Air guide structure, indoor unit and air treatment equipment

The detachable connection and snap-fit ​​structure between the mounting bracket and the base simplifies the installation and disassembly of the air guide structure, solves the problem of complex assembly and disassembly of the air guide structure, and achieves flexible air delivery angle adjustment and higher equipment reliability.

CN224230299UActive Publication Date: 2026-05-12DREAM INNOVATION TECH (SUZHOU) CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
DREAM INNOVATION TECH (SUZHOU) CO LTD
Filing Date
2025-05-30
Publication Date
2026-05-12

AI Technical Summary

Technical Problem

The existing air handling equipment has a complex air guide structure that is difficult to disassemble and maintain, increasing the difficulty of operation and maintenance costs, and affecting the cleanliness and reliability of the equipment.

Method used

The design features a detachable connection between the mounting bracket and the base, combined with snap-fit ​​and plug-in structures, simplifying the installation and disassembly of the air guide structure. The adjustable components allow for flexible adjustment of the air delivery angle.

Benefits of technology

It reduces the difficulty of operation and maintenance costs, improves the cleanliness and reliability of the equipment, reduces blind spots in air supply, and adapts to different room layouts and user needs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model provides an air guide structure, an indoor unit and air treatment equipment, and relates to the field of air treatment equipment. The air guide structure comprises a base, a mounting bracket and an adjusting assembly; the base is used for being arranged in a shell of the air conditioner indoor unit. The mounting bracket is detachably connected with the base, and the mounting bracket can be connected with the shell through the base; the adjusting assembly is located on the side, away from the base, of the mounting support and can be movably arranged on the mounting support. The mounting bracket is detachably connected with the base, so that the mounting and dismounting processes can be realized, complicated tools and skills are not needed, and the operation difficulty and the maintenance cost are reduced; the installation support, the base and the adjusting assembly can be independently detached and replaced, maintenance and cleaning are convenient, cleaning is more thorough, and the sanitation and performance of the equipment are improved.
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Description

Technical Field

[0001] This application relates to the field of air handling equipment, and more particularly to air guide structures, indoor units, and air handling equipment. Background Technology

[0002] Air handling equipment includes an air outlet and an air guide plate installed at the air outlet. The air guide plate is rotatably connected to the air outlet, and the airflow direction of the air outlet is changed by changing the angle at which the air guide plate opens relative to the air outlet.

[0003] The air outlet can also be equipped with an air guide structure to further adjust the air supply method and make the airflow more stable and comfortable. However, the installation structure of the air guide structure and the indoor unit casing is complex, making the disassembly and maintenance of the air guide structure inconvenient. Utility Model Content

[0004] This application provides an air guide structure, an indoor unit, and an air handling device to solve the problem of inconvenient disassembly and maintenance of the air guide structure.

[0005] In a first aspect, embodiments of this application provide an air guiding structure, including a base, a mounting bracket, and an adjustment component;

[0006] The base is used to be installed inside the housing of the indoor unit of the air conditioner; the mounting bracket is detachably connected to the base, and the mounting bracket can be connected to the housing through the base;

[0007] The adjustment component is located on the side of the mounting bracket away from the base, and the adjustment component is movably mounted on the mounting bracket.

[0008] In some possible implementations, the base is provided with a first snap-fit ​​portion, and the mounting bracket is provided with a second snap-fit ​​portion, wherein the first snap-fit ​​portion and the second snap-fit ​​portion engage in a snap-fit ​​cooperation.

[0009] In some possible implementations, the first snap-fit ​​portion is configured as a snap-fit ​​groove;

[0010] The second snap-fit ​​part includes a connecting rod and a snap-fit ​​connector connected to each other, wherein the connecting rod passes through the snap-fit ​​groove;

[0011] The snap-fit ​​connector is connected to the mounting bracket via the connecting rod, and the snap-fit ​​connector abuts against the surface of the base opposite to the mounting bracket.

[0012] In some possible implementations, there are multiple first snap-fit ​​portions, and multiple first snap-fit ​​portions are disposed on the rear side of the base;

[0013] There are multiple second snap-fit ​​parts, and the second snap-fit ​​parts are arranged in a corresponding manner to the first snap-fit ​​parts, with the multiple second snap-fit ​​parts arranged sequentially at intervals.

