CN213015376U - Embedded part detaching-free template - Google Patents
Embedded part detaching-free template Download PDFInfo
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- CN213015376U CN213015376U CN202021416257.2U CN202021416257U CN213015376U CN 213015376 U CN213015376 U CN 213015376U CN 202021416257 U CN202021416257 U CN 202021416257U CN 213015376 U CN213015376 U CN 213015376U
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- template
- template body
- embedded part
- disassembly
- embedment
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Abstract
The utility model relates to a do not tear open template, especially a built-in fitting do not tear open template. The template comprises a template body and embedded parts, wherein the embedded parts are arranged in the template body, one part of the embedded parts is arranged in the template body, the other part of the embedded parts is arranged outside the template body, the part arranged in the template body is provided with a bending part, and the part arranged outside the template body is provided with a bending part. Compared with the prior art, the utility model, overcome the drawback to template secondary operation, not only can exempt from to tear open and can guarantee to exempt from to tear open the intensity of template, have the advantage that intensity is big.
Description
Technical Field
The utility model relates to a do not tear open template, especially a built-in fitting do not tear open template.
Background
The building is gone on with the building block, the mode of pouring more now, adopts the module of pouring that has continuous box more when pouring, and each module of pouring has lateral wall, roof, bottom plate, but the connection between the module of pouring then comparatively general adoption welding mode to it is comparatively loaded down with trivial details when needs are demolishd to make.
The disassembly-free formwork disclosed in CN 210508036U and CN 210508358U in the existing published patent publications also includes a connecting member, but the connecting member is not an embedded part, and after the formwork is cast, the formwork is subjected to secondary processing to form a through hole or a blind hole, and then is reconnected with the connecting member through a fastener such as a bolt, so that the internal stress of the formwork itself is easily damaged, although the disassembly-free formwork can be avoided during use, the problems of cost increase and strength reduction of the formwork itself caused by the secondary processing need to be further solved.
Disclosure of Invention
The invention aims to solve the defects of the background art and provide an embedded part pressure non-dismantling template with an embedded part and template one-step forming structure without secondary processing.
The utility model adopts the following technical scheme:
the non-dismantling template for the embedded part comprises a template body and the embedded part, wherein the embedded part is arranged in the template body, one part of the embedded part is arranged in the template body, the other part of the embedded part is arranged outside the template body, and the part arranged in the template body is provided with a bending part; the part arranged outside the template body is provided with a bending part.
Adopt above-mentioned technical scheme the utility model discloses compare with prior art, overcome the drawback to template secondary operation, not only can exempt from to tear open and can guarantee to exempt from to tear open the intensity of template, have the advantage that intensity is big.
The utility model discloses a preferred scheme is:
the embedded part is in a rib-shaped body structure, and the length of the embedded part arranged in the template body is less than or equal to the length of the embedded part arranged outside the template body.
The template body is internally provided with a galvanized iron wire mesh formed by staggered arrangement of transverse bars and longitudinal bars.
The surface of the template body, which is attached to the concrete wall to be poured, is provided with a groove.
The bending part is arranged in parallel with the surface of the template body.
The bending part is provided with a circuitous part which forms a paired hook shape.
The bending part is arranged on one side of the galvanized wire mesh.
The embedded part is made of galvanized iron wires and has the diameter of 2 mm.
Drawings
Fig. 1 is a schematic structural diagram of the present invention.
Fig. 2 is a schematic structural view before installation of the present invention.
Fig. 3 is a top view of fig. 2.
Fig. 4 is a front view (installation state) of the embedment.
Fig. 5 is a plan view (state when installed) of the embedment.
Detailed Description
The present invention is described in detail below with reference to the following embodiments and accompanying drawings:
in the present embodiment, referring to fig. 1 to 5, in the drawings: longitudinal bar 1, horizontal bar 2, template body 3, flexion 4, portion 5 of bending, recess 6, circuitous portion 7.
An embedded part is arranged in the template body 3, one part of the embedded part is arranged in the template body 3, the other part of the embedded part is arranged outside the template body 3, a bending part 4 is arranged at the end part in the template body 3, and a bending part 5 is arranged at the end part outside the template body 3.
The embedded part is of a rib-shaped structure, and the actual length of the embedded part arranged in the template body 3 is smaller than or equal to the actual length of the embedded part arranged outside the template body 3.
A galvanized iron wire mesh formed by staggered arrangement of transverse ribs 2 and longitudinal ribs 1 is arranged in the template body 3; the galvanized wire netting is placed approximately at the middle of the thickness of the formwork body 3 in order to reinforce the strength of the formwork body 3.
