CN211499166U - Assembled building component - Google Patents
Assembled building component Download PDFInfo
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- CN211499166U CN211499166U CN201922343998.6U CN201922343998U CN211499166U CN 211499166 U CN211499166 U CN 211499166U CN 201922343998 U CN201922343998 U CN 201922343998U CN 211499166 U CN211499166 U CN 211499166U
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- supporting body
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Abstract
The utility model relates to an assembly type building component, which comprises a supporting body and a panel, wherein the supporting body is in a plate shape and is internally provided with a plurality of groups of structural holes which are arranged along the longitudinal direction of the supporting body; one or two surfaces of the support body are provided with a plurality of convex ridges; the convex edges are arranged in parallel along the longitudinal direction of the supporting body, and the outer ends of the convex edges are provided with inserting grooves; the panel is in a thin plate shape, and a plurality of inserting strips are arranged on one side surface of the panel; the inserting strip is matched with the inserting groove and can be inserted into the inserting groove to connect the panel with the supporting body; the side of supporter is equipped with the spread groove, can couple together different supporters through connecting the locking strip. The utility model relates to a rationally, simple structure, simple to operate can be through the independent production respectively to supporter and panel to at mill or field installation, the fully provided wall or floor's designing requirement, and can simplify construction process, shorten the engineering time, improve the efficiency of construction.
Description
Technical Field
The utility model relates to a building element, especially an assembled building element.
Background
With the popularization and spread of the fabricated building, the design and use of the fabricated building components are more and more emphasized. At present, after the installation of a wall body and a floor slab in an assembly type building is finished, different surfaces of the wall body and the floor slab need to be re-constructed so as to meet the design requirement. Therefore, the construction cost and the construction time are easily increased, and the popularization of the assembly type building is influenced. Therefore, improvements are needed.
SUMMERY OF THE UTILITY MODEL
The utility model aims at prior art not enough, provide an assembly type building element, can carry out the isolated production to the panel, then selectively install, the fully provided design requirement to can simplify construction process, shorten the engineering time, improve the efficiency of construction.
The technical scheme of the utility model is that:
an assembled building component comprises a supporting body and a panel, wherein the supporting body is in a plate shape and is internally provided with a plurality of groups of structural holes arranged along the longitudinal direction of the supporting body; one or two surfaces of the support body are provided with a plurality of convex ridges; the convex edges are arranged in parallel along the longitudinal direction of the supporting body, and the outer ends of the convex edges are provided with inserting grooves; the panel is in a thin plate shape, and a plurality of inserting strips are arranged on one side surface of the panel; the inserting strip is matched with the inserting groove and can be inserted into the inserting groove to connect the panel with the supporting body; the side of supporter is equipped with the spread groove, can couple together different supporters through connecting the locking strip.
Further, each set of the structural holes comprises a plurality of through holes; the through holes are symmetrically distributed to form an X-shaped or hexagonal star-shaped bracket.
Furthermore, the slots and the connecting grooves are the same in shape and are both in a tree shape with an opening at the top end; the cross section of the connecting locking bar is in a shape of two trees in opposite tops.
The support body further comprises a leveling rod, the shape of the leveling rod is matched with that of the connecting groove, and the leveling rod can be inserted into the connecting groove to level the side surface of the support body; the leveling rod is made of composite fibers.
Furthermore, the device also comprises a side surface mounting bar; the side surface mounting strip is in a hollow strip plate shape, and the inserting strip is arranged on one side surface of the side surface mounting strip; the number and the spacing of the inserting strips are matched with the connecting grooves of the supporting body, so that the side mounting strips can be connected with the supporting body through the inserting connecting grooves of the inserting strips to decorate the side of the supporting body; the side mounting bar is made of composite fibers.
Furthermore, the device also comprises an end face mounting bar; the end face mounting strip is in a thin plate shape, and a plurality of convex blocks are arranged on one side face of the end face mounting strip; the shape and the position of the lug are adaptive to the structural hole of the support body, so that the lug can be inserted into the structural hole to connect the end face mounting strip with the support body and decorate the end face of the support body; the end face mounting bar is made of composite fibers.