[0014] In some possible implementations, the mounting bracket is provided with a plug-in portion that extends downward and engages with the base.

[0015] In some possible implementations, the plug portion is integrally formed with the second snap-fit ​​portion, and the extension direction of the plug portion is parallel to the extension direction of the adjustment component.

[0016] In some possible implementations, the adjustment assembly includes a base plate and a plurality of air guide vanes disposed on the base plate, the air guide vanes being disposed on the forward-facing portion of the base plate.

[0017] In some possible implementations, the mounting bracket is provided with a guide groove, the base plate is provided with a guide post, and the guide post is movably disposed within the guide groove.

[0018] Secondly, embodiments of this application provide an indoor unit, including a heat exchanger and the aforementioned air guide structure, wherein the air guide structure is located on the air outlet side of the heat exchanger.

[0019] Thirdly, embodiments of this application provide an air handling device, including an indoor unit as described above, or an air guiding structure as described above.

[0020] The air guide structure, indoor unit, and air handling equipment provided in this application embodiment are detachably connected to the mounting bracket and the base, allowing the entire structure to be easily installed and disassembled. The mounting bracket is connected to the air conditioner housing via the base. This design allows users to easily disassemble and reinstall the air guide structure when needed, simplifying the maintenance process. The adjustment component is used to adjust the air supply angle, providing more flexible airflow control to adapt to different room layouts and user needs. Attached Figure Description

[0021] 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.

[0022] Figure 1 This is a schematic diagram of the structure of an air handling device provided in an embodiment of this application;

[0023] Figure 2 An exploded view of the base and mounting bracket in an air guide structure provided in this application embodiment;

[0024] Figure 3 for Figure 2 Enlarged view of section A;

[0025] Figure 4 for Figure 2 Enlarged view of section B;

[0026] Figure 5 An exploded view of the guide groove and guide column in an air guiding structure provided in an embodiment of this application.

[0027] Explanation of reference numerals in the attached figures:

[0028] 100. Base;

[0029] 110. First connecting part;

[0030] 120. Plug-in slot;

[0031] 200. Install the bracket;

[0032] 210. Second connecting part;

[0033] 211. Connecting rod;

[0034] 212. Snap-fit ​​connector;

[0035] 220. Connecting part;

[0036] 230. Guide groove;

[0037] 300. Adjustment components;

[0038] 310. Base plate;

[0039] 311. Guide column;

[0040] 320. Air guide vanes.

[0041] The accompanying drawings illustrate specific embodiments of this application, which will be described in more detail below. These drawings and descriptions are not intended to limit the scope of the concept in any way, but rather to illustrate the concept of this application to those skilled in the art through reference to particular embodiments. Detailed Implementation

[0042] As mentioned in the background section, air handling equipment, taking air conditioning equipment as an example, typically has an air deflector at the air outlet. The air deflector is connected to the air outlet by rotation, and the airflow direction is adjusted by changing its opening angle relative to the air outlet. The airflow angle adjustment mainly relies on blades, which are generally fixed in a local area of ​​the air outlet and are pulled by a lever to achieve one-dimensional rotation, thereby achieving left-right sweeping or up-down oscillation.

[0043] However, the aforementioned adjustments to the air supply direction and angle have several drawbacks. Firstly, the area of ​​the air supply zone is directly proportional to the area of ​​the air outlet, limiting the adjustable air supply angle and resulting in a smaller air supply coverage area for the air conditioning unit, making it difficult to meet the air supply needs of large areas. Secondly, because the blades are located within the air duct and can only deflect at the same angle, blind spots can easily appear when adjusting the air supply angle, leading to significant indoor temperature differences and greatly affecting comfort.

[0044] To address the aforementioned issues, an air guide structure can be installed at the air outlet to control the air delivery angle, adapting to different room layouts and user needs. This helps reduce blind spots in air delivery and optimize airflow distribution.

[0045] However, air guide structures typically involve the connection of multiple components, such as air guide plates, rotating shafts, and support frames. The connections between these components can be complex and tight, requiring various fixing methods for assembly and connection. This may necessitate specific tools and skills during disassembly and assembly, increasing operational difficulty. Complex connection structures require more time and manpower for disassembly, assembly, and reassembly, increasing maintenance costs. Complex structures may also make certain parts difficult to access, resulting in incomplete cleaning and affecting the hygiene and performance of the equipment. Furthermore, complex structural designs may lead to misoperation during disassembly and assembly, further increasing the risk of failure and affecting the long-term reliability of the equipment.

