Air conditioning unit
The movable installation module solves the problem of inflexible installation of ceiling-mounted air conditioner indoor units, enabling flexible adjustment and stable installation of the indoor units in different directions, adapting to diverse spatial layouts.
Patent Information
- Application Number
- CN202423121064.5
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-12-17
- Publication Date
- 2025-12-30
- Estimated Expiration
- 2034-12-17
AI Technical Summary
The installation location of the indoor unit of a ceiling-mounted air conditioner is fixed and cannot be adjusted flexibly, resulting in inflexible installation.
The system employs a movable mounting module, including first and second mounting components. Through the cooperation of these components, the indoor unit of the air conditioner can be flexibly adjusted in different horizontal directions, increasing its range of motion.
It enables flexible horizontal installation of the air conditioner indoor unit, adapting to complex or special spatial layout requirements and improving the stability and safety of the installation.
Smart Images

Figure CN223740890U_ABST
Abstract
Description
Technical Field
[0001] This application relates to the field of air conditioning technology, and more particularly to an air conditioning unit. Background Technology
[0002] With the development of air conditioning technology, in addition to traditional floor-standing and wall-mounted air conditioners, ceiling-mounted indoor units have emerged in the home air conditioning industry. These units are suspended from the ceiling to save space, making them more suitable for use in small spaces.
[0003] In related technologies, ceiling-mounted air conditioner indoor units are usually directly fixed to the ceiling, and the installation position of the air conditioner indoor unit is completely fixed and cannot be adjusted, making the installation very inflexible. Utility Model Content
[0004] In view of the above-mentioned shortcomings in the related technologies, this application provides an air conditioning unit to solve the problem of inflexible installation of indoor air conditioning units in the related technologies.
[0005] To address the aforementioned technical problems, in a first aspect, this application provides an air conditioning unit, which includes:
[0006] An air conditioner indoor unit, the air conditioner indoor unit comprising:
[0007] The housing is provided with an air inlet and an air outlet;
[0008] A fan is disposed in the housing. The fan is used to draw air from outside the housing into the housing through the air inlet, and the fan is also used to blow the air from inside the housing out of the housing through the air outlet.
[0009] A heat exchanger for exchanging heat with the air inside the housing;
[0010] The mounting module includes:
[0011] A first mounting component is connected to the indoor unit of the air conditioner;
[0012] A second mounting component is movably connected to the first mounting component along a first horizontal direction, and the second mounting component is also movably connected to a wall or ceiling along a second horizontal direction, the first horizontal direction being different from the second horizontal direction.
[0013] With this setup, firstly, since the second mounting component is connected to the first mounting component and is movably connected to the wall or ceiling along the second horizontal direction, the movement of the second mounting component along the second horizontal direction can drive the first mounting component to move along the second horizontal direction, thereby driving the indoor unit of the air conditioner to move along the second horizontal direction, thus enabling the position adjustment of the indoor unit of the air conditioner in the second horizontal direction.
[0014] Secondly, since the second mounting component is movably connected to the first mounting component along the first horizontal direction and is movably connected to the wall or ceiling only along the second horizontal direction, the second mounting component does not move in the first horizontal direction after it is connected to the wall or ceiling. In this case, the first mounting component can move along the first horizontal direction. Thus, by moving the first mounting component along the first horizontal direction, the indoor unit of the air conditioner can be moved along the first horizontal direction, thereby realizing the position adjustment of the indoor unit of the air conditioner in the first horizontal direction.
[0015] Therefore, through the cooperation of the first and second installation components, the indoor unit of the air conditioner can be flexibly adjusted in different horizontal directions, increasing the range of motion of the indoor unit in the horizontal direction and making the installation more flexible.
[0016] Secondly, this application also provides an air conditioning unit, which includes:
[0017] An air conditioner indoor unit, the air conditioner indoor unit comprising:
[0018] The housing is provided with an air inlet and an air outlet;
[0019] A fan is disposed in the housing. The fan is used to draw air from outside the housing into the housing through the air inlet, and the fan is also used to blow the air from inside the housing out of the housing through the air outlet.
[0020] A heat exchanger for exchanging heat with the air inside the housing;
[0021] The mounting module includes:
[0022] A first mounting component is connected to the indoor unit of the air conditioner;
[0023] A second mounting component is connected to the first mounting component, and the second mounting component is also used for connection to a wall or ceiling;
[0024] The first mounting component is configured to be movable along a first horizontal direction and a second horizontal direction, respectively, to drive the indoor unit of the air conditioner to move along the first horizontal direction and the second horizontal direction, respectively, wherein the second horizontal direction is different from the first horizontal direction.
[0025] Since the second mounting component is connected to the first mounting component, and since the first mounting component connected to the air conditioner indoor unit is configured to be movable along the first horizontal direction and the second horizontal direction, the air conditioner indoor unit is moved along the first horizontal direction and the second horizontal direction respectively.
[0026] Therefore, by moving the first installation component along the first horizontal direction and the second horizontal direction respectively, the indoor unit of the air conditioner can be moved along the first horizontal direction and the second horizontal direction respectively, so that the indoor unit of the air conditioner can be flexibly adjusted in different horizontal directions, increasing the range of motion of the indoor unit of the air conditioner in the horizontal direction and making the installation more flexible.
[0027] Optionally, the first installation component includes:
[0028] First installation sub-component;
[0029] The second mounting sub-assembly and the first mounting sub-assembly are both movably connected to the second mounting assembly along the first horizontal direction. The air conditioner indoor unit has a first side and a second side disposed opposite to each other. The second mounting sub-assembly and the first mounting sub-assembly are respectively connected to a position near the first side and a position near the second side.
[0030] With this setup, firstly, by movably connecting the first and second mounting sub-components to the second mounting component along the first horizontal direction, more adjustable nodes can be provided in the first horizontal direction. The two movable sub-components can achieve more precise and diverse position adjustments through their different movement ranges, which is beneficial for better adapting to complex small space scenarios or spaces with special layout requirements.
[0031] Secondly, the first mounting sub-assembly and the second mounting sub-assembly are connected to the positions near the first side and the positions near the second side, respectively. This connection method makes the air conditioner indoor unit more evenly and evenly distributed during installation, thereby providing stable support for the air conditioner indoor unit.
[0032] Finally, the movable design of the two sub-components further enhances the overall installation flexibility. Different spatial layouts may have different requirements for the position of the air conditioner indoor unit on both sides. By adjusting the positions of the first and second mounting sub-components in the first horizontal direction, the orientation and specific installation position of the air conditioner indoor unit can be flexibly changed according to the actual space conditions, better meeting diverse installation needs.
[0033] Optionally, the first mounting sub-assembly includes a plurality of first mounting members, each of which is used to connect to the indoor unit of the air conditioner and is movably connected to the second mounting assembly along the first horizontal direction;
[0034] And / or,
[0035] The second mounting sub-assembly includes a plurality of second mounting members, each of which is used to connect to the indoor unit of the air conditioner and is movably connected to the second mounting assembly along the first horizontal direction.
