Air conditioner sub-machine and air conditioner assembly with same
Patent Information
- Application Number
- CN202111483400.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2021-12-07
- Publication Date
- 2026-08-21
- Estimated Expiration
- 2041-12-07
AI Technical Summary
[0003]现有技术中,空调子机功能有限,空调子机常常只能进行驱动室内空气流通的工作,无法满足用户多种需求,因此,在本申请中,对空调子机进行改进,使其具有多种功能,多功能空调子机可在室内移动,即使安装有空调器的室内面积大,空调子机仍能对距空调母机较远的空间进行多种类型的空气处理工作,提升用户使用体验
[0024] An air conditioner assembly according to another embodiment of the present invention is briefly described below.
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Figure CN116241947B_ABST
Abstract
Description
Technical Field
[0001] This invention relates to the field of air conditioning technology, and in particular to an air conditioning unit and an air conditioning assembly having the same. Background Technology
[0002] In related technologies, as users' needs for air conditioner functions continue to evolve, air conditioners have incorporated various structures and forms, including a main unit and sub-unit structure. For floor-standing or wall-mounted air conditioners, the unit is typically fixed in one location, limiting its airflow range and method. However, in a main unit / sub-unit air conditioner, both the main unit and the sub-unit can perform heat exchange. The main unit and sub-unit can work independently or in coordination. Depending on the user's needs, the sub-unit can be moved around the room, detached from the main unit, to provide auxiliary temperature control in areas not covered by the main unit, thus expanding the temperature regulation range. The main unit also functions as a charger and storage unit for the sub-unit.
[0003] In the prior art, the functions of air conditioner sub-units are limited. They often only drive indoor air circulation and cannot meet the diverse needs of users. Therefore, in this application, the air conditioner sub-unit is improved to have multiple functions. The multi-functional air conditioner sub-unit can be moved indoors. Even if the indoor area where the air conditioner is installed is large, the air conditioner sub-unit can still perform various types of air treatment work in spaces far from the main air conditioner unit, thereby improving the user experience. Summary of the Invention
[0004] This invention aims to at least solve one of the technical problems existing in the prior art. Therefore, one object of this invention is to provide an air conditioner sub-unit. The air conditioner sub-unit according to this invention has rich functions and can switch between different functions according to the user's own needs, meeting the different airflow requirements of users and improving the user experience.
[0005] The present invention also proposes an air conditioner assembly having the above-mentioned air conditioner subunit.
[0006] The air conditioner unit according to the present invention includes: a movable chassis with drive wheels disposed on the movable chassis; a support frame disposed on the upper part of the movable chassis; a fan component having an air inlet and an air outlet and mounted on the support frame; and a functional component detachably disposed on the support frame, the functional component having an airflow processing section located at the air inlet and / or the air outlet, the airflow processing section being used to process the airflow passing through the airflow processing section.
[0007] The air conditioner unit involved in this invention includes a fan component and detachable and replaceable functional components. The functional components include an airflow processing unit, which processes the air blown out by the fan component by placing the airflow processing unit at the air outlet or air inlet of the fan component. The functional components can have different functions according to user needs. The air conditioner unit is movable and can bring the processed air to various parts of the room. The inclusion of functional components can greatly enrich the functions of the air conditioner unit, improve the user experience, and meet the air needs of different users, thus reaching a wider audience.
[0008] According to some embodiments of the present invention, a receiving cavity for accommodating the fan component and the functional component is formed within the support frame, the fan component is disposed at the top of the receiving cavity, and the air inlet of the fan component is spaced apart from the support frame to form an installation gap for accommodating the airflow processing unit.
[0009] According to some embodiments of the present invention, the airflow treatment unit is configured as a plurality of units, and the plurality of airflow treatment units are overlapped within the mounting gap.
[0010] According to some embodiments of the present invention, the functional component includes: a main body disposed within the receiving cavity and located below the fan component; and an airflow processing unit disposed on the upper side of the main body and housed within the mounting gap.
[0011] According to some embodiments of the present invention, the main body includes: a functional housing, wherein a media storage cavity is disposed within the functional housing and is located above the mobile chassis; and a functional processing component, which communicates with the media storage cavity and can selectively transport the media stored in the media storage cavity to the airflow processing unit.
[0012] According to some embodiments of the present invention, the support frame includes: a base plate disposed on the movable chassis; a first side plate and a second side plate disposed on the sides of the base plate facing each other and extending in the height direction, the free ends of the first side plate and the second side plate being provided with flanges extending toward each other, and the fan component being fixed to the flanges.
[0013] According to some embodiments of the present invention, the fan component is constructed as a centrifugal fan and is provided with a first air inlet and a second air inlet respectively facing the first side plate and the second side plate. The first side plate is spaced apart from the first air inlet to form the installation gap and is provided with a first communication port facing the first air inlet. The second side plate is spaced apart from the second air inlet to form the installation gap and is provided with a second communication port facing the second air inlet.
[0014] According to some embodiments of the present invention, the air conditioner sub-unit further includes: a first outer casing side plate and a second outer casing side plate, the first outer casing side plate and the second outer casing side plate being respectively disposed on the support frame, the first outer casing side plate being provided with a plurality of dustproof holes facing the first communication port, and the second outer casing side plate being provided with a plurality of dustproof holes facing the second communication port.
[0015] According to some embodiments of the present invention, the air conditioner sub-unit further includes: a rear side plate, the rear side plate being disposed at the rear of the support frame and selectively closing the receiving cavity, the rear side plate being provided with a first mounting portion, the support frame being provided with a second mounting portion cooperating with the first mounting portion, the first mounting portion and the second mounting portion being magnetically or snap-fitted together.
[0016] According to some embodiments of the present invention, the air outlet of the centrifugal fan is located at the upper part, and the air conditioning unit further includes an air guide module, which is located on the upper side of the flange and is directly opposite to the air outlet to adjust the air outlet direction of the air conditioning unit.
[0017] According to some embodiments of the present invention, the air outlet of the centrifugal fan is located at the upper part, and the air conditioning unit further includes an air guide module, which is located on the upper side of the flange and is directly opposite to the air outlet to adjust the air outlet direction of the air conditioning unit.
[0018] According to some embodiments of the present invention, the airflow processing unit is configured as two units and is respectively disposed between the first air inlet and the first connecting port and between the second air inlet and the second connecting port.
[0019] According to some embodiments of the present invention, the air conditioner sub-unit further includes: an airflow handling unit support frame, the airflow handling unit support frame including: a first frame, the first frame being disposed between the first air inlet and the first communication port and used to support the airflow handling unit; a second frame, the second frame being disposed between the second air inlet and the second communication port and used to support the airflow handling unit; and a connecting plate, the connecting plate being respectively connected to one end of the first frame and the second frame on the same side.
