Air conditioner indoor unit and air conditioner assembly

By combining the installation channel and support rod on the indoor unit of the air conditioner, the problem of cumbersome ceiling-mounted installation of the indoor unit is solved, enabling quick and convenient installation and disassembly, and improving the installation experience.

CN122107454APending Publication Date: 2026-05-29HISENSE (SHANDONG) AIR CONDITIONING CO LTD

Patent Information

Authority / Receiving Office
CN · China
Patent Type
Applications(China)
Current Assignee / Owner
HISENSE (SHANDONG) AIR CONDITIONING CO LTD
Filing Date
2024-11-29
Publication Date
2026-05-29

AI Technical Summary

Technical Problem

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.

Method used

The system uses an air conditioning assembly, including a mounting rod and a support rod. By setting an installation channel on the housing, the support rod can be moved within the installation channel to achieve stable mounting and dismounting of the indoor air conditioning unit, avoiding the need for screw tightening.

Benefits of technology

It enables quick and convenient installation and disassembly of air conditioner indoor units, improving the installation experience, simplifying the operation process, and enhancing the user-friendly design.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN122107454A_ABST
    Figure CN122107454A_ABST
Patent Text Reader

Abstract

The application relates to the technical field of household electrical appliances, in particular to an air conditioner indoor unit and an air conditioner assembly. An air conditioner assembly comprises: an air conditioner mounting piece, which comprises: a mounting rod used for being mounted on a vertical wall surface; and a supporting rod connected to the mounting rod, the supporting rod having an included angle between an extension direction of the supporting rod and an extension direction of the mounting rod; the air conditioner assembly further comprises: an air conditioner indoor unit, which comprises: a casing, the casing being provided with a mounting channel extending from a rear side of the casing to a front side of the casing; when the casing is pushed in a direction close to the mounting rod and the supporting rod moves a first preset distance in the mounting channel, the supporting rod can prevent the casing from moving in a direction away from the mounting rod, so that the casing is hung on the supporting rod. The air conditioner assembly provided by the application has a good installation experience of the air conditioner indoor unit and is more humanized.
Need to check novelty before this filing date? Find Prior Art

Description

Technical Field

[0001] This application relates to the field of home appliance technology, and in particular to an air conditioner indoor unit and air conditioner components. Background Technology

[0002] An air conditioner indoor unit is a household appliance that works in conjunction with an air conditioner outdoor unit to heat or cool indoor spaces. In recent years, it has become increasingly common in homes.

[0003] Besides the well-known freestanding and wall-mounted installations, ceiling-mounted installations, which are more suitable for small spaces, have also been developed in recent years for air conditioner indoor units. However, workers have found that this method of installation is cumbersome and time-consuming, resulting in a poor and less user-friendly installation experience. Summary of the Invention

[0004] This application discloses an air conditioner indoor unit and air conditioner components, which can make the installation experience of the air conditioner indoor unit better and more user-friendly.

[0005] To achieve the above objectives, in a first aspect, this application discloses an air conditioning component, comprising:

[0006] Air conditioner installation parts, including:

[0007] Mounting rods are used for mounting on vertical walls; and,

[0008] A support rod connected to the mounting rod, wherein the extension direction of the support rod and the extension direction of the mounting rod form an angle;

[0009] The air conditioning component also includes:

[0010] Air conditioner indoor unit, including:

[0011] The housing has an installation channel extending from the rear side of the housing to the front side of the housing;

[0012] When the housing is pushed in a direction close to the mounting rod, and the support rod moves a first preset distance in the mounting channel, the support rod can prevent the housing from moving in a direction away from the mounting rod, so that the housing is hung on the support rod.

[0013] As the housing continues to be pushed in a direction close to the mounting rod, and the support rod continues to move a second preset distance within the mounting channel, the support rod allows the housing to move in a direction away from the mounting rod, so that the housing can detach from the support rod.

[0014] When it is necessary to mount the air conditioner casing onto the support rod, thereby mounting the indoor unit onto the air conditioner mounting hardware and achieving ceiling-mounted installation, first align the opening of the mounting channel near the rear of the casing with the support rod. Then, push the casing along the direction close to the mounting rod, causing the support rod to move a first preset distance within the mounting channel. When the support rod has moved the first preset distance within the mounting channel, the casing will be unable to move away from the mounting rod due to the resistance of the support rod. This allows for stable mounting of the indoor unit onto the air conditioner mounting hardware, thus achieving the goal of ceiling-mounted installation of the indoor unit.

[0015] With the indoor unit of the air conditioner stably mounted on the air conditioner mounting bracket, when it is necessary to remove the indoor unit from the air conditioner mounting bracket, first push the casing along the direction close to the mounting rod to move it a second preset distance, and then pull the casing away from the mounting rod to detach the casing from the support rod, thereby achieving the purpose of removing the indoor unit of the air conditioner from the air conditioner mounting bracket.

[0016] As can be seen, with the support rod inserted into the installation channel, the air conditioner indoor unit can be mounted on or removed from the air conditioner mounting bracket simply by pushing or pulling the housing in the direction close to or away from the mounting rod. The entire installation and removal process is very convenient and quick, without the need to tighten or loosen screws, making the installation experience of the air conditioner indoor unit better and more user-friendly.

[0017] Optionally, in the vertical direction, the support rod has an upward-facing support surface, and the housing is supported on the support surface by the channel wall of the mounting channel;

[0018] When the housing is pushed in a direction close to the mounting rod, causing the support rod to move a first preset distance within the mounting channel, the movement of the housing in a direction away from the mounting rod is prevented.

[0019] As the housing continues to be pushed in the direction close to the mounting rod, and the support rod continues to move a second preset distance within the mounting channel, movement of the housing in the direction away from the mounting rod is permitted.

[0020] When it is necessary to mount the air conditioner casing onto the support rod, thereby mounting the indoor unit onto the air conditioner mounting hardware and achieving ceiling-mounted installation, first align the opening of the mounting channel near the rear of the casing with the support rod. Then, push the casing along the direction close to the mounting rod, causing the support rod to move a first preset distance within the mounting channel. When the support rod moves the first preset distance within the mounting channel, the movement of the casing away from the mounting rod is prevented. Therefore, the indoor unit can be stably mounted onto the air conditioner mounting hardware, thus achieving the goal of ceiling-mounted installation.

[0021] With the indoor unit of the air conditioner stably mounted on the air conditioner mounting bracket, when it is necessary to remove the indoor unit from the mounting bracket, firstly, the casing can be pushed along the direction close to the mounting rod to continue moving a second preset distance. Then, since the support rod is allowed to move along the direction away from the mounting rod when it continues to move a second preset distance within the installation channel, the casing can be pulled along the direction away from the mounting rod to detach the casing from the support rod, thereby achieving the purpose of removing the indoor unit of the air conditioner from the air conditioner mounting bracket.

[0022] As you can see, simply push or pull the housing in the direction close to or away from the mounting rod to mount or remove the indoor unit of the air conditioner from the mounting bracket. The entire installation and removal process is very convenient and quick, without the need to tighten or loosen screws, making the installation experience of the indoor unit of the air conditioner better and more user-friendly.

[0023] In addition, since the casing is supported on the support surface through the channel wall, and the contact between the channel wall and the support surface is a surface contact with a large contact area, the casing can be hung more stably on the support rod, which in turn allows the indoor unit of the air conditioner to be hung more stably on the air conditioner mounting hardware.

[0024] Optionally, the support rod includes:

[0025] A rod body connected to the mounting rod, wherein the extension direction of the rod body and the extension direction of the mounting rod form the angle described above;

[0026] A locking mechanism is disposed on the rod body;

[0027] When the rod body moves the first preset distance within the mounting channel, the locking mechanism prevents the housing from moving away from the mounting rod and allows the housing to move towards the mounting rod.

[0028] When the rod body continues to move the second preset distance within the mounting channel, the locking mechanism allows the housing to move away from the mounting rod and prevents the housing from moving towards the mounting rod.

[0029] Since the locking mechanism is located on the rod body, when the rod body moves a first preset distance within the installation channel, the locking mechanism can synchronously follow the rod body and move the first preset distance within the installation channel.

[0030] When the locking mechanism moves a first preset distance along the rod body within the installation channel, it can prevent the housing from moving away from the mounting rod and allow the housing to move closer to the mounting rod. This avoids the housing from detaching from the support rod due to movement away from the mounting rod, thus ensuring that the housing is stably mounted on the rod body. This achieves the purpose of stably mounting the indoor air conditioner unit to the air conditioner mounting bracket.

[0031] In addition, by setting a locking mechanism on the main body of the pole, the indoor unit of the air conditioner can be stably mounted on the air conditioner mounting bracket under the locking action of the locking mechanism and the supporting action of the main body of the pole. The method of implementation is also very simple.

[0032] Optionally, the locking mechanism includes:

[0033] A locking member is rotatably disposed on the rod body about a first pivot axis. A stop member is provided on the housing, and the stop member is located on the moving path of the locking member as it moves with the rod body.

