Height-adjustable mounting structure and air conditioner
Through the height-adjustable installation structure and the cooperation of the wall-mounted plate, rotating parts and locking parts, the problem of dust accumulation caused by gaps during the installation of the ceiling unit is solved, and a stable installation effect is achieved.
Patent Information
- Application Number
- CN202422119244.3
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-29
- Publication Date
- 2025-10-24
- Estimated Expiration
- 2034-08-29
AI Technical Summary
During the installation process, it is easy for gaps to form between the ceiling unit and the ceiling, leading to dust accumulation problems.
A height-adjustable mounting structure is adopted, including a wall hanging plate, a rotating part, a first transmission part and a locking part. The locking part is inserted into the mounting hole to limit the rotation of the rotating part, thereby achieving fixation and height adjustment of the part to be mounted and avoiding the generation of gaps.
It effectively avoids the gap between the parts to be installed and the wall panels, prevents dust accumulation, and improves the convenience and stability of installation.
Smart Images

Figure CN223470265U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to air conditioning technical field, concretely relates to a kind of installation structure and air conditioner of adjustable height. BACKGROUND
[0002] Ceiling-mounted air conditioner is a kind of air conditioning equipment for installing on ceiling, and it occupies less space, and is widely used in various indoor environments.In the prior art, when ceiling-mounted air conditioner is installed, the operator needs to pre-drill bolt holes on the indoor top, then hold the ceiling-mounted air conditioner against the indoor top, and then connect the expansion bolts passing through the mounting holes on the ceiling-mounted air conditioner with 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, and once it shakes, it will cause gaps between the ceiling-mounted air conditioner and the ceiling, and cause dust accumulation problems. UTILITY MODEL CONTENTS
[0004] The embodiment of the present application provides a kind of installation structure and air conditioner of adjustable height, to solve the problem that ceiling-mounted air conditioner and ceiling are prone to gaps, and dust accumulation problems occur.
[0005] In one aspect, the embodiment of the present application provides an installation structure with adjustable height, comprising: a wall-hanging plate for mounting on the ceiling, the wall-hanging plate having a mounting portion; a rotating member rotatably disposed on the mounting portion, the rotating member having a first mounting hole; a first transmission member for mounting on the to-be-installed member, the first transmission member being disposed on one side of the rotating member and cooperating with the rotating member, the first transmission member being configured to rotate the rotating member under the lifting movement of the to-be-installed member; a locking member inserted into a second mounting hole on the to-be-installed member through the first mounting hole to connect the first transmission member and the rotating member, the locking member being configured to rotate the first transmission member to adjust the height of the to-be-installed member.
[0006] By adopting the technical scheme, when installing, the operator can install the first transmission member on the to-be-installed member on the ground, rotate the rotating member to be installed on the installation portion, and then install the wall-hanging plate on the ceiling. At this time, since the wall-hanging plate is light in weight, the operator can conveniently tightly attach and fix the wall-hanging plate to the ceiling. After installing the wall-hanging plate on the ceiling, the operator can lift the to-be-installed member to make the first transmission member cooperate with the rotating member. At this time, the to-be-installed member is pushed to move upward, the first transmission member drives the rotating member to rotate, and when the top surface of the to-be-installed member abuts against the wall-hanging plate, the locking member is inserted into the second installation hole on the to-be-installed member through the first installation hole, the large-amplitude rotation of the rotating member is limited, the to-be-installed member is limited at the current height, the first transmission member is connected with the rotating member through the locking member, the to-be-installed member is fixed on the wall-hanging plate, and the installation of the to-be-installed member is realized. Meanwhile, the locking member drives the first transmission member to rotate, the height of the to-be-installed member is finely adjusted, the to-be-installed member is completely attached to the wall-hanging plate, and the problem that dust accumulates due to the gap between the to-be-installed member and the wall-hanging plate is avoided.
[0007] In the preferred technical scheme of the height-adjustable installation structure, the locking member comprises a connecting portion and a limiting portion, the connecting portion is inserted into the second installation hole, the limiting portion is inserted into the first installation hole, and the cross-sectional dimension of the limiting portion gradually increases in the direction away from the connecting portion.
[0008] By adopting the technical scheme, the cross-sectional dimension of the limiting portion gradually increases in the direction away from the connecting portion, so that the installation height of the to-be-installed member is finely adjusted by controlling the insertion depth of the locking member inserted into the first installation hole and the second installation hole, and the gap between the to-be-installed member and the wall-hanging plate is avoided to cause dust accumulation.
[0009] In the preferred technical scheme of the height-adjustable installation structure, an anti-skid member is arranged in the first installation hole, and the anti-skid member abuts against the limiting portion.
[0010] By adopting the technical scheme, the relative sliding between the first installation hole and the limiting portion due to small friction force is avoided, so that the gap between the to-be-installed member and the wall-hanging plate is avoided.
[0011] In the preferred technical scheme of the height-adjustable installation structure, the number of the first installation holes is multiple, the multiple first installation holes are uniformly and spacedly arranged on the circumferential side of the rotating member, and the locking member can be selectively inserted into the first installation hole corresponding to the second installation hole.
