Air outlet frame, air outlet panel and air conditioner

The extruded plastic frame assembly for air conditioners simplifies production and reduces costs by allowing adjustable panels without separate molding, enhancing temperature regulation through motor-driven directional control.

CN223106252UActive Publication Date: 2025-07-15MIDEA GRP WUHAN HEATING & VENTILATING EQUIP CO LTD +1
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Patent Information

Application Number
CN202421235218.0
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-05-31
Publication Date
2025-07-15
Estimated Expiration
2034-05-31

AI Technical Summary

Technical Problem

In the prior art, the air outlet frame needs to be produced separately, resulting in high production costs and complex processes. The engineering grille and electric panel have defects, so that the airflow direction cannot be effectively adjusted.

Method used

The extruded frame wall and installation components manufactured by extrusion process, combined with rotatable air guide plates and drive modules, realize the adjustable length of the air outlet frame and automatic air sweep function, simplify production processes and reduce costs.

Benefits of technology

It realizes simplified production and reduced costs of air outlet frames of different lengths and sizes, and also has automatic air sweeping function, which improves the temperature adjustment effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model provides an air outlet frame, an air outlet panel and an air conditioner. The air outlet frame comprises two extrusion molding frame walls and two installation assemblies, and the two extrusion molding frame walls are arranged in the width direction of the air outlet frame in a spaced mode. The two installation assemblies are arranged on the two opposite sides of the two extrusion molding frame walls in the length direction of the air outlet frame, an air passing opening is defined by the two installation assemblies and the two extrusion molding frame walls, and the length direction is perpendicular to the width direction. The air outlet frame provided by the embodiment of the utility model is simple in production process, and air outlet frames with different lengths and sizes can be conveniently manufactured.
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Description

Technical Field

[0001] The present application relates to the technical field of air conditioners, and particularly to an air outlet frame, an air outlet panel and an air conditioner. Background Art

[0002] In the related art, the air outlet panels of air duct machines are mainly divided into two types, one is an engineering grille and the other is an electric panel. The production cost of the engineering grille is relatively low. However, the grille on the engineering grille can only be adjusted manually, without an automatic air-sweeping function. When the air duct machine is heating or cooling, the air flow cannot be effectively directed to the ground, and the effect of room temperature adjustment is not obvious. The electric panel can adjust the air outlet direction. However, the air outlet frame of the electric panel needs to be separately molded according to the size of the air outlet of the air duct machine during the manufacturing process, with complex processes and high manufacturing costs. Summary of the Invention

[0003] In view of this, the embodiments of the present application are expected to provide an air outlet frame, an air outlet panel and an air conditioner to solve the technical problem that the air outlet frame needs to be separately molded in the related art.

[0004] To achieve the above object, an embodiment of the present application provides an air outlet frame, including:

[0005] Two extrusion frame walls, which are arranged at intervals along the width direction of the air outlet frame;

[0006] Two installation components, which are arranged on the opposite sides of the two extrusion frame walls along the length direction of the air outlet frame, and the two installation components and the two extrusion frame walls enclose an air outlet, wherein the length direction is perpendicular to the width direction.

[0007] In one implementation, each of the installation components is detachably connected to the two extrusion frame walls.

[0008] In one implementation, the extrusion frame wall includes a support main body and an installation folding edge. The support main bodies of the two extrusion frame walls are arranged at intervals along the width direction, and the installation folding edge is arranged on the air outlet side of the support main body along the air outlet direction and bends away from the air outlet.

[0009] In one implementation, a first heat insulation channel extending along the length direction is formed at the junction of the installation folding edge and the support main body, and the first heat insulation channel extends between the opposite ends of the extrusion frame wall along the length direction.

[0010] In one embodiment, the extruded frame wall further includes a plurality of mounting posts, and the plurality of mounting posts are disposed on a side of the support body away from the air passing opening. A part of the mounting posts are fixedly connected to one of the two mounting components, and the other part of the mounting posts are fixedly connected to the other of the two mounting components.

[0011] Another embodiment of the present application provides an air outlet panel, including:

[0012] The air outlet frame described above;

[0013] A plurality of rotatable air guiding plates, and the plurality of air guiding plates are spaced apart along the width direction at the air passing opening, and the rotation axes of the air guiding plates extend along the length direction;

[0014] A driving module, and the driving module includes driving motors corresponding to the air guiding plates one by one. The driving motors are drivingly connected to the corresponding air guiding plates to drive the corresponding air guiding plates to rotate.

[0015] In one embodiment, the air guiding plate is an extruded air guiding plate; and / or,

[0016] The air guiding plate has a second heat insulation channel extending along the length direction, and the second heat insulation channel extends between opposite ends of the air guiding plate along the length direction.

[0017] In one embodiment, the air outlet panel includes a support frame disposed at the air passing opening and a support member disposed on the air guiding plate. The support frame is connected to the two extruded frame walls, and the support member is rotatably connected to the support frame.

