Mounting structure of air conditioner and air conditioner
By using sliding connectors and slide chutes in the air conditioning installation structure, combined with the design of the hoisting member and abutment plate, the accumulation of dust and air pollution caused by the gap between the air conditioning shell and the wall top is solved, and a higher indoor air quality is achieved.
Patent Information
- Application Number
- CN202421235354.X
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-05-31
- Publication Date
- 2025-05-23
- Estimated Expiration
- 2034-05-31
AI Technical Summary
After the existing air conditioner is installed on the top of the wall, there is a gap between the top wall of the air conditioner shell and the top of the wall, resulting in accumulation of dust and air pollution.
The installation structure including a first mounting base, a second mounting base, abutment plate, a sliding connector and a sliding groove are adopted. Through the cooperation of the sliding connector and the sliding groove, the sliding connector is slidably connected in the sliding groove. The hoisting member drives the air conditioning shell to lift and lower the air conditioning shell through the abutment plate, shortening the gap between the air conditioning shell and the wall top.
It effectively avoids the gap between the top wall of the air conditioner shell and the top of the wall, prevents dust accumulation and improves the indoor air quality.
Smart Images

Figure CN222895209U_ABST
Abstract
Description
Technical Field
[0001] The present application belongs to the technical field of air conditioners, and specifically relates to an installation structure of an air conditioner and an air conditioner. Background Art
[0002] Air conditioner is an air conditioner, and air conditioner includes ceiling air conditioner, and the air conditioner shell of ceiling air conditioner is installed on the top of the indoor wall.
[0003] In the prior art, the air conditioner is hung on the wall top through a hanging plate. During installation, the hanging plate is first fixed on the wall top, and then the hooks on the hanging plate are hung together with the hanging holes on the top wall of the air conditioner, thereby achieving the hanging of the air conditioner.
[0004] After the air conditioner housing is hung on the hanging plate, since the hook is located between the wall top and the air conditioner housing, and the hook has a certain length, a gap is formed between the top wall of the air conditioner housing and the wall top. Utility Model Content
[0005] The present application provides an air conditioner installation structure and an air conditioner, which are used to solve the technical problem that after the existing air conditioner is installed on the wall top, there is a gap between the top wall of the air conditioner shell and the wall top.
[0006] In order to achieve the above objectives, the embodiments of the present application provide the following technical solutions:
[0007] A first aspect of an embodiment of the present application provides an air conditioner mounting structure, comprising a first mounting seat, a second mounting seat, an abutment plate, at least one sliding connection member, and at least one sliding groove;
[0008] The first mounting seat is used to be connected to a wall, one of the sliding connector and the slide groove is arranged on the first mounting seat, and the other is arranged on the air conditioner housing, and the sliding connector is slidably connected in the slide groove;
[0009] The second mounting seat is used to be connected to the wall, the abutment plate is arranged on the second mounting seat, the abutment plate is used to abut against the bottom wall of the air-conditioning housing, and at least one lifting member is arranged on the second mounting seat, and the lifting member is used to drive the air-conditioning housing to rise and fall through the abutment plate.
[0010] In the preferred technical solution of the above-mentioned air conditioner installation structure, the second mounting seat includes a second mounting plate, a bottom plate and a side plate, the second mounting plate is used to connect to the side wall of the wall, the second mounting plate, the bottom plate and the side plate are connected in sequence to form a mounting groove, the lifting member is arranged at the bottom of the mounting groove, the abutment plate is arranged in the mounting groove, and the lifting member abuts against a side of the abutment plate facing away from the air conditioner casing.
[0011] In the preferred technical solution of the installation structure of the above-mentioned air conditioner, the lifting part includes a threaded rod, a first limit baffle and a second limit baffle, the first limit baffle and the second limit baffle are both sleeved on the threaded rod, at least one through hole is provided on the bottom plate, and at least one threaded hole corresponding to the through hole is provided on the abutment plate, the threaded rod passes through the through hole and is threadedly connected to the threaded hole, and the bottom plate is located between the first limit baffle and the second limit baffle, and the first limit baffle and the second limit baffle are used to limit the movement of the threaded rod along the length direction of the through hole.
[0012] In the preferred technical solution of the above-mentioned air conditioner installation structure, the sliding connection member is arranged on the first installation seat, and the slide groove is integrally formed with the air conditioner housing;
[0013] The sliding connection member comprises a limit plate and a sliding plate, one end of the limit plate is connected to the first mounting seat, and the other end of the limit plate is connected to the sliding plate;
[0014] The slide groove includes a limit groove and a sliding groove which are interconnected. The limit plate is used to be arranged in the limit groove, and the height of the limit groove is greater than the height of the limit plate. The limit groove is used to limit the up and down movement of the limit plate. The sliding plate is used to be slidably connected in the sliding groove, and the extension direction of the sliding groove is the vertical direction.
[0015] In the preferred technical solution of the above-mentioned air conditioner installation structure, the first mounting seat includes a first mounting plate and a top plate, the first mounting plate is used to be connected to the side wall, the top plate is arranged on the first mounting plate, one side of the top plate is used to abut against the top wall in the wall body, and the other side of the top plate is used to abut against the top wall of the air conditioner casing.
