Plug-in type mounting structure and air conditioner

Through the design of wall panels and locking parts of the plug-in installation structure, the problem of difficulty in installing the ceiling machine is solved, and the easy and convenient installation process and seamless fixation are achieved, which improves the installation efficiency and aesthetics.

CN223121530UActive Publication Date: 2025-07-18QINGDAO HAIER AIR CONDITIONER GENERAL CORP LTD +1
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Patent Information

Application Number
CN202422117156.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-29
Publication Date
2025-07-18
Estimated Expiration
2034-08-29

AI Technical Summary

Technical Problem

The existing ceiling machine requires long-term support from the operator when installing, which makes it difficult and time-consuming.

Method used

The plug-in mounting structure is adopted, including a wall panel, a first fixing member, a connector, a second fixing member and a locking member. By installing the first fixing member and a hooking member on the ground, the lightweight design of the wall panel is used to easily fit the ceiling, and then the mounting member is lifted and the locking member is inserted to achieve fixation.

Benefits of technology

It reduces installation difficulty, improves installation efficiency, and achieves seamless installation, enhancing installation stability and aesthetics.

✦ Generated by Eureka AI based on patent content.

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  • Figure CN223121530U_ABST
    Figure CN223121530U_ABST
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Abstract

The utility model belongs to the technical field of air conditioners, and particularly relates to a plug-in type installation structure and an air conditioner. According to the plug-in type installation structure and the air conditioner, the plug-in type installation structure comprises a wall hanging plate used for being installed on a ceiling, and a first installation groove is formed in the wall hanging plate; the first fixing piece is used for being installed on a to-be-installed piece, and a second installation groove is formed in the first fixing piece; one end of the connecting piece extends into the first mounting groove and is hung on the wall hanging plate; the second fixing piece is hung on the connecting piece, and a third mounting groove is formed in the second fixing piece; and the locking piece is inserted into the second mounting groove through the third mounting groove so as to connect the first fixing piece and the second fixing piece. By inserting the locking piece into the second mounting groove through the third mounting groove, the first fixing piece and the second fixing piece can be connected, so that the to-be-mounted piece is fixed, the mounting difficulty is reduced, an operator does not need to lift the to-be-mounted piece all the time, and the mounting efficiency is improved.
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Description

Technical Field

[0001] The utility model belongs to the technical field of air conditioners, and particularly relates to a plug-in installation structure and an air conditioner. Background Art

[0002] A ceiling-mounted air conditioner is an indoor unit of an air conditioner installed on the ceiling, which has the advantages of uniform air supply and small occupied space. In the prior art, when installing a ceiling-mounted air conditioner, an operator needs to pre-drill bolt holes on the indoor top, then hold the ceiling-mounted air conditioner against the indoor top, and then pass bolts through the installation holes on the ceiling-mounted air conditioner and connect them to the bolt holes on the indoor top to fix the ceiling-mounted air conditioner.

[0003] However, in actual operation, the operator needs to hold the ceiling-mounted air conditioner for a long time, which is difficult to install and time-consuming and laborious. Summary of the Utility Model

[0004] An embodiment of the present application provides a plug-in installation structure and an air conditioner to solve the problem of difficult installation of the ceiling-mounted air conditioner.

[0005] On the one hand, an embodiment of the present application provides a plug-in installation structure, including: a hanging wall panel for installing on the ceiling, and a first installation groove is opened on the hanging wall panel; a first fixing member for installing on a to-be-installed member, and a second installation groove is opened on the first fixing member; a connecting member, one end of the connecting member extends into the first installation groove and is hooked on the hanging wall panel; a second fixing member is hooked on the connecting member, and a third installation groove is opened on the second fixing member; a locking member is inserted into the second installation groove through the third installation groove on the second fixing member to connect the first fixing member and the second fixing member.

[0006] By adopting the above technical solution, during installation, the operator can install the first fixing member on the to-be-installed member on the ground, hook the connecting member on the hanging wall panel, hook the second fixing member on the connecting member, and then install the hanging wall panel on the ceiling. At this time, since the weight of the hanging wall panel is light, the operator can conveniently and tightly attach and fix the hanging wall panel to the ceiling. After installing the hanging wall panel on the ceiling, the operator can hold the to-be-installed member against the hanging wall panel, and then insert the locking member into the second installation groove on the first fixing member through the third installation groove on the second fixing member, so as to connect the first fixing member and the second fixing member, that is, the locking member is clamped with the second installation groove and the third installation groove, thereby realizing the installation of the to-be-installed member, without the operator always holding the to-be-installed member, reducing the installation difficulty and improving the installation efficiency.

[0007] Meanwhile, after hanging the component to be installed on the wall panel, by adjusting the locking member to make it penetrate only through the third installation groove, the installation height of the component to be installed can be adjusted. After eliminating the gap between the component to be installed and the wall panel, then make the locking member penetrate through the second installation groove to lock the relative positions of the second fixing member and the first fixing member, and seamless installation of the component to be installed can be achieved.

[0008] In the preferred technical solution of the above plug-in installation structure, the above locking member is rotatably arranged on the above second fixing member. By rotating the locking member, one end of the locking member can be inserted into or disengaged from the above second installation groove and the above third installation groove.

