flow inside the air outlet passage 123, enabling the air flow to flow towards the air outlet 111 more smoothly, reducing the loss during the air flow process, and being beneficial to increasing the air volume. Moreover, the wind guiding component 2 is rotatably connected to the air outlet frame 12. By adjusting the rotation amplitude of the wind guiding component 2, the direction of the air flow at the air outlet 111 can be adjusted.

[0049] Optionally, the wind guiding component 2 is provided with a first limiting structure, and the air outlet frame 12 is provided with a second limiting structure. When the wind guiding component 2 rotates to the first set angle position, the first limiting structure contacts the second limiting structure in the rotation direction of the wind guiding component 2. The wind guiding component 2 being provided with the first limiting structure can, to a certain extent, enhance the overall structural strength of the wind guiding component 2. The air outlet frame 12 being provided with the second limiting structure can, to a certain extent, enhance the overall structural strength of the air outlet frame 12. The contact connection between the first limiting structure and the second limiting structure can make the connection method between the first limiting structure and the second limiting structure simple and have strong stability. Moreover, through the contact between the first limiting structure and the second limiting structure, it can play a role in limiting the rotation of the wind guiding component 2. When the wind guiding component 2 rotates to the first set angle position, the wind guiding component 2 can be more stably maintained at the first set angle position, reducing or preventing the wind guiding component 2 from continuing to swing or rotate, which is beneficial to enhancing the stability during the operation of the air conditioner.

[0050] For example, during the operation of the air conditioner, the air guiding member 2 rotates relative to the air outlet frame 12. When the air guiding member 2 is located at the first set angular position and contacts the first limiting structure and the second limiting structure, the air guiding member 2 can be more stably maintained at the first set angular position, so that the air flow at the air outlet 111 can be more stably blown in the set direction. For another example, when the air conditioner is in the closed state, the air guiding member 2 is located at the first set angular position. By contacting the first limiting structure and the second limiting structure, the air guiding member 2 can be more stably maintained at the first set angular position, and the possibility of the air guiding member 2 continuing to swing or rotate can be reduced or prevented, which is beneficial to enhancing the stability of the air conditioner.

[0051] Optionally, a movable switch door 13 is provided at the air outlet 111. The switch door 13 is used to open or close the air outlet 111. When the air guiding member 2 rotates to the first set angular position, the air guiding member 2 is located on the side of the air outlet passage 123 away from the air outlet 111. When the air conditioner is in the shutdown state, the switch door 13 is in the closed position to close the air outlet 111. By the air guiding member 2 being located at the first set angular position, the possibility of interference and damage between the switch door 13 and the air guiding member 2 can be reduced or prevented.

[0052] In addition, third driving mechanisms 131 are provided on both sides of the switch door 13 along the first direction. The third driving mechanisms 131 can drive the switch door 13 to move circumferentially along the air outlet frame 12 to open or close the air outlet 111.

[0053] According to the air conditioner of the embodiment of the present invention, by providing the air guiding member 2, an avoidance structure 223 for avoiding the grid ribs 211 is formed on the louver blades 222 of the air guiding member 2. Without interference between the louver blades 222 and the air guiding grid 21, the space inside the air guiding grid 21 can be fully utilized, so that the area of the louver blades 222 can be made larger. By increasing the area of the louver blades 222, the guiding effect of the louver blades 222 on the air flow can be enhanced, and thus it is beneficial to enhancing the overall air guiding effect of the air guiding member 2.

[0054] Referring to Figure 1 、 Figure 3 and Figure 4 , according to some embodiments of the present invention, the air outlet frame 12 includes an air outlet frame body 121 and a partition block 122. An air outlet passage 123 is provided inside the air outlet frame body 121. The partition block 122 is arranged in the air outlet passage 123 to divide the air outlet passage 123 into a plurality of air outlet areas arranged along the first direction. Rotatable air guiding members 2 are respectively provided in the plurality of air outlet areas. By dividing the air outlet passage 123 into a plurality of air outlet areas arranged along the first direction by the partition block 122, and rotatable air guiding members 2 are respectively provided in each air outlet area, the air flow direction in each air outlet area can be adjusted respectively.

