Adjustable bent cap reinforcement cage binding platform

By designing an adjustable cap beam rebar cage binding platform, the problem of the inflexibility of traditional platforms was solved, achieving efficient and safe rebar cage binding and meeting the high quality requirements of modern buildings for rebar cages.

CN223660658UActive Publication Date: 2025-12-12POLY CHANGDA ENGINEERING CO LTD
View PDF 0 Cites 0 Cited by

Patent Information

Application Number
CN202520027912.1
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-01-07
Publication Date
2025-12-12
Estimated Expiration
2035-01-07

AI Technical Summary

Technical Problem

Traditional rebar cage binding platforms cannot be adjusted flexibly, resulting in low binding efficiency, numerous safety hazards, and low precision, making it difficult to meet the high quality requirements of modern buildings for rebar cages.

Method used

An adjustable cap beam rebar cage binding platform was designed. Through the sliding connection of the bottom support frame, movable support frame and column support frame, combined with the lifting device, the working platform can be flexibly adjusted and its height adjusted to meet the binding needs of rebar cages of different sizes and shapes.

Benefits of technology

It improved the efficiency and safety of binding, ensured that the size and shape of the rebar cage met the design requirements, reduced the risk of worker injury, and improved equipment utilization and construction quality.

✦ Generated by Eureka AI based on patent content.

Smart Images

  • Figure CN223660658U_ABST
    Figure CN223660658U_ABST
Patent Text Reader

Abstract

The utility model discloses an adjustable bent cap reinforcement cage binding platform which comprises a bottom supporting frame, a movable supporting frame connected in a sliding mode in the horizontal length direction of the bottom supporting frame and a stand column supporting frame arranged on the movable supporting frame and connected with the movable supporting frame in a sliding mode in the horizontal width direction of the bottom supporting frame. A supporting frame slidably connected with the stand column supporting frame in the vertical direction and a lifting device driving the supporting frame to do lifting motion are arranged on the edge of the stand column supporting frame, a workbench is arranged on the supporting frame, and the workbench is positioned on the supporting frame and slidably connected with the supporting frame; the size and the height of the working platform can be flexibly adjusted, the binding requirements of reinforcement cages with different sizes can be met, and the high requirement of modern civil engineering for the binding operation of the reinforcement cages can be met.
Need to check novelty before this filing date? Find Prior Art

Description

TECHNICAL FIELD

[0001] The utility model relates to a bent cap construction equipment technical field, especially in an adjustable bent cap reinforcement cage binding platform. BACKGROUND

[0002] In the modern construction engineering field, especially in the construction of bridge and large building structure, bent cap as the key component of connection and support, its quality and stability are directly related to the safety and durability of the whole structure. In the production process of bent cap, the binding of reinforcement cage is a crucial link.

[0003] However, the traditional reinforcement cage binding operation mainly relies on manual operation, and workers need to carry out binding work on the fixed working platform. This way not only is inefficient, but also has many safety hazards. On the one hand, due to the different size and shape of reinforcement cage, the fixed working platform is difficult to adapt to different sizes of reinforcement cage, which leads to the need for workers to frequently adjust the working position, increasing the operation difficulty and time cost. On the other hand, the height and angle of the fixed working platform are fixed, and workers need to work in the same posture for a long time, which is easy to cause physical fatigue and occupational diseases.

[0004] In addition, the traditional operation mode also has the problem of low binding precision. Because the working platform cannot be flexibly adjusted, workers cannot accurately control the size and shape of the reinforcement cage during the binding process, resulting in uneven quality of the reinforcement cage, which cannot meet the design requirements. This not only affects the overall quality of the bent cap, but also may bring safety hazards to the subsequent construction.

[0005] Based on this, it is necessary to put forward a new type of binding platform, which can flexibly adjust the size and height of the working platform to adapt to the binding needs of different sizes of reinforcement cage, so as to meet the high requirements of modern civil engineering on reinforcement cage binding operation. CONTENT OF THE UTILITY MODEL

[0006] The utility model provides a kind of adjustable bent cap reinforcement cage binding platform, comprising:

[0007] bottom support frame, and the sliding connection of mobile support frame along the horizontal length direction of bottom support frame, and the column support frame being set on mobile support frame, and, sliding connection mobile support frame along the horizontal width direction of bottom support frame;

[0008] support frame and lifting device driving support frame to do lifting motion are slidably connected to column support frame along vertical direction are provided on column support frame, wherein workbench is provided on support frame, and workbench is positioned on support frame and is slidably connected with support frame.

[0009] Further, the bottom support frame includes a support outer frame and an inner support rod group fixedly connected to the inner side of the support outer frame.