[0016] In the preferred technical solution of the above-mentioned air conditioner installation structure, the first installation plate includes a first sub-plate and a second sub-plate, the first sub-plate and the second sub-plate are connected to form an angle, and the first sub-plate and the second sub-plate are respectively used to connect to two adjacent side walls;
[0017] The second mounting plate includes a third sub-plate and a fourth sub-plate, the third sub-plate and the fourth sub-plate are connected to form an angle, and the third sub-plate and the fourth sub-plate are respectively used to be connected to two adjacent side walls.
[0018] In the preferred technical solution of the installation structure of the above-mentioned air conditioner, the installation groove includes a first sub-groove and a second sub-groove that are connected to each other, the first sub-groove is arranged on the third sub-board, and the second sub-groove is arranged on the fourth sub-board, and the abutment plate includes a first abutment plate and a second abutment plate, the first abutment plate is arranged in the first sub-groove, and the second abutment plate is arranged in the second sub-groove.
[0019] In the preferred technical solution of the installation structure of the above-mentioned air conditioner, the top panel includes a fifth sub-panel and a sixth sub-panel, the fifth sub-panel is arranged on the first sub-panel, the sixth sub-panel is arranged on the second sub-panel, and the fifth sub-panel and the sixth sub-panel are interconnected.
[0020] In the preferred technical solution of the above-mentioned air conditioner installation structure, it also includes a gasket, which is used to be arranged on the top wall of the air conditioner housing.
[0021] A second aspect of an embodiment of the present application provides an air conditioner, comprising an air conditioner housing, and also comprising an air conditioner mounting structure as described in any one of the above, wherein the air conditioner housing is mounted on a wall through the air conditioner mounting structure.
[0022] The present application provides an air conditioner mounting structure and an air conditioner, wherein the air conditioner mounting structure comprises a first mounting seat, a second mounting seat, an abutment plate, a sliding connection member and a slide groove, wherein one of the sliding connection member and the slide groove is arranged on the first mounting seat, and the other is used to be arranged on the air conditioner housing, and the sliding connection member is slidably connected in the slide groove. The abutment plate is arranged on the second mounting seat, and the abutment plate is used to abut against the bottom wall of the air conditioner housing, and at least one lifting member is arranged on the second mounting seat, and the lifting member is used to drive the air conditioner housing to rise and fall through the abutment plate. When installing the air conditioner, first fix the first mounting seat and the second mounting seat on the wall; then slide the side wall of the air conditioner shell onto the first mounting seat through the sliding connection piece and the sliding groove, and abut the bottom wall of the air conditioner shell against the abutment plate on the second mounting seat; finally, by adjusting the jacking piece, the jacking piece drives the abutment plate to move upward, thereby driving the air conditioner shell to move along the extension direction of the sliding groove, that is, driving the air conditioner shell to move upward, thereby shortening the gap between the top wall of the air conditioner shell and the top of the wall. When the air conditioner shell moves up to a certain position, the top wall of the air conditioner shell can be abutted against the top of the wall, thereby making there no gap between the top wall of the air conditioner shell and the top of the wall, thereby avoiding the formation of a large amount of dust accumulation between the top wall of the air conditioner shell and the top of the wall, avoiding the large amount of dust accumulated in the gap from being scattered into the room due to the vibration of the air conditioner shell or the natural wind outside the window blowing into the room, thereby improving the indoor air quality. BRIEF DESCRIPTION OF THE DRAWINGS
[0023] The accompanying drawings, which are incorporated in and constitute a part of this specification, illustrate embodiments consistent with the present application and, together with the description, serve to explain the principles of the present application.
[0024] Figure 1 A schematic diagram of the structure of the air conditioner installation structure and the air conditioner connection provided in the embodiment of the present application;
[0025] Figure 2 A schematic diagram of a structure in which an air conditioner provided in an embodiment of the present application is installed on a wall;
[0026] Figure 3 for Figure 2 A schematic diagram of the enlarged structure at A in the middle;
[0027] Figure 4 A schematic structural diagram of a first mounting seat in the mounting structure of an air conditioner provided in an embodiment of the present application;
[0028] Figure 5 A schematic diagram of the structure in which the second mounting seat is connected to the first abutment plate in the mounting structure of the air conditioner provided in an embodiment of the present application;
[0029] Figure 6 A schematic structural diagram of a second mounting base in the mounting structure of an air conditioner provided in an embodiment of the present application;
[0030] Figure 7 for Figure 6 A schematic diagram of the enlarged structure at B in the middle;
[0031] Figure 8 A schematic diagram of the structure of the air conditioner connected to the second mounting base provided in the embodiment of the present application;
[0032] Fig. 9 A schematic structural diagram of a jacking member in an installation structure of an air conditioner provided in an embodiment of the present application;
[0033] Fig.10 Another structural schematic diagram of the air conditioner provided in an embodiment of the present application being connected to a second mounting base;
[0034] Fig.11 A schematic diagram of the structure of the air conditioner and the liner connected to each other provided in the embodiment of the present application;
[0035] Fig.12 A schematic structural diagram of the connection between a sliding connector and a slide groove in the installation structure of an air conditioner provided in an embodiment of the present application.