[0018] In one embodiment, a chute extending along the length direction is formed on a side of the air guiding plate close to the support frame. The support member includes a sliding portion and a support portion disposed on the sliding portion. The sliding portion is slidably engaged in the chute so that the support member is slidably connected to the air guiding plate, and the support portion is rotatably connected to the support frame.

[0019] In one embodiment, the air outlet panel includes a rotating frame corresponding to the air guiding plate one by one and having a shaft hole. The rotating frame is disposed on the back side of the air guiding plate, and the driving shaft of each driving motor is inserted into the shaft hole of the corresponding rotating frame.

[0020] In one embodiment, the driving module is disposed on one of the mounting components, and each air guiding plate is rotatably connected to the other mounting component; or,

[0021] The driving module is respectively arranged on each of the installation components, and opposite ends of each air deflector along the length direction are respectively drivingly connected to the corresponding driving motor.

[0022] In one implementation, the installation component includes a base having a receiving cavity and a plurality of mounting holes. A motor mounting position corresponding to the air deflector one by one is arranged in the receiving cavity. The plurality of mounting holes are located on one side of the base close to the air deflector and are in one-to-one correspondence and communication with the motor mounting positions; or,

[0023] The installation component includes a base having a receiving cavity and a plurality of motor avoidance openings. A motor mounting position corresponding to the air deflector one by one is arranged in the receiving cavity. The plurality of motor avoidance openings are located on one side of the base close to the air deflector and are in one-to-one correspondence and communication with the motor mounting positions.

[0024] In one implementation, one side of the receiving cavity opposite to the plurality of mounting holes is open, and the installation component further includes a cover plate, and the cover plate is detachably covered at the open part of the receiving cavity.

[0025] In one implementation, the air outlet panel has a decorative cover corresponding to the installation component one by one, and the decorative cover is magnetically matched with the corresponding installation component to block the corresponding installation component.

[0026] In one implementation, the air outlet panel further includes a plurality of air outlet louvers located at the air passing openings. The plurality of air outlet louvers are arranged at intervals along the length direction and are rotatably connected to the two extruded plastic frame walls.

[0027] In one implementation, each air outlet louver is clamped to one of the extruded plastic frame walls and is connected to the other extruded plastic frame wall through a fastener.

[0028] Another embodiment of the present application provides an air conditioner, including:

[0029] An air duct machine, the air duct machine includes a housing having an air outlet;

[0030] The above-mentioned air outlet panel, and the air outlet panel is arranged at the air outlet.

[0031] The embodiments of the present application provide an air outlet frame, an air outlet panel and an air conditioner. By arranging extrusion frame walls on the opposite sides in the length direction of the air outlet frame, the extrusion frame walls can be processed into any appropriate length according to needs during the manufacturing process. When the two extrusion frame walls are assembled with the two installation components, an air outlet frame with the corresponding length can be manufactured. Compared with the air outlet frame manufactured by the injection molding process, the air outlet frame of the embodiments of the present application can manufacture air outlet frames with different length dimensions without separately opening a mold for production. Therefore, not only can the production process of the air outlet frame be simplified to facilitate the processing of air outlet frames with different length dimensions, but also the production cost can be reduced. Description of the Drawings

[0032] Figure 1 It is a schematic structural diagram of an air outlet panel provided by an embodiment of the present application, with the decorative cover on one side omitted in the figure;

[0033] Figure 2 is Figure 1 A schematic structural diagram of the air outlet panel shown from another perspective;

[0034] Figure 3 is Figure 1 A cross-sectional view of the air outlet panel shown;

[0035] Figure 4 It is a partial structural diagram of the air outlet panel shown in 1, with the air guide louvers omitted in the figure;

[0036] Figure 5 It is a partial structural diagram of the air outlet panel shown in 1, with the cover plate and the decorative cover omitted in the figure;

[0037] Figure 6 is Figure 1 A schematic structural diagram of the air outlet frame shown;

[0038] Figure 7 is Figure 1 A partial structural diagram of the air guide plate, the support member and the rotating frame shown;

[0039] Figure 8 is Figure 1 A schematic structural diagram of the support frame and the support member shown;

[0040] Figure 9 It is a schematic structural diagram of a base provided by an embodiment of the present application;

[0041] Figure 10 is Figure 9 A schematic structural diagram of the installation component and the rotating frame shown;

[0042] Figure 11 It is a schematic structural diagram of another base provided by an embodiment of the present application;

[0043] Figure 12 is Figure 11 a schematic structural view of the base shown in the figure.