[0034] When the locking member moves the first preset distance along with the rod body in the installation channel and passes the stop member, the locking member rotates around the first pivot to a locking posture, and the locking member overlaps with the stop member along the moving direction of the rod body.

[0035] As the locking member moves a first preset distance along the rod body within the installation channel and passes the stop member, the locking member can rotate around the first pivot to a locked position. At this time, the locking member overlaps with the stop member along the direction of movement of the rod body. Therefore, when the housing is pulled in the positive direction of the axis away from the mounting rod, the locking member will abut against the stop member and block the stop member, preventing the stop member from moving in the direction away from the mounting rod. Consequently, the housing cannot move in the direction away from the mounting rod, thus achieving the purpose of preventing the housing from moving in the direction away from the mounting rod.

[0036] As can be seen, the purpose of preventing the housing from moving away from the mounting rod can be achieved by making the locking element rotate around the first axis. The method is very simple, which can simplify the structure of the locking mechanism and reduce its cost.

[0037] Optionally, a stop hole is provided on the channel wall of the installation channel, and the hole wall of the stop hole near the installation rod forms the stop member.

[0038] When the hole wall near the mounting rod side of the stop hole serves as the aforementioned stop, the structure of the stop can be made very simple, which can reduce the manufacturing cost of the stop to a certain extent.

[0039] Optionally, the first rotating shaft extends horizontally, and the direction of extension of the first rotating shaft is perpendicular to the direction of movement of the rod body.

[0040] By making the first rotating shaft extend horizontally and perpendicular to the direction of movement of the rod body, the locking member can form an up-and-down rotation trajectory when it rotates around the first rotating shaft. This ensures that when the locking member abuts against and blocks the stop, the locking member will not or will rotate abnormally up and down due to the abutment force of the stop, thus avoiding the situation where the locking member fails to block the stop.

[0041] Optionally, the locking element includes:

[0042] A snap-fit ​​end, wherein the snap-fit ​​end is located on the side of the first rotating shaft near the mounting rod along the direction of movement of the rod body; and,

[0043] The abutting end is located on the side of the first rotating shaft away from the mounting rod;

[0044] The length of the side where the snap-fit ​​end is located is greater than the length of the side where the abutment end is located, so that when the snap-fit ​​end passes the stop, it rotates downward around the first rotating axis under the action of gravity, and drives the abutment end to rotate upward around the first rotating axis. The locking member is in the locking posture, and the snap-fit ​​end overlaps with the stop along the moving direction of the rod body.

[0045] By making the length of the side where the latching end is located greater than the length of the side where the abutting end is located, when the latching end passes the stop, the locking member can cleverly utilize its own weight distribution to automatically rotate around the first pivot, so that the locking member is in a locked posture, thereby achieving the purpose of blocking the stop. There is no need to design a special mechanism to drive the locking member to rotate, thus simplifying the structure of the locking mechanism and reducing its cost.

[0046] Optionally, a lifting member is provided in the installation channel. The lifting member is located on the moving path of the snap-fit ​​end and is located on the side of the stop member opposite to the installation rod along the moving direction of the rod body.

[0047] When the locking end continues to move the rod body within the installation channel a second preset distance past the lifting member, the lifting member is used to push the locking end to rotate upward around the first rotating axis and drive the abutting end to rotate downward around the first rotating axis. The locking member switches from the locking posture to the unlocking posture. The locking end and the abutting end do not overlap with the stop member along the moving direction of the rod body.

[0048] Because the lifting member is located on the moving path of the locking end and on the side of the stop member away from the mounting rod along the moving direction of the rod body, when the locking end continues to move a second preset distance along the mounting channel past the lifting member, the lifting member will push the locking end to rotate upward around the first rotating axis. When the locking end rotates upward around the first rotating axis, the locking member can switch from a locked posture to an unlocked posture. Neither the locking end nor the abutting end overlaps with the stop member along the moving direction of the rod body. In other words, neither the locking end nor the abutting end will block the stop member. This ensures that the housing can detach from the support rod when the housing is pulled in a direction away from the mounting rod.

[0049] Optionally, the lifting member is a protrusion that protrudes from the channel wall of the mounting channel.

[0050] Because the structure of the protrusion is simple, easy to process, and inexpensive, when the lifting component is a protrusion, the design difficulty of the lifting component can be simplified and the cost of the lifting component can be reduced.

[0051] Optionally, the locking mechanism further includes:

[0052] A retaining component for holding the locking member in the unlocked position.

[0053] By setting up a retaining component, the locking element can be kept in the unlocked position, thus preventing it from returning to the locked position under the influence of gravity.

[0054] Optionally, the retaining component includes:

[0055] A movable component, which is movably disposed on the rod body along the moving direction of the rod body and is located on the side of the locking component opposite to the mounting rod;

[0056] A retaining wall is provided in the installation channel, and the retaining wall is located on the side of the moving part away from the installation rod along the moving direction of the rod body;

[0057] When the locking member switches from the locking posture to the unlocking posture, the retaining wall pushes the moving member to move in a direction close to the locking member and abut against the abutting end, so that the locking member maintains the unlocking posture.

[0058] By setting up retaining walls and moving parts, the movement of the rod body within the installation channel can automatically keep the locking parts in an unlocked position. The rod body does not need to stop moving during the entire process, thus improving the disassembly efficiency when removing the indoor unit of the air conditioner from the air conditioner installation parts to a certain extent.

[0059] Optionally, the locking member is also movably disposed on the rod body along the moving direction of the rod body, and when the moving member moves in the direction close to the locking member, it can push the locking member to move in the direction close to the mounting rod;

[0060] The rod body is provided with a connecting member, which is located on the pushing path of the locking member being pushed by the moving member. The connecting member is used for the locking member to rest on it so that the locking member maintains the unlocked posture.

[0061] By placing the locking component on the connecting component, the situation where the locking component's locking end rotates downward around the first rotating axis under the action of gravity, causing the locking component to switch from the unlocked posture to the locked posture, can be better ensured that the locking component can maintain the unlocked posture.

[0062] Optionally, the mounting channel is positioned closer to the top side of the housing than to the bottom side of the housing.

[0063] By placing the installation channel closer to the top of the casing than the bottom, the stress point of the casing is closer to the top. This results in two advantages: firstly, a more reasonable stress distribution, allowing the indoor unit to be more stably mounted on the air conditioner mounting bracket; secondly, it makes it possible for the mounting rod to be concealed by the indoor unit, resulting in a cleaner appearance for the air conditioning components.

[0064] Optionally, the angle between the extension direction of the mounting rod and the extension direction of the support rod is α, where 90°≤α and α≤95°.

[0065] By ensuring 90°≤a and a≤95°, the support rod can be slightly tilted upwards when installed on a vertical wall. This allows the indoor unit to tend to slide closer to the vertical wall under gravity when the support rod is inserted into the installation channel, thus preventing the support rod from abnormally detaching from the installation channel due to the indoor unit sliding away from the wall.

[0066] Optionally, one of the housing and the mounting rod is provided with a buckle and the other is provided with a locking hole. When the support rod moves the first preset distance in the mounting channel, the buckle is located in the locking hole.

[0067] By having the clips engage in the mounting holes, the housing can be connected to both the support rod and the mounting rod, thus allowing the indoor unit of the air conditioner to be more stably mounted on the air conditioner mounting hardware.

[0068] Optionally, the housing is provided with an air outlet and an air inlet, the air outlet being located on the bottom side of the housing and the air inlet being located on the front side of the housing.

[0069] By placing the air outlet on the bottom side of the casing and the air inlet on the front side of the casing, the air outlet and air inlet can face the indoor space without being obstructed by the roof or vertical wall when the indoor unit is ceiling-mounted, thus providing structural protection for the ceiling-mounted installation of the indoor unit.

[0070] In addition, by placing the air outlet on the bottom side of the casing, when the indoor unit of the air conditioner is located above the ceiling (such as aluminum ceiling panels), the air outlet can be located directly above the ceiling, which makes the distance between the air outlet and the ceiling shorter and allows them to be arranged vertically. This makes it easier for the air outlet to blow air into the room through the ceiling.

[0071] Optionally, the housing is provided with an air outlet and an air inlet, the air outlet being located on the front side of the housing and the air inlet being located on the bottom side of the housing.

[0072] When the air outlet is located on the front side of the casing and the air inlet is located on the bottom side of the casing, and the indoor unit of the air conditioner is located above the ceiling (such as aluminum ceiling panels), the air inlet can be located directly above the ceiling. This results in a shorter distance between the air inlet and the ceiling, and the two can be arranged vertically. This makes it easier for the air inlet to draw indoor air through the ceiling.

[0073] Secondly, this application discloses an air conditioner indoor unit, wherein the air conditioner indoor unit is any one of the air conditioner indoor units described in the first aspect above.