[0036] Description of reference numerals:
[0037] 100 - first mounting seat; 110 - first mounting plate; 111 - first sub-plate; 112 - second sub-plate; 120 - top plate; 121 - fifth sub-plate; 122 - sixth sub-plate;
[0038] 200 - second mounting seat; 210 - second mounting plate; 211 - third sub-plate; 212 - fourth sub-plate; 220 - bottom plate; 230 - side plate;
[0039] 300-sliding connector; 310-limiting plate; 320-sliding plate;
[0040] 400-slideway; 410-limiting groove; 420-slideway;
[0041] 500-abutment plate; 510-first abutment plate; 520-second abutment plate; 530-threaded hole;
[0042] 600-installation slot; 610-first sub-slot; 620-second sub-slot; 630-through hole; 640-limiting groove; 650-installation opening;
[0043] 700-lifting member; 710-threaded rod; 720-first limit baffle; 730-second limit baffle;
[0044] 800-wall; 810-side wall; 820-top wall;
[0045] 900-Padding;
[0046] 1000-Air conditioning housing.
[0047] The above drawings have shown clear embodiments of the present application, which will be described in more detail later. These drawings and text descriptions are not intended to limit the scope of the present application in any way, but to illustrate the concept of the present application to those skilled in the art by referring to specific embodiments. DETAILED DESCRIPTION
[0048] In order to make the purpose, technical solutions and advantages of this application clearer, the technical solutions in this application will be clearly and completely described below in conjunction with the drawings in this application. Obviously, the described embodiments are part of the embodiments of this application, not all of the embodiments. Based on the embodiments in this application, all other embodiments obtained by ordinary technicians in this field without creative work are within the scope of protection of this application.
[0049] The terms "first", "second", "third", "fourth", etc. (if any) in the specification and claims of this application and the above-mentioned drawings are used to distinguish similar objects, and are not necessarily used to describe a specific order or sequence. It should be understood that the numbers used in this way can be interchanged where appropriate, so that the embodiments of the present application described herein can be implemented in an order other than those illustrated or described herein, for example.
[0050] In the embodiments of the present application, the words "exemplary" or "for example" are used to indicate examples, illustrations or descriptions. Any embodiment or design described as "exemplary" or "for example" in the present application should not be interpreted as being more preferred or more advantageous than other embodiments or designs. Specifically, the use of words such as "exemplary" or "for example" is intended to present related concepts in a specific way.
[0051] As described in the background art, the air conditioner includes a ceiling-mounted air conditioner, and an air conditioner casing of the ceiling-mounted air conditioner is installed on the top of a wall in a room.
[0052] In the prior art, the air conditioner housing is hung on the wall top through a hanging plate. During installation, the hanging plate is first fixed on the wall top, and then the hooks on the hanging plate are hung together with the hanging holes on the top wall of the air conditioner, thereby hanging the air conditioner.
[0053] After the air-conditioning shell is hung on the hanging plate, since the hook is located between the wall top and the air-conditioning shell, and the hook has a certain length, and the air-conditioning shell will sink a part after being hung on the hook, which causes a gap between the top wall of the air-conditioning shell and the wall top. Since the gap is large, it greatly affects the appearance, and a large amount of dust is easily accumulated in the gap. After the air-conditioning is started, the dust in the gap will fall off due to the vibration of the air-conditioning, causing indoor air pollution, and when the window is opened and the natural wind from the outside blows into the room, the dust in the gap will be easily blown off, causing the dust to be scattered into the indoor air and pollute the indoor air.
[0054] In order to solve the technical problem that after the existing air conditioner is installed on the top of the wall, there is a gap between the top wall of the air conditioner housing and the top of the wall, the present application proposes an air conditioner installation structure and an air conditioner, the air conditioner installation structure includes a first mounting seat, a second mounting seat, an abutment plate, at least one sliding connection member and at least one slide groove. The first mounting seat is used to connect with the wall, one of the sliding connection member and the slide groove is arranged on the first mounting seat, and the other is used to be arranged on the air conditioner housing, and the sliding connection member is slidably connected in the slide groove. The second mounting seat is used to connect with the wall, the abutment plate is arranged on the second mounting seat, the abutment plate is used to abut with the bottom wall of the air conditioner housing, and at least one lifting member is arranged on the second mounting seat, and the lifting member is used to drive the air conditioner housing to rise and fall through the abutment plate.
[0055] When installing the air conditioner, first fix the first mounting seat and the second mounting seat on the wall; then slide the side wall of the air conditioner shell onto the first mounting seat through the sliding connection piece and the sliding groove, and abut the bottom wall of the air conditioner shell against the abutment plate on the second mounting seat; finally, by adjusting the jacking piece, the jacking piece drives the abutment plate to move upward, thereby driving the air conditioner shell to move along the extension direction of the sliding groove, that is, driving the air conditioner shell to move upward, thereby shortening the gap between the top wall of the air conditioner shell and the top of the wall. When the air conditioner shell moves up to a certain position, the top wall of the air conditioner shell can be abutted against the top of the wall, thereby making there no gap between the top wall of the air conditioner shell and the top of the wall, thereby avoiding the formation of a large amount of dust accumulation between the top wall of the air conditioner shell and the top of the wall, avoiding the large amount of dust accumulated in the gap from being scattered into the room due to the vibration of the air conditioner shell or the natural wind outside the window blowing into the room, thereby improving the indoor air quality.