[0044] Explanation of reference numerals in the drawings:

[0045] 10. Air outlet frame; 10a. Air passing opening; 11. Extruded plastic frame wall; 11a. First heat insulation channel; 111. Support main body; 112. Installation folding edge; 113. Installation post; 113a. Threaded hole; 12. Installation component; 121. Base; 121a. Accommodation cavity; 121a1. Motor installation position; 121b. Installation hole; 121c. Motor avoidance opening; 1211. First installation base; 1212. Second installation base; 122. Cover plate; 20. Air guide plate; 20a. Second heat insulation channel; 20b. Slide groove; 30. Driving module; 31. Driving motor; 311. Driving shaft; 40. Support frame; 40a. Rotating opening; 50. Support member; 51. Sliding part; 52. Support part; 521. Rotating shaft; 60. Rotating frame; 61. Fixed part; 62. Rotating part; 62a. Shaft hole; 70. Decorative cover; 80. Air outlet louvers. Detailed implementation manners

[0046] In the description of the embodiments of the present application, it should be noted that the terms "length direction" and "width direction" are based on the Figure 1 orientation or positional relationship shown in the figure. These orientation terms are only for the convenience of describing the embodiments of the present application 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 on the embodiments of the present application. In addition, the terms "first" and "second" are only used for descriptive purposes and cannot be construed as indicating or implying relative importance.

[0047] The embodiments of the present application provide an air outlet panel. Please refer to Figures 1 to 5 , the air outlet panel includes an air outlet frame 10, an air guide plate 20 and a driving module 30.

[0048] Please refer to Figure 1 , Figure 2 and Figure 6 , the air outlet frame 10 of the embodiments of the present application includes two extruded plastic frame walls 11 and two installation components 12.

[0049] The two extruded plastic frame walls 11 are arranged at intervals along the width direction of the air outlet frame 10. The two installation components 12 are arranged on the opposite sides of the two extruded plastic frame walls 11 along the length direction of the air outlet frame 10, and the two installation components 12 and the two extruded plastic frame walls 11 enclose an air passing opening 10a. Among them, the length direction and the width direction are perpendicular.

[0050] The air passing opening 10a is used for the air flow to pass through.

[0051] The extruded frame wall 11 is a frame wall processed by an extrusion process.

[0052] Extrusion, also known as extrusion molding, is a plastic molding process and one of the important methods for thermoplastic plastic molding. Extrusion refers to a processing method in which materials are heated and plasticized under the action of the barrel and screw of an extruder, and are continuously pushed forward by the screw and pass through the die head to form various cross-sectional products or semi-finished products.

[0053] During the manufacturing process, the extruded frame wall 11 manufactured by the extrusion process can be processed into any appropriate length as needed, so that air outlet frames 10 with different length dimensions can be manufactured, such as air outlet frames 10 with length dimensions of 1 meter, 3 meters, or greater than 3 meters.

[0054] Two mounting components 12 are used to fix two extruded frame walls 11. The two mounting components 12 are assembled with the two extruded frame walls 11 to jointly enclose an air outlet 10a.

[0055] Figure 2 The shown mounting component 12 is also used to fix other components (the specific solution will be described in detail in the following embodiments). Therefore, the structure of the mounting component 12 is different from that of the extruded frame wall 11. In some other embodiments, the mounting component 12 can also be an ordinary frame wall.

[0056] Generally speaking, the main difference in air outlet frames 10 of different specifications lies in the length dimension, while the width dimension is basically the same. Therefore, the mounting component 12 can be processed by an extrusion process or other processes. It can be understood that when the mounting component 12 is also processed by an extrusion process, it is also convenient to manufacture air outlet frames 10 with different widths.

[0057] Each mounting component 12 can be detachably connected to the two extruded frame walls 11 respectively. For example, the mounting component 12 and the extruded frame wall 11 can be firmly connected by fasteners such as screws and bolts, or can be connected by means of snap connection.

[0058] In some other embodiments, the mounting component 12 and the extruded frame wall 11 can also be connected in a non-detachable manner such as welding and bonding.

[0059] Please continue to refer to Figure 1 , the air outlet panel has a plurality of air guiding plates 20. The plurality of air guiding plates 20 are rotatably arranged at the air outlet 10a and are spaced along the width direction. The rotation axes of the air guiding plates 20 extend along the length direction.

[0060] The air guiding plates 20 are used to change the air outlet direction. Their rotation axes extend along the length direction, that is, the rotation axes are substantially parallel to the extruded frame wall 11 to realize the up-and-down air guiding of the air outlet panel.

[0061] The number of the air guiding plates 20 can be adjusted according to the width dimension of the air guiding plates 20 themselves and the width dimension of the air outlet frame 10. Exemplarily, please refer to Figure 1 , the number of the air guiding plates 20 can be 3.

[0062] The driving module 30 includes driving motors 31 corresponding to the air guiding plates 20 one by one. The driving motors 31 are drivingly connected to the corresponding air guiding plates 20 to drive the corresponding air guiding plates 20 to rotate. That is to say, the air guiding plates 20 are rotated in an electrically controlled manner.