[0055] Referring to Figure 3 and Figure 4 According to some embodiments of the present utility model, the driving mechanism for driving the air guiding member 2 to rotate is a first driving mechanism. There are multiple first driving mechanisms, and the number of the first driving mechanisms is the same as that of the air guiding members 2 and the first driving mechanisms and the air guiding members 2 correspond to each other one by one. Each first driving mechanism is connected to the corresponding air guiding member 2. The first driving mechanism can drive the air guiding member 2 to rotate to adjust the direction of the air flow at the air outlet 111. By having multiple first driving mechanisms, the number of the first driving mechanisms being the same as that of the air guiding members 2, and the first driving structure and the air guiding members 2 corresponding to each other one by one, the rotation angles of the air guiding members 2 in each air outlet area can be driven respectively, and then the independent adjustment of the air flow direction in each air outlet area can be realized, so as to facilitate the user to adjust the air flow direction of each air outlet area according to the actual situation, which is beneficial to improving the user experience.

[0056] For example, the air guiding members 2 in each air outlet area can rotate synchronously; for another example, the air guiding members 2 in each air outlet area can rotate differentially in the same direction; for still another example, the air guiding members 2 in each air outlet area can rotate in different directions.

[0057] Referring to Figure 3 and Figure 4 According to some embodiments of the present utility model, the connecting rods 221 in two adjacent air guiding members 2 are connected by a connecting column 217. The connecting rods 221 in two adjacent air guiding members 2 are rotatably connected to the corresponding connecting column 217. The driving mechanism for driving the louver mechanism 22 to move is a second driving mechanism. The louver mechanisms 22 of multiple air guiding members 2 share one second driving mechanism. The second driving mechanism can drive the connecting rod 221 to move, and then adjust the amplitude of the rotation of the louver blades 222, so as to adjust the flow direction and air volume of the air flow flowing through the air guiding grille 21, and further adjust the air flow direction at the air outlet 111. By the connecting rods 221 in two adjacent air guiding members 2 being rotatably connected to the corresponding connecting column 217, and the louver mechanisms 22 of multiple air guiding members 2 sharing one second driving mechanism, the synchronous movement of the louver blades 222 in multiple air guiding members 2 can be realized by one second driving mechanism, and the further adjustment of the air flow direction and air volume in each air outlet area can be realized.

[0058] For example, when the air guiding members 2 in adjacent air outlet areas rotate in different directions, by the connecting rods 221 in two adjacent air guiding members 2 being rotatably connected to the corresponding connecting column 217, the synchronous movement of the louver blades 222 in the adjacent air outlet areas can also be realized by one second driving mechanism.

[0059] Referring to Figure 3 and Figure 4, according to some embodiments of the present utility model, both sides of the air guide grille 21 along the first direction have first surfaces, and the first surfaces are provided with rotating shafts 215. Rotating holes are provided on both the air outlet frame body 121 and the partition block 122. The rotating shafts 215 are rotatably received in the corresponding rotating holes, and the rotating shafts 215 have through holes 216 for the connecting columns 217 to pass through. The rotating holes can facilitate the accommodation of the rotating shafts 215 therein, thereby facilitating the assembly between the air outlet frame 12 and the air guide grille 21, and can make the overall structure of the air outlet frame 12 and the air guide grille 21 compact. The through holes 216 can facilitate the assembly of the connecting columns 217 on the air guide grille 21, and can make the overall structure of the connecting columns 217 and the air guide grille 21 compact.

[0060] The following refers to Figures 1 - 7 Describe the air conditioner according to some embodiments of the present utility model.

[0061] Refer to Figure 1 , Figure 2 and Figure 5 , in this embodiment, the air conditioner is a split floor-mounted air conditioner. The air conditioner includes an air conditioner indoor unit 100 and an air conditioner outdoor unit. The air conditioner indoor unit 100 includes a casing component 1, a heat exchanger assembly, a fan assembly, and an air guiding component 2.

[0062] The casing component 1 includes a casing 11 and an air outlet frame 12. An air inlet and an air outlet 111 are formed on the casing 11. The air outlet frame 12 is located inside the casing 11 and has an air outlet channel 123. The heat exchanger assembly and the fan assembly are arranged inside the casing 11. The fan assembly is located between the heat exchanger assembly and the air outlet frame 12. The air guiding component 2 is rotatably connected to the air outlet frame 12 and is located inside the air outlet channel 123. The rotation axis of the air guiding component 2 extends along the first direction.

[0063] The air outlet frame 12 includes an air outlet frame body 121 and a partition block 122. Rotating holes are provided on both the air outlet frame body 121 and the partition block 122. The air outlet frame body 121 has an air outlet channel 123 inside. The partition block 122 is arranged inside the air outlet channel 123 to divide the air outlet channel 123 into a plurality of air outlet areas arranged along the first direction. A plurality of air outlet areas are respectively provided with rotatable air guiding components 2.