[0056] The following specific embodiments are combined with the accompanying drawings to describe the technical solution of the application in detail. The following specific embodiments can be combined with each other, and the same or similar concepts or processes may not be described in detail in some embodiments.
[0057] Reference Figures 1 to 12 As shown, Figure 1 A schematic diagram of the structure of the air conditioner installation structure and the air conditioner connection provided in the embodiment of the present application; Figure 2 A schematic diagram of a structure in which an air conditioner provided in an embodiment of the present application is installed on a wall; Figure 3 for Figure 2 A schematic diagram of the enlarged structure at A in the middle; Figure 4 A schematic structural diagram of a first mounting seat in the mounting structure of an air conditioner provided in an embodiment of the present application; Figure 5 A schematic diagram of the structure in which the second mounting seat is connected to the first abutment plate in the mounting structure of the air conditioner provided in an embodiment of the present application; Figure 6 A schematic structural diagram of a second mounting base in the mounting structure of an air conditioner provided in an embodiment of the present application; Figure 7 for Figure 6 A schematic diagram of the enlarged structure at B in the middle; Figure 8 A schematic diagram of the structure of the air conditioner connected to the second mounting base provided in the embodiment of the present application; Fig. 9 A schematic structural diagram of a jacking member in an installation structure of an air conditioner provided in an embodiment of the present application; Fig.10 Another structural schematic diagram of the air conditioner provided in an embodiment of the present application being connected to a second mounting base; Fig.11 A schematic diagram of the structure of the air conditioner and the liner connected to each other provided in the embodiment of the present application; Fig.12 A schematic structural diagram of the connection between a sliding connector and a slide groove in the installation structure of an air conditioner provided in an embodiment of the present application.
[0058] Reference Figures 1 to 4 As shown, an embodiment of the present application provides a mounting structure of an air conditioner, including a first mounting seat 100 , a second mounting seat 200 , an abutment plate 500 , at least one sliding connection member 300 and at least one slide groove 400 .
[0059] The first mounting seat 100 is used to connect with the wall 800 , one of the sliding connector 300 and the slide groove 400 is set on the first mounting seat 100 , and the other is used to be set on the air conditioning housing 1000 , and the sliding connector 300 is slidably connected in the slide groove 400 .
[0060] The second mounting seat 200 is used to be connected to the wall 800, and the abutment plate 500 is arranged on the second mounting seat 200, and the abutment plate 500 is used to abut against the bottom wall of the air-conditioning housing 1000. At least one lifting member 700 is arranged on the second mounting seat 200, and the lifting member 700 is used to drive the air-conditioning housing 1000 to rise and fall through the abutment plate 500.
[0061] In the installation structure of the air conditioner of the present application, the first mounting seat 100 and the second mounting seat 200 are connected to the wall 800, and the connection method can be bolt connection, welding, clamping, etc. For example, the first mounting seat 100 and the second mounting seat 200 are fixed to the wall 800 by expansion bolts.
[0062] One of the sliding connector 300 and the slide groove 400 is disposed on the first mounting seat 100. In this embodiment, Fig.12 As shown, the sliding connector 300 is arranged on the first mounting seat 100, and the slide groove 400 is arranged on the air conditioning housing 1000. The sliding connector 300 is detachably connected in the slide groove 400 and can move along the extension direction of the slide groove 400. Because the lifting member 700 drives the air conditioning housing 1000 to rise and fall through the abutment plate 500, the extension direction of the slide groove 400 is the vertical direction. Since the sliding connector 300 is arranged on the first mounting seat 100 and the first mounting seat 100 is fixed on the wall 800, the first mounting seat 100 is fixed, that is, the slide groove 400 can move relative to the sliding connector 300 in the vertical direction, so that the air conditioning housing 1000 can move up and down along the extension direction of the slide groove 400.
[0063] The specific sliding connection member 300 can be a slider, a sliding hook, etc. In this embodiment, Figure 4 and Fig.12 As shown, the sliding connector 300 is an inverted L-shaped hook, which can be hooked in the slide groove 400 and slide up and down in the slide groove 400.
[0064] It should be noted that the sliding connection member 300 may be other sliding connection structures, and it is only necessary to ensure that the sliding connection member 300 can move in the sliding groove 400 .
[0065] Because the slide groove 400 in this embodiment is disposed on the air-conditioning housing 1000 , in this embodiment, the slide groove 400 and the air-conditioning housing 1000 can be integrally formed.
