Air conditioner indoor unit and air conditioner assembly
By incorporating a stepped structure and a hook structure on the indoor unit and mounting support rod, the problem of rapid installation of the indoor unit is solved, enabling a simplified installation and disassembly process. This improves the ease of installation and disassembly, and enhances the overall ease of installation, thus improving the user experience of installing the indoor unit.
Patent Information
- Application Number
- CN202422952863.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-29
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2034-11-29
AI Technical Summary
The ceiling-mounted installation process for air conditioner indoor units is cumbersome and time-consuming, resulting in a poor installation experience and a lack of user-friendliness.
The combination of a stepped structure and a snap-hook structure, along with the design of the installation channel and support rod, allows for easy mounting and dismounting of the indoor air conditioning unit. Stable installation and dismounting are achieved by utilizing the interlocking and detachment of the stepped structure and the snap-hook structure.
It enables quick and easy installation and disassembly of air conditioner indoor units, improving the installation experience, reducing costs, and increasing the reliability of assembly and disassembly.
Smart Images

Figure CN223755498U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of household appliances, in particular to an air conditioner indoor unit and an air conditioner assembly. BACKGROUND
[0002] The air conditioner indoor unit is a household appliance that cooperates with the air conditioner outdoor unit to heat or cool the indoor environment, and has been increasingly used in every family in recent years.
[0003] In addition to the vertical installation and wall-mounted installation that are well known to everyone, a ceiling-mounted installation that is more suitable for small space scenarios has been developed in recent years. However, workers find that the installation process is tedious and time-consuming when installing the air conditioner indoor unit in this way, resulting in a poor installation experience of the air conditioner indoor unit and a lack of humanization. CONTENT OF THE UTILITY MODEL
[0004] The present application discloses an air conditioner indoor unit and an air conditioner assembly, which can provide a good installation experience of the air conditioner indoor unit and a good humanization.
[0005] To achieve the above-mentioned purpose, in a first aspect, the present application discloses an air conditioner assembly, comprising:
[0006] The air conditioner installation part comprises:
[0007] The installation rod is used to be installed on a vertical wall; and
[0008] The support rod is connected to the installation rod, and the extension direction of the support rod and the extension direction of the installation rod have an included angle;
[0009] The air conditioner assembly further comprises:
[0010] The air conditioner indoor unit comprises:
[0011] The machine shell is provided with an installation channel extending from the rear side of the machine shell to the front side of the machine shell;
[0012] One of the installation channel and the support rod is provided with a step structure, and the other is provided with a hook structure;
[0013] When the support rod is inserted into the installation channel by a first preset distance in the direction close to the installation rod, the hook structure is clamped to the step structure to prevent the movement of the machine shell in the direction away from the installation rod, so that the machine shell is hung on the support rod;
[0014] When the shell is pushed in the direction close to the mounting rod to continue inserting the support rod in the mounting channel by a second preset distance, the hook structure is disengaged from the engagement with the stepped structure, so that the shell can be disengaged from the support rod.
[0015] When it is needed to hang the shell on the support rod, so that the air conditioner indoor unit is hung on the air conditioner mounting member, and then the ceiling mounting of the air conditioner indoor unit is realized, first, the opening close to the rear side of the shell of the mounting channel is aligned with the support rod, and then the shell can be pushed in the direction close to the mounting rod, so that the support rod moves in the mounting channel by a first preset distance. When the support rod moves in the mounting channel by the first preset distance, the shell cannot move in the direction away from the mounting rod under the engagement of the stepped structure and the hook structure, so that the purpose of stably hanging the air conditioner indoor unit on the air conditioner mounting member is realized, and then the purpose of ceiling mounting of the air conditioner indoor unit is realized.
[0016] Under the premise that the air conditioner indoor unit is stably hung on the air conditioner mounting member, when it is needed to dismount the air conditioner indoor unit from the air conditioner mounting member, first, the shell can be pushed to continue moving by a second preset distance in the direction close to the mounting rod, so that the stepped structure is disengaged from the engagement with the hook structure, and then the shell is pulled in the direction away from the mounting rod, so that the shell is disengaged from the support rod, and then the purpose of dismounting the air conditioner indoor unit from the air conditioner mounting member is realized.
[0017] It can be seen that under the premise that the support rod is inserted in the mounting channel, the shell only needs to be pushed or pulled in the direction close to or away from the mounting rod, so that the purpose of hanging the air conditioner indoor unit on the air conditioner mounting member or dismounting the air conditioner indoor unit from the air conditioner mounting member is realized. The whole mounting and dismounting process is very convenient and fast, without the need for locking and loosening screws and other operations, so that the installation experience of the air conditioner indoor unit is better and more humanized.
[0018] In addition, the cooperation between the stepped structure and the hook structure can realize the purpose of hanging the air conditioner indoor unit on the air conditioner mounting member or dismounting the air conditioner indoor unit from the air conditioner mounting member, the implementation is simple and reliable, so that the cost of the whole air conditioner assembly can be reduced, and the reliability of the assembly and disassembly of the air conditioner assembly can be improved.
[0019] In a second aspect, the application discloses an air conditioner assembly, which comprises:
[0020] The air conditioner mounting member comprises:
[0021] The mounting rod is used for being mounted on a vertical wall surface; and
[0022] The support rod is connected to the mounting rod, and the extension direction of the support rod and the extension direction of the mounting rod have an included angle;
[0023] The air conditioner assembly further comprises:
[0024] The air conditioner indoor unit comprises:
[0025] A housing, wherein an installation channel extending from a rear side of the housing to a front side of the housing is formed on the housing;
[0026] In a vertical direction, the support rod has an upward support surface, and the housing is supported on the support surface by a channel wall of the installation channel;
[0027] One of the installation channel and the support rod is provided with a step structure, and the other is provided with a hook structure;
[0028] When the support rod is inserted into the installation channel by a first preset distance in a direction close to the installation rod, the hook structure is engaged with the step structure to prevent the housing from moving away from the installation rod;
[0029] When the support rod is continuously inserted into the installation channel by a second preset distance in the direction close to the installation rod, the hook structure is disengaged from the step structure.
[0030] With the support rod inserted into the installation channel, the housing can be pushed or pulled in the direction close to or away from the installation rod to achieve the purpose of hanging or detaching the air conditioner indoor unit from the air conditioner mounting member, and the entire installation and detachment process is very convenient and fast, without the need for screw locking and unscrewing operations, so that the installation experience of the air conditioner indoor unit is better and more humanized.
[0031] In addition, the cooperation between the step structure and the hook structure can achieve the purpose of hanging or detaching the air conditioner indoor unit from the air conditioner mounting member, the implementation is simple and reliable, and therefore, the cost of the entire air conditioner assembly can be reduced while the reliability of the assembly and detachment of the air conditioner assembly is improved.
[0032] In addition, the housing is supported on the support surface by the channel wall, and the contact between the channel wall and the support surface is surface contact with a large contact area, so that the housing can be more stably hung on the support rod, and the air conditioner indoor unit can be more stably hung on the air conditioner mounting member.
[0033] Optionally, the step structure is arranged in the installation channel, and the hook structure is arranged in the support rod.
[0034] Since the installation channel usually has a large plane for setting some structures with large floor area, and the step structure usually has larger floor area than the hook structure, by arranging the step structure in the installation channel, the design of the step structure can be more relaxed in terms of size, thereby reducing the design difficulty of the step structure.
[0035] Optionally, the installation channel is provided with:
[0036] A guide member, the guide member and the step structure are arranged in sequence along the insertion direction of the support rod, the guide member encloses a guide groove, and the guide groove extends to the step structure along the insertion direction of the support rod;
[0037] Along the insertion direction of the support rod, the size of the guide groove gradually decreases to guide the hook structure to the step structure.
[0038] Since the size of the guide groove gradually decreases along the insertion direction of the support rod, during the movement of the hook structure following the support rod, the hook structure can be accurately guided to the step structure through the guide groove.
[0039] Optionally, the step structure comprises:
[0040] A first step portion, the first step portion is arranged on a first channel wall of the installation channel, and when the support rod is inserted into the installation channel by the first preset distance, the first step portion is used to block the hook of the hook structure on the side of the first step portion away from the installation rod.
[0041] Since the first step portion can block the hook of the hook structure on the side of the first step portion away from the installation rod, the cabinet will not be able to move away from the installation rod, thereby achieving the purpose of stably hanging the air conditioner indoor unit on the air conditioner mounting member.
[0042] Since the first step portion blocks the hook on the side of the first step portion away from the installation rod in a mechanical manner, the structure is simple and reliable, and the hook can be better blocked on the side of the first step portion away from the installation rod.
[0043] Optionally, the first step portion comprises:
[0044] A first ramp surface, along the insertion direction of the support rod, the first ramp surface is inclined away from the first channel wall, the first ramp surface comprises a bottom end close to the installation rod and a top end away from the installation rod, and the bottom end is connected to the first channel wall.
[0045] The first blocking surface is connected to the top end of the first ramp surface, and when the support rod is inserted into the mounting channel by the first preset distance, the hook passes through the first ramp surface to reach the first blocking surface, and the hook overlaps the first blocking surface in the direction opposite to the insertion direction of the support rod.