[0009] By adopting the above technical solution, by arranging the locking member on the second fixing member, the time wasted by the operator in searching for the locking member when the locking member and the second fixing member are placed separately is saved. When connection and fixation are required, rotate the locking member so that the locking member sequentially passes through the third installation groove on the second fixing member and the second installation groove on the first fixing member, and stable clamping connection can be achieved to fix the component to be installed. When disassembly or adjustment is required, rotate the locking member in the reverse direction, and the locking member can be disengaged from the second installation groove and the third installation groove to adjust the height and position of the component to be installed, thereby improving the convenience of installation or disassembly operations and saving time and labor costs.

[0010] In the preferred technical solution of the above plug-in installation structure, a rotating shaft is arranged on the above locking member, and a mounting seat is arranged on the above second fixing member. The rotating shaft is inserted into the mounting seat and rotates relative to the mounting seat.

[0011] By adopting the above technical solution, the rotating connection between the locking member and the second fixing member is realized through the rotating shaft and the mounting seat, ensuring the smoothness and accuracy of the locking member during rotation and avoiding the problem that the locking member does not correspond to the third installation groove due to loosening or deviation.

[0012] In the preferred technical solution of the above plug-in installation structure, a first installation hole is opened on the above second fixing member, and a fastener passes through the first installation hole to connect the above second fixing member and the above first fixing member.

[0013] By adopting the above technical solution, the relative positions of the second fixing member and the first fixing member are further locked by the fastener, further ensuring the stability of the fixation of the component to be installed.

[0014] In the preferred technical solution of the above plug-in installation structure, a second installation hole is opened on the above locking member, and the fastener sequentially passes through the second installation hole and the first installation hole to connect the above locking member, the above second fixing member and the above first fixing member.

[0015] By adopting the above technical solution, the fastener connects the locking member, the second fixing member and the first fixing member, further ensuring the stability of the fixing of the to-be-installed member.

[0016] In the preferred technical solution of the above plug-in installation structure, the second installation groove includes a plurality of transverse grooves, and the plurality of transverse grooves are evenly and spaced along the height direction of the to-be-installed member. The locking member can be selectively inserted into the transverse groove corresponding to the third installation groove to limit the relative positions of the first fixing member and the second fixing member.

[0017] By adopting the above technical solution, by providing a plurality of transverse grooves, the first fixing member can be adapted to different types and sizes of to-be-installed members. When the to-be-installed member abuts against the wall hanging board, by inserting the locking member into the transverse groove corresponding to the third installation groove, the relative positions of the first fixing member and the second fixing member can be locked, thereby realizing the installation of the to-be-installed member.

[0018] In the preferred technical solution of the above plug-in installation structure, the connecting member includes a first fixing end, a connecting portion and a second fixing end connected in sequence. The cross-sectional dimension of the connecting portion is smaller than the cross-sectional dimensions of the first fixing end and the second fixing end. The first fixing end is disposed in the first installation groove to be hung on the wall hanging board, and the second fixing member is hung on the second fixing end.

[0019] By adopting the above technical solution, by making the cross-sectional dimensions of the first fixing end and the second fixing end larger than the cross-sectional dimension of the connecting portion, it is ensured that the first fixing end can stably abut against the inner wall of the wall hanging board, and the second fixing member can be stably hung on the second fixing end, avoiding the connecting member from disengaging from the fit and causing the to-be-installed member to fall off.

[0020] In the preferred technical solution of the above plug-in installation structure, the first installation groove includes a third installation hole and a sliding groove communicated with each other. The third installation hole is arranged to match the first fixing end, and the sliding groove is arranged to match the connecting portion. The first fixing end passes through the third installation hole and is slidably disposed in the sliding groove, and the connecting portion passes through the sliding groove and is connected to the second fixing end.

[0021] By adopting the above technical solution, since the sliding groove is arranged to match the connecting portion and the first fixing end is arranged to match the third installation hole, the first fixing end can extend into the third installation hole and slide in the sliding groove without slipping out of the sliding groove. Thus, the operator can push the to-be-installed member to make the connecting member slide in the sliding groove, and further adjust the installation position of the to-be-installed member to ensure the installation accuracy.

[0022] In the preferred technical solution of the above plug-in installation structure, a fourth installation groove is provided on the second fixing member, the fourth installation groove is arranged to match the connecting portion, the connecting portion passes through the fourth installation groove and is connected to the second fixed end, and the second fixed end abuts against the second fixing member.

[0023] By adopting the above technical solution, since the fourth installation groove is arranged to match the connecting portion, the fourth installation groove can allow the connecting portion to pass through. When the second fixing member is hung on the connecting member, the lower surface of the second fixing member abuts against the upper surface of the second fixed end, and the connecting portion passes through the fourth installation groove and is connected to the second fixed end, thereby ensuring the stability of the connection between the connecting member and the second fixing member.

[0024] On the other hand, an embodiment of the present application provides an air conditioner, including an air conditioner body and the plug-in installation structure according to any one of the first aspects. The plug-in installation structure is arranged on the air conditioner body and is used to connect the air conditioner body to the ceiling.

[0025] By adopting the above technical solution, the gap between the air conditioner body and the ceiling is eliminated, the plug-in installation of the air conditioner body is realized, the problem of dust accumulation in the gap is avoided, and the aesthetics of the air conditioner is improved.