[0063] The embodiment of the present application further provides an air conditioner, including an air duct machine and the air outlet panel provided in any embodiment of the present application. The air duct machine includes a housing having an air outlet, and the air outlet panel is arranged at the air outlet.

[0064] The air flow generated during the refrigeration or heating process of the air duct machine flows into the indoor environment through the air passing openings 10a of the air outlet frame 10, thereby realizing refrigeration or heating.

[0065] It should be noted that the air outlet panel of the embodiment of the present application is not limited to being used in cooperation with the air duct machine. According to needs, the air outlet panel can be used in cooperation with any other device that needs air guiding (including but not limited to air conditioners).

[0066] The air outlet frame 10 of the embodiment of the present application can be processed into any appropriate length according to needs during the manufacturing process by arranging extrusion frame walls 11 on the opposite sides in the length direction. When the two extrusion frame walls 11 are assembled with the two installation components 12, the air outlet frame 10 with the corresponding length can be manufactured. Compared with the air outlet frame manufactured by the injection molding process, the air outlet frame 10 of the embodiment of the present application can manufacture the air outlet frames 10 with different length dimensions without separately opening a mold for production. Thus, not only can the production process of the air outlet frame 10 be simplified to facilitate the processing of the air outlet frames 10 with different length dimensions, but also the production cost can be reduced.

[0067] In addition, the installation components 12 and the extrusion frame walls 11 may not be assembled into the air outlet frame 10 before leaving the factory. That is to say, the extrusion frame walls 11 and the installation components 12 can be separately packaged. After the extrusion frame walls 11 and the installation components 12 are transported to the supply outlets or installation sites everywhere, they are assembled at the supply outlets or installation sites. Thus, the packaging and transportation of the air outlet frame 10 can be simplified. Especially for the ultra-long air outlet frame 10, the difficulty of packaging and transportation can be reduced.

[0068] In one embodiment, please refer to Figure 3, the extruded frame wall 11 may include a support body 111 and a mounting flange 112. The support bodies 111 of the two extruded frame walls 11 are spaced apart in the width direction. The mounting flange 112 is provided on the air outlet side of the support body 111 along the air outlet direction and is bent away from the air passing opening 10a.

[0069] The support body 111 is used to enclose the air passing opening 10a with the two mounting components 12. The mounting flange 112 can play a certain shielding role. Taking an air duct machine as an example, the air duct machine is generally installed in the ceiling, and the air outlet panel is generally installed on the ceiling. Therefore, the mounting flange 112 can shield the gap between the air outlet frame 10 and the ceiling, making the joint between the air duct machine and the ceiling more beautiful.

[0070] Please continue to refer to Figure 3 , a first heat insulation channel 11a may be provided at the junction of the mounting flange 112 and the support body 111. The first heat insulation channel 11a extends between the opposite ends of the extruded frame wall 11 along the length direction of the air outlet frame 10.

[0071] The junction of the mounting flange 112 and the support body 111 refers to the connection position between the mounting flange 112 and the support body 111. Among them, the first heat insulation channel 11a can be provided on the support body 111, or can be provided on the mounting flange 112. The first heat insulation channel 11a can also be that a part of the area is located on the support body 111 and the other part of the area is located on the mounting flange 112.

[0072] The extending direction of the first heat insulation channel 11a can be parallel to the length direction of the air outlet frame 10, or can be inclined relative to the length direction of the air outlet frame 10.

[0073] Since the extruded frame wall 11 is processed by an extrusion process, therefore, during the manufacturing process of the extruded frame wall 11, the first heat insulation channel 11a can be formed by extrusion.

[0074] Specifically, during the refrigeration process of the air duct machine, the junction of the mounting flange 112 and the support body 111 is prone to condensation due to the temperature difference. By providing the first heat insulation channel 11a, it can play a certain heat insulation role, thus helping to reduce the generation of condensation.

[0075] Please continue to refer to Figure 3 , for the extruded frame wall 11 tightly connected to the mounting component 12, the extruded frame wall 11 can be provided with a plurality of mounting posts 113. The plurality of mounting posts 113 are provided on the side of the support body 111 facing away from the air passing opening 10a. One part of the mounting posts 113 is tightly connected to one of the two mounting components 12, and the other part of the mounting posts 113 is tightly connected to the other of the two mounting components 12.

[0076] That is, the mounting column 113 is used to connect the two extruded frame walls 11 and the two mounting components 12. Figure 3 Each mounting column 113 may be provided with a threaded hole 113a, and a fastening hole may be provided on the mounting assembly 12. The fastener is passed through the fastening hole and threadedly matched with the threaded hole 113a, so as to achieve a fastened connection between the mounting column 113 and the mounting assembly 12.

[0077] The number of mounting posts 113 is not limited, for example, see Figure 5 The extruded frame wall 11 has two mounting posts 113 on both sides along the length direction, which can reduce the number of parts of the air outlet frame 10 while ensuring the connection stability.

