Air guide structure and air conditioner

By introducing an extension plate and a conveyor belt system into the air conditioning air guide structure, the problem of short air delivery distance is solved, achieving more efficient temperature regulation and more uniform indoor temperature distribution.

CN223855735UActive Publication Date: 2026-01-30QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD +1
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Patent Information

Application Number
CN202423018665.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-06
Publication Date
2026-01-30
Estimated Expiration
2034-12-06

AI Technical Summary

Technical Problem

The existing air conditioning air guide plate has a short air delivery distance, resulting in large temperature differences in some areas of the room, which affects the temperature regulation efficiency.

Method used

Design an air guide structure including an air guide body, an extension plate, a driving component, a rotating assembly, a conveyor belt, and a connecting component. The driving component drives the rotating assembly to rotate, causing the conveyor belt to move the extension plate into or out of the air guide body, thereby extending the air delivery distance and improving temperature regulation efficiency.

Benefits of technology

By extending the air supply distance, the efficiency of indoor temperature regulation and the uniformity of local temperature are improved, while energy consumption and noise are reduced.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model belongs to the technical field of air conditioners, and particularly relates to an air guide structure and an air conditioner. According to the air guide structure and the air conditioner provided by the embodiment of the invention, the air guide structure comprises an air guide body used for being arranged on an air outlet of an air conditioner body; the extension plate is arranged on the air guide body; the driving part is arranged on the air guide body; the rotating assembly is connected with the output end of the driving part, and the rotating assembly is configured to rotate under the driving of the driving part; the conveying belt is wound on the rotating assembly and can be driven around the rotating assembly; the connecting piece is arranged on the conveying belt and connected with the extension plate, and the connecting piece is configured to be driven by the driving piece to follow transmission of the conveying belt so as to drive the extension plate to extend into or extend out of the air guide body, so that the rotating assembly can be driven by the driving piece to rotate, and the connecting piece is driven by the conveying belt to drive the extension plate to extend out of the air guide body; the air supply distance is prolonged, the adjusting efficiency of the indoor temperature is improved, and the uniformity of the indoor local temperature is guaranteed.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to air conditioning technical field, concretely relates to a wind -guiding structure and air conditioner. BACKGROUND

[0002] At present, the air outlet of air conditioner is usually equipped with a wind baffle to control the direction of air flow. Once the indoor unit of air conditioner is started, the wind baffle will be adjusted to a predetermined angle or continuously rotated to ensure that the air direction can be evenly distributed to each area.

[0003] In the prior art, the wind baffle is installed in the air outlet by rotating mode and connected to the driving mechanism to realize the functions of opening and closing and rotating, so as to guide the air flow of the air outlet and prevent the cold or hot air of air conditioner from directly blowing to the human body. While keeping the air supply uniform, the wind baffle can cover the air outlet when the air conditioner is not turned on to play a dustproof role.

[0004] However, since the wind baffle must be matched with the air outlet, it leads to a relatively short air supply distance, which further causes a large temperature difference in some areas of the room, affecting the efficiency of indoor temperature regulation. SUMMARY

[0005] The embodiments of the present application provide a wind-guiding structure and air conditioner to solve the problems of short air supply distance of the existing wind baffle, large local temperature difference in the room and poor efficiency of indoor temperature regulation.

[0006] In one aspect, the embodiments of the present application provide a wind-guiding structure, comprising:

[0007] a wind-guiding body arranged on the air outlet of the air conditioner body;

[0008] an extension plate arranged on the wind-guiding body;

[0009] a driving member arranged on the wind-guiding body;

[0010] a rotating assembly connected to the output end of the driving member, configured to rotate under the driving of the driving member;

[0011] a conveyor belt wound around the rotating assembly and driven by the rotating assembly;

[0012] a connecting member arranged on the conveyor belt and connected to the extension plate, configured to follow the driving of the conveyor belt under the driving of the driving member to drive the extension plate to extend into or out of the wind-guiding body.

[0013] In the preferred technical scheme of the air guiding structure, the rotating assembly comprises a first rotating wheel and a second rotating wheel, the first rotating wheel is connected with the output end of the driving member, and the second rotating wheel is rotatably arranged on the air guiding body, and the conveying belt is arranged around the first rotating wheel and the second rotating wheel.