[0020] According to some embodiments of the present invention, the first frame and the second frame are respectively provided with a first slide groove, and the airflow processing unit is slidably disposed in the first slide groove.
[0021] According to some embodiments of the present invention, at least one airflow processing unit is configured as an air purification module, and the first frame and the second frame are respectively provided with a second slide groove arranged in parallel with the first slide groove. The air purification module is configured as two and is slidably disposed in the second slide groove.
[0022] According to some embodiments of the present invention, the airflow processing unit is configured as a heat exchanger, the functional housing is adapted to store a cold storage medium, and the functional processing component includes: a pump body, a compressor, and heat exchange pipelines.
[0023] According to some embodiments of the present invention, the airflow treatment unit is configured as a wet membrane, the functional box contains a bactericidal medium, and the functional treatment component includes a humidifying water tank and a spraying element, the spraying element being adapted to spray water from the humidifying water tank onto the wet membrane.
[0024] An air conditioner assembly according to another embodiment of the present invention is briefly described below.
[0025] The air conditioner assembly according to the present invention includes: an air conditioner main unit, wherein the air conditioner main unit is provided with a sub-unit receiving cavity; and an air conditioner sub-unit, wherein the air conditioner sub-unit is constructed as described in any of the above embodiments, and the air conditioner sub-unit is movably disposed and selectively moved into the sub-unit receiving cavity.
[0026] In summary, the air conditioner of this invention features a mother-daughter unit structure, in which the daughter unit is movable indoors. The daughter unit contains detachable functional components, allowing users to switch between different functions by replacing these components, thus enriching the user experience. The functional components include multiple airflow processing units, enabling the daughter unit to simultaneously perform various air handling tasks. Each airflow processing unit is individually detachable and replaceable, offering convenience and meeting individual user needs for air handling, with high operability. The daughter unit has two air inlets for higher air handling efficiency, and also features an upward-facing air outlet and air guide module, effectively expanding the airflow range and improving air handling efficiency. The daughter unit operates stably and has high safety performance, ensuring user safety. It also includes a side panel for aesthetic appeal, and users can easily replace functional components via the rear side panel.
[0027] Additional aspects and advantages of the invention will be set forth in part in the description which follows, and in part will be obvious from the description, or may be learned by practice of the invention. Attached Figure Description
[0028] The above and / or additional aspects and advantages of the present invention will become apparent and readily understood from the description of the embodiments taken in conjunction with the following drawings, in which:
[0029] Figure 1 This is an overall structural diagram of an air conditioner according to an embodiment of the present invention.
[0030] Figure 2 This is a structural diagram of an air conditioner sub-unit according to an embodiment of the present invention.
[0031] Figure 3 This is a diagram showing the internal structure of the rear panel of the air conditioner unit after disassembly, according to an embodiment of the present invention.
[0032] Figure 4 It is based on Figure 3 The internal structure diagram of the air conditioner sub-unit after further disassembly.
[0033] Figure 5 This is a structural diagram of the support frame according to an embodiment of the present invention.
[0034] Figure 6 This is a structural diagram of the airflow treatment unit support frame according to an embodiment of the present invention.
[0035] Figure 7 This is a structural diagram of a support frame for an airflow processing unit equipped with heat exchange pipes according to an embodiment of the present invention.
[0036] Figure 8 This is an exploded view of the airflow treatment unit support frame according to an embodiment of the present invention.
[0037] Figure 9 This is a structural diagram of a functional component with heat exchange function according to an embodiment of the present invention.
[0038] Figure 10 This is a structural diagram of an air conditioner sub-unit with heat exchange function components according to an embodiment of the present invention.
[0039] Figure 11 This is a structural diagram of an air conditioner sub-unit with heat exchange function components according to an embodiment of the present invention.
[0040] Figure 12 This is a structural diagram of an air conditioner sub-unit with a detachable airflow handling section according to an embodiment of the present invention.
[0041] Figure 13 This is a structural diagram of a support frame for an airflow treatment unit equipped with a wet film according to an embodiment of the present invention.
[0042] Figure 14 This is a structural diagram of a functional component with humidification and sterilization functions according to an embodiment of the present invention.
[0043] Figure 15 This is a structural diagram of an air conditioner sub-unit with humidification and sterilization functions according to an embodiment of the present invention.
[0044] Figure 16 This is a structural diagram of an air conditioner sub-unit with a detachable airflow handling section according to an embodiment of the present invention.
[0045] Figure label:
[0046] Air conditioner assembly 1; Air conditioner sub-unit 10;
[0047] Support frame 100; receiving cavity 100a; installation gap 100b; flange 101; mating hole 101a; second mounting part 101b; first side plate 110; first connecting port 110a; second side plate 120; second connecting port 120a; base plate 130;
[0048] Airflow processing unit support frame 200; first slide 201; second slide 202; first frame 210; second frame 220; connecting plate 230;
[0049] Functional component 400; airflow handling unit 410; air purification module 411; heat exchanger 412; wet film 413; main body 420; functional housing 421; pump body 422a; compressor 422b; heat exchange pipeline 422c; humidification water tank 422d;
[0050] First outer casing side panel 510; dustproof hole 500a; rear side panel 530; first mounting part 531;
[0051] Fan components 300; mobile chassis 600; drive wheels 601; air guide module 700; baffle 800;
[0052] Air conditioner main unit 20; daughter unit housing cavity 20a; power supply module 21. Detailed Implementation
[0053] Embodiments of the present invention are described in detail below. Examples of these embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar elements or elements having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and are only used to explain the present invention, and should not be construed as limiting the present invention.
[0054] In the description of this invention, it should be understood that the terms "center," "longitudinal," "lateral," "length," "width," "thickness," "upper," "lower," "front," "rear," "left," "right," "vertical," "horizontal," "top," "bottom," "inner," "outer," "clockwise," and "counterclockwise," etc., indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. They are only for the convenience of describing this invention and simplifying the description, and 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. Therefore, they should not be construed as limitations on this invention.
[0055] Furthermore, the terms "first" and "second" are used for descriptive purposes only and should not be construed as indicating or implying relative importance or implicitly specifying the number of technical features indicated. Thus, a feature defined as "first" or "second" may explicitly or implicitly include one or more of that feature. In the description of this invention, "a plurality of" means at least two, such as two, three, etc., unless otherwise explicitly specified.
[0056] In this invention, unless otherwise explicitly specified and limited, the terms "installation," "connection," "linking," and "fixing," etc., should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral part; they can refer to a mechanical connection, an electrical connection, or a connection that allows communication between them; they can refer to a direct connection or an indirect connection through an intermediate medium; they can refer to 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 this invention according to the specific circumstances.