[0078] See also Figure 3 The mounting column 113 can be integrally formed with the supporting body 111, that is, the mounting column 113 is extruded together with the supporting body 111 to reduce the processing steps.

[0079] In one embodiment, the air guide plate 20 can be an extruded air guide plate, that is, the air guide plate 20 can also be processed by an extrusion process, and the extruded air guide plate can be processed into a corresponding length according to the length of the extruded frame wall 11, without the need for separate mold production, thereby simplifying the production process and reducing production costs.

[0080] In one embodiment, please refer to Figure 3 , Figure 5 and Figure 7 The air guide plate 20 may have a second temperature insulation channel 20 a, and the second temperature insulation channel 20 a extends between opposite ends of the air guide plate 20 along the length direction of the air outlet frame 10.

[0081] The extension direction of the second temperature insulation channel 20 a may be parallel to the length direction of the air outlet frame 10 , or may be inclined relative to the length direction of the air outlet frame 10 .

[0082] The number of the second temperature-insulating channels 20a is not limited. For example, please refer to Figure 7 The air guide plate 20 may have two second temperature-insulating channels 20a, and the two second temperature-insulating channels 20a are spaced apart in the width direction. In another embodiment, the air guide plate 20 may also have one, three or more second temperature-insulating channels 20a.

[0083] During the refrigeration process of the air duct mechanism, condensation is also easily generated on the air guide plate 20 . Therefore, by providing the second temperature insulation channel 20 a , a certain temperature insulation effect can also be achieved, thereby facilitating the reduction of condensation on the air guide plate 20 .

[0084] In addition, for the extrusion-molded air guide plate, a second heat insulation channel 20a can be formed by extrusion, eliminating the need for separate machining of the second heat insulation channel 20a. This reduces the processing steps and improves production efficiency.

[0085] In one embodiment, referring to Figure 3 、 Figure 4 and Figure 8 , the air outlet panel can be provided with a support frame 40 and a support member 50. The support frame 40 is disposed at the air passage opening 10a, and the support member 50 is disposed on the air guide plate 20. The support frame 40 is connected to the two extrusion-molded frame walls 11, and the support member 50 is rotatably connected to the support frame 40.

[0086] The support frame 40 and the support member 50 are used to support the air guide plate 20. The support frame 40 is connected to the two extrusion-molded frame walls 11 to ensure the stability of the support of the support frame 40, while the support member 50 is rotatably connected to the support frame 40, ensuring that the air guide plate 20 can rotate normally.

[0087] Exemplarily, referring to Figure 8 , the support portion 52 can have a rotating shaft 521, and the support frame 40 has a rotating opening 40a. The rotating shaft 521 can be snapped into the rotating opening 40a to achieve the rotational connection between the support member 50 and the support frame 40.

[0088] For the air outlet frame 10 with a relatively long length dimension, such as an air outlet frame 10 with a length of 3 meters or more, the length dimension of the air guide plate 20 is also relatively long. Therefore, the support frame 40 and the support member 50 are provided to effectively support the air guide plate 20, better preventing the air guide plate 20 from deforming.

[0089] Further, referring to Figure 4 and Figure 8 , a chute 20b extending along the length direction can be formed on one side of the air guide plate 20 close to the support frame 40. The support member 50 includes a sliding portion 51 and a support portion 52 provided on the sliding portion 51. The sliding portion 51 is slidably snapped into the chute 20b, enabling the support member 50 to be slidably connected to the air guide plate 20, that is, allowing the support member 50 to slide on the air guide plate 20. The support portion 52 is rotatably connected to the support frame 40.

[0090] The provision of the chute 20b not only facilitates the adjustment of the position of the support member 50 to ensure that the support member 50 can be aligned with the support frame 40, but also facilitates the adjustment of the number of support members 50 according to the number of support frames 40 to meet different installation requirements.

[0091] In addition, for the extrusion-molded air guide plate, the chute 20b is formed by extrusion without the need for separate machining, reducing the processing steps and improving production efficiency.

[0092] In one embodiment, referring toFigure 7 , Figure 10 and Figure 11 , the air outlet panel can be provided with a rotating frame 60 having a shaft hole 62a. The rotating frames 60 correspond one-to-one with the air deflector plates 20. The rotating frame 60 is disposed on the back side of the air deflector plate 20, and the drive shafts 311 of the respective drive motors 31 are inserted into the shaft holes 62a of the corresponding rotating frames 60.

[0093] The back side of the air deflector plate 20 refers to the side of the air deflector plate 20 that faces away from the appearance surface of the air deflector plate 20.

[0094] The rotating frame 60 is used to pass through the drive shaft 311 of the drive motor 31 to play a role in limiting the drive shaft 311.