[0026] Those skilled in the art can understand that the plug-in installation structure and the air conditioner provided by the embodiment of the present application, wherein the plug-in installation structure includes a wall hanging board for installing on the ceiling, and a first installation groove is provided on the wall hanging board; a first fixing member for installing on the member to be installed, and a second installation groove is provided on the first fixing member; a connecting member, one end of the connecting member extends into the first installation groove and is hung on the wall hanging board; a second fixing member hung on the connecting member, and a third installation groove is provided on the second fixing member; a locking member inserted into the second installation groove through the third installation groove to connect the first fixing member and the second fixing member. During installation, the operator can install the first fixing member on the member to be installed on the ground, hang the connecting member on the wall hanging board, hang the second fixing member on the connecting member, and then install the wall hanging board on the ceiling. At this time, since the weight of the wall hanging board is light, the operator can conveniently and tightly attach and fix the wall hanging board to the ceiling. After installing the wall hanging board on the ceiling, the operator can lift the member to be installed and abut it against the wall hanging board, and then insert the locking member into the second installation groove on the first fixing member through the third installation groove on the second fixing member, so as to connect the first fixing member and the second fixing member, that is, the locking member is engaged with the second installation groove and the third installation groove, thereby realizing the installation of the member to be installed, without the operator always lifting the member to be installed, reducing the installation difficulty and improving the installation efficiency.

[0027] Meanwhile, after hanging the component to be installed on the wall panel, by adjusting the locking member so that it only penetrates through the third installation groove, the installation height of the component to be installed can be adjusted. After eliminating the gap between the component to be installed and the wall panel, then make the locking member penetrate through the second installation groove to lock the relative positions of the second fixing member and the first fixing member, and seamless installation of the component to be installed can be achieved. Description of the Drawings

[0028] The drawings here are incorporated into the specification and form a part of this specification, showing the embodiments consistent with the present application, and are used together with the specification to explain the principles of the present application.

[0029] Figure 1 Installation schematic diagram of the plug-in installation structure provided by the embodiment of the present application;

[0030] Figure 2 is Figure 1 Partial enlarged view of part A in

[0031] Figure 3 Structure schematic diagram of the plug-in installation structure provided by the embodiment of the present application;

[0032] Figure 4 is Figure 1 Structure schematic diagram of removing the wall panel and the locking member in

[0033] Reference Signs:

[0034] 10 - Component to be installed; 100 - Wall panel; 110 - First installation groove; 111 - Third installation hole; 112 - Chute; 200 - First fixing member; 210 - Second installation groove; 211 - Horizontal groove; 212 - Vertical groove; 300 - Second fixing member; 310 - Third installation groove; 320 - Mounting seat; 330 - First installation hole; 340 - Fourth installation groove; 400 - Connecting member; 410 - First fixed end; 420 - Connecting portion; 430 - Second fixed end; 500 - Locking member; 510 - Rotating shaft; 520 - Second installation hole; 600 - Fastening member. Detailed Embodiments

[0035] First of all, those skilled in the art should understand that these embodiments are only used to explain the technical principles of the present invention and are not intended to limit the protection scope of the present invention. Those skilled in the art can make adjustments according to needs to adapt to specific application scenarios. For example, although the adjustable-height installation structure of the present invention is described in combination with a ceiling-mounted machine, this is not a limitation, and other devices with the need to be installed on the ceiling can be configured with the adjustable-height installation structure of the present invention.

[0036] Secondly, it should be noted that in the description of the present utility model, the terms indicating the direction or positional relationship such as "inside" and "outside" are based on the direction or positional relationship shown in the drawings. This is only for convenience of description, rather than indicating or implying that the device or component must have a specific orientation, be constructed and operated in a specific orientation. Therefore, it should not be construed as a limitation to the present utility model.

[0037] In addition, it should also be noted that in the description of the present utility model, unless otherwise clearly specified and defined, the terms "connected" and "coupled" should be understood in a broad sense. For example, it can be a fixed connection, a detachable connection, or an integral connection; it can be a mechanical connection or an electrical connection; it can be directly connected or indirectly connected through an intermediate medium, and it can be the communication inside two components. For those skilled in the art, the specific meanings of the above terms in the present utility model can be understood according to specific situations.

[0038] As described in the background art, a ceiling-mounted unit is an air conditioner indoor unit installed on the ceiling, which has the advantages of uniform air supply and small occupied space. In the prior art, when installing a ceiling-mounted unit, an operator needs to pre-drill bolt holes on the indoor ceiling, then hold the ceiling-mounted unit against the indoor ceiling, and then pass bolts through the mounting holes on the ceiling-mounted unit and connect them to the bolt holes on the indoor ceiling to fix the ceiling-mounted unit.

[0039] However, during actual operation, the operator needs to hold the ceiling-mounted unit for a long time, which is difficult to install and time-consuming and laborious.

[0040] To solve the above problems, an embodiment of the present application provides a plug-in installation structure and an air conditioner. The plug-in installation structure includes a wall hanging board for installing on the ceiling, and a first installation groove is provided on the wall hanging board; a first fixing member for installing on the member to be installed, and a second installation groove is provided on the first fixing member; a connecting member, one end of the connecting member extends into the first installation groove and is hung on the wall hanging board; a second fixing member is hung on the connecting member, and a third installation groove is provided on the second fixing member; a locking member is inserted into the second installation groove through the third installation groove to connect the first fixing member and the second fixing member. During installation, the operator can install the first fixing member on the member to be installed on the ground, hang the connecting member on the wall hanging board, hang the second fixing member on the connecting member, and then install the wall hanging board on the ceiling. At this time, since the weight of the wall hanging board is relatively light, the operator can conveniently and closely attach and fix the wall hanging board to the ceiling. After installing the wall hanging board on the ceiling, the operator can lift the member to be installed and abut it against the wall hanging board, and then insert the locking member into the second installation groove on the first fixing member through the third installation groove on the second fixing member, so as to connect the first fixing member and the second fixing member, that is, the locking member is engaged with the second installation groove and the third installation groove, thereby realizing the installation of the member to be installed, without the operator always lifting the member to be installed, reducing the installation difficulty and improving the installation efficiency.