[0057] In this invention, unless otherwise explicitly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0058] In related technologies, as users' needs for air conditioner functions continue to evolve, air conditioners have incorporated various structures and forms, including a main unit and sub-unit structure. For floor-standing or wall-mounted air conditioners, the unit is typically fixed in one location, limiting its airflow range and method. However, in a main unit / sub-unit air conditioner, both the main unit and the sub-unit can perform heat exchange. The main unit and sub-unit can work independently or in coordination. Depending on the user's needs, the sub-unit can be moved around the room, detached from the main unit, to provide auxiliary temperature control in areas not covered by the main unit, thus expanding the temperature regulation range. The main unit also functions as a charger and storage unit for the sub-unit.
[0059] In the prior art, the functions of air conditioner sub-units are limited. They often only drive indoor air circulation and cannot meet the diverse needs of users. Therefore, in this application, the air conditioner sub-unit is improved to have multiple functions. The multi-functional air conditioner sub-unit can be moved indoors. Even if the indoor area where the air conditioner is installed is large, the air conditioner sub-unit can still perform various types of air treatment work in spaces far from the main air conditioner unit, thereby improving the user experience.
[0060] The following is for reference. Figures 1-16 The air conditioner sub-unit 10 according to an embodiment of the present invention is described.
[0061] like Figures 2-16 As shown, the air conditioner unit 10 according to the present invention includes: a movable chassis 600, a support frame 100, a fan component 300, and a functional component 400. The movable chassis 600 is provided with drive wheels 601; the support frame 100 is disposed on the upper part of the movable chassis 600; the fan component 300 has an air inlet and an air outlet, and is mounted on the support frame 100; the functional component 400 is detachably disposed on the support frame 100, and the functional component 400 is provided with an airflow processing section 410, which is located at the air inlet and / or the air outlet, and is adapted to process the airflow passing through it.
[0062] Specifically, the air conditioner unit 10 can move autonomously according to the surrounding environment via the drive wheels 601 on the movable chassis 600. The fan component 300 enables the air conditioner unit 10 to perform the most basic function of driving air circulation. The functional component 400 allows the air conditioner unit 10 to have different functions according to different user needs. For example, when the functional component 400 has a purification function, the air conditioner unit 10 can purify the air; when the functional component 400 has a humidification function, the air conditioner unit 10 can humidify the air. It is understood that the function of the functional component 400 is not limited to purification and humidification; it can also have disinfection and sterilization functions or cold storage functions, etc. The fan component 300 and the functional component 400 are mounted on the support frame 100. The functional component 400 is detachable, allowing users to replace it according to their needs. The multi-functional modular design of the air conditioner unit 10 can meet the different needs of different users, making it more versatile.
[0063] More specifically, such as Figure 4As shown, the support frame 100, as the main body 420 of the air conditioner sub-unit 10, can be used to install the fan component 300 and the functional component 400. The fan component 300 has an air inlet and an air outlet. Indoor air enters the fan component 300 through the air inlet, is driven by the fan component 300, and is blown into the room through the air outlet, thereby enabling the air conditioner sub-unit 10 to achieve the basic function of driving indoor air circulation. The functional component 400 is equipped with an airflow processing unit 410, which is located at the air inlet and / or air outlet of the fan component 300. The airflow processing unit 410 is suitable for processing the air flowing through the fan component 300. For example, when the function of the functional component 400 is to purify the air, an air purification module 411 can be installed in the airflow processing unit 410. After the air at the fan component 300 comes into contact with the airflow processing unit 410, it can be filtered or purified, and the air conditioning unit 10 can blow out the purified clean air. When the function of the functional component 400 is to humidify the air, a wet film 413 can be installed in the airflow processing unit 410. After the air at the fan component 300 comes into contact with the airflow processing unit 410, it can carry the water vapor from the wet film 413 and blow it out, and the air conditioning unit 10 can blow out humidified air. It is understood that the function of the functional component 400 is not limited to those described above. Different airflow handling units 410 correspond to different functional components 400. By changing the functional components 400, the air conditioning unit 10 can switch between different functions.
[0064] In the air conditioner unit 10 of the present invention, a fan component 300 and a detachable and replaceable functional component 400 are provided. The functional component 400 is provided with an airflow processing unit 410. By placing the airflow processing unit 410 at the air outlet or air inlet of the fan component 300, the air blown out by the fan component 300 is processed. The functional component 400 can have different functions according to user needs. The air conditioner unit 10 is movable and can bring the air after airflow processing to various parts of the room. The provision of the functional component 400 can greatly enrich the functions of the air conditioner unit 10, improve the user experience, and meet the air needs of different users, thus reaching a wider audience.
[0065] According to some embodiments of the present invention, such as Figures 3-5As shown, a receiving cavity 100a is formed inside the support frame 100. The receiving cavity 100a can be used to accommodate the fan component 300 and the functional component 400. The fan component 300 is disposed on the top of the receiving cavity 100a. The air inlet of the fan component 300 is spaced apart from the support frame 100 to form an installation gap 100b. The installation gap 100b is used to accommodate the airflow processing unit 410. Specifically, both the fan component 300 and the functional component 400 are housed within the receiving cavity 100a. To facilitate the circulation of indoor air driven by the air conditioning unit 10, the fan component 300 is positioned at the top of the entire air conditioning unit 10. An airflow treatment unit 410 is provided at the air inlet of the fan component 300. To facilitate the installation of the airflow treatment unit 410, the air inlet is separated from the support frame 100, and the gap formed between the two is the installation gap 100b. The installation gap 100b can accommodate the airflow treatment unit 410, which can process the airflow entering the fan component 300, such as by filtering, humidifying, and removing formaldehyde.
[0066] According to some embodiments of the present invention, such as Figures 6-8 , Figures 13-14 As shown, multiple airflow handling units 410 are constructed, and these multiple airflow handling units 410 are overlapped within the mounting gap 100b. Specifically, since the functions of the functional components 400 are different, the construction of the airflow handling units 410 is also different. For example, when the function of the functional component 400 is cooling, such as... Figures 6-8 As shown, the airflow treatment unit 410 can be formed by overlapping a heat exchanger 412 and an air purification module 411. Air is purified and heat-exchanged while passing through the airflow treatment unit 410. The heat-exchanged air enters the fan component 300 through the air inlet and is blown into the room through the air outlet. When the function of the functional component 400 is humidification and sterilization, such as... Figures 13-14 As shown, the airflow handling unit 410 can be formed by overlapping a wet film 413 and an air purification module 411. Air is purified as it passes through the airflow handling unit 410, carrying moisture from the wet film 413. The humid and clean air enters the fan unit 300 through the air inlet and is blown into the room through the air outlet. It is understood that the structure and function of the airflow handling unit 410 are not limited to those described above. Providing multiple airflow handling units 410 facilitates the air conditioning sub-unit 10 in performing various types of air handling tasks.
