Air conditioner structure

By installing movable baffles at the air inlet and outlet of the air conditioner casing and controlling their movement with a drive device, the problem of dust accumulation at the air inlet of wall-mounted air conditioners is solved, achieving both aesthetic appeal and reduced maintenance costs.

CN223484453UActive Publication Date: 2025-10-28GREE ELECTRIC APPLIANCES CHONGQING +1
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Patent Information

Application Number
CN202422765697.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-11-12
Publication Date
2025-10-28
Estimated Expiration
2034-11-12

AI Technical Summary

Technical Problem

The air inlet of existing wall-mounted air conditioners is prone to dust accumulation, and the filter needs to be frequently replaced or cleaned, which increases daily maintenance costs.

Method used

Movable air inlet and air outlet baffles are installed at the air inlet and air outlet of the air conditioner casing, and they are opened and closed by a drive device. The air inlet and air outlet baffles are retracted into the air conditioner when the air conditioner is off, and extended to allow air to enter and exit when the air conditioner is on.

Benefits of technology

This achieves an aesthetically pleasing appearance for the air conditioner, prevents dust from entering, reduces the frequency of filter cleaning, and lowers daily maintenance costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The embodiment of the utility model discloses an air conditioner structure which comprises an air conditioner shell, a heat exchanger and a heat exchanger. The air inlet baffle is movably arranged at the air inlet and can open or close the air inlet; and the air outlet baffle is movably arranged at the air outlet and can open or close the air outlet. Compared with the prior art, the air inlet baffle and the air outlet baffle can be stored in the air conditioner in the shutdown state, and the appearance is attractive; and the air inlet and the air outlet extend out to realize air inlet and air outlet of the air conditioner in a starting state. The air inlet and outlet structure not only realizes attractive appearance, but also prevents dust from falling into the air conditioner, and reduces the frequency of cleaning the filter screen by a user.
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Description

Technical Field

[0001] This utility model relates to the field of air conditioner technology, and in particular to an air conditioner structure. Background Art

[0002] Air conditioners have become an essential household appliance. With advancements in science and technology, user demands for air conditioners have expanded beyond basic cooling and heating functions. Users now require higher standards in terms of appearance, smart features, and ease of maintenance. Most wall-mounted air conditioners on the market are rectangular in shape, allowing users to directly see the air inlet and outlet. Because the air inlet is constantly exposed, the filter needs manual cleaning after a period of use, increasing daily maintenance costs. Utility Model Content

[0003] The purpose of this utility model is to provide an air conditioner structure that solves the problem that existing wall-mounted air conditioners are prone to dust accumulation at the air inlet, requiring frequent replacement or cleaning of the filter, which increases daily maintenance costs.

[0004] To solve the above-mentioned technical problems, the objective of this utility model is achieved through the following technical solution:

[0005] This utility model embodiment provides an air conditioner structure, including:

[0006] The air conditioner casing has an air inlet and an air outlet;

[0007] An air inlet baffle is movably disposed at the air inlet and can open or close the air inlet;

[0008] An air outlet baffle is movably disposed at the air outlet and can open or close the air outlet.

[0009] Preferably, the air conditioner structure further includes a driving device, which includes an air inlet driving component and an air outlet driving component. The air inlet driving component is used to drive the air inlet baffle to move away from or closer to the air inlet, and the air outlet driving component is used to drive the air outlet baffle to move away from or closer to the air outlet.

[0010] Preferably, the air intake drive assembly includes an air intake motor, an air intake gear, and an air intake baffle rack. The air intake gear is sleeved on the output shaft of the air intake motor, the air intake baffle rack meshes with the air intake gear, and the air intake baffle rack is connected to the air intake baffle.

[0011] Preferably, the air outlet drive assembly includes an air outlet motor and an air outlet screw, the air outlet baffle is provided with an air outlet threaded hole, and the air outlet screw passes through the air outlet threaded hole and is sleeved on the output shaft of the air outlet motor.

[0012] Preferably, the air conditioner housing is further provided with several fan slots, and each fan slot is provided with a high-powered fan.

[0013] Preferably, the surface of the air inlet baffle is provided with a decorative light source.

[0014] Preferably, the air conditioner structure further includes a decorative panel, which is disposed on the outside of the air inlet baffle and is fixedly connected to the air inlet baffle by a snap fastener.

[0015] Preferably, the decorative panel is designed to be translucent, and the decorative light source has several colors and brightness levels to distinguish the temperature settings of the air conditioner.