[0046] In view of this, the embodiments of this application provide an air guide structure in which the mounting bracket and base are detachably connected, which simplifies the installation and disassembly process of the air guide structure, eliminating the need for complex tools and skills, and reducing the difficulty of operation and maintenance costs; the mounting bracket, base and adjustment components can be independently disassembled and replaced, facilitating maintenance and cleaning, making cleaning more thorough, and improving the hygiene and performance of the equipment; the movable setting of the adjustment components allows for more flexible adjustment of the air supply angle, which can adapt to different room layouts and user needs, and reduce air supply blind spots; by reducing complex connections, the risk of misoperation and failure is reduced, and the long-term reliability of the equipment is improved.

[0047] To make the objectives, technical solutions, and advantages of this application clearer, the technical solutions of this application will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of this application, not all embodiments. Based on the embodiments of this application, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of this application.

[0048] To better explain the air guiding structure provided in this embodiment, the improved structure of the air handling equipment will be described in detail below. In the description of this utility model, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," and "outer," etc., indicating the orientation or positional relationship, are based on the orientation or positional relationship shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description. They do not indicate or imply that the device or element referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation of this utility model.

[0049] refer to Figures 1-3 This application provides an air guide structure, including a base 100, a mounting bracket 200, and an adjustment component 300.

[0050] The base 100 is used to be installed inside the housing of the indoor unit of the air conditioner; the mounting bracket 200 is detachably connected to the base 100, and the mounting bracket 200 can be connected to the housing through the base 100.

[0051] The adjustment component 300 is located on the side of the mounting bracket 200 away from the base 100, and the adjustment component 300 is movably mounted on the mounting bracket 200.

[0052] As can be seen, the base 100 is used to install inside the housing of the indoor unit of the air conditioner, serving as the basic support for the entire air guide structure. The base 100 provides a stable installation platform, allowing the entire structure to be firmly fixed inside the air conditioning equipment. The mounting bracket 200 is detachably connected to the base 100, making the entire structure easy to install and disassemble. The mounting bracket is connected to the air conditioner housing through the base, a design that allows users to easily disassemble and reinstall the air guide structure when needed, simplifying the maintenance process. The adjustment component 300 is used to adjust the air supply angle, providing more flexible airflow control to adapt to different room layouts and user needs.

[0053] The detachable connection between the mounting bracket 200 and the base 100 simplifies the installation and disassembly process, eliminating the need for complex tools and skills, thus reducing operational difficulty and maintenance costs. The mounting bracket 200, base 100, and adjustment component 300 can be independently disassembled and replaced, facilitating maintenance and cleaning, resulting in more thorough cleaning and improved equipment hygiene and performance. The movable setting of the adjustment component 300 allows for more flexible airflow angle adjustment, adapting to different room layouts and user needs, and reducing blind spots in airflow. By reducing complex connections, the risk of misoperation and malfunction is reduced, improving the long-term reliability of the equipment.

[0054] In some possible implementations, the base 100 is provided with a first snap-fit ​​portion 110, and the mounting bracket 200 is provided with a second snap-fit ​​portion 210, wherein the first snap-fit ​​portion 110 and the second snap-fit ​​portion 210 are snap-fitted together.

[0055] It is known that the first snap-fit ​​part 110 and the second snap-fit ​​part 210 are connected by snap-fit, which enables quick connection and disassembly between the mounting bracket 200 and the base 100, and allows for easy disassembly of the adjustment component 300 based on the air guide structure.

[0056] The snap-fit ​​structure features quick connection and separation. Due to its simple design, the snap-fit ​​structure is generally easy to operate, reducing the technical requirements and the possibility of misoperation. The snap-fit ​​structure has low mold opening costs, which can reduce production costs at the same time. Although the snap-fit ​​structure is simple, it can provide a stable connection, withstand a certain amount of vibration and external force, and ensure the reliability of the connection.