[0064] The driving mechanism for driving the air guiding component 2 to rotate is a first driving mechanism. There are a plurality of first driving mechanisms, which are the same in number as the air guiding components 2 and correspond to each other one by one. Each first driving mechanism is connected to the corresponding air guiding component 2.

[0065] Each air guiding component 2 includes an air guiding grille 21 and a louver mechanism 22. The air guiding grille 21 is rotatably connected to the air outlet frame 12. The louver mechanism 22 is arranged on the air guiding grille 21. The louver mechanism 22 includes a connecting rod 221 and a plurality of louvers 222. The plurality of louvers 222 are arranged along a first direction. The plurality of louvers 222 are rotatably connected to the connecting rod 221 and rotatably connected to the air guiding grille 21. The connecting rods 221 in adjacent two air guiding components 2 are connected by a connecting column 217. The driving mechanism for driving the louver mechanism 22 to move is a second driving mechanism. The louver mechanisms 22 of the plurality of air guiding components 2 share one second driving mechanism.

[0066] The air guiding grille 21 includes a grille frame 213 and grille ribs 211. The grille ribs 211 are arranged on the grille frame 213. The grille frame 213 is provided with louver shaft holes 214. The grille ribs 211 extend along the first direction. The grille ribs 211 are a plurality of spaced-apart ones. A flow guiding channel 212 is defined between adjacent two grille ribs 211. At least a part of at least some louvers 222 is located in the flow guiding channel 212.

[0067] An avoidance structure 223 for avoiding the grille ribs 211 is formed on the louver 222. The avoidance structure 223 includes a plurality of avoidance notches 224 formed on the louver 222. At least a part of at least some grille ribs 211 is received in the avoidance notches 224. The plurality of avoidance notches 224 on a single louver 222 are arranged at intervals.

[0068] The louver 222 has a first end 225 and a second end 226 which are oppositely arranged. First louver shafts 229 are provided at both the first end 225 and the second end 226. The louver 222 is located inside the grille frame 213. The grille frame 213 is provided with louver shaft holes 214. The first louver shafts 229 are rotatably installed in the louver shaft holes 214. The louver 222 has a third end 227 and a fourth end 228 which are oppositely arranged. A plurality of spaced-apart avoidance notches 224 are formed at the third end 227. The louver 222 is located inside the grille frame 213. At least a part of at least some grille ribs 211 is received in the avoidance notches 224.

[0069] In the direction from the first end 225 to the second end 226, the avoidance notch 224 located in the middle of the louver 222 is a middle avoidance notch. An avoidance opening 231 is located on one side of the middle avoidance notch adjacent to the fourth end 228. A second louver shaft 230 is provided on the louver 222. The second louver shaft 230 is located between the avoidance opening 231 and the middle avoidance notch. The connecting rod 221 is rotatably connected to the second louver shaft 230.

[0070] By forming an avoidance structure 223 for avoiding the grille ribs 211 on the louver 222, the space inside the guide grille 21 can be fully utilized while avoiding interference between the louver 222 and the guide grille 21, so that the area of the louver 222 can be made larger. By increasing the area of the louver 222, the guiding effect of the louver 222 on the air flow can be enhanced, which is conducive to enhancing the overall air guiding effect of the air guiding component 2.

[0071] In the description of the present invention, it should be understood that the orientation or positional relationship indicated by the terms "center", "longitudinal", "transverse", "length", "width", "thickness", "upper", "lower", "front", "rear", "left", "right", "vertical", "horizontal", "top", "bottom", "inner", "outer", "clockwise", "counterclockwise", "axial", "radial", "circumferential", etc. is based on the orientation or positional relationship shown in the drawings, and is only for the convenience of describing the present invention and simplifying the description, rather than indicating or implying that the device or element referred to must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as a limitation to the present invention.

[0072] In the description of the present invention, the "first feature" and "second feature" may include one or more of such features.

[0073] In the description of the present invention, the first feature being "above" or "below" the second feature may include the first and second features being in direct contact, or may include the first and second features not being in direct contact but being in contact through additional features therebetween.

[0074] In the description of the present invention, the first feature being "above", "above" and "on" the second feature includes the first feature being directly above and obliquely above the second feature, or merely indicating that the horizontal height of the first feature is higher than that of the second feature.