[0016] Preferably, the back of the air conditioner housing is also provided with air conditioning pipes and a power socket, both of which are concealed structures.

[0017] Preferably, the air inlet baffle and the air conditioner housing are detachably connected.

[0018] The advantages of this invention compared to existing technologies are as follows: This invention uses inlet and outlet baffles on the air inlet and outlet of the air conditioner casing. When the unit is off, these baffles completely block the inlet and outlet. When the unit is on, the baffles extend synchronously from the inlet and outlet to allow air to enter and exit the air conditioner. Compared to existing technologies, the inlet and outlet baffles in this invention retract into the air conditioner when off, resulting in a more aesthetically pleasing appearance; when on, they extend out from the inlet and outlet to allow air to enter and exit the air conditioner. This air intake and exhaust structure not only achieves an aesthetically pleasing appearance but also prevents dust from entering the air conditioner, reducing the frequency of filter cleaning for users. Attached Figure Description

[0019] To more clearly illustrate the technical solutions of the embodiments of this utility model, the drawings used in the description of the embodiments will be briefly introduced below. Obviously, the drawings described below are some embodiments of this utility model. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.

[0020] Figure 1 This is a schematic diagram of the overall structure of the air conditioner provided in an embodiment of the present utility model;

[0021] Figure 2 A cross-sectional view of the air conditioner structure provided in this embodiment of the utility model. Figure 1 ;

[0022] Figure 3A cross-sectional view of the air conditioner structure provided in this embodiment of the utility model. Figure 2 ;

[0023] Figure 4 A cross-sectional view of the air conditioner structure provided in this embodiment of the utility model. Figure 3 ;

[0024] Figure 5 A schematic diagram of the air intake baffle drive in the air conditioner structure from the off state to the on state provided in this embodiment of the utility model;

[0025] Figure 6 A schematic diagram of the air outlet damper drive in the air conditioner structure from the off state to the on state provided in this embodiment of the utility model;

[0026] Figure 7 This is an installation diagram of the air conditioner structure provided in an embodiment of the present utility model.

[0027] Figure label:

[0028] 1. Air conditioner housing; 11. Air inlet; 12. Air outlet; 2. Air inlet drive assembly; 21. Air inlet motor; 22. Air inlet gear; 23. Air inlet baffle rack; 3. Air outlet drive assembly; 31. Air outlet motor; 32. Air outlet screw; 4. Air inlet baffle; 41. Decorative light source; 5. Air outlet baffle; 51. Air outlet threaded hole; 6. High-power fan; 61. Fan slot; 7. Decorative panel; 8. Air conditioning piping; 9. Air conditioning hole. DETAILED DESCRIPTION

[0029] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those skilled in the art without creative effort are within the protection scope of the present utility model.

[0030] It should be understood that, when used in this specification and the appended claims, the terms "comprising" and "including" indicate the presence of the described features, integrals, steps, operations, elements and / or components, but do not exclude the presence or addition of one or more other features, integrals, steps, operations, elements, components and / or collections thereof.

[0031] It should also be understood that the terminology used in this specification is for the purpose of describing particular embodiments only and is not intended to limit the scope of the invention. As used in this specification and the appended claims, the singular forms “a,” “an,” and “the” are intended to include the plural forms unless the context clearly indicates otherwise.

[0032] It should also be further understood that the term "and / or" as used in this specification and the appended claims refers to any combination of one or more of the associated listed items and all possible combinations, and includes such combinations.

[0033] Please see Figures 1 to 7 A specific embodiment of this utility model discloses an air conditioner structure, including: an air conditioner housing 1, which is provided with an air inlet 11 and an air outlet 12; an air inlet baffle 4, which is movably disposed at the air inlet 11 and can open or close the air inlet 11; and an air outlet baffle 5, which is movably disposed at the air outlet 12 and can open or close the air outlet 12.

[0034] Specifically, the air conditioner housing 1, as the main structure of the air conditioner, is used to house and protect key components such as the internal drive unit, refrigeration system (e.g., compressor, condenser, evaporator, etc., not specifically described in this embodiment, but typically included in air conditioners), air duct system (e.g., fan), and electrical system (e.g., motor, thermostat, etc.). The design of the air conditioner housing 1 must meet the requirements of strength, rigidity, and sealing to ensure the normal operation of the air conditioner and the user's comfort experience.