[0036] With this setup, on the one hand, for the first mounting sub-assembly, multiple first mounting parts are connected to the air conditioner indoor unit, which is equivalent to increasing the connection points between the air conditioner indoor unit and the second mounting assembly. In actual use, more connection points can better distribute the weight of the air conditioner indoor unit, thereby enhancing the stability of the support for the air conditioner indoor unit.
[0037] Similarly, multiple second mounting components serve the same purpose for the second mounting sub-assembly. They evenly transfer the weight of the indoor unit near the other side to the second mounting assembly, working in conjunction with the first mounting sub-assembly to provide stable support from both sides of the indoor unit, making the indoor unit more stable when suspended.
[0038] On the other hand, multiple first mounting parts and multiple second mounting parts are movably connected to the second mounting assembly along the first horizontal direction. In this way, when adjusting the position of the indoor unit of the air conditioner in the first horizontal direction, more precise position adjustment can be achieved by moving these multiple movable mounting parts to different degrees.
[0039] Optionally, the first side and the second side are arranged in a relative direction;
[0040] The second installation component includes:
[0041] Third installation component;
[0042] The fourth mounting component and the third mounting component are respectively disposed on both sides of the air conditioner indoor unit in the opposite direction, and are both movably disposed along the second horizontal direction;
[0043] The plurality of first mounting members are movably connected to the third mounting member along the first horizontal direction; and / or, the plurality of second mounting members are movably connected to the fourth mounting member along the first horizontal direction.
[0044] With this setup, the third and fourth mounting components are movable along the second horizontal direction, allowing the indoor unit of the air conditioner to achieve more precise, diverse, and flexible position adjustments in the second horizontal direction.
[0045] Secondly, the movable connection between multiple first and third mounting components, and multiple second and fourth mounting components, ensures flexible position adjustment while further optimizing the stress distribution at each connection point. Their coordinated action ensures that the indoor unit maintains a stable mounting posture regardless of its position, preventing swaying or shifting even during operation, thus guaranteeing safety and comfort.
[0046] Optionally, the first mounting component is disposed above the second mounting component.
[0047] With this configuration, the second mounting component can provide a relatively stable support for the indoor unit and the first mounting component. This helps maintain the stability of the entire mounting module when dealing with vibrations generated during the operation of the indoor unit or external interference, reducing shaking and displacement, and ensuring the smooth operation of the indoor unit after installation.
[0048] Optionally, the second mounting component is provided with a first through hole, which is an elongated hole, and the length direction of the first through hole extends along the second horizontal direction, so that the second mounting component is movably connected to the wall or the ceiling along the second horizontal direction.
[0049] This design, through the first perforation, simplifies the structure for achieving a movable connection along the second horizontal direction to some extent, and facilitates the processing of the structure.
[0050] Optionally, one of the first mounting component and the second mounting component is provided with a second through hole, and the other is provided with a second connecting rod. The second through hole is an elongated hole, and the length direction of the second through hole extends along the first horizontal direction. The second connecting rod passes through the second through hole.
[0051] The first mounting component and / or the second connecting rod are provided with a second limiting structure, which is used to limit the relative position between the second connecting rod and the first mounting component.
[0052] With this setup, firstly, by sliding the second connecting rod within the second through hole, the indoor unit of the air conditioner can be easily adjusted with a small amplitude and high precision in the first horizontal direction, allowing the indoor unit to better adapt to different installation environments.
[0053] Secondly, the second perforation and the second connecting rod simplify the structure for achieving a movable connection along the first horizontal direction to a certain extent, which facilitates the processing of the structure.
[0054] Finally, by limiting the relative position between the second connecting rod and the first mounting component through the second limiting structure, it is beneficial to ensure that the indoor unit of the air conditioner will not shift its position due to factors such as vibration and external interference during use, thereby improving the reliability of the installation.
[0055] Optionally, the second mounting component is also used to be vertically movably connected to the wall or the ceiling.
[0056] This design makes it easier to adjust the installation height of the indoor air conditioner unit to a suitable level. This not only allows the indoor air conditioner unit to achieve better air circulation and regulation, but also makes it easier to match the installation height of the indoor air conditioner unit with the height of the ceiling when suspending the unit, thus ensuring the overall aesthetics of the room.
[0057] On the other hand, during the installation phase, construction workers can easily move the second mounting component up and down according to the actual site conditions to determine the final installation height of the indoor unit. The operation is relatively simple, reducing the possibility of complex rework operations such as re-drilling due to unsuitable height. Furthermore, during subsequent use, if maintenance of the indoor unit is required, such as cleaning the filter or checking the internal wiring, the vertically movable design makes it easy to adjust the indoor unit to a suitable height, facilitating maintenance and reducing the difficulty and cost of maintenance.
[0058] Optionally, the length of the air conditioning unit extends along the first horizontal direction, and the width of the air conditioning unit extends along the second horizontal direction;
[0059] The width of the air conditioning unit is d, where d > 200 mm and d < 300 mm.
[0060] Since the width of the ceiling aluminum panel is usually 300mm in the relevant technology, the spacing between the keels used to fix the aluminum panel is also usually 300mm. Therefore, the width d of the air conditioning unit is set to be greater than 200mm and less than 300mm. This way, when installing the air conditioning unit, there is no need to disassemble the keel or damage it, which is conducive to the convenient installation of the air conditioning unit. Attached Figure Description
[0061] To more clearly illustrate the technical solutions in the embodiments of this application, the drawings used in the embodiments will be briefly introduced below. Obviously, the drawings described below are only some embodiments of this application. For those skilled in the art, other drawings can be obtained based on these drawings without creative effort.
[0062] Figure 1 A top view of an air conditioning unit provided in an embodiment of this application;
[0063] Figure 2 A front view of an air conditioning unit provided in an embodiment of this application;
[0064] Figure 3 A side view of an air conditioning unit provided in an embodiment of this application;
[0065] Figure 4 A top view of the installation module provided in the embodiments of this application;
[0066] Figure 5 A front view of the mounting module provided in an embodiment of this application;
[0067] Figure 6 A side view of the mounting module provided in an embodiment of this application;
[0068] Figure 7 A schematic diagram of the third mounting component provided in an embodiment of this application;
[0069] Figure 8 for Figure 5 Enlarged view of section A;
[0070] Figure 9 A schematic diagram of the first mounting component provided in an embodiment of this application;
[0071] Figure 10 for Figure 6 Enlarged view of section B.