[0067] According to some embodiments of the present invention, such as Figure 9 , Figure 14As shown, the functional component 400 includes a main body 420 and an airflow handling unit 410. The main body 420 is disposed within the receiving cavity 100a and is located below the fan component 300; the airflow handling unit 410 is disposed above the main body 420 and is housed within the mounting gap 100b. Specifically, to fully utilize the internal space of the support frame 100, the fan component 300 is disposed above the support frame 100, the main body 420 of the functional component 400 is disposed below the fan component 300, and the airflow handling unit 410 of the functional component 400 is disposed above the main body 420 and within the mounting gap 100b between the fan component 300 and the support frame 100. This results in high utilization of the internal space of the air conditioning unit 10 and a more compact structure within the support frame 100.
[0068] More specifically, the main body 420 and the airflow treatment unit 410 of the functional component 400 are separable. When the user disassembles and replaces the functional component 400, the user can remove the main body 420 and the airflow treatment unit 410 from the support frame 100 respectively. Or when it is necessary to replace or clean one of the multiple airflow treatment units 410, the user can disassemble the airflow treatment unit 410 separately. It is convenient to use and has high operability.
[0069] According to some embodiments of the present invention, such as Figure 9 , Figure 14 As shown, the main body 420 includes a functional housing 421 and a functional processing component. The functional housing 421 has a media storage chamber and is located on top of the mobile chassis 600. The functional processing component communicates with the media storage chamber and is adapted to selectively transport the media stored in the media storage chamber to the airflow processing unit 410. Specifically, the functional housing 421 is adapted to contain media. Since the functions of different functional components 400 are different, the media contained in the functional housing 421 are also different. For example, when the function of the functional component 400 is to humidify the air, the media in the functional housing 421 can be clean water, and in this case, the functional housing 421 can act as a water tank to contain clean water; when the function of the functional component 400 is to cool the air, the media in the functional housing 421 is refrigerant, and in this case, the functional housing 421 can act as a cold water storage tank to contain refrigerant. It is understood that the types of media are not limited to those described above.
[0070] More specifically, such as Figure 9 , Figure 14 As shown, the functional processing component can transport the medium inside the functional housing 421 to the airflow processing unit 410, so that the air flowing through the airflow processing unit 410 comes into contact with the medium and is processed accordingly.
[0071] For example, when the function of component 400 is to humidify and sterilize the air, such as Figure 14As shown, the medium inside the functional box 421 is a chemical substance with bactericidal effect. At this time, the functional box 421 is a sterilization box. The functional processing component delivers the chemical substance inside the sterilization box to the airflow processing unit 410. The airflow processing unit 410 is formed by overlapping a wet film 413 and an air purification module 411. Both the wet film 413 and the air purification module 411 can sterilize the air. The indoor air flowing towards the fan component 300 is purified by the wet film 413 and the air purification module 411. The clean and humid air is blown back into the room by the drive of the fan component 300, thereby completing the humidification and sterilization of the air.
[0072] For example, when the functional component 400 cools the air, such as... Figure 9 As shown, the medium inside the functional housing 421 is refrigerant. The functional processing component is equipped with a compressor 422b that can convert the refrigerant between gaseous and liquid states. The refrigerant absorbs heat during the vaporization process in the evaporator. In some embodiments, the functional housing 421 may contain low-temperature liquid water. The liquid water in the functional housing 421 is directly pumped to the functional component 400 or exchanges heat with the condenser to absorb the heat of the high-temperature refrigerant, thereby realizing the energy conversion in the air conditioning unit 10. The airflow processing unit 410 is composed of an air purification module 411. The indoor air flowing towards the fan component 300 is purified and cooled by the air purification module 411. The clean and cold air is blown back into the room by the drive of the fan component 300, thereby completing the air cooling work.
[0073] It is understandable that the functions of the functional housing 421 are not limited to those described above.
[0074] In some embodiments of the present invention, such as Figure 9 , Figure 14 As shown, there are two functional housings 421, and the functional housings 421 are located on both sides of the functional processing component. The functional processing component can process the media in the two media storage cavities at the same time, resulting in higher air processing efficiency.
[0075] According to some embodiments of the present invention, such as Figure 5As shown, the support frame 100 includes a base plate 130, a first side plate 110, and a second side plate 120. The base plate 130 is mounted on the movable chassis 600; the first side plate 110 and the second side plate 120 are located on opposite sides of the base plate 130, and both the first side plate 110 and the second side plate 120 extend in the height direction. The free ends of the first side plate 110 and the second side plate 120 are provided with flanges 101 extending toward each other, and the fan component 300 is fixed to the flanges 101. Specifically, the support frame 100 can accommodate the functional component 400 while supporting the fan component 300. The base plate 130 of the support frame 100 is fixedly connected to the mobile chassis 600. The base plate 130 can carry the functional box 421 and the functional processing component. The first side plate 110 and the second side plate 120 are located on both sides of the base plate 130 and are fixedly connected to the base plate 130 respectively. The free ends of the first side plate 110 and the second side plate 120 are provided with flanges 101. The flanges 101 are adapted to form the connection and fixing ends between the fan component 300 and the support frame 100. The fan component 300 and the support frame 100 are connected at the flanges 101. The fan component 300 is installed on the top of the support frame 100.
[0076] In some embodiments of the present invention, such as Figure 5 As shown, the flanged part 101 is provided with a mating hole 101a structure, and the fan component 300 is provided with a mating protrusion. The mating protrusion passes through the mating hole 101a and is mated with the flanged part 101. When the fan component 300 is mated with the flanged part 101, the mating protrusion can be inserted into the mating hole 101a and mated with the mating hole 101a and fixed. The structure of the mating hole 101a and the mating protrusion can make the mating between the flanged part 101 and the fan component 300 more stable, prevent the fan component 300 from falling out of the support frame 100 during operation, improve the safety performance of the air conditioner sub-unit 10, and protect the safety of the user.
[0077] In some embodiments of the present invention, such as Figure 5 As shown, each flange 101 has two mating holes 101a, and the number and position of the mating protrusions on the fan component 300 correspond to the mating holes 101a.
[0078] In some embodiments of the present invention, such as Figures 2-4 As shown, the fan component 300 has two air inlets, which are directly opposite the first side plate 110 and the second side plate 120, respectively. The flanged portion 101 extends toward each other. After the fan component 300 and the flanged portion 101 are installed, the flanged portion 101 can just separate the fan component 300 from the first side plate 110 and the second side plate 120 in the width direction of the flanged portion 101, thereby forming an installation gap 100b that facilitates the installation of the airflow treatment unit 410.
