CN112878548A - Assembled partition wall system and installation method thereof - Google Patents

Assembled partition wall system and installation method thereof Download PDF

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Publication number
CN112878548A
CN112878548A CN202110063063.1A CN202110063063A CN112878548A CN 112878548 A CN112878548 A CN 112878548A CN 202110063063 A CN202110063063 A CN 202110063063A CN 112878548 A CN112878548 A CN 112878548A
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CN
China
Prior art keywords
folding
plate
prefabricated
partition
piece
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Granted
Application number
CN202110063063.1A
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Chinese (zh)
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CN112878548B (en
Inventor
赵志刚
崔龙丹
任成传
杨思忠
康天阳
刘兴华
崔岩
王文欢
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Beijing Yantong Precast Concrete Co ltd
Beijing Residential Industrialization Group Co ltd
Original Assignee
Beijing Yantong Precast Concrete Co ltd
Beijing Residential Industrialization Group Co ltd
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Application filed by Beijing Yantong Precast Concrete Co ltd, Beijing Residential Industrialization Group Co ltd filed Critical Beijing Yantong Precast Concrete Co ltd
Priority to CN202110063063.1A priority Critical patent/CN112878548B/en
Publication of CN112878548A publication Critical patent/CN112878548A/en
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Publication of CN112878548B publication Critical patent/CN112878548B/en
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    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B2/00Walls, e.g. partitions, for buildings; Wall construction with regard to insulation; Connections specially adapted to walls
    • E04B2/74Removable non-load-bearing partitions; Partitions with a free upper edge
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/343Structures characterised by movable, separable, or collapsible parts, e.g. for transport
    • E04B1/34384Assembling details for foldable, separable, collapsible or retractable structures
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04BGENERAL BUILDING CONSTRUCTIONS; WALLS, e.g. PARTITIONS; ROOFS; FLOORS; CEILINGS; INSULATION OR OTHER PROTECTION OF BUILDINGS
    • E04B1/00Constructions in general; Structures which are not restricted either to walls, e.g. partitions, or floors or ceilings or roofs
    • E04B1/38Connections for building structures in general
    • E04B1/61Connections for building structures in general of slab-shaped building elements with each other
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G21/00Preparing, conveying, or working-up building materials or building elements in situ; Other devices or measures for constructional work
    • E04G21/14Conveying or assembling building elements
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G3/00Installations of electric cables or lines or protective tubing therefor in or on buildings, equivalent structures or vehicles
    • H02G3/02Details
    • H02G3/04Protective tubing or conduits, e.g. cable ladders or cable troughs
    • H02G3/0431Wall trunking
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G3/00Installations of electric cables or lines or protective tubing therefor in or on buildings, equivalent structures or vehicles
    • H02G3/02Details
    • H02G3/04Protective tubing or conduits, e.g. cable ladders or cable troughs
    • H02G3/0462Tubings, i.e. having a closed section
    • H02G3/0481Tubings, i.e. having a closed section with a circular cross-section
    • HELECTRICITY
    • H02GENERATION; CONVERSION OR DISTRIBUTION OF ELECTRIC POWER
    • H02GINSTALLATION OF ELECTRIC CABLES OR LINES, OR OF COMBINED OPTICAL AND ELECTRIC CABLES OR LINES
    • H02G3/00Installations of electric cables or lines or protective tubing therefor in or on buildings, equivalent structures or vehicles
    • H02G3/36Installations of cables or lines in walls, floors or ceilings
    • H02G3/38Installations of cables or lines in walls, floors or ceilings the cables or lines being installed in preestablished conduits or ducts
    • H02G3/386Installations of cables or lines in walls, floors or ceilings the cables or lines being installed in preestablished conduits or ducts in walls
    • H02G3/388Installations of cables or lines in walls, floors or ceilings the cables or lines being installed in preestablished conduits or ducts in walls in modular walls, e.g. wall panels

Abstract

The application relates to the technical field of building construction, especially, relate to an assembled partition wall system and installation method thereof, and this partition wall system is including dismantling fixed connection's prefabricated panel in proper order, its characterized in that: the leveling device also comprises a leveling member which is detachably and fixedly connected to the side surface of the bottom of the precast slab and an adjusting plate which is detachably and fixedly connected to any side of the precast slab; the adjusting plate comprises a first folding piece for inserting one side of the prefabricated plate; the first folding piece comprises a first folding surface, a second folding surface and a third folding surface, wherein two sides of the third folding surface are fixedly connected with one side of the first folding surface and one side of the second folding surface respectively; one side of the precast panel is inserted into the first folding member. The application carries out efficient and rapid processing on the blank position appearing in the construction, and improves the construction efficiency of the assembly type construction.