[0046] During the process that the hook follows the support rod to be inserted into the mounting channel, when the hook contacts the first ramp surface, the first ramp surface can generate an abutting force on the hook, so that the hook can generate some elastic deformation to adapt to the slope of the first ramp surface, and when the hook passes through the first ramp surface to reach the first blocking surface, the hook reaches the first blocking surface under the action of its restoring force, so that the hook overlaps the first blocking surface, and the purpose of blocking the hook on the side of the first blocking surface away from the mounting rod can be achieved.
[0047] It can be seen that the purpose of blocking the hook on the side of the first blocking surface away from the mounting rod can be achieved through the cooperation between the first blocking surface and the hook, and the implementation manner is very simple.
[0048] Optionally, the first blocking surface is perpendicular to the insertion direction of the support rod and extends in the direction close to the first channel wall.
[0049] In this way, the blocking effect of the first blocking surface on the hook can be better.
[0050] Optionally, the stepped structure further comprises:
[0051] The second step portion is arranged in sequence with the first step portion in the insertion direction of the support rod.
[0052] When the support rod is continuously inserted into the mounting channel by the second preset distance, the second step portion is used for guiding the hook to disengage from the stepped structure.
[0053] Since the second step portion can guide the hook to disengage from the stepped structure when the support rod is continuously inserted into the mounting channel by the second preset distance, the cabinet can be pulled away from the mounting rod in the direction away from the mounting rod, so that the purpose of disassembling the air conditioner indoor unit from the air conditioner mounting member can be achieved.
[0054] Optionally, the second step portion comprises:
[0055] The second ramp surface is connected to one end of the first blocking surface close to the first channel wall, and the second ramp surface is inclined away from the first channel wall in the insertion direction of the support rod.
[0056] a second blocking surface connected to an end of the second ramp surface away from the mounting rod, the second blocking surface extending in a direction close to the first passage wall, and the hook overlaps with the second blocking surface in a direction opposite to the insertion direction of the support rod;
[0057] a guide surface connected to an end of the second blocking surface close to the first passage wall, the guide surface and the second blocking surface together guide the hook to the first ramp surface along a guide track when the cabinet is pulled in a direction away from the mounting rod.
[0058] By setting the second blocking surface, and making the hook overlap with the second blocking surface in a direction opposite to the insertion direction of the support rod (negative direction of the axis in the figure), the purpose of blocking the hook on the side of the second blocking surface away from the mounting rod can be achieved, thereby avoiding the situation that when the cabinet is pulled in a direction away from the mounting rod, the hook reaches the first blocking surface, causing the cabinet to be unable to be pulled, and further causing the purpose of disassembling the air conditioner indoor unit from the air conditioner mounting member to be unable to be achieved.
[0059] Optionally, the distance between the guide surface and the first passage wall gradually decreases along the guide track of the guide surface.
[0060] In this way, the height of the guide surface along the guide track of the guide surface presents a gradually decreasing trend, which can avoid the situation that the hook is stuck on the guide surface.
[0061] Optionally, the second ramp surface and the first blocking surface enclose a clamping groove, and a retaining wall is arranged between the clamping groove and the guide surface.
[0062] By setting the retaining wall, the situation that the hook falls into the clamping groove can be avoided, thereby avoiding the situation that the cabinet cannot be pulled in a direction away from the mounting rod.
[0063] Optionally, the hook structure further comprises:
[0064] a rotating shaft arranged on the support rod and extending in a direction perpendicular to the first passage wall;
[0065] a connecting rod rotatably arranged on the rotating shaft, and the hook is connected to the connecting rod, and the hook is configured to be movable in a direction away from the first passage wall when abutting against the first ramp surface and the second ramp surface, so that the hook can reach the first blocking surface or the second blocking surface;
[0066] When the casing is pulled in a direction away from the mounting rod, the clamping hook can rotate around the rotating shaft, so that the guiding surface and the second blocking surface jointly guide the clamping hook on the side of the second blocking surface away from the mounting rod to the first ramp surface.
[0067] By rotatably arranging the connecting rod around the rotating shaft, when the casing is pulled in a direction away from the mounting rod, the clamping hook can rotate around the rotating shaft, so that the clamping hook can rotate to the guiding track of the guiding surface, thereby achieving the purpose of guiding the clamping hook on the side of the second blocking surface away from the mounting rod to the first ramp surface.
[0068] Optionally, the mounting channel is arranged closer to the top side of the casing than to the bottom side of the casing.
[0069] By arranging the mounting channel closer to the top side of the casing than to the bottom side of the casing, the stress point of the casing can be closer to the top side of the casing, so that on the one hand, the stress point of the casing can be more reasonable, thereby making the air conditioner indoor unit more stably hung on the air conditioner mounting member, and on the other hand, it also provides the possibility that the mounting rod is shielded by the air conditioner indoor unit, thereby making the air conditioner assembly more tidy in appearance.
[0070] Optionally, the included angle between the extension direction of the mounting rod and the extension direction of the supporting rod is a, 90°≤a≤95°.
[0071] By 90°≤a≤95°, when the mounting rod is installed on the vertical wall surface, the supporting rod can be slightly tilted upward. In this way, when the supporting rod is inserted into the mounting channel, the air conditioner indoor unit has a tendency to slide towards the vertical wall surface under the action of gravity, thereby avoiding the situation that the air conditioner indoor unit slides away from the vertical wall surface, causing the supporting rod to abnormally come out of the mounting channel.
[0072] Optionally, one of the casing and the mounting rod is provided with a buckle, and the other is provided with a clamping hole, and when the supporting rod moves the first preset distance in the mounting channel, the buckle is located in the clamping hole.
[0073] By clamping the buckle in the clamping hole, the casing can be connected to the supporting rod and the mounting rod, so that the air conditioner indoor unit can be more stably hung on the air conditioner mounting member.
[0074] Optionally, the casing is provided with an air outlet and an air inlet, the air outlet is located on the bottom side of the casing, and the air inlet is located on the front side of the casing.
[0075] By setting the air outlet at the bottom side of the shell and the air inlet at the front side of the shell, when the air conditioner indoor unit is ceiling-mounted in a room, the air outlet and the air inlet can both face the indoor space without being blocked by the roof or the vertical wall, thereby providing structural guarantee for ceiling mounting of the air conditioner indoor unit.
[0076] In addition, by setting the air outlet at the bottom side of the shell, when the air conditioner indoor unit is located above the ceiling (aluminum panel, etc.), the air outlet can be located directly above the ceiling, so that the distance between the air outlet and the ceiling is short and they can be arranged along the vertical direction, thereby facilitating air outlet through the ceiling to the room.
[0077] Optionally, the shell is provided with an air outlet and an air inlet, the air outlet is located at the front side of the shell, and the air inlet is located at the bottom side of the shell.
[0078] When the air outlet is located at the front side of the shell and the air inlet is located at the bottom side of the shell, under the premise that the air conditioner indoor unit is located above the ceiling (aluminum panel, etc.), the air inlet can be located directly above the ceiling, so that the distance between the air inlet and the ceiling is short and they can be arranged along the vertical direction, thereby facilitating air inlet to suck indoor air through the ceiling.
[0079] In a third aspect, the application discloses an air conditioner indoor unit, which is the air conditioner indoor unit in any of the first aspect or the second aspect.
[0080] Compared with the prior art, the application has the following beneficial effects:
[0081] In the application, when it is necessary to hang the shell on the support rod, so that the air conditioner indoor unit is hung on the air conditioner mounting member, and then ceiling mounting of the air conditioner indoor unit is realized, first, the opening of the installation channel close to the rear side of the shell is aligned with the support rod, and then the shell can be pushed in the direction close to the installation rod, so that the support rod moves in the installation channel by a first preset distance. When the support rod moves in the installation channel by the first preset distance, the shell cannot move in the direction away from the installation rod under the clamping action of the stepped structure and the hook structure, so that the purpose of stably hanging the air conditioner indoor unit on the air conditioner mounting member can be achieved, and then the purpose of ceiling mounting of the air conditioner indoor unit can be achieved.
[0082] Under the premise that the air conditioner indoor unit is stably hung on the air conditioner mounting member, when it is necessary to dismount the air conditioner indoor unit from the air conditioner mounting member, first, the shell can be pushed in the direction close to the installation rod to continue moving by a second preset distance, so that the stepped structure and the hook structure are disengaged from clamping, and then the shell is pulled in the direction away from the installation rod, so that the shell is disengaged from the support rod, and then the purpose of dismounting the air conditioner indoor unit from the air conditioner mounting member can be achieved.
[0083] It can be seen that, under the premise that the support rod is inserted into the mounting channel, the air conditioner indoor unit can be hung on or detached from the air conditioner mounting member by pushing or pulling the shell towards or away from the mounting rod, the whole mounting and detaching process is very convenient and fast, without the need of locking and loosening screws and other operations, so that the installation experience of the air conditioner indoor unit is better and more humanized.
[0084] In addition, the air conditioner indoor unit can be hung on or detached from the air conditioner mounting member by the cooperation between the stepped structure and the hook structure, the implementation is simple and reliable, so that the cost of the whole air conditioner assembly can be reduced while the reliability of the assembly and disassembly of the air conditioner assembly is improved. BRIEF DESCRIPTION OF DRAWINGS
[0085] In order to more clearly illustrate the technical solutions in the embodiments of the present application, the drawings needed in the embodiments will be briefly introduced as follows. Obviously, the drawings in the following description are only some embodiments of the present application, and other drawings can be obtained by those skilled in the art without creative labor.