[0041] Meanwhile, after hanging the member to be installed on the wall hanging board, by adjusting the locking member so that it only penetrates the third installation groove, the installation height of the member to be installed can be adjusted. After eliminating the gap between the member to be installed and the wall hanging board, then making the locking member penetrate the second installation groove to lock the relative positions of the second fixing member and the first fixing member, seamless installation of the member to be installed can be achieved.

[0042] The following describes the preferred technical solutions of the plug-in installation structure and the air conditioner of the present invention with reference to the accompanying drawings.

[0043] Refer to Figures 1 to 4 . In a first aspect, an embodiment of the present application provides a plug-in installation structure, including a wall hanging board 100 for installing on the ceiling, and a first installation groove 110 is provided on the wall hanging board 100; a first fixing member 200 for installing on the member to be installed 10, and a second installation groove 210 is provided on the first fixing member 200; a connecting member 400, one end of the connecting member 400 extends into the first installation groove 110 and is hung on the wall hanging board 100; a second fixing member 300 is hung on the connecting member 400, and a third installation groove 310 is provided on the second fixing member 300; a locking member 500 is inserted into the second installation groove 210 through the third installation groove 310 to connect the first fixing member 200 and the second fixing member 300.

[0044] It should be noted that in this embodiment, the component to be installed 10 is a ceiling-mounted machine. In other embodiments, the component to be installed 10 can also be other devices or structures that need to be installed on the ceiling.

[0045] In the above embodiment, through holes are provided on the wall-mounted board 100 for fixing the wall-mounted board 100 to the ceiling by expansion bolts or other means. The through holes are dispersedly arranged on the wall-mounted board 100 to disperse the weight borne by the wall-mounted board 100 and avoid loosening or deformation caused by excessive single-point stress.

[0046] Among them, in this embodiment, the wall-mounted board 100 is of a rectangular structure, and the number of through holes is four. The four through holes are distributed at the four corners of the wall-mounted board 100 to disperse the weight borne by the wall-mounted board 100.

[0047] In other embodiments, the wall-mounted board 100 can also be of other shapes, and the through holes are adaptively distributed on the periphery of the wall-mounted board 100, which can be adaptively selected according to actual needs. This embodiment does not impose any restrictions on this.

[0048] Specifically, when installing the wall-mounted board 100, since the overall weight of the wall-mounted board 100 is relatively light, an operator can single-handedly abut the wall-mounted board 100 against the ceiling without additional auxiliary tools or multi-person cooperation. Then, the expansion bolt is screwed into the ceiling through the through hole, and seamless installation of the wall-mounted board 100 and the ceiling can be achieved, thus avoiding the gap between the wall-mounted board 100 and the ceiling and reducing the accumulation of dust.

[0049] At the same time, when the flatness of the ceiling is relatively low, there will be a certain gap after the wall-mounted board 100 abuts against the ceiling. The operator can achieve seamless installation between the wall-mounted board 100 and the ceiling by applying a filling material on the wall-mounted board 100.

[0050] In this embodiment, a first installation groove 110 is formed on the wall-mounted board 100. One end of the connecting member 400 extends into the first installation groove 110 so that the connecting member 400 is hung on the wall-mounted board 100. The second fixing member 300 is hung on the connecting member 400, and then the second fixing member 300 and the first fixing member 200 on the component to be installed 10 are connected through the locking member 500, and the installation of the component to be installed 10 can be achieved.

[0051] Among them, the connecting member 400 can be hung on the wall-mounted board 100 by using a hook, a buckle or other structures. Similarly, the second fixing member 300 can also be hung on the connecting member 400 by using a hook or other forms. This embodiment does not impose any restrictions on this and can be adaptively selected according to actual needs.

[0052] Specifically, in this embodiment, when installing the component 10 to be installed, the operator can assemble the wall hanging board 100, the connecting piece 400, and the second fixing piece 300 on the ground, fix the first fixing piece 200 to the component 10 to be installed, then fix the wall hanging board 100 to the ceiling, lift the component 10 to be installed, and then insert the locking piece 500 into the second installation groove 210 on the first fixing piece 200 through the third installation groove 310 on the second fixing piece 300, so as to connect the first fixing piece 200 and the second fixing piece 300 and limit the relative position between the first fixing piece 200 and the second fixing piece 300, thus completing the installation of the component 10 to be installed.

[0053] Among them, the first fixing piece 200 can be connected to the component 10 to be installed by means of bolt fixing or screw fixing to ensure the stability of the connection between the first fixing piece 200 and the component 10 to be installed. Threaded connection can effectively resist external impacts and vibrations and can avoid problems such as loosening or falling off caused by long-term use.

[0054] In addition, using threaded connection is convenient for the operator to disassemble when replacement or maintenance is needed, improving the disassembly and installation efficiency.

[0055] At the same time, it should be noted that in other embodiments, other connection methods can also be adopted between the first fixing piece 200 and the component 10 to be installed, and this embodiment does not impose any restrictions on this.

[0056] Specifically, in this embodiment, a third installation groove 310 is provided on the second fixing piece 300, and a second installation groove 210 is provided on the first fixing piece 200. The third installation groove 310 and the second installation groove 210 are both arranged to match the locking piece 500. That is to say, the shapes and sizes of the third installation groove 310 and the second installation groove 210 are both matched with the shape and size of the locking piece 500, so as to facilitate the locking piece 500 to be inserted into the second installation groove 210 and the third installation groove 310 at the same time.