[0095] The rotating frame 60 is disposed on the back side of the air deflector plate 20, and the rotating frame 60 can be shielded by the air deflector plate 20 to make the appearance of the air outlet panel more beautiful.

[0096] For the air deflector plate 20 having a chute 20b, the rotating frame 60 can be connected to the air deflector plate 20 by being snapped into the chute 20b. Exemplarily, please refer to Figure 7 , the rotating frame 60 can include a fixing portion 61 and a rotating portion 62. The rotating portion 62 has a shaft hole 62a. The fixing portion 61 is snapped into the chute 20b, and the rotating portion 62 is drivingly connected to the drive motor 31 to drive the air deflector plate 20 to rotate. In some embodiments, the fixing portion 61 and the chute 20b can be in an interference fit to enhance the connection stability between the rotating frame 60 and the air deflector plate 20.

[0097] In another embodiment, the rotating frame 60 and the air deflector plate 20 can be tightly connected, or can be connected by other connection methods such as gluing or welding.

[0098] In one embodiment, please refer to Figure 5 and Figure 11 , drive modules 30 can be respectively provided on the respective mounting components 12, and the opposite ends of each air deflector plate 20 along the length direction of the air outlet frame 10 are respectively drivingly connected to the corresponding drive motors 31.

[0099] For the air outlet frame 10 with a relatively long length dimension, such as an air outlet frame 10 of 3 meters or more, the length dimension of the air deflector plate 20 is also relatively long. If only one drive motor 31 is provided at one end of the air deflector plate 20, it is difficult to ensure the stability of the rotation of the air deflector plate 20, which will thus affect the air guiding effect of the air deflector plate 20. Therefore, by respectively providing drive modules 30 on the two mounting components 12, one air deflector plate 20 can be rotated under the drive of two drive motors 31, thereby ensuring more stable rotation of the air deflector plate 20.

[0100] In another embodiment, the driving module 30 may also be disposed on one of the mounting components 12, and each air deflector 20 is rotatably connected to the other mounting component 12.

[0101] That is to say, one end of each air deflector 20 along the length direction of the air outlet frame 10 is drivingly connected to the corresponding driving motor 31 in the driving module 30, and the other end of each air deflector 20 along the length direction of the air outlet frame 10 is only rotatably connected to the mounting component 12, without additionally configuring a driving module 30. For an air outlet frame 10 with a relatively short length dimension, such as an air outlet frame 10 about 1 meter long, the length dimension of the air deflector 20 is also relatively short. Therefore, by disposing the driving module 30 at one end of each air deflector 20 along the length direction of the air outlet frame 10, it can be ensured that each air deflector 20 can rotate stably. And the driving module 30 is disposed on one of the mounting components 12, which is convenient for installing the driving module 30 and can also make the structure of the air outlet panel more compact.

[0102] The structural form of the mounting component 12 can be various. Exemplarily, please refer to Figure 9 and Figure 10 , the mounting component 12 may include a base 121 having a receiving cavity 121a and a plurality of mounting holes 121b. A motor mounting position 121a1 corresponding to the air deflector 20 is provided in the receiving cavity 121a. The plurality of mounting holes 121b are located on a side of the base 121 close to the air deflector 20 and are in one-to-one correspondence and communication with the motor mounting position 121a1.

[0103] When the driving module 30 is disposed on the mounting component 12, the driving motor 31 can be mounted at the motor mounting position 121a1, and the driving shaft 311 and the air deflector 20 can be drivingly connected through the mounting hole 121b. When the driving module 30 is not disposed on the mounting component 12, the air deflector 20 can be rotatably connected to the mounting component 12 through the mounting hole 121b. It is equivalent that the same structural form of the mounting component 12 can be used to mount the driving motor 31 and can also be used for rotatably connecting with the air deflector 20, thereby improving the versatility of the mounting component 12.

[0104] Please refer to Figure 10 , for an embodiment in which the air outlet panel includes a rotating frame 60, the rotating frame 60 may include a fixing portion 61 and a rotating portion 62 having a shaft hole 62a. The fixing portion 61 is connected to the air deflector 20, and the rotating portion 62 can rotate through the mounting hole 121b. When the driving motor 31 is disposed in the motor mounting position 121a1, the driving shaft 311 of the driving motor 31 can be inserted into the shaft hole 62a to drive the rotating frame 60 and the air deflector 20 to rotate. When the driving motor 31 is not disposed in the motor mounting position 121a1, the rotating portion 62 can directly rotate through the mounting hole 121b.

[0105] Exemplarily, please refer toFigure 11 and Figure 12 The mounting assembly 12 may also include a base 121 having a receiving cavity 121a and a plurality of motor avoidance openings 121c. A motor mounting position 121a1 corresponding to the air deflector 20 one by one is provided in the receiving cavity 121a. The plurality of motor avoidance openings 121c are located on one side of the base 121 close to the air deflector 20 and communicate with the motor mounting positions 121a1 one by one.