[0057] The snap-fit ​​design of the first snap-fit ​​part 110 and the second snap-fit ​​part 210 makes the installation and disassembly process quick and tool-free, significantly reducing the difficulty of operation and time costs; it reduces the need for manpower and time during maintenance, thus reducing the overall maintenance cost; the snap-fit ​​design of the first snap-fit ​​part 110 and the second snap-fit ​​part 210 provides a stable connection, improving the durability of the equipment; the snap-fit ​​design makes the disassembly and reinstallation of the air guide structure more convenient, facilitating cleaning and maintenance, and improving the hygiene of the equipment.

[0058] In some possible implementations, the first snap-fit ​​portion 110 is configured as a snap-fit ​​slot.

[0059] The second snap-fit ​​part 210 includes a connecting rod 211 and a snap-fit ​​connector 212 connected to each other, with the connecting rod 211 passing through the snap-fit ​​groove.

[0060] The snap connector 212 is connected to the mounting bracket 200 via the connecting rod 211, and the snap connector 212 abuts against the surface of the base 100 away from the mounting bracket 200.

[0061] It is known that the first snap-fit ​​part 110 (snap-fit ​​groove) is provided on the base 100 as a fixed point for connection; the connecting rod 211 of the second snap-fit ​​part 210 passes through the first snap-fit ​​part 110 (snap-fit ​​groove) to provide stable support and connection; the snap-fit ​​connector 212 of the second snap-fit ​​part 210 is designed to abut against the surface of the base 100 away from the mounting bracket 200, providing additional fixation and support, and the larger snap-fit ​​connector 212 can prevent the second snap-fit ​​part 210 from coming loose from the first snap-fit ​​part 110.

[0062] The design of the first snap-fit ​​part 110 (snap-fit ​​groove), the connecting rod 211, and the snap-fit ​​connector 212 makes the installation and disassembly process quick and tool-free, significantly reducing the difficulty of operation and time cost. It has low requirements for operability, and users can disassemble the air guide structure themselves, making it convenient for users to clean the air guide structure themselves. The simple structure of the first snap-fit ​​part 110 (snap-fit ​​groove), the connecting rod 211, and the snap-fit ​​connector 212 reduces the possibility of misoperation and improves the long-term reliability of the equipment.

[0063] In some possible implementations, there are multiple first snap-fit ​​portions 110, and multiple first snap-fit ​​portions 110 are disposed on the rear side of the base 100.

[0064] There are multiple second contact parts 210, and the second contact parts 210 are arranged in a corresponding manner to the first contact part 110. The multiple second contact parts 210 are arranged in sequence at intervals.

[0065] It should be noted that multiple first snap-fit ​​parts 110 are provided on the rear side of the base 100, providing multiple fixing points to distribute the gravity of the connection points and the impact force during machine operation; each second snap-fit ​​part 210 cooperates with the corresponding first snap-fit ​​part 110 to achieve a firm connection.

[0066] With the design of multiple corresponding first snap-fit ​​parts 110 and second snap-fit ​​parts 210, the mounting bracket 200 can be fixed to the base 100 at multiple points, which disperses stress and improves the stability and vibration resistance of the overall structure. The spaced arrangement of multiple corresponding first snap-fit ​​parts 110 and second snap-fit ​​parts 210 ensures the uniformity of the connection and reduces the risk of excessive stress at a single point. The design of multiple corresponding first snap-fit ​​parts 110 and second snap-fit ​​parts 210 makes the installation process more intuitive and faster, without the need for complicated tools and skills.

[0067] refer to Figure 2 and Figure 4 In some possible implementations, the mounting bracket 200 is provided with a plug-in portion 220 that extends downward and is plugged into the base 100.

[0068] It is known that the plug-in part 220 provides additional connection and fixing points for the base 100 and the bracket 200.

[0069] Because the plug-in part 220 provides additional connection and fixing points, it increases the contact area and connection strength between the mounting bracket 200 and the base 100, significantly improving the overall structural stability. By increasing the fixing points, the structure can better resist vibration and external forces, reducing the risk of loosening and displacement.

[0070] In some possible implementations, the base 100 has a plug groove 120 that is adapted to the shape of the plug portion 220, and the plug portion 220 is plugged into the plug groove 120 to prevent the connection from shaking.

[0071] In some possible implementations, the plug portion 220 is provided with a locking screw (not shown in the figure), which passes through the plug portion 220 and is threadedly connected to the base 100.