[0074] Compared with the prior art, the beneficial effects of this application are as follows:

[0075] In this application, when it is necessary to hang the air conditioner casing on the support rod, so that the indoor unit of the air conditioner is mounted on the air conditioner mounting bracket, thereby achieving ceiling-mounted installation of the indoor unit, firstly, the opening of the mounting channel near the rear side of the casing is aligned with the support rod. Then, the casing can be pushed in the direction close to the mounting rod, causing the support rod to move a first preset distance within the mounting channel. When the support rod moves the first preset distance within the mounting channel, the casing will be unable to move away from the mounting rod due to the resistance of the support rod, thereby achieving the purpose of stably mounting the indoor unit of the air conditioner on the air conditioner mounting bracket, and thus achieving the purpose of ceiling-mounted installation of the indoor unit of the air conditioner.

[0076] With the indoor unit of the air conditioner stably mounted on the air conditioner mounting bracket, when it is necessary to remove the indoor unit from the air conditioner mounting bracket, first push the casing along the direction close to the mounting rod to move it a second preset distance, and then pull the casing away from the mounting rod to detach the casing from the support rod, thereby achieving the purpose of removing the indoor unit of the air conditioner from the air conditioner mounting bracket.

[0077] As can be seen, with the support rod inserted into the installation channel, the air conditioner indoor unit can be mounted on or removed from the air conditioner mounting bracket simply by pushing or pulling the housing in the direction close to or away from the mounting rod. The entire installation and removal process is very convenient and quick, without the need to tighten or loosen screws, making the installation experience of the air conditioner indoor unit better and more user-friendly. Attached Figure Description

[0078] 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.

[0079] Figure 1 This is a schematic diagram of the structure of an air conditioning component provided in an embodiment of this application;

[0080] Figure 2 yes Figure 1 A structural diagram of the air conditioning components with some parts omitted;

[0081] Figure 3 yes Figure 2 An exploded view of the air conditioning components in the diagram;

[0082] Figure 4 yes Figure 2 A structural diagram of the air conditioning components installed on a vertical wall;

[0083] Figure 5 yes Figure 3 A structural diagram of the air conditioner installation components;

[0084] Figure 6 yes Figure 2 A schematic diagram of the structure of the indoor unit of the air conditioner;

[0085] Figure 7 yes Figure 2 A schematic diagram of the air conditioning component after the support rod continues to move a second preset distance within the installation channel;

[0086] Figure 8 yes Figure 2A schematic diagram of the air conditioning component from a positive Y-axis perspective;

[0087] Figure 9 yes Figure 8 A cross-sectional view of the air conditioning unit at position AA;

[0088] Figure 10 yes Figure 5 Exploded view of the air conditioning installation components;

[0089] Figure 11 yes Figure 5 A structural schematic diagram of the air conditioner mounting components from another perspective (the locking component is in a locked position);

[0090] Figure 12 yes Figure 2 A schematic diagram of the air conditioning components from another perspective;

[0091] Figure 13 yes Figure 12 A magnified view of the air conditioning component at position B;

[0092] Figure 14 yes Figure 12 A schematic diagram of the structure of the indoor unit of the air conditioner;

[0093] Figure 15 for Figure 11 A comparison of the air conditioner mounting components in the CC position, with the locking component in the locked and unlocked positions, from a cross-sectional view.

[0094] Figure 16 yes Figure 1 A schematic diagram of the air conditioning components from another perspective.

[0095] Explanation of main figure symbols

[0096] 1-Air conditioner mounting component; 11-Mounting rod; 111-Snap hole; 112-Mounting hole; 12-Support rod; 121-Support surface; 122-Rod body; 1221-Interlocking component; 123-Locking mechanism; 1231-Locking component; 1231a-Snap-fit ​​end; 1231b-Abutting end; 1232-Retaining assembly; 1232a-Moving component;

[0097] 2-Indoor unit of air conditioner; 21-Casing; 211-Stop; 212-Snap fastener; 213-Air outlet; 214-Air inlet;

[0098] 10-Installation channel; 101-Channel wall; 1011-Stop hole; 102-Pulley; 103-Blocking wall; 20-First rotating shaft;

[0099] 100 - Air conditioning components;

[0100] D - Roof; Q - Vertical wall. Detailed Implementation

[0101] 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.

[0102] In this application, the terms "upper," "lower," "left," "right," "front," "rear," "top," "bottom," "inner," "outer," "middle," "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.

[0103] 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.

[0104] 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.

[0105] 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.

[0106] Before explaining the technical solution of this application, the background technology of this application shall be explained first.

[0107] An air conditioner indoor unit is a household appliance that works in conjunction with an air conditioner outdoor unit to heat or cool indoor spaces. In recent years, it has become increasingly common in homes.

[0108] Besides the well-known freestanding and wall-mounted installations, ceiling-mounted installations, suitable for smaller spaces, have been developed in recent years for air conditioner indoor units. This method can be widely used in kitchens and other similar applications. However, workers have found this installation method cumbersome and time-consuming, requiring significant experience and resulting in a less than ideal and user-friendly installation experience. Therefore, this application provides an air conditioning component to address these issues.

[0109] The technical solution of this application will be described below with reference to specific embodiments and accompanying drawings.

[0110] Figure 1 This is a schematic diagram of the structure of an air conditioning component 100 provided in one embodiment of this application. Figure 2 yes Figure 1 The structural diagram of the air conditioning component 100 with some parts omitted is shown below. Figure 3 yes Figure 2 Exploded view of air conditioning component 100 in the middle. Figure 4 yes Figure 2 A schematic diagram of the structure of the air conditioning component 100 when it is installed on a vertical wall Q.

[0111] See Figure 1 and Figure 4 Air conditioning component 100 includes air conditioning mounting part 1, which includes mounting rod 11 for mounting on a vertical wall Q.

[0112] By setting the mounting rod 11, the air conditioner mounting component 1 can have a structure specifically designed for installation on a vertical wall Q, thereby making the functional division of each structure of the air conditioner mounting component 1 clearer.

[0113] When mounting rod 11 to a vertical wall Q, in one possible implementation, see [reference needed]. Figure 2 , Figure 3 and Figure 4 This allows the extension direction of the mounting rod 11 to be ( Figure 3 The Z-axis direction is parallel to the vertical wall surface Q.

[0114] 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 maximized. The vertical wall Q can provide a certain support force to the mounting rod 11 at various positions along the extension direction of the mounting rod 11, thereby making the mounting rod 11 more firmly and securely installed on the vertical wall Q.

[0115] There are several ways to install the mounting rod 11 on the vertical wall Q. In one possible implementation, see [link to relevant documentation]. Figure 5 , Figure 5 yes Figure 3 A schematic diagram of the structure of the air conditioner mounting component 1, along the extension direction of the mounting rod 11 ( Figure 5 Multiple mounting holes 112 can be provided in the Z-axis direction. Multiple threaded holes corresponding to the positions of the mounting holes 112 can be provided on the vertical wall Q. In this way, by making the screw pass through the mounting hole 112 and threaded into the threaded hole, the purpose of installing the mounting rod 11 on the vertical wall Q can be achieved.

[0116] Of course, the mounting rod 11 can also be installed on the vertical wall Q in other ways, and this embodiment does not limit this.

[0117] It should be noted that the number of the aforementioned mounting holes 112 can be as follows: Figure 5 The four shown are not limited to the number of mounting holes 112. Of course, the number of mounting holes 112 can also be two or five, etc. This embodiment does not limit this.

[0118] It should also be noted that the aforementioned mounting rod 11 can be as follows: Figure 5 The flat plate structure shown can be modified to include a round rod structure or other possible structures, but this embodiment does not limit the specific structure.

[0119] In some embodiments, see Figure 3 , Figure 4 and Figure 5 The air conditioner mounting component 1 also includes a support rod 12, which is connected to the mounting rod 11, and the extension direction of the support rod 12 is ( Figure 3 (in the Y-axis direction) and the extension direction of mounting rod 11 ( Figure 3 There is an angle between them (in the Z-axis direction).

[0120] Specifically, in the scenario where the mounting rod 11 is installed on a vertical wall Q, the support rod 12 can be positioned in a direction away from the vertical wall Q. Figure 5 Extending in the positive direction of the Y-axis.

[0121] Since there is an angle between the extension direction of the support rod 12 and the extension direction of the mounting rod 11, when the mounting rod 11 is installed 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 the subsequent mounting of the air conditioner indoor unit 2 through the support rod 12, so that the air conditioner indoor unit 2 can be ceiling-mounted indoors.

[0122] The structure of the support rod 12 can be the same as or similar to that of the mounting rod 11 described above. For details, please refer to the description of the mounting rod 11 in the above embodiments. The structure of the support rod 12 will not be described again in this embodiment.

[0123] In some embodiments, see Figure 2 , Figure 3 and Figure 6 , Figure 6 yes Figure 2 The schematic diagram of the structure of the air conditioner indoor unit 2 is shown. The air conditioning assembly 100 also includes the air conditioner indoor unit 2, which includes: a housing 21, and a section on the housing 21 extending from the rear side to the front side of the housing 21. Figure 3 Mounting channel 10 extending in the positive direction of the Y-axis.