[0079] According to some embodiments of the present invention, such as Figures 2-4 As shown, the fan component 300 is constructed as a centrifugal fan. The fan component 300 is also provided with a first air inlet and a second air inlet, which are respectively directly opposite to the first side plate 110 and the second side plate 120. The first side plate 110 is spaced apart from the first air inlet to form an installation gap 100b. The first side plate 110 is also provided with a first connecting port 110a, which is directly opposite to the first air inlet. The second side plate 120 is spaced apart from the second air inlet to form an installation gap 100b, and the second side plate 120 is also provided with a second connecting port 120a, which is directly opposite to the second air inlet. Specifically, the fan component 300 is adapted to drive air circulation when the functional component 400 is activated. The fan component 300 is equipped with a centrifugal fan, which can drive air from the air inlet into the fan component 300 and blow the air inside the fan component 300 out from the air outlet and diffuse it into the room.
[0080] More specifically, such as Figure 4 As shown, the first side plate 110 is positioned directly opposite the first air inlet. To allow a large amount of air to circulate through the first air inlet, a first connecting port 110a is provided on the first side plate 110. An airflow processing unit 410 is provided between the first connecting port 110a and the first air inlet. After the air flows through the first connecting port 110a, it passes through the airflow processing unit 410. After being processed by the airflow processing unit 410, the air has an effect corresponding to the functional component 400. The processed air is driven by a centrifugal fan into the fan component 300 at the first air inlet. The centrifugal fan blows the processed air to various parts of the room. The second side plate 120 is positioned directly opposite the second air inlet. A second connecting port 120a is provided on the second side plate 120. An airflow treatment section 410 is provided between the second connecting port 120a and the second air inlet. After the air flows through the second connecting port 120a, it passes through the airflow treatment section 410. After being treated by the airflow treatment section 410, the air has an effect corresponding to the functional component 400. The treated air is driven by a centrifugal fan at the second air inlet into the fan component 300. The centrifugal fan blows the treated air to various parts of the room.
[0081] According to some embodiments of the present invention, such as Figures 2-3As shown, the air conditioner sub-unit 10 also includes a first outer casing side plate 510 and a second outer casing side plate. The first outer casing side plate 510 and the second outer casing side plate are respectively disposed on the support frame 100. The first outer casing side plate 510 is provided with a plurality of dustproof holes 500a, and the plurality of dustproof holes 500a are directly opposite to the first connecting port 110a. The second outer casing side plate is provided with a plurality of dustproof holes 500a, and the plurality of dustproof holes 500a are directly opposite to the second connecting port 120a. Specifically, to prevent debris in the indoor air from contacting the airflow treatment unit 410 and causing pollution, a first outer shell side plate 510 is provided at the first connecting port 110a and a second outer shell side plate is provided at the second connecting port 120a. Both the first outer shell side plate 510 and the second outer shell side plate are provided with dustproof holes 500a, and the dustproof holes 500a are directly opposite the first connecting port 110a and the second connecting port 120a. The dustproof holes 500a can perform preliminary filtration of indoor air. After larger debris such as wool or hair in the indoor air is filtered by the dustproof holes 500a, the air can be further processed by the airflow treatment unit 410.
[0082] More specifically, such as Figures 2-3 As shown, the first outer casing side panel 510 and the second outer casing side panel can serve as the two exterior surfaces of the air conditioner sub-unit 10. Multiple dustproof holes 500a are neatly arranged to enhance the aesthetics and prevent users from touching the interior of the air conditioner sub-unit 10, thus protecting user safety.
[0083] According to some embodiments of the present invention, such as Figure 2 As shown, the air conditioner sub-unit 10 also includes a rear side panel 530. The rear side panel 530 is disposed at the rear of the support frame 100. The rear side panel 530 can selectively close the receiving cavity 100a. At the same time, a first mounting part 531 is provided on the rear side panel 530, and a second mounting part 101b is provided on the support frame 100. The first mounting part 531 and the second mounting part 101b can be engaged by magnetic attraction or snap-fit. Specifically, the side appearance surface of the air conditioner sub-unit 10 can be composed of a first outer shell side panel 510, a rear side panel 530, and a second outer shell side panel. The rear side panel 530 can be movably disposed to open or close the receiving cavity 100a, so that the user can replace the main body 420 of the functional component 400, thereby changing the function of the functional component 400.
[0084] More specifically, such as Figure 2As shown, a first mounting portion 531 is provided on one side of the rear panel 530, and a second mounting portion 101b is provided on the side of the support frame 100 that is engaged with the opening and closing of the rear panel 530. The first mounting portion 531 can be a magnet with magnetic attraction capability, and the second mounting portion 101b is also a magnet. The rear panel 530 and the support frame 100 cooperate to close the receiving cavity 100a, at which time the first mounting portion 531 and the second mounting portion 101b are magnetically engaged. The first mounting portion 531 can be a snap-fit protrusion, and the second mounting portion 101b can be a snap-fit groove. When the rear panel 530 closes the receiving cavity 100a, the first mounting portion 531 and the second mounting portion 101b are snap-fitted together. It can be understood that the engagement method of the first mounting portion 531 and the second mounting portion 101b is not limited to magnetic attraction or snap-fit engagement; it can also be other engagement methods that facilitate the opening and closing of the receiving cavity 100a.
[0085] According to some embodiments of the present invention, the air outlet of the centrifugal fan is located on the upper part of the fan component 300, and the air conditioning unit 10 also includes an air guide module 700. The air guide module 700 is located on the upper side of the flange portion 101, and is positioned directly opposite the air outlet to adjust the air outlet direction of the air conditioning unit 10. Specifically, the air outlet of the fan component 300 is located on the upper part of the air conditioning unit 10. Under the action of the centrifugal fan, indoor air comes into contact with the airflow processing unit 410 through the first connecting port 110a and the second connecting port 120a. The processed air enters the centrifugal fan through the first air inlet and the second air inlet, and is blown into the room from the upper part of the air conditioning unit 10. The air outlet can be located on the upper part of the air conditioning unit 10. Since the air conditioning unit 10 is low in height, the upper air outlet method can expand the air outlet range and improve the air processing efficiency of the air conditioning unit 10.
[0086] More specifically, such as Figure 4 As shown, a guide module 700 is also provided on the upper part of the fan component 300. The guide module 700 is located above the air outlet and is adapted to guide the air blown out of the air outlet. The fan component 300 is located on the upper part of the support frame 100, and the guide module 700 is also provided on the fan component 300. The guide module 700 is located on the top of the support frame 100, thereby guiding the air outlet from the top.
[0087] In some embodiments of the present invention, such as Figure 4 As shown, the flanged portion 101 extends horizontally and has an upper surface and a lower surface. The fan component 300 and the air guide module 700 are respectively disposed on the upper surface and the lower surface of the flanged portion 101, and the fan component 300 and the air guide module 700 are arranged facing each other.