Description

Assembled partition wall system and installation method thereof
Technical Field
The application relates to the technical field of building construction, in particular to an assembly type partition wall system and an installation method thereof.
Background
With the replacement of the traditional wall body made on site by the light partition board, the appearance and the development of the fabricated house are promoted. When the prefabricated plate is used for construction of the prefabricated house, due to the fact that the prefabricated plate is fixed in size, the phenomenon that partial positions are left empty often occurs in the process of partition wall assembly.
In the related art, there are two methods for processing the blank position, one is to cut the prefabricated panel into a suitable size by using a cutting tool, and then assemble the cut panel to the blank position; the other method is a method similar to concrete cast-in-place, and the positions left empty are cast and filled with concrete.
In view of the above-mentioned related art, the inventors believe that the above-mentioned disposal of the vacant site generates dust and construction waste, which adversely affects the construction environment. Meanwhile, the complexity of the assembly type construction is increased. Therefore, a construction means which not only accords with the rapid and efficient construction efficiency of the assembly type construction, but also can effectively process the empty positions of the wall body needs to be found.
Disclosure of Invention
In order to quickly and efficiently process the reserved empty position in the assembly type construction, the application provides an assembly type partition wall system and an installation method thereof.
In a first aspect, the application provides an assembled partition wall system and an installation method thereof, which adopts the following technical scheme:
an assembled partition wall system comprises prefabricated plates which are sequentially detachably and fixedly connected, leveling members which are detachably and fixedly connected to the bottoms of the prefabricated plates, and adjusting plates which are detachably and fixedly connected to any side of the prefabricated plates; the adjusting plate comprises a first folding piece for inserting one side of the prefabricated plate;
the first folding piece comprises a first folding surface, a second folding surface and a third folding surface, wherein two sides of the third folding surface are fixedly connected with one side of the first folding surface and one side of the second folding surface respectively; one side of the precast panel is inserted into the first folding member.
Through adopting above-mentioned technical scheme, the assembled partition wall system of this application uses prefabricated panel as the main part, is provided with leveling member in the bottom of prefabricated panel, carries out the leveling to the assembly position of prefabricated panel assembling process to be provided with the regulating plate in arbitrary one side of prefabricated panel. When the assembly of partition wall is carried out, the installation of leveling member is carried out earlier, then splices prefabricated panel in proper order along leveling member to set up the regulating plate in arbitrary one side of prefabricated panel, insert the regulation plate size through adjusting prefabricated panel and carry out the regulation of assembled baffle overall dimension, in order to adapt to the size of waiting to install assembled baffle space. Compared with the prior art, the processing that the blank position was left to panel cutting and concrete placement need not be carried out at the assembled job site to this application, only need with prefabricated panel, leveling member and regulating plate assembly can, left the blank position to appear in the construction and carried out high-efficient swift processing, improved the efficiency of construction of assembled construction, shortened construction cycle.
The empty position that leaves that appears after utilizing the regulating plate to assemble prefabricated panel fills, supplies prefabricated panel to insert in the first folding through the space of first folding face and the third folding face formation of first folding to realize the concatenation and the assembly between regulating plate and the prefabricated panel. The size that the prefabricated panel inserted in first folding piece is adjustable to remaining the empty position according to prefabricated panel assembly back and carrying out the regulation of the size that the prefabricated panel inserted in first folding piece, thereby the realization is to keeping the regulation of empty position. The utility model provides an adjusting plate is prefabricated section bar, only need during the construction with prefabricated panel assemble can, for the assembled construction provides very big convenient, reduced the dust of job site and the production of building rubbish simultaneously.
Preferably, the prefabricated plate comprises a plurality of prefabricated plates, wherein the prefabricated plates are arranged in the middle of the prefabricated plate; the pipeline partition plate comprises a partition plate, two first folding pieces arranged in parallel relatively and a plurality of connecting pieces arranged in parallel, wherein the two ends of each connecting piece are fixedly connected with the side faces of the first folding pieces respectively, the partition plate is located in any space formed by the two first folding pieces and the connecting pieces, and one side, away from the adjusting plate, of the prefabricated plate is inserted into the first folding pieces of the pipeline partition plate.