[0124] Since the installation channel 10 extends from the rear to the front of the housing 21, when it is necessary to hang the indoor unit 2 of the air conditioner on the support rod 12 to achieve ceiling mounting, firstly, the opening of the installation channel 10 near the rear of the housing 21 can be aligned with the support rod 12, and then the housing 21 can be pushed along the direction Q near the vertical wall to insert the support rod 12 into the installation channel 10, thereby achieving the purpose of hanging the indoor unit 2 of the air conditioner on the support rod 12 through the installation channel 10, thus achieving the purpose of ceiling mounting the indoor unit 2 of the air conditioner indoors.

[0125] As can be seen, when it is necessary to ceiling-mount the indoor unit 2 of the air conditioner indoor unit, by opening an installation channel 10 on the housing 21 extending from the rear side of the housing 21 to the front side of the housing 21, the support rod 12 can be inserted into the installation channel 10 to achieve the purpose of ceiling-mounting the indoor unit 2 of the air conditioner indoor unit indoor unit. The whole installation process is very convenient and quick, without the need for screws, etc., making the installation experience of the indoor unit 2 of the air conditioner better and more user-friendly.

[0126] It should be noted that the rear side of the aforementioned housing 21 refers to the side facing the vertical wall Q, and the front side of the housing 21 refers to the side opposite to the rear side of the housing 21.

[0127] In some embodiments, see Figure 3 Along the direction close to mounting rod 11 ( Figure 3 When the housing 21 is pushed in the negative direction of the Y-axis, causing the support rod 12 to move a first preset distance within the mounting channel 10, the support rod 12 can prevent the housing 21 from moving away from the mounting rod 11 in a direction away from the mounting rod 11. Figure 3 The housing 21 is moved in the positive direction of the Y-axis so that it is mounted on the support rod 12.

[0128] 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 casing 21 can be aligned with the support rod 12. Then, due to the direction near the mounting rod 11 ( Figure 3 (In the negative direction of the Y-axis) pushes the housing 21, causing the support rod 12 to move a first preset distance within the mounting channel 10. Figure 2In the middle state, the support rod 12 can prevent the housing 21 from moving away from the mounting rod 11. Therefore, under the blocking effect of the support rod 12, if the housing 21 is pulled in the direction away from the mounting rod 11, it cannot be pulled. This can prevent the housing 21 from moving away from the mounting rod 11 and causing the housing 21 to detach from the support rod 12. This can ensure that the housing 21 is stably hung on the support rod 12, thereby achieving the purpose of stably hanging the indoor unit 2 of the air conditioner on the air conditioner mounting component 1.

[0129] In some embodiments, see Figure 2 and Figure 7 , Figure 7 yes Figure 2 A schematic diagram of the structure of the air conditioning component 100 after the support rod 12 has moved a second preset distance within the mounting channel 10. Continuing along the direction closer to the mounting rod 11 ( Figure 7 (In the negative Y-axis direction) pushes the housing 21, causing the support rod 12 to continue moving a second preset distance within the mounting channel 10. Figure 7 In the middle state), the support rod 12 allows the housing 21 to move in a direction away from the mounting rod 11 ( Figure 7 The housing 21 moves in the positive direction of the Y-axis so that it can detach from the support rod 12.

[0130] Since the housing 21 is pushed along the direction close to the mounting rod 11 and the support rod 12 continues to move a second preset distance within the installation channel 10, the support rod 12 allows the housing 21 to move away from the mounting rod 11. Therefore, when it is necessary to remove the indoor unit 2 from the air conditioner mounting component 1, the housing 21 can be pushed along the direction close to the mounting rod 11 to move a second preset distance, and then the housing 21 can be pulled away from the mounting rod 11. This will allow the housing 21 to detach from the support rod 12, thereby achieving the purpose of removing the indoor unit 2 from the air conditioner mounting component 1.

[0131] Therefore, when it is necessary to hang the housing 21 on the support rod 12 so that the indoor unit 2 of the air conditioner is hung on the air conditioner mounting part 1, thereby achieving the ceiling-mounted installation of the indoor unit 2, firstly, the opening of the mounting channel 10 near the rear side of the housing 21 should be aligned with the support rod 12. Then, the housing 21 can be pushed in the direction close to the mounting rod 11, so that the support rod 12 moves a first preset distance within the mounting channel 10. When the support rod 12 moves the first preset distance within the mounting channel 10, the housing 21 will be unable to move away from the mounting rod 11 due to the resistance of the support rod 12. This achieves the purpose of stably hanging the indoor unit 2 of the air conditioner on the air conditioner mounting part 1, thereby achieving the purpose of ceiling-mounted installation of the indoor unit 2.

[0132] With the indoor unit 2 of the air conditioner stably mounted on the air conditioner mounting bracket 1, when it is necessary to remove the indoor unit 2 of the air conditioner from the air conditioner mounting bracket 1, firstly, the housing 21 can be pushed along the direction close to the mounting rod 11 to continue moving a second preset distance, and then the housing 21 can be pulled away from the mounting rod 11, so that the housing 21 can be detached from the support rod 12, thereby achieving the purpose of removing the indoor unit 2 of the air conditioner from the air conditioner mounting bracket 1.

[0133] 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.

[0134] In some embodiments, see Figure 1 and Figure 2 The air conditioning component 100 includes an air conditioning mounting bracket 1 and an indoor air conditioning unit 2.

[0135] Among them, see Figure 2 , Figure 3 and Figure 4 The air conditioner mounting component 1 includes a mounting rod 11 and a support rod 12. The mounting rod 11 is used to install on a vertical wall Q. The support rod 12 is connected to the mounting rod 11. The extension direction of the support rod 12 and the extension direction of the mounting rod 11 form an angle.

[0136] See Figure 3 The indoor unit 2 of the air conditioner includes a housing 21, and an installation channel 10 extending from the rear side of the housing 21 to the front side of the housing 21 is provided on the housing 21.

[0137] See Figure 2 When the housing 21 is pushed in the direction close to the mounting rod 11, and the support rod 12 moves a first preset distance in the mounting channel 10, the support rod 12 can prevent the housing 21 from moving in the direction away from the mounting rod 11, so that the housing 21 is hung on the support rod 12.

[0138] See Figure 2 and Figure 7 As the housing 21 continues to be pushed in the direction close to the mounting rod 11, and the support rod 12 continues to move a second preset distance within the mounting channel 10, the support rod 12 allows the housing 21 to move in the direction away from the mounting rod 11, so that the housing 21 can be detached from the support rod 12.

[0139] In this embodiment, when it is necessary to hang the housing 21 on the support rod 12 so that the indoor unit 2 of the air conditioner is hung on the air conditioner mounting component 1, thereby achieving the ceiling-mounted installation of the indoor unit 2, firstly, the opening of the mounting channel 10 near the rear side of the housing 21 is aligned with the support rod 12. Then, the housing 21 can be pushed in the direction close to the mounting rod 11, so that the support rod 12 moves a first preset distance within the mounting channel 10. When the support rod 12 moves the first preset distance within the mounting channel 10, the housing 21 will be unable to move away from the mounting rod 11 due to the resistance of the support rod 12, thereby achieving the purpose of stably hanging the indoor unit 2 of the air conditioner on the air conditioner mounting component 1, and thus achieving the purpose of ceiling-mounted installation of the indoor unit 2 of the air conditioner.

[0140] With the indoor unit 2 of the air conditioner stably mounted on the air conditioner mounting bracket 1, when it is necessary to remove the indoor unit 2 of the air conditioner from the air conditioner mounting bracket 1, firstly, the housing 21 can be pushed along the direction close to the mounting rod 11 to continue moving a second preset distance, and then the housing 21 can be pulled away from the mounting rod 11, so that the housing 21 can be detached from the support rod 12, thereby achieving the purpose of removing the indoor unit 2 of the air conditioner from the air conditioner mounting bracket 1.

[0141] 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 to tighten or loosen screws, making the installation experience of the air conditioner indoor unit 2 better and more user-friendly.

[0142] In some embodiments, see Figure 5 , Figure 8 and Figure 9 , Figure 8 yes Figure 2 A schematic diagram of the structure of the air conditioning component 100 from the positive Y-axis view. Figure 9 yes Figure 8 The air conditioning component 100 is shown in a cross-sectional view at position AA. In the vertical direction, the support rod 12 has an upward support surface 121, and the housing 21 is supported on the support surface 121 by the channel wall 101 of the mounting channel 10.

[0143] Because the support surface 121 is set vertically upwards ( Figure 9(in the positive direction of the Z-axis), and since the housing 21 will be subjected to a vertically downward gravity, when the support rod 12 is inserted into the mounting channel 10, the channel wall 101 of the mounting channel 10 will tightly abut against the support surface 121. The support surface 121 will provide a vertically upward support force to the housing 21 through the channel wall 101, thereby enabling the indoor air conditioning unit 2 to be hung on the support rod 12 through the mounting channel 10.