[0088] In some embodiments of the present invention, such as Figure 4As shown, the upper part of the fan component 300 is connected to and fixed to the air guide module 700 to form a fan assembly. The fan assembly is fitted with the flange 101. After the fan assembly and the flange 101 are fitted and installed, the air guide module 700 can protrude from the flange 101 and be located on the upper side of the flange 101.
[0089] In some embodiments of the present invention, such as Figures 2-3 As shown, a baffle 800 is provided on the upper side of the air guide module 700. The baffle 800 is adapted to selectively block the air guide module 700 to prevent accidental injury to the user. When the air guide module 700 is not working, the baffle 800 is closed to block the air guide module 700. When the air guide module 700 is working, the baffle 800 is open so that the air conditioner sub-unit 10 blows the processed air into the room.
[0090] According to some embodiments of the present invention, such as Figure 12 , Figure 16 As shown, the airflow processing unit 410 is configured as two units, with the two airflow processing units 410 respectively disposed between the first air inlet and the first connecting port 110a and between the second air inlet and the second connecting port. Specifically, as shown... Figure 4 As shown, an installation gap 100b is formed between the first air inlet and the first connecting port 110a, and an installation gap 100b is also formed between the second air inlet and the second connecting port 120a. The two airflow processing units 410 can be respectively disposed within the installation gap 100b.
[0091] According to some embodiments of the present invention, such as Figure 10 , Figure 15 As shown, the air conditioner sub-unit 10 also includes an airflow handling unit support frame 200. (As shown...) Figure 6 As shown, the airflow treatment unit support frame 200 includes a first frame 210, a second frame 220, and a connecting plate 230. The first frame 210 and the second frame 220 support the airflow treatment unit 410. The first frame 210 is positioned between the first air inlet and the first connecting port 110a, and the second frame 220 is positioned between the second air inlet and the second connecting port 120a. The connecting plate 230 is connected to one end of the first frame 210 and the second frame 220 on the same side. Specifically, to facilitate the installation and disassembly of the airflow treatment unit 410, the airflow treatment unit 410 can be installed inside the airflow treatment unit support frame 200, such as... Figure 6 , Figure 13 As shown, the airflow treatment unit support frame 200 is disposed within two installation gaps 100b. The airflow treatment unit support frame 200 and the support frame 100 can be separated by pulling. When it is necessary to replace or clean the airflow treatment unit 410, the airflow treatment unit support frame 200 can be pulled out from the installation gaps 100b and the airflow treatment unit 410 can be removed to disassemble the airflow treatment unit 410.
[0092] More specifically, such as Figure 10 , Figure 15 As shown, the first frame 210 of the airflow treatment unit 410 is installed in the mounting gap 100b between the first air inlet and the first connecting port 110a, and the second frame 220 is installed in the mounting gap 100b between the second air inlet and the second connecting port 120a. A connecting plate 230 is provided at the same end of the first frame 210 and the second frame 220. The connecting plate 230 makes the first frame 210 and the second frame 220 a whole and can move synchronously. The user can contact the connecting plate 230 to pull out and disassemble the airflow treatment unit support frame 200.
[0093] According to some embodiments of the present invention, such as Figure 6 As shown, the first frame 210 and the second frame 220 are respectively provided with first sliding grooves 201, and the airflow treatment unit 410 is slidably disposed in the first sliding grooves 201. Specifically, in order to facilitate the disassembly and replacement of the airflow treatment unit 410, the airflow treatment unit 410 is removably disposed on the airflow treatment unit support frame 200. The first sliding grooves 201 are provided in the first frame 210 and the second frame 220, which allows the airflow treatment unit 410 to slide and be pulled out in the first frame 210 and the second frame 220, making it convenient for the user to operate the airflow treatment unit 410.
[0094] In some embodiments of the present invention, such as Figures 6-8 , Figure 13 As shown, due to different user selections of the functional components 400 of the air conditioner sub-unit 10, the number of airflow processing units 410 in the functional components 400 is also different. Multiple first slide grooves 201 can be provided in the first frame 210 and the second frame 220. The multiple first slide grooves 201 are arranged parallel to each other so that the corresponding airflow processing units 410 can be set in the corresponding slide grooves. Thus, multiple airflow processing units 410 are stacked on the first frame 210 and the second frame 220 to enrich the functions of the air conditioner sub-unit 10.
[0095] In some embodiments of the present invention, such as Figure 5 As shown, the support frame 100 includes a base plate 130, a first side plate 110, and a second side plate 120. The base plate 130, the first side plate 110, the second side plate 120, and the rear side plate 530 of the air conditioner unit 10 together form a receiving cavity 100a. The first side plate 110 and the second side plate 120 are located on both sides of the base plate 130 and are fixedly connected to the base plate 130 respectively. The free ends of the first side plate 110 and the second side plate 120 are provided with flanged portions 101, and the flanged portions 101 are provided with mating holes 101a that cooperate with the fan component 300. The first side plate 110 is provided with a first connecting port 110a, and the second side plate 120 is provided with a second connecting port 120a.
[0096] In some embodiments of the present invention, such as Figure 6 As shown, the airflow processing unit support frame 200 includes a first frame 210, a second frame 220 and a connecting plate 230, and the airflow processing unit support frame 200 is disposed between the first side plate 110 and the second side plate 120.
[0097] In some embodiments of the present invention, such as Figure 12 , Figure 16 As shown, the functional component 400 includes a main body 420 and an airflow processing unit 410, which are separable. The main body 420 includes a functional housing 421 and a functional processing assembly. The functional housing 421 contains a medium, and the functional processing assembly processes the medium and delivers it to the airflow processing unit 410. Two functional housings 421 are located on either side of the functional processing assembly. The airflow processing unit 410 is disposed on the upper side of the main body 420 and within the airflow processing unit support frame 200. The number of airflow processing units 410 can be varied depending on the specific functional component 400.
[0098] In some embodiments of the present invention, such as Figures 2-4 As shown, the fan component 300 is equipped with a centrifugal fan. The fan component 300 has a first air inlet and a second air inlet located on the side, and an air outlet located on the top. The first air inlet is directly opposite to the first connecting port 110a and there is an installation gap 100b between them. The second air inlet is directly opposite to the second connecting port 120a and there is an installation gap 100b between them. A first frame 210 and a second frame 220 of the airflow processing unit support frame 200 are respectively provided in the two installation gaps 100b. A first sliding groove 201 is provided on the first frame 210 and the second frame 220 respectively. The airflow processing unit 410 is disposed in the first sliding groove 201 and can slide and move.