[0012] By adopting the technical scheme, the plurality of first mounting holes are uniformly and spacedly arranged on the circumferential side of the rotating piece, so that the rotating piece can be applied to different types of the to-be-mounted piece, and the operator can selectively insert the locking piece into the first mounting hole corresponding to the second mounting hole, so as to lock the relative position of the rotating piece and the first transmission piece, and connect the rotating piece and the first transmission piece, thereby realizing the fixed mounting of the to-be-mounted piece.
[0013] In the preferred technical scheme of the height-adjustable mounting structure, the second mounting hole is provided with an internal thread, the locking piece is provided with an external thread, and the internal thread and the external thread are matched.
[0014] By adopting the technical scheme, the stability of the connection between the locking piece and the second mounting hole is enhanced, thereby enhancing the stability of the connection between the to-be-mounted piece and the rotating piece.
[0015] In the preferred technical scheme of the height-adjustable mounting structure, the first transmission piece is arranged on the fixing piece, and the fixing piece is connected with the to-be-mounted piece.
[0016] By adopting the technical scheme, the first transmission piece is mounted on the to-be-mounted piece through the fixing piece, thereby ensuring the stability of the connection between the first transmission piece and the to-be-mounted piece.
[0017] In the preferred technical scheme of the height-adjustable mounting structure, the housing is arranged on the mounting portion, a containing cavity is formed between the housing and the mounting portion, and the rotating piece is arranged in the containing cavity.
[0018] By adopting the technical scheme, the rotating piece is arranged in the containing cavity, so that external dust or other impurities are prevented from adhering to the rotating piece, thereby prolonging the service life of the rotating piece.
[0019] In the preferred technical scheme of the height-adjustable mounting structure, a third mounting hole is arranged below the housing, the third mounting hole is in communication with the containing cavity, and the first transmission piece is inserted into the third mounting hole and matched with the rotating piece.
[0020] By adopting the technical scheme, the first transmission piece can be smoothly inserted into the containing cavity and matched with the rotating piece. By arranging the third mounting hole, a guiding effect is realized for the mounting of the first transmission piece, the operator does not need to disassemble the housing, and only needs to insert the first transmission piece into the third mounting hole to realize the mounting, thereby reducing the mounting difficulty and improving the mounting efficiency.
[0021] In the preferred technical scheme of the height-adjustable mounting structure, a driven part is rotatably arranged on the mounting part and cooperates with the rotating part, and a second transmission part is arranged on the to-be-mounted part and cooperates with the rotating part, and the first transmission part and the second transmission part are respectively located on two sides of the rotating part and the driven part.
[0022] By adopting the above technical scheme, the rotating part cooperates with the driven part, and the second transmission part cooperates with the driven part, thereby improving the stability of the to-be-mounted part during lifting.
[0023] On the other hand, the embodiment of the present application provides an air conditioner, which comprises an air conditioner body and the height-adjustable mounting structure of any one of the first aspect, and the height-adjustable mounting structure is arranged on the air conditioner body and used for connecting the air conditioner body with a ceiling.
[0024] As can be understood by those skilled in the art, the height-adjustable mounting structure and the air conditioner provided by the embodiment of the present application, the height-adjustable mounting structure comprises a wall-hanging plate arranged on the ceiling, the wall-hanging plate has a mounting part; a rotating part is rotatably arranged on the mounting part, and a first mounting hole is arranged on the rotating part; a first transmission part is arranged on the to-be-mounted part, and the first transmission part is arranged on one side of the rotating part and cooperates with the rotating part, and the first transmission part is configured to drive the rotating part to rotate under the lifting movement of the to-be-mounted part; a locking part is inserted into a second mounting hole of the to-be-mounted part through the first mounting hole, so as to connect the first transmission part with the rotating part, and the locking part is configured to drive the first transmission part to rotate so as to adjust the height of the to-be-mounted part. When installing, an operator can install the first transmission part on the to-be-mounted part on the ground, rotatably install the rotating part on the mounting part, and then install the wall-hanging plate on the ceiling. At this time, since the wall-hanging plate is light in weight, the operator can conveniently tightly fit and fix the wall-hanging plate on the ceiling. After installing the wall-hanging plate on the ceiling, the operator can lift the to-be-mounted part to make the first transmission part cooperate with the rotating part, at this time, the to-be-mounted part is pushed to move upward, the first transmission part drives the rotating part to rotate, and when the top surface of the to-be-mounted part abuts against the wall-hanging plate, the locking part is inserted into the second mounting hole of the to-be-mounted part through the first mounting hole, so as to limit the large rotation of the rotating part, thereby limiting the to-be-mounted part at the current height, connecting the first transmission part with the rotating part through the locking part, fixing the to-be-mounted part on the wall-hanging plate, and realizing the installation of the to-be-mounted part. At the same time, the locking part can drive the first transmission part to rotate, thereby finely adjusting the height of the to-be-mounted part, making the to-be-mounted part completely fit the wall-hanging plate, and avoiding the problem of dust accumulation between the to-be-mounted part and the wall-hanging plate. BRIEF DESCRIPTION OF DRAWINGS
[0025] The accompanying drawings, which are incorporated herein and constitute part of this specification, illustrate embodiments consistent with the application and, together with the description, serve to explain the principles of the application.
