Steel ladder cage stand column punching die

By designing a rotation and unloading mechanism for the steel ladder cage column punching mold, the problems of inconvenient position adjustment and collection during the column punching process were solved, achieving efficient column punching and collection.

CN223775784UActive Publication Date: 2026-01-09THE FIRST CIVIL ENG CO LTD OF CREC SHANGHAI GRP
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Patent Information

Application Number
CN202520284744.4
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-21
Publication Date
2026-01-09
Estimated Expiration
2035-02-21

AI Technical Summary

Technical Problem

The existing equipment is inconvenient to adjust the position during the punching process of the steel ladder cage columns, and it is also inconvenient to collect the columns after punching, resulting in low work efficiency.

Method used

A set of punching molds for steel ladder cage columns was designed, including a rotating mechanism and a unloading mechanism. The rotating mechanism is used to adjust the direction of the column, and the unloading mechanism is used to conveniently collect the punched column.

Benefits of technology

The rotating mechanism reduces the resistance to column direction adjustment and improves punching efficiency, while the unloading mechanism facilitates column collection and enhances overall work efficiency.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of steel ladder cage stand column punching, in particular to a steel ladder cage stand column punching die which comprises a base, a mounting seat is mounted on the base, a mounting frame is mounted on one side of the base, a punching mechanism is mounted between the mounting frame and the mounting seat, a rotating mechanism is arranged at the feeding end of the mounting seat, and a punching mechanism is arranged at the feeding end of the rotating mechanism. And a discharging mechanism is arranged at the discharging end of the mounting seat. According to the utility model, the rotating mechanism is arranged, so that the vertical columns of the steel ladder cage can be conveniently transported, forward power is provided for the vertical columns of the steel ladder cage, and when the punching direction or the unloading direction of the vertical columns of the steel ladder cage needs to be adjusted, the adjusting resistance is reduced, and the working efficiency is improved; and by arranging the discharging mechanism, the punched steel ladder cage stand columns can be conveniently collected, the height can be adjusted when the punched steel ladder cage stand columns are collected to a certain height, the steel ladder cage stand columns can conveniently and rapidly slide onto a discharging basket, and workers can conveniently conduct centralized treatment.
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Description

Technical Field

[0001] This utility model relates to the field of punching technology for steel ladder cage columns, specifically to a set of punching molds for steel ladder cage columns. Background Technology

[0002] Steel ladder cages are a common type of bridge structure, serving as an important auxiliary component for personnel to move up and down the structure. The columns are an integral part of the ladder cage, and drilling is typically required for these columns. Previously, drilling these columns was labor-intensive and time-consuming, consuming considerable manpower and resources. Current equipment uses punching machines for this purpose; however, during the punching process, workers need to adjust the position or direction of the punched holes in the steel ladder cage columns, which is inconvenient with current equipment. Furthermore, current equipment is not convenient for collecting the punched steel ladder cage columns, thus hindering work efficiency.

[0003] Based on this, a set of punching molds for steel ladder cage columns is now provided, which can eliminate the drawbacks of existing devices. Utility Model Content

[0004] To address the aforementioned issues, a set of punching dies for steel ladder cage columns is provided. The rotating mechanism and unloading mechanism solve the problems of inconvenient loading and punching direction adjustment.

[0005] To address the existing technical problems, this utility model provides a set of punching molds for steel ladder cage columns, including a base, an mounting seat mounted on the base, a mounting frame mounted on one side of the base, a punching mechanism mounted between the mounting frame and the mounting seat, a rotating mechanism at the feeding end of the mounting seat, and a unloading mechanism on the base.

[0006] Preferably, the punching mechanism includes a fixed base, a second cylinder, a pressure plate, a die body, a punching head, a sliding column, a sliding seat, a damping spring, and a connecting rod. The fixed base is installed on the side wall of the mounting bracket, and the second cylinder is installed inside the fixed base. The output end of the second cylinder passes through the side wall of the fixed base and connects to the connecting rod. The punching head is installed on the connecting rod. The two ends of the connecting rod are connected to the sliding column. The other end of the sliding column is slidably disposed in the sliding seat. The sliding seat is symmetrically disposed on the pressure plate. The two ends of the damping spring are respectively connected to the bottom wall of the sliding column and the inner wall of the sliding seat. The die body that cooperates with the pressure plate and the punching head is installed on the mounting base.

[0007] Preferably, the rotating mechanism includes a support frame, a limiting ring frame, a rotating seat, and directional wheels. The support frame is installed at the feeding end of the mounting seat on the base, and the limiting ring frame is installed on the support frame. Directional wheels are provided at both ends of the rotating seat, and the directional wheels are slidably disposed within the limiting ring frame.