[0072] During use, the plug part 220 is plugged into the base 100. The plug part 220 can be quickly inserted into the base 100 to achieve initial fixation. Then, the locking screw is inserted into the plug part 220 and threaded into the base 100. The locking screw is tightened to further fix the plug part 220 and the base 100 to ensure the stability of the connection.

[0073] Therefore, the plug-in portion 220 provides a preliminary quick connection, while the locking screw provides additional fixing force, ensuring the stability and vibration resistance of the connection; the use of the locking screw reduces the risk of loosening or falling off due to vibration or other external forces, improving the reliability of the overall structure; during adjustment or disassembly, the plug-in portion 220 and the base 100 can be easily separated simply by loosening the locking screw, reducing maintenance costs; the locking screw provides a clear fixed state, reducing the possibility of misoperation and improving the long-term reliability of the equipment.

[0074] In some possible implementations, the plug portion 220 is integrally formed with the second snap-fit ​​portion 210, and the extending direction of the plug portion 220 is parallel to the extending direction of the adjustment component 300.

[0075] It is known that the plug-in part 220 and the second snap-fit ​​part 210 are integrally formed, which reduces the connection points between the parts, reduces the assembly complexity and error risk, and ensures the precise alignment between the plug-in part and the snap-fit ​​part; the parallel design of the part 220 and the adjustment component 300 ensures the coordination and consistency of the entire air guide structure, making the adjustment component 300 smoother and more precise when adjusting the air delivery angle.

[0076] The design of the plug-in part 220 and the second snap-fit ​​part 210 being integrally formed improves the overall strength and precision of the structure and reduces the risk of loosening or failure due to poor connection; the consistency of the direction of the plug-in part 220 and the adjustment component 300 ensures the accuracy of airflow adjustment, reduces air supply blind spots, and improves indoor comfort.

[0077] refer to Figure 5In some possible implementations, the adjustment assembly 300 includes a base plate 310 and a plurality of air guide vanes 320 disposed on the base plate 310. The air guide vanes 320 are disposed on the front side of the base plate 310. For example, the air guide vanes 320 may be disposed on the front-facing portion of the base plate 310.

[0078] It is known that the air guide vane 3220 is used to guide and adjust the airflow direction. By changing the angle of the air guide vane 320, precise control of the airflow direction can be achieved.

[0079] The multiple air guide vanes 320 allow for fine-tuning of airflow to adapt to different room layouts and user needs; by precisely controlling the air delivery angle, the air guide vanes 32 can effectively reduce blind spots in air delivery and ensure uniform airflow distribution; a more uniform airflow distribution reduces indoor temperature differences and improves user comfort.

[0080] By placing the air guide vane 330 on the front side of the base plate 310, closer to the air outlet area, the air guide vane 320 can guide and adjust the airflow just as it leaves the air outlet area, thereby achieving more timely and effective airflow control.

[0081] In addition, the air guide blade 320 is located on the front side of the base plate 310, making it less likely to be blocked by other components. The length of the air guide blade 320 can be set to be longer to improve the air guiding effect.

[0082] refer to Figures 1-2 For example, the adjustment component 300 includes a first adjustment component and a second adjustment component. When the first adjustment component and the second adjustment component are in the first position, the length directions of the first adjustment component and the second adjustment component 300 are on the same straight line. When the first adjustment component and the second adjustment component are in the second position, the ends of the first adjustment component and the second adjustment component that are close to each other extend forward toward the mounting bracket 200.

[0083] In the first position, the first and second adjustment components are aligned along their lengths, forming a straight line. This alignment provides a basic airflow pattern, which can be used for standard or default airflow requirements. By aligning the two components, the airflow can be distributed along a uniform direction, ensuring airflow stability and consistency in the basic configuration.

[0084] In the second position, the adjacent ends of the first and second adjustment components extend forward from the mounting bracket 200. This arrangement allows the adjustment component 300 to change the direction and coverage of the airflow in the second position. By allowing the adjacent ends to extend forward, the air guide structure can direct the airflow to a specific area, increasing the flexibility and coverage of the air supply. This configuration helps reduce blind spots in the air supply and provides a more concentrated airflow distribution.

[0085] Specifically, through the coordinated operation of multiple adjustment components 300, the air guide structure can adapt to more complex air supply needs and provide diverse airflow direction options. The configuration of adjustment components 300 in different positions ensures more precise and controllable adjustment of the airflow direction, allowing for flexible adjustments according to specific requirements.