[0072] Explanation of reference numerals in the attached figures:
[0073] 1-Connector; 11-First connecting rod;
[0074] 2-Second mounting component; 21-Third mounting component; 22-Fourth mounting component; 23-First perforation;
[0075] 3-First mounting component; 31-First mounting sub-component; 311-First mounting piece; 32-Second mounting sub-component; 321-Second mounting piece; 33-Second perforation;
[0076] 4-First limiting structure; 41-First nut;
[0077] 5-Second connecting rod;
[0078] 6-Second limiting structure; 61-Second nut;
[0079] 100 - Install the module;
[0080] 200-Air conditioner indoor unit. Detailed Implementation
[0081] The technical solutions of the embodiments 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, and 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.
[0082] In this application, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "vertical," "horizontal," "lateral," and "longitudinal" indicate the orientation or positional relationship based on the orientation or positional relationship shown in the accompanying drawings. These terms are primarily for the purpose of better describing this application and its embodiments, and are not intended to limit the indicated device, element, or component to having a specific orientation, or to be constructed and operated in a specific orientation.
[0083] Furthermore, in addition to indicating location or positional relationship, some of the aforementioned terms may also have other meanings. For example, the term "above" may also be used in some cases to indicate a certain dependency or connection relationship. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.
[0084] Furthermore, the terms "installation," "setup," "equipped with," "connection," and "linked" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral structure; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium, or an internal connection between two devices, components, or parts. Those skilled in the art can understand the specific meaning of these terms in this application based on the specific circumstances.
[0085] Furthermore, the terms "first," "second," etc., are primarily used to distinguish different devices, elements, or components (which may be the same or different in specific type and construction), and are not intended to indicate or imply the relative importance or quantity of the indicated devices, elements, or components. Unless otherwise stated, "a plurality of" means two or more.
[0086] As described in the background section of this application, with the development of air conditioning technology, in addition to traditional floor-standing and wall-mounted units, ceiling-mounted air conditioning indoor units have emerged in the field of household air conditioning. Ceiling-mounted air conditioning indoor units are suspended from the ceiling to save space, making them more suitable for use in small spaces.
[0087] In related technologies, ceiling-mounted air conditioner indoor units are usually directly fixed to the ceiling, and the installation position of the air conditioner indoor unit is completely fixed and cannot be adjusted, making the installation very inflexible.
[0088] In view of the above-mentioned problems, this application provides an air conditioning unit to solve the problem of inflexible installation of indoor air conditioning units in related technologies.
[0089] The technical solution of this application will be further described below with reference to specific embodiments and accompanying drawings:
[0090] In some embodiments, such as Figure 1 , Figure 2 and Figure 3 As shown, the air conditioning unit includes an indoor unit 200, which includes a casing with an air inlet and an air outlet. This configuration allows indoor air to enter the casing through the air inlet, while the air outlet returns the treated air back into the room, creating an effective air circulation system that continuously regulates indoor air temperature, humidity, and other parameters to maintain a comfortable indoor environment.
[0091] In some embodiments, the indoor unit 200 of the air conditioner also includes a fan disposed in the casing. The fan is used to draw air from outside the casing into the casing through the air inlet, and the fan is also used to blow air from inside the casing out of the casing through the air outlet.
[0092] This setup allows the fan to draw air into and out of the casing faster and with a more stable flow rate. This significantly accelerates the air circulation throughout the room, enabling more rapid adjustment of environmental parameters such as temperature and humidity, and reducing large temperature or humidity differences between different areas.
[0093] In some embodiments, the indoor unit 200 of the air conditioner also includes a heat exchanger for exchanging heat with the air inside the unit casing. This configuration allows the heat exchanger to directly exchange heat with the air, enabling rapid changes in air temperature. This allows the indoor unit 200 to quickly begin adjusting the indoor air temperature upon receiving a user-set temperature adjustment command. Consequently, the indoor temperature can be raised in a short time, reducing the time users spend waiting for the room to warm up. Furthermore, this efficient heat exchange process helps to meet temperature regulation needs while avoiding excessive energy consumption.
[0094] In some embodiments, such as Figure 1 , Figure 2 and Figure 3 As shown, the air conditioning unit also includes an installation module 100, such as... Figure 4 and Figure 5 As shown, the mounting module 100 also includes a first mounting component 3, such as... Figure 1 and Figure 2 As shown, the first mounting component 3 is connected to the indoor unit 200 of the air conditioner.
[0095] With this configuration, during the installation of the indoor unit 200, the first mounting component 3, as a key component for connection, can provide sufficient connection strength to ensure that the indoor unit 200 can be firmly installed on the wall or ceiling.
[0096] In some embodiments, such as Figure 4 and Figure 5 As shown, the mounting module 100 also includes a second mounting component 2, which is positioned along a first horizontal direction (e.g., ...). Figure 4 The second mounting component 2 is movably connected to the first mounting component 3 in the X direction, and is also used in the second horizontal direction (e.g., along the X direction). Figure 4 The Y-direction (in which the structure is movably connected to the wall or ceiling) is different from the first horizontal direction and the second horizontal direction.
[0097] With this configuration, since the second mounting component 2 is movably connected to the first mounting component 3 along the first horizontal direction and is only movably connected to the wall or ceiling along the second horizontal direction, the second mounting component 2 does not move in the first horizontal direction after being connected to the wall or ceiling. In this case, the first mounting component 3 can move along the first horizontal direction. Thus, based on the second mounting component 2 driving the air conditioner indoor unit 200 to move along the second horizontal direction, the first mounting component 3 can also drive the air conditioner indoor unit 200 to move along the first horizontal direction. This allows the air conditioner indoor unit 200 to flexibly adjust its position in different horizontal directions, increasing the range of motion of the air conditioner indoor unit 200 in the horizontal direction and making the installation more flexible.
[0098] In some embodiments, such as Figure 1 , Figure 2 and Figure 3 As shown, the air conditioning unit includes an installation module 100 and an indoor unit 200. The indoor unit 200 includes a casing, a fan, and a heat exchanger. The casing has an air inlet and an air outlet. The fan is located on the casing and is used to draw air from outside the casing into the casing through the air inlet. The fan also blows air from inside the casing out of the casing through the air outlet. The heat exchanger is used to exchange heat with the air inside the casing.
[0099] like Figure 4 and Figure 5 As shown, the mounting module 100 includes a first mounting component 3 and a second mounting component 2. Wherein, as... Figure 1 and Figure 2 As shown, the first mounting component 3 is connected to the indoor unit 200 of the air conditioner, and the second mounting component 2 is along the first horizontal direction (e.g., ...). Figure 4 The second mounting component 2 is movably connected to the first mounting component 3 in the X direction, and is also used in the second horizontal direction (e.g., along the X direction). Figure 4 The Y-direction is movably connected to the wall or ceiling, and the first horizontal direction is different from the second horizontal direction.
[0100] With this configuration, firstly, since the second mounting component 2 is connected to the first mounting component 3 and is movably connected to the wall or ceiling along the second horizontal direction, the movement of the second mounting component 2 along the second horizontal direction can drive the first mounting component 3 to move along the second horizontal direction, thereby driving the air conditioner indoor unit 200 to move along the second horizontal direction, thus enabling the position adjustment of the air conditioner indoor unit 200 in the second horizontal direction.