Further, the supporting body, the panel and the connecting locking bar are all made of composite fibers.
The utility model has the advantages that:
the utility model relates to a rationally, simple structure, simple to operate can be through the independent production respectively to supporter and panel to at mill or field installation, the fully provided wall or floor's designing requirement, and can simplify construction process, shorten the engineering time, improve the efficiency of construction, be favorable to promoting.
Drawings
Fig. 1 is a schematic structural view of the support body of the present invention.
Fig. 2 is a schematic structural diagram of the panel of the present invention.
Fig. 3 is a schematic view of the support body and the panel when assembled.
Fig. 4 is a schematic view of the installation of a leveling rod.
Fig. 5 is a schematic view of different support bodies connected by connecting locking bars.
Fig. 6 is a schematic structural view of a side mounting bar.
Fig. 7 is a schematic view of the structure of the end face mounting bar.
Fig. 8 is a schematic view of the side mounting bar and the end mounting bar after mounting.
Wherein: 1-a support; 2, inserting a slot; 3-convex arris; 4-a through hole; 5-a bracket; 6-connecting groove; 7-a panel; 8-cutting; 9-a leveling rod; 10-connecting a locking bar; 11-side mounting bar; 12-end face mounting bar; 13-a bump; 14-flange.
Detailed Description
The present invention will be further described with reference to the accompanying drawings and examples.
As shown in fig. 1-5.
A fabricated building element comprises a support body 1 and a panel 7. The supporting body 1 is in a plate shape, and a plurality of groups of structural holes are arranged in the supporting body along the longitudinal direction of the supporting body. Each set of said structural holes comprises a plurality of through holes 4. The through holes 4 are symmetrically distributed, and can form an X-shaped or hexagonal star-shaped bracket 5, so that the structural strength of the support body 1 is enhanced, and the material usage amount can be reduced, the self weight is lightened, and the transportation and the installation are convenient.
One or two surfaces of the supporting body 1 are provided with a plurality of convex ridges 3. The convex edges 3 are arranged in parallel along the longitudinal direction of the supporting body 1, and the outer ends of the convex edges are provided with inserting grooves 2. The panel 7 is in a thin plate shape, and a plurality of inserting strips 8 are arranged on one side surface of the panel. The inserting strip 8 is matched with the slot 2 and can be inserted into the slot 2 to connect the panel 7 with the supporting body 1 to form a wall surface or a floor surface. Preferably, the cross-sectional shapes of the slot 2 and the insert 8 are both tree shapes with open tops, so that the production and installation are convenient, and the connection is firm.
The panels may be of different colours to suit the requirements of the use of the wall or floor.
The side of the support body 1 is provided with a connecting groove 6, different support bodies 1 can be connected through a connecting locking strip 10, and a larger plate surface is formed. Preferably, the cross section of the connecting groove 6 is in a tree shape with an open top end, and the cross section of the connecting locking strip 10 is in a shape of two trees which are opposite to each other, and can be simultaneously inserted into the connecting grooves on two supporting bodies to firmly connect two members together. Meanwhile, the split is more convenient.
Further, a leveling rod 9 is also included. The shape of the leveling rod 9 is adapted to the connecting groove 6, and the cross section thereof is also in the form of a tree with an open top end, so that the connecting groove 6 can be inserted to make the side surface of the support body 1 a flat plane.
As shown in fig. 6 to 8, the side surface mounting bar and the end surface mounting bar are further included.
The side surface mounting strip 11 is a hollow strip plate, and the inserting strip is arranged on one side surface of the side surface mounting strip. The number and the spacing of the inserting strips are adapted to the connecting grooves of the supporting body, so that the side mounting strips can be connected with the supporting body by inserting the inserting strips into the connecting grooves.
The end face mounting bar 12 is a thin plate, and a plurality of projections 13 are provided on one side face thereof. The shape and position of the projection 13 are adapted to the structural hole of the support body 1 so that it can be inserted into the structural hole to connect the end mounting bar 12 to the support body 1.