[0057] Specifically, to avoid installation errors, the sizes of the third installation groove 310 and the second installation groove 210 can be slightly larger than the locking piece 500, so as to avoid the problem that the third installation groove 310 and the second installation groove 210 do not correspond when the component 10 to be installed is lifted and abutted against the wall hanging board 100.

[0058] Among them, before installing the component 10 to be installed, the operator can place the assembled wall hanging board 100 on the component 10 to be installed on the ground, and by comparing the relative positions between the second fixing piece 300 and the first fixing piece 200, open the second installation groove 210 and the third installation groove 310 to ensure that the second installation groove 210 and the third installation groove 310 can correspond when the component 10 to be installed is installed.

[0059] Among them, the locking member 500 can be a screw. The operator can place the assembled wall hanging board 100 on the to-be-installed member 10 on the ground, then tighten the second fixing member 300 and the first fixing member 200 with the screw, and then remove the screw to form the second installation groove 210 and the third installation groove 310. When installing the to-be-installed member 10, screw the screw in again, thus greatly improving the installation efficiency.

[0060] In other embodiments, the locking member 500 can also be a card or other structures. Correspondingly, the second installation groove 210 and the third installation groove 310 can be long grooves. By inserting the card into the second installation groove 210 and the third installation groove 310, the relative positions of the second fixing member 300 and the first fixing member 200 are locked, so as to fix the to-be-installed member 10.

[0061] At the same time, the second installation groove 210 and the third installation groove 310 can also be grooved by the operator on the ground, or grooved according to the size of the to-be-installed member 10 and the installation height of the second fixing member 300 during production. This embodiment does not impose any restrictions on this.

[0062] By adopting the above technical solution, the installation difficulty of the operator in installing the to-be-installed member 10 is greatly increased, and the operator does not need to always hold up the to-be-installed member 10, improving the installation efficiency.

[0063] At the same time, after hanging the to-be-installed member 10 on the wall hanging board 100, by adjusting the locking member 500 so that it only penetrates the third installation groove 310, the installation height of the to-be-installed member 10 can be adjusted. After eliminating the gap between the to-be-installed member 10 and the wall hanging board 100, then make the locking member 500 penetrate the second installation groove 210 to lock the relative positions of the second fixing member 300 and the first fixing member 200, and the seamless installation of the to-be-installed member 10 can be achieved.

[0064] In addition, to ensure the stability of the fixation of the to-be-installed member 10, in this embodiment, the number of the first fixing members 200 is four, and the four first fixing members 200 are arranged in two groups on the opposite sides of the to-be-installed member 10. Correspondingly, the number of the first installation grooves 110, the second fixing members 300 and the connecting members 400 is all four, so as to realize the four-corner fixation of the to-be-installed member 10 and ensure the stability of the fixation of the to-be-installed member 10.

[0065] In an alternative embodiment, the locking member 500 is rotatably arranged on the second fixing member 300. By rotating the locking member 500, one end of the locking member 500 can be inserted into or withdrawn from the second installation groove 210 and the third installation groove 310.

[0066] Specifically, when an operator installs the to-be-installed part 10, the locking part 500 is usually placed in a tool bag or a toolbox. Therefore, after the operator holds the to-be-installed part 10 against the wall hanging plate 100, the operator needs to take out the locking part 500 from the tool bag or the toolbox and then insert it into the second installation slot 210 and the third installation slot 310. Since the to-be-installed part 10 is heavy, it greatly increases the difficulty for the operator to pick up the locking part 500.

[0067] In the above embodiment, the locking part 500 is rotatably arranged on the second fixing part 300, so that there is no need to take the locking part 500 from the tool bag or the toolbox additionally, which greatly reduces the installation difficulty. When connection and fixation are required, rotate the locking part 500 so that the locking part 500 sequentially passes through the third installation slot 310 on the second fixing part 300 and the second installation slot 210 on the first fixing part 200, and a firm clamping connection can be achieved to fix the to-be-installed part 10. When disassembly or adjustment is required, rotate the locking part 500 in the reverse direction, and the locking part 500 can be separated from the second installation slot 210 and the third installation slot 310 to adjust the height and position of the to-be-installed part 10, thereby improving the convenience of installation or disassembly operations and saving time and labor costs.

[0068] In an alternative embodiment, a rotating shaft 510 is arranged on the locking part 500, and an installation seat 320 is arranged on the second fixing part 300. The rotating shaft 510 is inserted into the installation seat 320 and rotates relative to the installation seat 320.

[0069] In the above embodiment, a rotating shaft hole is formed in the installation seat 320, and the rotating shaft 510 on the locking part 500 is inserted into the rotating shaft hole, thereby realizing the rotational connection between the locking part 500 and the installation seat 320.

[0070] Specifically, the number of the rotating shafts 510 is two, and the two rotating shafts 510 are arranged on both sides of the locking part 500. Correspondingly, the number of the installation seats 320 is two, and the two rotating shafts 510 are respectively inserted into the two installation seats 320, ensuring the connection strength between the locking part 500 and the installation seat 320. At the same time, the connection method arranged on both sides improves the connection strength and durability, and also optimizes the balance, effectively preventing loosening or falling off caused by external forces.