[0035] Furthermore, in this embodiment, the air inlet 11 and air outlet 12 are located at different positions on the air conditioner housing 1 to achieve air circulation. The air inlet 11 is located at the front of the air conditioner to draw in indoor air; while the air outlets 12 are located at the top and bottom of the air conditioner to blow cooled or heated air into the room. The air inlet baffle 4 is movably disposed at the air inlet 11. When the air conditioner needs to draw in indoor air for cooling or heating, the air inlet baffle 4 opens to allow air to enter. When the air conditioner does not need to work, the air inlet baffle 4 can be closed to prevent dust and debris from entering the air conditioner. The air outlet baffle 5 is movably disposed at the air outlet 12. When the air conditioner needs to blow cooled or heated air into the room, the air outlet baffle 5 opens to allow air to flow out; when the air conditioner does not need to work or needs to adjust the airflow direction, the air outlet baffle 5 can be closed or partially closed to change the airflow direction or reduce the air volume.

[0036] like Figures 2 to 6 As shown, the air conditioner structure also includes a drive device, which includes an air inlet drive assembly 2 and an air outlet drive assembly 3. The air inlet drive assembly 2 is used to drive the air inlet baffle 4 to move away from or closer to the air inlet 11, and the air outlet drive assembly 3 is used to drive the air outlet baffle 5 to move away from or closer to the air outlet 12.

[0037] Specifically, driven by the drive device, the air inlet baffle 4 and the air outlet baffle 5 can be opened, closed, and adjusted at different angles to meet users' different needs for air volume and direction. The drive device, as a key component connecting the air inlet baffle 4, the air outlet baffle 5, and the air conditioner control system, is responsible for the automatic driving and adjustment of the baffles. The drive device includes components such as a motor, transmission mechanism, and control circuit, and achieves precise control of the baffles by receiving commands from the control system. In this embodiment, the drive device is connected to the air inlet baffle 4 and the air outlet baffle 5 via a drive connection, ensuring that the baffles can move and adjust according to a preset trajectory and speed.

[0038] Furthermore, in this embodiment, based on the size and weight of the air inlet baffle 4 and the overall design requirements of the air conditioner, multiple air inlet drive components 2 are needed to ensure the smooth and reliable movement of the air inlet baffle 4. Therefore, the number of air inlet drive components 2 is designed to be two. The main function of the air inlet drive component 2 is to drive the air inlet baffle 4 away from the air conditioner housing 1 to open the air inlet 11 and realize the air intake operation. External air enters the air conditioner through the air inlet 11, is cooled or heated, and then discharged through the air outlet 12. Secondly, the air inlet drive component 2 includes components such as a motor, a transmission mechanism (such as gears, chains, or belts), and a control circuit. When the control circuit receives a command from the air conditioner control system, it starts the motor and converts the rotational motion of the motor into the linear or rotational motion of the air inlet baffle 4 through the transmission mechanism, thereby realizing the opening and closing of the air inlet 11.

[0039] Similar to the air intake drive assembly 2, the number and layout of the air outlet drive assemblies 3 are determined based on the size, weight, and design requirements of the air outlet baffle 5. This embodiment uses four air outlet drive assemblies 3, with each air outlet baffle 5 driven by two air outlet drive assemblies 3 to ensure stable and reliable movement. The main function of the air outlet drive assembly 3 is to drive the air outlet baffle 5 away from the air conditioner housing 1, thereby opening the air outlet 12 to achieve airflow. The treated air is then discharged from inside the air conditioner through the air outlet 12 to the external environment. The working principle of the air outlet drive assembly 3 is similar to that of the air intake drive assembly 2, and it also includes components such as a motor, transmission mechanism, and control circuit. When the control circuit receives a command, it starts the motor and converts the motor's movement into the movement of the air outlet baffle 5 through the transmission mechanism, thereby opening and closing the air outlet 12.

[0040] The air outlet baffle 5 includes an upper air outlet baffle and a lower air outlet baffle. The upper air outlet baffle is located at the top air outlet 12 of the air conditioner. Driven by the air outlet drive assembly 3, the upper air outlet baffle can move up or down, thereby adjusting the opening degree and air outlet direction of the upper air outlet 12. The lower air outlet baffle is located at the bottom air outlet 12 of the air conditioner. Similar to the upper air outlet baffle, the lower air outlet baffle can also move up and down by the air outlet drive assembly 3 to adjust the opening degree and air outlet direction of the lower air outlet 12. Both the upper and lower air outlet baffles are made of lightweight, sturdy, and corrosion-resistant materials to ensure good durability and reliability.

