CN222822678U - Prefabricated component for cement board - Google Patents
Prefabricated component for cement board Download PDFInfo
- Publication number
- CN222822678U CN222822678U CN202421647182.7U CN202421647182U CN222822678U CN 222822678 U CN222822678 U CN 222822678U CN 202421647182 U CN202421647182 U CN 202421647182U CN 222822678 U CN222822678 U CN 222822678U
- Authority
- CN
- China
- Prior art keywords
- groups
- concave
- convex
- panel
- embedded column
- Prior art date
- Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
- Active
Links
Landscapes
- Building Environments (AREA)
Abstract
The utility model relates to the technical field of building prefabricated parts, and particularly discloses a prefabricated part for a cement board, which consists of two groups of splice plates and two groups of sealing plates, wherein the two groups of splice plates are mutually matched, the two groups of sealing plates are respectively arranged at two ends of the two groups of splice plates, each group of splice plates comprises a panel, a convex embedded column, a concave embedded column, a convex longitudinal joint block and a concave longitudinal joint block, the convex embedded column is fixedly connected with the panel, the concave embedded column is fixedly connected with the panel, the two groups of convex longitudinal joint blocks are respectively fixedly connected with the panel and the convex embedded column and are respectively positioned at two ends of the panel and the convex embedded column, the two groups of concave longitudinal joint blocks are respectively fixedly connected with the panel and the concave embedded column, the convex embedded column is mutually matched with the concave embedded column and the concave longitudinal joint block, and the concave embedded column are mutually matched with the convex embedded column and the convex longitudinal joint block. The equipment cost input during processing the product is reduced, the purpose of reducing the processing cost is achieved, the convenience of production is improved, and the processing efficiency of the product is greatly improved.
Description
Technical Field
The utility model relates to the technical field of building prefabricated parts, in particular to a prefabricated part for a cement board.
Background
At present, the prefabricated components refer to steel, wood or concrete components which are prefabricated in factories or on site according to design specifications, the prefabricated components play an important role in the development of modern engineering and buildings, and most of cement board prefabricated components are of an integrated structure, so that the prefabricated components have larger volumes, and certain inconvenience is brought to subsequent transportation and carrying, so that the prefabricated components have limitations.
The utility model provides a prefabricated component for cement board in prior art CN217204861U, including interior template and external form, install splice assembly between interior template and the external form, and the relative one side outer wall of interior template and external form all is provided with a set of T shape strip, a plurality of T shape strip respectively with interior template and external form structure as an organic whole, splice assembly includes two fixed mounting in the concatenation ends at interior template one side outer wall both ends, and the slot has been seted up to the middle-end of concatenation end, the external form has the cutting towards the equal fixed mounting in one side outer wall both ends of interior template, and cutting and slot mutual match, the both sides that the external form is close to the cutting all fixed mounting have the side fender, one side fixed mounting of interior template has the end shield, divide into interior template and external form with this prefabricated component for this prefabricated component can separately transport, effectively reduce the restriction that this prefabricated component gravity, volume brought, brought the convenience for the use of this prefabricated component, utilize the splice assembly that sets up, can utilize the cutting to insert in the slot in the follow-up use, thereby realize the gomphosis between interior template and the external form.
But in the prior art, the inner template and the outer template are spliced in a way of embedding the grooves and the convex blocks, and the characteristics of the inner template and the outer template are inconsistent in structure, so that three or more templates are required to be used for processing and preparing in the processing process, the cost is increased, and meanwhile, the processing modes of different templates are slightly changed, so that the processing efficiency can be influenced in the processing process.
Disclosure of utility model
The utility model aims to provide a prefabricated component for a cement board, which aims to solve the technical problems that in the prior art, an inner template and an outer template are spliced in a way of embedding grooves and protruding blocks, and the characteristics of the inner template and the outer template are inconsistent in structure, so that three or more templates are required to be used for processing and preparing in the processing process, the cost is increased, and meanwhile, the processing modes of different templates are slightly changed, so that the processing efficiency is influenced in the processing process.
