Frame structure boundary beam formwork scaffold support

By using a combination of support plates and pre-embedded bolts in the edge beam support system, the problems of diagonal brace slippage and angle accuracy were solved, enabling rapid and secure installation of the uprights and improving construction efficiency and quality.

CN223805838UActive Publication Date: 2026-01-16HE BEI SHENG DI SI JIAN ZHU GONG CHENG GONG SI
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Patent Information

Application Number
CN202520162707.6
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-24
Publication Date
2026-01-16
Estimated Expiration
2035-01-24

AI Technical Summary

Technical Problem

In the existing edge beam support system, the bottom of the diagonal brace is prone to sliding, causing instability of the frame and poor accuracy of the erection angle of the diagonal brace.

Method used

The system employs a combination of support plates and pre-embedded bolts. The support plates are equipped with vertical and inclined columns, which are fixed to the original concrete side beams by pre-embedded bolts to ensure the accuracy of the position and angle of the columns. Cross-shaped adjustment holes and L-shaped pre-embedded bolts are used to improve the fixing effect.

Benefits of technology

This enabled the rapid and secure installation of the uprights, improving construction efficiency and quality, preventing upright slippage, and ensuring the accuracy and stability of the side beam formwork.

✦ Generated by Eureka AI based on patent content.

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    Figure CN223805838U_ABST
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Abstract

The utility model relates to a frame structure boundary beam formwork scaffold support which structurally comprises a support plate and embedded bolts, at least one vertical stand column and two inclined stand columns are sequentially arranged on the support plate in the linear direction, the vertical stand columns are used for being connected with vertical stand rods in an inserted mode, the inclined stand columns incline towards the ends away from the vertical stand columns, and the embedded bolts are embedded in the embedded bolts. The inclined stand column is used for being connected with an inclined stand rod in an inserted mode, at least two fixing holes are formed in the support plate, the embedded bolt is embedded in an original concrete boundary beam, the upper end of the embedded bolt is exposed and penetrates through the fixing holes, and the exposed end of the embedded bolt is connected with a nut in a screwed mode so that the support plate can be fixed to the upper surface of the original concrete boundary beam. By means of the device, a vertical upright rod and an inclined upright rod can be rapidly installed and erected, the installation accuracy of the inclined upright rod can be guaranteed, it can be guaranteed that the inclined upright rod is firmly fixed and does not slide, labor consumption is greatly reduced, and installation efficiency and quality are improved.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a kind of building template support technology, specifically a kind of frame structure edge beam template scaffold support. BACKGROUND

[0002] In the frame structure edge beam template support process, using fastener type steel pipe scaffold, right angle fastener, butt joint fastener, rotating fastener, adjustable support etc. Material sets up support scaffold, four vertical rods are arranged in edge beam vertical rod, two vertical rods are perpendicular to ground, two vertical rods are at a certain angle with ground, vertical rod of vertical ground is connected using right angle fastener with horizontal rod, two inclined rods are connected using rotating fastener with horizontal rod, beam bottom horizontal rod is fixed using fastener with two side vertical rods, two vertical rods in middle are inserted adjustable support, adjust beam bottom rod elevation, then carry out beam bottom template support. But in existing edge beam support system, the bottom of inclined rod is easy to slide, which causes the instability of the frame body and the poor accuracy of the setting angle of inclined rod. SUMMARY

[0003] The utility model aims at providing a kind of frame structure edge beam template scaffold support to solve the problem of the instability of the frame body caused by the sliding of the bottom of inclined rod and the poor accuracy of the setting angle of inclined rod in existing edge beam support system.

[0004] The utility model is realized as follows: a kind of frame structure edge beam template scaffold support, including support plate and pre-buried bolt, at least one vertical column and two inclined columns are sequentially provided on the support plate along linear direction, the vertical column is used for inserting vertical rod, the inclined column is inclined to the end away from the vertical column, the inclined column is used for inserting inclined rod, at least two fixed holes are opened on the support plate, the pre-buried bolt is pre-buried on original concrete edge beam, the upper end of pre-buried bolt is exposed and passes through the fixed hole, nut is rotated and connected on the exposed end of pre-buried bolt to fix the support plate on the upper surface of original concrete edge beam.

[0005] As a further improvement of the frame structure edge beam template scaffold support of the utility model, the vertical column has two, the inner end of the support plate extends to the upper of original concrete floor, and the vertical column at the inner end is above the original concrete floor.

