CN215776575U - Lifting type indoor furniture system - Google Patents

Lifting type indoor furniture system Download PDF

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Publication number
CN215776575U
CN215776575U CN202121510937.5U CN202121510937U CN215776575U CN 215776575 U CN215776575 U CN 215776575U CN 202121510937 U CN202121510937 U CN 202121510937U CN 215776575 U CN215776575 U CN 215776575U
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lifting
panel
module
elevating
floor
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李方思
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Abstract

The utility model relates to a lifting type indoor furniture system, wherein a lifting module comprises an upper lifting box body and a supporting mechanism thereof, and a lower lifting panel and a supporting mechanism thereof. The upper lifting box body panel in the non-lifting state forms an indoor floor, or the upper lifting box body panel in the non-lifting state is flush with the panel of the adjacent non-lifting module to form the indoor floor together; the raised upper lift bin panel forms a height differential with an adjacent indoor floor while the lower lift panel is raised to be flush with the adjacent indoor floor. The system realizes the function conversion between the floor and furniture for household and public buildings such as beds, tables and chairs or stepped floors by adjusting the lifting height of the lifting module, so that the room arrangement is flexible and variable, and the service efficiency of limited space is improved.

Description

Lifting type indoor furniture system
Technical Field
The utility model relates to the technical field of indoor furniture, in particular to a lifting type indoor furniture system.
Background
In a city with high density and precious soil, the research on the multifunctional use method of the limited space has important practical significance, and the building scale can be reduced, the urban resources can be saved, and the space use efficiency can be improved on the premise of meeting the use function. Taking a mini apartment as an example, the design of an apartment with the area of about 20 square meters in the current mini apartment on the market is emphatically sufficient for optimizing the layout of rooms, namely, a conventional three-dimensional spatial thinking mode is used for researching the spatial combination mode of various functions such as sleeping, dining, working, guest-meeting and the like, and when the area is limited, the convenience and the comfort of use are difficult to meet; taking schools as an example, the conventional design method usually divides a ladder classroom and a multifunctional hall, and requires a special storage space to store multifunctional hall furniture, the ladder classroom and the multifunctional hall have high vacancy rate, and the occupied building area is large; the conference room that is used for hotel, office building or meeting center is taken as an example again, and present conference room furniture has fixedly to put and temporarily puts two kinds of modes, and the fixed furniture mode flexibility of putting is poor, can't satisfy multiple meeting form requirement, temporarily puts the furniture mode and needs great furniture storage area, and furniture is arranged, is accomodate, clean consumes a large amount of manpowers, and convenient to use nature is poor.
SUMMERY OF THE UTILITY MODEL
The utility model aims to provide a lifting type indoor furniture system, which realizes function conversion between an indoor floor and various furniture so as to realize efficient utilization of space.
In order to achieve the above purpose, the utility model provides the following technical scheme:
a lifting type indoor furniture system comprises a lifting module or comprises the lifting module and a non-lifting module simultaneously,
the lifting module comprises a lifting mechanism and a lifting mechanism,
a lower lifting panel supporting mechanism which is supported on the indoor ground in a lifting way,
a lower lifting panel supported on top of the lower lifting panel support mechanism,
an upper lifting box body supporting mechanism which is supported on the indoor ground in a lifting way and penetrates through the lower lifting panel,
an upper lift cage supported on top of the upper lift cage support mechanism, the upper lift cage including a panel, a cage wall, and a floor,
the non-liftable module comprises a lifting device,
a support structure supported on the indoor floor,
a non-liftable panel supported on top of the support structure,
the upper lifting box body panel in the non-lifting state forms an indoor floor, or the upper lifting box body panel in the non-lifting state is flush with the non-lifting panel to form the indoor floor together; and the upper lifting box body panel in the lifting state forms a height difference with the adjacent indoor floor, and simultaneously the lower lifting panel is lifted to be flush with the adjacent indoor floor.
The upper lifting box body in the lifting module can be replaced by an upper lifting panel which does not comprise box walls and a bottom plate, and the upper lifting panel is supported on the top of the upper lifting panel supporting mechanism.