[0010] The support outer frame comprises two outer support long rods arranged along the length direction of the bottom support frame and two outer support side rods respectively arranged at the two ends of the outer support long rods and fixedly connected with the two outer support long rods.

[0011] Further, the moving support frame comprises two moving support rods arranged on the outer support long rods and a support frame fixed rod fixedly connected with the two moving support rods, and a moving device is arranged on the moving support rod and the outer support long rod to enable the moving support rod and the outer support long rod to move relative to each other.

[0012] Further, the column support frame comprises a support column arranged on the moving support rod, and a moving slide rail is arranged between the support column and the moving support rod.

[0013] Further, the column support frame comprises two support columns respectively slidably connected with the two moving support rods, and an upper support column and a lower support column are respectively fixedly connected with the two ends of the two support columns.

[0014] Further, the support frame comprises a sliding frame slidably connected with the support column and a fixed frame fixedly connected with the sliding frame, and the workbench is slidably connected with the fixed frame, and a sliding mechanism is arranged between the fixed frame and the workbench.

[0015] Further, the support frame comprises two sliding frames respectively slidably connected with the two support columns, and a support frame rod is arranged between the two sliding frames, and a lifting device is arranged between the support frame rod and the lower support column.

[0016] Compared with the prior art, the utility model has the advantages that:

[0017] The utility model discloses a bottom support frame, a moving support frame and a column support frame are slidably connected, the flexible adjustment of the work plane is realized, the size and shape of the reinforcement cage can be quickly adjusted, the time of replacing equipment and rearranging the working space is reduced, thereby the production efficiency is improved.

[0018] The lifting device on the platform and the workbench are slidably connected, so that the worker can easily bind the reinforcement cage at different heights, the risk that the worker needs to frequently climb or bend is reduced, the physical injury in the working process is reduced, and the working safety is improved.

[0019] By accurately adjusting the height and position of the workbench, the worker can more accurately bind the reinforcement cage, the size and shape of the reinforcement cage meet the design requirements, the worker can work at different positions, and the overall quality and consistency of the reinforcement cage are improved.

[0020] The adjustable design of the bottom support frame, the moving support frame and the column support frame of the platform can adapt to steel reinforcement cages of different sizes and shapes, so that the platform can be widely applied to various bridge, building and other engineering projects, and the utilization rate and flexibility of the equipment are improved.

[0021] The sliding connection and lifting device are used between the various components of the platform, which makes the disassembly and assembly of the platform more simple and convenient; when the platform needs to be maintained or repaired, workers can quickly disassemble the relevant components for inspection and replacement, thereby reducing the maintenance cost and time. BRIEF DESCRIPTION OF DRAWINGS

[0022] The accompanying drawings, which are included to provide a further understanding of the present application and are incorporated in and constitute a part of this application, illustrate embodiments of the present application and serve to explain the present application. Features of the present application, both as to organization and method of operation, together with an understanding of the same, can be best understood by reference to the following detailed description, taken in connection with the accompanying drawings in which:

[0023] In the drawings:

[0024] Figure 1 It is a schematic view of the adjustable bent cap steel reinforcement cage binding platform;

[0025] Figure 2 It is a sectional view of the adjustable bent cap steel reinforcement cage binding platform;

[0026] Figure 3 It is a schematic view of the bottom support frame;

[0027] Figure 4 It is a schematic view of the moving support frame;

[0028] Figure 5 It is a schematic view of the column support frame. DETAILED DESCRIPTION

[0029] The technical solutions of the present application will be described below with reference to the drawings of the present application. However, the described embodiments are only a part of the embodiments of the present application. Based on the embodiments of the present application, all other embodiments obtained by those skilled in the art without creative labor fall within the scope of protection of the present application.

[0030] As shown in Figures 1 to 5 The present application provides an adjustable bent cap steel reinforcement cage binding platform, which comprises a bottom support frame 100, a moving support frame 200 slidingly connected along the horizontal length direction of the bottom support frame 100, and a column support frame 300 arranged on the moving support frame 200 and slidingly connected with the moving support frame 200 along the horizontal width direction of the bottom support frame 100;

[0031] The support frame 600 is arranged on the upright support frame 300 along the vertical direction and is connected to the upright support frame 300 through sliding, and the lifting device 610 is arranged on the support frame 600 and drives the support frame 600 to move up and down. A workbench 620 is arranged on the support frame 600 and is positioned on and connected to the support frame 600 through sliding.

[0032] As shown in the drawings, Figures 1 to 3 In this embodiment, the base support frame 100 comprises a support outer frame 110 and an inner support rod group 120 fixedly connected to the inner side of the support outer frame 110.