[0026] Figure 1 An installation schematic diagram of the height-adjustable mounting structure provided in the embodiments of the application;
[0027] Figure 2 An installation schematic diagram of the height-adjustable mounting structure provided in the embodiments of the application; Figure 1 An installation schematic diagram of the height-adjustable mounting structure provided in the embodiments of the application;
[0028] Figure 3 An installation schematic diagram of the height-adjustable mounting structure provided in the embodiments of the application; Figure 1 An installation schematic diagram of the height-adjustable mounting structure provided in the embodiments of the application;
[0029] Figure 4 An installation schematic diagram of the height-adjustable mounting structure provided in the embodiments of the application; Figure 1 An installation schematic diagram of the height-adjustable mounting structure provided in the embodiments of the application;
[0030] Legend of reference signs:
[0031] 10 - to-be-mounted member;
[0032] 100 - wall-hanging plate; 110 - mounting portion;
[0033] 200 - rotating member; 210 - first mounting hole;
[0034] 300 - first transmission member;
[0035] 400 - locking member; 410 - connecting portion; 420 - limiting portion;
[0036] 500 - fixing member;
[0037] 600 - housing;
[0038] 700 - driven member;
[0039] 800 - second transmission member. DETAILED DESCRIPTION
[0040] First, those skilled in the art should understand that the embodiments are only used to explain the technical principles of the application, and are not intended to limit the protection scope of the application. Those skilled in the art can adjust them as needed in order to adapt to specific application occasions. For example, although the height-adjustable mounting structure of the application is described in combination with the ceiling-mounted machine, this is not limiting, and other devices having installation requirements on the ceiling can be configured with the height-adjustable mounting structure of the application.
[0041] Secondly, it needs to be explained that in the description of the utility model, the terms "inner", "outer" and other terms indicating the direction or position relationship are based on the direction or position relationship shown in the drawings, which is only for the convenience of description, and does not indicate or imply that the device or component must have a specific orientation, be constructed and operated in a specific orientation, and therefore cannot be understood as a limitation on the utility model.
[0042] In addition, it also needs to be explained that in the description of the utility model, unless otherwise explicitly specified and limited, the terms "connected", "connected" should be broadly understood, for example, it can be fixedly connected, or it can be detachably connected, or integrally connected; it can be mechanically connected, or it can be electrically connected; it can be directly connected, or it can be indirectly connected through an intermediate medium; it can be the communication inside two components. For those skilled in the art, the specific meaning of the above terms in the utility model can be understood according to the specific situation.
[0043] As described in the background, the ceiling machine is an air conditioning device for mounting on the ceiling, occupying less space, and widely used in various indoor environments. In the prior art, when the ceiling machine is installed, the operator needs to pre-drill bolt holes on the indoor top, then holds the ceiling machine against the indoor top, and then connects the expansion bolts passing through the mounting holes on the ceiling machine with the bolt holes on the indoor top to realize the fixation of the ceiling machine.
[0044] However, in actual operation, the operator needs to lift the ceiling machine for a long time, and once the shaking occurs, it will easily cause a gap between the ceiling machine and the ceiling, and cause the problem of dust accumulation.
[0045] To solve the above problems, the application provides a height-adjustable mounting structure and an air conditioner. The height-adjustable mounting structure includes a wall-hanging plate for mounting on the ceiling, the wall-hanging plate has a mounting portion; a rotating member is rotatably arranged on the mounting portion, a first mounting hole is formed in the rotating member; a first transmission member is arranged on the to-be-installed member, the first transmission member is arranged on one side of the rotating member and cooperates with the rotating member, and the first transmission member is configured to rotate the rotating member under the lifting movement of the to-be-installed member; a locking member is inserted into a second mounting hole on the to-be-installed member through the first mounting hole, so as to connect the first transmission member and the rotating member, and the locking member is configured to rotate the first transmission member to adjust the height of the to-be-installed member. When installing, the operator can install the first transmission member on the to-be-installed member on the ground, rotate the rotating member and install it on the mounting portion, and then install the wall-hanging plate on the ceiling. At this time, since the weight of the wall-hanging plate is light, the operator can conveniently tightly fit and fix the wall-hanging plate on the ceiling.
[0046] After the wall-hanging plate is installed on the ceiling, the operator can lift the to-be-installed piece to match the first transmission piece with the rotating piece, at this time, the to-be-installed piece is pushed to move upward, the first transmission piece drives the rotating piece to rotate, when the top surface of the to-be-installed piece abuts against the wall-hanging plate, the locking piece is inserted into the second installation hole on the to-be-installed piece through the first installation hole, the large-amplitude rotation of the rotating piece is limited, the to-be-installed piece is limited at the current height, the first transmission piece is connected with the rotating piece through the locking piece, the to-be-installed piece is fixed on the wall-hanging plate, and the installation of the to-be-installed piece is realized. Meanwhile, the locking piece drives the first transmission piece to rotate, the height of the to-be-installed piece is adjusted, the to-be-installed piece is completely attached to the wall-hanging plate, and the problem that there is a gap between the to-be-installed piece and the wall-hanging plate and dust is accumulated is avoided.
[0047] The adjustable height mounting structure and the air conditioner of the preferred technical solutions of the present application will be described below with reference to the drawings.