[0014] In the preferred technical scheme of the air guiding structure, a plurality of tooth grooves are arranged on the conveying belt, the first rotating wheel and the second rotating wheel are both gears, and the tooth grooves are arranged in matched mode with the two gears.

[0015] In the preferred technical scheme of the air guiding structure, the fixing member is arranged on the air guiding body and arranged in the extending direction of the extension plate along the driving member, and the second rotating wheel is rotatably arranged on the fixing member.

[0016] In the preferred technical scheme of the air guiding structure, the extension plate has a fixed part, and the connecting member is arranged in matched mode with the fixed part.

[0017] In the preferred technical scheme of the air guiding structure, the fixed part is a clamping groove, and the connecting member is arranged in the clamping groove.

[0018] In the preferred technical scheme of the air guiding structure, the limiting member is arranged on the air guiding body, a sliding groove is arranged on the limiting member, and the connecting member passes through the sliding groove and is connected with the extension plate.

[0019] In the preferred technical scheme of the air guiding structure, a sliding cavity is further arranged on the limiting member, and the extension plate is partially arranged in the sliding cavity to slide in the sliding cavity under the driving of the connecting member.

[0020] In the preferred technical scheme of the air guiding structure, the number of the limiting members is two, the two limiting members are oppositely arranged on the air guiding body, and the two ends of the extension plate are respectively arranged in the two sliding cavities.

[0021] On the other hand, the embodiment of the present application provides an air conditioner, which comprises an air conditioner body and the air guiding structure of any one of the first aspect, the air conditioner body has an air outlet, and the air guiding structure is arranged on the air outlet.

[0022] Those skilled in the art will understand that the air guiding structure and air conditioner provided in the embodiments of this application include an air guiding body for being disposed on the air outlet of the air conditioner body; an extension plate disposed on the air guiding body; a driving member disposed on the air guiding body; a rotating assembly connected to the output end of the driving member, the rotating assembly being configured to rotate under the drive of the driving member; a conveyor belt wound around the rotating assembly and capable of driving around the rotating assembly; and a connecting member disposed on the conveyor belt and connected to the extension plate, the connecting member being configured to follow the conveyor belt under the drive of the driving member to drive the extension plate to extend into or out of the air guiding body, thereby enabling the rotating assembly to rotate through the driving member, so that the connecting member, driven by the conveyor belt, drives the extension plate to extend out of the air guiding body, extending the air delivery distance, improving the indoor temperature regulation efficiency, and ensuring the uniformity of the local temperature in the room. Attached Figure Description

[0023] The accompanying drawings, which are incorporated in and form part of this specification, illustrate embodiments consistent with this application and, together with the description, serve to explain the principles of this application.

[0024] Figure 1 This is a schematic diagram of the air conditioner provided in this embodiment;

[0025] Figure 2 This is a schematic diagram of the air guide structure provided in this embodiment. Figure One ;

[0026] Figure 3 This is a schematic diagram of the air guide structure provided in this embodiment. Figure Two ;

[0027] Figure 4 This is a schematic diagram of the air guide structure provided in this embodiment. Figure Three ;

[0028] Figure 5 for Figure 3 A schematic diagram of the middle limiting component.

[0029] Explanation of reference numerals in the attached figures:

[0030] 10-Air conditioner unit; 11-Air outlet;

[0031] 100-wind guide body;

[0032] 200 - Extension plate; 210 - Fixing part;

[0033] 300-Driver;

[0034] 400 - Rotating assembly; 410 - First rotating wheel; 420 - Second rotating wheel;

[0035] 500 - Conveyor Belt;

[0036] 600 - connecting piece;

[0037] 700 - fixing piece;

[0038] 800 - limiting piece; 810 - sliding groove; 820 - sliding cavity. DETAILED DESCRIPTION

[0039] First of all, those skilled in the art should understand that these embodiments are only used to explain the technical principles of the utility model, and are not intended to limit the protection scope of the utility model. Those skilled in the art can make adjustments according to the needs in order to adapt to specific application occasions.

