CN217420102U - Assembled integrated wall - Google Patents

Assembled integrated wall Download PDF

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Publication number
CN217420102U
CN217420102U CN202221267842.XU CN202221267842U CN217420102U CN 217420102 U CN217420102 U CN 217420102U CN 202221267842 U CN202221267842 U CN 202221267842U CN 217420102 U CN217420102 U CN 217420102U
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frame
unit
frame unit
wall
positioning
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Chinese (zh)
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徐云
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Edg China Corp ltd
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Edg China Corp ltd
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Abstract

The utility model relates to an integrated wall body of assembled, including panel element, first frame unit, second frame unit, two third frame units and two linkage units. The first frame unit is arranged on the first side wall of the panel unit; the second frame unit is arranged on a second side wall of the panel unit, corresponds to the first frame unit and is connected with the first frame unit in a matching way, wherein the second side wall and the first side wall are two opposite side walls; the two third frame units are correspondingly arranged on the top wall and the bottom wall of the panel unit, and are respectively corresponding to and matched with the first frame unit and the second frame unit; the two connecting units are correspondingly arranged at one ends of the two third frame units, which are close to the first frame units, are arranged correspondingly and in a matched manner with the second frame units, and are used for connecting the second frame units with the third frame units. The utility model has the advantages of simple structure, the installation is fast, the assembly of being convenient for, and sound-proof capability is strong, has good practical value and popularizes and applies the value.