In order to achieve the above purpose, the prefabricated component for the cement board comprises two groups of splice plates and two groups of sealing plates, wherein the two groups of splice plates are mutually matched, the two groups of sealing plates are respectively arranged at two ends of the two groups of splice plates, each group of splice plates comprises a panel, a convex embedded column, a concave embedded column, a convex longitudinal joint block and a concave longitudinal joint block, the convex embedded column is fixedly connected with the panel and is positioned at one side of the panel, the concave embedded column is fixedly connected with the panel and is positioned at one side of the panel, the number of the convex longitudinal joint blocks is two groups, the two groups of convex longitudinal joint blocks are respectively fixedly connected with the panel and the convex embedded column and are respectively positioned at two ends of the panel and the convex embedded column, the two groups of concave longitudinal joint blocks are respectively fixedly connected with the panel and the concave embedded column and are respectively positioned at two ends of the panel and the concave embedded column, and the convex embedded block and the concave embedded column are mutually matched with the convex embedded column and the convex embedded column.
Each group of splice plates further comprises an insulation layer and a waterproof layer, wherein the insulation layer is bonded with the panel and positioned on one side of the panel, and the waterproof layer is arranged on one side of the insulation layer.
The two ends of each sealing plate are provided with longitudinal caulking grooves, and the longitudinal caulking grooves are mutually matched with one sides of the convex longitudinal connecting blocks and the concave longitudinal connecting blocks.
The prefabricated component for the cement board further comprises a plurality of mounting convex blocks and steel wire meshes, wherein the number of the mounting convex blocks is multiple, each mounting convex block is fixedly connected with two groups of panels and is respectively positioned on the inner sides of the two groups of panels, the number of the steel wire meshes is multiple, and each steel wire mesh is respectively fixedly connected with the corresponding mounting convex block and is respectively embedded into one side of the corresponding mounting convex block.
The prefabricated component for the cement board further comprises a jogged protruding block and a jogged concave block, wherein the jogged protruding block is fixedly connected with one group of the sealing plates and is positioned on one side of the sealing plates, the jogged concave block is fixedly connected with the other group of the sealing plates and is positioned on one side of the sealing plates, and the jogged protruding block and the jogged concave block are mutually matched.
According to the prefabricated component for the cement board, the two groups of splice plates are composed of the panel, the convex embedded columns, the concave embedded columns, the convex longitudinal blocks and the concave longitudinal blocks, the characteristics of each group of splice plates are guaranteed to be consistent, when the two groups of splice plates are spliced, the inner sides of the two groups of panel are oppositely arranged, the convex embedded columns of the two groups of splice plates are opposite to the concave embedded columns, the convex longitudinal blocks are opposite to the concave longitudinal blocks, the two groups of convex embedded columns and the concave embedded columns are in sliding splicing, so that the two groups of splice plates are spliced, after the two groups of splice plates are spliced, the convex longitudinal blocks and the concave longitudinal blocks on two sides of the panel are spliced, the convex longitudinal blocks and the concave longitudinal blocks form integral components capable of being matched with the sealing plates, the sealing plates are inserted into one sides of the convex longitudinal blocks and the concave longitudinal blocks, the two groups of splice plates are opposite to each other, the two groups of splice plates are matched with each other, the two groups of splice plates are conveyed to the same, the cement board is conveyed to the two groups of splice plates, the cement board is conveyed to the same end, and the cement board is convenient to manufacture the two groups of the cement board, and the cement board is convenient to manufacture the cement board.
Drawings
In order to more clearly illustrate the embodiments of the utility model or the technical solutions in the prior art, the drawings that are required in the embodiments or the description of the prior art will be briefly described, it being obvious that the drawings in the following description are only some embodiments of the utility model, and that other drawings may be obtained according to these drawings without inventive effort for a person skilled in the art.
Fig. 1 is a schematic structural view of a first embodiment of the present utility model.
Fig. 2 is a partial structural schematic diagram of a first embodiment of the present utility model.
Fig. 3 is a sectional view of the internal structure of the first embodiment of the present utility model.