The surface of the template body 3, which is attached to the concrete wall to be poured, is provided with a groove 6.
The bending part 4 is arranged in parallel with the surface of the template body 3, and is specifically arranged in parallel with the template body 3 and the surface of the concrete to be poured. The bending part 4 is arranged on one side of the galvanized iron wire net; the embedded part is made of galvanized iron wires and has the diameter of 2 mm; the bent portion 4 may be provided through the galvanized wire.
During installation and use, the bent part is bent by 90 degrees to form the structure shown in fig. 2 (front view) and fig. 3 (top view). As shown in fig. 2, the bent portions 5 are provided in parallel with the installation surface of the formwork body 3 to be cast with concrete. As can be seen from fig. 3, the bent portion 5 is provided with a bent portion 7, and the bent portion 5 is integrally formed in the shape of a hook by the bent portion 7, and the hook serves as a connection with the whole concrete wall by pouring concrete in the process of pouring the concrete wall.
The surface of the template body 3, which is provided with the embedded part, is provided with a groove 6, the length direction of the groove 6 is consistent with that of the embedded part, and the groove 6 is arranged so that concrete is arranged in the groove 6 in the pouring process, thereby further increasing the connection strength between the non-dismantling template and the concrete. The depth of the groove 6 is 0.5-1 mm.
The embedded part is made of galvanized iron wires and has the diameter of 2 mm.
The disassembly-free template is suitable for cast-in-place walls, columns, beams, floor slabs and the like of buildings, the product is reasonable in structural design and low in production cost, when the templates are assembled, gaps of 1-1.5 mm are reserved between adjacent templates, mortar is naturally filled during pouring, after the bending part 5 of the anti-corrosion metal embedded part is folded into a shape which is vertical (or non-vertical, and can form an acute included angle) with the plane of the template body 3 (the plane to be poured with the concrete wall) before installation, the opposite hook shape formed by the circuitous part 7 can be poured into the concrete wall; to colluding the shape and concrete placement firmly grab as an organic whole, the utility model has the advantages of install fast that the efficiency of construction is high, indoor and outdoor wall face saves advantages such as the manual work of form removal, the manual work of process of plastering and material.
The galvanized wire netting, the embedded part and the template body 3 of this embodiment are the press forming structure, make recess 6 in the lump in the in-process of production, and intensity is big.
The present invention is not limited to the above-mentioned contents, and the recess 6 may not be provided on the detachment-free form, or the galvanized wire net may not be added in the form body 3, which is also within the protection scope of the present invention.
Claims (8)
1. The utility model provides a built-in fitting exempts from to tear open template, includes the template body, built-in fitting, its characterized in that: an embedded part is arranged in the template body, one part of the embedded part is arranged in the template body, the other part of the embedded part is arranged outside the template body, and the part arranged in the template body is provided with a bending part; the part arranged outside the template body is provided with a bending part.
2. The embedment disassembly-free template of claim 1, wherein: the embedded part is in a rib-shaped body structure, and the length of the embedded part arranged in the template body is less than or equal to the length of the embedded part arranged outside the template body.
3. The embedment disassembly-free template of claim 1, wherein: the template body is internally provided with a galvanized iron wire mesh formed by staggered arrangement of transverse bars and longitudinal bars.
4. The embedment disassembly-free template of claim 1, wherein: the surface of the template body, which is attached to the concrete wall to be poured, is provided with a groove.
5. The embedment disassembly-free template of claim 1, wherein: the bending part is arranged in parallel with the surface of the template body.
6. The embedment disassembly-free template of claim 1, wherein: the bending part is provided with a circuitous part which forms a paired hook shape.
7. The embedment disassembly-free template of claim 1, wherein: the bending part is arranged on one side of the galvanized wire mesh.
8. The embedment disassembly-free template of claim 1, wherein: the embedded part is made of galvanized iron wires and has the diameter of 2 mm.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021416257.2U CN213015376U (en) | 2020-07-17 | 2020-07-17 | Embedded part detaching-free template |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN202021416257.2U CN213015376U (en) | 2020-07-17 | 2020-07-17 | Embedded part detaching-free template |
Publications (1)
Publication Number | Publication Date |
---|---|
CN213015376U true CN213015376U (en) | 2021-04-20 |
Family
ID=75504328
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN202021416257.2U Active CN213015376U (en) | 2020-07-17 | 2020-07-17 | Embedded part detaching-free template |
Country Status (1)
Country | Link |
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CN (1) | CN213015376U (en) |
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2020
- 2020-07-17 CN CN202021416257.2U patent/CN213015376U/en active Active
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