[0144] As can be seen, by making the support rod 12 have an upward-facing support surface 121, and by the cooperation between the support surface 121 and the channel wall 101 of the installation channel 10, the purpose of hanging the indoor unit 2 of the air conditioner on the support rod 12 can be achieved. The structural design is very simple, and therefore, the structure of the air conditioning component 100 can be simplified to a certain extent.

[0145] In addition, 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, and thus the indoor unit 2 of the air conditioner can be more stably mounted on the air conditioner mounting component 1.

[0146] In some embodiments, see Figure 2 and Figure 3 When the housing 21 is pushed in the direction close to the mounting rod 11, and the support rod 12 moves a first preset distance within the mounting channel 10, the movement of the housing 21 in the direction away from the mounting rod 11 is stopped.

[0147] Since the movement of the housing 21 away from the mounting rod 11 is prevented when the support rod 12 moves a first preset distance within the installation channel 10, the situation where the housing 21 moves away from the mounting rod 11 and detaches from the support rod 12 can be avoided. This ensures that the housing 21 is stably mounted on the support rod 12, thereby achieving the purpose of stably mounting the indoor air conditioner unit 2 on the air conditioner mounting component 1.

[0148] In some embodiments, see Figure 2 and Figure 7 As the housing 21 continues to be pushed in the direction close to the mounting rod 11, and the support rod 12 continues to move a second preset distance within the mounting channel 10, movement of the housing 21 in the direction away from the mounting rod 11 is permitted.

[0149] Since the movement of the housing 21 away from the mounting rod 11 is permitted when the support rod 12 continues to move a second preset distance within the installation channel 10, when it is necessary to remove the indoor unit 2 of the air conditioner from the air conditioner mounting component 1, the housing 21 can be pushed to continue moving a second preset distance in the direction close to the mounting rod 11, and then the housing 21 can be pulled away from the mounting rod 11, so that the housing 21 can be detached from the support rod 12, thereby achieving the purpose of removing the indoor unit 2 of the air conditioner from the air conditioner mounting component 1.

[0150] In some embodiments, see Figure 5 , Figure 8 and Figure 9 In the vertical direction, the support rod 12 has an upward-facing support surface 121, and the housing 21 is supported on the support surface 121 by the channel wall 101 of the mounting channel 10. See also Figure 2 When the housing 21 is pushed along the direction close to the mounting rod 11, the support rod 12 moves a first preset distance within the mounting channel 10. Figure 2 In the middle state, the movement of the housing 21 in the direction away from the mounting rod 11 is prevented.

[0151] See Figure 7 Continue pushing the housing 21 in the direction close to the mounting rod 11, so that the support rod 12 continues to move a second preset distance within the mounting channel 10. Figure 7 In the middle state, movement of the housing 21 in a direction away from the mounting rod 11 is permitted.

[0152] In this embodiment, when it is necessary to hang the housing 21 on the support rod 12 so that the indoor unit 2 of the air conditioner is hung on the air conditioner mounting component 1, thereby achieving ceiling-mounted installation of the indoor unit 2, firstly, the opening of the mounting channel 10 near the rear side of the housing 21 is aligned with the support rod 12. Then, the housing 21 can be pushed in the direction close to the mounting rod 11, causing the support rod 12 to move a first preset distance within the mounting channel 10. When the support rod 12 moves the first preset distance within the mounting channel 10, the movement of the housing 21 in the direction away from the mounting rod 11 is prevented. Therefore, the purpose of stably hanging the indoor unit 2 of the air conditioner on the air conditioner mounting component 1 can be achieved, thereby achieving the purpose of ceiling-mounted installation of the indoor unit 2 of the air conditioner.

[0153] With the indoor unit 2 of the air conditioner stably mounted on the air conditioner mounting bracket 1, when it is necessary to remove the indoor unit 2 of the air conditioner from the air conditioner mounting bracket 1, firstly, the housing 21 can be pushed along the direction close to the mounting rod 11 to continue moving a second preset distance. Then, since the support rod 12 continues to move a second preset distance within the installation channel 10, the movement of the housing 21 in the direction away from the mounting rod 11 is allowed. Therefore, the housing 21 can be pulled in the direction away from the mounting rod 11, so that the housing 21 can be detached from the support rod 12, thereby achieving the purpose of removing the indoor unit 2 of the air conditioner from the air conditioner mounting bracket 1.

[0154] As can be seen, simply pushing or pulling the housing 21 in the direction close to or away from the mounting rod 11 is sufficient to mount the indoor unit 2 of the air conditioner onto or remove it from the air conditioner mounting bracket 1. The entire installation and removal process is very convenient and quick, without the need to tighten or loosen screws, making the installation experience of the indoor unit 2 better and more user-friendly.

[0155] In addition, 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, and thus the indoor unit 2 of the air conditioner can be more stably mounted on the air conditioner mounting component 1.

[0156] In some embodiments, see Figure 5 The support rod 12 includes a rod body 122, which is connected to the mounting rod 11. The extension direction of the rod body 122 and the extension direction of the mounting rod 11 form an angle.

[0157] By making an angle between the extension direction of the rod body 122 and the extension direction of the mounting rod 11, the rod body 122 can form a cantilever beam-like structure relative to the vertical wall Q, providing a structural guarantee for the subsequent mounting of the air conditioner indoor unit 2 through the rod body 122 and enabling the air conditioner indoor unit 2 to be ceiling-mounted.

[0158] In some embodiments, see Figure 2 , Figure 3 and Figure 10 , Figure 10 yes Figure 5 An exploded view of the air conditioner mounting component 1 shows that the support rod 12 also includes a locking mechanism 123. The locking mechanism 123 is disposed on the rod body 122. When the rod body 122 moves a first preset distance within the mounting channel 10 ( Figure 2 In the middle state), the locking mechanism 123 prevents the housing 21 from moving away from the mounting rod 11 in the direction ( Figure 3 The positive direction of the Y-axis allows the housing 21 to move along a direction close to the mounting rod 11. Figure 3It moves in the negative direction of the Y-axis.

[0159] Since the locking mechanism 123 is located on the rod body 122, when the rod body 122 moves a first preset distance within the mounting channel 10, the locking mechanism 123 can synchronously follow the rod body 122 in moving a first preset distance within the mounting channel 10.

[0160] When the locking mechanism 123 moves a first preset distance along the rod body 122 within the installation channel 10, the locking mechanism 123 can prevent the housing 21 from moving away from the mounting rod 11 and allow the housing 21 to move towards the mounting rod 11. In this way, the housing 21 can be prevented from moving away from the mounting rod 11, which would cause the housing 21 to detach from the support rod 12. This ensures that the housing 21 is stably mounted on the rod body 122, thereby achieving the purpose of stably mounting the indoor air conditioner unit 2 on the air conditioner mounting component 1.

[0161] In addition, by setting a locking mechanism 123 on the rod body 122, the indoor unit 2 of the air conditioner can be stably mounted on the air conditioner mounting part 1 under the locking action of the locking mechanism 123 and the supporting action of the rod body 122. The method of implementation is also very simple.

[0162] In some embodiments, see Figure 7 When the rod body 122 continues to move a second preset distance within the installation channel 10 ( Figure 7 In the middle state, the locking mechanism 123 allows the housing 21 to move away from the mounting rod 11 and prevents the housing 21 from moving towards the mounting rod 11.

[0163] When the rod body 122 continues to move a second preset distance within the installation channel 10, it can drive the locking mechanism 123 to continue moving a second preset distance within the installation channel 10. When the locking mechanism 123 continues to move a second preset distance within the installation channel 10, the locking mechanism 123 allows the housing 21 to move away from the mounting rod 11 and prevents the housing 21 from moving towards the mounting rod 11. In this way, on the one hand, it can avoid the situation where the housing 21 collides with the mounting rod 11 due to the continuous movement of the housing 21 towards the mounting rod 11. On the other hand, it can also ensure that the purpose of removing the indoor unit 2 of the air conditioner from the air conditioner mounting component 1 can be achieved.

[0164] In some embodiments, see Figure 11 , Figure 12 and Figure 13 , Figure 11 yes Figure 5 A schematic diagram of the structure of the air conditioner mounting component 1 from another perspective (locking component 1231 is in the locked position). Figure 12 yes Figure 2A schematic diagram of the structure of the air conditioning component 100 from another perspective. Figure 13 yes Figure 12 The enlarged view of the air conditioning component 100 at position B shows that the locking mechanism 123 includes a locking member 1231, which is rotatably mounted on the rod body 122 around the first rotating shaft 20. A stop member 211 is provided on the housing 21, and the stop member 211 is located on the movement path of the locking member 1231 as it moves with the rod body 122.