By adopting the technical scheme, the two first folding pieces which are arranged in parallel are connected by utilizing the plurality of connecting pieces, and the space between the two first folding pieces is divided, so that the placing space of equipment such as a power distribution cabinet is formed, and the divided non-equipment placing space is filled by using the partition plate, so that the pipeline partition plate is formed; the position of the partition plate can be set according to the position of the equipment to be abdicated in actual conditions. The utility model provides a pipeline partition plate is the prefab to need not carry out the design of stepping down and the processing of equipment such as switch board at the scene, the event has avoided the production of dust and building rubbish in the panel cutting process, utilize the prefab only need carry out the assembled installation at the scene can, saved the unnecessary processing operation of site operation, shortened construction cycle, further improved the holistic efficiency of construction of assembled construction.
Preferably, the regulating plate further comprises a second folding piece which is detachably and fixedly connected to any side of a third folding surface of the first folding piece, the second folding piece comprises a fourth folding surface, a fifth folding surface and a sixth folding surface, wherein the two sides of the sixth folding surface are respectively fixedly connected with the fourth folding surface and one side of the fifth folding surface, the fourth folding surface and the fifth folding surface are arranged in parallel, and the sixth folding surface protrudes to form a first convex strip matched with the first groove relative to one side of the fourth folding surface and one side of the fifth folding surface.
Through adopting above-mentioned technical scheme, the second is rolled over the size that can leave empty position according to the reality and is removed in first folding face inside to through the cooperation of the piece and prefabricated panel of rolling over the second, thereby realize being connected between regulating plate and the prefabricated panel, realize the packing to leaving empty position simultaneously.
Preferably, the second folding part is arranged on any one side of the third folding surface of the first folding part of the pipeline partition plate.
Through adopting above-mentioned technical scheme, the piece can be located first inside folding to the second, can adjust the second according to the size that needs adjust when actual assembly in the inside position of first folding to through the cooperation of piece and prefabricated panel are rolled over to the second, thereby realize the pipeline partition plate of this application and the regulation of being connected between the prefabricated panel and relevant position size and interval. The second folding member may also be positioned between the first folding member and the partition to adjust the strength of the connection between the partition and the first folding member.
Preferably, a prefabricated filling material is arranged in the first fold.
Through adopting above-mentioned technical scheme, at the inside prefabricated filler material that sets up of first piece of folding, can increase the bulk rigidity of first piece of folding to improve the joint strength between first piece of folding and the prefabricated panel and the tolerance intensity of first piece of folding self. The existence of the prefabricated filling material can reduce the filling of concrete in site construction, thereby reducing the generation of dust and construction waste, further improving the construction efficiency of the transfer construction and shortening the construction period.
Preferably, a second partition plate is arranged in a space of the pipeline partition plate close to the ground, and a third through hole extending from one end, far away from the ground, of the second partition plate to one end, close to the ground, of the second partition plate is formed in the second partition plate; and a fourth through hole corresponding to the third through hole is formed in the connecting piece.
Through adopting above-mentioned technical scheme, carrying out placing of switch board in the space on ground is kept away from to pipeline partition plate, at this moment, stretch into the third through-hole of second baffle and stretch out to ground from the electric wire that stretches out in the switch board, the electric wire extends to indoor everywhere along the wall limit on ground to form built-in electric wire and move towards the route. Compared with the prior art, the electric wires extending out of the power distribution cabinet are fixed and installed through the third through holes formed in the second partition plate, the partition plate is not required to be constructed with wiring grooves in the construction site, and the construction efficiency of the prefabricated building construction process is improved.
Preferably, first through holes are uniformly arranged along the length direction of the precast slab at intervals, and second through holes intersecting with the first through holes are uniformly arranged along the width direction of the precast slab at intervals; the first through hole penetrates through two opposite sides of the prefabricated plate, and the second through hole penetrates through the other two opposite sides of the prefabricated plate.
Through adopting above-mentioned technical scheme, the electric wire that extends to ground from pipeline partition plate stretches into inside the prefabricated panel along first through-hole from the one end that prefabricated panel is close to ground to extend to the position that needs set up the socket along first through-hole and second through-hole, the electric wire is worn out the wall of prefabricated panel and is carried out the installation of socket from here. Compared with the prior art, the electric wire extending to the interior of the prefabricated plate is fixed and installed through the first through hole and the second through hole which are formed in the prefabricated plate, the prefabricated plate does not need to be constructed with wiring grooves on the construction site, and the construction efficiency of the prefabricated house construction process is improved.