[0086] In this way, the first and second regulating components can supply air to different areas, each with its own air supply zone, thus expanding the air supply area of ​​the air guide structure and the air handling unit's coverage area. Furthermore, the first and second regulating components can be driven independently, and their air supply zones can be adjusted independently without any linkage between them. This allows the air handling unit to be adapted to different indoor layouts and usage needs. Users can flexibly adjust the air supply zones of the first and second regulating components according to actual conditions to meet the needs of different environments for different air supply zones, ensuring that the airflow blown by the air handling unit is fully and effectively utilized and avoiding waste.

[0087] In some possible implementations, the mounting bracket 200 is provided with a guide groove 230, and the base plate 310 is provided with a guide post 311, which can be movably disposed within the guide groove 230.

[0088] It is known that the guide post 311 can be movably set in the guide groove 230. This design allows the base plate to be precisely moved and positioned on the mounting bracket, so that the mounting bracket 200 can also be flexibly installed and removed from the base plate 310.

[0089] The cooperation between the guide groove 230 and the guide column 311 allows the base plate 310 to move and be positioned precisely on the mounting bracket 200, ensuring more accurate angle adjustment of the air guide blades 320; the design of the guide groove 230 and the guide column 311 makes the movement and positioning of the base plate simpler and more intuitive, reducing the operational complexity during the adjustment process.

[0090] This application provides an indoor unit, including a heat exchanger and the aforementioned air guide structure, the air guide structure being located on the air outlet side of the heat exchanger.

[0091] It is important to know that a heat exchanger can be an evaporator or a condenser. Evaporators, condensers, and compressors are core components in refrigeration equipment (such as air handling equipment), and they work together to achieve a refrigeration cycle.

[0092] The evaporator is the component in a refrigeration system responsible for absorbing heat. In the evaporator, liquid refrigerant absorbs heat from the surrounding air and evaporates into a gas. This process lowers the temperature of the surrounding air, thus achieving a cooling effect.

[0093] The condenser is the component in a refrigeration system responsible for releasing heat. In the condenser, the gaseous refrigerant releases heat and condenses into a liquid, a process that releases heat into the external environment.

[0094] The compressor is responsible for compressing the refrigerant and driving its circulation in the system. It compresses the low-pressure gaseous refrigerant into a high-pressure gaseous state, thereby increasing its temperature and pressure.

[0095] In some possible implementations, the indoor unit can be a wall-mounted air conditioner.

[0096] It should be noted that the indoor unit can also be a cabinet air conditioner, a portable air conditioner, etc., and this application does not impose any special limitations on the embodiments.

[0097] This application provides an air handling device, including the indoor unit described above, or the air guiding structure described above.

[0098] This application provides an air handling device, which includes, but is not limited to, air conditioning equipment, humidifiers, dehumidifiers, ventilation equipment, heat recovery ventilation systems, air purifiers, and fresh air equipment.

[0099] In this embodiment, an air handling unit is used as an example of an air conditioning unit for explanation. Air conditioning units may include wall-mounted air conditioners, floor-standing air conditioners, central air conditioning systems, ducted air conditioners, etc.

[0100] It should be noted that the numerical values ​​and ranges involved in this application are approximate values. Due to the influence of the manufacturing process, there may be a certain range of errors, which can be considered negligible by those skilled in the art.

[0101] In the description of the embodiments of this application, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "linking" should be interpreted broadly. For example, they can refer to a fixed connection, an indirect connection through an intermediate medium, or the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in the embodiments of this application according to the specific circumstances.

[0102] In the description of this application, it should be understood that the terms “center,” “length,” “width,” “thickness,” “top,” “bottom,” “upper,” “lower,” “left,” “right,” “front,” “rear,” “vertical,” “horizontal,” “inner,” “outer,” “axial,” and “circumferential” used to indicate orientation or positional relationships are based on the orientation or positional relationships shown in the accompanying drawings and are only for the convenience of describing this utility model and simplifying the description, and are not intended to indicate or imply that the indicated position or component must have a specific orientation, specific structure, or specific operation, and therefore should not be construed as a limitation of this utility model.

[0103] The devices or elements referred to in the embodiments of this application or implied herein must have a specific orientation, be constructed and operated in a specific orientation, and therefore should not be construed as limiting the embodiments of this application. In the description of the embodiments of this application, "a plurality of" means two or more, unless otherwise precisely specified.