[0071] Specifically, in this embodiment, the locking part 500 has an "L" - shaped structure, and the two rotating shafts 510 are respectively arranged on both sides of the long side of the locking part 500. The short side of the locking part 500 can extend into the second installation slot 210 and the third installation slot 310, thereby realizing the locking of the relative positions between the first fixing part 200 and the second fixing part 300.

[0072] Meanwhile, under the gravity of the to-be-installed part 10, the pressure is mainly concentrated on the locking part 500. Therefore, in this embodiment, the locking part 500 is made of a metal material to avoid the problem that the locking part 500 breaks under excessive pressure, resulting in the detachment of the to-be-installed part 10.

[0073] By adopting the above embodiment, the rotating shaft 510 and the mounting base 320 realize the rotational connection between the locking part 500 and the second fixing part 300, ensuring the smoothness and accuracy of the locking part 500 during rotation, and avoiding the problem that the locking part 500 does not correspond to the third mounting groove 310 due to loosening or deviation.

[0074] In an alternative embodiment, a first mounting hole 330 is formed on the second fixing part 300, and the fastener 600 passes through the first mounting hole 330 to connect the second fixing part 300 and the first fixing part 200.

[0075] In the above embodiment, the fastener 600 can be a screw. The screw passes through the first mounting hole 330 on the second fixing part 300 and is screwed onto the first fixing part 200. Thus, on the premise that the second fixing part 300 and the first fixing part 200 are fixed by the locking part 500, further tightening is performed through the fastener 600, and the locking force of the screw further enhances the stability of the connection between the first fixing part 200 and the second fixing part 300.

[0076] Meanwhile, it should be noted that the fastener 600 can also be other structures and can be adaptively selected according to actual needs. This embodiment does not impose any restrictions on this.

[0077] In an exemplary embodiment, the fastener 600 is a bolt, and a threaded hole is formed on the first fixing part 200. The threaded hole is arranged corresponding to the first mounting hole 330. By passing the bolt through the first mounting hole 330 and screwing it into the threaded hole, the fixation between the first fixing part 200 and the second fixing part 300 is realized, further improving the stability of the connection between the first fixing part 200 and the second fixing part 300.

[0078] In an alternative embodiment, a second mounting hole 520 is formed on the locking part 500, and the fastener 600 passes through the second mounting hole 520 and the first mounting hole 330 in sequence to connect the locking part 500, the second fixing part 300, and the first fixing part 200.

[0079] In the above embodiment, a second mounting hole 520 is formed in the locking member 500. The locking member 500 can sequentially pass through the second mounting hole 520 and the first mounting hole 330 to lock the locking member 500, the second fixing member 300 and the first fixing member 200. Thus, by connecting the locking member 500 with the first fixing member 200 and the second fixing member 300, the problem of the locking member 500 falling off is avoided, and at the same time, the connection between the first fixing member 200 and the second fixing member 300 can be further enhanced.

[0080] Among them, for the convenience of installation, when the fastener 600 is a bolt, the second mounting hole 520 can be provided with a thread matching the bolt to enhance the tightness and stability of the connection between the locking member 500 and the bolt.

[0081] In an alternative embodiment, the second mounting groove 210 includes a plurality of transverse grooves 211. The plurality of transverse grooves 211 are uniformly and spaced along the height direction of the to-be-mounted member 10. The locking member 500 can be selectively inserted into the transverse groove 211 corresponding to the third mounting groove 310 to limit the relative positions of the first fixing member 200 and the second fixing member 300.

[0082] In the above embodiment, since the operator needs to place the assembled wall hanging board 100 on the to-be-mounted member 10 on the ground, by comparing the relative positions between the second fixing member 300 and the first fixing member 200, the second mounting groove 210 and the third mounting groove 310 are formed to ensure that the second mounting groove 210 and the third mounting groove 310 can correspond after the to-be-mounted member 10 is installed, which greatly increases the complexity of installation and the installation efficiency is low. Or when producing, the grooves are formed according to the size of the to-be-mounted member 10 and the installation height of the second fixing member 300. Different groove opening heights need to be set according to different sizes of the to-be-mounted member 10, and the production cost is high. Therefore, in this embodiment, the second mounting groove 210 includes a plurality of transverse grooves 211. The plurality of transverse grooves 211 are uniformly and spaced along the height direction of the to-be-mounted member 10. The locking member 500 can be selectively inserted into the transverse groove 211 corresponding to the third mounting groove 310 to limit the relative positions of the first fixing member 200 and the second fixing member 300. Thus, it is not necessary for the operator to perform additional grooving work, nor is it necessary to set different grooving heights according to different sizes of the to-be-mounted member 10, which greatly improves the applicability of the first fixing member 200 and the installation efficiency.

[0083] Among them, the spacing distance between the plurality of transverse grooves 211 can be set according to the common sizes of the to-be-mounted member 10, so as to be able to adapt to different sizes of the to-be-mounted member 10.

[0084] In addition, in an alternative embodiment, the second installation groove 210 further includes a vertical groove 212 which extends along the height direction of the to-be-installed member 10, and a plurality of horizontal grooves 211 are all communicated with the vertical groove 212, so as to facilitate the fastener 600 to pass through when installing the fastener 600.

[0085] In an alternative embodiment, the connecting member 400 includes a first fixed end 410, a connecting portion 420 and a second fixed end 430 which are connected in sequence. The cross-sectional dimension of the connecting portion 420 is smaller than the cross-sectional dimensions of the first fixed end 410 and the second fixed end 430. The first fixed end 410 is disposed in the first installation groove 110 to be hung on the hanging wall panel 100, and the second fixing member 300 is hung on the second fixed end 430.