Description

Assembled integrated wall
Technical Field
The utility model relates to an assembly type structure technical field especially relates to an integrated wall body of assembled.
Background
Fabricated building refers to a building that is assembled from prefabricated components at a worksite. A large number of building parts of the fabricated building are produced and processed in a workshop, and the fabricated building is assembled on a construction site, so that the production efficiency is greatly improved compared with the original cast-in-place operation, and the corresponding component cost is reduced. The assembly type building not only meets the requirement of green buildings, but also effectively reduces the building cost of the whole building.
In the prior art, a plurality of wall components are usually adopted to form a whole wall, and noise easily penetrates through splicing seams among the wall components, so that the problem of poor sound insulation capability of an assembly type building is caused. Although joint mixture can be filled in the splicing seams among a plurality of wall components in the prior art, and then surface plastering or putty filling is sealed, the shapes or materials of two sides of the wall board are different, the joint mixture is easy to fall off, the attractiveness of the wall body is affected, the sound insulation capability of the wall board is reduced, and even more, the problem of water leakage can be caused.
At present, no effective solution is provided for the problems that the assembled wall body in the prior art is easy to leak from the splicing seams between wall body components and the gap filler is easy to fall off.
SUMMERY OF THE UTILITY MODEL
The utility model aims at providing an integrated wall body of assembled to not enough among the prior art to solve among the prior art assembled wall body at least and easily follow the problem that the concatenation seam between the wall body component leaks sound and the gap filler easily drops.
In order to achieve the above object, the utility model provides an integrated wall body of assembled, include:
a panel unit;
a first frame unit disposed at a first sidewall of the panel unit;
the second frame unit is arranged on a second side wall of the panel unit, corresponds to and is matched with the first frame unit, and the second side wall and the first side wall are opposite side walls;
the two third frame units are correspondingly arranged on the top wall and the bottom wall of the panel unit, correspond to the first frame unit and the second frame unit and are arranged in a matched mode;
and the two connecting units are correspondingly arranged at one end of the two third frame units close to the first frame unit, and are correspondingly and cooperatively arranged with the second frame unit.
Further, the assembled integrated wall further comprises:
and the two noise reduction units are arranged in the first frame unit, correspond to the second frame unit and are arranged in a matched manner, and are used for enhancing the noise reduction capability of the first frame unit.
Further, the panel unit includes:
two panel elements, which are spaced and oppositely arranged;
a sound barrier member fixedly disposed between the two panel members.
Further, the first frame unit includes:
a first frame member having a cross-section in a recessed shape and fixedly disposed at a first sidewall of the panel unit;
the first sealing element is arranged inside the first frame element, a sealing groove is formed in one side wall of the first sealing element, which is far away from the first frame element, and the first sealing element and the second frame element are arranged in a matched mode.
Further, the first frame unit further includes:
the two first positioning elements are arranged inside the first frame element at intervals, positioned above and below the first sealing element, and provided with positioning grooves at one end far away from the first frame element, and the first positioning elements and the second frame element are arranged correspondingly and in a matched manner.
Further, the second border unit includes:
a second bezel element disposed at a second sidewall of the panel unit;
the two connecting groove elements are arranged at the top end and the bottom end of the second frame element and are matched with the corresponding connecting units;
the two first threaded hole elements are correspondingly arranged at the top end and the bottom end of the second frame element and penetrate through the corresponding connecting groove elements;
and the second sealing element is arranged on one side wall of the second frame element, which is far away from the panel unit, and corresponds to and is matched with the first sealing element of the first frame unit.
Further, the second border unit further includes:
and the two second positioning elements are arranged on one side wall of the second frame element far away from the panel unit at intervals, positioned above and below the second sealing element, and arranged corresponding to and matched with the first positioning element of the first frame unit.
Further, the second positioning element comprises:
the positioning column is arranged at the top end or the bottom end of the panel unit;
the cross sections of the two positioning pieces are in the shape of an arrow, are oppositely arranged at one end, away from the second frame unit, of the positioning column, and are arranged corresponding to and matched with the first positioning element.
Further, the third frame cell includes:
a third frame element disposed at a top wall or a bottom wall of the panel unit;
a first connecting element arranged at one end of the third frame element close to the first frame unit through a hinge;
the two second threaded hole elements are arranged on two sides of the top end of the first connecting element;
the mounting groove element is arranged at one end, far away from the third frame element, of the first connecting element and is communicated with the outside of the first connecting element upwards;
and the two first bolt elements are correspondingly arranged in the two second threaded hole elements and are in threaded connection with the top end of the first frame element of the first frame unit.
Further, the connection unit includes:
the second connecting element is L-shaped and is arranged in the mounting groove element of the third frame unit;
a third threaded hole element which is opened at one end of the second connecting element far away from the third frame unit;
and the second bolt element is arranged in the third threaded hole element, corresponds to the first threaded hole element of the second frame unit and is matched with the first threaded hole element of the second frame unit.
The utility model adopts the above technical scheme, compare with prior art, have following technological effect:
(1) the assembled integrated wall body of the utility model is tightly abutted by the first sealing element of the first frame unit and the second sealing element of the second frame unit, thereby solving the problems that the assembled wall body is easy to leak sound from the splicing seam between the wall body components and the gap filler is easy to fall off in the prior art;
(2) the two adjacent assembly type integrated walls are positioned through the first positioning element of the first frame unit and the second positioning element of the second frame unit, so that the walls are convenient to assemble, and the working strength of workers is reduced;
(3) the second frame unit and the third frame unit are connected through the connecting unit, so that the two adjacent assembly type integrated walls are fixedly connected, and the two assembly type integrated walls are prevented from being connected insecurely;
(4) the utility model has the advantages of simple structure, the installation is fast, the assembly of being convenient for, and sound-proof capability is strong, has good practical value and popularizes and applies the value.
Drawings
Fig. 1 is an assembly view of two assembled integrated walls according to the present invention;
fig. 2 is a schematic structural diagram of the fabricated integrated wall according to the present invention;
FIG. 3 is a schematic view of the structure of part A in FIG. 2;
fig. 4 is a schematic structural diagram of a panel unit according to the present invention;
fig. 5 is a transverse cross-sectional view of a first frame unit of the present invention;
fig. 6 is a schematic structural view of a second frame unit according to the present invention;
fig. 7 is a schematic structural diagram of a third frame unit according to the present invention;
fig. 8 is a schematic structural view of the connection unit of the present invention;
wherein the reference symbols are:
100. a panel unit; 110. a panel element; 120. a sound barrier panel member;
200. a first frame unit; 210. a first frame element; 220. a first sealing element; 221. a sealing groove; 230. a first positioning element; 231. positioning a groove;
300. a second frame unit; 310. a second frame element; 320. connecting a trough element; 330. a first threaded bore element; 340. a second sealing element; 350. a second positioning element; 351. a positioning column; 352. positioning plates;
400. a third frame cell; 410. a third frame element; 420. a first connecting element; 430. a second threaded bore element; 440. a mounting groove element; 450. a first bolt element;
500. a connection unit; 510. a second connecting element; 520. a third threaded bore element; 530. a second bolt element;
600. and a noise reduction unit.
Detailed Description
To facilitate understanding of the present invention, the present invention will be described in more detail with reference to the accompanying drawings and specific embodiments. It will be understood that when an element is referred to as being "secured to" another element, it can be directly on the other element or intervening elements may also be present. When an element is referred to as being "connected" to another element, it can be directly connected to the other element or intervening elements may be present. The terms "upper", "lower", "inner", "outer", "vertical", "horizontal", and the like as used herein are used in the description to indicate orientations and positional relationships based on the orientations and positional relationships shown in the drawings, and are used only for convenience in describing the present invention and for simplicity in description, and do not indicate or imply that the device or element being referred to must have a particular orientation, be constructed and operated in a particular orientation, and therefore, should not be construed as limiting the present invention. Furthermore, the terms "first," "second," and the like are used for descriptive purposes only and are not to be construed as indicating or implying relative importance. Unless defined otherwise, all technical and scientific terms used herein have the same meaning as commonly understood by one of ordinary skill in the art to which this invention belongs. The terminology used in the description of the invention herein is for the purpose of describing particular embodiments only and is not intended to be limiting of the invention. As used herein, the term "and/or" includes any and all combinations of one or more of the associated listed items. Furthermore, the technical features mentioned in the different embodiments of the invention described below can be combined with each other as long as they do not conflict with each other.
