CN214246278U - Spliced floor support plate - Google Patents
Spliced floor support plate Download PDFInfo
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- CN214246278U CN214246278U CN202022066249.6U CN202022066249U CN214246278U CN 214246278 U CN214246278 U CN 214246278U CN 202022066249 U CN202022066249 U CN 202022066249U CN 214246278 U CN214246278 U CN 214246278U
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- support steelframe
- supporting steel
- steel frame
- mainboard body
- rearmounted
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Abstract
The utility model belongs to the technical field of the building board technique and specifically relates to a concatenation building carrier plate, including first mainboard body, second mainboard body and third mainboard body. The spliced floor bearing plate of the utility model consists of three main plate bodies, the three main plate bodies are connected through the elastic extrusion limiting blocks arranged on the upper surfaces of the main plate bodies and inside the supporting steel frames, and the assembly and disassembly are simple and rapid through the extrusion of the elastic extrusion limiting blocks; the first main board body and the second main board body are arranged on two sides of the third main board body through the elastic extrusion limiting blocks, and the first main board body or the second main board body can be quickly replaced by a required board body structure according to actual requirements, so that the applicability of the main board body is improved; both ends all set up elasticity extrusion stopper around first mainboard body and the second mainboard body, when convenient loading and unloading, can be so that the installation is more firm, ensure the stability of assembly.
Description
Technical Field
The utility model belongs to the technical field of the building board technique and specifically relates to a concatenation building carrier plate.
Background
The building carrier plate is also called profiled sheet, steel bearing plate or steel building carrier plate, and the building carrier plate can carry out quick construction, can provide a firm operation platform in the short time, can regard as concrete floor's tension reinforcement at the use stage building carrier plate, can improve the rigidity of floor, can play the effect of saving reinforcing bar and concrete, and under the cantilever condition, the building carrier plate only is as permanent template.
The floor bearing plate is widely applied to steel structure buildings such as power plant factory buildings, steel structure factory buildings, multi-storey storehouses, large-scale business surpasses, storage logistics, stadiums, airport terminal buildings and the like. Like steel structure main part, have the performance of quick construction, can provide a firm work platform in the short time, can adopt a plurality of floors to lay the floor carrier plate moreover, concrete slab's flow process is pour in the layering.
Building carrier plate on the present market is the integrative fixed knot structure of customization mostly, can't splice fast, and unable quick replacement accessory as required, the suitability is relatively poor.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is: in order to solve the problem that exists among the above-mentioned background art, provide a floor carrier plate that modified can be assembled, solve the most integrative fixed knot structure for customizing of floor carrier plate on the present market, the unable quick concatenation as required, quick change accessory leads to using the very big problem of limitation.
The utility model provides a technical scheme that its technical problem adopted is: a spliced floor support plate comprises a first main plate body, a second main plate body and a third main plate body, wherein a front first supporting steel frame and a rear first supporting steel frame are arranged on the upper surfaces of the front end and the rear end of the right side of the first main plate body, a front second supporting steel frame and a rear second supporting steel frame are arranged on the upper surfaces of the front end and the rear end of the left side of the second main plate body, a left first supporting steel frame and a right first supporting steel frame which are parallel to each other are arranged on the upper surfaces of the left side and the right side of the third main plate body, elastic extrusion limiting blocks are respectively arranged in the front first supporting steel frame, the rear first supporting steel frame, the front second supporting steel frame and the rear second supporting steel frame, the front first supporting steel frame and the rear first supporting steel frame are respectively inserted into the front end and the rear end of the left first supporting steel frame through the elastic extrusion limiting blocks inside to control the first main plate body to be fixedly connected with the third main plate body, the front second supporting steel frame and the rear second supporting steel frame are respectively inserted into the front end and the rear end of the right first supporting steel frame through the internal elastic extrusion limiting blocks to control the second main board body to be fixedly connected with the third main board body.
Further, for reduce cost, convenient assembly and production, first mainboard body the same with second mainboard body size, leading first support steelframe, rearmounted first support steelframe, leading second support steelframe and rearmounted second support steelframe size the same, leading first support steelframe, rearmounted first support steelframe, leading second support steelframe and the inside elastic extrusion stopper size of rearmounted second support steelframe are the same, the first support steelframe in left side and the first support steelframe in right side the same size.
Furthermore, for the cooperation and fixation, the elastic extrusion limiting block comprises a limiting block, a return spring, an external control block and a connecting rod for connecting the limiting block and the external control block.