[0066] The second mounting seat 200 is provided with an abutment plate 500 and at least one lifting member 700. Figure 3 , Figure 5 and Figure 6 As shown, the lifting member 700 is connected to the abutment plate 500, and the lifting member 700 can drive the abutment plate 500 to move up and down. When the bottom wall of the air-conditioning casing 1000 abuts against the abutment plate 500, the air-conditioning casing 1000 can be moved along the extension direction of the slide groove 400 by adjusting the telescopic height of the lifting member 700, thereby driving the air-conditioning casing 1000 to rise and fall, and the distance between the air-conditioning casing 1000 and the wall top can be adjusted, thereby shortening the gap between the top wall of the air-conditioning casing 1000 and the wall top.
[0067] The lifting member 700 may be a telescopic member, such as a telescopic rod.
[0068] When installing an air conditioner using the air conditioner mounting structure of the present application, first fix the first mounting seat 100 and the second mounting seat 200 on the wall 800; then, the side wall of the air conditioner housing 1000 is slidably connected to the first mounting seat 100 through the sliding connection member 300 and the slide groove 400, and the bottom wall of the air conditioner housing 1000 is abutted against the abutment plate 500 on the second mounting seat 200; finally, by adjusting the lifting member 700, the lifting member 700 drives the abutment plate 500 to move upward, thereby driving the air conditioner housing 1000 to move along the extension direction of the slide groove 400 , that is, driving the air-conditioning casing 1000 to move upward, thereby shortening the gap between the top wall of the air-conditioning casing 1000 and the wall top. When the air-conditioning casing 1000 moves up to a certain position, the top wall of the air-conditioning casing 1000 can be made to abut against the wall top, so that there is no gap between the top wall of the air-conditioning casing 1000 and the wall top, thereby avoiding the formation of a large amount of dust accumulation between the top wall of the air-conditioning casing 1000 and the wall top, and avoiding the large amount of dust accumulated in the gap from being scattered into the room due to the vibration of the air-conditioning casing 1000 or the natural wind outside the window blowing into the room, thereby improving the indoor air quality.
[0069] In other embodiments, the second mounting seat 200 includes a second mounting plate 210, a bottom plate 220 and a side plate 230, the second mounting plate 210 is used to connect to the side wall 810 of the wall 800, the second mounting plate 210, the bottom plate 220 and the side plate 230 are connected in sequence to form a mounting groove 600, the lifting member 700 is arranged at the bottom of the mounting groove 600, the abutment plate 500 is arranged in the mounting groove 600, and the lifting member 700 abuts against the side of the abutment plate 500 facing away from the air-conditioning casing 1000.
[0070] In this embodiment, the second mounting seat 200 includes a second mounting plate 210, a bottom plate 220 and a side plate 230. The second mounting plate 210, the bottom plate 220 and the side plate 230 are connected in sequence to form a mounting groove 600. The abutment plate 500 is arranged in the mounting groove 600, and the lifting member 700 is arranged at the bottom of the mounting groove 600. Because it is necessary to ensure that the abutment plate 500 abuts against the bottom wall of the air-conditioning housing 1000, the notch direction of the mounting groove 600 can be set to face the bottom wall of the air-conditioning housing 1000, that is, the notch direction of the mounting groove 600 is upward, because the lifting member 700 abuts against the side of the abutment plate 500 facing away from the air-conditioning housing 1000, the lifting member 700 can drive the abutment plate 500 to move up and down, thereby driving the air-conditioning housing 1000 to move up and down.
[0071] In other embodiments, the lifting member 700 includes a threaded rod 710, a first limit baffle 720 and a second limit baffle 730, the first limit baffle 720 and the second limit baffle 730 are both sleeved on the threaded rod 710, at least one through hole 630 is provided on the base plate 220, and at least one threaded hole 530 corresponding to the through hole 630 is provided on the abutment plate 500, the threaded rod 710 passes through the through hole 630 and is threadedly connected to the threaded hole 530, and the base plate 220 is located between the first limit baffle 720 and the second limit baffle 730, and the first limit baffle 720 and the second limit baffle 730 are used to limit the movement of the threaded rod 710 along the length direction of the through hole 630.
[0072] In this embodiment, if Figure 6 , Figure 7 , Figure 8 and Fig. 9 As shown, after the threaded rod 710 is installed in the through hole 630, the first limit baffle 720 and the second limit baffle 730 limit the movement of the threaded rod 710 along the length direction of the through hole 630. Because the threaded rod 710 is threadedly connected to the threaded hole 530 on the abutment plate 500, when the threaded rod 710 is rotated, the threaded rod 710 cannot move up and down, thereby driving the abutment plate 500 to move up and down, thereby driving the air-conditioning housing 1000 to rise and fall.
[0073] It should be noted that the threaded rod 710 , the first limiting baffle 720 and the second limiting baffle 730 can be integrally formed.
[0074] In one embodiment, the sliding connector 300 is disposed on the first mounting seat 100, and the slide groove 400 is integrally formed with the air conditioner housing 1000;
[0075] The sliding connection member 300 includes a limiting plate 310 and a sliding plate 320. One end of the limiting plate 310 is connected to the first mounting seat 100, and the other end of the limiting plate 310 is connected to the sliding plate 320.