[0086] In the above embodiment, since the connecting member 400 is hung on the ceiling through the first fixed end 410, therefore, the cross-sectional dimension of the first fixed end 410 is larger than that of the connecting portion 420, so that the first fixed end 410 can be clamped in the first installation groove 110 and will not come out of the first installation groove 110, resulting in the problem that the to-be-installed member 10 falls off.

[0087] Meanwhile, since the connecting member 400 is hung on the ceiling through the first fixed end 410, therefore, under the gravity of the to-be-installed member 10, the pressure is concentrated on the first fixed end 410 and the second fixed end 430. By making the cross-sectional dimensions of the first fixed end 410 and the second fixed end 430 larger than that of the connecting portion 420, the pressure can be dispersed, and the stability and durability of the connection can be enhanced.

[0088] In addition, since the first fixed end 410 and the second fixed end 430 are connected through the connecting portion 420, therefore, the first installation groove 110 can allow the connecting portion 420 to pass through, but cannot allow the first fixed end 410 to pass through, so as to facilitate the connection of the connecting portion 420. That is to say, the connecting portion 420 and the first installation groove 110 can be matched, or can be slightly smaller than the design dimension of the first installation groove 110, so as to realize the connection between the first fixed end 410 and the second fixed end 430.

[0089] Meanwhile, it should be noted that in this embodiment, the cross-sectional dimensions of the first fixed end 410 and the second fixed end 430 can be the same or different, and this embodiment does not impose any restrictions on this.

[0090] In an exemplary embodiment, the cross-sectional shapes and dimensions of the first fixed end 410 and the second fixed end 430 are the same, which is convenient for processing and production.

[0091] In an alternative embodiment, the first installation groove 110 includes a third installation hole 111 and a sliding groove 112 that communicate with each other. The third installation hole 111 is arranged to match the first fixed end 410, and the sliding groove 112 is arranged to match the connecting portion 420. The first fixed end 410 passes through the third installation hole 111 and is slidably arranged in the sliding groove 112. The connecting portion 420 passes through the sliding groove 112 and is connected to the second fixed end 430.

[0092] In the above embodiment, since the sliding groove 112 is arranged to match the connecting portion 420 and the first fixed end 410 is arranged to match the third installation hole 111, the first fixed end 410 can extend into the third installation hole 111 and slide in the sliding groove 112 without slipping out of the sliding groove 112. Thus, an operator can push the part to be installed 10 to make the connecting piece 400 slide in the sliding groove 112, and then adjust the installation position of the part to be installed 10 to ensure the installation accuracy.

[0093] It should be noted that the size of the third installation hole 111 can be slightly larger than that of the first fixed end 410 to avoid the problem that the first fixed end 410 cannot be inserted into the third installation hole 111 due to production errors. Correspondingly, the size of the sliding groove 112 can also be slightly larger than the size of the connecting portion 420 to facilitate the smooth sliding of the connecting portion 420 in the sliding groove 112.

[0094] In an alternative embodiment, a fourth installation groove 340 is formed in the second fixing member 300. The fourth installation groove 340 is arranged to match the connecting portion 420. The connecting portion 420 passes through the fourth installation groove 340 and is connected to the second fixed end 430. The second fixed end 430 abuts against the second fixing member 300.

[0095] In the above embodiment, since the fourth installation groove 340 is arranged to match the connecting portion 420, the fourth installation groove 340 can allow the connecting portion 420 to pass through. When the second fixing member 300 is hooked on the connecting piece 400, the lower surface of the second fixing member 300 abuts against the upper surface of the second fixed end 430, and the connecting portion 420 passes through the fourth installation groove 340 and is connected to the second fixed end 430, thereby ensuring the firmness of the connection between the connecting piece 400 and the second fixing member 300.

[0096] It should be noted that the size of the fourth installation groove 340 can be slightly larger than that of the connecting portion 420 to avoid the problem that the connecting portion 420 cannot extend into the fourth installation groove 340 due to production errors.

[0097] Meanwhile, to facilitate the operator in adjusting the position of the to-be-installed part 10, the fourth installation groove 340 can be set as a long groove, a "T"-shaped groove or a groove of other shapes, so that the connecting part 420 can slide in the fourth installation groove 340, facilitating the operator to adjust the position of the to-be-installed part 10.

[0098] In a second aspect, the present embodiment provides an air conditioner, including an air conditioner body and the plug-in installation structure according to any one of the first aspect, and the plug-in installation structure is arranged on the air conditioner body for connecting the air conditioner body to the ceiling.

[0099] Among them, the specific structure of the plug-in installation structure has been described in the above embodiments and will not be elaborated here.

[0100] The air conditioner provided in this embodiment includes an air conditioner body and the plug-in installation structure according to any one of the first aspect, and the plug-in installation structure is arranged on the air conditioner body for connecting the air conditioner body to the ceiling. Among them, in this embodiment, the air conditioner body is the to-be-installed part 10.