Example 1
As shown in fig. 1 to 3, the present embodiment provides a fabricated integrated wall, including a panel unit 100, a first frame unit 200, a second frame unit 300, two third frame units 400, and two connecting units 500. The first frame unit 200 is disposed on the first side wall of the panel unit 100, and is used for enhancing the strength of the panel unit 100 and facilitating the sealing connection between two adjacent assembled integrated walls; the second frame unit 300 is disposed on a second sidewall of the panel unit 100, and the second frame unit 300 corresponds to and is matched with the first frame unit 200, wherein the second sidewall and the first sidewall are opposite sidewalls, so as to enhance the strength of the assembled integrated wall and facilitate the sealing connection between two adjacent assembled integrated walls; the two third frame units 400 are correspondingly arranged on the top wall and the bottom wall of the panel unit 100, respectively correspond to the first frame unit 200 and the second frame unit 300, and are arranged in a matching manner, so as to enhance the strength of the assembled integrated wall; the two connecting units 500 are correspondingly disposed at one ends of the two third frame units 400 close to the first frame unit 200, and are arranged corresponding to and matching with the second frame unit 300, so as to connect the second frame unit 300 and the third frame unit 400 of the two adjacent fabricated integrated walls.
Specifically, in the case that two fabricated integrated walls are connected to each other, the first frame unit 200 of one fabricated integrated wall is closely abutted to the second frame unit 300 of the other fabricated integrated wall, and then the first frame unit 200 of one fabricated integrated wall and the second frame unit 300 of the other fabricated integrated wall are connected and fixed by the connection unit 500, so that two adjacent fabricated integrated walls are fixedly connected.
As shown in fig. 4, the panel unit 100 includes a two-panel element 110 and an acoustic baffle element 120. Wherein the two panel elements 110 are spaced and oppositely disposed; the soundproof plate member 120 is fixedly disposed between the two plate members 110 for enhancing soundproof ability of the panel unit 100.
The panel element 110 may be a wood or plastic panel, among others.
Wherein the baffle member 120 may be a polyester fiber sound absorbing plate.
In some of these embodiments, there may be an adhesive connection between panel element 110 and baffle element 120.
In some of these embodiments, the panel member 110 is fixedly attached to the sound absorbing panel member by a plurality of rivets.
As shown in fig. 5, the first frame unit 200 includes a first frame member 210 and a first sealing member 220. Wherein, the cross section of the first frame element 210 is in a concave shape and is fixedly arranged on the first side wall of the panel unit 100 for enhancing the strength of the panel unit 100; the first sealing element 220 is disposed inside the first frame element 210, a sealing groove 221 is formed on a side wall of the first sealing element, which is away from the first frame element 210, and the first sealing element 220 and the second frame unit 300 are cooperatively arranged to seal a joint between two adjacent assembled integrated walls.
Wherein the first frame element 210 is a metal frame to enhance the strength and the service life of the panel unit 100.
Wherein, the top and bottom ends of the first frame element 210 are both provided with a threaded groove to be fixedly connected with the third frame unit 400.
In some of these embodiments, the first frame element 210 is adhesively attached to the side walls of the panel unit 100.
The first sealing element 220 is made of a metal material, and the cross section of the sealing groove 221 is semicircular.
As shown in fig. 6, the second frame unit 300 includes a second frame member 310, two coupling groove members 320, two first screw hole members 330, and a second sealing member 340. The second frame element 310 is disposed on a second sidewall of the panel unit 100, and is used for enhancing the strength of the panel unit 100; the two connecting groove elements 320 are arranged at the top end and the bottom end of the second frame element 310, are matched with the corresponding connecting units 500, and are used for connecting with the connecting units 500 of the adjacent assembled integrated wall; the two first threaded hole elements 330 are correspondingly arranged at the top end and the bottom end of the second frame element 310, penetrate through the corresponding connecting groove elements 320, and are used for connecting with the connecting units 500 of the adjacent assembled integrated wall bodies; the second sealing element 340 is disposed on a side wall of the second frame element 310 away from the panel unit 100, corresponds to and is disposed in a matching manner with the first sealing element 220 of the first frame unit 200, and is used for being tightly abutted against the first sealing element 220 of the adjacent assembly type integrated wall to seal a joint of the two adjacent assembly type integrated walls.