Furthermore, in order to facilitate control, external control grooves for installing external control blocks are formed in the front end of the front first supporting steel frame, the rear end of the rear first supporting steel frame, the front end of the front second supporting steel frame and the rear end of the rear second supporting steel frame.
The utility model has the advantages that:
(1) the spliced floor bearing plate of the utility model consists of three main plate bodies, the three main plate bodies are connected through the elastic extrusion limiting blocks arranged on the upper surfaces of the main plate bodies and inside the supporting steel frames, and the assembly and disassembly are simple and rapid through the extrusion of the elastic extrusion limiting blocks;
(2) the first main board body and the second main board body are arranged on two sides of the third main board body through the elastic extrusion limiting blocks, and the first main board body or the second main board body can be quickly replaced by a required board body structure according to actual requirements, so that the applicability of the main board body is improved;
(3) both ends all set up elasticity extrusion stopper around first mainboard body and the second mainboard body, when convenient loading and unloading, can be so that the installation is more firm, ensure the stability of assembly.
Drawings
The present invention will be further explained with reference to the drawings and examples.
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is an internal cross-sectional view of the middle support steel frame of the present invention.
In the drawing, the main board comprises a first main board body 1, a second main board body 2, a third main board body 3, a front first supporting steel frame 4, a rear first supporting steel frame 5, a front second supporting steel frame 6, a rear second supporting steel frame 7, a left first supporting steel frame 8 and a left first supporting steel frame 9. The right side first supporting steel frame is provided with 10 elastic extrusion limiting blocks, 11 limiting blocks, 12 return springs, 13 external control blocks, 14 connecting rods and 15 external control grooves.
Detailed Description
The present invention will now be described in further detail with reference to the accompanying drawings. These drawings are simplified schematic drawings and illustrate the basic structure of the present invention only in a schematic manner, and thus show only the components related to the present invention.
The spliced floor support plate shown in fig. 1 and 2 comprises a first YX 65-254-762-type first main plate body 1, a second YX 65-254-762-type second main plate body 2 and a third YX 65-254-762-type third main plate body 3, wherein a front first supporting steel frame 4 and a rear first supporting steel frame 5 are arranged on the upper surfaces of the front and rear ends of the right side of the first main plate body 1, a front second supporting steel frame 6 and a rear second supporting steel frame 7 are arranged on the upper surfaces of the front and rear ends of the left side of the second main plate body, a left first supporting steel frame 8 and a right first supporting steel frame 9 which are parallel to each other are arranged on the upper surfaces of the left and right sides of the third main plate body 3, an elastic extrusion limiting block 10 is respectively arranged inside the front first supporting steel frame 4, the rear first supporting steel frame 5, the front second supporting steel frame 6 and the rear second supporting steel frame 7, and an elastic extrusion limiting block 10 is respectively inserted into the front first supporting steel frame 4 and the rear first supporting steel frame 5 Go into the first mainboard body 1 of the preceding back both ends control of left side first support steelframe 8 and third mainboard body 3 fixed connection, leading second support steelframe 6 and rearmounted second support steelframe 7 insert the preceding back both ends control second mainboard body 2 of the first support steelframe 9 of right side and third mainboard body 3 fixed connection respectively through inside elasticity extrusion stopper 10.
Example (b): people support the inside elasticity extrusion stopper 10 of steelframe 5 through the leading first support steelframe 4 of extrusion and rearmounted first, with first mainboard body 1 and 3 fixed connection of third mainboard body, support the inside elasticity extrusion stopper 10 of steelframe 6 and rearmounted second support steelframe 7 through the leading second of extrusion, with second mainboard body 2 and 3 fixed connection of third mainboard body, thereby make the convenient loading and unloading of floor support plate, conveniently change the new part, improve its suitability.
Further, in order to reduce the cost and facilitate assembly and production, the size of the first mainboard body 1 is the same as that of the second mainboard body 2, the size of the front first supporting steel frame 4, the size of the rear first supporting steel frame 5, the size of the front second supporting steel frame 6 is the same as that of the rear second supporting steel frame 7, the size of the elastic extrusion limiting block 10 inside the front first supporting steel frame 4, the size of the rear first supporting steel frame 5, the size of the elastic extrusion limiting block 10 inside the front second supporting steel frame 6 and the size of the rear second supporting steel frame 7 are the same, and the size of the left first supporting steel frame 8 is the same as that of the right first supporting steel frame 9.