[0076] The slide groove 400 includes a limit groove 410 and a sliding groove 420 which are interconnected. The limit plate 310 is used to be set in the limit groove 410, and the height of the limit groove 410 is greater than the height of the limit plate 310. The limit groove 410 is used to limit the up and down movement of the limit plate 310. The sliding plate 320 is used to be slidably connected in the sliding groove 420, and the extension direction of the sliding groove 420 is the vertical direction.
[0077] In this embodiment, if Figure 4 , Fig.10 and Fig.12As shown, the limit plate 310 and the sliding plate 320 are connected to form a hook shape. During installation, the hook shape formed by the connection of the limit plate 310 and the sliding plate 320 is inserted into the slide groove 400, so that the sliding plate 320 is located in the sliding groove 420, and the limit plate 310 is located in the limit groove 410. Because the height of the limit groove 410 is greater than the height of the limit plate 310, the limit plate 310 can move up and down, thereby driving the sliding plate 320 to move along the extension direction of the sliding groove 420. When the lifting member 700 drives the air-conditioning casing 1000 to rise and fall through the abutment plate 500, because the slide groove 400 is set on the air-conditioning casing 1000, the slide groove 420 can move up and down along its own extension direction. When it moves to the moving position, the limit groove 410 can limit the limit plate 310, so that the air-conditioning casing 1000 can be raised and lowered within a certain range, which can prevent the air-conditioning casing 1000 from falling or causing deformation or damage to the top wall of the air-conditioning casing 1000 when it rises too much.
[0078] In other possible embodiments, the first mounting seat 100 includes a first mounting plate 110 and a top plate 120, the first mounting plate 110 is used to be connected to the side wall 810, the top plate 120 is arranged on the first mounting plate 110, one side of the top plate 120 is used to abut against the top wall 820 in the wall 800, and the other side of the top plate 120 is used to abut against the top wall of the air-conditioning housing 1000.
[0079] In this embodiment, by setting the top plate 120 and abutting the top plate 120 against the top of the wall, when the lifting member 700 adjusts the air-conditioning casing 1000 to move upward, the air-conditioning casing 1000 can be prevented from directly abutting against the top of the wall, thereby avoiding damage to the top of the wall or deformation of the top of the air-conditioning casing 1000.
[0080] In another embodiment, if Figure 4 , Figure 5 and Figure 6 As shown, the first mounting plate 110 includes a first sub-plate 111 and a second sub-plate 112 . The first sub-plate 111 and the second sub-plate 112 are connected to form an angle. The first sub-plate 111 and the second sub-plate 112 are respectively used to connect to two adjacent side walls 810 .
[0081] The second mounting plate 210 includes a third sub-plate 211 and a fourth sub-plate 212 . The third sub-plate 211 and the fourth sub-plate 212 are connected to form an angle. The third sub-plate 211 and the fourth sub-plate 212 are respectively used to connect to two adjacent side walls 810 .
[0082] In this embodiment, the corner air conditioner is installed at the corner. When the existing corner air conditioner is installed at the corner, the gap between the corner air conditioner housing 1000 and the wall is large. Since the first mounting plate 110 of this embodiment includes a first sub-plate 111 and a second sub-plate 112, the first sub-plate 111 and the second sub-plate 112 are connected to form an angle, and this angle is the same as the corner, when the corner air conditioner is installed, one side wall of the corner air conditioner can be installed on the first sub-plate 111, and the other side wall of the corner air conditioner can be installed on the second sub-plate 112. In order to install more stably, sliding connectors 300 can be provided on both the first sub-plate 111 and the second sub-plate 112, and slide grooves 400 can be provided on both side walls of the corner air conditioner.
[0083] Similarly, the second mounting plate 210 includes a third sub-plate 211 and a fourth sub-plate 212 . The third sub-plate 211 and the fourth sub-plate 212 are connected to form an angle, which is the same as the wall angle.
[0084] In some possible embodiments, the mounting groove 600 includes a first sub-groove 610 and a second sub-groove 620 that are interconnected, the first sub-groove 610 is disposed on the third sub-plate 211, and the second sub-groove 620 is disposed on the fourth sub-plate 212, and the abutment plate 500 includes a first abutment plate 510 and a second abutment plate 520, the first abutment plate 510 is disposed in the first sub-groove 610, and the second abutment plate 520 is disposed in the second sub-groove 620.
[0085] In this embodiment, the first abutment plate 510 and the second abutment plate 520 abut against the bottom wall of the air-conditioning housing 1000 at the same time, thereby ensuring the stability of the force applied to the air-conditioning housing 1000.
[0086] In one embodiment, the top plate 120 includes a fifth sub-plate 121 and a sixth sub-plate 122 . The fifth sub-plate 121 is disposed on the first sub-plate 111 , the sixth sub-plate 122 is disposed on the second sub-plate 112 , and the fifth sub-plate 121 and the sixth sub-plate 122 are connected to each other.
[0087] In this embodiment, if Figure 1 and Figure 4 As shown, for the corner air conditioner, this embodiment sets the top plate 120 to the fifth sub-plate 121 and the sixth sub-plate 122. Through the simultaneous action of the fifth sub-plate 121 and the sixth sub-plate 122, the force on the corner air conditioner is more balanced, preventing the corner air conditioner from tilting.