Wherein the cross section of the second frame element 310 is provided in a convex shape and is made of a metal material.
The second sealing element 340 is made of rubber, and has a semicircular cross section to correspond to and fit the sealing groove 221 of the first sealing element 220.
Specifically, in the case of splicing two adjacent fabricated integrated walls, a worker inserts the second frame element 310 of one fabricated integrated wall into the first frame element 210 of another fabricated integrated wall, and makes the second sealing element 340 of one fabricated integrated wall abut against the first sealing element 220 of another fabricated integrated wall tightly, so as to seal the spliced position of the two adjacent fabricated integrated walls and prevent sound from passing through the spliced position between the two adjacent fabricated integrated walls.
As shown in FIG. 7, the third frame cell 400 includes a third frame member 410, a first coupling member 420, two second threaded hole members 430, a mounting slot member 440, and two first bolt members 450. Wherein the third frame element 410 is disposed on the top wall or the bottom wall of the panel unit 100 for enhancing the strength of the panel unit 100; a first connecting element 420 is provided at one end of the third frame element 410 near the first frame unit 200 by a hinge for sealing the first frame element 210; the two second threaded hole elements 430 are arranged on two sides of the top end of the first connecting element 420; the mounting groove member 440 is opened at an end of the first connection member 420 far from the third frame member 410, and it is upwardly communicated with the outside of the first connection member 420 for mounting the connection unit 500; the two first bolt members 450 are correspondingly disposed in the two second threaded hole members 430, and are in threaded connection with the top end of the first frame member 210 of the first frame unit 200, so as to fix the third frame member 410 to the first frame member 210, and fix the first connecting member 420 to the top end or the bottom end of the first frame member 210, so as to seal the top end or the bottom end of the first frame member 210.
Wherein the third frame element 410 is made of a metallic material.
Wherein the first bolt member 450 is a metal screw.
Specifically, in the case of fixedly coupling the third frame element 410 to the first frame element 210, the worker inverts the first coupling element 420 to vertically correspond the second screw hole element 430 to a screw groove formed at the top end or the bottom end of the first frame element 210, and then sequentially screws the first bolt element 450 into the second screw hole element 430 and the screw groove, so that the first coupling element 420 seals the top end or the bottom end of the first frame element 210, and fixedly couples the third frame element 410 to the first frame element 210.
The third frame element 410 may be connected to the second frame element 310 by welding.
As shown in fig. 7 to 8, the connection unit 500 includes a second connection member 510, a third screw hole member 520, and a second bolt member 530. The second connecting element 510 is L-shaped, is disposed in the mounting groove element 440 of the third frame unit 400, and is used for being inserted into the connecting groove element 320 of the adjacent fabricated integrated wall; the third threaded hole element 520 is opened at one end of the second connecting element 510 far away from the third frame unit 400; the second bolt member 530 is disposed in the third screw hole member 520 and corresponds to and is fittingly disposed with the first screw hole member 330 of the second rim unit 300.
Specifically, in the case of fixedly coupling two adjacent prefabricated integrated walls, a worker tightly abuts the first sealing member 220 of one prefabricated integrated wall and the second sealing member 340 of the other prefabricated integrated wall, then, the worker shifts the second connecting member 510 of one prefabricated integrated wall to enter the connecting groove member 320 of the other prefabricated integrated wall, and finally, inserts the second bolt member 530 into the first threaded hole member 330 and the third threaded hole member 520.
In some embodiments, as shown in fig. 5, the fabricated integrated wall further includes two noise reduction units 600, and the two noise reduction units 600 are disposed in the first frame unit 200 and are disposed corresponding to and matching with the second frame unit 300, so as to enhance the noise reduction capability of the first frame unit 200.
Wherein the noise reduction unit 600 is made of a sound absorbing material, such as sound absorbing cotton.
Specifically, in the case of installing the noise reducing unit 600, a worker first inserts the noise reducing unit 600 into the first frame element 210 to be positioned at both sides of the first sealing member 220, then turns the first coupling member 420 down, and fixedly couples the third frame element 410 and the first frame element 210 using the first bolt member 450.
The installation process of this embodiment is as follows:
the worker turns the first connection member 420 upward and completely embeds the noise reduction unit 600 in the first frame member 210 to be positioned at both sides of the first sealing member 220;