[0086] Figure 1 is a structural schematic diagram of an air conditioner assembly provided by an embodiment of the present application;
[0087] Figure 2 is Figure 1 is a structural schematic diagram of the air conditioner assembly in
[0088] Figure 3 is Figure 2 is an exploded view of the air conditioner assembly in
[0089] Figure 4 is Figure 2 is a structural schematic diagram of the air conditioner assembly in when mounted on a vertical wall;
[0090] Figure 5 is Figure 3 is a structural schematic diagram of the air conditioner mounting member in
[0091] Figure 6 is Figure 3 is an exploded view of the air conditioner assembly in another view;
[0092] Figure 7 is Figure 6 is a structural schematic diagram of the air conditioner assembly in when the support rod is inserted into the mounting channel by a first preset distance;
[0093] Figure 8 is Figure 7 is a local enlarged view of the A position in
[0094] Figure 9 yes Figure 6 A schematic diagram of the structure of the air conditioning component when the support rod continues to be inserted into the installation channel at a second preset distance;
[0095] Figure 10 yes Figure 9 A magnified view of the air conditioning component at position B;
[0096] Figure 11 yes Figure 2 A schematic diagram of the air conditioning component from a positive Y-axis perspective;
[0097] Figure 12 yes Figure 11 Cross-sectional view at the CC position;
[0098] Figure 13 yes Figure 6 A magnified view of a section at position D in the middle;
[0099] Figure 14 This is a comparison diagram of the hook positions at position E in section 12 when the support rod is inserted to the first preset distance and when it is inserted to the second preset distance.
[0100] Figure 15 yes Figure 5 A structural schematic diagram of the air conditioner installation components from another perspective;
[0101] Figure 16 yes Figure 1 A schematic diagram of the air conditioning components from another perspective.
[0102] Explanation of main figure symbols
[0103] 1-Air conditioner mounting hardware; 11-Mounting rod; 111-Snap hole; 12-Support rod; 121-Supporting surface; 112-Mounting hole;
[0104] 2-Indoor unit of air conditioner; 21-Casing; 211-Snap fastener; 212-Air outlet; 213-Air inlet;
[0105] 3-Step structure; 31-First step; 311-First climbing surface; 312-First blocking surface; 32-Second step; 321-Second climbing surface; 322-Second blocking surface; 323-Guiding surface;
[0106] 4-Hook structure; 41-Hook; 42-Rotating shaft; 43-Connecting rod;
[0107] 10-Installation channel; 101-Channel wall; 101a-First channel wall; 102-Guide component; 1021-Guide groove; 20-Slot;
[0108] 5- Retaining wall;
[0109] 100 - air conditioning assembly
[0110] D - roof; Q - vertical wall; S - guide track. DETAILED DESCRIPTION
[0111] The technical solutions in the embodiments of the present application will be clearly and completely described below with reference to the drawings in the embodiments of the present application. Obviously, the described embodiments are only part of the embodiments of the present application, rather than all the embodiments of the present application. Based on the embodiments in the present application, all other embodiments obtained by those skilled in the art without creative work belong to the scope of protection of the present application.
[0112] In the present application, the terms "upper", "lower", "left", "right", "front", "back", "top", "bottom", "inner", "outer", "middle", "vertical", "horizontal", "lateral", "longitudinal" and the like indicate the orientation or positional relationship shown in the drawings. These terms are mainly used to better describe the present application and its embodiments, and are not intended to limit the indicated devices, elements or components to have a specific orientation, or to be constructed and operated in a specific orientation.
[0113] In addition, in addition to being used to indicate the orientation or positional relationship, the above-mentioned partial terms can also be used to indicate other meanings, for example, the term "upper" can also be used to indicate a certain dependent relationship or connection relationship in some cases. For those skilled in the art, the specific meaning of these terms in the present application can be understood according to the specific situation.
[0114] In addition, the terms "mount", "set", "provided with", "connected", "connected" should be broadly understood. For example, it can be fixedly connected, detachably connected, or integrally constructed; it can be mechanically connected, or electrically connected; it can be directly connected, or indirectly connected through an intermediate medium, or internal communication between two devices, elements or components. For those skilled in the art, the specific meaning of the above-mentioned terms in the present application can be understood according to the specific situation.
[0115] In addition, the terms "first", "second" and the like are mainly used to distinguish different devices, elements or components (the specific types and structures can be the same or different), and are not intended to indicate or imply the relative importance and quantity of the indicated devices, elements or components. Unless otherwise stated, the meaning of "multiple" is two or more.
[0116] Before the technical solutions of the present application are explained, the background art of the present application is explained.
[0117] The air conditioner indoor unit is a kind of household electrical appliances that cooperates with the air conditioner outdoor unit to heat or cool the indoor environment, and in recent years, more and more air conditioner indoor units have entered every family.
[0118] In addition to the well-known vertical installation and wall-mounted installation, a ceiling-mounted installation suitable for small space scenarios has been developed in recent years. This installation method can be widely used in the installation of kitchen air conditioner indoor units. However, workers find that the installation process is tedious and time-consuming, and requires high installation experience, resulting in poor installation experience and lack of humanization. Therefore, the present application provides an air conditioner assembly to solve the above problems.
[0119] Figure 1 FIG. 1 is a structural schematic diagram of an air conditioner assembly 100 provided by an embodiment of the present application, Figure 2 FIG. 2 is a structural schematic diagram of the air conditioner assembly 100 in Figure 1 FIG. 3 is a structural schematic diagram of the air conditioner assembly 100 in Figure 3 FIG. 4 is an exploded view of the air conditioner assembly 100 in Figure 2 FIG. 5 is a structural schematic diagram of the air conditioner assembly 100 in Figure 4 FIG. 6 is a structural schematic diagram of the air conditioner assembly 100 in Figure 2 FIG. 7 is a structural schematic diagram of the air conditioner assembly 100 installed on a vertical wall Q in
[0120] Referring to Figure 1 and Figure 4 , the air conditioner assembly 100 includes an air conditioner mounting member 1, and the air conditioner mounting member 1 includes a mounting rod 11 for installation on a vertical wall Q.
[0121] By providing the mounting rod 11, the air conditioner mounting member 1 can have a structure specifically for installation on the vertical wall Q, and thus the functional division of each structure of the air conditioner mounting member 1 can be more clear.
[0122] When installing the mounting rod 11 on the vertical wall Q, in a possible implementation manner, referring to Figure 2 , Figure 3 and Figure 4 , the extension direction of the mounting rod 11 (the Z-axis direction in Figure 3 ) can be parallel to the vertical wall Q.
[0123] By making the extension direction of the mounting rod 11 parallel to the vertical wall Q, the contact area between the mounting rod 11 and the vertical wall Q can be as large as possible, and the vertical wall Q can provide a certain support force to each position of the mounting rod 11 along the extension direction of the mounting rod 11, and thus the mounting rod 11 can be installed more firmly on the vertical wall Q.
[0124] The mounting rod 11 can be mounted on the vertical wall Q in various ways. In one possible implementation, as shown in Figure 5 , Figure 5 is Figure 3 a schematic view of the structure of the air conditioner mounting piece 1 in Figure 5 , a plurality of mounting holes 112 can be arranged along the extension direction of the mounting rod 11 (i.e., the Z-axis direction in . A plurality of threaded holes corresponding to the positions of the mounting holes 112 can be arranged on the vertical wall Q. Thus, by screwing the screws through the mounting holes 112 and connecting them to the threaded holes, the mounting rod 11 can be mounted on the vertical wall Q.
[0125] Of course, the mounting rod 11 can also be mounted on the vertical wall Q in other ways, which are not limited in the present embodiment.
[0126] It should be noted that the number of mounting holes 112 can be two as shown in Figure 5 . Of course, the number of mounting holes 112 can also be three, four, or five, etc., which are not limited in the present embodiment.
[0127] It should be further noted that the mounting rod 11 can have a flat plate structure as shown in Figure 5 . Of course, the mounting rod 11 can also have a round rod structure or other possible structures, which are not limited in the present embodiment.
[0128] In some embodiments, as shown in Figure 3 , Figure 4 and Figure 5 , the air conditioner mounting piece 1 further comprises a support rod 12, which is connected to the mounting rod 11. The extension direction of the support rod 12 (i.e., the Y-axis direction in Figure 3 ) forms an angle with the extension direction of the mounting rod 11 (i.e., the Z-axis direction in Figure 3 ).
[0129] Specifically, in the scenario where the mounting rod 11 is mounted on the vertical wall Q, the support rod 12 can extend in a direction away from the vertical wall Q (i.e., the positive direction of the Y-axis in Figure 5 ).
[0130] Since the extension direction of the support rod 12 forms an angle with the extension direction of the mounting rod 11, when the mounting rod 11 is mounted on the vertical wall Q, the support rod 12 can form a structure similar to a cantilever beam relative to the vertical wall Q, which provides a structural guarantee for subsequently hanging the air conditioner indoor unit 2 through the support rod 12 and achieving the ceiling-mounted installation of the air conditioner indoor unit 2.
[0131] The structure of the support rod 12 can be the same as or similar to that of the mounting rod 11, and specific descriptions can be made with reference to the descriptions of the mounting rod 11 in the above embodiments. The structure of the support rod 12 will not be described herein again.