[0101] Secondly, since the second mounting component 2 is movably connected to the first mounting component 3 along the first horizontal direction and is only movably connected to the wall or ceiling along the second horizontal direction, the second mounting component 2 does not move in the first horizontal direction after it is connected to the wall or ceiling. In this case, the first mounting component 3 can move along the first horizontal direction. Thus, by moving the first mounting component 3 along the first horizontal direction, the air conditioner indoor unit 200 can be moved along the first horizontal direction, thereby realizing the position adjustment of the air conditioner indoor unit 200 in the first horizontal direction.
[0102] Therefore, through the cooperation of the second mounting component 2 and the first mounting component 3, the indoor unit 200 of the air conditioner can be flexibly adjusted in different horizontal directions, increasing the range of motion of the indoor unit 200 of the air conditioner in the horizontal direction and making the installation more flexible.
[0103] In some embodiments, the first mounting component 3 is configured to be positioned along a second horizontal direction (e.g., Figure 4 (in the Y direction) and the first horizontal direction (e.g.) Figure 4 The X direction is movable to drive the indoor unit 200 of the air conditioner to move along the second horizontal direction and the first horizontal direction respectively, wherein the first horizontal direction is different from the second horizontal direction.
[0104] With this configuration, the air conditioner indoor unit 200 can be moved along the second horizontal direction and the first horizontal direction respectively by the first installation component 3, which allows the air conditioner indoor unit 200 to be flexibly adjusted in different horizontal directions, increasing the range of motion of the air conditioner indoor unit 200 in the horizontal direction and making the installation more flexible.
[0105] In some embodiments, such as Figure 1 , Figure 2 and Figure 3 As shown, the air conditioning unit includes an installation module 100 and an indoor unit 200. The indoor unit 200 includes a casing, a fan, and a heat exchanger. The casing has an air inlet and an air outlet. The fan is located on the casing and is used to draw air from outside the casing into the casing through the air inlet. The fan also blows air from inside the casing out of the casing through the air outlet. The heat exchanger is used to exchange heat with the air inside the casing.
[0106] like Figure 4 and Figure 5 As shown, the mounting module 100 includes a first mounting component 3 and a second mounting component 2. The second mounting component 2 is connected to the first mounting component 3 and is also used for connection to a wall or ceiling. The first mounting component 3 is connected to the indoor unit 200 of the air conditioner. Figure 1 and Figure 2 (As shown).
[0107] The first mounting component 3 is configured to be positioned along the second horizontal direction (e.g., ...). Figure 4 (in the Y direction) and the first horizontal direction (e.g.) Figure 4 The X direction is movable to drive the indoor unit 200 of the air conditioner to move along the second horizontal direction and the first horizontal direction respectively, wherein the first horizontal direction is different from the second horizontal direction.
[0108] With this configuration, the air conditioner indoor unit 200 can be moved along the second horizontal direction and the first horizontal direction respectively by the first installation component 3, which allows the air conditioner indoor unit 200 to be flexibly adjusted in different horizontal directions, increasing the range of motion of the air conditioner indoor unit 200 in the horizontal direction and making the installation more flexible.
[0109] The first mounting component 3 can be moved along the second horizontal direction and the first horizontal direction, respectively, in several ways, as follows.
[0110] In the first embodiment, the second mounting component 2 is movably disposed along the second horizontal direction, and the first mounting component 3 is movably connected to the second mounting component 2 along the first horizontal direction.
[0111] With this configuration, firstly, the movement of the second mounting component 2 along the second horizontal direction can drive the first mounting component 3 to move along the second horizontal direction; secondly, the movement of the first mounting component 3 itself along the first horizontal direction can achieve movement along the first horizontal direction. This makes the movement of the first mounting component 3 in different directions more flexible.
[0112] In the second embodiment, the second mounting component 2 is movably disposed along the second horizontal direction and the first horizontal direction, and the first mounting component 3 is fixedly connected to the second mounting component 2.
[0113] With this configuration, the movement of the second mounting component 2 along the second horizontal direction and the first horizontal direction can drive the first mounting component 3 to move along the second horizontal direction and the first horizontal direction. Simultaneously, since the first mounting component 3 does not need to be movably connected to the second mounting component 2, its structure can be simplified to a certain extent, facilitating its manufacturing.
[0114] In the third embodiment, the second mounting component 2 is fixedly disposed, and the first mounting component 3 is movably connected to the second mounting component 2 along the second horizontal direction and the first horizontal direction.
[0115] This configuration facilitates movement along the second and first horizontal directions by allowing the first mounting component 3 to move itself. Simultaneously, the second mounting component 2 does not require a movable component, thus simplifying its structure and facilitating its manufacturing.
[0116] In some embodiments, such as Figure 4 , Figure 5 and Figure 6 As shown, the first mounting component 3 includes a first mounting sub-component 31 and a second mounting sub-component 32, both of which are along a first horizontal direction (e.g., ...). Figure 4 The air conditioning indoor unit 200 is movably connected to the second mounting assembly 2 (in the X direction), and has a first side and a second side arranged opposite to each other, such as... Figure 1 and Figure 2 As shown, the second mounting sub-assembly 32 and the first mounting sub-assembly 31 are used to connect to the position near the first side and the position near the second side, respectively.
[0117] With this setup, firstly, the first mounting sub-component 31 and the second mounting sub-component 32 are movably connected to the second mounting component 2 along the first horizontal direction, which can provide more adjustable nodes in the first horizontal direction. The two movable sub-components can achieve more precise and diverse position adjustments through their different movement ranges, which is beneficial for better adapting to complex small space scenarios or spaces with special layout requirements.
[0118] Secondly, the first mounting sub-assembly 31 and the second mounting sub-assembly 32 are respectively connected to the position near the first side and the position near the second side. This connection method makes the air conditioner indoor unit 200 more evenly and evenly distributed when it is hoisted, thereby providing stable support for the air conditioner indoor unit 200.
[0119] Finally, the movable design of the two sub-components further enhances the overall installation flexibility. Different spatial layouts may have different requirements for the positions of the two sides of the air conditioner indoor unit 200. By adjusting the positions of the first mounting sub-component 31 and the second mounting sub-component 32 in the first horizontal direction, the orientation and specific installation position of the air conditioner indoor unit 200 can be flexibly changed according to the actual space conditions, better meeting diverse installation needs.
[0120] In some embodiments, the first mounting component 3 includes only a single mounting member, which is positioned along a first horizontal direction (e.g., ...). Figure 4 The first mounting assembly 3 is movably connected to the second mounting component 2 (in the X direction) and is used to connect to the indoor unit 200 of the air conditioner. This configuration simplifies the structural composition of the first mounting assembly 3, facilitates its manufacturing, and also facilitates its assembly.