[0048] Reference Figures 1 to 4 In a first aspect, the present application provides an adjustable height mounting structure, comprising: a wall-hanging plate 100 for being installed on a ceiling, the wall-hanging plate 100 having an installation portion 110; a rotating piece 200 rotatably arranged on the installation portion 110, the rotating piece 200 being provided with a first installation hole 210; a first transmission piece 300 for being installed on a to-be-installed piece 10, the first transmission piece 300 being arranged on one side of the rotating piece 200 and matched with the rotating piece 200, the first transmission piece 300 being configured to drive the rotating piece 200 to rotate under the lifting movement of the to-be-installed piece 10; and a locking piece 400 inserted into a second installation hole on the to-be-installed piece 10 through the first installation hole 210 to connect the first transmission piece 300 with the rotating piece 200, the locking piece 400 being configured to drive the first transmission piece 300 to rotate to adjust the height of the to-be-installed piece 10.
[0049] It should be noted that, in the embodiment, the to-be-installed piece 10 is a ceiling-mounted machine, and in other embodiments, the to-be-installed piece 10 can also be other equipment or structures that need to be installed on the ceiling.
[0050] In the above embodiment, the wall-hanging plate 100 is provided with through holes for fixing the wall-hanging plate 100 on the ceiling by expansion bolts or other means. The through holes are distributed on the wall-hanging plate 100 to disperse the weight borne by the wall-hanging plate 100 and avoid loosening or deformation caused by excessive stress on a single point.
[0051] In the embodiment, the wall-hanging plate 100 is of a rectangular structure, and the number of through holes is four, which are distributed at the four corners of the wall-hanging plate 100 to disperse the weight borne by the wall-hanging plate 100.
[0052] In other embodiments, the wall-hanging plate 100 can also be of other shapes, and the through holes are adaptively distributed on the circumferential side of the wall-hanging plate 100, which can be adaptively selected according to actual needs, and the present embodiment does not make any limitation in this regard.
[0053] Specifically, when installing the wall-hanging plate 100, since the overall weight of the wall-hanging plate 100 is relatively light, the operator can abut the wall-hanging plate 100 on the ceiling with one hand without the need for additional auxiliary tools or cooperation of multiple people, and then screw the expansion bolts into the ceiling through the through holes, so as to realize the zero-pasting installation of the wall-hanging plate 100 and the ceiling, thereby avoiding the gap between the wall-hanging plate 100 and the ceiling and reducing the accumulation of dust.
[0054] Meanwhile, when the flatness of the ceiling is relatively low, there will be a certain gap after the wall-hanging plate 100 abuts against the ceiling, and the operator can realize the zero-pasting ceiling installation between the wall-hanging plate 100 and the ceiling by applying the filling material on the wall-hanging plate 100.
[0055] In the present embodiment, the wall-hanging plate 100 has a mounting portion 110, the rotating member 200 is rotatably arranged on the mounting portion 110, the first transmission member 300 is arranged on the to-be-installed member 10, and the first transmission member 300 cooperates with the rotating member 200. When the operator lifts the to-be-installed member 10 to move upward or downward, the first transmission member 300 can drive the rotating member 200 to rotate. When the to-be-installed member 10 abuts against the wall-hanging plate 100, the locking member 400 is inserted into the second mounting hole on the to-be-installed member 10 through the first mounting hole 210 on the rotating member 200, so as to connect the rotating member 200 and the to-be-installed member 10 and make the rotating member 200 unable to rotate, thereby limiting the height of the to-be-installed member 10 and realizing the fixation of the to-be-installed member 10.
[0056] Meanwhile, the locking member 400 can drive the first transmission member 300 to rotate, so as to finely adjust the height of the to-be-installed member 10 and make it completely fit the wall-hanging plate 100, thereby avoiding the gap between the to-be-installed member 10 and the wall-hanging plate 100 and the problem of dust accumulation.
[0057] Specifically, the locking member 400 is inserted into the second mounting hole on the to-be-installed member 10 through the first mounting hole 210, so that the locking member 400 abuts against the first mounting hole 210, thereby driving the rotating member 200 to rotate and driving the to-be-installed member 10 to move upward, so as to eliminate the gap between the to-be-installed member 10 and the wall-hanging plate 100.
[0058] The mounting portion 110 is a mounting plate connected with the wall-hanging plate 100, so as to facilitate the installation of the rotating member 200. It should be noted that in the present embodiment, the mounting portion 110 is provided with a hole corresponding to the first mounting hole 210, so as to facilitate the insertion of the locking member 400.
[0059] In the embodiment, the first transmission member 300 is a rack, the rotating member 200 is a gear, the rack is arranged along the height direction of the to-be-installed member 10, and the rack is engaged with the gear when the to-be-installed member 10 is pushed to move upward or downward along the height direction thereof, so as to drive the gear to rotate.
[0060] It should be noted that the first transmission member 300 and the rotating member 200 can also have other structures capable of being engaged, and the embodiment does not have any limitation in this respect.