The utility model relates to a when the floor used, the accessible side mounting strip 11 and end face mounting strip 12 are right the side and the terminal surface of supporter 1 are decorated, make the outward appearance more pleasing to the eye to saved the secondary construction to side and terminal surface, practiced thrift man-hour and manpower. Preferably, the lower end of the side mounting bar 11 is further provided with a flange 14, which can be matched with a corresponding socket on the connecting beam during mounting, so as to improve the sealing performance.
The supporting body 1, the panel 7, the connecting locking strips 10, the filling rod 9, the side mounting strips 11, the end face mounting strips 12 and the like are all made of composite fibers, so that the production is convenient, the strength is high, and the weight can be reduced.
The utility model discloses can carry out the order formula production of panel in the mill according to the design demand, transport again to on-the-spot direct mount, can save the construction of subsequent wall or floor, very big simplification construction process, improved the efficiency of construction to can fully satisfy the design demand.
The utility model discloses the part that does not relate to all is the same with prior art or can adopt prior art to realize.
Claims (7)
1. An assembled building component comprising a support body and a panel, characterized in that: the supporting body is in a plate shape and is internally provided with a plurality of groups of structural holes arranged along the longitudinal direction of the supporting body; one or two surfaces of the support body are provided with a plurality of convex ridges; the convex edges are arranged in parallel along the longitudinal direction of the supporting body, and the outer ends of the convex edges are provided with inserting grooves; the panel is in a thin plate shape, and a plurality of inserting strips are arranged on one side surface of the panel; the inserting strip is matched with the inserting groove and can be inserted into the inserting groove to connect the panel with the supporting body; the side of supporter is equipped with the spread groove, can couple together different supporters through connecting the locking strip.
2. A fabricated building element according to claim 1, wherein: each set of the structural holes comprises a plurality of through holes; the through holes are symmetrically distributed to form an X-shaped or hexagonal star-shaped bracket.
3. A fabricated building element according to claim 1, wherein: the shapes of the slots and the connecting grooves are the same and are tree shapes with open tops; the cross section of the connecting locking bar is in a shape of two trees in opposite tops.
4. A fabricated building element according to claim 1, wherein: the shape of the leveling rod is adapted to the connecting groove, and the leveling rod can be inserted into the connecting groove to level the side surface of the support body; the leveling rod is made of composite fibers.
5. A fabricated building element according to claim 1, wherein: the side surface mounting strip is also included; the side surface mounting strip is in a hollow strip plate shape, and the inserting strip is arranged on one side surface of the side surface mounting strip; the number and the spacing of the inserting strips are matched with the connecting grooves of the supporting body, so that the side mounting strips can be connected with the supporting body through the inserting connecting grooves of the inserting strips to decorate the side of the supporting body; the side mounting bar is made of composite fibers.
6. A fabricated building element according to claim 1, wherein: the end face mounting strip is also included; the end face mounting strip is in a thin plate shape, and a plurality of convex blocks are arranged on one side face of the end face mounting strip; the shape and the position of the lug are adaptive to the structural hole of the support body, so that the lug can be inserted into the structural hole to connect the end face mounting strip with the support body and decorate the end face of the support body; the end face mounting bar is made of composite fibers.
7. A fabricated building element according to claim 1, wherein: the supporting body, the panel and the connecting locking bar are all made of composite fibers.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922343998.6U CN211499166U (en) | 2019-12-24 | 2019-12-24 | Assembled building component |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201922343998.6U CN211499166U (en) | 2019-12-24 | 2019-12-24 | Assembled building component |
Publications (1)
Publication Number | Publication Date |
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CN211499166U true CN211499166U (en) | 2020-09-15 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN201922343998.6U Active CN211499166U (en) | 2019-12-24 | 2019-12-24 | Assembled building component |
Country Status (1)
Country | Link |
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CN (1) | CN211499166U (en) |
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2019
- 2019-12-24 CN CN201922343998.6U patent/CN211499166U/en active Active
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