[0121] In some embodiments, such as Figure 4 and Figure 5 As shown, the first mounting sub-assembly 31 includes a plurality of first mounting elements 311, such as... Figure 1 and Figure 2 As shown, multiple first mounting components 311 are all used to connect to the indoor unit 200 of the air conditioner, and are all along a first horizontal direction (e.g., Figure 4 It is movably connected to the second mounting component 2 in the X direction.
[0122] With this configuration, on the one hand, by connecting multiple first mounting parts 311 to the indoor unit 200 of the air conditioner, the number of connection points between the indoor unit 200 of the air conditioner and the second mounting component 2 can be increased. On the other hand, in actual use, more connection points can better distribute the weight of the indoor unit 200 of the air conditioner, thereby enhancing the stability of the support for the indoor unit 200 of the air conditioner.
[0123] On the other hand, by movably connecting multiple first mounting parts 311 to the second mounting assembly 2 along the first horizontal direction, when adjusting the position of the indoor unit 200 of the air conditioner in the first horizontal direction, more precise position adjustment can be achieved by moving the multiple movable first mounting parts 311 to different degrees.
[0124] In some embodiments, such as Figure 4 , Figure 5 and Figure 6 As shown, the second mounting sub-assembly 32 includes a plurality of second mounting elements 321, such as... Figure 1 , Figure 2 and Figure 3 As shown, multiple second mounting components 321 are all used to connect to the indoor unit 200 of the air conditioner, and are all along the first horizontal direction (e.g., Figure 4 It is movably connected to the second mounting component 2 in the X direction.
[0125] This configuration has several advantages. First, by connecting multiple second mounting components 321 to the indoor unit 200, the number of connection points between the indoor unit 200 and the second mounting components 2 can be increased. Second, in actual use, more connection points can better distribute the weight of the indoor unit 200, thereby enhancing the stability of the support for the indoor unit 200.
[0126] On the other hand, by movably connecting multiple second mounting pieces 321 to the second mounting assembly 2 along the first horizontal direction, when adjusting the position of the indoor unit 200 of the air conditioner in the first horizontal direction, more precise position adjustment can be achieved by moving the multiple movable second mounting pieces 321 to different degrees.
[0127] In some embodiments, such as Figure 4 and Figure 5 As shown, the first mounting sub-assembly 31 includes a plurality of first mounting elements 311, such as... Figure 1 and Figure 2 As shown, multiple first mounting components 311 are all used to connect to the indoor unit 200 of the air conditioner, and are all along a first horizontal direction (e.g., Figure 4 It is movably connected to the second mounting component 2 in the X direction.
[0128] like Figure 4 , Figure 5 and Figure 6 As shown, the second mounting sub-assembly 32 includes a plurality of second mounting elements 321, such as... Figure 1 , Figure 2 and Figure 3 As shown, multiple second mounting parts 321 are used to connect to the indoor unit 200 of the air conditioner, and are movably connected to the second mounting assembly 2 along the first horizontal direction.
[0129] With this configuration, on the one hand, by connecting multiple first mounting parts 311 and multiple second mounting parts 321 to the air conditioner indoor unit 200, the number of connection points between the air conditioner indoor unit 200 and the second mounting components 2 can be further increased, thereby further dispersing the weight of the air conditioner indoor unit 200 and further enhancing the stability of the support for the air conditioner indoor unit 200.
[0130] On the other hand, by means of multiple first mounting parts 311 and multiple second mounting parts 321 movably connected to the second mounting assembly 2 along the first horizontal direction, more precise position adjustment can be achieved when adjusting the position of the indoor unit 200 in the first horizontal direction.
[0131] Regarding the number of the first mounting component 311 and the second mounting component 321, in this embodiment of the application, the first mounting component 311 and the second mounting component 321 may be provided in two, three or more, respectively. The number of the first mounting component 311 and the second mounting component 321 is set flexibly. Specifically, it can be set according to actual needs. This embodiment of the application does not make a specific limitation on this.
[0132] In some embodiments, the first mounting sub-component 31 includes a first mounting element 311. This configuration simplifies the structural composition of the first mounting sub-component 31.
[0133] In some embodiments, the second mounting sub-assembly 32 includes a second mounting member 321. This configuration simplifies the structural composition of the second mounting sub-assembly 32.
[0134] In some embodiments, the directions in which the first side and the second side are disposed opposite to each other are relative directions (e.g., Figure 4 (in the X direction), and as Figure 4 , Figure 5 and Figure 6 As shown, the second mounting component 2 includes a third mounting component 21 and a fourth mounting component 22, as follows: Figure 1 and Figure 2 As shown, the fourth mounting member 22 and the third mounting member 21 are respectively installed on both sides of the air conditioner indoor unit 200 in the aforementioned opposite directions, and both are along the second horizontal direction (e.g., Figure 4 The Y-direction (in the model) can be movably set.
[0135] With this configuration, the third mounting component 21 and the fourth mounting component 22 are movably mounted along the second horizontal direction, enabling the indoor unit 200 of the air conditioner to achieve more precise, diverse, and flexible position adjustments in the second horizontal direction.
[0136] In some embodiments, such as Figure 4 and Figure 5 As shown, multiple first mounting components 311 are all along the first horizontal direction (e.g. Figure 4 It is movably connected to the third mounting component 21 in the X direction.
[0137] The movable connection between multiple first mounting components 311 and third mounting components 21 ensures flexible position adjustment while further optimizing the stress distribution at each connection point. Their coordinated action ensures that the indoor unit 200 maintains a stable mounting posture even in different positional adjustments, preventing swaying or shifting even during operation, thus guaranteeing safety and comfort.
[0138] In some embodiments, such as Figure 4 , Figure 5 and Figure 6 As shown, multiple second mounting components 321 are all along the first horizontal direction (e.g. Figure 4 (in the X direction) is movably connected to the fourth mounting component 22.
[0139] The movable connection between multiple second mounting components 321 and the fourth mounting component 22 ensures flexible position adjustment while further optimizing the stress distribution at each connection point. Their coordinated action ensures that the indoor unit 200 maintains a stable mounting posture regardless of its position, preventing swaying or shifting even during operation, thus guaranteeing safety and comfort.
[0140] In some embodiments, the directions in which the first side and the second side are disposed opposite to each other are relative directions (e.g., Figure 4 (in the X direction), and as Figure 4 , Figure 5 and Figure 6 As shown, the second mounting component 2 includes a third mounting component 21 and a fourth mounting component 22, as follows: Figure 1 and Figure 2 As shown, the fourth mounting member 22 and the third mounting member 21 are respectively installed on both sides of the air conditioner indoor unit 200 in the aforementioned opposite directions, and both are along the second horizontal direction (e.g., Figure 4 The Y-direction (in the model) can be movably set.