The lower lifting panel supporting mechanism and the lower lifting panel are replaced by a lower supporting structure, namely the lifting module can not comprise the lower lifting panel supporting mechanism and the lower lifting panel but comprise a lower supporting structure, and the lower supporting structure is a supporting leg assembly and comprises a plurality of supporting legs connected with the top frame of the lower lifting panel supporting mechanism; or the supporting structure is a containing box with side walls, the top frame of the supporting leg assembly or the containing box is provided with a cornice and an anti-falling flanging, when the upper lifting panel supporting mechanism is lifted, a hole is formed in the ground, the cornice can prevent the flange from being stepped on, and the flanging can prevent the furniture with the roller from sliding off; or the top of the support leg has a top plate that allows the upper lifting panel support mechanism to pass through, which top plate can act as a floor when the upper lifting panel support mechanism is lifted.
In the lifting type indoor furniture system, adjacent lifting modules are lifted to different heights to form a step type indoor floor.
The box wall of the upper lifting box body shrinks inwards relative to the bottom plate and the panel, so that the periphery of the upper lifting box body forms a cornice.
The non-liftable panel is pivotally connected to the top of the support structure, which may be a support leg assembly comprising a plurality of support legs connected to a top rim thereof; or the support structure is a storage box having side walls.
The lower lifting panel or the top plate in the lower supporting structure of the lifting module is provided with a hole which can allow the upper lifting box body supporting mechanism and the upper lifting panel supporting mechanism to penetrate through, and the periphery of the hole is provided with an anti-falling flange.
The upper lifting box body supporting mechanism, the upper lifting panel supporting mechanism or the lower lifting panel supporting mechanism comprise electric units, and the lifting indoor furniture system is provided with a signal receiving device connected with the electric units and a control terminal wirelessly communicated with the signal receiving device.
The upper lifting box body, the upper lifting panel, the lower lifting panel or the non-lifting panel are rectangular, polygonal, circular or elliptical in shape; the number of the upper lifting box body supporting mechanism, the upper lifting panel supporting mechanism or the lower lifting panel supporting mechanism is one or more, and the upper lifting box body supporting mechanism, the upper lifting panel supporting mechanism or the lower lifting panel supporting mechanism is arranged at the center, the periphery or the main stress part of the lifting module. Further, the rectangular, polygonal, circular or elliptical sides have a length or diameter from 300mm to the same size as a room.
When the height difference exists between the floor height of the room and the floor height of the adjacent area, the lifting type indoor furniture system also comprises a lifting module which is arranged at the adjacent area and can lift between the height differences; or the system includes a ramp module that can transition between elevations.
In the technical scheme, the lifting type indoor furniture system provided by the utility model has the following beneficial effects: the lifting type indoor furniture system breaks through the traditional three-dimensional space thinking mode, incorporates time factors, and meets specific use requirements in a specific time period, namely: the layout of the furniture is changed in time as required, various use functions are realized in the same space, each use function obtains the maximized use space, and the convenience and the comfort of use are improved while the space use efficiency and the resources are saved. The utility model improves the price-overflowing capability of the building product and also reduces the house-purchasing and house-renting cost for users. For example, when the utility model is used in a mini-apartment, the square meter (22) can be used for realizing the functions of a house with two rooms and two halls. The utility model has flexibility, can be customized according to the requirement and has wide application range. The utility model provides sufficient storage space for article storage, pipeline application or other uses. The wheelchair can be lifted through the lifting module, and the barrier-free use requirement is met.
Drawings
In order to more clearly illustrate the technical solutions of the embodiments of the present application, the drawings needed to be used in the embodiments will be briefly described below, and it is apparent that the drawings in the following description are only some specific embodiments described in the present invention, and the present invention is not limited to these drawings.
Fig. 1 is a schematic view of a lifting mode structure of a boxboard type liftable module of the utility model.
Fig. 2 is a schematic diagram of a non-lifting mode structure of the boxboard type liftable module.
Fig. 3 is a schematic view of a storage box mode structure of a non-liftable module according to the present invention.