[0008] Preferably, the unloading mechanism includes a connecting seat, a first cylinder, a connecting column, and an unloading basket. Several connecting seats are symmetrically arranged at the discharge end of the mounting seat on the base. The first cylinder is installed in the connecting seat. The output end of the first cylinder is connected to the connecting column. An unloading basket is installed at the end of the connecting column away from the connecting seat.

[0009] The advantages of this utility model compared to the prior art are:

[0010] 1. This utility model, by setting a rotating mechanism, facilitates the transportation of the steel ladder cage columns, provides them with forward power, and reduces the resistance to adjustment when it is necessary to adjust the punching direction or unloading direction, thereby improving work efficiency.

[0011] 2. This utility model has a material unloading mechanism to facilitate the collection of the punched steel ladder cage columns. When the collection reaches a certain height, the height can be adjusted to allow the steel ladder cage columns to slide quickly onto the unloading basket, making it convenient for workers to handle them centrally. Attached Figure Description

[0012] Figure 1 This is a three-dimensional structural diagram of a set of punching dies for steel ladder cage columns. Figure 1 .

[0013] Figure 2 This is a three-dimensional structural diagram of a set of punching dies for steel ladder cage columns. Figure 2 .

[0014] Figure 3 This is a partial three-dimensional structural diagram of a set of punching molds for steel ladder cage columns.

[0015] The following are the labels in the diagram: 101, base; 102, mounting seat; 103, mounting bracket; 200, rotating mechanism; 201, support frame; 202, limiting ring frame; 203, rotating seat; 204, directional wheel; 300, unloading mechanism; 301, connecting seat; 302, first cylinder; 303, connecting column; 304, unloading basket; 400, punching mechanism; 401, fixed seat; 402, second cylinder; 403, pressure plate; 404, mold body; 405, punching head; 406, sliding column; 407, sliding seat; 408, damping spring; 409, connecting rod. Detailed Implementation

[0016] To further understand the features, technical means, and specific objectives and functions achieved by this utility model, the following detailed description of this utility model is provided in conjunction with the accompanying drawings and specific embodiments.

[0017] Reference Figures 1-3A set of punching molds for steel ladder cage columns includes a base 101, an mounting seat 102 mounted on the base 101, a mounting frame 103 mounted on one side of the base 101, a punching mechanism 400 mounted between the mounting frame 103 and the mounting seat 102, a rotating mechanism 200 provided at the feeding end of the mounting seat 102, and a unloading mechanism 300 provided on the base 101.

[0018] The rotating mechanism 200 facilitates the transportation of the steel ladder cage columns, providing them with forward power. It also reduces the resistance to adjustment when the punching direction or position needs to be adjusted, thus improving work efficiency. The unloading mechanism 300 facilitates the collection of the punched steel ladder cage columns, and after collection, transports them to a designated location.

[0019] Reference Figures 1-3 The punching mechanism 400 includes a fixed base 401, a second cylinder 402, a pressure plate 403, a mold body 404, a punching head 405, a sliding column 406, a sliding seat 407, a damping spring 408, and a connecting rod 409. The fixed base 401 is installed on the side wall of the mounting bracket 103. The second cylinder 402 is installed inside the fixed base 401. The output end of the second cylinder 402 passes through the side wall of the fixed base 401 and connects to the connecting rod 409. The punching head 405 is installed on the connecting rod 409. The two ends of the connecting rod 409 are connected to the sliding column 406. The other end of the sliding column 406 is slidably disposed in the sliding seat 407. The sliding seat 407 is symmetrically disposed on the pressure plate 403. The two ends of the damping spring 408 are respectively connected to the bottom wall of the sliding column 406 and the inner wall of the sliding seat 407. The mold body 404, which cooperates with the pressure plate 403 and the punching head 405, is installed on the mounting base 102.

[0020] The second cylinder 402 is activated to drive the connecting rod 409 to move. The connecting rod 409 drives the sliding column 406 and the punching head 405 to move. The sliding column 406 drives the pressure plate 403 to press the steel ladder cage column tightly. Then, the punching head 405 punches holes in the steel ladder cage column. This reduces drilling time and improves work efficiency.

[0021] Reference Figures 1-2The rotating mechanism 200 includes a support frame 201, a limiting ring frame 202, a rotating seat 203, and directional wheels 204. The support frame 201 is mounted on the feeding end of the mounting seat 102 on the base 101. The limiting ring frame 202 is mounted on the support frame 201. Directional wheels 204 are provided at both ends of the rotating seat 203, and the directional wheels 204 are slidably disposed within the limiting ring frame 202. The worker holds one end of the steel ladder cage column, while the other end rests on the rotating seat 203. The rotating seat 203 supports the worker in adjusting the punching direction or position of the steel ladder cage column, reducing friction during movement. The directional wheels 204 support the rotating seat 203 to rotate within the limiting ring frame 202, facilitating the worker to turn the punched column around and place it on the unloading mechanism 300. The directional wheels 204 are set at a certain angle to achieve rotation within the limiting ring frame 202.