[0165] When the locking member 1231 follows the rod body 122 and moves a first preset distance within the installation channel 10, passing the stop member 211, the locking member 1231 rotates around the first pivot 20 to a locking position. Figure 13 In the middle state), the locking member 1231 moves along the direction of movement of the rod body 122 ( Figure 13 The part of the stop 211 overlaps with the part of the Y-axis direction.

[0166] As the locking member 1231 moves a first preset distance along the rod body 122 within the mounting channel 10 and passes the stop member 211, the locking member 1231 can rotate around the first pivot 20 to a locked position. At this time, the locking member 1231 moves along the direction of movement of the rod body 122. Figure 13 The middle Y-axis direction) overlaps with the stop 211, therefore, when along the direction away from the mounting rod 11 ( Figure 13 When the housing 21 is pulled in the positive direction of the Y-axis, the locking member 1231 will abut against the stop member 211 and block the stop member 211, so that the stop member 211 cannot move in the direction away from the mounting rod 11, thereby preventing the housing 21 from moving in the direction away from the mounting rod 11, thus achieving the purpose of preventing the housing 21 from moving in the direction away from the mounting rod 11.

[0167] It can be seen that by making the locking member 1231 rotate around the first rotating shaft 20, the purpose of preventing the housing 21 from moving away from the mounting rod 11 can be achieved. The method is very simple, which can simplify the structure of the locking mechanism 123 and reduce the cost of the locking mechanism 123.

[0168] In addition to preventing the housing 21 from moving away from the mounting rod 11 by rotating the locking member 1231 around the first pivot 20, other possible methods may also be used in other embodiments to prevent the housing 21 from moving away from the mounting rod 11. This embodiment does not limit this method.

[0169] It should be noted that the above-mentioned locking posture refers to the posture of the locking member 1231 when there is an overlap between the locking member 1231 and the stop member 211 along the moving direction of the rod body 122.

[0170] In some embodiments, see Figure 12 , 13 and Figure 14 , Figure 14 yes Figure 12 The schematic diagram of the structure of the indoor unit 2 of the air conditioner shows that a stop hole 1011 is provided on the channel wall 101 of the installation channel 10, and the hole wall of the stop hole 1011 near the installation rod 11 forms a stop member 211.

[0171] By providing a stop hole 1011 on the channel wall 101 of the mounting channel 10, when the locking member 1231 rotates around the first rotating shaft 20 to the locking posture, part of the structure of the locking member 1231 can be located in the stop hole 1011. In this way, the locking member 1231 moves along the direction of movement of the rod body 122. Figure 13 The wall of the stop hole 1011 near the mounting rod 11 will overlap with the wall of the stop hole 1011 in the Y-axis direction. In this way, the interaction between the hole wall and the locking member 1231 can prevent the housing 21 from moving away from the mounting rod 11.

[0172] When the hole wall of the stop hole 1011 near the mounting rod 11 serves as the stop 211, the structure of the stop 211 can be made very simple, and the manufacturing cost of the stop 211 can be reduced to a certain extent.

[0173] Of course, the stop 211 can also be made of other possible structures, and this embodiment does not limit this.

[0174] In some embodiments, see Figure 11 , Figure 12 and Figure 13 The first rotating shaft 20 extends horizontally, and the direction of extension of the first rotating shaft 20 is ( Figure 13 (in the X-axis direction) and the moving direction of the rod body 122 ( Figure 13 (Perpendicular to the Y-axis direction).

[0175] By making the first rotating shaft 20 extend horizontally and make the extension direction of the first rotating shaft 20 perpendicular to the movement direction of the rod body 122, the locking member 1231 can form an up-and-down rotation trajectory when it rotates around the first rotating shaft 20. This ensures that when the locking member 1231 abuts against the stop member 211 and blocks the stop member 211, the locking member 1231 will not or will rotate abnormally up and down due to the abutment force of the stop member 211, thereby avoiding the situation where the blocking effect of the locking member 1231 on the stop member 211 fails.

[0176] Of course, in other embodiments, the extension direction of the first rotating shaft 20 may be other possible directions, and this embodiment does not limit this.

[0177] In some embodiments, see Figure 10 and Figure 13 The locking member 1231 includes a snap-fit ​​end 1231a and an abutment end 1231b. The snap-fit ​​end 1231a is located on the side of the first rotating shaft 20 near the mounting rod 11 along the moving direction of the rod body 122. Figure 13 The left side of the first rotating shaft 20), and the abutment end 1231b is located on the side of the first rotating shaft 20 away from the mounting rod 11. Figure 13 (Right side of the first rotating shaft 20).

[0178] The length of the side where the locking end 1231a is located is greater than the length of the side where the abutting end 1231b is located, so that when the locking end 1231a passes the stop 211, it rotates downward around the first rotating shaft 20 under the action of gravity, and drives the abutting end 1231b to rotate upward around the first rotating shaft 20. The locking member 1231 is in a locked position, and the locking end 1231a overlaps with the stop 211 along the moving direction of the rod body 122.

[0179] Since the locking end 1231a is located on the side of the first rotating shaft 20 closer to the mounting rod 11 along the moving direction of the rod body 122, and the abutting end 1231b is located on the side of the first rotating shaft 20 away from the mounting rod 11, and since the length of the side where the locking end 1231a is located is greater than the length of the side where the abutting end 1231b is located, under normal circumstances, when the shape of the locking member 1231 is relatively regular, the longer the length, the greater the weight. Therefore, when the locking end 1231a passes the stop member 211, under the action of gravity, the locking end 1231a will automatically rotate downward around the first rotating shaft 20, so that the locking end 1231a overlaps with the stop member 211 along the moving direction of the rod body 122, thereby achieving the purpose of preventing the housing 21 from moving in the direction away from the mounting rod 11 by the locking end 1231a.

[0180] As can be seen, by making the length of the side where the latching end 1231a is located greater than the length of the side where the abutting end 1231b is located, when the latching end 1231a passes the stop 211, the locking member 1231 can cleverly utilize its own weight distribution to automatically rotate around the first rotating shaft 20, so that the locking member 1231 is in a locked posture, thereby achieving the purpose of blocking the stop 211. There is no need to design a special mechanism to drive the locking member 1231 to rotate, thus simplifying the structure of the locking mechanism 123 and reducing the cost of the locking mechanism 123.

[0181] In some embodiments, see Figure 12 , 13 and Figure 14A lifting member 102 is provided in the installation channel 10. The lifting member 102 is located on the moving path of the locking end 1231a as it moves with the rod body 122, and is along the moving direction of the rod body 122. Figure 14 The (Y-axis direction) is located on the side of the stop 211 opposite to the mounting rod 11. Figure 14 (Right side of stopper 211).

[0182] When the locking end 1231a continues to move a second preset distance along the rod body 122 within the installation channel 10 and passes the lifting member 102, the lifting member 102 is used to push the locking end 1231a to rotate upward around the first rotating shaft 20 and drive the abutting end 1231b to rotate downward around the first rotating shaft 20. The locking member 1231 switches from the locked posture to the unlocked posture. The locking end 1231a and the abutting end 1231b do not overlap with the stop member 211 along the moving direction of the rod body 122.

[0183] Since the lifting member 102 is located on the moving path of the locking end 1231a and on the side of the stop member 211 opposite to the mounting rod 11 along the moving direction of the rod body 122, when the locking end 1231a continues to move a second preset distance along the rod body 122 within the mounting channel 10 and passes the lifting member 102, the lifting member 102 will push the locking end 1231a to rotate upward around the first rotating shaft 20. When the locking end 1231a rotates upward around the first rotating shaft 20, the locking member 1231 can switch from the locked posture to the unlocked posture. The locking end 1231a and the abutting end 1231b do not overlap with the stop member 211 along the moving direction of the rod body 122. In other words, neither the locking end 1231a nor the abutting end 1231b will block the stop member 211. This ensures that when the housing 21 is pulled away from the support rod 12 in a direction away from the mounting rod 11, the housing 21 can be detached from the support rod 12.

[0184] The aforementioned lifting component 102 can be implemented in multiple ways. In one possible implementation, see [link to relevant documentation]. Figure 13 The lifting element 102 is a protruding block that protrudes from the channel wall 101 of the mounting channel 10.

[0185] Because the structure of the protrusion is simple, easy to process and inexpensive, when the lifting part 102 is a protrusion, the design difficulty of the lifting part 102 can be simplified and the cost of the lifting part 102 can be reduced.

[0186] Of course, the lifting member 102 can also be other possible structures, such as a cylinder, etc. This embodiment does not limit this.

[0187] It should be noted that the above-mentioned unlocking posture refers to the posture of the locking member 1231 when there is no overlap between the locking member 1231 and the stop member 211 in the direction of movement of the rod body 122.

[0188] After the locking end 1231a rotates upward about the first pivot 20, causing the locking member 1231 to switch from a locked posture to an unlocked posture, in order to ensure that the locking member 1231 can maintain the unlocked posture so that when the housing 21 is pulled in a direction away from the mounting rod 11, the housing 21 can smoothly disengage from the support rod 12, in some embodiments, see Figure 11 and Figure 13 The locking mechanism 123 also includes a retaining component 1232, which is used to keep the locking member 1231 in an unlocked position.