[0040] Secondly, it needs to be explained that in the description of the utility model, the terms indicating the direction or position relationship of "inner", "outer" and the like are based on the direction or position relationship shown in the drawings, which is only for the convenience of description, and is not intended to indicate or imply that the device or component must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the utility model.

[0041] In addition, it also needs to be explained that in the description of the utility model, unless otherwise explicitly specified and limited, the terms "connected", "connected" should be understood broadly, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium, or it can be the communication inside two components. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific circumstances.

[0042] At present, the air outlet of the air conditioner is usually provided with a deflector, which is used to control the direction of the airflow. Once the indoor unit of the air conditioner starts to work, the deflector will be adjusted to a predetermined angle or continuously rotated to ensure that the air direction can be evenly distributed to each area.

[0043] In the existing technical solution, the deflector is installed in the air outlet by rotating and connected to the driving mechanism to realize the opening and closing and rotating functions, so as to guide the airflow of the air outlet and prevent the cold or hot air of the air conditioner from directly blowing to the human body. While maintaining uniform air supply, the deflector can cover the air outlet when the air conditioner is not turned on, thereby playing a dustproof role.

[0044] However, since the deflector must be matched with the air outlet, it leads to a relatively short air supply distance, which further causes a large temperature difference in some areas of the room, affecting the efficiency of indoor temperature regulation.

[0045] To solve the above problems, the utility model provides a wind -guiding structure and air conditioner, wherein the wind -guiding structure includes the wind -guiding body for setting on the air outlet of air conditioner body, the extension plate is set on the wind -guiding body, the driving part is set on the wind -guiding body, the rotating assembly is connected with the output end of driving part, and the rotating assembly is configured to rotate under the driving of driving part, the conveyor belt is around the rotating assembly, and can drive around rotating assembly, the connecting piece is set on the conveyor belt, and is connected with the extension plate, and the connecting piece is configured to drive the extension plate to extend into or extend out of the wind -guiding body under the driving of driving part, follow the transmission of conveyor belt to drive the extension plate to extend into or extend out of the wind -guiding body under the driving of driving part, so that the rotating assembly can be driven to rotate by driving part, and the extension plate is driven to extend out of the wind -guiding body under the driving of the connecting piece, the extension air -supply distance is improved, the adjustment efficiency of indoor temperature is improved, and the uniformity of local temperature in the room is ensured.

[0046] The preferred technical scheme of the wind -guiding structure and air conditioner of the utility model is described below with reference to the drawings.

[0047] Reference Figures 1 to 5 In the first aspect, the utility model provides a wind -guiding structure, including the wind -guiding body 100 for setting on the air outlet 11 of air conditioner body 10, the extension plate 200 is set on the wind -guiding body 100, the driving part 300 is set on the wind -guiding body 100, the rotating assembly 400 is connected with the output end of driving part 300, and the rotating assembly 400 is configured to rotate under the driving of driving part 300, the conveyor belt 500 is around the rotating assembly 400, and can drive around rotating assembly 400, the connecting piece 600 is set on the conveyor belt 500, and is connected with the extension plate 200, and the connecting piece 600 is configured to drive the extension plate 200 to extend into or extend out of the wind -guiding body 100 under the driving of driving part 300, follow the transmission of conveyor belt 500.

[0048] Specifically, in the related art, the air conditioner body 10 usually includes a compressor, a condenser, an evaporator and a fan. The air conditioner body 10 has an air outlet 11, which realizes the connection between the external environment and the inside of the air conditioner body 10. During the operation of the air conditioner body 10 in the cooling mode, the compressor is responsible for compressing the refrigerant into a high-temperature and high-pressure gas state, and then the gas-state refrigerant is sent to the condenser for heat dissipation, and is converted into a liquid state at normal temperature and high pressure. When the liquid-state refrigerant enters the evaporator, it will vaporize into a gas-state low-temperature refrigerant, which will absorb a large amount of heat, causing the evaporator to cool down. The fan in the air conditioner body 10 promotes air to flow through the surface of the evaporator, and sends cold air into the room through the air outlet 11, so as to achieve the cooling effect.