[0088] In other possible embodiments, a gasket 900 is further included, and the gasket 900 is used to be arranged on the top wall of the air-conditioning housing 1000 .
[0089] In this embodiment, if Fig.11 and Fig.12As shown, by arranging a gasket 900 between the top wall of the air-conditioning housing 1000 and the wall top, a gap can be avoided between the top wall of the air-conditioning housing 1000 and the wall top, and dust accumulation on the top wall of the air-conditioning housing 1000 can be avoided. In addition, the gasket 900 can protect the top wall of the air-conditioning housing 1000 and prevent the air-conditioning housing 1000 from being squeezed and deformed.
[0090] In a possible embodiment, it also includes an installation port 650, which is connected to the through hole 630. The diameter of the through hole 630 is smaller than the diameter of the first limiting plate 310 and the diameter of the second limiting baffle 730, respectively. The diameter of the installation port 650 is larger than the diameter of the first limiting plate 310 and the diameter of the second limiting baffle 730, respectively. The installation port 650 is used for the threaded rod 710 to pass into the through hole 630.
[0091] In this embodiment, if Figure 6 and Figure 7 As shown, in order to facilitate the installation of the threaded rod 710 in the through hole 630, an installation opening 650 is also provided in the present embodiment. After the threaded rod 710 is inserted into the installation opening 650, it is inserted into the through hole 630 through the installation opening 650, thereby achieving the installation of the threaded rod 710 in the through hole 630.
[0092] In other possible embodiments, a limiting groove 640 is provided at one end of the through hole 630 facing the abutting plate 500 , and the second limiting baffle 730 is disposed in the limiting groove 640 .
[0093] In this embodiment, the limiting groove 640 limits the second limiting baffle 730 and allows the abutment plate 500 to abut against the bottom wall of the installation groove 600, so that the abutment plate 500 is fixed more stably and the threaded rod 710 can be prevented from shaking.
[0094] A second aspect of an embodiment of the present application provides an air conditioner, including an air conditioner housing 1000 and the above-mentioned air conditioner mounting structure, wherein the air conditioner housing 1000 is mounted on a wall 800 through the air conditioner mounting structure.
[0095] Since the air conditioner of the present application is installed on the wall 800 through the installation structure of the air conditioner, the installation structure of the air conditioner includes a first mounting seat 100, a second mounting seat 200, an abutment plate 500, at least one sliding connection member 300 and at least one slide groove 400. The first mounting seat 100 is used to connect with the wall 800, one of the sliding connection member 300 and the slide groove 400 is arranged on the first mounting seat 100, and the other is used to be arranged on the air conditioner housing 1000, and the sliding connection member 300 is slidably connected in the slide groove 400. The second mounting seat 200 is used to connect with the wall 800, the abutment plate 500 is arranged on the second mounting seat 200, and the abutment plate 500 is used to abut against the bottom wall of the air conditioner housing 1000, and at least one lifting member 700 is arranged on the second mounting seat 200, and the lifting member 700 is used to drive the air conditioner housing 1000 to rise and fall through the abutment plate 500.
[0096] When installing the air conditioner, first fix the first mounting seat 100 and the second mounting seat 200 on the wall 800; then, slide the side wall of the air conditioner housing 1000 onto the first mounting seat 100 through the sliding connection member 300 and the slide groove 400, and abut the bottom wall of the air conditioner housing 1000 against the abutment plate 500 on the second mounting seat 200; finally, adjust the lifting member 700 so that the lifting member 700 drives the abutment plate 500 to move upward, thereby driving the air conditioner housing 1000 to move along the extension direction of the slide groove 400, that is, driving the air conditioner housing 1000 to move upward. The air-conditioning housing 1000 moves upward, thereby shortening the gap between the top wall of the air-conditioning housing 1000 and the top of the wall. When the air-conditioning housing 1000 moves up to a certain position, the top wall of the air-conditioning housing 1000 can be made to abut against the top of the wall, thereby eliminating the gap between the top wall of the air-conditioning housing 1000 and the top of the wall. This can avoid a large amount of dust accumulation between the top wall of the air-conditioning housing 1000 and the top of the wall, and avoid a large amount of dust accumulated in the gap from being scattered into the room due to the vibration of the air-conditioning housing 1000 or the natural wind outside the window blowing into the room, thereby improving the indoor air quality.
[0097] So far, the technical solution of the present application has been described in conjunction with the preferred embodiments shown in the accompanying drawings. However, it is easy for those skilled in the art to understand that the protection scope of the present application is obviously not limited to these specific embodiments, and the above embodiments are only used to illustrate the technical solution of the present application rather than to limit it. Although the present application has been described in detail with reference to the aforementioned embodiments, those skilled in the art should understand that they can still modify the technical solutions described in the aforementioned embodiments, or replace some or all of the technical features therein by equivalents. However, these modifications or replacements do not cause the essence of the corresponding technical solutions to deviate from the scope of the technical solutions of the embodiments of the present application.