[0033] The support outer frame 110 comprises two outer support long rods 111 arranged along the length direction of the base support frame 100 and two outer support side rods 112 respectively arranged at the two ends of the outer support long rods 111 and fixedly connected to the two outer support long rods 111, thereby ensuring the overall stability and rigidity of the base support frame.

[0034] The inner support rod group 120 comprises a plurality of inner connecting short rods 121 fixedly connected to the two outer support long rods 111 and at least one inner connecting long rod 122 fixedly connected to the two outer support side rods 112, thereby further enhancing the load-bearing capacity and deformation resistance of the base support frame.

[0035] Specifically, the outer support long rods are made of two high-strength alloy steels, and the outer support side rods are connected to the two long rods. The outer support long rods are arranged along the length direction of the platform, and the outer support side rods are connected to the two ends of the long rods perpendicularly, forming a rectangular frame. All the connecting points are connected by welding or high-strength bolts, thereby ensuring stability.

[0036] On the inner side, the two outer support long rods are tightly connected by a plurality of short inner connecting short rods, forming a dense grid structure and increasing the overall rigidity. At the same time, at least one inner connecting long rod crosses the two outer support side rods, thereby further enhancing the torsional resistance of the frame. The inner support rods are also made of alloy steel, thereby ensuring strength.

[0037] As shown in the drawings, Figures 1 to 4 In this embodiment, the mobile support frame 200 comprises two mobile support rods 210 arranged on the outer support long rods 111 and a support fixed rod 220 fixedly connected to the two mobile support rods 210, thereby ensuring the stability and load-bearing capacity of the mobile support frame during sliding. The mobile device 230, such as a roller or a sliding rail, is arranged on the mobile support rod 210 and the outer support long rod 111 to enable relative movement of the mobile support rod 210 and the outer support long rod 111, thereby enabling flexible sliding of the mobile support frame.

[0038] Specifically, two movable support rods are respectively erected on the outer support long rod, made of wear-resistant alloy steel, and the surface is subjected to anti-corrosion treatment. The bottom of the support rod is provided with a roller or a sliding bearing to reduce friction and improve sliding efficiency. The fixed rod connects the two movable support rods to ensure synchronous movement. The middle of the fixed rod can be provided with an adjusting and locking device to fix the position of the movable support frame when needed. The movable support rod and the outer support long rod adopt a precision sliding rail system to ensure smooth sliding. Limiting devices are provided on both sides of the sliding rail to prevent the movable support frame from exceeding the preset range.

[0039] As shown in Figures 1 to 5 , in this embodiment, the column support frame 300 includes a support column 310 arranged on the movable support rod 210, and a movable sliding rail 320 is arranged between the support column 310 and the movable support rod 210, so that the column support frame can be flexibly slid along the movable support frame to adapt to steel cages of different widths.

[0040] Specifically, two support columns are respectively mounted on the movable support rod, made of hollow steel pipe or high-strength aluminum alloy, and the inside can be filled with concrete or high-strength foam to increase stability. The upper and lower ends of the column are respectively connected to the upper support column and the lower support column to form a stable support structure. The support column and the movable support rod adopt a precision sliding rail system, allowing the column to fine-tune the position in the horizontal direction to adapt to steel cages of different widths.

[0041] As shown in Figure 5 , in this embodiment, the column support frame 300 includes two support columns 310 respectively slidingly connected to two movable support rods 210, and an upper support column 330 and a lower support column 360 are respectively fixedly connected to both ends of the two support columns 310, enhancing the overall stability and load-bearing capacity of the column support frame.

[0042] As shown in Figure 2 and Figure 5 , in this embodiment, the support frame 600 includes a sliding frame 630 slidingly connected to the support column 310 and a fixed frame 640 fixedly connected to the sliding frame 630, so that the support frame can be flexibly lifted along the column support frame; the workbench 620 is slidingly connected to the fixed frame 640, and a sliding mechanism 650 such as a roller, a sliding rail, etc. is arranged between the fixed frame 640 and the workbench 620 to realize flexible sliding of the workbench.

[0043] Specifically, the sliding frame slides up and down along the support column, using a precise sliding rail system to ensure smooth and precise movement. The fixed frame is connected to the sliding frame, forming a stable platform. A hydraulic cylinder or electric push rod can be installed between the two as a lifting device to adjust the vertical direction. A horizontal sliding rail system is used between the fixed frame and the workbench to allow the workbench to slide horizontally. Limiting devices are also installed on both sides of the sliding rail to prevent the workbench from exceeding the preset range. The workbench is made of high-strength steel plate, with non-slip material on the surface to ensure safe operation. The edges of the workbench can be equipped with clamps or hooks to facilitate binding operations.