the worker turns the first coupling member 420 downward and makes the second screw hole member 430 correspond to the screw groove of the top or bottom end of the first frame member 210 up and down, and then threadedly couples the first bolt member 450 with the second screw hole member 430 and the screw groove, so that the third frame member 410 is fixedly coupled with the first frame member 210;
the worker tightly abuts two adjacent assembly type integrated walls, the first sealing element 220 of one assembly type integrated wall and the second sealing element 340 of the other assembly type integrated wall are tightly abutted, and the second frame element 310 of the other assembly type integrated wall is inserted into the first frame element 210 of one assembly type integrated wall until the second frame element 310 extrudes the noise reduction unit 600;
the worker dials the second coupling member 510 of one fabricated integrated wall into the coupling groove member 320 of another fabricated integrated wall and then threadedly couples the second bolt member 530 with the first and third screw hole members 330 and 520 to couple two adjacent fabricated integrated walls.
Example 2
This embodiment is a modified embodiment of embodiment 1, and is different from embodiment 1 only in that: the first frame unit 200 and the second frame unit 300 have different structures.
As shown in fig. 5, the first frame unit 200 further includes two first positioning elements 230, the two first positioning elements 230 are disposed inside the first frame element 210 at intervals, and are located above and below the first sealing element 220, and one end of the first sealing element, which is far away from the first frame element 210, is provided with a positioning slot 231, and the first positioning elements 230 and the second frame unit 300 are disposed correspondingly and cooperatively.
For example, the first positioning element 230 is a cylindrical positioning post 351, and one end thereof is opened with a positioning slot 231.
Wherein, the cross section of the positioning groove 231 is T-shaped.
The second frame unit 300 further includes two second positioning elements 350, the two second positioning elements 350 are disposed at intervals on a side wall of the second frame element 310 away from the panel unit 100, and are located above and below the second sealing element 340, and are arranged corresponding to and matching with the first positioning element 230 of the first frame unit 200, for being correspondingly connected with the first positioning element 230 of the adjacent assembly-type integrated wall, so as to primarily fix and position the two adjacent assembly-type integrated walls.
As shown in fig. 6, the second positioning element 350 includes a positioning post 351 and two positioning pieces 352. The positioning column 351 is disposed at the top end or the bottom end of the panel unit 100; the cross sections of the two positioning pieces 352 are both arrow-shaped, and are disposed at one end of the positioning column 351 away from the second frame unit 300, and are corresponding to and matched with the first positioning element 230, for being inserted into the positioning groove 231 of the adjacent assembled integrated wall.
The positioning posts 351 are metal posts.
The positioning pieces 352 are metal elastic pieces, and the two positioning pieces 352 can move relatively under the condition of being pressed and can be restored under the condition of not being pressed.
In some embodiments, in the case of installing the noise reduction unit 600, a worker may preliminarily fix two adjacent fabricated integrated walls by the first positioning member 230 and the second positioning member 350, then turn over the first connection member 420, insert the noise reduction unit 600 into the first frame member 210, and finally fix the first connection member 420 to the first frame member 210 by the first bolt member 450.
The installation principle of this embodiment is as follows:
in the case that the second frame element 310 of another fabricated integrated wall is inserted into the first frame element 210 of a fabricated integrated wall, the worker inserts the positioning piece 352 of another fabricated integrated wall into the positioning groove 231 of a fabricated integrated wall;
under the condition that the positioning pieces 352 just enter the positioning grooves 231, the two positioning pieces 352 move relatively to enter the positioning grooves 231, and under the condition that the positioning pieces 352 completely enter the positioning grooves 231, the two positioning pieces 352 are not pressed by the side walls of the positioning grooves 231, and at the moment, the positioning pieces 352 are restored to enable the two assembled integrated walls to be preliminarily connected.
The technical features of the above embodiments can be arbitrarily combined, and for the sake of brevity, all possible combinations of the technical features in the above embodiments are not described, but should be considered as the scope of the present specification as long as there is no contradiction between the combinations of the technical features.
The above examples only express several embodiments of the present application, and the description thereof is more specific and detailed, but not construed as limiting the scope of the invention. It should be noted that, for a person skilled in the art, several variations and modifications can be made without departing from the concept of the present application, which falls within the scope of protection of the present application. Therefore, the protection scope of the present patent shall be subject to the appended claims.