Claims
1. An air conditioner installation structure, characterized in that: It comprises a first mounting seat (100), a second mounting seat (200), an abutment plate (500), at least one sliding connection member (300) and at least one sliding groove (400); The first mounting seat (100) is used to be connected to a wall (800), one of the sliding connector (300) and the slide groove (400) is arranged on the first mounting seat (100), and the other is used to be arranged on the air conditioner housing (1000), and the sliding connector (300) is slidably connected in the slide groove (400); The second mounting seat (200) is used for connecting with a wall (800); the abutment plate (500) is arranged on the second mounting seat (200); the abutment plate (500) is used for abutting with a bottom wall of the air-conditioning casing (1000); at least one lifting member (700) is arranged on the second mounting seat (200); the lifting member (700) is used for driving the air-conditioning casing (1000) to rise and fall through the abutment plate (500).
2. The air conditioner installation structure according to claim 1, characterized in that: The second mounting seat (200) comprises a second mounting plate (210), a bottom plate (220) and a side plate (230); the second mounting plate (210) is used to be connected to the side wall (810) of the wall (800); the second mounting plate (210), the bottom plate (220) and the side plate (230) are sequentially connected to form a mounting groove (600); the lifting member (700) is arranged at the bottom of the mounting groove (600); the abutment plate (500) is arranged in the mounting groove (600), and the lifting member (700) abuts against a side of the abutment plate (500) facing away from the air-conditioning housing (1000).
3. The air conditioner installation structure according to claim 2, characterized in that: The lifting member (700) comprises a threaded rod (710), a first limit baffle (720) and a second limit baffle (730); the first limit baffle (720) and the second limit baffle (730) are both sleeved on the threaded rod (710); the bottom plate (220) is provided with at least one through hole (630); the abutment plate (500) is provided with at least one threaded hole (530) corresponding to the through hole (630); the threaded rod (710) passes through the through hole (630) and is threadedly connected to the threaded hole (530); the bottom plate (220) is located between the first limit baffle (720) and the second limit baffle (730); the first limit baffle (720) and the second limit baffle (730) are used to limit the movement of the threaded rod (710) along the length direction of the through hole (630).
4. The air conditioner installation structure according to claim 1, characterized in that: The sliding connection member (300) is arranged on the first mounting seat (100), and the sliding groove (400) is integrally formed with the air conditioner housing (1000); The sliding connection member (300) comprises a limiting plate (310) and a sliding plate (320), one end of the limiting plate (310) is connected to the first mounting seat (100), and the other end of the limiting plate (310) is connected to the sliding plate (320); The slide groove (400) comprises a limiting groove (410) and a sliding groove (420) which are interconnected. The limiting plate (310) is used to be arranged in the limiting groove (410), and the height of the limiting groove (410) is greater than the height of the limiting plate (310). The limiting groove (410) is used to limit the upward and downward movement of the limiting plate (310). The sliding plate (320) is used to be slidably connected in the sliding groove (420), and the extension direction of the sliding groove (420) is the vertical direction.
5. The air conditioner installation structure according to claim 2 or 3, characterized in that: The first mounting seat (100) comprises a first mounting plate (110) and a top plate (120); the first mounting plate (110) is used to be connected to the side wall (810); the top plate (120) is arranged on the first mounting plate (110); one surface of the top plate (120) is used to abut against a top wall (820) in the wall body (800); and the other surface of the top plate (120) is used to abut against a top wall of the air-conditioning housing (1000).
6. The air conditioner installation structure according to claim 5, characterized in that: The first mounting plate (110) comprises a first sub-plate (111) and a second sub-plate (112), the first sub-plate (111) and the second sub-plate (112) being connected to form an angle, and the first sub-plate (111) and the second sub-plate (112) being respectively used to be connected to two adjacent side walls (810); The second mounting plate (210) comprises a third sub-plate (211) and a fourth sub-plate (212), the third sub-plate (211) and the fourth sub-plate (212) being connected to form an angle, and the third sub-plate (211) and the fourth sub-plate (212) being respectively used to connect to two adjacent side walls (810).
7. The air conditioner installation structure according to claim 6, characterized in that: The mounting groove (600) comprises a first sub-groove (610) and a second sub-groove (620) which are interconnected, the first sub-groove (610) being arranged on the third sub-plate (211), and the second sub-groove (620) being arranged on the fourth sub-plate (212), and the abutment plate (500) comprises a first abutment plate (510) and a second abutment plate (520), the first abutment plate (510) being arranged in the first sub-groove (610), and the second abutment plate (520) being arranged in the second sub-groove (620).
8. The air conditioner installation structure according to claim 6, characterized in that: The top plate (120) comprises a fifth sub-plate (121) and a sixth sub-plate (122); the fifth sub-plate (121) is arranged on the first sub-plate (111), the sixth sub-plate (122) is arranged on the second sub-plate (112), and the fifth sub-plate (121) and the sixth sub-plate (122) are connected to each other.
9. The air conditioner installation structure according to claim 1, characterized in that: It also includes a gasket (900), and the gasket (900) is used to be arranged on the top wall of the air conditioning housing (1000).
10. An air conditioner, comprising an air conditioner housing (1000), characterized in that: It also comprises an air conditioner mounting structure according to any one of claims 1 to 9, wherein the air conditioner housing (1000) is mounted on a wall (800) via the air conditioner mounting structure.