[0049] In the above embodiment, the air guide body 100 is rotatably installed at the air outlet 11. When the air conditioner body 10 is not in operation, the air guide body 100 covers the air outlet 11, thereby closing the air outlet 11 and preventing dust, insects or other impurities from entering the air conditioner body 10, so as to ensure the cleanliness and hygiene of the air conditioner body 10. When the air conditioner body 10 starts to operate, the air guide body 100 rotates to open the air outlet 11, so that the cold or hot air can be smoothly blown out of the air outlet 11 and play a role in guiding the air flow direction.

[0050] Meanwhile, in the present embodiment, the air guide body 100 has an arc-shaped structure, so as to reduce the resistance and turbulence of the air flow, make the air flow more smoothly turn and diffuse when passing through, avoid the air flow impact and vortex caused by the right-angle turning, and further improve the air supply efficiency and reduce the noise.

[0051] However, since the air guide body 100 needs to cover the air outlet 11, the size and shape of the air guide body 100 are limited by the specification of the air outlet 11. Therefore, the air guide body 100 has limitations in providing the air supply area and air supply angle. When the cold or hot air is blown out through the air outlet 11, the air flow is restricted by the edge of the air guide body 100, and thus the diffusion range and air supply distance of the air flow are limited. Such limitation causes the uneven distribution of indoor temperature, and some areas may have too low or too high temperature, thereby affecting the user experience.

[0052] Secondly, the short air supply distance limits the coverage range of the air conditioner body 10, so that in some large or open indoor space, the temperature of the whole space cannot be effectively adjusted. In addition, the short air supply distance may also increase the energy consumption of the air conditioner body 10, because the air conditioner body 10 needs to operate and adjust more frequently in order to achieve the ideal indoor temperature.

[0053] To solve the above problems, in the present embodiment, the air guide structure further comprises an extension plate 200, a driving member 300, a rotating assembly 400, a conveying belt 500 and a connecting member 600. The driving member 300 and the extension plate 200 are both arranged on the air guide body 100, the rotating assembly 400 is connected with the output end of the driving member 300 and can rotate under the driving of the driving member 300. The conveying belt 500 is arranged around the rotating assembly 400 and connected with the extension plate 200 through the connecting member 600, so that when the driving member 300 drives the rotating assembly 400 to rotate, the conveying belt 500 can convey around the rotating assembly 400, i.e. drive the connecting member 600 to move synchronously to make the extension plate 200 extend in or out.

[0054] In an alternative embodiment, the extension plate 200 can be made to extend out when the driving member 300 rotates forward and extend in when the driving member 300 reverses.

[0055] In the embodiment, the driving member 300 is a motor, and the remote controller of the air conditioner body 10 adopts an infrared induction control method to start and stop the motor.

[0056] Meanwhile, the size and shape of the extension plate 200 can be adaptively selected according to actual requirements, and the embodiment does not have any limitation.

[0057] By additionally providing the extension plate 200 on the air guide body 100, the air supply distance can be effectively increased, and the air flow is further buffered and guided. When the air flow hits the air guide plate, it can be more widely dispersed to a larger area, thereby reducing the impact intensity per unit area. Meanwhile, the extension plate 200 also increases the air duct profile, which helps to reduce wind noise.

[0058] In an alternative embodiment, the rotating assembly 400 includes a first rotating wheel 410 and a second rotating wheel 420, the first rotating wheel 410 is connected to the output end of the driving member 300, and the second rotating wheel 420 is rotatably arranged on the air guide body 100, and the conveying belt 500 is arranged around the first rotating wheel 410 and the second rotating wheel 420.

[0059] In the above embodiment, the rotating assembly 400 includes a first rotating wheel 410 and a second rotating wheel 420, wherein the first rotating wheel 410 is connected to the output end of the driving member 300 to rotate under the driving of the driving member 300, and the second rotating wheel 420 is rotatably arranged on the air guide body 100, and the conveying belt 500 is arranged around the first rotating wheel 410 and the second rotating wheel 420 to form a closed-loop transmission circuit. When the driving member 300 drives the first rotating wheel 410 to rotate, the conveying belt 500 moves with the rotation of the first rotating wheel 410, and simultaneously drives the second rotating wheel 420 to rotate synchronously, so as to realize the linkage operation of the entire transmission circuit.