FIG. 4 is a schematic view of a support leg mode configuration of the non-liftable module of the present invention.
Fig. 5 is a schematic view of a lifting mode structure of the double-plate type liftable module of the utility model.
Fig. 6 is a schematic diagram of a non-lifting mode structure of the double-plate type liftable module of the present invention.
Fig. 7 is a schematic structural view of the supporting structure of the single-layer liftable module of the utility model being a supporting leg assembly and having a top plate mode.
Fig. 8 is a schematic structural diagram of a support structure of a single-layer liftable module of the utility model in a support leg assembly mode.
Fig. 9 is a schematic structural view of the supporting structure of the single-layer liftable module of the utility model in a storage box mode.
Fig. 10 is a plan view of a school public classroom case of the present invention.
FIG. 11 is a perspective view of a school public classroom case desk model of the present invention.
Fig. 12 is a schematic perspective view of a school public classroom case step chair of the present invention.
Fig. 13 is a plan view of a mini apartment case of the present invention.
Fig. 14 is a sectional view of a mini apartment case of the present invention.
Figure 15 is a perspective view of a mini apartment case sleep mode of the present invention.
Fig. 16 is a perspective view of a multiple dining mode of the mini-apartment case of the present invention.
Fig. 17 is a perspective view of a mini-apartment case multi-person viewing mode of the present invention.
Fig. 18 is a perspective view of a mini-apartment case multi-person office conference model of the present invention.
Figure 19 is a schematic view of the mini-apartment case entry wheelchair lift platform position of the present invention.
Detailed Description
In order to make the objects, technical solutions and advantages of the embodiments of the present invention clearer, the technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings, and it is obvious that the described embodiments are only partial embodiments of the present invention and do not limit the present invention.
In one embodiment, the liftable indoor furniture system of the utility model comprises the liftable module 1 shown in fig. 1 and 2 or comprises the liftable module 1 and the non-liftable module 2 shown in fig. 3 and 4. The lifting module 1 comprises an upper lifting box body 1A, an upper lifting box body supporting mechanism 1B special for lifting and supporting the upper lifting box body 1A, a lower lifting panel 1A ', a lower lifting panel supporting mechanism 1B' special for lifting and supporting the lower lifting panel 1A ', and a bottom accommodating space 1C which is used for accommodating the upper lifting box body supporting mechanism 1B and the lower lifting panel supporting mechanism 1B' and has a storage function; the lower lifting panel 1A' is provided with a hole for the upper lifting box body supporting mechanism 1B to pass through, and the upper lifting box body 1A is composed of three parts, namely a panel 1A-1, a box wall 1A-2 and a bottom plate 1A-3. The non-liftable module 2 includes a non-liftable panel 2A and a lower storage box 2G or a lower support leg 2F. The upper surface of a panel 1A-1 of the upper lifting box body 1A in an un-lifted state forms an indoor floor, or is flush with the upper surface of a non-lifting panel 2A to form the indoor floor together; the upper surface of the panel 1A-1 of the upper lifting box 1A in the raised state forms a level difference with an adjacent floor to be used as furniture, while the lower lifting panel 1A' is raised to be flush with the adjacent floor to be used as a floor, with the effect as shown in fig. 11.
In one embodiment, as shown in fig. 5 and 6, the upper lifting box 1A of the lifting module 1 is replaced with an upper lifting panel 3A.
In one embodiment, as shown in fig. 7, 8 and 9, the liftable module 1 comprises a non-liftable lower support structure, an upper lifting panel 4A, an upper lifting panel support mechanism 4B for lifting and supporting the upper lifting panel 4A, and a bottom storage space 4C for storing the upper lifting panel support mechanism 4B and having a storage function, wherein the lower support structure is a support leg assembly comprising a plurality of support legs 4F and 4F' connected to a top frame thereof; or the supporting structure is a containing box 4G with a side wall, the top frame of the supporting leg assembly or the containing box is provided with a cornice 4D and anti-falling flanges 4E and 4E ', when the upper lifting panel supporting mechanism 4B is lifted, a hole is formed on the ground, the cornice 4D can prevent from being stepped on the hole, and the flanges 4E and 4E' can prevent the furniture with the roller from sliding off; or the top of the support leg has a top plate 4A 'that allows the upper lifting panel support mechanism to pass through, the top plate 4A' may act as a floor when the upper lifting panel support mechanism is lifted. The upper lifting panel 4A in the non-lifted state constitutes an indoor floor, or the upper lifting panel 4A in the non-lifted state is flush with the non-lifting panel 2A to constitute an indoor floor together, and the upper lifting panel 4A in the lifted state forms a height difference with an adjacent indoor floor, and is used as furniture, as shown in fig. 13 to 18.