[0075] In the description of this specification, the description with reference to terms such as "one embodiment", "some embodiments", "schematic embodiments", "examples", "specific examples", or "some examples", etc. means that the specific features, structures, materials, or characteristics described in connection with the embodiment or example are included in at least one embodiment or example of the present invention. In this specification, the schematic representations of the above terms do not necessarily refer to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described can be combined in a suitable manner in any one or more embodiments or examples.

[0076] Although embodiments of the present utility model have been shown and described, those of ordinary skill in the art can understand that various changes, modifications, substitutions, and variations can be made to these embodiments without departing from the principles and spirit of the present utility model. The scope of the present utility model is defined by the claims and their equivalents.

Claims

1. An air guiding component, characterized in that, Comprising: A guide grille, including grille ribs; A louver mechanism, disposed on the guide grille and including a plurality of louvers and connecting rods. The plurality of louvers are arranged in a first direction, and each louver is rotatably connected to the guide grille and the connecting rod. An avoidance structure for avoiding the grille ribs is formed on the louver.

2. The air guiding component according to claim 1, wherein The avoidance structure includes at least one avoidance notch formed on the louver, and at least a part of at least some of the grille ribs is received in the avoidance notch.

3. The air guiding component according to claim 1, characterized in that, The grille ribs extend in the first direction, and a plurality of the grille ribs are arranged at intervals. A flow guiding channel is defined between two adjacent grille ribs, and at least a part of at least some of the louvers is located in the flow guiding channel.

4. The air guiding component according to claim 3, characterized in that The avoidance structure includes a plurality of avoidance notches formed on the louver, and the plurality of avoidance notches on a single louver are arranged at intervals.

5. The air guiding component according to claim 4, wherein The louver has a first end and a second end which are oppositely arranged. First louver shafts are provided at both the first end and the second end. The guide grille includes a grille frame and the grille ribs. The grille ribs are provided on the grille frame. The louver is located within the grille frame. Louver shaft holes are provided on the grille frame, and the first louver shafts are rotatably installed in the louver shaft holes. The louver has a third end and a fourth end which are oppositely arranged, and the avoidance notch is formed at the third end.

6. The air guiding component according to claim 5, wherein An avoidance opening for avoiding the connecting rod is formed at the third end. In the direction from the first end to the second end, the avoidance notch located in the middle of the louver is a middle avoidance notch, and the avoidance opening is located on one side of the middle avoidance notch adjacent to the fourth end. A second louver shaft is provided on the louver, and the second louver shaft is located between the avoidance opening and the middle avoidance notch. The connecting rod is rotatably connected to the second louver shaft.

7. An air conditioner, characterized in that, Comprising: A housing component, including a housing and an air outlet frame. An air inlet and an air outlet are formed on the housing. The air outlet frame is located within the housing and has an air outlet channel; A heat exchanger assembly and a fan assembly, disposed within the housing. The fan assembly is located between the heat exchanger assembly and the air outlet frame; A wind guiding component, located within the air outlet channel and being the wind guiding component according to any one of claims 1-6. The guide grille is rotatably connected to the air outlet frame, and the rotation axis of the guide grille extends in the first direction.

8. The air conditioner according to claim 7, characterized in that, The air outlet frame includes an air outlet frame body and a partition block. The air outlet channel is formed within the air outlet frame body. The partition block is disposed within the air outlet channel to divide the air outlet channel into a plurality of air outlet areas arranged in the first direction. The rotatable wind guiding components are respectively provided in the plurality of air outlet areas.

9. The air conditioner according to claim 8, characterized in that, The driving mechanism for driving the wind guiding component to rotate is a first driving mechanism. There are a plurality of the first driving mechanisms, which are the same in number as the wind guiding components and are respectively in one-to-one correspondence. Each first driving mechanism is connected to the corresponding wind guiding component.

10. The air conditioner according to claim 9, characterized in that, The connecting rods in two adjacent ones of the air guiding components are connected by a connecting column, and the connecting rods in two adjacent ones of the air guiding components are rotatably connected to the corresponding connecting column. The driving mechanism for driving the louver mechanism is a second driving mechanism, and the louver mechanisms of multiple ones of the air guiding components share one second driving mechanism.

11. The air conditioner according to claim 10, wherein, Both sides of the air guiding grille along the first direction have a first surface, a rotating shaft is provided on the first surface, rotating holes are provided on both the air outlet frame body and the partition block, the rotating shaft is rotatably received in the corresponding rotating hole, and a through hole for the connecting column to pass through is provided in the rotating shaft.