[0189] By setting the retaining component 1232, the locking component 1231 can be kept in the unlocked position, thus preventing the locking component 1231 from returning to the locked position under the action of gravity.

[0190] There are multiple ways to implement the aforementioned retaining component 1232. For one possible implementation, see [link to relevant documentation]. Figure 11 and Figure 13 The retaining component 1232 includes a movable element 1232a, which moves along the direction of movement of the rod body 122. Figure 13 The component is movably mounted on the rod body 122 (in the Y-axis direction) and located on the side of the locking member 1231 opposite to the mounting rod 11. Figure 13 (Right side of the central locking element 1231).

[0191] A retaining wall 103 is provided in the installation channel 10. The retaining wall 103 is located on the side of the moving part 1232a away from the installation rod 11 along the moving direction of the rod body 122. Figure 13 (Right side of the moving part 1232a).

[0192] When the locking member 1231 switches from the locked position to the unlocked position, the barrier 103 pushes the moving member 1232a to move in the direction close to the locking member 1231 and abut against the abutting end 1231b, so that the locking member 1231 remains in the unlocked position.

[0193] In this embodiment, during the process of the rod body 122 moving a second preset distance in the direction close to the retaining wall 103 within the installation channel 10, when the moving part 1232a moves with the rod body 122 to the retaining wall 103, the retaining wall 103 will block the moving part 1232a from continuing to move. At this time, if the rod body 122 continues to move in the direction close to the retaining wall 103, the retaining wall 103 will push the moving part 1232a to move in the direction close to the locking part 1231 and abut against the abutting end 1231b.

[0194] When the moving part 1232a abuts against the abutting end 1231b, the abutting action of the moving part 1232a will prevent the locking part 1231 from rotating around the first rotating shaft 20, thereby achieving the purpose of keeping the locking part 1231 in an unlocked position.

[0195] As can be seen, by setting the retaining wall 103 and the moving part 1232a, the rod body 122 can automatically achieve the purpose of keeping the locking part 1231 in the unlocked position by moving the rod body 122 during the movement of the rod body 122 in the installation channel 10. The rod body 122 does not need to stop moving during the whole process. Therefore, it can improve the disassembly efficiency when removing the indoor unit 2 from the air conditioner mounting part 1 to a certain extent.

[0196] To further ensure that the locking member 1231 can maintain the unlocked position, in some embodiments, see [reference needed]. Figure 11 and Figure 15 , Figure 15 for Figure 11 A comparison diagram of the air conditioner mounting component 1 in the CC position, showing the locking and unlocking positions of the locking member 1231. The locking member 1231 also moves along the direction of the rod body 122. Figure 15 The moving member 1232a is movably disposed on the rod body 122 in the direction of the Y-axis, and moves along the direction close to the locking member 1231. Figure 15 When the Y-axis moves (in the negative direction), the locking element 1231 can be pushed along the direction closer to the mounting rod 11. Figure 15 It moves in the negative direction of the Y-axis.

[0197] A connecting member 1221 is provided on the rod body 122. The connecting member 1221 is located on the pushing path of the locking member 1231 being pushed by the moving member 1232a. The connecting member 1221 is used for the locking member 1231 to rest on it so that the locking member 1231 remains in the unlocked position. Figure 15 (The state of the middle right image).

[0198] By placing the locking member 1231 on the connecting member 1221, it is possible to better prevent the locking member 1231 from rotating downward around the first axis 20 under the action of gravity, causing the locking member 1231 to switch from the unlocked posture to the locked posture. This ensures that the locking member 1231 can maintain the unlocked posture.

[0199] In some embodiments, see Figure 3 The mounting channel 10 is positioned closer to the top side of the housing 21 than the bottom side of the housing 21.

[0200] By positioning the mounting channel 10 closer to the top side of the housing 21 than the bottom side of the housing 21, the stress point of the housing 21 can be positioned closer to the top side of the housing 21. This results in two advantages: firstly, a more reasonable stress point on the housing 21, allowing the indoor unit 2 to be more stably mounted on the air conditioner mounting bracket 1; secondly, it provides the possibility of the mounting rod 11 being obscured by the indoor unit 2, thus making the air conditioner assembly 100 appear neater.

[0201] Of course, in other embodiments, the mounting channel 10 may be located closer to the bottom side of the housing 21 than the top side of the housing 21, and this embodiment does not limit this.

[0202] In some embodiments, see Figure 5 The angle between the extension direction of the mounting rod 11 and the extension direction of the support rod 12 is α, where 90°≤α and α≤95°.

[0203] By ensuring that 90°≤a and a≤95°, the support rod 12 can be slightly tilted upwards when the mounting rod 11 is installed on the vertical wall Q. This allows the indoor unit 2 to tend to slide closer to the vertical wall Q under the influence of gravity when the support rod 12 is inserted into the mounting channel 10, thus preventing the indoor unit 2 from sliding away from the vertical wall Q and causing the support rod 12 to abnormally detach from the mounting channel 10.

[0204] Specifically, 'a' can be 90°, 91°, or 95°, etc., as long as 90°≤a and a≤95°. This embodiment does not limit this.

[0205] Specifically, when the angle between the extension direction of the mounting rod 11 and the extension direction of the support rod 12 is α, where 90°≤α and α≤95°, the air conditioner mounting component 1 formed by the support rod 12 and the mounting rod 11 will be approximately L-shaped. Because the L-shaped structure is simple, the manufacturing cost of the air conditioner mounting component 1 can be reduced.

[0206] Of course, the air conditioner mounting component 1 can also be of other shapes, and this embodiment does not limit it.

[0207] In some embodiments, see Figure 2 The housing 21 and the mounting rod 11 are provided with a buckle 212 on one side and a locking hole 111 on the other side. When the support rod 12 moves a first preset distance in the mounting channel 10, the buckle 212 is located in the locking hole 111.

[0208] By having the buckle 212 engage in the buckle hole 111, the housing 21 can be connected not only to the support rod 12 but also to the mounting rod 11. This allows the indoor unit 2 of the air conditioner to be more stably mounted on the air conditioner mounting bracket 1.

[0209] In some embodiments, see Figure 3 There can be multiple air conditioner mounting parts 1, and correspondingly, there can also be multiple mounting channels 10. The support rod 12 of each air conditioner mounting part 1 is inserted into the corresponding mounting channel 10. In this way, the indoor unit 2 of the air conditioner can be more stably mounted on the air conditioner mounting part 1.

[0210] Specifically, the number of air conditioner installation components 1 can be as follows: Figure 3 The two shown are examples of air conditioner installation components 1. Of course, the number of air conditioner installation components 1 can also be three or four, etc. This embodiment does not limit this.

[0211] In some embodiments, see Figure 4 and Figure 16 , Figure 16 yes Figure 1 The diagram shows the structure of the air conditioning component 100 from another perspective. The housing 21 is provided with an air outlet 213 and an air inlet 214. The air outlet 213 is located on the bottom side of the housing 21, and the air inlet 214 is located on the front side of the housing 21.

[0212] Since the air outlet 213 is located on the bottom side of the casing 21 and the air inlet 214 is located on the front side of the casing 21, when the indoor unit 2 is ceiling-mounted indoors, with the top side of the indoor unit 2 facing the roof D and the rear side of the indoor unit 2 facing the vertical wall Q, the bottom and front sides of the casing 21 will both face the indoor space. This allows both the air outlet 213 and the air inlet 214 to communicate with the indoor space, thus ensuring the normal operation of the indoor unit 2.

[0213] As can be seen, by setting the air outlet 213 on the bottom side of the casing 21 and the air inlet 214 on the front side of the casing 21, when the indoor unit 2 of the air conditioner is ceiling-mounted indoors, both the air outlet 213 and the air inlet 214 can face the indoor space without being blocked by the roof D or the vertical wall Q, thus providing structural protection for the ceiling-mounted installation of the indoor unit 2 of the air conditioner.

[0214] In addition, by positioning the air outlet 213 on the bottom side of the casing 21, when the indoor unit 2 of the air conditioner is located above the ceiling (such as aluminum ceiling panels), the air outlet 213 can be positioned directly above the ceiling, making the distance between the air outlet 213 and the ceiling shorter and allowing them to be arranged vertically. This facilitates the air outlet 213 to discharge air into the room through the ceiling.

[0215] It should be noted that the air outlet 213 located on the bottom side of the housing 21 and the air inlet 214 located on the front side of the housing 21 are only one possible arrangement given in this embodiment.

[0216] In other possible embodiments, the air outlet 213 may also be located on the front side of the housing 21, and the air inlet 214 may also be located on the bottom side of the housing 21. This embodiment does not limit this.