Fig. 4 is a schematic structural view of a second embodiment of the present utility model.
Fig. 5 is a sectional view of the internal structure of a second embodiment of the present utility model.
101-Panel, 102-convex embedded column, 103-concave embedded column, 104-convex longitudinal joint block, 105-concave longitudinal joint block, 106-sealing plate, 107-heat insulation layer, 108-waterproof layer, 109-longitudinal embedded groove, 201-installation convex block, 202-steel wire mesh, 203-embedded convex block and 204-embedded concave block.
Detailed Description
The first embodiment of the application is as follows:
Referring to fig. 1 to 3, fig. 1 is a schematic structural view of a first embodiment of the present utility model, fig. 2 is a schematic partial structural view of the first embodiment of the present utility model, and fig. 3 is a sectional internal structural view of the first embodiment of the present utility model.
The utility model provides a prefabricated component for a cement board, which comprises a splice plate and a sealing plate 106, wherein the splice plate comprises a panel 101, a convex embedded column 102, a concave embedded column 103, a convex longitudinal joint block 104 and a concave longitudinal joint block 105, and also comprises an insulation layer 107 and a waterproof layer 108.
For this embodiment, two groups of splice plates are oppositely and slidably spliced to form a cavity, one of the two groups of splice plates is sealed by sealing plates 106, cement slurry is poured into the cavity, and the other sealing plate 106 is finally inserted into the other ends of the two groups of splice plates to finish sealing.
Wherein the prefabricated components for cement boards are composed of two groups of splice plates and two groups of sealing plates 106, the two groups of splice plates are mutually matched, the two groups of sealing plates 106 are respectively arranged at two ends of the two groups of splice plates, the convex columns 102 are fixedly connected with the panel 101 and positioned at one side of the panel 101, the concave columns 103 are fixedly connected with the panel 101 and positioned at one side of the panel 101, the number of the convex longitudinal blocks 104 is two, the two groups of convex longitudinal blocks 104 are respectively fixedly connected with the panel 101 and the convex columns 102 and are respectively positioned at two ends of the convex columns 102, the two groups of concave longitudinal blocks 105 are respectively fixedly connected with the panel 101 and the concave columns 103 and are respectively positioned at two ends of the panel 101, the convex columns 102 and the concave columns 103 are mutually matched with the concave columns 103 and the concave blocks 105, the two groups of concave columns 103 are mutually matched with the panel 101, the two groups of convex columns 104 are correspondingly arranged at the two sides of the panel 101, the two groups of concave columns 103 and the panel 104, the two groups of concave columns 104 are correspondingly spliced with the two groups of convex columns 102, the two groups of concave columns 105 are correspondingly spliced, the two groups of convex columns 102 are correspondingly spliced, and the two groups of convex columns are spliced and are correspondingly arranged at the two sides of the panel 101 and the two groups of concave columns 103, the convex longitudinal blocks 104 and the concave longitudinal blocks 105 form an integral member which can be matched with the insertion of the sealing plates 106, so that one sealing plate 106 is inserted into one side of the convex longitudinal blocks 104 and one side of the concave longitudinal blocks 105, one ends of two groups of splicing plates are sealed, cement slurry is poured into the other ends, and after the pouring of the cement slurry is completed, the other sealing plate 106 is sealed to the other ends of the two groups of splicing plates until the cement slurry is solidified.
Secondly, the heat preservation 107 with the panel 101 bonds, and is located one side of panel 101, waterproof layer 108 set up in one side of heat preservation 107, through heat preservation 107 is for panel 101 provides the heat preservation effect, simultaneously by waterproof layer 108 provides the waterproof effect, prevents that the water invasion from influencing the life and the intensity of use of cement board.
Meanwhile, each group of sealing plates 106 has a longitudinal caulking groove 109 at both ends, the longitudinal caulking grooves 109 are mutually matched with one sides of the convex longitudinal joint blocks 104 and the concave longitudinal joint blocks 105, the longitudinal caulking grooves 109 can be inserted into one sides of the convex longitudinal joint blocks 104 and the concave longitudinal joint blocks 105 to enable the convex longitudinal joint blocks 104 and the concave longitudinal joint blocks 105 to be clamped, and meanwhile, the sealing plates 106 can be prevented from being separated through the clamping of the longitudinal caulking grooves 109, so that the connection strength is improved.