[0141] like Figure 4 and Figure 5 As shown, multiple first mounting components 311 are all along the first horizontal direction (e.g. Figure 4 (in the X direction) is movably connected to the third mounting member 21, and as Figure 4 , Figure 5 and Figure 6 As shown, multiple second mounting members 321 are movably connected to the fourth mounting member 22 along the first horizontal direction.
[0142] With this configuration, the third mounting component 21 and the fourth mounting component 22 are movably connected to the connector 1 along the second horizontal direction, enabling the indoor unit 200 of the air conditioner to achieve more precise, diverse and flexible position adjustments in the second horizontal direction.
[0143] Secondly, the movable connection between multiple first mounting parts 311 and third mounting parts 21, and multiple second mounting parts 321 and fourth mounting parts 22, not only further ensures that the position can be flexibly adjusted, but also further optimizes the stress on each connection part, so that the indoor unit 200 of the air conditioner can still maintain a stable hanging posture in different position adjustment states, further ensuring the safety and comfort of use.
[0144] In some embodiments, the second mounting component 2 includes only a single mounting member, which is positioned along a second horizontal direction (e.g., ...). Figure 4 The second mounting component 2 is movable in the Y direction. This configuration simplifies the structure of the second mounting component 2, facilitates its manufacturing, and also makes its assembly easier.
[0145] In some embodiments, such as Figure 2 and Figure 5 As shown, the first mounting component 3 is positioned above the second mounting component 2.
[0146] With this configuration, the second mounting component 2 can provide a relatively stable support for the air conditioner indoor unit 200 and the first mounting component 3. This helps maintain the stability of the entire mounting module 100 when dealing with vibrations generated during the operation of the air conditioner indoor unit 200 or when subjected to external interference, reducing shaking and displacement, and ensuring the smooth operation of the air conditioner indoor unit 200 after installation.
[0147] In some embodiments, the first mounting component 3 is disposed below the second mounting component 2, or at the same height as the second mounting component 2. The vertical positional relationship between the second mounting component 2 and the first mounting component 3 is flexible and can be set according to actual needs.
[0148] In some embodiments, such as Figure 1 , Figure 4 and Figure 7 As shown, the second mounting component 2 is provided with a first through hole 23. The first through hole 23 is an elongated hole, and the length direction of the first through hole 23 is along the second horizontal direction (e.g., Figure 4 The first through-hole 23 extends in the Y direction to allow the second mounting component 2 to be movably connected to the wall or ceiling along the second horizontal direction. This arrangement, through the first through-hole 23, simplifies the structure for achieving a movable connection along the second horizontal direction to some extent, facilitating the fabrication of the structure.
[0149] In some embodiments, such as Figure 1 and Figure 4 As shown, the second mounting component 2 is used along the second direction (e.g., Figure 4 The component (in the Y direction) is movably connected to connector 1, and connector 1 is connected to the wall or ceiling.
[0150] like Figure 1 , Figure 4 and Figure 7 As shown, the second mounting component 2 is provided with a first through hole 23, which is an elongated hole, and the length direction of the first through hole 23 extends along the second horizontal direction. Figure 1 and Figure 4 As shown, connector 1 includes a first connecting rod 11, which passes through a first through hole 23, as... Figure 4 , Figure 5 and Figure 6 As shown, a first limiting structure 4 is provided on the second mounting component 2 and / or the first connecting rod 11. The first limiting structure 4 is used to limit the relative position between the first connecting rod 11 and the second mounting component 2.
[0151] With this configuration, firstly, by moving the second mounting component 2, the first connecting rod 11 can slide within the first through hole 23, thereby facilitating a small-amplitude, high-precision position adjustment of the air conditioner indoor unit 200 in the second horizontal direction, enabling the air conditioner indoor unit 200 to better adapt to different installation environments.
[0152] Secondly, the first through hole 23 and the first connecting rod 11 simplify the structure for achieving a movable connection along the second horizontal direction to a certain extent, which facilitates the processing of the structure.
[0153] Finally, as Figure 1 , Figure 2 and Figure 3 As shown, after adjusting the position of the indoor unit 200, the first limiting structure 4 is used to limit the relative position between the first connecting rod 11 and the second mounting component 2, which helps to ensure that the indoor unit 200 will not shift its position due to vibration, external interference or other factors during use, thus improving the reliability of the installation.
[0154] In some embodiments, such as Figure 1 , Figure 4 and Figure 7 As shown, both the third mounting component 21 and the fourth mounting component 22 are provided with a first through hole 23, such as... Figure 8As shown, the first limiting structure 4 includes two first nuts 41, which are threadedly connected to the first connecting rod 11 passing through the first through hole 23. That is, the first limiting structure 4 is set on the first connecting rod 11, and the two first nuts 41 are respectively located on the upper and lower sides of the third mounting member 21 or the fourth mounting member 22.
[0155] This configuration, using two first nuts 41, not only facilitates limiting the relative position between the first connecting rod 11 and the second mounting assembly 2, but also, to a certain extent, helps to simplify the specific structure of the first limiting structure 4.
[0156] Additionally, it should be noted that since the third mounting component 21 and the fourth mounting component 22 have the same structure, only the fourth mounting component 22 is shown in the illustration. Furthermore, since the assembly relationship between the first limiting structure 4 and the third mounting component 21 is the same as that between the first limiting structure 4 and the fourth mounting component 22, only the assembly relationship between the first limiting structure 4 and the fourth mounting component 22 is shown in the illustration.
[0157] In some embodiments, the connector 1 is provided with a groove, and the second mounting assembly 2 is provided with a slider that matches the groove. The groove can be a T-slot or a dovetail groove, thereby enabling a movable connection between the second mounting assembly 2 and the connector 1 through the sliding engagement of the slider and the groove in the second horizontal direction. In this case, the first limiting structure 4 can include a screw threaded onto the slider, and the screw passes through the slider and abuts against the bottom wall of the groove, effectively limiting the relative position between the second mounting assembly 2 and the connector 1.
[0158] With this configuration, the cooperation between the slider and the groove can provide a stable movement path, ensuring that the second mounting component 2 will not easily deviate during movement, thus ensuring the directionality and accuracy of the movement.
[0159] In some embodiments, the first limiting structure 4 includes a pin, a socket disposed on the first connecting rod 11, and a second horizontal direction (e.g., along the second horizontal direction). Figure 4 In the case of multiple insertion holes of the second mounting component 2 (in the Y direction), the first limiting structure 4 is provided on the second mounting component 2 and the first connecting rod 11.
[0160] Thus, after the first connecting rod 11 moves into place within the first through hole 23, it is inserted into the corresponding socket on the second mounting assembly 2 via a pin. The socket on the first connecting rod 11 limits the relative position between the first connecting rod 11 and the second mounting assembly 2. Using a pin and socket for positioning is a relatively simple and direct method, which helps to improve the installation efficiency of the first limiting structure 4.
[0161] In some embodiments, the first limiting structure 4 includes a screw, along a second horizontal direction (e.g., Figure 4In the case of multiple threaded holes in the second mounting component 2 (in the Y direction), the first limiting structure 4 is provided in the second mounting component 2.