In a second aspect, the present application provides a method for installing an assembly type partition wall system, which adopts the following technical scheme:
the mounting method of the assembled partition wall system specifically comprises the following steps:
s1, mounting the leveling piece on the ground at the position of the preset partition wall;
s2, sequentially splicing the precast slabs along the leveling members, installing the adjusting plate at the edge of the preset partition wall where the leveling member is located, and inserting one end of the precast slabs into the first folding member of the adjusting plate; adjusting the size of the prefabricated panel inserted into the first folding piece according to the size of the reserved empty position;
and S3, fixing the prefabricated plate and the leveling member, the prefabricated plate and the adjusting plate, thereby completing the installation of the assembly type partition wall.
By adopting the technical scheme, the position of the preset partition plate is fixed by utilizing the leveling piece arranged at the bottom of the prefabricated plate, and then the prefabricated plate is sequentially spliced along the leveling piece; insert one side of prefabricated panel and install in the regulating plate of predetermineeing wallboard edge, and insert the size in the regulating plate according to the spatial adjustment prefabricated panel of predetermineeing the partition wall, in order to adapt to the space that can carry out the installation of assembled baffle, thereby insert the regulation plate size through adjusting prefabricated panel and carry out the regulation of staying empty position, the processing mode high efficiency of staying empty position in this application to the assembly construction is swift, need not carry out panel cutting concrete placement at the scene, the efficiency of construction of assembly construction is improved, and simultaneously, the production of dust and construction waste has been reduced.
In summary, the present application includes at least one of the following beneficial technical effects:
1. the empty position that leaves that the first piece that utilizes the regulating plate appears after assembling prefabricated panel is filled, inserts the inside size of first piece of folding through adjustment prefabricated panel, adjusts the holistic size of assembled wall body to the size in adaptation is waited to install assembled partition space, thereby leaves the processing of empty position, and this application leaves the processing mode high-efficient swift of empty position in the assembly construction, has improved the efficiency of construction of assembly construction.
2. This application still is provided with the pipeline partition board and steps down for equipment such as switch board, and simultaneously, can also insert the inside size of first piece of pipeline partition board through adjustment prefabricated panel, adjust the holistic size of assembled wall body, in order to adapt to the size of waiting to install assembled partition wall space, thereby further carry out the processing of leaving a blank position, so this application need not carry out the design and the construction of stepping down of equipment such as switch board at the assembled job site, the dust and the construction waste that the site operation brought have been reduced, the construction cycle has been shortened, and the efficiency of construction is improved.
3. This application moves towards the route through predetermineeing the electric wire inside pipeline partition plate and prefabricated panel, when carrying out the electric wire overall arrangement, only need with the electric wire move towards the route in the electric wire shuttle to the installation with the position of electric apparatus and carry out the installation of socket can, need not to carry out the construction of trough on prefabricated panel, shortened construction cycle, improved the efficiency of construction.
Drawings
Fig. 1 is a schematic view of the overall structure of the present application.
Fig. 2 is a schematic view of the structure of fig. 1 after the pipe partition wall plate is arranged.
Fig. 3 is a schematic structural view of the precast panel of fig. 1.
Fig. 4 is a schematic view of the regulating plate of fig. 1.
Fig. 5 is a partially enlarged view of a portion a in fig. 4.
Fig. 6 is a schematic structural view of the second separator in fig. 2.
Fig. 7 is a schematic view of the structure of the connector of fig. 2.
Description of reference numerals: 1. prefabricating a plate; 11. a first through hole; 12. a second through hole; 13. a first connecting bar; 131. a second convex strip; 14. a second connecting strip; 141. a third groove; 2. an adjusting plate; 21. a first fold; 211. a first folded surface; 212. a second folded surface; 213. a third folded surface; 2131. a first groove; 22. prefabricating a filling material; 23. a second fold; 231. a fourth folded surface; 232. fifth folding; 233. a sixth folded surface; 2331. a first rib; 3. a pipe partition plate; 31. a connecting member; 311. a seventh folded surface; 312. an eighth folded surface; 3121. a fourth via hole; 313. a ninth folding surface; 314. a second groove; 32. a first separator; 33. a placement area; 34. a second separator; 341. a third through hole; 4. a socket; 5. a power distribution cabinet; 6. and a leveling member.
Detailed Description
The present application is described in further detail below with reference to figures 1-7.
The embodiment of the application discloses assembled partition wall system. Referring to fig. 1, the assembly type wallboard system comprises an adjusting plate 2, a leveling member 6 and a plurality of prefabricated panels 1, wherein the prefabricated panels 1 are sequentially spliced, and the leveling member 6 is positioned on the side surface of the bottom of the prefabricated panels 1 and is detachably and fixedly connected with the prefabricated panels 1; the adjusting plate 2 is positioned at any side of the prefabricated plates 1 and is also detachably and fixedly connected with the prefabricated plates 1. The assembled wallboard is formed by splicing a plurality of prefabricated panels 1, an adjusting plate 2 and a leveling member 6.