[0106] The driving motor 31 can directly pass through the motor avoidance opening 121c to be drivingly connected to the air deflector 20, so as to reduce the friction when the air deflector 20 rotates.

[0107] Figure 5 and Figure 6 As shown in the air outlet panel, two mounting assemblies 12 with two different structural forms are provided. One of the two mounting assemblies 12 includes a base 121 having a receiving cavity 121a and a plurality of motor avoidance openings 121c, and the other includes a base 121 having a receiving cavity 121a and a plurality of mounting holes 121b. For the convenience of description, the two bases 121 can be respectively referred to as a first mounting base 1211 and a second mounting base 1212. The first mounting base 1211 is used to mount the driving motor 31, and the second mounting base 1212 can be installed or not installed with the driving motor 31 according to needs.

[0108] In one embodiment, please refer to Figure 10 and Figure 12 On one side of the receiving cavity 121a opposite to the plurality of mounting holes 121b can be open. The mounting assembly 12 further includes a cover plate 122, and the cover plate 122 is detachably covered at the open place of the receiving cavity 121a.

[0109] Covering the cover plate 122 at the open place can play a role in dust and water prevention to protect the normal operation of the motor. At the same time, since the cover plate 122 is detachable, the driving motor 31 can be conveniently disassembled and assembled, which is convenient for subsequent maintenance.

[0110] In one embodiment, please refer to Figure 1 、 Figure 2 and Figure 4 The air outlet panel has a decorative cover 70 corresponding to the mounting assembly 12 one by one, and the decorative cover 70 is magnetically attracted to the corresponding mounting assembly 12 to block the corresponding mounting assembly 12.

[0111] The decorative cover 70 can play a role in blocking the mounting assembly 12. Please refer to Figure 1 and and Figure 2 The decorative cover 70 is located on the air outlet side of the air outlet panel to maintain the aesthetics of the air outlet panel. And through the magnetic attraction, the assembly efficiency can be improved and the number of components can be reduced. In another embodiment, the decorative cover 70 and the mounting assembly 12 can also be connected by snap connection or adhesive connection.

[0112] In one embodiment, please refer to Figure 2 and Figure 3 , the air outlet panel further includes a plurality of air outlet louvers 80 located at the air passing openings 10a. The plurality of air outlet louvers 80 are arranged at intervals along the length direction and are rotatably connected to the two extruded frame walls 11.

[0113] That is to say, the air outlet louvers 80 are perpendicular to the extending direction of the air guiding plate 20 to adjust the air guiding direction in the length direction of the air outlet frame 10 (i.e., the so-called left and right air guiding). Therefore, by providing a plurality of air outlet louvers 80, the air outlet range of the air outlet panel can be increased.

[0114] Exemplarily, please refer to Figure 3 , each air outlet louver 80 can be snap-connected to one of the extruded frame walls 11 and connected to the other extruded frame wall 11 through fasteners such as screws.

[0115] It should be noted that the fasteners used to connect the air outlet louvers 80 and the extruded frame walls 11 only act as a rotating shaft. That is to say, the fasteners do not prevent the air outlet louvers 80 from rotating. For example, when the connection between the fasteners and the extruded frame walls 11 is relatively firm, the air outlet louvers 80 can rotate around the fasteners while the fasteners remain stationary. When the connection between the fasteners and the extruded frame walls 11 is relatively loose, the fasteners can rotate together with the air outlet louvers 80.

[0116] Each air outlet louver 80 is snap-connected to one of the extruded frame walls 11, which can reduce the number of fasteners and improve the installation efficiency of the air outlet louvers 80.

[0117] Figure 2 and Figure 3 The air outlet louvers 80 in

[0118] rotate manually. That is to say, the air outlet louvers 80 are not equipped with a motor. The operator rotates the air outlet louvers 80 manually to change the angle of the air outlet louvers 80. Thus, the air outlet panel can simultaneously have the beauty and low cost of an engineering grille and the up and down air guiding function of an electric panel.

[0119] In the description of the present application, the descriptions with reference to the terms "in one embodiment", "in some embodiments", "in other embodiments", "in still other embodiments", or "exemplary", etc. mean 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 embodiments of the present application. In the present application, the schematic representations of the above terms are not necessarily directed to the same embodiment or example. Moreover, the specific features, structures, materials, or characteristics described may be combined in any one or more embodiments or examples in a suitable manner. In addition, without contradiction, those skilled in the art may combine the different embodiments or examples described in the present application and the features of the different embodiments or examples.

[0120] The foregoing are only the preferred embodiments of the present application and are not intended to limit the present application. For those skilled in the art, the present application may have various changes and modifications. Any modification, equivalent replacement, improvement, etc. made within the spirit and principle of the present application are included in the protection scope of the present application.