[0044] As shown in Figure 5 In this embodiment, the support frame 600 includes two sliding frames 630 that are slidingly connected to two support columns 310, respectively. A support frame rod 660 is arranged between the two sliding frames 630, and a lifting device 610, such as a hydraulic cylinder or an electric push rod, is arranged between the support frame rod 660 and the lower support column 360 to drive the support frame and the workbench to move up and down.

[0045] The adjustable cap beam reinforcement cage binding platform provided by the utility model has many use scenarios, including but not limited to the following descriptions:

[0046] In bridge engineering, the cap beam is an important component that connects the bridge pier and the bridge deck. Using the adjustable cap beam reinforcement cage binding platform can accurately bind the reinforcement cage, ensuring the quality and stability of the cap beam. In addition, this platform can also adapt to cap beams of different sizes and shapes, improving construction efficiency and quality;

[0047] In construction engineering, reinforcement cage is an important part of supporting and reinforcing structures. Using this platform can easily bind reinforcement cages of various sizes and shapes, meeting the requirements of architectural design and construction. At the same time, this platform can also improve the work efficiency and safety of workers, reducing construction costs;

[0048] In addition to bridge and construction engineering, this platform can also be applied to other engineering projects that require binding of reinforcement cages, such as tunnel engineering, water conservancy engineering, etc. Accurate binding of reinforcement cages is often required in these engineering projects to ensure the stability and safety of the structure. Using this platform can improve construction efficiency and quality, reducing construction costs.

Claims

1. An adjustable bent cap reinforcement cage tying platform, characterized by, The utility model relates to a kind of movable support frame and column support frame, including: Bottom support frame (100), and the mobile support frame (200) slidingly connected along the horizontal length direction of the bottom support frame (100), and the column support frame (300) being arranged on the mobile support frame (200), and, along the horizontal width direction of the bottom support frame (100) slidingly connect the mobile support frame (200); In the column support frame (300) is provided with support frame (600) and lifting device (610) driving the lifting movement of support frame (600) along the vertical direction slidingly connected the column support frame (300) on the upper, wherein, workbench (620) is provided on the support frame (600), the workbench (620) is positioned on the support frame (600) and is slidingly connected with the support frame (600).

2. The adjustable bent cap reinforcement cage tying platform of claim 1, wherein, The bottom support frame (100) includes a support outer frame (110) and an inner support rod group (120) fixedly connected inside the support outer frame (110); Wherein, the support outer frame (110) includes two outer support long rods (111) arranged along the length direction of the bottom support frame (100) and two outer support side rods (112) respectively provided at both ends of the outer support long rods (111) and fixedly connected with the two outer support long rods (111), and the inner support rod group (120) includes a plurality of inner connecting short rods (121) fixedly connected with the two outer support long rods (111) and at least one inner connecting long rod (122) fixedly connected with the two outer support side rods (112).

3. The adjustable bent cap reinforcement cage tying platform of claim 2, wherein, The mobile support frame (200) includes two mobile support rods (210) erected on the outer support long rods (111) and a support frame fixed rod (220) fixedly connected with the two mobile support rods (210), and the mobile device (230) for relative movement between the mobile support rods (210) and the outer support long rods (111) is provided on the mobile support rods (210) and the outer support long rods (111).

4. The adjustable bent cap reinforcement cage tying platform of claim 3, wherein, The column support frame (300) includes a support column (310) provided on the mobile support rod (210), and a moving slide rail (320) is provided between the support column (310) and the mobile support rod (210).

5. The adjustable bent cap reinforcement cage tying platform of claim 4, wherein, The column support frame (300) includes two support columns (310) respectively slidingly connected with the two mobile support rods (210), and an upper support column (330) and a lower support column (360) are respectively fixedly connected at both ends of the two support columns (310).

6. The adjustable bent cap reinforcement cage tying platform of claim 5, wherein, The support frame (600) includes a sliding frame (630) slidingly connected with the support column (310) and a fixed frame (640) fixedly connected with the sliding frame (630), and the workbench (620) is slidingly connected on the fixed frame (640), and a sliding mechanism (650) is provided between the fixed frame (640) and the workbench (620).

7. The adjustable bent cap reinforcement cage tying platform of claim 6, wherein, The support frame (600) comprises two sliding frames (630) respectively slidingly connected with two support columns (310), a support frame rod (660) is arranged between the two sliding frames (630), and the lifting device (610) is arranged between the support frame rod (660) and the lower support column (360).