[0006] As a further improvement of the frame structure edge beam template scaffold support of the utility model, the fixed hole and the vertical column and the inclined column are on the center line of the support plate, and one vertical column and one inclined column are spaced between the two fixed holes.

[0007] As a further improvement of the frame structure edge beam template scaffold support of the utility model, the fixed hole is a cross-shaped adjusting hole.

[0008] As further improvement of the frame structure side beam formwork scaffold support of the utility model, the pre-buried bolt is an L-shaped pre-buried bolt.

[0009] As further improvement of the frame structure side beam formwork scaffold support of the utility model, the support plate is a long strip structure.

[0010] As further improvement of the frame structure side beam formwork scaffold support of the utility model, the support plate and the pre-buried bolt are provided with a plurality of ones side by side along the length direction of the original concrete side beam.

[0011] When the frame structure side beam formwork scaffold is erected on the utility model, the position, spacing and inclination angle of the vertical column and the inclined column are fixed, the installation and erection of the vertical column and the inclined column can be quickly carried out, the installation precision of the inclined column can be ensured, the inclined column can be fixed firmly and cannot slide, the labor consumption is greatly saved, and the installation efficiency and quality are improved.

[0012] Meanwhile, the support plate of the utility model is installed on the pre-buried bolt, the support plate is convenient to disassemble and circulate, and the exposed part of the pre-buried bolt can be cut off after use. BRIEF DESCRIPTION OF DRAWINGS

[0013] Figure 1 It is the structural diagram of the utility model.

[0014] Figure 2 It is Figure 1 the plan view.

[0015] Figure 3 It is the plan view of the support plate of the utility model.

[0016] Figure 4 It is the use reference diagram of the utility model.

[0017] In the drawing: 1, support plate; 2, vertical column; 3, inclined column; 4, fixed hole; 5, pre-buried bolt; 6, nut; 7, original concrete side beam; 8, original concrete floor; 9, vertical column; 10, inclined column; 11, new pouring concrete side beam; 12, formwork. DETAILED DESCRIPTION

[0018] The specific embodiment of the utility model is described below in combination with the drawings.

[0019] As Figures 1-4 shown, the utility model is a frame structure side beam formwork scaffold support, which mainly comprises a support plate and a pre-buried bolt, etc., the support plate is fixed on the original concrete side beam of the lower layer through the pre-buried bolt, then the vertical column and the inclined column are set on the support plate, the frame structure side beam formwork scaffold is erected, the side beam formwork is supported on the scaffold, and the pouring construction of the side beam can be carried out.

[0020] Two inclined columns and at least one vertical column are fixedly connected to the upper surface of the support plate, the inclined columns and the vertical column are arranged in a straight line on the support plate, the straight line extends from the inner side to the outer side of the edge beam, the two inclined columns are located outside the vertical column, and the inclined columns are inclined towards the end away from the vertical column, that is, the inclined columns are inclined towards the outer side. When the scaffold is erected, the vertical column is inserted into the vertical column, and the two inclined columns are respectively inserted into the two inclined columns. The position, spacing and inclination angle of the inclined column and the vertical column can be determined through the vertical column and the inclined column, so as to control the installation precision of the inclined column and the vertical column, avoid the sliding of the inclined column, ensure the erection precision and quality of the subsequent edge beam formwork, and fix the lower end of the inclined column and the vertical column, thereby facilitating the erection of the subsequent scaffold.

[0021] The support plate is fixed by a pre-buried bolt, the pre-buried bolt is pre-buried in the concrete edge beam during the pouring construction of the lower layer original concrete edge beam, and the upper end of the pre-buried bolt is exposed above the upper surface of the original concrete edge beam. At least two fixing holes are formed in the support plate, the exposed end of the pre-buried bolt passes through the fixing hole, and then a nut is threadedly connected to the exposed end of the pre-buried bolt. The nut is tightened to fix the support plate on the upper surface of the original concrete edge beam.

[0022] In order to ensure the firmness of the connection between the support plate and the pre-buried bolt, a gasket and two nuts are used for fastening.

[0023] The two vertical columns are arranged above the original concrete edge beam and the original concrete floor respectively, so that after the vertical columns are inserted into the vertical columns respectively, one vertical column is located below the upper new-poured concrete edge beam, and the other vertical column is located on the inner side of the upper new-poured concrete edge beam.