Further, for the cooperation is fixed, elasticity extrusion stopper 10 includes stopper 11, reset spring 12, outside control piece 13 and is used for connecting stopper 10 and outside control piece 13's connecting rod 14, and further, for convenient control, the front end of leading first support steelframe 4, the rear end of rearmounted first support steelframe 5, the front end of leading second support steelframe 6 and the rear end of rearmounted second support steelframe 7 all offer the outside control groove 15 that is used for installing outside control piece 13.
The utility model discloses a concatenation building carrier plate comprises three mainboard bodies, connects three mainboard bodies through the elastic extrusion stopper 10 installed inside the supporting steel frame on the upper surface of the mainboard body, and is simple and quick to assemble and disassemble through extruding the elastic extrusion stopper 10; the first main board body 1 and the second main board body 2 are arranged on two sides of the third main board body 3 through the elastic extrusion limiting blocks 10, and the first main board body 1 or the second main board body 2 can be quickly replaced into a required board body structure according to actual requirements, so that the applicability of the main board body is improved; both ends all set up elasticity extrusion stopper 10 around first mainboard body 1 and second mainboard body 2, when convenient loading and unloading, can be so that the installation is more firm, ensures the stability of assembly.
In light of the foregoing, it will be apparent to those skilled in the art from this disclosure that various changes and modifications can be made without departing from the spirit and scope of the invention. The technical scope of the present invention is not limited to the content of the specification, and must be determined according to the scope of the claims.
Claims (4)
1. The utility model provides a concatenation building carrier plate, includes first mainboard body (1), second mainboard body (2) and third mainboard body (3), characterized by: first mainboard body (1) right side around both ends upper surface be provided with leading first support steelframe (4) and rearmounted first support steelframe (5), second mainboard body left side around both ends upper surface be provided with leading second support steelframe (6) and rearmounted second support steelframe (7), third mainboard body (3) left and right sides upper surface be provided with the first support steelframe in left side (8) and the first support steelframe in right side (9) that are parallel to each other, leading first support steelframe (4), rearmounted first support steelframe (5), leading second support steelframe (6) and rearmounted second support steelframe (7) inside all install elasticity extrusion stopper (10), leading first support steelframe (4) and rearmounted first support steelframe (5) insert the first support steelframe in left side first support steelframe (8) respectively through inside elasticity extrusion stopper (10) around both ends control first mainboard body (1) and third mainboard body (3) are fixed And the front second supporting steel frame (6) and the rear second supporting steel frame (7) are respectively inserted into the front end and the rear end of the right first supporting steel frame (9) through the internal elastic extrusion limiting blocks (10) to control the fixed connection of the second mainboard body (2) and the third mainboard body (3).
2. The spliced floor deck as set forth in claim 1, wherein: first mainboard body (1) and second mainboard body (2) the size the same, leading first support steelframe (4), rearmounted first support steelframe (5), leading second support steelframe (6) and rearmounted second support steelframe (7) the size the same, leading first support steelframe (4), rearmounted first support steelframe (5), leading second support steelframe (6) and the inside elasticity extrusion stopper (10) size of rearmounted second support steelframe (7) the same, the first support steelframe in left side (8) and the first support steelframe in right side (9) the size the same.
3. The spliced floor deck as set forth in claim 1, wherein: the elastic extrusion limiting block (10) comprises a limiting block (11), a return spring (12), an external control block (13) and a connecting rod (14) for connecting the limiting block (11) and the external control block (13).
4. The spliced floor deck as set forth in claim 1, wherein: the front end of the front first supporting steel frame (4), the rear end of the rear first supporting steel frame (5), the front end of the front second supporting steel frame (6) and the rear end of the rear second supporting steel frame (7) are all provided with an external control groove (15) for installing an external control block (13).
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022066249.6U CN214246278U (en) | 2020-09-18 | 2020-09-18 | Spliced floor support plate |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202022066249.6U CN214246278U (en) | 2020-09-18 | 2020-09-18 | Spliced floor support plate |
Publications (1)
Publication Number | Publication Date |
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CN214246278U true CN214246278U (en) | 2021-09-21 |
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Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
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CN202022066249.6U Active CN214246278U (en) | 2020-09-18 | 2020-09-18 | Spliced floor support plate |
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CN (1) | CN214246278U (en) |
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2020
- 2020-09-18 CN CN202022066249.6U patent/CN214246278U/en active Active
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