[0162] With this configuration, after the first connecting rod 11 moves into place within the first through hole 23, a screw can be threaded into the threaded hole corresponding to the first connecting rod 11, causing the screw to press the first connecting rod against the first through hole 23. This restricts the relative position between the first connecting rod 11 and the second mounting assembly 2. As shown above, the screw and threaded hole facilitate the first limiting structure 4 in restricting the relative position between the first connecting rod 11 and the second mounting assembly 2.
[0163] In some embodiments, such as Figure 1 and Figure 4 As shown, one of the second mounting component 2 and the first mounting component 3 is provided with a second through hole 33, and the other is provided with a second connecting rod 5. The second through hole 33 is an elongated hole, and the length direction of the second through hole 33 is along the first horizontal direction (e.g., Figure 4 Extending in the X direction, the second connecting rod 5 passes through the second perforation 33.
[0164] like Figure 4 , Figure 5 and Figure 6 As shown, a second limiting structure 6 is provided on the first mounting component 3 and / or the second connecting rod 5. The second limiting structure 6 is used to limit the relative position between the second connecting rod 5 and the first mounting component 3.
[0165] With this configuration, firstly, by sliding the second connecting rod 5 within the second through hole 33, the indoor unit 200 of the air conditioner can be easily adjusted with a small amplitude and high precision in the first horizontal direction, so that the indoor unit 200 of the air conditioner can better adapt to different installation environments.
[0166] Secondly, the second through hole 33 and the second connecting rod 5 simplify the structure for achieving a movable connection along the first horizontal direction to a certain extent, which facilitates the processing of the structure.
[0167] Finally, as Figure 1 , Figure 2 and Figure 3 As shown, the second limiting structure 6 restricts the relative position between the second connecting rod 5 and the first mounting component 3, which helps to ensure that the indoor unit 200 of the air conditioner will not shift its position due to factors such as vibration and external interference during use, thus improving the reliability of the installation.
[0168] In some embodiments, such as Figure 1 , Figure 4 and Figure 9As shown, both the first mounting component 311 and the second mounting component 321 are provided with a second through hole 33, and the second connecting rod 5 is disposed on the second mounting assembly 2. Figure 10 As shown, the second limiting structure 6 includes a second nut 61, which is threadedly connected to the second connecting rod 5 passing through the second through hole 33. That is, the second limiting structure 6 is disposed on the second connecting rod 5, and the second nut 61 and the second mounting component 2 are respectively located on the upper and lower sides of the first mounting component 3.
[0169] This configuration, through the second nut 61, not only facilitates limiting the relative position between the second connecting rod 5 and the first mounting assembly 3, but also, to a certain extent, helps to simplify the specific structure of the second limiting structure 6.
[0170] Additionally, it should be noted that since the first mounting component 311 and the second mounting component 321 have the same structure, only the second mounting component 321 is illustrated. Furthermore, since the assembly relationship between the second limiting structure 6 and the first mounting component 311 is the same as that between the second limiting structure 6 and the second mounting component 321, only the assembly relationship between the second limiting structure 6 and the second mounting component 321 is illustrated.
[0171] In some embodiments, the second mounting component 2 is provided with a groove, and the first mounting component 3 is provided with a slider that matches the groove. The groove can be a T-slot or a dovetail groove, thereby enabling a movable connection between the second mounting component 2 and the first mounting component 3 through the sliding engagement of the slider and the groove in a first horizontal direction. In this case, the second limiting structure 6 can include a screw threaded onto the slider, and the screw extends through the slider and abuts against the bottom wall of the groove, effectively limiting the relative position between the second mounting component 2 and the first mounting component 3.
[0172] With this configuration, the cooperation between the slider and the groove can provide a stable movement path, ensuring that the first mounting component 3 will not easily deviate during movement, thus ensuring the directionality and accuracy of the movement.
[0173] In some embodiments, the second limiting structure 6 includes a pin, a socket disposed on the second connecting rod 5, and a first horizontal direction (e.g., Figure 4 In the case of multiple insertion holes of the first mounting component 3 (in the X direction), the second limiting structure 6 is provided in the first mounting component 3 and the second connecting rod 5.
[0174] Thus, after the second connecting rod 5 moves into place within the second through hole 33, it is inserted into the corresponding insertion hole on the first mounting assembly 3 via a pin. The insertion hole on the second connecting rod 5 restricts the relative position between the second connecting rod 5 and the first mounting assembly 3. Using a pin and insertion hole for positioning is a relatively simple and direct method, which helps to improve the installation efficiency of the second limiting structure 6.
[0175] In some embodiments, the second limiting structure 6 includes a screw, along a second horizontal direction (e.g., Figure 4 In the case of multiple threaded holes in the first mounting component 3 (in the Y direction), the second limiting structure 6 is provided in the first mounting component 3.
[0176] With this configuration, after the second connecting rod 5 moves into place within the second through hole 33, a screw can be threaded into the threaded hole corresponding to the second connecting rod 5, causing the screw to press the second connecting rod 5 against the second through hole 33. This restricts the relative position between the second connecting rod 5 and the first mounting assembly 3. As shown above, the screw and threaded hole facilitate the second limiting structure 6 in restricting the relative position between the second connecting rod 5 and the first mounting assembly 3.
[0177] In some embodiments, the second mounting component 2 is also used along the vertical direction (e.g. Figure 5 It can be movably connected to the wall or ceiling (in the Z direction).
[0178] This design facilitates the adjustment of the installation height of the indoor air conditioner unit 200 to a suitable level. This not only allows the indoor air conditioner unit 200 to better achieve air circulation and regulation, but also makes it easier to match the installation height of the indoor air conditioner unit 200 with the height of the ceiling, ensuring the overall aesthetics of the room.
[0179] On the other hand, during the installation phase, construction personnel can easily move the second installation component 2 up and down according to the actual site conditions to determine the final installation height of the indoor unit 200. The operation process is relatively simple, reducing the possibility of complex rework operations such as re-drilling due to unsuitable height. Furthermore, during subsequent use, if maintenance of the indoor unit 200 is required, such as cleaning the filter or checking the internal wiring, the vertically movable design makes it easy to adjust the indoor unit 200 to a suitable height, facilitating operation by maintenance personnel and reducing the difficulty and cost of maintenance.
[0180] In some embodiments, the second mounting component 2 is used for vertical (e.g.) Figure 5 The component (in the Z direction) is movably connected to connector 1, and connector 1 is connected to the ceiling.
[0181] like Figure 1 and Figure 4 As shown, the second mounting component 2 is provided with a first through hole 23, and the connector 1 includes a first connecting rod 11, which passes through the first through hole 23.
[0182] A first limiting structure 4 is provided on the first connecting rod 11. The first limiting structure 4 is vertically matched with the second mounting component 2 for limiting. The first limiting structure 4 is vertically adjustable on the first connecting rod 11.