Claims

1. An air outlet frame, characterized in that, Comprising: Two extrusion frame walls, the two extrusion frame walls being spaced apart along the width direction of the air outlet frame; Two mounting components, the two mounting components being arranged on opposite sides of the two extrusion frame walls along the length direction of the air outlet frame, the two mounting components and the two extrusion frame walls enclosing an air outlet, wherein the length direction is perpendicular to the width direction.

2. The air outlet frame according to claim 1, characterized in that, Each of the mounting components is detachably connected to the two extrusion frame walls respectively.

3. The air outlet frame according to claim 1, characterized in that The extrusion frame wall includes a support body and a mounting flange, the support bodies of the two extrusion frame walls being spaced apart along the width direction, the mounting flange being arranged on the air outlet side of the support body along the air outlet direction and bending away from the air outlet.

4. The air outlet frame according to claim 3, characterized in that, There is a first heat insulation channel at the junction of the mounting flange and the support body, the first heat insulation channel extending between opposite ends of the extrusion frame wall along the length direction.

5. The air outlet frame according to claim 3, wherein The extrusion frame wall further includes a plurality of mounting posts, the plurality of mounting posts being arranged on the side of the support body facing away from the air outlet, a part of the mounting posts being fixedly connected to one of the two mounting components, and another part of the mounting posts being fixedly connected to the other of the two mounting components.

6. An air outlet panel, characterized in that, Comprising: The air outlet frame according to any one of claims 1-5; A plurality of rotatable air guide plates, the plurality of air guide plates being spaced apart along the width direction at the air outlet, and the rotation axes of the air guide plates extending along the length direction; A driving module, the driving module including driving motors corresponding to the air guide plates one by one, the driving motors being drivingly connected to the corresponding air guide plates to drive the corresponding air guide plates to rotate.

7. The air outlet panel according to claim 6, wherein, The air guide plate is an extrusion air guide plate; and / or, The air guide plate has a second heat insulation channel, the second heat insulation channel extending between opposite ends of the air guide plate along the length direction.

8. The air outlet panel according to claim 6 or 7, characterized in that, The air outlet panel includes a support frame arranged at the air outlet and a support member arranged on the air guide plate, the support frame being connected to the two extrusion frame walls, and the support member being rotatably connected to the support frame.

9. The air outlet panel according to claim 8, characterized in that, A chute extending along the length direction is formed on the side of the air guide plate close to the support frame, the support member includes a sliding portion and a support portion arranged on the sliding portion, the sliding portion being slidably engaged in the chute so that the support member is slidably connected to the air guide plate, and the support portion being rotatably connected to the support frame.

10. The air outlet panel according to claim 6 or 7, characterized in that The air outlet panel includes a rotating frame corresponding to the air guide plate one by one and having a shaft hole, the rotating frame being arranged on the back side of the air guide plate, and the driving shaft of each driving motor being inserted into the shaft hole of the corresponding rotating frame.

11. The air outlet panel according to claim 6 or 7, characterized in that, The driving module is arranged on one of the mounting components, and each air guide plate is rotatably connected to the other mounting component; or, The driving module is respectively arranged on each of the mounting components, and opposite ends of each air guide plate along the length direction are respectively drivingly connected to the corresponding driving motor.

12. The air outlet panel according to claim 11, wherein The installation component includes a base having a receiving cavity and a plurality of mounting holes. A motor mounting position corresponding to each air guide plate is provided in the receiving cavity. The plurality of mounting holes are located on a side of the base close to the air guide plate and are in one-to-one correspondence and communication with the motor mounting positions; or, The installation component includes a base having a receiving cavity and a plurality of motor avoidance openings. A motor mounting position corresponding to each air guide plate is provided in the receiving cavity. The plurality of motor avoidance openings are located on a side of the base close to the air guide plate and are in one-to-one correspondence and communication with the motor mounting positions.

13. The air outlet panel according to claim 12, wherein One side of the receiving cavity opposite to the plurality of mounting holes is open. The installation component further includes a cover plate, and the cover plate is detachably covered at the open portion of the receiving cavity.

14. The air outlet panel according to claim 6 or 7, characterized in that, The air outlet panel has a decorative cover corresponding to each installation component, and the decorative cover is magnetically coupled with the corresponding installation component to block the corresponding installation component.

15. The air outlet panel according to claim 6 or 7, characterized in that, The air outlet panel further includes a plurality of air outlet louvers located at the air passing openings. The plurality of air outlet louvers are spaced apart along the length direction and are rotatably connected to the two plastic extrusion frame walls.

16. The air outlet panel according to claim 15, characterized in that, Each air outlet louver is snap-connected to one of the plastic extrusion frame walls and is connected to the other plastic extrusion frame wall through a fastener.

17. An air conditioner, characterized in that, Comprising: An air duct machine, the air duct machine includes a housing having an air outlet; The air outlet panel according to any one of claims 6-16, the air outlet panel is disposed at the air outlet.