In one embodiment, as shown in fig. 12, the adjacent lifting modules 1 are lifted to different heights and used as a step floor, and the walls 1A-2 of the upper lifting box 1A are used as baffles to prevent people or articles from falling from the gap between the height differences of the two panels 1A-1.
In one embodiment, as shown in fig. 1, the wall 1A-2 of the upper lifting box 1A is retracted inward, so that the periphery of the upper lifting box 1A forms a cornice for placing objects; when the object is not needed, the box wall 1A-2 is moved outwards to the edge of the panel 1A-1 of the upper lifting box body 1A, so that cornice is eliminated, and the multifunctional lifting box is convenient to clean.
In one embodiment, as shown in fig. 3 and 4, the non-liftable panel 2A is in a side hung door mode or a detachable fixed cover mode.
In one embodiment, as shown in fig. 1, 5 and 7, holes for the upper lifting box supporting mechanism 1B and the upper lifting panel supporting mechanism 3B and 4B to pass through are reserved on the lower lifting panels 1A ', 3A ' and the top plate 4A ' in the lower supporting structure of the lifting module, and anti-falling flanges 1E, 3E and 4E are arranged around the holes for preventing articles from falling.
In one embodiment, the system is provided with an electric unit on a lifting support mechanism, and comprises a signal receiving device connected with the electric unit and a control terminal wirelessly communicated with the signal receiving device, so that intelligent control of a mobile phone, a computer or a remote controller is realized; common modes can be preset before use, furniture layout conversion can be conveniently completed by one key, a distribution diagram of the lifting modules can be preset according to the room plane before use, independent control of a single lifting module is achieved, common heights can be preset according to use habits, rapid selection is facilitated, a stepless lifting function can be selected, and heights can be randomly adjusted. The lifting support mechanism can have the function of automatically identifying obstacles, and can automatically stop when meeting the obstacles, so that articles or the lifting support mechanism are prevented from being damaged.
In one embodiment, the shape of the upper lifting box, upper lifting panel, lower lifting panel or panel of the non-liftable module of the liftable module is rectangular, polygonal, circular, oval or other shape, the side length or diameter of which can be from 300mm to the same size as the room; the number of the upper lifting box body supporting mechanism 1B, the upper lifting panel supporting mechanisms 3B and 4B and the lower lifting panel supporting mechanisms 1B 'and 3B' of the lifting module is one or more, and the upper lifting box body supporting mechanism, the upper lifting panel supporting mechanisms and the lower lifting panel supporting mechanisms are arranged in the center, the periphery or the main stress part of the lifting module, as shown in figures 1, 5 and 7.
In one embodiment, as shown in fig. 19, when there is a height difference between the indoor floor height and the floor height of the adjacent area, a liftable module capable of being lifted between the height differences is arranged at the adjacent area; or a slope module capable of transitioning between the altitude differences is arranged to realize barrier-free traffic.
In one embodiment, as shown in fig. 1 to 8, when the bottom receiving spaces 1C, 2C, 3C, 4C of each module form a communicating space, the long article storage requirement or the pipeline laying requirement can be satisfied;
the utility model realizes the function conversion between the floor and the furniture for household, office and school or the stepped floor such as a bed, a table and a chair by adjusting the lifting height of the lifting module, so that the room arrangement is flexible and variable, and the use efficiency of the limited space is improved.
The present invention can be used in various spaces with layout change requirements, and will be described below by way of example only in micro-apartments, school public classrooms, and conference rooms for hotel buildings, office buildings, or conference centers.
Example 1: in the micro apartment, referring to fig. 13, the rest of the floor except the floor occupied by fixed storage functional furniture such as a wardrobe, a bookcase, a kitchen cabinet body and the like in a room is divided into a plurality of single-layer liftable modules 4 and a plurality of non-liftable modules 2 with the standard size as much as possible, the reasonable size of the furniture is considered when the modules are divided, and a space is required to be reserved for vertical surface protrusions below the height of a furniture panel such as a radiator, a wall socket, a furniture handle and the like to avoid collision with the liftable modules.