[0060] Specifically, in the embodiment, the connecting member 600 is arranged on the conveying belt 500 between the first rotating wheel 410 and the second rotating wheel 420, and is arranged close to the first rotating wheel 410 in the initial state. When the driving member 300 is started, the connecting member 600 moves with the conveying belt 500 from the first rotating wheel 410 to the direction close to the second rotating wheel 420, thereby driving the extension plate 200 to extend out. When the extension plate 200 needs to be retracted, the driving member 300 drives the first rotating wheel 410 to rotate in the opposite direction, so that the connecting member 600 moves with the conveying belt 500 from the second rotating wheel 420 to the direction close to the first rotating wheel 410, thereby driving the extension plate 200 to retract. By moving the connecting member 600 with the conveying belt 500, the sliding path of the extension plate 200 is limited, and the deviation of the extension plate 200 can be avoided.

[0061] In an alternative embodiment, the plurality of tooth grooves are formed on the conveying belt 500, and the first rotating wheel 410 and the second rotating wheel 420 are both gears, and the tooth grooves are arranged to match the gears.

[0062] In the above embodiment, the plurality of tooth grooves are uniformly formed on the conveying belt 500, and the tooth grooves are regularly arranged along the length direction of the conveying belt 500. Meanwhile, the first rotating wheel 410 and the second rotating wheel 420 are both designed as gears with corresponding teeth, and the width and depth of the tooth grooves are arranged to match the size of the teeth of the two gears. Thus, the conveying belt 500 can be precisely engaged with the first rotating wheel 410 and the second rotating wheel 420, ensuring that the conveying belt 500 can be smoothly and efficiently operated during rotation, while reducing the occurrence of slipping and wear.

[0063] In an alternative embodiment, the air guiding structure further comprises a fixing member 700, which is arranged on the air guiding body 100 and arranged along the extending direction of the extension plate 200 with the driving member 300, and the second rotating wheel 420 is rotatably arranged on the fixing member 700.

[0064] In the above embodiment, the fixing member 700 is arranged on the air guiding body 100 opposite to the driving member 300, and arranged along the extending direction of the extension plate 200 with the driving member 300, and the second rotating wheel 420 is rotatably arranged on the fixing member 700, thereby providing positioning and support for the second rotating wheel 420 and ensuring the stability of the second rotating wheel 420 during rotation.

[0065] Specifically, in the present embodiment, the fixing member 700 is provided with a rotating shaft, and the second rotating wheel 420 is sleeved on the rotating shaft and arranged with a bearing between the rotating shaft, thereby reducing the frictional resistance of the second rotating wheel 420 during rotation and improving the smoothness of rotation and service life.

[0066] In addition, in an alternative embodiment, a reinforcing rib is arranged between the fixing member 700 and the air guiding body 100, thereby further enhancing the stability of the connection between the fixing member 700 and the air guiding body 100.

[0067] In an alternative embodiment, the extension plate 200 has a fixed portion 210, and the connecting member 600 is arranged to match the fixed portion 210.

[0068] In the above embodiment, the extension plate 200 is connected with the connecting piece 600 through the fixing part 210, so as to ensure the stability of the connection between the connecting piece 600 and the extension plate 200. The fixing part 210 can be a threaded hole, and the connecting piece 600 is also provided with a threaded hole corresponding to the fixing part 210, and the threaded hole of the connecting piece 600 and the fixing part 210 are sequentially threaded by a bolt to realize the connection between the connecting piece 600 and the extension plate 200.

[0069] In other embodiments, the fixing part 210 can also be a threaded column, and the connecting piece 600 is provided with a threaded hole corresponding to the threaded column, and the connection between the connecting piece 600 and the extension plate 200 is realized by screwing the connecting piece 600 on the threaded column.

[0070] Specifically, by adopting the threaded connection, the loosening problem caused by vibration or external force can be avoided, and the stability and reliability of the whole air guide structure are ensured.

[0071] In addition, it should be noted that in other embodiments, the specific structure of the fixing part 210 can also be adaptively selected according to actual needs, and the present embodiment does not make any limitation on this.

[0072] In an optional embodiment, the fixing part 210 is a clamping groove, and the connecting piece 600 is arranged in the clamping groove.