Referring to fig. 1, the leveling member 6 is disposed on the spatial ground of a predetermined wall, and both ends of the leveling member 6 are fixedly connected to the wall adjacent to the predetermined wall, and positions and extending directions of the predetermined wall, and at the same time, levels the assembly position of the prefabricated panel 1. Further, the leveling members 6 can also be arranged on the top side of the precast slab, and under the combined action of the two leveling members 6, the assembly position of the precast slab 1 in the assembly process can be further leveled. The end part of the precast slab 1 is fixed with the leveling piece 6 by using angle steel.
Referring to fig. 2, two sides of the prefabricated panel 1 are fixedly connected with a first connecting strip 13 and a second connecting strip 14 respectively, a second protruding strip 131 is arranged along the length direction of the first connecting strip 13, a third groove 141 matched with the second protruding strip 131 is arranged along the length direction of the second connecting strip 14, and the assembly of the adjacent prefabricated panels 1 is realized through the matching of the second protruding strip 131 and the third groove 141 of the adjacent prefabricated panels 1.
Referring to fig. 3, the adjustment plate 2 includes a first fold 21. The first folding piece 21 comprises a first folding surface 211, a second folding surface 212 and a third folding surface 213, the first folding surface 211 and the second folding surface 212 are parallel and are arranged oppositely, two ends of the third folding surface 213 are fixedly connected with one sides of the first folding surface 211 and the second folding surface 212 respectively, and a space for inserting the prefabricated panel 1 is formed between the first folding surface 211 and the second folding surface 212. The middle of the third folding surface 213 is recessed to form a first groove 2131, and the first groove 2131 is located on one side of the first folding surface 211 and the second folding surface 212. With continued reference to fig. 1, the first recess 2131 is engaged with the second protrusion 131 of the first connecting strip 13 of the prefabricated panel 1. Therefore, in the prefabricated construction, the first flap 21 is attached to the vacant position after the prefabricated panel 1 is assembled by the engagement of the first recessed groove 2131 of the first flap 21 and the second projecting strip 131 of the prefabricated panel 1, and the vacant position is filled with the first flap 21.
This application utilizes the first piece 21 of folding of regulating plate 2 to fill the position of staying empty that appears after assembling prefabricated panel 1, inserts the inside size of first piece 21 of folding through adjusting prefabricated panel 1, adjusts the holistic size of assembled wall to the size in adaptation installation assembled partition space is treated, thereby leaves the processing of empty position, simultaneously, utilizes leveling 6 to make prefabricated panel 1's assembled position flush. The processing mode that this application left empty position in to the assembly construction is high-efficient swift, has improved the efficiency of construction of assembly construction.
Referring to fig. 4, this application still includes pipeline partition plate 3, and pipeline partition plate 3 sets up between arbitrary adjacent prefabricated panel 1 for give way switch board 5. Pipeline partition plate 3 includes first baffle 32, second baffle 34, two first folding 21 and three connecting piece 31, two first folding 21 are relative and parallel arrangement, three connecting piece 31 mutual parallel arrangement and connecting piece 31 both ends respectively with two first folding 21's side fixed connection, pipeline partition plate 3's three connecting piece 31 falls into three region with the space between two first folding 21, the region that is located 3 middle parts of pipeline partition plate is the district 33 of placing of switch board 5: the first partition 32 is located in the area of the pipe partition 3 away from the ground; the second partition 34 is located in the area of the pipe partition wall plate 3 near the ground. Referring to fig. 4, where the first folding member 21 and the first folding member 21 of the adjusting plate 2 have the same structure, and the first grooves 2131 of the two first folding members 21 of the duct partition plate 3 are close to each other, referring to fig. 6, one side edge of the second partition plate 34 protrudes along the length direction thereof in a direction away from the second partition plate 34 to form a protrusion, and the protrusion of the second partition plate 34 is matched with the first groove 2131 of the first folding member 21; a protrusion is also formed on one side edge of the first partition 32 along the length direction thereof and protruding in a direction away from the first partition 32, and the protrusion of the first partition 32 is also matched with the first groove 2131 of the first folding piece 21; when the first partition plate 32 or the second partition plate 34 is placed, the side edges of the first partition plate 32 or the second partition plate 34 are placed in the first grooves 2131 of any one of the first folding pieces 21, so that the prefabricated panel 1 and the pipe partition plate 3 are spliced.