Claims (10)

1. An assembled integrated wall, comprising:
a panel unit;
a first frame unit disposed at a first sidewall of the panel unit;
the second frame unit is arranged on a second side wall of the panel unit, corresponds to and is matched with the first frame unit, and the second side wall and the first side wall are opposite side walls;
the two third frame units are correspondingly arranged on the top wall and the bottom wall of the panel unit, correspond to the first frame unit and the second frame unit and are arranged in a matched mode;
and the two connecting units are correspondingly arranged at one end of the two third frame units close to the first frame unit, and are correspondingly and cooperatively arranged with the second frame unit.
2. The fabricated integrated wall of claim 1, further comprising:
and the two noise reduction units are arranged in the first frame unit, correspond to the second frame unit and are arranged in a matched manner, and are used for enhancing the noise reduction capability of the first frame unit.
3. The fabricated integrated wall of claim 1, wherein the panel unit comprises:
two panel elements, which are spaced and oppositely arranged;
a sound barrier member fixedly disposed between the two panel members.
4. The fabricated integrated wall of claim 1, wherein the first border element comprises:
a first frame member having a cross-section in a recessed shape and fixedly disposed at a first sidewall of the panel unit;
the first sealing element is arranged inside the first frame element, a sealing groove is formed in one side wall of the first sealing element, which is far away from the first frame element, and the first sealing element and the second frame element are arranged in a matched mode.
5. The fabricated integrated wall of claim 4, wherein the first border element further comprises:
the two first positioning elements are arranged inside the first frame element at intervals, positioned above and below the first sealing element, and provided with positioning grooves at one end far away from the first frame element, and the first positioning elements and the second frame element are arranged correspondingly and in a matched manner.
6. The fabricated integrated wall of claim 1, wherein the second border element comprises:
a second bezel element disposed at a second sidewall of the panel unit;
the two connecting groove elements are arranged at the top end and the bottom end of the second frame element and are matched with the corresponding connecting units;
the two first threaded hole elements are correspondingly arranged at the top end and the bottom end of the second frame element and penetrate through the corresponding connecting groove elements;
and the second sealing element is arranged on one side wall of the second frame element, which is far away from the panel unit, and corresponds to and is matched with the first sealing element of the first frame unit.
7. The fabricated integrated wall of claim 6, wherein the second border element further comprises:
and the two second positioning elements are arranged on one side wall of the second frame element far away from the panel unit at intervals, positioned above and below the second sealing element, and arranged corresponding to and matched with the first positioning element of the first frame unit.
8. The fabricated integrated wall of claim 7, wherein the second positioning element comprises:
the positioning column is arranged at the top end or the bottom end of the panel unit;
the cross sections of the two positioning pieces are in an arrow shape, are oppositely arranged at one end, away from the second frame unit, of the positioning column, and are arranged corresponding to and matched with the first positioning element.
9. The fabricated integrated wall of claim 1, wherein the third frame element comprises:
a third frame element disposed at a top wall or a bottom wall of the panel unit;
a first connecting element arranged at one end of the third frame element close to the first frame unit through a hinge;
the two second threaded hole elements are arranged on two sides of the top end of the first connecting element;
the mounting groove element is arranged at one end, far away from the third frame element, of the first connecting element and is upwards communicated with the outside of the first connecting element;
and the two first bolt elements are correspondingly arranged in the two second threaded hole elements and are in threaded connection with the top end of the first frame element of the first frame unit.
10. The fabricated integrated wall of claim 1, wherein the connection unit comprises:
the second connecting element is L-shaped and is arranged in the mounting groove element of the third frame unit;
a third threaded hole element, wherein the third threaded hole element is arranged at one end, far away from the third frame unit, of the second connecting element;
and the second bolt element is arranged in the third threaded hole element, corresponds to the first threaded hole element of the second frame unit and is matched with the first threaded hole element of the second frame unit.
CN202221267842.XU 2022-05-24 2022-05-24 Assembled integrated wall Active CN217420102U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202221267842.XU CN217420102U (en) 2022-05-24 2022-05-24 Assembled integrated wall

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202221267842.XU CN217420102U (en) 2022-05-24 2022-05-24 Assembled integrated wall

Publications (1)

Publication Number Publication Date
CN217420102U true CN217420102U (en) 2022-09-13

Family

ID=83191077

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202221267842.XU Active CN217420102U (en) 2022-05-24 2022-05-24 Assembled integrated wall

Country Status (1)

Country Link
CN (1) CN217420102U (en)

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