[0099] In some embodiments of the present invention, such as Figures 2-16As shown, the air conditioner sub-unit 10 includes a mobile chassis 600, a support frame 100, a fan component 300, a functional component 400, and an airflow handling unit support frame 200. The mobile chassis 600 has a drive wheel 601 located below it, and a support frame 100 is mounted on the mobile chassis 600. A fan component 300 is mounted on the upper part of the support frame 100, and the two are connected by a mating hole 101a on the flange 101 and a mating protrusion on the fan component 300. The air outlet of the fan component 300 is exposed in the gap restricted by the two flanges 101. An airflow treatment support frame 200 is provided between the fan component 300 and the support frame 100. At this time, the first air inlet and the second air inlet of the fan component 300 are directly opposite the first connecting port 110a and the second connecting port 120a of the support frame 100. A functional component 400 is provided below the fan component 300. The main body 420 of the functional component 400 is located at the bottom plate 130 of the support frame 100, and the airflow treatment section 410 of the functional component 400 is slidably mounted in the airflow treatment support frame 200.
[0100] The exterior of the air conditioner unit 10 also includes a first outer casing side panel 510, a second outer casing side panel, and a rear side panel 530, such as... Figures 2-3 As shown, the first outer casing side plate 510 is located at the first connecting port 110a, and the second outer casing side plate is located at the second connecting port 120a; the rear side plate 530 is located between the first side plate 110 and the second side plate 120 on the same side, and the rear side plate 530 is provided with a first mounting part 531, while the support frame 100 is provided with a second mounting part 101b. An air guide module 700 is also provided on the top of the air conditioner unit 10, such as... Figure 4 As shown, the air guide module 700 is installed on the top of the support frame 100 and shields the air outlet of the fan component 300.
[0101] According to some embodiments of the present invention, such as Figure 9 , Figure 13 As shown, at least one airflow handling unit 410 is configured as an air purification module 411. The first frame 210 and the second frame 220 are respectively provided with second sliding grooves 202, and the second sliding grooves 202 are arranged side-by-side with the first sliding grooves 201. Two air purification modules 411 are configured, and each air purification module 411 is slidably disposed within a second sliding groove 202. Specifically, the basic function of the air conditioner sub-unit 10 is to purify indoor air and then discharge it back into the room. Therefore, among the multiple airflow handling units 410 installed in the gap 100b on one side, one should be capable of performing air purification, such as... Figure 8 As shown, the air purification module 411 is installed in the second slide groove 202 of the first frame 210 and the second frame 220 to purify the air. An airflow processing unit 410 with other functions can also be set at the first slide groove 201.
[0102] According to some embodiments of the present invention, such as Figures 7-12 As shown, the airflow handling unit 410 is configured as a heat exchanger 412, and the functional housing 421 is suitable for storing a cold storage medium. The functional handling components include a pump body 422a, a compressor 422b, and heat exchange pipes 422c. Specifically, when the airflow handling unit 410 is configured as a heat exchanger 412, the functional component 400 can be used to cool air, and the air conditioning unit 10 has the function of cooling indoor air.
[0103] Among them, the function of functional component 400 is to cool the air, and the medium inside functional housing 421 is a cold storage medium, such as... Figure 9 As shown, the functional processing component includes a compressor 422b that can convert the cold storage medium between gaseous and liquid states. The cold storage medium absorbs heat during vaporization. The heat exchange pipe 422c and the heat exchanger 412 exchange temperatures between the air and the refrigerant. The heat absorption process of the cold storage medium rapidly cools the air. The airflow processing unit 410 can be formed by overlapping the heat exchanger 412 and the air purification module 411. The air is cooled after passing through the heat exchanger 412 and purified after passing through the air purification module 411. The clean air after heat exchange enters the fan component 300 through the air inlet and is blown into the room at the air outlet, thereby completing the cooling work of the air.
[0104] In some embodiments of the present invention, such as Figure 9 As shown, when the functional component 400 is used to cool the air, the functional processing assembly consists of a pump body 422a, a compressor 422b, and a heat exchange pipeline 422c. A heat exchanger 412 is installed at the upper end of the functional housing 421, and an air purification module 411, such as a HEPA filter, formaldehyde filter, or plasma filter, is installed on the outside of the heat exchanger 412.
[0105] According to some embodiments of the present invention, such as Figures 13-16 As shown, the airflow processing unit 410 is configured as a wet film 413. The functional housing 421 stores a sterilization medium. The functional processing components include a humidifying water tank 422d and a spray element, which is adapted to spray water from the humidifying water tank 422d onto the wet film 413. Specifically, when the airflow processing unit 410 is configured as a wet film 413, the functional component 400 can be used to humidify the air and simultaneously sterilize and disinfect the air. The air conditioning unit 10 has the function of humidifying and sterilizing indoor air.
[0106] Among them, the function of functional component 400 is to humidify and sterilize the air, and the medium inside functional box 421 is a sterilization medium, such as... Figure 14As shown, the functional processing component is equipped with a humidifying water tank 422d containing liquid water. The spray component can spray the water and sterilization medium in the humidifying water tank 422d onto the airflow processing unit 410. The airflow processing unit 410 can be formed by overlapping a wet membrane 413 and an air purification module 411. When the air passes through the wet membrane 413, it comes into contact with the wet membrane 413 containing the sterilization medium and is sterilized and disinfected. After passing through the air purification module 411, the air is purified and filtered. While the air is being purified in the airflow processing unit 410, it carries the water vapor from the wet membrane 413. The clean and humidified air is blown back into the room by the fan component 300, thereby completing the humidification and sterilization of the air.
[0107] In some embodiments of the present invention, such as Figure 14 As shown, when the functional component 400 humidifies and sterilizes the air, the functional processing component consists of a humidifying water tank 422d and a spray nozzle. In the airflow direction, the wet film 413 is located downstream of the air purification module 411. The wet film 413 can also be interchanged with the air purification module 411. The humidifying water tank 422d and the functional housing 421 containing the sterilization medium are mounted on the base plate 130, while the air purification module 411 and the wet film 413 are positioned above the humidifying water tank 422d.
[0108] The air conditioner assembly 1 according to the present invention is briefly described below.
[0109] According to the present invention, the air conditioner assembly 1 includes an air conditioner main unit 20 and an air conditioner daughter unit 10, such as Figure 1 As shown, the air conditioner main unit 20 is provided with a daughter unit receiving cavity 20a; the air conditioner daughter unit 10 is constructed as described in any of the above embodiments. The air conditioner daughter unit 10 is movable and can be selectively moved into the daughter unit receiving cavity 20a. Specifically, the air conditioner main unit 20 is suitable for charging and storing the air conditioner daughter unit 10. The daughter unit receiving cavity 20a inside the air conditioner main unit 20 is located at the lower end of the air conditioner main unit 20 to facilitate the movement of the air conditioner daughter unit 10 in and out. A power supply module 21 is also provided at the bottom of the daughter unit receiving cavity 20a. The power supply module 21 can charge the air conditioner daughter unit 10 to facilitate its movement and indoor air treatment. The air conditioner daughter unit 10 is the air conditioner daughter unit 10 with detachable functional components 400 in the above embodiments. This air conditioner daughter unit 10 can be used for air cooling, air purification and sterilization, air humidification and other air treatment operations, with rich functions to meet the diverse air treatment needs of various users.