[0061] Specifically, in the embodiment, when the to-be-installed member 10 is installed, the rotating member 200 is arranged on the mounting portion 110 by rotating on the ground, and then the wall-hanging plate 100 is fixed to the ceiling, and the to-be-installed member 10 is lifted, so that the first transmission member 300 is matched with the rotating member 200. When the to-be-installed member 10 abuts against the wall-hanging plate 100, the locking member 400 is inserted into the second mounting hole in the to-be-installed member 10 through the first mounting hole 210 in the rotating member 200, so that the to-be-installed member 10 is limited at the current height by limiting the rotation of the rotating member 200. At the same time, the first transmission member 300 is connected with the rotating member 200 by the locking member 400, so that the to-be-installed member 10 is fixed to the wall-hanging plate 100, and the installation of the to-be-installed member 10 is realized.
[0062] The first transmission member 300 can be connected with the to-be-installed member 10 by bolts or screws, so as to ensure the stability of the connection between the first fixing member 500 and the to-be-installed member 10. The threaded connection can effectively resist the impact and vibration of the outside world, and can avoid the problems of loosening or falling off caused by long-term use.
[0063] In addition, the threaded connection can facilitate the disassembly of the operator when replacement or maintenance is required, thereby improving the disassembly and installation efficiency.
[0064] It should be noted that in other embodiments, the first transmission member 300 and the to-be-installed member 10 can also be connected by other connection methods, and the embodiment does not have any limitation in this respect.
[0065] Specifically, before the to-be-installed member 10 is installed, the operator can place the assembled wall-hanging plate 100 on the to-be-installed member 10 on the ground, and the first mounting hole 210 and the second mounting hole are opened by comparing the relative positions between the rotating member 200 and the first transmission member 300, so as to ensure that the first mounting hole 210 and the second mounting hole can correspond when the to-be-installed member 10 abuts against the wall-hanging plate 100.
[0066] The locking member 400 can be a screw. An operator can place the assembled wall-hanging plate 100 on the to-be-installed member 10 on the ground, then tighten the rotating member 200 and the first transmission member 300 through the screw, and then dismount the screw to form the first mounting hole 210 and the second mounting hole. When the to-be-installed member 10 is installed, the screw is screwed again, thereby greatly improving the installation efficiency.
[0067] In other embodiments, the locking member 400 can also be a clamping column or other structure. Correspondingly, the first mounting hole 210 and the second mounting hole are circular holes. The clamping column is inserted into the first mounting hole 210 and the second mounting hole to realize the connection between the first transmission member 300 and the rotating member 200, and to fix the to-be-installed member 10 on the wall-hanging plate 100.
[0068] Meanwhile, the first mounting hole 210 and the second mounting hole can also be drilled according to the size of the to-be-installed member 10 and the installation height of the rotating member during production. The present embodiment does not make any limitation on this.
[0069] By adopting the above technical solution, when installing, an operator can install the first transmission member 300 on the to-be-installed member 10 on the ground, rotate and install the rotating member 200 on the mounting portion 110, and then install the wall-hanging plate 100 on the ceiling. At this time, since the wall-hanging plate 100 is light in weight, the operator can conveniently tightly fit and fix the wall-hanging plate 100 on the ceiling. After installing the wall-hanging plate 100 on the ceiling, the operator can lift the to-be-installed member 10 to make the first transmission member 300 cooperate with the rotating member 200. At this time, the to-be-installed member 10 is pushed to move upward, the first transmission member 300 drives the rotating member 200 to rotate, and when the top surface of the to-be-installed member 10 abuts against the wall-hanging plate 100, the locking member 400 is inserted into the second mounting hole on the to-be-installed member 10 through the first mounting hole 210, which can limit the large rotation of the rotating member 200, fix the to-be-installed member 10 on the wall-hanging plate 100, and realize the installation of the to-be-installed member 10. Meanwhile, the locking member 400 can drive the first transmission member 300 to rotate, thereby finely adjusting the height of the to-be-installed member 10 to completely fit the wall-hanging plate 100, and avoiding the problem of dust accumulation between the to-be-installed member 10 and the wall-hanging plate 100.
[0070] In addition, to ensure the stability of the fixation of the to-be-installed member 10, in the present embodiment, the number of the first transmission members 300 is four, and the four first transmission members 300 are arranged in pairs on opposite sides of the to-be-installed member 10. Correspondingly, the number of the mounting portions 110, the rotating members 200 and the locking members 400 is also four, thereby realizing the fixation of the four corners of the to-be-installed member 10 and ensuring the stability of the fixation of the to-be-installed member 10.
[0071] In an alternative embodiment, the locking member 400 comprises a connecting portion 410 and a limiting portion 420, the connecting portion 410 is inserted into the second mounting hole, and the limiting portion 420 is inserted into the first mounting hole 210, and the cross-sectional size of the limiting portion 420 gradually increases in the direction away from the connecting portion 410.
[0072] Specifically, when the operator pushes the to-be-mounted member 10 to move upward, the first transmission member 300 engages with the rotating member 200, and drives the rotating member 200 to rotate counterclockwise, and when it is necessary to fix the to-be-mounted member 10, the locking member 400 is inserted into the first mounting hole 210 on the rotating member 200, so as to abut against the first mounting hole 210 and limit the rotation of the rotating member 200. At this time, under the action of the gravity of the to-be-mounted member 10, the rotating member 200 has a tendency to rotate clockwise, and the first mounting hole 210 abuts against the lower surface of the locking member 400.