[0101] Among them, the plug-in installation structure includes a wall hanging board 100 for being installed on the ceiling, and a first installation groove 110 is formed on the wall hanging board 100; a first fixing member 200 for being installed on the to-be-installed part 10, and a second installation groove 210 is formed on the first fixing member 200; a connecting member 400, one end of the connecting member 400 extends into the first installation groove 110 and is hooked on the wall hanging board 100; a second fixing member 300 is hooked on the connecting member 400, and a third installation groove 310 is formed on the second fixing member 300; a locking member 500 is inserted into the second installation groove 210 through the third installation groove 310 on the second fixing member 300 to connect the first fixing member 200 and the second fixing member 300. During installation, the operator can install the first fixing member 200 on the to-be-installed part 10 on the ground, hook the connecting member 400 on the wall hanging board 100, hook the second fixing member 300 on the connecting member 400, and then install the wall hanging board 100 on the ceiling. At this time, since the weight of the wall hanging board 100 is relatively light, the operator can conveniently and closely attach and fix the wall hanging board 100 to the ceiling. After installing the wall hanging board 100 on the ceiling, the operator can lift the to-be-installed part 10 to abut against the wall hanging board 100, and then insert the locking member 500 into the second installation groove 210 on the first fixing member 200 through the third installation groove 310 on the second fixing member 300, so as to connect the first fixing member 200 and the second fixing member 300, realizing the installation of the to-be-installed part 10, thus eliminating the need for the operator to always hold up the to-be-installed part 10, reducing the installation difficulty and improving the installation efficiency.

[0102] Meanwhile, after hanging the to-be-installed part 10 on the wall hanging board 100, by adjusting the locking part 500 to make it penetrate only through the third installation groove 310, the installation height of the to-be-installed part 10 can be adjusted. After eliminating the gap between the to-be-installed part 10 and the wall hanging board 100, then make the locking part 500 penetrate through the second installation groove 210 to lock the relative positions of the second fixing part 300 and the first fixing part 200, and seamless installation of the to-be-installed part 10 can be achieved.

[0103] So far, the technical solution of the present invention has been described in conjunction with the preferred embodiments shown in the drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present invention is obviously not limited to these specific embodiments. Without departing from the principle of the present invention, those skilled in the art can make equivalent changes or replacements to the relevant technical features, and the technical solutions after these changes or replacements will fall within the protection scope of the present invention.

Claims

1. A plug-in installation structure, characterized in that, Comprising: A wall hanging board (100) for installation on a ceiling, and a first installation groove (110) is formed on the wall hanging board (100); A first fixing member (200) for installation on a member to be installed (10), and a second installation groove (210) is formed on the first fixing member (200); A connecting member (400), one end of the connecting member (400) extends into the first installation groove (110) and is hung on the wall hanging board (100); A second fixing member (300) is hung on the connecting member (400), and a third installation groove (310) is formed on the second fixing member (300); A locking member (500) is inserted into the second installation groove (210) through the third installation groove (310) to connect the first fixing member (200) and the second fixing member (300).

2. The plug-in mounting structure according to claim 1, wherein The locking member (500) is rotatably arranged on the second fixing member (300). By rotating the locking member (500), one end of the locking member (500) can be inserted into or withdrawn from the second installation groove (210) and the third installation groove (310).

3. The plug-in mounting structure according to claim 2, characterized in that, A rotating shaft (510) is arranged on the locking member (500), and a mounting seat (320) is arranged on the second fixing member (300). The rotating shaft (510) is inserted into the mounting seat (320) and rotates relative to the mounting seat (320).

4. The plug-in mounting structure according to any one of claims 1-3, characterized in that A first installation hole (330) is formed on the second fixing member (300), and a fastener (600) passes through the first installation hole (330) to connect the second fixing member (300) and the first fixing member (200).

5. The plug-in mounting structure according to claim 4, characterized in that, A second installation hole (520) is formed on the locking member (500), and the fastener (600) passes through the second installation hole (520) and the first installation hole (330) in sequence to connect the locking member (500), the second fixing member (300) and the first fixing member (200).

6. The plug-in mounting structure according to any one of claims 1 to 3, characterized in that The second installation groove (210) includes a plurality of transverse grooves (211). The plurality of transverse grooves (211) are evenly and spacedly arranged along the height direction of the member to be installed (10). The locking member (500) can be selectively inserted into the transverse groove (211) corresponding to the third installation groove (310) to limit the relative position between the first fixing member (200) and the second fixing member (300).

7. The plug-in installation structure according to any one of claims 1-3, characterized in that, The connecting member (400) includes a first fixing end (410), a connecting portion (420) and a second fixing end (430) connected in sequence. The cross-sectional dimension of the connecting portion (420) is smaller than the cross-sectional dimensions of the first fixing end (410) and the second fixing end (430). The first fixing end (410) is arranged in the first installation groove (110) to be hung on the wall hanging board (100), and the second fixing member (300) is hung on the second fixing end (430).

8. The plug-in mounting structure according to claim 7, characterized in that, The first installation groove (110) includes a third installation hole (111) and a sliding groove (112) that are communicated with each other. The third installation hole (111) is arranged to match the first fixed end (410), and the sliding groove (112) is arranged to match the connecting portion (420). The first fixed end (410) passes through the third installation hole (111) and is slidably arranged in the sliding groove (112). The connecting portion (420) passes through the sliding groove (112) and is connected to the second fixed end (430).

9. The plug-in installation structure according to claim 7, characterized in that, A fourth installation groove (340) is formed in the second fixing member (300). The fourth installation groove (340) is arranged to match the connecting portion (420). The connecting portion (420) passes through the fourth installation groove (340) and is connected to the second fixed end (430). The second fixed end (430) abuts against the second fixing member (300).

10. An air conditioner, characterized in that, It includes an air conditioner body and the plug-in installation structure according to any one of claims 1-9. The plug-in installation structure is arranged on the air conditioner body and is used to connect the air conditioner body to the ceiling.