[0041] like Figure 3 and Figure 5 As shown, the air intake drive assembly 2 includes an air intake motor 21, an air intake gear 22, and an air intake baffle rack 23. The air intake gear 22 is sleeved on the output shaft of the air intake motor 21, the air intake baffle rack 23 meshes with the air intake gear 22, and the air intake baffle rack 23 is connected to the air intake baffle 4.

[0042] Specifically, in this embodiment, the air intake drive assembly 2 is symmetrically arranged on the left and right sides inside the air conditioner housing 1. This symmetrical layout helps ensure that the air intake baffle 4 can maintain smooth and uniform movement when opening and closing, thereby avoiding unnecessary vibration and noise.

[0043] The intake motor 21 is the power source driving the intake baffle 4. The intake gear 22 is sleeved on the output shaft of the intake motor 21. When the intake motor 21 starts, it drives the intake gear 22 to rotate. The intake baffle rack 23 meshes with the intake gear 22, converting the rotational motion of the intake gear 22 into the linear motion of the intake baffle 4. The intake baffle rack 23 and the intake baffle 4 are fixedly connected by means such as bolts, rivets, or welding to ensure that the intake baffle rack 23 can drive the intake baffle 4 to move synchronously and can withstand a certain load and torque. In practical applications, when the intake motor 21 starts, it drives the intake gear 22 to rotate. The rotational motion of the intake gear 22 is transmitted to the intake baffle rack 23 through meshing, thereby driving the intake baffle 4 to move linearly. In this way, the intake baffle 4 can be smoothly opened or closed to form the required air intake gap.

[0044] like Figure 2 and Figure 6 As shown, the air outlet drive assembly 3 includes an air outlet motor 31 and an air outlet screw 32. The air outlet baffle 5 is provided with an air outlet threaded hole 51. The air outlet screw 32 passes through the air outlet threaded hole 51 and is sleeved on the output shaft of the air outlet motor 31.

[0045] Specifically, in this embodiment, the air outlet drive assembly 3 is symmetrically arranged on the upper and lower sides inside the air conditioner housing 1 to ensure that the air conditioner can achieve balanced airflow output on both sides during operation. The air outlet threaded hole 51 is an integral structure with the upper and lower air outlet baffles. There are two air outlet threaded holes 51 on both the upper and lower air outlet baffles for connecting with the air outlet screw 32. The air outlet screw 32 passes through the threaded hole of the air outlet baffle 5 and is sleeved on the output shaft of the air outlet motor 31. In this way, the air outlet motor 31 can drive the air outlet screw 32 to rotate, thereby driving the air outlet baffle 5 to adjust its angle, thus controlling the airflow direction and speed.

[0046] like Figure 2 As shown, the air conditioner housing 1 is also provided with several fan slots 61, and each fan slot 61 is provided with a high-power fan 6.

[0047] Specifically, in this embodiment, there are twelve fan slots 61 and twelve high-power fans 6. The high-power fans 6 are fixed to the air conditioner housing 1 by the fan slots 61, six on the top and six on the bottom. Each fan slot 61 has sufficient depth and width to ensure that the high-power fans 6 can be securely installed in it and maintain good heat dissipation.

[0048] High-speed fan 6 typically refers to a cooling fan with high speed, large air volume and high heat dissipation efficiency. They can quickly remove heat from the air conditioner and ensure stable operation. By using high-speed fan 6 for air conditioner heat exchange, replacing the traditional motor and cross-flow fan structure, the size of the air conditioner can be greatly reduced, achieving a flat and aesthetically pleasing appearance.

[0049] like Figure 2 As shown, the surface of the air intake baffle 4 is provided with a decorative light source 41.

[0050] Specifically, the surface of the air intake baffle 4 is designed to support and display the decorative light source 41, which is cleverly embedded in the surface of the air intake baffle 4 to provide an aesthetically pleasing visual effect. The color, brightness, and flashing pattern of the light can be adjusted according to the user's preferences and needs to increase the attractiveness and personalization of the air conditioner.

[0051] It is understood that the decorative light source 41 in this embodiment is an LED light strip. In other embodiments, the decorative light source 41 may also be an LED bead, a neon light, a fiber optic light, etc., and can be set according to the actual situation. The decorative light source 41 in this embodiment has the characteristics of low power consumption, high brightness, long life and easy control.

[0052] like Figure 3 and Figure 4As shown, the air conditioner structure also includes a decorative panel 7, which is located on the outside of the air inlet baffle 4 and is fixedly connected to the air inlet baffle 4 by a snap fastener.