[0132] In some embodiments, referring to Figure 3 and Figure 4 , the air conditioner assembly 100 further comprises an air conditioner indoor unit 2, which comprises a cabinet 21 having a mounting channel 10 extending from the rear side of the cabinet 21 to the front side of the cabinet 21 (the positive direction of the Y-axis in FIG. 1). Figure 3
[0133] Since the mounting channel 10 extends from the rear side of the cabinet 21 to the front side, when it is necessary to hang the air conditioner indoor unit 2 on the support rod 12 so that the air conditioner indoor unit 2 is ceiling-mounted, first, the opening of the mounting channel 10 close to the rear side of the cabinet 21 can be aligned with the support rod 12, and then the cabinet 21 can be pushed along the direction close to the vertical wall Q to achieve the purpose of inserting the support rod 12 into the mounting channel 10, and then the air conditioner indoor unit 2 can be hung on the support rod 12 through the mounting channel 10, thereby achieving the purpose of ceiling-mounting the air conditioner indoor unit 2 in the room.
[0134] It can be seen that when it is necessary to ceiling-mount the air conditioner indoor unit 2 in the room, by providing the mounting channel 10 extending from the rear side of the cabinet 21 to the front side of the cabinet 21 on the cabinet 21, the air conditioner indoor unit 2 can be ceiling-mounted in the room only by inserting the support rod 12 into the mounting channel 10, and the entire installation process is very convenient and fast, without the need for locking screws and the like, so that the installation experience of the air conditioner indoor unit 2 is better and more user-friendly.
[0135] It should be noted that the rear side of the cabinet 21 refers to the side facing the vertical wall Q, and the front side of the cabinet 21 refers to the side opposite to the rear side of the cabinet 21.
[0136] In some embodiments, referring to Figure 6 , Figure 7 and Figure 8 , Figure 6 is an exploded view of the air conditioner assembly 100 in FIG. 1 from another perspective, Figure 3 is a structural schematic view of the air conditioner assembly 100 in FIG. 1 when the support rod 12 is inserted into the mounting channel 10 by a first preset distance, Figure 7 is a partial enlarged view of the A position in FIG. 1, one of the mounting channel 10 and the support rod 12 is provided with a stepped structure 3, and the other is provided with a hook structure 4, and the cabinet 21 is pushed in the direction close to the mounting rod 11. Figure 6 Figure 8 Figure 7 Figure 6 (in the negative direction of the Y-axis), so that when the support rod 12 is inserted into the mounting channel 10 at the first preset distance, the hook structure 4 engages with the stepped structure 3 to prevent the housing 21 from moving away from the mounting rod 11 in the direction away from the mounting rod 11. Figure 6 The housing 21 is moved in the positive direction of the Y-axis so that it is mounted on the support rod 12.
[0137] When it is necessary to mount the indoor unit 2 of the air conditioner onto the air conditioner mounting bracket 1, firstly, the opening of the mounting channel 10 near the rear side of the housing 21 can be aligned with the support rod 12. Then, the housing 21 can be pushed in the direction close to the mounting rod 11. Figure 6 (in the negative direction of the Y-axis), causing the support rod 12 to be inserted into the mounting channel 10 by a first preset distance. After the support rod 12 is inserted into the mounting channel 10 by the first preset distance, the hook structure 4 will engage with the stepped structure 3, preventing the housing 21 from moving away from the mounting rod 11 in the direction ( Figure 6 The housing 21 moves in the positive direction of the Y-axis, thereby preventing the housing 21 from moving away from the mounting rod 11 and causing it to detach from the support rod 12. This ensures that the housing 21 is stably mounted on the support rod 12, thus achieving the purpose of stably mounting the indoor unit 2 of the air conditioner to the air conditioner mounting component 1.
[0138] By engaging the hook structure 4 with the stepped structure 3, the housing 21 can be prevented from moving away from the mounting rod 11 through this engagement. Figure 6 The purpose of moving the object (in the positive direction of the Y-axis) is very simple to achieve.
[0139] In some embodiments, see Figure 9 and Figure 10 , Figure 9 yes Figure 6 A schematic diagram of the structure of the air conditioning component 100 when the support rod 12 continues to be inserted into the installation channel 10 by a second preset distance. Figure 10 yes Figure 9 The enlarged view of the air conditioning component 100 at position B shows that the housing 21 is pushed along the direction close to the mounting rod 11, and when the support rod 12 is inserted into the mounting channel 10 for a second preset distance, the hook structure 4 and the step structure 3 disengage, so that the housing 21 can be detached from the support rod 12.
[0140] When the support rod 12 continues to be inserted into the installation channel 10 by a second preset distance due to the continuous pushing of the shell 21 in the direction close to the installation rod 11, the hook structure 4 can be disengaged from the latching of the stepped structure 3, so that, under the premise that the support rod 12 is inserted into the installation channel 10 by a first preset distance, the air conditioner indoor unit 2 is hung on the support rod 12, when it is needed to dismount the air conditioner indoor unit 2 from the support rod 12, only the shell 21 needs to be continuously pushed in the direction close to the installation rod 11, the support rod 12 continues to be inserted into the installation channel 10 by a second preset distance, and then the shell 21 is pulled in the direction away from the installation rod 11, so that the shell 21 is disengaged from the support rod 12, and the purpose of dismounting the air conditioner indoor unit 2 from the support rod 12 can be achieved.
[0141] Therefore, when it is needed to hang the shell 21 on the support rod 12, so that the air conditioner indoor unit 2 is hung on the air conditioner mounting piece 1, and the ceiling mounting of the air conditioner indoor unit 2 is achieved, firstly, the opening of the installation channel 10 close to the rear side of the shell 21 is aligned with the support rod 12, and then the shell 21 can be pushed in the direction close to the installation rod 11, so that the support rod 12 moves in the installation channel 10 by a first preset distance. When the support rod 12 moves in the installation channel 10 by a first preset distance, the shell 21 cannot move in the direction away from the installation rod 11 under the latching of the stepped structure 3 and the hook structure 4, so that the purpose of stably hanging the air conditioner indoor unit 2 on the air conditioner mounting piece 1 can be achieved, and the purpose of ceiling mounting of the air conditioner indoor unit 2 can be achieved.
[0142] Under the premise that the air conditioner indoor unit 2 is stably hung on the air conditioner mounting piece 1, when it is needed to dismount the air conditioner indoor unit 2 from the air conditioner mounting piece 1, firstly, the shell 21 can be pushed in the direction close to the installation rod 11 by a second preset distance, so that the stepped structure 3 is disengaged from the latching of the hook structure 4, and then the shell 21 is pulled in the direction away from the installation rod 11, so that the shell 21 is disengaged from the support rod 12, and the purpose of dismounting the air conditioner indoor unit 2 from the air conditioner mounting piece 1 can be achieved.
[0143] It can be seen that, under the premise that the support rod 12 is inserted into the installation channel 10, only the shell 21 needs to be pushed or pulled in the direction close to or away from the installation rod 11, so that the purpose of hanging or dismounting the air conditioner indoor unit 2 on or from the air conditioner mounting piece 1 can be achieved, the whole installation and dismounting process is very convenient and fast, without the operation of locking or loosening screws, so that the installation experience of the air conditioner indoor unit 2 is better, and it is more humanized.
[0144] In addition, the air conditioner indoor unit 2 can be hung on or detached from the air conditioner mounting member 1 through cooperation between the stepped structure 3 and the hook structure 4, which is simple in implementation and reliable in operation, thereby improving the reliability of assembly and disassembly of the air conditioner assembly 100 while reducing the cost of the entire air conditioner assembly 100.
[0145] In some embodiments, referring to Figure 1 and Figure 2 , the air conditioner assembly 100 comprises an air conditioner mounting member 1 and an air conditioner indoor unit 2.
[0146] In some embodiments, referring to Figure 3 , Figure 4 and Figure 5 , the air conditioner mounting member 1 comprises a mounting rod 11 and a support rod 12, the mounting rod 11 is configured to be mounted on a vertical wall Q, and the support rod 12 is connected to the mounting rod 11 and has an included angle between the extension direction of the support rod 12 and the extension direction of the mounting rod 11.
[0147] In some embodiments, referring to Figure 3 and Figure 6 , the air conditioner indoor unit 2 comprises a cabinet 21, and the cabinet 21 is provided with a mounting channel 10 extending from the rear side of the cabinet 21 to the front side of the cabinet 21. One of the mounting channel 10 and the support rod 12 is provided with a stepped structure 3, and the other is provided with a hook structure 4.
[0148] When the support rod 12 is inserted into the mounting channel 10 by a first preset distance, the hook structure 4 is engaged with the stepped structure 3 to prevent the cabinet 21 from moving away from the mounting rod 11, so that the cabinet 21 is hung on the support rod 12.
[0149] When the support rod 12 continues to be inserted into the mounting channel 10 by a second preset distance, the hook structure 4 is disengaged from the stepped structure 3, so that the cabinet 21 can be detached from the support rod 12.