[0073] In the above embodiment, the fixing part 210 is a clamping groove, and the shape of the connecting piece 600 is matched and arranged, and the connecting piece 600 is arranged in the clamping groove. When the connecting piece 600 is driven to move by the conveying belt 500, the connecting piece 600 can abut against the inner wall of the clamping groove, so as to drive the extension plate 200 to slide.

[0074] By adopting the clamping groove matched with the connecting piece 600, the structure is simple, which greatly reduces the complexity in installation, improves the operation efficiency, and saves the production cost.

[0075] In an optional embodiment, the air guide structure further comprises a limiting piece 800, and the limiting piece 800 is arranged on the air guide body 100. The limiting piece 800 is provided with a sliding groove 810, and the connecting piece 600 passes through the sliding groove 810 and is connected with the extension plate 200.

[0076] In the above embodiment, the limiting piece 800 is arranged on the air guide body 100, a sliding groove 810 is arranged on the limiting piece 800 and extends along the sliding direction of the extension plate 200, the shape of the sliding groove 810 is matched with the connecting piece 600, the connecting piece 600 passes through the sliding groove 810 and is connected with the extension plate 200, so that the movement direction of the connecting piece 600 is limited through the arrangement of the sliding groove 810, the movement path of the connecting piece 600 is ensured, and the connecting piece 600 is prevented from shaking and deviating from the preset path due to vibration or other factors when following the movement of the conveying belt 500, so that the stability and precision of the extension plate 200 during sliding are ensured.

[0077] In the above embodiment, the limiting piece 800 is arranged on the air guide body 100, a sliding groove 810 is arranged on the limiting piece 800 and extends along the sliding direction of the extension plate 200, the shape of the sliding groove 810 is matched with the connecting piece 600, the connecting piece 600 passes through the sliding groove 810 and is connected with the extension plate 200, so that the movement direction of the connecting piece 600 is limited through the arrangement of the sliding groove 810, the movement path of the connecting piece 600 is ensured, and the connecting piece 600 is prevented from shaking and deviating from the preset path due to vibration or other factors when following the movement of the conveying belt 500, so that the stability and precision of the extension plate 200 during sliding are ensured.

[0078] In an optional embodiment, a sliding cavity 820 is further arranged on the limiting piece 800, and the extension plate 200 is partially arranged in the sliding cavity 820 to slide in the sliding cavity 820 under the driving of the connecting piece 600.

[0079] In the above embodiment, the limiting piece 800 is arranged on the air guide body 100, a sliding groove 810 is arranged on the limiting piece 800 and extends along the sliding direction of the extension plate 200, the shape of the sliding groove 810 is matched with the connecting piece 600, the connecting piece 600 passes through the sliding groove 810 and is connected with the extension plate 200, so that the movement direction of the connecting piece 600 is limited through the arrangement of the sliding groove 810, the movement path of the connecting piece 600 is ensured, and the connecting piece 600 is prevented from shaking and deviating from the preset path due to vibration or other factors when following the movement of the conveying belt 500, so that the stability and precision of the extension plate 200 during sliding are ensured.

[0080] In an optional embodiment, the number of the limiting pieces 800 is two, and the two limiting pieces 800 are oppositely arranged on the air guide body 100, and the two ends of the extension plate 200 are arranged in the two sliding cavities 820, respectively.

[0081] In the above embodiment, the two limiting pieces 800 are oppositely arranged on the two sides of the air guide body 100, and the two ends of the extension plate 200 are arranged in the two sliding cavities 820, respectively, so that the two ends of the extension plate 200 can be effectively limited and controlled during the movement of the extension plate 200, the stability of the extension plate 200 is improved, and the reliability and durability of the entire air guide structure are ensured.

[0082] In a second aspect, the utility model also provides a kind of air conditioner, including air conditioner body 10 and the air guide structure of any one of first aspect, air conditioner body 10 has air outlet 11, and air guide structure is arranged on air outlet 11.

[0083] In the above embodiment, the air guide structure has been described, and will not be repeated here.