[0053] Specifically, the decorative panel 7 is used to enhance the overall aesthetics and texture of the air conditioner. It is typically made of high-quality materials, such as metal, plastic, or composite materials, to ensure its durability and resistance to deformation. In this embodiment, specially designed clips are used to connect the decorative panel 7 and the air inlet baffle 4. The type of clip can be selected according to actual needs, such as spring clips, rotating clips, sliding clips, etc. The installation position of the clip is set on the external interface of the air inlet baffle 4, and the corresponding position of the decorative panel 7 is set with a slot or hole that matches the clip. The clip is installed on the air inlet baffle 4, ensuring that it can firmly fix the decorative panel 7. The decorative panel 7 is aligned with the clip position on the air inlet baffle 4, and the decorative panel 7 is gently pressed so that it contacts the clip and generates a certain pressure. Under the action of pressure, the clip will deform and lock firmly onto the decorative panel 7, thereby achieving a fixed connection between the two. In addition, it is necessary to ensure that the buckle has sufficient strength and durability to withstand the weight of the decorative panel 7 and the vibration or impact during daily use. The buckle should also be designed to be easy to disassemble so that the decorative panel 7 can be easily removed for cleaning, repair or replacement when needed.

[0054] Furthermore, the decorative panel 7 adopts a light-transmitting design, and the decorative light source 41 has several colors and brightness to distinguish the temperature settings of the air conditioner.

[0055] Specifically, the decorative panel 7 is made of a material with good light transmittance, such as transparent or translucent plastic, glass, or composite materials. These materials have good weather resistance and anti-aging properties to ensure that the light transmittance and aesthetics of the decorative panel 7 are not affected during long-term use. Light-transmitting areas are designed on the decorative panel 7; these areas can be patterns, text, or shapes, etc., to display the decorative light source 41. The decorative light source 41 system is equipped with color and brightness adjustment functions, which can be adjusted via a controller or intelligent system. The decorative light source 41 emits corresponding light according to the user's adjustment, providing decorative illumination through the decorative panel 7. Different light colors represent different temperature ranges; for example, warm red and orange represent heating, and cool blue represents cooling. By using light changes to replace temperature display, the air conditioning temperature setting can be displayed to the user more intuitively, simplifying the process of reading the set numbers.

[0056] like Figure 1 and Figure 7 As shown, the back of the air conditioner housing 1 is also equipped with an air conditioning pipe 8 and a power socket, both of which are concealed structures.

[0057] Specifically, in this embodiment, the air conditioning pipe 8 includes a connecting pipe and a drain pipe, which are located on the back of the air conditioner. When the air conditioner is installed, the connecting pipe and the drain pipe pass through the user-reserved air conditioning hole 9. After the air conditioner body is installed, the power socket, connecting pipe, drain pipe and air conditioning hole 9 can be completely covered, which has an aesthetic effect.

[0058] Furthermore, the air inlet baffle 4 is detachably connected to the air conditioner housing 1, and the air outlet baffle 5 is detachably connected to the air conditioner housing 1.

[0059] Specifically, the detachable connection design allows the air inlet baffle 4 and air outlet baffle 5 to be easily removed from the air conditioner housing 1, facilitating deep cleaning of the inside and surrounding areas of the baffles by users. This effectively removes dust, dirt, and other impurities, maintaining the cleanliness and hygiene of the air conditioner's interior. Furthermore, because the baffles are easy to remove, users do not need to disassemble the entire air conditioning unit during maintenance, thus reducing maintenance costs and difficulty. It also reduces potential damage to the air conditioning unit caused by improper maintenance.

[0060] Furthermore, the air conditioner housing 1 is also equipped with a temperature sensor and a humidity sensor. Both the temperature sensor and the humidity sensor are electrically connected to the drive device and are used to automatically adjust the position of the air inlet baffle 4 and the air outlet baffle 5 according to the detected temperature and humidity, so as to optimize the operating efficiency of the air conditioner and the comfort of the indoor environment.