[0150] In this embodiment, when it is necessary to hang the cabinet 21 on the support rod 12, so that the air conditioner indoor unit 2 is hung on the air conditioner mounting member 1, thereby achieving the ceiling mounting of the air conditioner indoor unit 2, first, the opening of the mounting channel 10 close to the rear side of the cabinet 21 is aligned with the support rod 12, and then the cabinet 21 can be pushed in the direction close to the mounting rod 11, so that the support rod 12 moves in the mounting channel 10 by a first preset distance. When the support rod 12 moves in the mounting channel 10 by a first preset distance, the cabinet 21 cannot move away from the mounting rod 11 under the engagement of the stepped structure 3 and the hook structure 4, so that the air conditioner indoor unit 2 can be stably hung on the air conditioner mounting member 1, thereby achieving the ceiling mounting of the air conditioner indoor unit 2.
[0151] In the premise that the air conditioner indoor unit 2 is stably hung on the air conditioner mounting piece 1, when it is needed to dismount the air conditioner indoor unit 2 from the air conditioner mounting piece 1, first, the casing 21 can be pushed in the direction close to the mounting rod 11 to continue moving by a second preset distance, so that the stepped structure 3 is disengaged from the hook structure 4, and then the casing 21 is pulled in the direction away from the mounting rod 11, so that the casing 21 is disengaged from the support rod 12, and the purpose of dismounting the air conditioner indoor unit 2 from the air conditioner mounting piece 1 can be achieved.
[0152] It can be seen that in the premise that the support rod 12 is inserted into the mounting channel 10, the casing 21 only needs to be pushed or pulled in the direction close to or away from the mounting rod 11, so that the purpose of hanging or dismounting the air conditioner indoor unit 2 on / from the air conditioner mounting piece 1 can be achieved, the whole mounting and dismounting process is very convenient and fast, and there is no need to lock or loosen screws and the like, so that the installation experience of the air conditioner indoor unit 2 is better and more humanized.
[0153] In addition, the purpose of hanging or dismounting the air conditioner indoor unit 2 on / from the air conditioner mounting piece 1 can be achieved through the cooperation between the stepped structure 3 and the hook structure 4, the implementation is simple and reliable, and therefore, the cost of the whole air conditioner assembly 100 can be reduced while the reliability of the assembly and disassembly of the air conditioner assembly 100 is improved.
[0154] In some embodiments, referring to Figure 5 , Figure 11 and Figure 12 , Figure 11 is a structural schematic view of the air conditioner assembly 100 in Figure 2 along the positive direction of the Y axis, Figure 12 is a sectional view of the position C-C in Figure 11 in the vertical direction (the direction of the Z axis in Figure 12 ), the support rod 12 has an upward support surface 121, and the casing 21 passes through the channel wall 101 of the mounting channel 10 to the support surface 121.
[0155] Since the support surface 121 is vertically upwardly arranged (in the positive direction of the Z axis in Figure 12 ), and since the casing 21 will be subjected to a vertical downward gravity, when the support rod 12 is inserted into the mounting channel 10, the channel wall 101 of the mounting channel 10 will abut against the support surface 121 tightly, the support surface 121 will provide a vertical upward supporting force to the casing 21 through the channel wall 101, and thus the purpose of hanging the air conditioner indoor unit 2 on the support rod 12 through the mounting channel 10 can be achieved.
[0156] It can be seen that by making the support rod 12 have an upward support surface 121, and by cooperation between the support surface 121 and the channel wall 101 of the mounting channel 10, the air conditioner indoor unit 2 can be hung on the support rod 12, and the structure design is very simple, thus the structure of the air conditioner assembly 100 can be simplified to a certain extent.
[0157] In addition, since the casing 21 is supported on the support surface 121 by the channel wall 101, and the contact between the channel wall 101 and the support surface 121 is surface contact with a large contact area, the casing 21 can be more stably hung on the support rod 12, and the air conditioner indoor unit 2 can be more stably hung on the air conditioner mounting piece 1.
[0158] In some embodiments, when the support rod 12 is inserted into the mounting channel 10 by a first preset distance in the direction close to the mounting rod 11, the hook structure 4 is clamped on the stepped structure 3 to prevent the casing 21 from moving away from the mounting rod 11.
[0159] Since the hook structure 4 is clamped on the stepped structure 3 when the support rod 12 is inserted into the mounting channel 10 by the first preset distance, the casing 21 cannot move away from the mounting rod 11 (i.e., the positive direction of the Y-axis), thereby avoiding the situation that the casing 21 moves away from the mounting rod 11 and is separated from the support rod 12, and ensuring that the casing 21 is stably hung on the support rod 12, thus achieving the purpose of stably hanging the air conditioner indoor unit 2 on the air conditioner mounting piece 1. Figure 12
[0160] In some embodiments, when the support rod 12 is continuously inserted into the mounting channel 10 by a second preset distance in the direction close to the mounting rod 11 by continuously pushing the casing 21, the hook structure 4 is disengaged from the stepped structure 3.
[0161] Since the hook structure 4 is disengaged from the stepped structure 3 when the support rod 12 is continuously inserted into the mounting channel 10 by the second preset distance in the direction close to the mounting rod 11 by continuously pushing the casing 21, when the air conditioner indoor unit 2 needs to be detached from the support rod 12, the casing 21 can be separated from the support rod 12 by continuously pushing the casing 21 in the direction close to the mounting rod 11 to continuously insert the support rod 12 into the mounting channel 10 by the second preset distance, and then pulling the casing 21 away from the mounting rod 11, thus achieving the purpose of detaching the air conditioner indoor unit 2 from the support rod 12.
[0162] In some embodiments, referring toFigure 12 In the vertical direction, the support rod 12 has an upward support surface 121, and the casing 21 is supported on the support surface 121 by the channel wall 101 of the mounting channel 10.
[0163] Referring to Figure 6 One of the mounting channel 10 and the support rod 12 is provided with the stepped structure 3, and the other is provided with the hook structure 4.
[0164] Referring to Figure 7 and Figure 8 When the casing 21 is pushed in the direction close to the mounting rod 11 and the support rod 12 is inserted into the mounting channel 10 by a first preset distance, the hook structure 4 is engaged with the stepped structure 3 to prevent the casing 21 from moving in the direction away from the mounting rod 11.
[0165] Referring to Figure 9 and Figure 10 When the casing 21 is continuously pushed in the direction close to the mounting rod 11 and the support rod 12 is continuously inserted into the mounting channel 10 by a second preset distance, the hook structure 4 is disengaged from the stepped structure 3.
[0166] In the embodiment, when it is needed to hang the casing 21 on the support rod 12 so that the air conditioner indoor unit 2 is hung on the air conditioner mounting 1, thereby achieving the ceiling mounting of the air conditioner indoor unit 2, first, the opening of the mounting channel 10 close to the rear side of the casing 21 is aligned with the support rod 12, and then the casing 21 can be pushed in the direction close to the mounting rod 11 so that the support rod 12 moves in the mounting channel 10 by the first preset distance. When the support rod 12 moves in the mounting channel 10 by the first preset distance, the casing 21 cannot move in the direction away from the mounting rod 11 under the engagement of the stepped structure 3 and the hook structure 4, thereby achieving the purpose of stably hanging the air conditioner indoor unit 2 on the air conditioner mounting 1, and thereby achieving the purpose of ceiling mounting of the air conditioner indoor unit 2.
[0167] Under the premise that the air conditioner indoor unit 2 is stably hung on the air conditioner mounting 1, when it is needed to dismount the air conditioner indoor unit 2 from the air conditioner mounting 1, first, the casing 21 can be pushed in the direction close to the mounting rod 11 to continuously move by the second preset distance so that the stepped structure 3 is disengaged from the hook structure 4, and then the casing 21 is pulled in the direction away from the mounting rod 11, so that the casing 21 is disengaged from the support rod 12, thereby achieving the purpose of dismounting the air conditioner indoor unit 2 from the air conditioner mounting 1.
[0168] As can be seen, with the support rod 12 inserted into the installation channel 10, the air conditioner indoor unit 2 can be mounted on or removed from the air conditioner mounting bracket 1 simply by pushing or pulling the housing 21 in the direction close to or away from the mounting rod 11. The entire installation and removal process is very convenient and quick, without the need for tightening or loosening screws, making the installation experience of the air conditioner indoor unit 2 better and more user-friendly.
[0169] In addition, since the step structure 3 and the hook structure 4 cooperate to achieve the purpose of mounting the air conditioner indoor unit 2 on the air conditioner mounting part 1 or removing it from the air conditioner mounting part 1, the method is simple and the operation is reliable. Therefore, the cost of the entire air conditioner assembly 100 can be reduced while improving the reliability of the assembly and disassembly of the air conditioner assembly 100.
[0170] Furthermore, since the housing 21 is supported on the support surface 121 by the channel wall 101, and the contact between the channel wall 101 and the support surface 121 is a surface contact with a large contact area, the housing 21 can be more stably mounted on the support rod 12, which in turn allows the indoor air conditioner unit 2 to be more stably mounted on the air conditioner mounting component 1.
[0171] In some embodiments, see Figure 6 The stepped structure 3 is installed in the installation channel 10, and the hook structure 4 is installed on the support rod 12.
[0172] Since the installation channel 10 usually has a large surface area for setting up some structures with a large footprint, and the step structure 3 usually occupies a larger area than the hook structure 4, by setting the step structure 3 within the installation channel 10, the design of the step structure 3 can be more flexible in terms of size, thereby reducing the design difficulty of the step structure 3.
