Supporting rod for reinforcing construction inclined support
By introducing threaded tubes and rectangular rod structures into the diagonal support rods, and using adjusting screws to achieve a tight engagement between the bayonet plate and the seat support, the problem of loose contact between the bayonet plate and the seat support is solved, thereby improving the stability of the diagonal support and the safety of construction.
Patent Information
- Application Number
- CN202422919020.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-28
- Publication Date
- 2025-12-16
- Estimated Expiration
- 2034-11-28
AI Technical Summary
In existing inclined support structures, the contact between the clamp plate and the seat is not tight, causing the inclined support to sway and become unstable, which affects the construction quality.
The structure uses a threaded tube and a rectangular rod. By adjusting the screw and rotating it on the force-bearing lug, the bayonet plate and the seat are tightly engaged, eliminating gaps and improving stability.
This enhances the installation stability of the diagonal bracing, avoids swaying caused by gaps, and improves the safety and quality of construction.
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Figure CN223675834U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model relates to a kind of support rods for construction inclined bracing reinforcement, belong to building construction auxiliary equipment technical field. BACKGROUND
[0002] Before building body concrete pouring, template is set up to build pouring space, to avoid template unstable and lateral formwork explosion, support rod is used to carry out inclined bracing reinforcement to template side plate.
[0003] The existing inclined bracing is formed, screw rod A21 and screw rod B22 are screwed on the corresponding two ends of threaded pipe 1, and the threaded pipe 1 is screwed on the corresponding two ends of threaded pipe 1. Figure 3 As shown in the figure. When installing, screw rod A21 can be connected with the back of template 41 with bayonet plate A31, and screw rod B22 is installed with bayonet plate B32 embedded in floor 42. When adjusting the length, screw rod B22 is rotated in threaded pipe 1, and when bayonet plate B32 can be clamped on seat drag 43, bayonet plate B32 and seat drag 43 cannot be tightly contacted and there is gap 44, as shown in the figure. Figure 3 The inclined bracing is easy to shake and cause poor stability. UTILITY MODEL CONTENT
[0004] To solve the above technical problems, the utility model provides a kind of support rod for construction inclined bracing reinforcement.
[0005] The utility model is realized by the following technical schemes.
[0006] The utility model provides a kind of support rod for construction inclined bracing reinforcement, including:
[0007] Threaded pipe, screw rod A is screwed on the top of threaded pipe, and screw rod A is fixed with bayonet plate A;
[0008] The bottom of the threaded pipe is provided with a rectangular through hole, and a rectangular rod is slidably installed in the rectangular through hole, and the rectangular rod is fixedly connected with bayonet plate B.
[0009] The bayonet plate A is hinged with a hinged template, and the template side away from the bayonet plate A has a concrete pouring body. It also includes a floor for supporting the template and the concrete pouring body; the floor is embedded with a seat drag.
[0010] The seat drag is a circular arc steel bar.
[0011] The bayonet plate B has a circular arc bayonet.
[0012] The end of the bayonet plate B away from the bayonet is provided with a through hole, and a anti-dropping limiting rod is installed in the through hole.
[0013] The seat drag is embedded and fixed at both ends in the floor slab, and the seat drag is spaced in the middle on the floor slab.
[0014] The outer side of the rectangular rod close to the bottom of the threaded pipe is fixed with a stress ear plate, a threaded through hole is arranged on the stress ear plate, an adjusting screw is screwed in the threaded through hole, and the adjusting screw is screwed through on the stress ear plate and can abut against the axial surface of the bottom of the threaded pipe.
[0015] The stress ear plate and the adjusting screw are both two and are symmetrically distributed on the two outer sides of the rectangular rod.
[0016] The beneficial effect of the utility model lies in that the adjusting screw rotates on the stress ear plate, the adjusting screw abuts against the axial surface of the bottom of the threaded pipe, the rectangular rod slides and elongates at the bottom of the threaded pipe, the bayonet plate B bayonet is tightly clamped with the seat drag, no gap is generated, the stability of the inclined support after installation is improved, and the problem that the bayonet plate B cannot be tightly contacted with the corresponding clamped seat drag when the screw B is adjusted in length by rotating the threaded pipe is solved. BRIEF DESCRIPTION OF DRAWINGS
[0017] Figure 1 It is a structural schematic diagram of the utility model;
[0018] Figure 2 It is a partial enlarged schematic diagram of the stress ear plate and the adjusting screw of the utility model;
[0019] Figure 3 It is a structural schematic diagram of the prior art;
[0020] In the drawing: 1-threaded pipe; 21-screw A; 22-screw B; 23-rectangular rod; 31-bayonet plate A; 32-bayonet plate B; 41-formwork; 42-floor slab; 43-seat drag; 44-gap; 45-concrete pouring body; 5-anti-dropping limiting rod; 51-stress ear plate; 52-adjusting screw. DETAILED DESCRIPTION
[0021] The technical scheme of the utility model will be further described below, but the scope of protection is not limited to the description.