[0073] In actual production, in order to facilitate the insertion of the locking member 400, the size of the first mounting hole 210 is usually slightly larger than the locking member 400 and the second mounting hole, so as to avoid the problem that the second mounting hole does not correspond to the first mounting hole 210 due to production errors. However, under the action of the gravity of the to-be-mounted member 10, the rotating member 200 has a tendency to rotate clockwise, and when the locking member 400 is inserted into the first mounting hole 210 and the second mounting hole, there will be a gap between the to-be-mounted member 10 and the wall-hanging plate 100.
[0074] In the embodiment, the cross-sectional size of the limiting portion gradually increases in the direction away from the connecting portion 410, so that when the first mounting hole 210 abuts against the lower surface of the limiting portion 420, the limiting portion 420 can abut against the first mounting hole 210 and drive the rotating member 200 to rotate counterclockwise by further inserting the locking member 400 into the first mounting hole 210, so as to make the to-be-mounted member 10 move upward, eliminate the gap between the to-be-mounted member 10 and the wall-hanging plate 100, and realize the fine adjustment of the height of the to-be-mounted member 10.
[0075] In an alternative embodiment, an anti-skid member is arranged in the first mounting hole 210, and the anti-skid member abuts against the limiting portion 420.
[0076] In the above embodiment, the anti-skid member is arranged in the first mounting hole 210, and the anti-skid member abuts against the limiting portion 420, so as to enhance the friction between the anti-skid member and the limiting portion 420, and avoid the relative sliding between the first mounting hole 210 and the limiting portion 420, thereby avoiding the problem that the gap between the to-be-mounted member 10 and the wall-hanging plate 100 is generated.
[0077] The anti-skid member can be an anti-skid layer, an anti-skid sleeve or other anti-skid structures, and the present embodiment does not make any limitation thereon, and the adaptive selection can be made according to actual needs.
[0078] Meanwhile, in an optional embodiment, the anti-skid particles can be arranged on the anti-skid member, so as to further increase the friction between the limiting portion 420 and the anti-skid member.
[0079] In an optional embodiment, the first mounting holes 210 are multiple, and the multiple first mounting holes 210 are uniformly and spacedly arranged on the circumferential side of the rotating member 200, and the locking member 400 can be selectively inserted into the first mounting hole 210 corresponding to the second mounting hole.
[0080] In the above embodiment, the assembled wall-hanging plate 100 needs to be placed on the to-be-installed member 10 on the ground by the operator, and the first mounting hole 210 and the second mounting hole are opened by comparing the relative positions between the rotating member 200 and the first transmission member 300, so as to ensure that the first mounting hole 210 and the second mounting hole can correspond after the to-be-installed member 10 is installed, which greatly increases the complexity of the installation and reduces the installation efficiency. Or the hole is opened according to the size of the to-be-installed member 10 and the installation height of the second fixing member 500 during production, which needs to set different hole heights according to different size specifications of the to-be-installed member 10, and the production cost is high. Therefore, in the present embodiment, the number of the first mounting holes 210 is multiple, and the multiple first mounting holes 210 are uniformly and spacedly arranged on the circumferential side of the rotating member 200, and the locking member 400 can be selectively inserted into the first mounting hole 210 corresponding to the second mounting hole, so as to limit the relative position of the first transmission member 300 and the rotating member 200, thereby eliminating the need for the operator to perform the hole opening work additionally, and also eliminating the need for setting different hole heights according to different size specifications of the to-be-installed member 10, which greatly improves the applicability of the rotating member 200 and improves the installation efficiency.
[0081] The interval distance between the multiple first mounting holes 210 can be set according to the commonly used size of the to-be-installed member 10, so as to adapt to different size specifications of the to-be-installed member 10.
[0082] In an optional embodiment, the second mounting hole is provided with an internal thread, and the locking member 400 is provided with an external thread, and the internal thread and the external thread are matched.
[0083] In the above embodiment, the locking member 400 is screwed on the second mounting hole through the first mounting hole 210, so as to further enhance the stability of the connection between the first transmission member 300 and the rotating member through the locking force of the bolt, and ensure the stability of the installation of the to-be-installed member 10.
[0084] The internal thread is arranged on the connecting portion 410 to be screwed on the second mounting hole.
[0085] In an alternative embodiment, the height-adjustable mounting structure further comprises a fixing member 500, and the first transmission member 300 is arranged on the fixing member 500, and the fixing member 500 is connected to the to-be-mounted member 10.
[0086] In the above embodiment, the first transmission member 300 is arranged on the fixing member 500, and the fixing member 500 is connected to the to-be-mounted member 10, so that the fixing member 500 provides a mounting platform for the first transmission member 300, and ensures the stability of the connection between the to-be-mounted member 10 and the first transmission member 300.
[0087] In an alternative embodiment, a through hole is formed in the fixing member 500, and the fixing member 500 is connected to the to-be-mounted member 10 through bolt connection.
[0088] In an alternative embodiment, the fixing member 500 is connected to the to-be-mounted member 10 by welding.
[0089] In an alternative embodiment, the first transmission member 300 is integrally formed with the fixing member 500.