This application is further through the inside size of the first 21 pieces of folding of adjustment precast slab 1 insertion pipeline partition plate 3, adjusts the holistic size of assembled wall to the size in adaptation waiting to install assembled partition wall space, thereby the processing of leaving the blank position.
Further, referring to fig. 4 and 5, a prefabricated filling material 22 is further disposed in the first fold 21, and the prefabricated filling material 22 is located at an end of the first fold 21 near the first recess 2131, so as to improve the strength of the first fold 21. Further, the ends of the first folding surface 211 and the second folding surface 212 close to the third folding surface 213 are recessed toward the inside of the first folding member 21, and cooperate with the prefabricated filling material 22 located at the inner side of the position, so as to further improve the overall strength of the first folding member 21 and the connection strength of the first folding member 21 and the prefabricated panel 1.
Further, referring to fig. 5, the pipe partition board 3 further includes a second folding member 23, the second folding member 23 may be located inside the first folding member 21, and the second folding member 23 may be detachably and fixedly connected to the first folding member 21, during the assembly type construction, the end portion of the prefabricated board 1 is inserted into the first folding member 21, so as to realize the assembly of the pipe partition board 3 and the prefabricated board 1, and the position of the second folding member 23 inside the first folding member 21 is adjusted according to the actual size during the assembly construction and is fixed, so as to adjust the size of the prefabricated board 1 inserted into the first folding member 21.
The second folding member 23 includes a fourth folding surface 231, a fifth folding surface 232 and a sixth folding surface 233, the fourth folding surface 231 and the fifth folding surface 232 are parallel and opposite to each other, and two ends of the sixth folding surface 233 are respectively fixedly connected with one side of the fourth folding surface 231 and one side of the fifth folding surface 232. The middle portion of the sixth folding surface 233 protrudes to a side away from the fourth folding surface 231 and the fifth folding surface 232 to form a first protruding strip 2331, and the first protruding strip 2331 is matched with the end portion of the prefabricated panel 1 inserted into the first folding member 21. During the assembly type construction, the prefabricated panel 1 is inserted into the first folding parts 21 on the two sides of the pipeline partition board 3, and the pipeline partition board 3 and the prefabricated panel 1 are assembled further through the matching of the first protruding strips 2331 on the second folding parts 23 and the end part of the prefabricated panel 1. In the present application, the overlapping position of the first folding member 21 and the second folding member 23 is fixed by a bolt, specifically, the bolt penetrates the inside from the outside of the first folding member 21, and the first folding surface 211 and the fourth folding surface 231 are fixed, and the second folding surface 212 and the fifth folding surface 232 are fixed, respectively.
In addition, the second folding member 23 may also be located between the first folding member 21 and the first partition 32 or the second partition 34, the first protrusion 2331 of the second folding member 23 is engaged with the first recess 2131 of the first folding member 21, after the first protrusion 2331 is inserted into the first recess 2131, the edge of the side portion of the first partition 32 or the second partition 34 is inserted into the side of the second folding member 23 away from the first folding member 21, so that the second folding member 23 is disposed between the first folding member 21 and the partition, thereby adjusting the connection strength between the first folding member 21 and the partition.
Further, referring to fig. 3, the adjusting plate 2 is also provided with a second folding member 22 inside, and the size of the prefabricated panel 1 inserted into the first folding member 21 is adjusted by adjusting the position of the second folding member 22 inside the first folding member 21, so that the size of the whole assembly type partition is further adjusted to adapt to the size of the space where the assembly type partition can be installed.
Further, referring to fig. 6, a third through hole 341 is formed on the second partition 34, and the third through hole 341 extends from the placement area 33 of the power distribution cabinet 5 to the ground. The electric wire extending from the power distribution cabinet 5 is passed through the third through hole 341 and extends from one end of the third through hole 341 close to the ground, and then extends to other indoor positions along the wall.
Referring to fig. 2, the precast slab 1 is respectively provided with a plurality of first through holes 11 and a plurality of second through holes 12, the first through holes 11 are uniformly spaced along the length direction of the precast slab 1, and the first through holes 11 penetrate from one end of the precast slab 1 far away from the ground to one end of the precast slab 1 close to the ground; the second through holes 12 are formed along the width direction of the prefabricated plate 1 at even intervals, and the second through holes 12 penetrate through to one end, away from the pipeline partition plate 3, of the prefabricated plate 1 from one end, close to the pipeline partition plate 3, of the prefabricated plate 1. The first through hole 11 and the second through hole 12 intersect to form a path for the electric wire to extend inside the precast panel 1. After the electric wire extending from the power distribution cabinet 5 to the ground through the second partition board 34 extends to the prefabricated panel 1 to be provided with the socket 4 on the ground, the first through hole 11 at the bottom of the prefabricated panel 1 penetrates into the prefabricated panel 1, and the electric wire extends to the position where the socket 4 needs to be arranged through the electric wire extending path formed by the first through hole 11 and the second through hole 12 in the prefabricated panel 1, and extends out from the position to be provided with the socket 4.