The single-layer liftable module 4 is in an initial state of not being lifted, and the height is set to 0.000m, and the lifting panel 4A is used as the ground. The height of the lifting panel 4A can be adjusted at will to meet the corresponding use function, for example, when the lifting panel is used as a bed 11, the lifting panel at the corresponding position can be lifted to 0.250-0.300 m, and a mattress is laid on the lifting panel to meet the use requirement. When the lifting panel is used as a writing desk or a conference table 12, the lifting panel at the corresponding position can be lifted to 0.700-1.020 m, and the requirements of sitting posture or standing posture work or conference are met. Similarly, when a plurality of people have meals and need to meet the requirements of a large dining table 13 and a large dining table 14, the lifting panel at the corresponding position can be lifted to 0.700-0.750 m to meet the use requirement; the function of the sofa 15 can also be that the lifting panel at the corresponding position is lifted to 0.300-0.350 m by the method, and the sofa cushion and the back cushion are paved to meet the use requirement. Various furniture can be implemented according to the method, and the lifting height can be preset or randomly stepless lifted according to the height and the using habit of a user. The entrance single-layer lifting module 4 can meet the lifting function of the wheelchair, the height of the upper lifting panel is adjusted between the height of an indoor floor and the height of an outdoor corridor floor, and the barrier-free use requirement can be met.
As shown in fig. 15-18, the multi-point projection can be realized by using the suspended lifting screen 16, which meets the flexible requirement for projection position in different furniture arrangement modes.
The liftable module control terminal is a mobile phone or a special remote controller, a common mode can be preset before use, furniture layout conversion can be conveniently completed by one key, and the realizable miniature apartment scene mode refers to figures 15-18, but is not limited to the figure mode. The scale of the using space of the mini apartment graphic model simulation is as follows: the width of a surface is 3400mm, the depth is 6300mm, the floor height is 2.900m, the clear height of a main use space is 2.400m, the height of a storage box is 350mm, the sinking height of a floor slab at an inlet is 250mm, and the thickness of a common corridor floor outside an apartment is 100 mm. Before the lifting module is used, a lifting module distribution diagram is required to be preset according to a room plane so as to realize independent control of a single lifting module, the common height can be preset according to a use habit, the lifting module is convenient and quick to select, a stepless lifting function can be selected, and the height can be randomly adjusted. The lifting mechanism has the function of automatically identifying the obstacle, automatically stops when meeting the obstacle and returns to the original height, and avoids the damage to articles in the containing box or lifting module components.
Example 2: the key points of module division and the lifting mechanism performance of the school public classroom case are the same as those in embodiment 1, and the description is not repeated. Referring to fig. 10, a liftable module 1 is disposed at a portion where a floor and furniture conversion is required, and a non-liftable module 2 is disposed at the other portion. The lifting module 1 is in an initial state of not being lifted, the height is set to be 0.000m, and the upper lifting box body is used as the ground. When the upper lifting box body 1A is lifted to be used as furniture such as a table and a chair, the lower lifting panel 1A 'is lifted to be used as the ground, the top surface height of the lower lifting panel 1A' is adjusted to be level with the surrounding ground, and the ground is kept level and has no height difference.
The upper surface of the upper lifting box body panel 1A-1 of the lifting module 1 can form a height difference with the upper surface of the adjacent lifting box body panel and is used on the step-shaped ground, and at the moment, the upper lifting box body wall 1A-2 serves as a baffle plate to prevent people or articles from falling from a vertical gap between the height differences of the two panel plates, so that the step height difference of the steps is not larger than the box wall height of the lifting box body.
In a public classroom of a school, the scene modes that can be realized include a desk mode, a stairstep classroom mode, a conference mode, an island mode, and the like, and refer to fig. 11 and 12, but the usage mode is not limited to the drawing mode, in which classroom furniture includes a desk 21, a seat 22, and a platform 23.
Example 3: the lifting module 1 or 2 is used as a basic lifting unit, and selectable meeting scene modes comprise enclosed type, semi-enclosed type, conversation mode, lecture mode, desk mode, island mode, wine meeting mode and the like.
While certain exemplary embodiments of the present invention have been described above by way of illustration only, it will be apparent to those of ordinary skill in the art that the described embodiments may be modified in various different ways without departing from the spirit and scope of the utility model. Accordingly, the drawings and description are illustrative in nature and should not be construed as limiting the scope of the utility model.