[0183] This configuration allows for a vertically movable connection via the first through-hole 23 and the first connecting rod 11. This not only simplifies the connection structure and facilitates its processing but also makes the vertical movement process smoother, which is beneficial for accurately adjusting the vertical installation position of the air conditioner indoor unit 200.
[0184] On the other hand, the first limiting structure 4 not only ensures the vertical movable connection between the second mounting component 2 and the connector 1, but also effectively prevents the second mounting component 2 from detaching from the first connecting rod 11 in the vertical direction after the vertical position is adjusted. This ensures the reliability of the vertical relative position between the second mounting component 2 and the connector 1, which helps to avoid safety hazards such as the air conditioner indoor unit falling due to unexpected situations.
[0185] In addition, it should be explained that the first limiting structure 4 is the same as any of the first limiting structures 4 in the above embodiments, and will not be repeated here.
[0186] In some embodiments, the length direction of the air conditioning unit is along a first horizontal direction (e.g., ...). Figure 1 The width of the air conditioning unit extends along the second horizontal direction (e.g., the X direction in the middle), and the width direction extends along the second horizontal direction (e.g., the X direction in the middle). Figure 1 Extending in the Y direction, such as Figure 1 As shown, the width of the air conditioning unit is d, where d > 200 mm and d < 300 mm.
[0187] Since the width of the ceiling aluminum panel is usually 300mm in the relevant technology, the spacing between the keels used to fix the aluminum panel is also usually 300mm. Therefore, the width d of the air conditioning unit is set to be greater than 200mm and less than 300mm. This way, when installing the air conditioning unit, there is no need to disassemble the keel or damage it, which is conducive to the convenient installation of the air conditioning unit.
[0188] In some embodiments, the width d of the air conditioning unit is equal to 278 mm, and the indoor unit 200 of the air conditioning unit is in the second horizontal direction (e.g., Figure 1 (in the Y direction) and the first horizontal direction (e.g.) Figure 1 The movement distance in the X direction (as shown in the image) is equal to 10mm. This setting further ensures that the air conditioning unit will not interfere with the joists in the width direction, thereby further avoiding damage to the joists and facilitating the subsequent installation of the air conditioning unit.
[0189] In some embodiments, the width d of the air conditioning unit can also be any value within the range of 298mm, 288mm, or 200mm-300mm. The width d of the air conditioning unit is set flexibly, and specifically, it needs to be set according to actual needs.
[0190] Finally, it should be noted that the above embodiments are only used to illustrate the technical solutions of this application, and are not intended to limit them. Although this application has been described in detail with reference to the foregoing embodiments, those skilled in the art should understand that modifications can still be made to the technical solutions described in the foregoing embodiments, or equivalent substitutions can be made to some or all of the technical features therein. Such modifications or substitutions do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of this application.
Claims
1. An air conditioning unit, comprising: The air conditioner indoor unit comprises: a casing, the casing being provided with an air inlet and an air outlet; a fan arranged in the casing, the fan being configured to draw air outside the casing into the casing through the air inlet and to blow the air in the casing out of the casing through the air outlet; a heat exchanger configured to exchange heat with the air in the casing; a mounting module comprising: a first mounting assembly connected to the air conditioner indoor unit; a second mounting assembly movably connected to the first mounting assembly along a first horizontal direction, the second mounting assembly being further configured to be movably connected to a wall or a ceiling along a second horizontal direction, the first horizontal direction being different from the second horizontal direction. The air conditioner indoor unit comprises:
2. An air conditioning unit characterized by, a casing, the casing being provided with an air inlet and an air outlet; a fan arranged in the casing, the fan being configured to draw air outside the casing into the casing through the air inlet and to blow the air in the casing out of the casing through the air outlet; a heat exchanger configured to exchange heat with the air in the casing; a mounting module comprising: a first mounting assembly connected to the air conditioner indoor unit; a second mounting assembly connected to the first mounting assembly, the second mounting assembly being further configured to be connected to a wall or a ceiling; the first mounting assembly being configured to be movable along a first horizontal direction and a second horizontal direction respectively to drive the air conditioner indoor unit to move along the first horizontal direction and the second horizontal direction respectively, wherein the second horizontal direction is different from the first horizontal direction. The first mounting assembly comprises: a first mounting sub-assembly; 3. The air conditioning unit of claim 1 or 2, wherein a second mounting sub-assembly, the second mounting sub-assembly and the first mounting sub-assembly being movably connected to the second mounting assembly along the first horizontal direction, the air conditioner indoor unit having a first side and a second side arranged oppositely, the second mounting sub-assembly and the first mounting sub-assembly being configured to be connected to positions close to the first side and the second side respectively. The first mounting sub-assembly comprises a plurality of first mounting members, the plurality of first mounting members being configured to be connected to the air conditioner indoor unit and to be movably connected to the second mounting assembly along the first horizontal direction; and / or, 4. The air conditioning unit of claim 3, wherein the second mounting sub-assembly comprises a plurality of second mounting members, the plurality of second mounting members being configured to be connected to the air conditioner indoor unit and to be movably connected to the second mounting assembly along the first horizontal direction. The first side and the second side are arranged in opposite directions; The second mounting assembly comprises:
5. The air conditioning unit of claim 4, wherein, a third mounting member; a fourth mounting member, the fourth mounting member and the third mounting member being configured to be arranged on two sides of the opposite directions of the air conditioner indoor unit respectively and to be movably arranged along the second horizontal direction; The first mounting members are movably connected to the third mounting member along the first horizontal direction; and / or the second mounting members are movably connected to the fourth mounting member along the first horizontal direction.
6. The air conditioning unit of claim 1 or 2, wherein The first mounting assembly is arranged above the second mounting assembly.
7. The air conditioning unit of claim 1 or 2, wherein The second mounting assembly is provided with a first through hole, which is a long hole, and the length direction of the first through hole extends along the second horizontal direction, so that the second mounting assembly is movably connected to the wall or the ceiling along the second horizontal direction.
8. The air conditioning unit of claim 1 or 2, wherein One of the first mounting assembly and the second mounting assembly is provided with a second through hole, which is a long hole, and the length direction of the second through hole extends along the first horizontal direction, and the other is provided with a second connecting rod, and the second connecting rod passes through the second through hole. The first mounting assembly and / or the second connecting rod are provided with a second limiting structure, which is used to limit the relative position between the second connecting rod and the first mounting assembly.
9. The air conditioning unit of claim 1 or 2, wherein The second mounting assembly is also used to be movably connected to the wall or the ceiling along the vertical direction.
10. The air conditioning unit of claim 1 or 2, wherein The length direction of the air conditioning unit extends along the first horizontal direction, and the width direction of the air conditioning unit extends along the second horizontal direction. The width of the air conditioning unit is d, d>200mm, and d<300mm.