When the prefabricated component for the cement board of the embodiment is used, two groups of splice plates are composed of the panel 101, the convex embedded columns 102, the concave embedded columns 103, the convex longitudinal blocks 104 and the concave longitudinal blocks 105, the characteristics of each group of splice plates are kept consistent, when the two groups of splice plates are spliced, the inner sides of the two groups of panel 101 are oppositely arranged, the convex embedded columns 102 are opposite to the concave embedded columns 103, the convex longitudinal blocks 104 are opposite to the concave longitudinal blocks 105, the two groups of convex embedded columns 102 and the concave embedded columns 103 are slidingly spliced, so that the two groups of splice plates are spliced, after the two groups of splice plates are spliced, the convex longitudinal blocks 104 and the concave longitudinal blocks 105 on two sides of the panel 101 are spliced, the convex longitudinal blocks 104 and the concave longitudinal blocks 105 form an integral component which can be matched with the insertion of the sealing plates 106, so that one sealing plate 106 is inserted into one side of the convex longitudinal blocks 104 and one side of the concave longitudinal blocks 105, one ends of two groups of the splicing plates are sealed, cement slurry is poured into the other ends of the two groups of the splicing plates, after the grouting is finished, the other sealing plates 106 are sealed to the other ends of the two groups of the splicing plates until the cement slurry is solidified, the heat insulation effect is provided for the panel 101 through the heat insulation layer 107, meanwhile, the waterproof layer 108 provides a waterproof effect, the service life and the service strength of the cement board are prevented from being influenced by water penetration, the longitudinal embedding grooves 109 can be inserted into one sides of the convex longitudinal blocks 104 and the concave longitudinal blocks 105, so that the sealing plates 106 are clamped, the sealing plates 106 can be prevented from being separated through the clamping of the longitudinal embedding grooves 109, and the connection strength is improved.
The second embodiment of the application is as follows:
On the basis of the first embodiment, please refer to fig. 4 and 5, wherein fig. 4 is a schematic structural diagram of the second embodiment of the present utility model, and fig. 5 is a sectional view of the internal structure of the second embodiment of the present utility model.
The utility model provides a prefabricated part for a cement board, which further comprises a mounting lug 201, a steel wire mesh 202, a fitting lug 203 and a fitting concave block 204.
For this embodiment, the strength of the cured cement slurry can be improved through the steel wire mesh 202, and cracking is prevented in the use process, and the embedded protruding block 203 and the embedded concave block 204 can have an effective anti-slip effect in the connection process of the prefabricated components, so that the splicing is facilitated.
The number of the mounting protruding blocks 201 is multiple, each group of the mounting protruding blocks 201 is fixedly connected with two groups of the panels 101 respectively and is located on the inner sides of the two groups of the panels 101 respectively, the number of the steel wire meshes 202 is multiple, each group of the steel wire meshes 202 is fixedly connected with the corresponding mounting protruding blocks 201 respectively and is embedded into one side of the corresponding mounting protruding blocks 201 respectively, the mounting protruding blocks 201 are used for mounting and fixing the steel wire meshes 202, meanwhile, after cement slurry is poured, cement slurry is immersed into each group of the steel wire meshes 202, the steel wire meshes 202 are embedded into cement slurry, the steel wire meshes 202 provide use strength for cement boards, and meanwhile cracking of the solidified cement in the use process can be effectively prevented.
Secondly, the embedded protruding block 203 is fixedly connected with one group of the sealing plates 106 and is located at one side of the sealing plates 106, the embedded concave block 204 is fixedly connected with the other group of the sealing plates 106 and is located at one side of the sealing plates 106, the embedded protruding block 203 and the embedded concave block 204 are mutually matched, the embedded protruding block 203 and the embedded concave block 204 can have an effective anti-slip effect in the connecting process of the prefabricated parts, the splicing is convenient, and the connecting strength between the prefabricated parts can be improved while the splicing efficiency is improved.