[0173] Of course, in other embodiments, the stepped structure 3 can also be provided on the support rod 12, and the hook structure 4 can also be provided in the installation channel 10. This embodiment does not limit this.
[0174] In order to enable the support rod 12 to more accurately move the hook structure 4 to the stepped structure 3 as the hook structure 4 moves with the support rod 12, in some embodiments, see Figure 6 and Figure 13 , Figure 13 yes Figure 6 A partial enlarged view at position D shows that a guide 102 is provided within the installation channel 10, and the guide 102 and the stepped structure 3 are aligned with the insertion direction of the support rod 12. Figure 13The guide members 102 are arranged sequentially along the positive direction of the Y-axis to form a guide groove 1021. The guide groove 1021 extends to the stepped structure 3 along the insertion direction of the support rod 12. The size of the guide groove 1021 gradually decreases along the insertion direction of the support rod 12 to guide the hook structure 4 to the stepped structure 3.
[0175] As the size of the guide groove 1021 gradually decreases along the insertion direction of the support rod 12, the hook structure 4 can be accurately guided to the stepped structure 3 through the guide groove 1021 during the movement of the hook structure 4 following the support rod 12.
[0176] See Figure 13 The aforementioned guide member 102 may include two guide plates, the surfaces of which are arranged opposite each other to form a trumpet-shaped structure. Of course, the guide member 102 may also be other possible structures, as long as it can guide the hook structure 4 to the stepped structure 3.
[0177] In some embodiments, see Figure 13 and Figure 14 , Figure 14 This is a comparison diagram of the positions of the hook 41 at position E in 12 when the support rod 12 is inserted to the first preset distance and when it is inserted to the second preset distance. The stepped structure 3 includes a first step 31, which is disposed on the first channel wall 101a of the installation channel 10. When the support rod 12 is inserted to the first preset distance in the installation channel 10 ( Figure 14 (See left-middle view) The first step portion 31 is used to block the hook 41 of the hook structure 4 on the side of the first step portion 31 away from the mounting rod 11. Figure 14 (Right side of the first step section 31).
[0178] Since the first step 31 can block the hook 41 of the hook structure 4 on the side of the first step 31 away from the mounting rod 11, the housing 21 will not be able to move in the direction away from the mounting rod 11, thereby achieving the purpose of stably mounting the indoor unit 2 of the air conditioner to the air conditioner mounting component 1.
[0179] Since the first step portion 31 blocks the hook 41 on the side of the first step portion 31 away from the mounting rod 11 by mechanical limiting, the structure is simple and reliable. Therefore, it can better ensure that the hook 41 is blocked on the side of the first step portion 31 away from the mounting rod 11.
[0180] In some embodiments, see Figure 14 The first step portion 31 includes: a first climbing surface 311 and a first blocking surface 312, wherein, along the insertion direction of the support rod 12 ( Figure 14 (Positive Y-axis direction), the first ramp surface 311 faces away from the first channel wall 101a ( Figure 14Inclined towards the positive direction of the Y-axis, the first climbing surface 311 includes a bottom end near the mounting rod 11 and a top end away from the mounting rod 11. The bottom end is connected to the first channel wall 101a, and the first blocking surface 312 is connected to the top end of the first climbing surface 311. When the support rod 12 is inserted into the mounting channel 10 by a first preset distance, the hook 41 passes through the first climbing surface 311 and reaches the first blocking surface 312. Figure 14 (Middle left figure), in the direction opposite to the insertion direction of support rod 12 ( Figure 14 (In the negative direction of the Y-axis), the hook 41 overlaps with the first blocking surface 312.
[0181] During the process of the hook 41 being inserted into the installation channel 10 along with the support rod 12, when the hook 41 contacts the first ramp surface 311, the first ramp surface 311 can generate a resisting force on the hook 41, so that the hook 41 can adapt to the slope of the first ramp surface 311 and generate some elastic deformation. When the hook 41 passes the first ramp surface 311 and reaches the first blocking surface 312, the hook 41 will reach the first blocking surface 312 under the action of its own restoring force, so that the hook 41 overlaps with the first blocking surface 312, thereby achieving the purpose of blocking the hook 41 on the side of the first blocking surface 312 away from the installation rod 11.
[0182] As can be seen, the cooperation between the first blocking surface 312 and the hook 41 can achieve the purpose of blocking the hook 41 on the side of the first blocking surface 312 away from the mounting rod 11, which is very simple.
[0183] In some embodiments, see Figure 14 The first blocking surface 312 is perpendicular to the insertion direction of the support rod 12 and along the direction close to the first channel wall 101a. Figure 14 (Extends in the negative direction of the Z-axis).
[0184] This configuration allows the first blocking surface 312 to better block the hook 41.
[0185] In some embodiments, see Figure 14 and Figure 13 The stepped structure 3 also includes a second step 32, along the insertion direction of the support rod 12 ( Figure 14 (in the positive direction of the Y-axis), the first step portion 31 and the second step portion 32 are arranged in sequence.
[0186] When the support rod 12 continues to be inserted into the installation channel 10 at the second preset distance ( Figure 14 (In the middle right figure), the second step 32 is used to guide the hook 41 to disengage from the step structure 3.
[0187] When the support rod 12 is inserted into the mounting channel 10 by a second preset distance, the second step portion 32 can guide the hook 41 to disengage from the stepped structure 3, so that the casing 21 can be pulled away from the mounting rod 11, thereby achieving the purpose of dismounting the air conditioner indoor unit 2 from the air conditioner mounting member 1.
[0188] In some embodiments, referring to Figure 14 , the second step portion 32 comprises a second ramp surface 321 connected to one end of the first blocking surface 312 close to the first channel wall 101a, the second ramp surface 321 being inclined away from the first channel wall 101a (Z-axis positive direction in Figure 14 ). Figure 14
[0189] By arranging the second ramp surface 321, when the hook 41 continues to move along the insertion direction of the support rod 12, the second ramp surface 321 can continue to guide the hook 41 to climb.
[0190] In some embodiments, referring to Figure 14 , the second step portion 32 further comprises a second blocking surface 322 connected to one end of the second ramp surface 321 away from the mounting rod 11, the second blocking surface 322 extending towards the first channel wall 101a, and the hook 41 overlapping the second blocking surface 322 in the direction opposite to the insertion direction of the support rod 12 (Y-axis negative direction in Figure 14 ).
[0191] By arranging the second blocking surface 322 and overlapping the hook 41 with the second blocking surface 322 in the direction opposite to the insertion direction of the support rod 12 (Y-axis negative direction in Figure 14 ), the hook 41 can be blocked on the side of the second blocking surface 322 away from the mounting rod 11, thereby avoiding the situation that when the casing 21 is pulled away from the mounting rod 11, the hook 41 comes to the first blocking surface 312, resulting in the inability to pull the casing 21, and thereby the inability to dismount the air conditioner indoor unit 2 from the air conditioner mounting member 1.
[0192] In some embodiments, referring to Figure 14 and Figure 13 , the second step portion 32 further comprises a guide surface 323 connected to one end of the second blocking surface 322 close to the first channel wall 101a, and the guide surface 323 and the second blocking surface 322 are used together to guide the hook 41 along the guide track S to the first ramp surface 311 when the casing 21 is pulled away from the mounting rod 11.
[0193] When the shell 21 is pulled in the direction away from the mounting rod 11, the guide surface 323 and the second blocking surface 322 can jointly guide the catch 41 to the first ramp surface 311, so when the catch 41 reaches the first ramp surface 311 when the shell 21 is pulled in the direction away from the mounting rod 11, the catch 41 will bypass the second blocking surface 322 and the first blocking surface 312 and directly reach the first ramp surface 311, so as not to be blocked by the second blocking surface 322 and the first blocking surface 312, thereby ensuring that the air conditioner indoor unit 2 can be detached from the air conditioner mounting 1.
[0194] In order to enable the second blocking surface 322 to play a role in guiding the catch 41 to the first ramp surface 311 along the guide track S when the shell 21 is pulled in the direction away from the mounting rod 11, in some embodiments, the second blocking surface 322 is perpendicular to the first channel wall 101a and forms an acute angle with the pulling direction of the shell 21, that is, the second blocking surface 322 is inclined, so that during the process of pulling the shell 21 in the direction away from the mounting rod 11, the second blocking surface 322 can jointly guide the catch 41 to the first ramp surface 311 along the guide track S with the guide surface 323.
[0195] In order to enable the second blocking surface 322 to play a role in guiding the catch 41 to the first ramp surface 311 along the guide track S when the shell 21 is pulled in the direction away from the mounting rod 11, in some embodiments, the second blocking surface 322 is perpendicular to the first channel wall 101a and forms an acute angle with the pulling direction of the shell 21, that is, the second blocking surface 322 is inclined, so that during the process of pulling the shell 21 in the direction away from the mounting rod 11, the second blocking surface 322 can jointly guide the catch 41 to the first ramp surface 311 along the guide track S with the guide surface 323.
[0196] In order to enable the second blocking surface 322 to play a role in guiding the catch 41 to the first ramp surface 311 along the guide track S when the shell 21 is pulled in the direction away from the mounting rod 11, in some embodiments, the second blocking surface 322 is perpendicular to the first channel wall 101a and forms an acute angle with the pulling direction of the shell 21, that is, the second blocking surface 322 is inclined, so that during the process of pulling the shell 21 in the direction away from the mounting rod 11, the second blocking surface 322 can jointly guide the catch 41 to the first ramp surface 311 along the guide track S with the guide surface 323.