[0217] When the air outlet 213 is located on the front side of the casing 21 and the air inlet 214 is located on the bottom side of the casing 21, and the indoor unit 2 of the air conditioner is located above the ceiling (such as aluminum ceiling panels), the air inlet 214 can be located directly above the ceiling, which makes the distance between the air inlet 214 and the ceiling shorter and the two can be arranged in a vertical direction. This makes it easier for the air inlet 214 to draw indoor air through the ceiling.

[0218] The shape of the aforementioned housing 21 can be roughly a cuboid or any other possible shape, and this embodiment does not limit it.

[0219] It should be noted that the bottom side of the casing 21 mentioned above refers to the side of the casing 21 that is opposite to the roof D when the indoor unit 2 of the air conditioner is ceiling-mounted.

[0220] See Figure 6 This 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 of the air conditioner indoor units 2 described in the above embodiments, and can bring the same or similar beneficial effects. For details, please refer to the description in the above embodiments, and this embodiment will not be repeated here.

[0221] 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 component (100), characterized in that, include: Air conditioner installation components (1), including: Mounting rod (11) for mounting on a vertical wall (Q); and, A support rod (12) is connected to the mounting rod (11), and the extension direction of the support rod (12) is at an angle to the extension direction of the mounting rod (11). The air conditioning assembly (100) also includes: Air conditioner indoor unit (2), including: The housing (21) has an installation channel (10) extending from the rear side of the housing (21) to the front side of the housing (21); When the housing (21) is pushed in a direction close to the mounting rod (11) and the support rod (12) moves a first preset distance in the mounting channel (10), the support rod (12) can prevent the housing (21) from moving in a direction away from the mounting rod (11) so that the housing (21) is hung on the support rod (12); As the housing (21) continues to be pushed in a direction close to the mounting rod (11), and the support rod (12) continues to move a second preset distance within the mounting channel (10), the support rod (12) allows the housing (21) to move in a direction away from the mounting rod (11), so that the housing (21) can detach from the support rod (12).

2. An air conditioning component (100), characterized in that, include: Air conditioner installation components (1), including: Mounting rod (11) for mounting on a vertical wall (Q); and, A support rod (12) is connected to the mounting rod (11), and the extension direction of the support rod (12) is at an angle to the extension direction of the mounting rod (11). The air conditioning assembly (100) also includes: Air conditioner indoor unit (2), including: The housing (21) has an installation channel (10) extending from the rear side of the housing (21) to the front side of the housing (21); In the vertical direction, the support rod (12) has an upward support surface (121), and the housing (21) is supported on the support surface (121) by the channel wall (101) of the mounting channel (10); When the housing (21) is pushed in a direction close to the mounting rod (11) and the support rod (12) moves a first preset distance in the mounting channel (10), the movement of the housing (21) in a direction away from the mounting rod (11) is prevented. As the housing (21) continues to be pushed in a direction close to the mounting rod (11), and the support rod (12) continues to move a second preset distance within the mounting channel (10), movement of the housing (21) in a direction away from the mounting rod (11) is permitted.

3. The air conditioning assembly (100) according to claim 1 or 2, characterized in that, The support rod (12) includes: A rod body (122) is connected to the mounting rod (11), and the extension direction of the rod body (122) and the extension direction of the mounting rod (11) have the included angle. A locking mechanism (123) is disposed on the rod body (122); When the rod body (122) moves the first preset distance within the mounting channel (10), the locking mechanism (123) prevents the housing (21) from moving away from the mounting rod (11) and allows the housing (21) to move closer to the mounting rod (11); When the rod body (122) continues to move the second preset distance within the mounting channel (10), the locking mechanism (123) allows the housing (21) to move away from the mounting rod (11) and prevents the housing (21) from moving towards the mounting rod (11).

4. The air conditioning assembly (100) according to claim 3, characterized in that, The locking mechanism (123) includes: A locking member (1231) is rotatably disposed on the rod body (122) about a first rotating shaft (20). A stop member (211) is provided on the housing (21). The stop member (211) is located on the moving path of the locking member (1231) following the movement of the rod body (122). When the locking member (1231) moves the rod body (122) within the installation channel (10) by the first preset distance and passes the stop member (211), the locking member (1231) rotates around the first pivot (20) to a locking posture, and the locking member (1231) overlaps with the stop member (211) along the moving direction of the rod body (122).

5. The air conditioning assembly (100) according to claim 4, characterized in that, The mounting channel (10) has a stop hole (1011) on its channel wall (101), and the stop hole (1011) on the side of the stop hole (1011) near the mounting rod (11) forms the stop member (211).

6. The air conditioning assembly (100) according to claim 4, characterized in that, The first rotating shaft (20) extends horizontally, and the extension direction of the first rotating shaft (20) is perpendicular to the movement direction of the rod body (122).

7. The air conditioning assembly (100) according to claim 6, characterized in that, The locking element (1231) includes: The snap-fit ​​end (1231a) is located on the side of the first rotating shaft (20) near the mounting rod (11) along the moving direction of the rod body (122); The abutment end (1231b) is located on the side of the first rotating shaft (20) away from the mounting rod (11); The length of the side where the snap-fit ​​end (1231a) is located is greater than the length of the side where the abutment end (1231b) is located, so that when the snap-fit ​​end (1231a) passes the stop (211), it rotates downward around the first rotating shaft (20) under the action of gravity, and drives the abutment end (1231b) to rotate upward around the first rotating shaft (20). The locking member (1231) is in the locking posture, and the snap-fit ​​end (1231a) has an overlapping part with the stop (211) along the moving direction of the rod body (122).

8. The air conditioning assembly (100) according to claim 7, characterized in that, The installation channel (10) is provided with a lifting member (102), which is located on the movement path of the snap-fit ​​end (1231a) when it moves with the rod body (122), and is located on the side of the stop member (211) away from the installation rod (11) along the movement direction of the rod body (122); When the locking end (1231a) continues to move the rod body (122) within the installation channel (10) by the second preset distance and passes the lifting member (102), the lifting member (102) is used to push the locking end (1231a) to rotate upward around the first rotating shaft (20) and drive the abutting end (1231b) to rotate downward around the first rotating shaft (20). The locking member (1231) switches from the locking posture to the unlocking posture. The locking end (1231a) and the abutting end (1231b) do not overlap with the stop member (211) along the moving direction of the rod body (122).

9. The air conditioning assembly (100) according to claim 8, characterized in that, The lifting member (102) is a protrusion that protrudes from the channel wall (101) of the mounting channel (10).

10. The air conditioning assembly (100) according to claim 8, characterized in that, The locking mechanism (123) further includes: A retaining component (1232) is used to hold the locking member (1231) in the unlocked position.

11. The air conditioning assembly (100) according to claim 10, characterized in that, The retaining component (1232) includes: A movable member (1232a) is movably disposed on the rod body (122) along the moving direction of the rod body (122) and is located on the side of the locking member (1231) opposite to the mounting rod (11); A retaining wall (103) is provided in the installation channel (10), and the retaining wall (103) is located on the side of the moving part (1232a) away from the installation rod (11) along the moving direction of the rod body (122); When the locking member (1231) switches from the locking posture to the unlocking posture, the retaining wall (103) pushes the moving member (1232a) to move in a direction close to the locking member (1231) and abut against the abutting end (1231b) so that the locking member (1231) maintains the unlocking posture.

12. The air conditioning assembly (100) according to claim 11, characterized in that, The locking member (1231) is also movably disposed on the rod body (122) along the moving direction of the rod body (122), and when the moving member (1232a) moves in the direction close to the locking member (1231), it can push the locking member (1231) to move in the direction close to the mounting rod (11); The rod body (122) is provided with a connecting member (1221), which is located on the pushing path of the locking member (1231) being pushed by the moving member (1232a). The connecting member (1221) is used for the locking member (1231) to rest on it so that the locking member (1231) maintains the unlocked posture.

13. The air conditioning assembly (100) according to any one of claims 1, 2, or 4-12, characterized in that, The mounting channel (10) is located closer to the top side of the housing (21) than the bottom side of the housing (21).

14. The air conditioning assembly (100) according to any one of claims 1, 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 α, where 90°≤α and α≤95°.

15. The air conditioning assembly (100) according to any one of claims 1, 2, or 4-12, characterized in that, The housing (21) and the mounting rod (11) are provided with a buckle (212) on one and a locking hole (111) on the other. When the support rod (12) moves the first preset distance in the mounting channel (10), the buckle (212) is located in the locking hole (111).

16. The air conditioning assembly (100) according to any one of claims 1, 2, or 4-12, characterized in that, The housing (21) is provided with: An air outlet (213) is located on the bottom side of the housing (21); and, Air inlet (214) is located on the front side of the housing (21).

17. The air conditioning assembly (100) according to any one of claims 1, 2, or 4-12, characterized in that, The housing (21) is provided with: An air outlet (213) is located on the front side of the housing (21); and, Air inlet (214) is located on the bottom side of the housing (21).

18. An indoor unit of an air conditioner (2), characterized in that, The air conditioner indoor unit (2) is the air conditioner indoor unit (2) according to any one of claims 1-17.