[0022] Reference Figures 1-2 The unloading mechanism 300 includes a connecting seat 301, a first cylinder 302, a connecting column 303, and an unloading basket 304. Several connecting seats 301 are symmetrically arranged at the discharge end of the mounting seat 102 on the base 101. A first cylinder 302 is installed inside each connecting seat 301, and the output end of the first cylinder 302 is connected to the connecting column 303. The unloading basket 304 is installed at the end of the connecting column 303 away from the connecting seat 301. When the height of the unloading basket 304 is unsuitable for continued storage, the first cylinder 302 is activated to adjust the height of the unloading basket 304. This facilitates the collection of the steel ladder cage columns and allows for centralized processing by workers, thus improving work efficiency.

[0023] Working principle: The worker holds one end of the steel ladder cage column, while the other end rests on the rotating seat 203. The rotating seat 203 supports the worker in adjusting the punching direction or position of the steel ladder cage column, reducing friction during movement. Activating the second cylinder 402 moves the connecting rod 409, which in turn moves the sliding column 406 and the punching head 405. The sliding column 406 presses the pressure plate 403 to clamp the steel ladder cage column, and then the punching head 405 punches the steel ladder cage column... Drilling holes reduces drilling time. After punching, workers turn the steel ladder cage columns around. The directional wheel 204 supports the rotating seat 203 within the limiting ring frame 202, allowing workers to easily turn the drilled columns around and place them on the unloading basket 304. When the height of the unloading basket 304 is unsuitable for continued storage, the first cylinder 302 is activated to adjust the height of the unloading basket 304. This facilitates the collection of the steel ladder cage columns and allows for centralized processing, thus improving work efficiency. The above embodiments only illustrate one or more implementations of this utility model, and their descriptions are relatively specific and detailed, but they should not be construed as limiting the scope of this utility model. It should be noted that those skilled in the art can make several modifications and improvements without departing from the concept of this utility model, and these all fall within the protection scope of this utility model. Therefore, the protection scope of this utility model should be determined by the appended claims.

Claims

1. A set of punching molds for steel ladder cage columns, characterized in that, Includes a base (101), on which a mounting seat (102) is mounted, a mounting bracket (103) is mounted on one side of the base (101), a punching mechanism (400) is installed between the mounting bracket (103) and the mounting seat (102), a rotating mechanism (200) is provided at the feeding end of the mounting seat (102), and a unloading mechanism (300) is provided on the base (101). The punching mechanism (400) includes a fixed base (401), a second cylinder (402), a pressure plate (403), a mold body (404), a punch head (405), a sliding column (406), a sliding seat (407), a damping spring (408), and a connecting rod (409). The fixed base (401) is mounted on the side wall of the mounting bracket (103), and the second cylinder (402) is installed inside the fixed base (401). The output end of the second cylinder (402) passes through the side wall of the fixed base (401) and connects to the connecting rod (409). A punch head (405) is installed on the connecting rod (409). The two ends of the connecting rod (409) are connected to sliding columns (406). The other end of the sliding column (406) is slidably disposed in the sliding seat (407). The sliding seat (407) is symmetrically disposed on the pressure plate (403). The two ends of the damping spring (408) are respectively connected to the bottom wall of the sliding column (406) and the inner wall of the sliding seat (407). A mold body (404) that cooperates with the pressure plate (403) and the punch head (405) is installed on the mounting base (102). The rotating mechanism (200) includes a support frame (201), a limiting ring frame (202), a rotating seat (203), and a directional wheel (204). The support frame (201) is installed at the feeding end of the mounting seat (102) on the base (101). The limiting ring frame (202) is installed on the support frame (201). The rotating seat (203) is provided with directional wheels (204) at both ends. The directional wheels (204) are slidably disposed in the limiting ring frame (202). The unloading mechanism (300) includes a connecting seat (301), a first cylinder (302), a connecting column (303), and an unloading basket (304). Several connecting seats (301) are symmetrically arranged at the discharge end of the mounting seat (102) on the base (101). The first cylinder (302) is installed in the connecting seat (301). The output end of the first cylinder (302) is connected to the connecting column (303). The unloading basket (304) is installed at the end of the connecting column (303) away from the connecting seat (301).