[0104] The terms "first," "second," "third," "fourth," etc. (if present) in the specification, claims, and accompanying drawings of this application are used to distinguish similar objects and are not necessarily used to describe a specific order or sequence. It should be understood that such data can be interchanged where appropriate so that the embodiments of this application described herein can be implemented, for example, in a sequence other than those illustrated or described herein.

[0105] Furthermore, the terms “comprising” and “having”, and any variations thereof, are intended to cover non-exclusive inclusion, such that a process, method, system, product, or apparatus that includes a series of steps or units is not necessarily limited to those steps or units that are explicitly listed, but may include other steps or units that are not explicitly listed or that are inherent to such process, method, product, or apparatus.

[0106] The term "multiple" in this article refers to two or more. The term "and / or" in this article is merely a description of the relationship between related objects, indicating that three relationships can exist. For example, A and / or B can represent: A alone, A and B simultaneously, or B alone. Furthermore, the character " / " in this article generally indicates an "or" relationship between the preceding and following related objects; in formulas, the character " / " indicates a "division" relationship between the preceding and following related objects.

[0107] It is understood that the various numerical designations used in the embodiments of this application are merely for descriptive convenience and are not intended to limit the scope of the embodiments of this application.

[0108] It is understood that, in the embodiments of this application, the order of the above-mentioned process numbers does not imply the order of execution. The execution order of each process should be determined by its function and internal logic, and should not constitute any limitation on the implementation process of the embodiments of this application.

Claims

1. An air guiding structure, characterized in that, Includes a base (100), a mounting bracket (200), and an adjustment assembly (300); The base (100) is used to be installed inside the housing of the indoor unit of the air conditioner; the mounting bracket (200) is detachably connected to the base (100), and the mounting bracket (200) can be connected to the housing through the base (100); The adjustment component (300) is located on the side of the mounting bracket (200) away from the base (100), and the adjustment component (300) is movably disposed on the mounting bracket (200).

2. The air guiding structure according to claim 1, characterized in that, The base (100) is provided with a first snap-fit ​​part (110), and the mounting bracket (200) is provided with a second snap-fit ​​part (210). The first snap-fit ​​part (110) and the second snap-fit ​​part (210) are snap-fitted together.

3. The air guiding structure according to claim 2, characterized in that, The first snap-fit ​​part (110) is configured as a snap-fit ​​slot; The second snap-fit ​​part (210) includes a connecting rod (211) and a snap-fit ​​connector (212) connected to each other, wherein the connecting rod (211) passes through the snap-fit ​​groove; The snap connector (212) is connected to the mounting bracket (200) via the connecting rod (211), and the snap connector (212) abuts against the surface of the base (100) away from the mounting bracket (200).

4. The air guiding structure according to claim 2, characterized in that, The number of the first snap-fit ​​portion (110) is multiple, and the multiple first snap-fit ​​portions (110) are disposed on the rear side of the base (100); There are multiple second latching parts (210), and the second latching parts (210) are provided corresponding to the first latching parts (110).

5. The air guiding structure according to claim 2, characterized in that, The mounting bracket (200) is provided with a plug-in portion (220) that extends downward and is plugged into the base (100).

6. The air guiding structure according to claim 5, characterized in that, The insertion part (220) is integrally formed with the second snap-fit ​​part (210), and the extension direction of the insertion part (220) is parallel to the extension direction of the adjustment component (300).

7. The air guiding structure according to any one of claims 1-6, characterized in that, The adjustment assembly (300) includes a base plate (310) and a plurality of air guide blades (320) disposed on the base plate (310), the air guide blades (320) being disposed on the front-facing portion of the base plate (310).

8. The air guiding structure according to claim 7, characterized in that, The mounting bracket (200) is provided with a guide groove (230), and the base plate (310) is provided with a guide post (311), which is movably disposed in the guide groove (230).

9. An indoor unit, characterized in that, The indoor unit is a wall-mounted air conditioner, which includes a heat exchanger and an air guide structure as described in any one of claims 1-8, wherein the air guide structure is located on the air outlet side of the heat exchanger.

10. An air handling device, characterized in that, Includes the indoor unit as described in claim 9, or the air guiding structure as described in any one of claims 1-8.