[0022] As shown in the drawing. Figures 1 to 2
[0023] The application is a support rod for reinforcing construction inclined support, which comprises:
[0024] The threaded pipe 1 is a stress transmission main body, the threaded pipe 1 is screwed with the screw A 21 at the top through a threaded pair, the screw A 21 is welded and fixed with the bayonet plate A 31, and the bayonet plate A 31 is hinged with the formwork 41; the side of the formwork 41 away from the bayonet plate A 31 has the concrete pouring body 45.
[0025] The threaded pipe 1 bottom is provided with a rectangular through hole, a rectangular rod 23 is slidably installed in the rectangular through hole, the rectangular rod 23 is welded and fixedly connected with a bayonet plate B32, the bayonet plate B32 is clamped with a seat drag 43 formed by a circular arc reinforcing bar. The end of the bayonet plate B32 away from the bayonet is provided with a through hole, and a anti-dropping limiting rod 5 is installed in the through hole.
[0026] The seat drag 43 is pre-buried at both ends of the floor 42, and the middle part of the seat drag 43 is spaced on the floor 42.
[0027] The force ear plate 51 is welded or integrally formed and fixed on the outer side of the rectangular rod 23 close to the bottom of the threaded pipe 1, the force ear plate 51 is provided with a threaded hole, the threaded hole is screwed with an adjusting screw 52, and the adjusting screw 52 is screwed through the force ear plate 51 and can be pressed against the axial surface of the bottom of the threaded pipe 1.
[0028] The force ear plate 51 and the adjusting screw 52 are both two, and are symmetrically distributed on the two outer sides of the rectangular rod 23.
[0029] The screw A21 is rotated and extended to the corresponding length at the top of the threaded pipe 1, the bayonet plate A31 is hinged with the back of the template 41 through a connecting pin shaft, after the bayonet plate B32 is clamped with the corresponding seat drag 43, the adjusting screw 52 is rotated on the force ear plate 51, the adjusting screw 52 is pressed against the axial surface of the bottom of the threaded pipe 1, the rectangular rod 23 is slidably extended at the bottom of the threaded pipe 1, the bayonet plate B32 is clamped with the seat drag 43, and there is no gap, the stability of the inclined support after installation is improved, and the problem that the screw B22 cannot be tightly contacted with the seat drag 43 when the threaded pipe 1 is rotated and adjusted to extend the length, and the bayonet plate B32 is clamped with the corresponding seat drag 43 is solved.
Claims
1. A support pole for reinforcing a construction diagonal bracing, characterized by, Include: Screw pipe (1), screw pipe (1) top screw A (21), screw A (21) fixed with bayonet plate A (31); The bottom of the screw pipe (1) is provided with a rectangular through hole, and the rectangular rod (23) is slidably installed in the rectangular through hole, and the rectangular rod (23) is fixedly connected with the bayonet plate B (32); The outer side of the rectangular rod (23) close to the bottom of the screw pipe (1) is fixed with a stress ear plate (51), and the stress ear plate (51) is provided with a threaded hole, and the threaded hole is screwed with an adjusting screw (52), and the adjusting screw (52) is screwed through the stress ear plate (51) and can be pressed against the bottom of the screw pipe (1) axial surface.
2. The bracing rod for reinforcing construction diagonal bracing according to claim 1, wherein: The bayonet plate A (31) is hinged with a hinged template (41); the template (41) away from the bayonet plate A (31) side has a concrete pouring body (45).
3. The bracing rod for reinforcing construction diagonal bracing according to claim 2, wherein: It also includes a floor (42) for supporting the template (41) and the concrete pouring body (45); the floor (42) is pre-buried with a seat (43).
4. The bracing rod for reinforcing construction diagonal bracing according to claim 3, wherein: The seat (43) is a circular arc steel bar.
5. The support rod for reinforcing construction diagonal bracing according to claim 3, wherein: The both ends of the seat (43) are pre-buried and fixed in the floor (42), and the middle part of the seat (43) is spaced on the floor (42).
6. The bracing rod for reinforcing construction diagonal bracing according to claim 1, wherein: The bayonet plate B (32) has a circular arc bayonet.
7. The bracing rod for reinforcing construction diagonal bracing according to claim 1, wherein: The end of the bayonet plate B (32) away from the bayonet is provided with a through hole, and the through hole is installed with an anti-off limiting rod (5).
8. The bracing rod for reinforcing construction diagonal bracing according to claim 1, wherein: The stress ear plate (51), the adjusting screw (52) are two, and are symmetrically distributed on the two outer sides of the rectangular rod (23).