When the prefabricated component for the cement board is used, the installation protruding blocks 201 are used for installing and fixing the steel wire meshes 202, meanwhile, after cement slurry is poured, the cement slurry is immersed into each group of the steel wire meshes 202, so that the steel wire meshes 202 are embedded into the cement slurry, the steel wire meshes 202 provide use strength for the cement board, cracking of the solidified cement in the use process can be effectively prevented, the embedded protruding blocks 203 and the embedded concave blocks 204 can have an effective anti-slip effect in the connection process of the prefabricated components, splicing is facilitated, and the splicing efficiency is improved, and meanwhile, the connection strength between a plurality of prefabricated components can be improved.
The above disclosure is only a preferred embodiment of the present utility model, and it should be understood that the scope of the utility model is not limited thereto, and those skilled in the art will appreciate that all or part of the procedures described above can be performed according to the equivalent changes of the claims, and still fall within the scope of the present utility model.
Claims (5)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421647182.7U CN222822678U (en) | 2024-07-12 | 2024-07-12 | Prefabricated component for cement board |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202421647182.7U CN222822678U (en) | 2024-07-12 | 2024-07-12 | Prefabricated component for cement board |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN222822678U true CN222822678U (en) | 2025-05-02 |
Family
ID=95497978
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202421647182.7U Active CN222822678U (en) | 2024-07-12 | 2024-07-12 | Prefabricated component for cement board |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN222822678U (en) |
-
2024
- 2024-07-12 CN CN202421647182.7U patent/CN222822678U/en active Active
Similar Documents
| Publication | Publication Date | Title |
|---|---|---|
| CN201106233Y (en) | Polystyrene Composite Insulation Wall Panel Double Leaf Exterior Wall | |
| CN102758509A (en) | Prefabricated exterior wall siding horizontal seam waterproof board | |
| CN107119901A (en) | The cast-in-place system of formwork structure and shear wall and construction method of shear wall angle node | |
| CN110748075A (en) | Composite internal partition board for fabricated building and preparation method thereof | |
| CN211499913U (en) | Low-energy-consumption prefabricated house | |
| CN206707053U (en) | A kind of integrated prefabricated Side fascia of structural thermal insulation | |
| CN206279651U (en) | Assembled cast-in-place concrete external heat insulating wall steel skeleton template system and connector | |
| CN206279656U (en) | Prefabricated assembled steel silo concrete structure sandwich heat preservation combined wall and connector | |
| CN206053106U (en) | A kind of precast concrete external wall panel | |
| CN222822678U (en) | Prefabricated component for cement board | |
| CN207863195U (en) | Overlap exterior wall L-type connecting node | |
| CN204876313U (en) | Take mesh frame clip heart light partition wall board | |
| CN209760529U (en) | A prefabricated building composite template | |
| CN214302531U (en) | Self-waterproof unit type external wall panel | |
| CN207160406U (en) | Make-up squeezes hanging fast-assembling no-crack crack resistence multiple-grooved bar template | |
| CN204781427U (en) | Sandwich thermal insulation wall connecting piece | |
| CN204590315U (en) | A kind of assembled architecture interior wall syndeton | |
| CN202595936U (en) | Prefabricated building wall node | |
| CN209817402U (en) | A template for cast in situ sandwich panel | |
| CN205530982U (en) | Building energy conservation outer wall | |
| CN211597359U (en) | Prefabricated sandwich wallboard | |
| CN207513153U (en) | The beam column cast-in-place node dedicated aluminium alloy template of assembly concrete frame structure | |
| CN209211694U (en) | A concrete composite wall | |
| KR20180062064A (en) | Solar Composite Insulated Building Panel Structure and Manufacturing Method Thereof | |
| CN207144240U (en) | A kind of assembled architecture waterproof anti-seismic prefabricated exterior wall |
Legal Events
| Date | Code | Title | Description |
|---|---|---|---|
| GR01 | Patent grant | ||
| GR01 | Patent grant |