Claims (11)

1. A lifting type indoor furniture system is characterized by comprising a lifting module or a lifting module and a non-lifting module,
the lifting module comprises a lifting mechanism and a lifting mechanism,
a lower lifting panel supporting mechanism which is supported on the indoor ground in a lifting way,
a lower lifting panel supported on top of the lower lifting panel support mechanism,
an upper lifting box body supporting mechanism which is supported on the indoor ground in a lifting way and penetrates through the lower lifting panel,
an upper lift cage supported on top of the upper lift cage support mechanism, the upper lift cage including a panel, a cage wall, and a floor,
the non-liftable module comprises a lifting device,
a support structure supported on the indoor floor,
a non-liftable panel supported on top of the support structure,
the upper lifting box body panel in the non-lifting state forms an indoor floor, or the upper lifting box body panel in the non-lifting state is flush with the non-lifting panel to form the indoor floor together; and the upper lifting box body panel in the lifting state forms a height difference with the adjacent indoor floor, and simultaneously the lower lifting panel is lifted to be flush with the adjacent indoor floor.
2. The system of claim 1, wherein the upper lift bin is replaced with an upper lift panel supported atop an upper lift panel support mechanism.
3. The system of claim 2, wherein the lower lifting panel support mechanism and the lower lifting panel are replaced with a lower support structure, the lower support structure being a support leg assembly comprising a plurality of support legs connected to a top rim thereof; or the supporting structure is a containing box with side walls, and the top frame of the supporting leg assembly or the containing box is provided with a cornice and an anti-falling flanging; or the top of the support leg has a top plate that allows the upper lifting panel support mechanism to pass through.
4. The system of claim 1, wherein adjacent liftable modules are raised to different heights to form a stepped indoor floor.
5. The system of claim 1, wherein the walls are inwardly retracted relative to the floor and panels to form a cornice around the perimeter of the upper lift box.
6. The system of claim 1, wherein the non-liftable panel is pivotally connected to the top of the support structure, the support structure being a support leg assembly comprising a plurality of support legs connected to a top rim thereof; or the support structure is a storage box having side walls.
7. An elevating indoor furniture system as claimed in any one of claims 1 to 3, wherein the top plate of the lower elevating panel or the lower supporting structure of the elevating module has a hole for allowing the upper elevating box supporting mechanism and the upper elevating panel supporting mechanism to pass through, and the hole is provided with a falling prevention flange at its periphery.
8. The system of any one of claims 1 to 3, wherein the upper lift box support mechanism, the upper lift panel support mechanism or the lower lift panel support mechanism comprises an electric unit, and the system is provided with a signal receiving device connected to the electric unit and a control terminal in wireless communication with the signal receiving device.
9. An elevating indoor furniture system according to any one of claims 1 to 3, wherein the upper elevating box, upper elevating panel, lower elevating panel or non-elevating panel is rectangular, polygonal, circular or elliptical in shape; the number of the upper lifting box body supporting mechanism, the upper lifting panel supporting mechanism or the lower lifting panel supporting mechanism is one or more, and the upper lifting box body supporting mechanism, the upper lifting panel supporting mechanism or the lower lifting panel supporting mechanism is arranged at the center, the periphery or the main stress part of the lifting module.
10. An elevating indoor furniture system as claimed in any one of claims 1 to 3, wherein when there is a difference in height between the floor level of a room and the floor level of an adjacent area, the system further comprises an elevating module provided at the adjacent area to be elevated between the difference in height; or the system further comprises a ramp module that can transition between elevations.
11. The elevating indoor furniture system as claimed in claim 9, wherein the rectangular, polygonal, circular or elliptical sides or diameters are from 300mm to the same size as a room.
CN202121510937.5U 2021-07-05 2021-07-05 Lifting type indoor furniture system Active CN215776575U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202121510937.5U CN215776575U (en) 2021-07-05 2021-07-05 Lifting type indoor furniture system

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202121510937.5U CN215776575U (en) 2021-07-05 2021-07-05 Lifting type indoor furniture system

Publications (1)

Publication Number Publication Date
CN215776575U true CN215776575U (en) 2022-02-11

Family

ID=80180376

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202121510937.5U Active CN215776575U (en) 2021-07-05 2021-07-05 Lifting type indoor furniture system

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CN (1) CN215776575U (en)

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