[0197] In order to avoid the catch 41 from deviating from the guide track S and falling into the catch slot 20 formed by the second ramp surface 321 and the first blocking surface 312 during the movement of the catch 41 along the guide track S on the guide surface 323, see Figure 14 and Figure 13 , in some embodiments, a retaining wall 5 is arranged between the catch slot 20 and the guide surface 323.
[0198] By arranging the retaining wall 5, the catch 41 can be prevented from falling into the catch slot 20, thereby avoiding the situation that the shell 21 cannot be pulled in the direction away from the mounting rod 11.
[0199] In some embodiments, see Figure 14 , Figure 15 is Figure 15Fig. 6 is a schematic view of the structure of the air conditioner mounting member 1 in another perspective view, and the catch structure 4 further comprises a pivot shaft 42 and a connecting rod 43, the pivot shaft 42 is arranged on the support rod 12 and extends in the direction perpendicular to the first channel wall 101a (i.e. the Z-axis direction), the connecting rod 43 is rotatably arranged on the pivot shaft 42, and the catch 41 is connected to the connecting rod 43, and the catch 41 is configured to move in the direction away from the first channel wall 101a when subjected to the abutting force of the first ramp surface 311 and the second ramp surface 321, so that the catch 41 can reach the first blocking surface 312 or the second blocking surface 322. Figure 5 Fig. 7 is a schematic view of the structure of the air conditioner mounting member 1 in another perspective view, and the catch structure 4 further comprises a pivot shaft 42 and a connecting rod 43, the pivot shaft 42 is arranged on the support rod 12 and extends in the direction perpendicular to the first channel wall 101a (i.e. the Z-axis direction), the connecting rod 43 is rotatably arranged on the pivot shaft 42, and the catch 41 is connected to the connecting rod 43, and the catch 41 is configured to move in the direction away from the first channel wall 101a when subjected to the abutting force of the first ramp surface 311 and the second ramp surface 321, so that the catch 41 can reach the first blocking surface 312 or the second blocking surface 322.
[0200] When the casing 21 is pulled in the direction away from the mounting rod 11, the catch 41 can rotate around the pivot shaft 42, so that the guide surface 323 and the second blocking surface 322 jointly guide the catch 41 located on the side of the second blocking surface 322 away from the mounting rod 11 to the first ramp surface 311.
[0201] Since the catch 41 is configured to move in the direction away from the first channel wall 101a when subjected to the abutting force of the first ramp surface 311 and the second ramp surface 321, it can be ensured that the catch 41 can climb to the top of the first ramp surface 311 and the second ramp surface 321.
[0202] In one possible implementation, the connecting rod 43 can be elastically deformed, so that when the catch 41 is subjected to the abutting force of the first ramp surface 311 and the second ramp surface 321, it can move upward, and when the catch 41 reaches the second blocking surface 322 or the first blocking surface 312, the connecting rod 43 can drive the catch 41 to move downward in the process of restoring its original shape, thereby achieving the purpose of blocking the catch 41 at the end of the second blocking surface 322 or the first blocking surface 312 away from the mounting rod 11.
[0203] By rotatably arranging the connecting rod 43 on the pivot shaft 42, when the casing 21 is pulled in the direction away from the mounting rod 11, the catch 41 can rotate around the pivot shaft 42, so that the catch 41 can be rotated to the guide track S of the guide surface 323, thereby achieving the purpose of guiding the catch 41 located on the side of the second blocking surface 322 away from the mounting rod 11 to the first ramp surface 311.
[0204] In some embodiments, referring to Figure 15 , the mounting channel 10 is arranged closer to the top side of the casing 21 than to the bottom side of the casing 21.
[0205] By arranging the mounting channel 10 closer to the top side of the shell 21 than to the bottom side of the shell 21, the force receiving point of the shell 21 can be arranged closer to the top side of the shell 21, so that on the one hand, the force receiving point of the shell 21 can be more reasonable, and thus the air conditioner indoor unit 2 can be more stably hung on the air conditioner mounting piece 1, and on the other hand, it is also possible that the mounting rod 11 is blocked by the air conditioner indoor unit 2, so that the air conditioner assembly 100 can be more tidy in appearance.
[0206] Of course, in other embodiments, the mounting channel 10 can also be arranged closer to the bottom side of the shell 21 than to the top side of the shell 21, which is not limited in the present embodiment.
[0207] In some embodiments, referring to Figure 3 , the angle between the extension direction of the mounting rod 11 and the extension direction of the supporting rod 12 is a, 90°≤a≤95°.
[0208] By arranging 90°≤a≤95°, when the mounting rod 11 is mounted on the vertical wall Q, the supporting rod 12 can be slightly tilted upward. In this way, when the supporting rod 12 is inserted into the mounting channel 10, the air conditioner indoor unit 2 has a tendency to slide towards the vertical wall Q under the action of gravity, so that the situation that the air conditioner indoor unit 2 slides away from the vertical wall Q and causes the supporting rod 12 to abnormally come out of the mounting channel 10 can be avoided.
[0209] Specifically, a can be 90°, 91° or 95°, etc., as long as 90°≤a≤95°, which is not limited in the present embodiment.
[0210] When the angle between the extension direction of the mounting rod 11 and the extension direction of the supporting rod 12 is a, 90°≤a≤95°, the air conditioner mounting piece 1 formed by the supporting rod 12 and the mounting rod 11 will be approximately L-shaped. Since the L-shaped structure is simple, the manufacturing cost of the air conditioner mounting piece 1 can be reduced.
[0211] Of course, the air conditioner mounting piece 1 can also be other shapes, which is not limited in the present embodiment.
[0212] In some embodiments, referring to Figure 5 , one of the shell 21 and the mounting rod 11 is provided with a buckle 211, and the other is provided with a clamping hole 111, and when the supporting rod 12 moves a first predetermined distance in the mounting channel 10, the buckle 211 is located in the clamping hole 111.
[0213] By allowing the buckle 211 to be buckled in the card hole 111, the shell 21 can be connected to the mounting rod 11 in addition to being connected to the support rod 12, so that the air conditioner indoor unit 2 can be more stably hung on the air conditioner mounting piece 1.
[0214] In some embodiments, referring to Figure 2 , the number of air conditioner mounting pieces 1 can be multiple, and correspondingly, the number of mounting channels 10 can also be multiple, and the support rod 12 of each air conditioner mounting piece 1 is inserted into the corresponding mounting channel 10. In this way, the air conditioner indoor unit 2 can be more stably hung on the air conditioner mounting piece 1.
[0215] Specifically, the number of air conditioner mounting pieces 1 can be two as shown in Figure 3 , of course, the number of air conditioner mounting pieces 1 can also be three or four, etc., which is not limited by the present embodiment.
[0216] In some embodiments, referring to Figure 3 and Figure 4 , Figure 16 is Figure 16 structure diagram of the air conditioner assembly 100 in another view, the shell 21 is provided with: an air outlet 212 and an air inlet 213, the air outlet 212 is located at the bottom side of the shell 21, and the air inlet 213 is located at the front side of the shell 21.
[0217] Since the air outlet 212 is located at the bottom side of the shell 21, and the air inlet 213 is located at the front side of the shell 21, when the air conditioner indoor unit 2 is installed on the ceiling in the room, so that the top side of the air conditioner indoor unit 2 faces the roof D, and the rear side of the air conditioner indoor unit 2 faces the vertical wall Q, the bottom side and the front side of the shell 21 will both face the indoor space, thereby allowing the air outlet 212 and the air inlet 213 to be able to communicate with the indoor space, so as to ensure the normal operation of the air conditioner indoor unit 2.
[0218] It can be seen that by arranging the air outlet 212 at the bottom side of the shell 21 and the air inlet 213 at the front side of the shell 21, when the air conditioner indoor unit 2 is installed on the ceiling in the room, the air outlet 212 and the air inlet 213 can both face the indoor space without being blocked by the roof D or the vertical wall Q, thereby providing structural guarantee for the ceiling installation of the air conditioner indoor unit 2.
[0219] In addition, by arranging the air outlet 212 at the bottom side of the shell 21, when the air conditioner indoor unit 2 is located above the ceiling (aluminum buckle plate, etc.), the air outlet 212 can be located directly above the ceiling, so that the distance between the air outlet 212 and the ceiling is short and they can be arranged along the vertical direction, which facilitates the air outlet 212 to blow air to the room through the ceiling.
[0220] It should be noted that the air outlet 212 is located at the bottom side of the casing 21, and the air inlet 213 is located at the front side of the casing 21, which is only one possible arrangement in the embodiment.
[0221] In other possible embodiments, the air outlet 212 can also be located at the front side of the casing 21, and the air inlet 213 can also be located at the bottom side of the casing 21, which is not limited in the embodiment.
[0222] When the air outlet 212 is located at the front side of the casing 21, and the air inlet 213 is located at the bottom side of the casing 21, on the premise that the air conditioner indoor unit 2 is located above the ceiling (aluminum panel, etc.), the air inlet 213 can be located directly above the ceiling, and the distance between the air inlet 213 and the ceiling is short, and they can be arranged along the vertical direction, so that the air inlet 213 can suck indoor air through the ceiling.