[0090] In an alternative embodiment, the first transmission member 300 is connected to the fixing member 500 by welding.
[0091] In an alternative embodiment, the height-adjustable mounting structure further comprises a housing 600 arranged on the mounting portion 110, and the housing 600 and the mounting portion 110 form a containing cavity therebetween, and the rotating member 200 is arranged in the containing cavity.
[0092] In the above embodiment, the housing 600 is arranged on the mounting portion 110, and forms a containing cavity with the mounting portion 110, and the rotating member 200 is located in the containing cavity, so as to provide a closed space for the rotating member 200, avoid dust or other impurities outside from adhering to the rotating member 200, affect the use effect of the rotating member 200, and further prolong the service life of the rotating member 200.
[0093] In the above embodiment, the housing 600 is arranged on the mounting portion 110, and forms a containing cavity with the mounting portion 110, and the rotating member 200 is located in the containing cavity, so as to provide a closed space for the rotating member 200, avoid dust or other impurities outside from adhering to the rotating member 200, affect the use effect of the rotating member 200, and further prolong the service life of the rotating member 200.
[0094] Specifically, in the present embodiment, a through hole is formed in the housing 600 for the locking member 400 to pass through, and the through hole is arranged corresponding to the first mounting hole 210 and the second mounting hole, and when it is necessary to lock the mounting height of the to-be-mounted member 10, the locking member 400 is inserted into the second mounting hole through the first mounting hole 210, so as to mount the to-be-mounted member 10 on the wall-hanging plate 100.
[0095] In the above embodiment, the housing 600 can be provided with an opening below, so as to facilitate the first transmission member 300 to extend into the containing cavity and cooperate with the rotating member 200.
[0096] In an alternative embodiment, a third mounting hole is formed below the housing 600, the third mounting hole being in communication with the accommodating cavity, and the first transmission member 300 is inserted into the third mounting hole and cooperates with the rotating member 200.
[0097] In the above embodiment, the third mounting hole is formed below the housing 600, which facilitates the insertion of the first transmission member 300, so that the first transmission member 300 can be smoothly inserted into the accommodating cavity and cooperate with the rotating member 200.
[0098] Specifically, in the present embodiment, the third mounting hole is matched with the first transmission member 300 in shape and size, which can guide the installation of the first transmission member 300, and the operator does not need to disassemble the housing 600, but only needs to insert the first transmission member 300 into the third mounting hole to achieve installation, thereby reducing the installation difficulty and improving the installation efficiency.
[0099] In an alternative embodiment, the height-adjustable mounting structure further comprises a driven member 700 and a second transmission member 800, the driven member 700 is rotatably arranged on the mounting portion 110 and cooperates with the rotating member 200, the second transmission member 800 is arranged on the to-be-installed member 10 and cooperates with the rotating member 200, and the first transmission member 300 and the second transmission member 800 are respectively located on the two sides of the rotating member 200 and the driven member 700.
[0100] In the above embodiment, the driven member 700 is rotatably arranged on the mounting portion 110, the rotating member 200 cooperates with the driven member 700, and the second transmission member 800 cooperates with the driven member 700, so that when the operator pushes the to-be-installed member 10 to rise or fall, the first transmission member 300 and the second transmission member 800 can drive the rotating member 200 and the driven member 700 to rotate cooperatively, thereby improving the stability of the to-be-installed member 10 during the rising and falling.
[0101] Specifically, in the present embodiment, the rotating member 200 and the driven member 700 are engaged, the second transmission member 800 and the driven member 700 are engaged, the rotating member 200 and the driven member 700 are gears, the first transmission member 300 and the second transmission member 800 are racks, and the two racks are arranged along the height direction of the to-be-installed member 10, when the to-be-installed member 10 is pushed to move up or down along its own height direction, the rack and the gear are engaged and drive the gear to rotate.
[0102] In a second aspect, the present embodiment provides an air conditioner, which comprises an air conditioner body and the height-adjustable mounting structure of any one of the first aspect, and the height-adjustable mounting structure is arranged on the air conditioner body and used to connect the air conditioner body with the ceiling.
[0103] The specific structure of the height-adjustable mounting structure has been described in the above embodiments, and will not be repeated here.
[0104] The air conditioner provided by the embodiment comprises an air conditioner body and the height-adjustable mounting structure according to any one of the first aspect, and the height-adjustable mounting structure is arranged on the air conditioner body and used to connect the air conditioner body with the ceiling. In the embodiment, the air conditioner body is the to-be-mounted member 10.