[0061] Specifically, after receiving electrical signals from the temperature and humidity sensors, the main control circuit processes and analyzes the signals. When the main control circuit determines that the current indoor temperature and humidity need adjustment, it sends a command to the drive unit. The drive unit then moves the positions of the air inlet baffle 4 and the air outlet baffle 5 according to the command, thereby changing the air intake and exhaust direction and airflow of the air conditioner. For example, in a hot and humid summer environment, the air conditioner may automatically adjust the air inlet baffle 4 to increase the air intake and adjust the air outlet baffle 5 to distribute the cool air more evenly to all corners of the room. By automatically adjusting the positions of the air inlet baffle 4 and the air outlet baffle 5, the air conditioner can more accurately control the indoor temperature and humidity, helping to reduce unnecessary energy consumption and improve the operating efficiency of the air conditioner. Furthermore, reasonable temperature and humidity control can significantly improve the comfort of the indoor environment, making people more pleasant and healthier when working or living in such an environment.

[0062] The specific workflow of the air conditioner structure provided in this embodiment of the utility model is as follows:

[0063] (1) When the air conditioner is turned off, the air inlet baffle 4 and the air outlet baffle 5 are tightly fitted with the air conditioner housing 1 to form a closed box;

[0064] (2) When the air conditioner is turned on, the intake motor 21 starts to operate, driving the intake gear 22 sleeved on it to rotate. The rotation of the intake gear 22 drives the intake baffle rack 23 to slowly push out the intake baffle 4. At this time, a gap is formed between the intake baffle 4 and the air conditioner housing 1 for air intake. At the same time, the four exhaust motors 31 inside the air conditioner housing 1 also start to operate, driving the four exhaust screws 32 sleeved on their output shafts to rotate. When the four exhaust screws 32 rotate, their threads engage with the threads in the exhaust thread holes 51 on the upper and lower exhaust baffles, pushing the upper and lower exhaust baffles to extend from the top and bottom of the air conditioner housing 1, respectively. At this time, a gap is also formed between the upper and lower exhaust baffles and the air conditioner housing 1, which is used for air exhaust. When the user turns off the air conditioner from the on state, each motor rotates in the reverse direction of the on state, tightly fitting the intake baffle 4, the upper exhaust baffle, and the lower exhaust baffle with the bottom shell, forming a closed box again.

[0065] The above description is merely a specific embodiment of this utility model, but the protection scope of this utility model is not limited thereto. Any person skilled in the art can easily conceive of various equivalent modifications or substitutions within the technical scope disclosed in this utility model, and these modifications or substitutions should all be covered within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the scope of the claims.

Claims

1. An air conditioner structure, characterized in that, include: The air conditioner casing has an air inlet and an air outlet; An air inlet baffle is movably disposed at the air inlet and can open or close the air inlet; An air outlet baffle is movably disposed at the air outlet and can open or close the air outlet; The air inlet is located at the front of the air conditioner housing, while the air outlets are located at the top and bottom of the air conditioner housing, respectively.

2. The air conditioner structure according to claim 1, characterized in that, It also includes a driving device, which includes an air inlet driving component and an air outlet driving component. The air inlet driving component is used to drive the air inlet baffle to move away from or closer to the air inlet, and the air outlet driving component is used to drive the air outlet baffle to move away from or closer to the air outlet.

3. The air conditioner structure according to claim 2, characterized in that, The air intake drive assembly includes an air intake motor, an air intake gear, and an air intake baffle rack. The air intake gear is sleeved on the output shaft of the air intake motor, the air intake baffle rack meshes with the air intake gear, and the air intake baffle rack is connected to the air intake baffle.

4. The air conditioner structure according to claim 2, characterized in that, The air outlet drive assembly includes an air outlet motor and an air outlet screw. The air outlet baffle is provided with an air outlet threaded hole. The air outlet screw passes through the air outlet threaded hole and is sleeved on the output shaft of the air outlet motor.

5. The air conditioner structure according to claim 1, characterized in that, The air conditioner housing is also provided with several fan slots, and each fan slot is provided with a high-powered fan.

6. The air conditioner structure according to claim 1, characterized in that, The surface of the air inlet baffle is equipped with a decorative light source.

7. An air conditioner structure according to claim 6, characterized in that, It also includes a decorative panel, which is disposed on the outside of the air inlet baffle and is fixedly connected to the air inlet baffle by a snap fastener.

8. An air conditioner structure according to claim 7, characterized in that, The decorative panel is designed to be translucent, and the decorative light source has several colors and brightness levels to distinguish the temperature settings of the air conditioner.

9. An air conditioner structure according to claim 1, characterized in that, The back of the air conditioner housing is also equipped with air conditioning pipes and a power socket, both of which are concealed structures.

10. An air conditioner structure according to claim 1, characterized in that, The air inlet baffle is detachably connected to the air conditioner housing, and the air outlet baffle is detachably connected to the air conditioner housing.