[0223] The shape of the casing 21 can be a cuboid or any other possible shape, which is not limited in the embodiment.
[0224] It should be noted that the bottom side of the casing 21 refers to the side of the casing 21 opposite to the roof D when the air conditioner indoor unit 2 is installed on the ceiling.
[0225] Referring to Figure 1 Figure 1 The application also provides an air conditioner indoor unit 2, wherein the structure of the air conditioner indoor unit 2 can be the same as that of any one of the air conditioner indoor units 2 in the above embodiments, and can bring the same or similar beneficial effects, which can be referred to the description in the above embodiments, and will not be repeated here.
[0226] Finally, it should be noted that: the above embodiments are only used to illustrate the technical solutions of the application, but not to limit them; although the application has been described in detail with reference to the above embodiments, those skilled in the art should understand that: they can still modify the technical solutions recorded in the above embodiments, or make equivalent replacement for part or all of the technical features; and these modifications or replacements do not make the essence of the corresponding technical solutions deviate from the scope of the technical solutions of the embodiments of the application.
Claims
1. An air conditioning assembly (100) characterized by, Comprising: An air conditioner mounting piece (1) comprising: A mounting rod (11) for mounting on a vertical wall (Q); and A support rod (12) connected to the mounting rod (11), the extension direction of the support rod (12) and the extension direction of the mounting rod (11) have an included angle; The air conditioner assembly (100) further comprises: An air conditioner indoor unit (2) comprising: A cabinet (21), the cabinet (21) is provided with a mounting channel (10) extending from the rear side of the cabinet (21) to the front side of the cabinet (21); One of the mounting channel (10) and the support rod (12) is provided with a step structure (3), and the other is provided with a hook structure (4); When the support rod (12) is inserted into the mounting channel (10) by a first preset distance by pushing the cabinet (21) in the direction close to the mounting rod (11), the hook structure (4) is connected to the step structure (3), so as to prevent the cabinet (21) from moving away from the mounting rod (11), so that the cabinet (21) is hung on the support rod (12); When the support rod (12) continues to insert into the mounting channel (10) by a second preset distance by continuing to push the cabinet (21) in the direction close to the mounting rod (11), the hook structure (4) is disconnected from the step structure (3), so that the cabinet (21) can be separated from the support rod (12).
2. An air conditioning assembly (100) characterized by, Comprising: An air conditioner mounting piece (1) comprising: A mounting rod (11) for mounting on a vertical wall (Q); and A support rod (12) connected to the mounting rod (11), the extension direction of the support rod (12) and the extension direction of the mounting rod (11) have an included angle; The air conditioner assembly (100) further comprises: An air conditioner indoor unit (2) comprising: A cabinet (21), the cabinet (21) is provided with a mounting channel (10) extending from the rear side of the cabinet (21) to the front side of the cabinet (21); In the vertical direction, the support rod (12) has an upward support surface (121), and the cabinet (21) is supported on the support surface (121) through the channel wall (101) of the mounting channel (10); One of the mounting channel (10) and the support rod (12) is provided with a step structure (3), and the other is provided with a hook structure (4); When the support rod (12) is inserted into the mounting channel (10) by a first preset distance by pushing the cabinet (21) in the direction close to the mounting rod (11), the hook structure (4) is connected to the step structure (3), so as to prevent the cabinet (21) from moving away from the mounting rod (11); When the support rod (12) continues to insert into the mounting channel (10) by a second preset distance by continuing to push the cabinet (21) in the direction close to the mounting rod (11), the hook structure (4) is disconnected from the step structure (3).
3. The air conditioning assembly (100) according to claim 1 or 2, characterized in that The stepped structure (3) is arranged in the mounting channel (10), and the clamping hook structure (4) is arranged on the support rod (12).
4. The air conditioning assembly (100) of claim 3, wherein, The mounting channel (10) is provided with: A guide member (102), the guide member (102) and the stepped structure (3) are arranged in sequence along the insertion direction of the support rod (12), and the guide member (102) encloses a guide groove (1021), and the guide groove (1021) extends to the stepped structure (3) along the insertion direction of the support rod (12); Along the insertion direction of the support rod (12), the size of the guide groove (1021) gradually decreases to guide the clamping hook structure (4) to the stepped structure (3).
5. The air conditioning assembly (100) of claim 3, wherein, The stepped structure (3) comprises: A first step portion (31) is arranged on a first channel wall (101a) of the mounting channel (10), and when the support rod (12) is inserted into the mounting channel (10) by the first preset distance, the first step portion (31) is used to block the clamping hook (41) of the clamping hook structure (4) on the side of the first step portion (31) away from the mounting rod (11).
6. The air conditioning assembly (100) of claim 5, wherein, The first step portion (31) comprises: A first ramp surface (311) is inclined away from the first channel wall (101a) along the insertion direction of the support rod (12), and the first ramp surface (311) comprises a bottom end close to the mounting rod (11) and a top end away from the mounting rod (11), and the bottom end is connected to the first channel wall (101a); A first blocking surface (312) is connected to the top end of the first ramp surface (311), and when the support rod (12) is inserted into the mounting channel (10) by the first preset distance, the clamping hook (41) passes through the first ramp surface (311) to reach the first blocking surface (312), and the clamping hook (41) overlaps with the first blocking surface (312) in the direction opposite to the insertion direction of the support rod (12).
7. The air conditioning assembly (100) of claim 6, wherein, The first blocking surface (312) is perpendicular to the insertion direction of the support rod (12) and extends along the direction close to the first channel wall (101a).
8. The air conditioning assembly (100) of claim 7, wherein, The stepped structure (3) further comprises: A second step portion (32) is arranged in sequence along the insertion direction of the support rod (12) with the first step portion (31); When the support rod (12) is continuously inserted into the mounting channel (10) by the second preset distance, the second step portion (32) is used to guide the clamping hook (41) to disengage from the stepped structure (3).
9. The air conditioning assembly (100) of claim 8, wherein, The second step portion (32) comprises: A second ramp surface (321) is connected to one end of the first blocking surface (312) near the first passage wall (101a) at one end of the mounting rod (11), and the second ramp surface (321) is inclined away from the first passage wall (101a) in the insertion direction of the support rod (12); A second blocking surface (322) is connected to one end of the second ramp surface (321) away from the mounting rod (11), and the second blocking surface (322) extends in the direction close to the first passage wall (101a) and overlaps with the second blocking surface (322) in the direction opposite to the insertion direction of the support rod (12); A guide surface (323) is connected to one end of the second blocking surface (322) near the first passage wall (101a), and the guide surface (323) and the second blocking surface (322) are used together to guide the hook (41) to the first ramp surface (311) along a guide track (S) when pulling the shell (21) in the direction away from the mounting rod (11).
10. The air conditioning assembly (100) of claim 9, wherein, The distance between the guide surface (323) and the first passage wall (101a) gradually decreases along the guide track (S) of the guide surface (323).
11. The air conditioning assembly (100) of claim 9, wherein, The second ramp surface (321) and the first blocking surface (312) enclose a clamping groove (20), and a retaining wall (5) is arranged between the clamping groove (20) and the guide surface (323).
12. The air conditioning assembly (100) of claim 9, wherein, The hook structure (4) further comprises: A rotating shaft (42) is arranged on the support rod (12) and extends in a direction perpendicular to the first passage wall (101a); A connecting rod (43) is rotatably arranged on the rotating shaft (42) around the rotating shaft (42), and the hook (41) is connected to the connecting rod (43), and the hook (41) is configured to move in the direction away from the first passage wall (101a) when being abutted by the first ramp surface (311) and the second ramp surface (321), so that the hook (41) can reach the first blocking surface (312) or the second blocking surface (322); When pulling the shell (21) in the direction away from the mounting rod (11), the hook (41) can rotate around the rotating shaft (42), so that the guide surface (323) and the second blocking surface (322) together guide the hook (41) on the side of the second blocking surface (322) away from the mounting rod (11) to the first ramp surface (311).
13. The air conditioning assembly (100) according to any one of claims 1 or 2 or 4-12, characterized in that, The mounting passage (10) is arranged closer to the top side of the shell (21) than to the bottom side of the shell (21).
14. The air conditioning assembly (100) according to any one of claims 1 or 2 or 4-12, characterized in that, The angle between the extension direction of the mounting rod (11) and the extension direction of the support rod (12) is a, and 90°≤a≤95°.
15. The air conditioning assembly (100) according to any one of claims 1 or 2 or 4-12, characterized in that, One of the machine shell (21) and the mounting rod (11) is provided with a buckle (211), and the other is provided with a clamping hole (111), when the supporting rod (12) moves the first preset distance in the mounting channel (10), the buckle (211) is located in the clamping hole (111).
16. The air conditioning assembly (100) according to any one of claims 1 or 2 or 4-12, characterized in that, The machine shell (21) is provided with: an air outlet (212) located on the bottom side of the machine shell (21); and an air inlet (213) located on the front side of the machine shell (21).
17. The air conditioning assembly (100) according to any one of claims 1 or 2 or 4-12, characterized in that, The machine shell (21) is provided with: an air outlet (212) located on the front side of the machine shell (21); and an air inlet (213) located on the bottom side of the machine shell (21).
18. An air conditioner indoor unit (2) characterized by comprising: The air conditioner indoor unit (2) is the air conditioner indoor unit (2) of any one of claims 1-17.