[0105] The height-adjustable mounting structure comprises a wall-hanging plate 100 arranged on the ceiling, the wall-hanging plate 100 having a mounting portion 110; a rotating member 200 rotatably arranged on the mounting portion 110, the rotating member 200 having a first mounting hole 210; a first transmission member 300 arranged on the to-be-mounted member 10, the first transmission member 300 arranged on one side of the rotating member 200 and matched with the rotating member 200, the first transmission member 300 configured to rotate the rotating member 200 under the lifting movement of the to-be-mounted member 10; and a locking member 400 inserted into a second mounting hole of the to-be-mounted member 10 through the first mounting hole 210 to connect the first transmission member 300 with the rotating member 200, the locking member 400 configured to rotate the first transmission member 300 to adjust the height of the to-be-mounted member 10. When installing, an operator can install the first transmission member 300 on the to-be-mounted member 10 on the ground, rotatably install the rotating member 200 on the mounting portion 110, and then install the wall-hanging plate 100 on the ceiling. At this time, since the wall-hanging plate 100 is light in weight, the operator can conveniently tightly attach and fix the wall-hanging plate 100 to the ceiling. After installing the wall-hanging plate 100 on the ceiling, the operator can lift the to-be-mounted member 10 to make the first transmission member 300 matched with the rotating member 200. At this time, the to-be-mounted member 10 is pushed to move upward, the first transmission member 300 rotates the rotating member 200, and when the top surface of the to-be-mounted member 10 abuts against the wall-hanging plate 100, the locking member 400 is inserted into the second mounting hole of the to-be-mounted member 10 through the first mounting hole 210 to limit the large rotation of the rotating member 200, so as to limit the to-be-mounted member 10 at the current height. The first transmission member 300 is connected with the rotating member 200 through the locking member 400, the to-be-mounted member 10 is fixed on the wall-hanging plate 100, and the installation of the to-be-mounted member 10 is realized. At the same time, the locking member 400 can rotate the first transmission member 300, so as to finely adjust the height of the to-be-mounted member 10, make the to-be-mounted member 10 completely attached to the wall-hanging plate 100, and avoid the problem that a gap exists between the to-be-mounted member 10 and the wall-hanging plate 100 to cause dust accumulation.
[0106] The technical scheme of the utility model has been described in combination with the preferred embodiments shown in the drawings, but the person skilled in the art can easily understand that the protection scope of the utility model is obviously not limited to these specific embodiments. The person skilled in the art can make equivalent changes or replacements to the related technical features without deviating from the principles of the utility model, and the technical schemes after the changes or replacements will all fall within the protection scope of the utility model.
Claims
1. An adjustable height mounting structure, characterized by, The application relates to a wall-hanging plate (100) for mounting on a ceiling, the wall-hanging plate (100) comprising: a mounting portion (110); a rotating member (200) rotatably arranged on the mounting portion (110), the rotating member (200) being provided with a first mounting hole (210); a first transmission member (300) arranged on one side of the rotating member (200) and matched with the rotating member (200), the first transmission member (300) being configured to rotate the rotating member (200) under the lifting movement of a to-be-mounted member (10); and a locking member (400) inserted into a second mounting hole of the to-be-mounted member (10) through the first mounting hole (210) to connect the first transmission member (300) and the rotating member (200), the locking member (400) being configured to rotate the first transmission member (300) to adjust the height of the to-be-mounted member (10). The locking member (400) comprises a connecting portion (410) and a limiting portion (420), the connecting portion (410) being inserted into the second mounting hole, and the limiting portion (420) being inserted into the first mounting hole (210), the cross-sectional dimension of the limiting portion (420) gradually increasing in the direction away from the connecting portion (410). An anti-skid member is arranged in the first mounting hole (210) and abuts against the limiting portion (420). The first mounting hole (210) is provided in plurality, the plurality of first mounting holes (210) being uniformly and spacedly arranged on the circumferential side of the rotating member (200), and the locking member (400) being selectively inserted into the first mounting hole (210) corresponding to the second mounting hole. The second mounting hole is provided with an internal thread, and the locking member (400) is provided with an external thread, the internal thread and the external thread being matched.
2. The height-adjustable mounting structure according to claim 1, characterized in that The first transmission member (300) is arranged on a fixing member (500), and the fixing member (500) is connected with the to-be-mounted member (10).
3. The height-adjustable mounting structure according to claim 2, characterized in that A housing (600) is arranged on the mounting portion (110), a containing cavity is formed between the housing (600) and the mounting portion (110), and the rotating member (200) is arranged in the containing cavity.
4. Height-adjustable mounting structure according to any of claims 1-3, characterized in that, A third mounting hole is arranged below the housing (600) and communicates with the containing cavity, and the first transmission member (300) is inserted into the third mounting hole and engaged with the rotating member (200).
5. Height-adjustable mounting structure according to any of claims 1-3, characterized in that 6. Height-adjustable mounting structure according to any of claims 1-3, characterized in that 7. Height-adjustable mounting structure according to any of claims 1-3, characterized in that 8. The height-adjustable mounting structure according to claim 7, characterized in that 9. Height-adjustable mounting structure according to any of claims 1-3, characterized in that Further comprising a driven part (700) and a second transmission part (800), the driven part (700) is rotatably arranged on the mounting part (110) and cooperates with the rotating part (200), the second transmission part (800) is arranged on the to-be-mounted part (10) and cooperates with the rotating part (200), the first transmission part (300) and the second transmission part (800) are respectively located on two sides of the rotating part (200) and the driven part (700).
10. An air conditioner characterized by comprising: Further comprising a driven part (700) and a second transmission part (800), the driven part (700) is rotatably arranged on the mounting part (110) and cooperates with the rotating part (200), the second transmission part (800) is arranged on the to-be-mounted part (10) and cooperates with the rotating part (200), the first transmission part (300) and the second transmission part (800) are respectively located on two sides of the rotating part (200) and the driven part (700).