Referring to fig. 7, the connecting member 31 includes a seventh folding surface 3121, an eighth folding surface 3222, and a ninth folding surface 3123 fixedly connected in sequence, the seventh folding surface 3121 and the ninth folding surface 3123 are oppositely and parallelly disposed, and form a second groove 3124, the second groove 3124 is matched with the edge of the end of the partition, when the partition is placed, the edge of the end of the partition is placed in the second groove 3124. The second groove 3124 faces a side on which the partition is placed when the connecting member 31 is connected to the first folding member 21. The structure of the three connecting pieces 31 of the pipe partition plate 3 of the present application is the same. In order to adapt to the fact that the electric wires extending out of the power distribution cabinet 5 penetrate into and out of the second partition plate 34, fourth through holes 3121 are respectively formed on the eighth folding surfaces 312 of the two connecting pieces 31 close to the second partition plate 34, and the positions of the fourth through holes 3121 correspond to the positions of the third through holes 341, so that the electric wires can conveniently penetrate from one end of the second partition plate 34 far away from the ground and penetrate out from one end of the second partition plate 34 close to the ground.
Therefore, by means of the wall assembly system, the electric wires are fixed and installed on the wall body through the through holes formed in the wall body, the prefabricated plate 1 or the partition plate does not need to be constructed with wiring grooves in the construction site, and the construction efficiency of pipeline layout in the construction process of the prefabricated building is improved.
The embodiment of the application also discloses an installation method of the assembled partition wall system, which specifically comprises the following steps:
s1, mounting the leveling member 6 on the ground at the position of a preset partition wall, and fixedly connecting two ends of the leveling member 6 with walls on two sides of a preset assembly wall space; in addition, according to the height of the precast slab 1, a leveling member 6 is also fixedly connected to one end of the preset assembly wall space far away from the ground.
S2, splicing and installing the precast slabs 1 along the leveling pieces 6 in sequence;
the pipeline partition plate 3 is installed according to the position of the power distribution cabinet 5, the power distribution cabinet 5 is located in the placement area 33 of the pipeline partition plate 3, and the electric wire extending out of the power distribution cabinet 5 extends to the ground through the fourth through hole 3121 of the connecting piece 31 and the third through hole 341 of the second partition plate 34; inserting one end of the prefabricated plate 1 into a first folding piece 21 of the pipeline partition plate 3, arranging the prefabricated plates 1 at two ends of the pipeline partition plate 3, and assembling the pipeline partition plate 3 and the prefabricated plates 1; the electric wire extending to the bottom of the prefabricated panel 1 needing to be provided with the socket 4 along the wall edge penetrates into the first through hole 11 from the bottom end of the prefabricated panel 1 and extends to the position, provided with the socket 4, on the prefabricated panel 1 through the electric wire path of the first through hole 11 and the second through hole 12, the electric wire extends out of the prefabricated panel 1 from the position and is provided with the socket 4, and therefore the electric wire layout in the prefabricated house is completed; in the process of laying out the wire path, the wiring groove and the power distribution cabinet 5 placing area 33 and the like do not need to be designed and constructed on site, so that the construction efficiency of the pipeline layout in the construction process of the prefabricated building is improved.
The adjusting plate 2 is arranged at the edge of the preset partition wall of the leveling member 6, and the first groove 2131 of the first folding member 21 can be far away from the precast slab 1 or close to the precast slab 1;
when the first groove 2131 of the first folding piece 21 is far away from the prefabricated plate 1, one end of the prefabricated plate 1 is inserted into the first folding piece 21 of the adjusting plate 2, and the size of the prefabricated plate 1 inserted into the first folding piece 21 is adjusted according to the size of the vacant position; the whole length of the assembly type wall body is adjusted by adjusting the lengths of the first folding piece 21 inserted into the pipeline partition plate 3 at the end part of the prefabricated plate 1 and the first folding piece 21 positioned at the wall corner, so as to adapt to the length of a space where the assembly type wall body can be installed;
the first recess 2131 of the first fold 21 is disposed adjacent to the prefabricated panel 1. The first grooves 2131 are matched with the first convex strips 131 of the prefabricated plate 1, and the first convex strips 131 of the prefabricated plate 1 are inserted into the first grooves 2131 to complete the installation of the first grooves and the first convex strips;
and S3, fixing the prefabricated plate 1 and the leveling members 6, the prefabricated plate 1 and the adjusting plates 2, thereby completing the installation of the fabricated partition wall.