[0110] In summary, the air conditioner assembly 1 of the present invention is constructed as a mother-daughter unit structure, wherein the air conditioner daughter unit 10 can be moved indoors. The air conditioner daughter unit 10 is equipped with detachable functional components 400, allowing users to switch between different functions by replacing the functional components 400, thus enriching its functionality and enhancing the user experience. The functional components 400 are equipped with multiple airflow processing units 410, enabling the air conditioner daughter unit 10 to simultaneously perform various types of air processing tasks. The airflow processing units 410 can be individually disassembled and replaced, making them convenient to use and meeting individual user needs for air processing, with high operability. The air conditioner daughter unit 10 has two air inlets, resulting in higher air processing efficiency. It also has an upward-facing air outlet and an air guide module 700, effectively expanding the air outlet range and improving the air processing efficiency of the air conditioner daughter unit 10. The air conditioner daughter unit 10 operates stably and has high safety performance, ensuring user safety. The air conditioner daughter unit 10 also has a side panel, which enhances its appearance. Users can replace the functional components 400 through the rear side panel 530, making operation convenient.
[0111] In the description of this specification, the references to terms such as "one embodiment," "some embodiments," "example," "specific example," or "some examples," etc., indicate that a specific feature, structure, material, or characteristic described in connection with that embodiment or example is included in at least one embodiment or example of the invention. In this specification, the illustrative expressions of the above terms do not necessarily refer to the same embodiment or example. Furthermore, the specific features, structures, materials, or characteristics described may be combined in any suitable manner in one or more embodiments or examples. In addition, those skilled in the art can combine and integrate the different embodiments or examples described in this specification.
[0112] Although embodiments of the present invention have been shown and described above, variations, modifications, substitutions and alterations can be made to the above embodiments.
Claims
1. An air conditioner sub-unit, characterized in that, include: A mobile chassis, on which drive wheels are provided; A support frame includes a base plate, a first side plate, and a second side plate. The base plate is disposed on the movable chassis. The first side plate and the second side plate are disposed on the opposite sides of the base plate and extend in the height direction. A receiving cavity for accommodating a fan component and a functional component is formed within the support frame. The fan component is disposed at the top of the receiving cavity. The air inlet of the fan component is spaced apart from the support frame to form an installation gap. A fan component having an air inlet and an air outlet and mounted on the support frame, the fan component having a first air inlet and a second air inlet respectively facing the first side plate and the second side plate, the first side plate being spaced apart from the first air inlet to form the mounting gap and having a first connecting port facing the first air inlet, the second side plate being spaced apart from the second air inlet to form the mounting gap and having a second connecting port facing the second air inlet; A functional component is detachably mounted on the support frame. The functional component is provided with an airflow treatment section located at the air inlet and / or the air outlet. The mounting gap is used to accommodate the airflow treatment section, and the airflow treatment section is used to treat the airflow passing through the airflow treatment section. The airflow treatment unit is configured as a plurality of units, which are overlapped and arranged within the mounting gap; The functional components include: The main body is disposed within the receiving cavity and located below the fan component; The airflow treatment unit is disposed on the upper side of the main body and housed within the mounting gap; When the user disassembles or replaces the functional components, the user removes the main body and the airflow treatment unit from the support frame respectively, or when the user needs to replace or clean one of the multiple airflow treatment units, the user disassembles the airflow treatment unit individually. Airflow processing unit support frame, the airflow processing unit support frame comprising: A first frame is disposed between the first air inlet and the first communication port and is used to support the airflow processing unit. The second frame is disposed between the second air inlet and the second connecting port and is used to support the airflow processing unit; A connecting plate, wherein the connecting plate is respectively connected to one end of the first frame and the second frame on the same side; The first frame and the second frame are respectively provided with a first slide groove, and the airflow treatment unit is slidably disposed in the first slide groove; At least one airflow processing unit is configured as an air purification module. The first frame and the second frame are respectively provided with a second slide groove arranged in parallel with the first slide groove. The air purification module is configured as two and is slidably disposed in the second slide groove.
2. The air conditioner sub-unit according to claim 1, characterized in that, The main body includes: A functional housing, wherein a media storage chamber is provided inside the functional housing and is located on the upper part of the mobile chassis; A functional processing component, which is connected to the medium storage cavity and can selectively transport the medium stored in the medium storage cavity to the airflow processing unit.
3. The air conditioner sub-unit according to claim 2, characterized in that, The free ends of the first side plate and the second side plate are provided with flanges extending toward each other, and the fan component is fixed to the flanges.
4. The air conditioner sub-unit according to claim 3, characterized in that, The fan component is constructed as a centrifugal fan.
5. The air conditioner sub-unit according to claim 4, characterized in that, Also includes: A first outer shell side plate and a second outer shell side plate are respectively disposed on the support frame. The first outer shell side plate is provided with a plurality of dustproof holes facing the first communication port, and the second outer shell side plate is provided with a plurality of dustproof holes facing the second communication port.
6. The air conditioner sub-unit according to claim 5, characterized in that, Also includes: The rear side panel is disposed at the rear of the support frame and can selectively close the receiving cavity. The rear side panel is provided with a first mounting part, and the support frame is provided with a second mounting part that cooperates with the first mounting part. The first mounting part and the second mounting part are magnetically or snap-fitted together.
7. The air conditioner sub-unit according to claim 4, characterized in that, The air outlet of the centrifugal fan is located at the top. The air conditioning unit also includes an air guide module, which is located on the upper side of the flange and directly opposite the air outlet to adjust the air outlet direction of the air conditioning unit.
8. The air conditioner sub-unit according to claim 7, characterized in that, The airflow processing unit is configured as two units, which are respectively located between the first air inlet and the first connecting port, and between the second air inlet and the second connecting port.
9. The air conditioner sub-unit according to any one of claims 2-8, characterized in that, The airflow processing unit is configured as a heat exchanger, and the functional box is suitable for storing cold storage medium. The functional processing components include: a pump body, a compressor, and heat exchange pipelines.
10. The air conditioner sub-unit according to any one of claims 2-8, characterized in that, The airflow treatment unit is constructed as a wet membrane, the functional box contains a sterilization medium, and the functional treatment component includes a humidifying water tank and a spraying component, the spraying component being adapted to spray water from the humidifying water tank onto the wet membrane.
11. An air conditioner assembly, characterized in that, include: An air conditioning main unit, wherein the air conditioning main unit is provided with a daughter unit receiving cavity; An air conditioning unit, wherein the air conditioning unit is constructed as described in any one of claims 1-10, and the air conditioning unit is movably disposed and can be selectively moved into the unit receiving cavity.
Citation Information
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