[0024] The two inclined columns are arranged above the original concrete edge beam and the original concrete floor respectively, so that after the vertical columns are inserted into the vertical columns respectively, one vertical column is located below the upper new-poured concrete edge beam, and the other vertical column is located on the inner side of the upper new-poured concrete edge beam.

[0025] The two inclined columns and the two vertical columns are connected by horizontal rods and fasteners to form a frame structure edge beam formwork scaffold.

[0026] The support plate is a rectangular strip structure, and the support plate is a metal material. The inclined columns and the vertical columns are also metal materials, and the inclined columns and the vertical columns are fixedly connected to the upper surface of the support plate by welding.

[0027] In the specific embodiment, the two fixing holes are located on the center line of the support plate, and the two fixing holes are spaced apart by one vertical column and one inclined column.

[0028] Since the support plate can be supported in the factory, the size, shape and other precision of the support plate can be ensured, and the position of the embedded bolt may be deviated, the fixing hole is designed as a cross-shaped adjusting hole composed of two cross-shaped long holes, one long hole is consistent with the length direction of the support plate, and the other long hole is consistent with the width direction of the support plate, and when the support plate is installed on the two embedded bolts, the accuracy of the position of the support plate is ensured through adjustment in the front, rear, left and right directions.

[0029] The embedded bolt is an L-shaped embedded bolt.

[0030] The support plate and the embedded bolt are arranged side by side along the length direction of the original concrete edge beam, and the support plate and the embedded bolt are uniformly arranged along the length direction of the original concrete edge beam.

[0031] The use method of the utility model is as follows.

[0032] 1. According to the spacing of the inclined column and the vertical column, the position of the embedded bolt is determined and the embedded bolt is arranged in the original concrete beam, and the depth of the embedded bolt into the concrete is the anchoring length, that is, the safety requirement is met.

[0033] 2. The support plate is manufactured, the fixing hole is formed on the support plate, and the vertical column and the inclined column are fixedly connected, and the column position is determined according to the spacing and angle of the vertical column and the inclined column of the scaffold.

[0034] 3. The support plate is installed at the position of the embedded bolt, and the gasket and the two nuts are used for fastening.

[0035] 4. The edge beam scaffold is erected on the support plate.

[0036] 5. The edge beam formwork is erected.

[0037] 6. The new pouring concrete edge beam is manufactured on the edge beam formwork, and the embedded bolt is arranged on the new pouring concrete edge beam.

[0038] 7. The support plate is taken down and transferred to the upper new pouring concrete edge beam, and the exposed end of the embedded bolt on the lower original concrete edge beam is cut off.

[0039] The utility model simple and convenient installation steps, pole interval is fixed, satisfies construction requirement, outside inclined pole does not slide, firm. The formwork can be removed after concrete reaches design requirement, and the frame body is convenient and fast to remove. The bolt can be cut after use, greatly saves the artificial consumption, and improves the installation efficiency and quality.

Claims

1. A frame structure edge beam formwork scaffold support, characterized by, The support plate and the embedded bolt, at least one vertical column and two inclined columns are sequentially arranged on the support plate in a straight line direction, the vertical column is used for inserting a vertical column rod, the inclined column is inclined to the end away from the vertical column, the inclined column is used for inserting an inclined column rod, at least two fixing holes are formed on the support plate, the embedded bolt is embedded on the original concrete edge beam, the upper end of the embedded bolt is exposed and passes through the fixing hole, and the nut is screwed on the exposed end of the embedded bolt to fix the support plate on the upper surface of the original concrete edge beam.

2. The frame construction ledge form scaffolding support of claim 1, wherein, The vertical column has two, the inner end of the support plate extends above the original concrete floor, and the vertical column at the inner end is above the original concrete floor.

3. The frame construction ledge form scaffolding support of claim 1, wherein, The fixing hole, the vertical column and the inclined column are located on the center line of the support plate, and one vertical column and one inclined column are arranged between the two fixing holes.

4. The frame construction ledge form scaffolding support of claim 1, wherein, The fixing hole is a cross-shaped adjusting hole.

5. The frame construction ledge form scaffolding support of claim 1, wherein, The embedded bolt is an L-shaped embedded bolt.

6. The frame construction ledge form scaffolding support of claim 1, wherein, The support plate is a long strip structure.

7. The frame construction ledge lineal scaffold support of claim 1, wherein, The support plate and the embedded bolt are arranged side by side along the length direction of the original concrete edge beam.