The above embodiments are preferred embodiments of the present application, and the protection scope of the present application is not limited by the above embodiments, so: all equivalent changes made according to the structure, shape and principle of the present application shall be covered by the protection scope of the present application.

Claims (8)

1. The utility model provides an assembled partition wall system, includes can dismantle fixed connection's prefabricated panel (1) in proper order, its characterized in that: the leveling device also comprises a leveling member (6) which is detachably and fixedly connected with the side surface of the bottom of the precast slab (1) and an adjusting plate (2) which is detachably and fixedly connected with any side of the precast slab (1); the adjusting plate (2) comprises a first folding piece (21) for inserting one side of the precast slab (1);
the first folding piece (21) comprises a first folding surface (211), a second folding surface (212) and a third folding surface (213) of which two sides are fixedly connected with one side of the first folding surface (211) and one side of the second folding surface (212) respectively, the first folding surface (211) and the second folding surface (212) are arranged in parallel relatively, and the third folding surface (213) is sunken towards one side where the first folding surface (211) and the second folding surface (212) are located to form a first groove (2131); one side of the prefabricated plate (1) is inserted into the first folding piece (21).
2. A fabricated partition system according to claim 1, wherein: the pipeline partition plate is characterized by also comprising a pipeline partition plate (3) arranged between any adjacent prefabricated plates (1); pipeline partition plate (3) include the baffle, relative parallel arrangement two first folding piece (21) and both ends respectively with a plurality of parallel arrangement's of first folding piece (21) side fixed connection connecting piece (31), the baffle is located two arbitrary spaces that first folding piece (21) and connecting piece (31) are constituteed, prefabricated panel (1) keep away from in first folding piece (21) of pipeline partition plate (3) one side of regulating plate (2).
3. A fabricated partition system according to claim 2, wherein: adjusting plate (2) still include the second of dismantling fixed connection in third folded surface (213) arbitrary side of first folded member (21) folded member (23), second folded member (23) include fourth folded surface (231), fifth folded surface (232) and both sides respectively with fourth folded surface (231), sixth folded surface (233) of one side fixed connection of fifth folded surface (232), fourth folded surface (231) and fifth folded surface (232) parallel arrangement relatively, and sixth folded surface (233) to for fourth folded surface (231), the protruding first sand grip (2331) of forming and first recess (2131) complex of one side of fifth folded surface (232).
4. A fabricated partition system according to claim 3 wherein: the second folding piece (23) is arranged on any side of a third folding surface (213) of the first folding piece (21) of the pipeline partition plate (3).
5. An assembly partition system according to claim 4 wherein: a prefabricated filling material (22) is arranged in the first fold (21).
6. An assembly partition system according to claim 5 wherein: a second partition plate (34) is arranged in a space, close to the ground, of the pipeline partition plate (3), and a third through hole (341) extending from one end, far away from the ground, of the second partition plate (34) to one end, close to the ground, of the second partition plate (34) is formed in the second partition plate (34); the connecting piece (31) is provided with a fourth through hole (3121) corresponding to the third through hole (341).
7. An assembly partition system according to claim 6 wherein: first through holes (11) are uniformly arranged along the length direction of the prefabricated plate (1) at intervals, and second through holes (12) intersected with the first through holes (11) are uniformly arranged along the width direction of the prefabricated plate (1) at intervals; the first through holes (11) penetrate through two opposite sides of the prefabricated plate (1), and the second through holes (12) penetrate through the other two opposite sides of the prefabricated plate (1).
8. A method of installing an assembly partition system, comprising: the method specifically comprises the following steps:
s1, mounting the leveling piece (6) on the ground at the preset partition wall;
s2, splicing the precast slabs (1) in sequence along the leveling parts (6), installing the adjusting plate (1) at the edge of the leveling part (6) at the preset partition wall, and inserting one end of the precast slab (1) into the first folding part (21) of the adjusting plate (1); adjusting the size of the prefabricated plate (1) inserted into the first folding piece (21) according to the size of the vacant position;
and S3, fixing the prefabricated plate (1), the leveling piece (6), the prefabricated plate (1) and the adjusting plate (1) so as to finish the installation of the assembled partition wall.
CN202110063063.1A 2021-01-18 2021-01-18 Assembled partition wall system and installation method thereof Active CN112878548B (en)

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