[0084] The air conditioner provided by the utility model, comprising an air conditioner body 10 and the air guiding structure of any one of the first aspect, the air conditioner body 10 has an air outlet 11, and the air guiding structure is arranged on the air outlet 11. Wherein, the air guiding structure comprises an air guiding body 100, which is arranged on the air outlet 11 of the air conditioner body 10; an extension plate 200 arranged on the air guiding body 100; a driving member 300 arranged on the air guiding body 100; a rotating assembly 400 connected with the output end of the driving member 300, the rotating assembly 400 is configured to rotate under the driving of the driving member 300; a conveyor belt 500 wound on the rotating assembly 400 and capable of driving around the rotating assembly 400; a connecting member 600 arranged on the conveyor belt 500 and connected with the extension plate 200, the connecting member 600 is configured to drive the extension plate 200 to extend into or out of the air guiding body 100 under the driving of the driving member 300 and the driving of the conveyor belt 500, so that the rotating assembly 400 can be driven to rotate by the driving member 300, the extension plate 200 is driven to extend out of the air guiding body 100 under the driving of the conveyor belt 500, the air supply distance is extended, the adjustment efficiency of indoor temperature is improved, and the uniformity of local indoor temperature is ensured.

[0085] Thus, the technical scheme of the utility model has been described in combination with the preferred embodiments shown in the drawings, but it is easy for those skilled in the art to understand that the protection scope of the utility model is obviously not limited to these specific embodiments. Those skilled in the art can make equivalent changes or replacements to the related technical features without departing from the principles of the utility model, and the technical schemes after the changes or replacements will all fall within the protection scope of the utility model.

Claims

1. A wind guide structure, characterized by, The utility model relates to an air conditioner, and more particularly to a wind guide body (100) for setting on the air outlet (11) of air conditioner body (10), an extension plate (200) set on the wind guide body (100), a drive member (300) set on the wind guide body (100), a rotating assembly (400) connected with the output end of drive member (300), the rotating assembly (400) is configured to rotate under the drive of drive member (300), a conveyor belt (500) around the rotating assembly (400) and can drive around the rotating assembly (400), a connecting member (600) set on the conveyor belt (500) and connected with the extension plate (200), the connecting member (600) is configured to follow the drive of drive member (300) with conveyor belt (500) drive to drive the extension plate (200) to extend into or out of the wind guide body (100). The rotating assembly (400) includes a first rotating wheel (410) and a second rotating wheel (420), the first rotating wheel (410) is connected with the output end of drive member (300), the second rotating wheel (420) is rotatably arranged on the wind guide body (100), the conveyor belt (500) is arranged around the first rotating wheel (410) and the second rotating wheel (420). The conveyor belt (500) is provided with a plurality of tooth grooves, the first rotating wheel (410) and the second rotating wheel (420) are both gears, and the tooth grooves are matched with the two gears. Further comprising a fixing member (700), the fixing member (700) is arranged on the wind guide body (100) and arranged along the extension direction of the extension plate (200) with the drive member (300), and the second rotating wheel (420) is rotatably arranged on the fixing member (700). The extension plate (200) has a fixed part (210), and the connecting member (600) is arranged in cooperation with the fixed part (210). The fixed part (210) is a clamping groove, and the connecting member (600) is arranged in the clamping groove. Further comprising a limiting member (800), the limiting member (800) is arranged on the wind guide body (100), and the limiting member (800) is provided with a sliding groove (810), and the connecting member (600) is connected with the extension plate (200) through the sliding groove (810).

2. The air guiding structure according to claim 1, wherein The limiting member (800) is further provided with a sliding cavity (820), and the extension plate (200) is partially arranged in the sliding cavity (820) to slide in the sliding cavity (820) under the drive of the connecting member (600).

3. The air guiding structure according to claim 2, wherein, The number of the limiting member (800) is two, and the two limiting members (800) are oppositely arranged on the wind guide body (100), and the two ends of the extension plate (200) are arranged in the two sliding cavities (820) respectively.

4. The air guiding structure according to claim 2, wherein ​ 5. The wind guide structure according to any one of claims 1 to 4, wherein ​ 6. The wind guide structure according to claim 5, wherein ​ 7. The wind directing structure according to any one of claims 1 to 4, wherein ​ 8. The wind guide structure according to claim 7, wherein ​ 9. The wind guide structure according to claim 8, wherein ​ 10. An air conditioner characterized by comprising: The air conditioner body (10) has an air outlet (11), and the air guide structure is arranged on the air outlet (11).