Hanging frame connecting assembly of tower building machine for tower building

By designing a combination of hollow grooves, connectors, light-transmitting plates, hanging brackets, and connecting plates, and utilizing the limiting mechanism of blocking structures and force-bearing blocks, the problem of shaking and falling during bracket disassembly is solved, achieving stable connection and safe disassembly of the bracket.

CN223937611UActive Publication Date: 2026-02-24CCCC SOUTHEAST CONSTR CO LTD +3
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Patent Information

Application Number
CN202520935749.9
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-13
Publication Date
2026-02-24
Estimated Expiration
2035-05-13

AI Technical Summary

Technical Problem

The bracket is prone to imbalance during disassembly, causing it to sway and fall unstablely from a height. The existing threaded connection method cannot effectively prevent swaying and falling after disassembly.

Method used

The design incorporates hollow grooves, connectors, light-transmitting panels, hanging brackets, and connecting plates. Through the cooperation of blocking structures and force-bearing blocks, the hanging bracket mechanism can be stably connected and disconnected. The matching and limiting of irregularly shaped blocks and force-bearing blocks prevents shaking and falling.

Benefits of technology

When the hanger mechanism falls naturally, the blocking structure automatically disengages to prevent the hanger from shaking and falling, ensuring the stability and safety of the hanger during disassembly.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of hanging rack connection, and discloses a hanging rack connecting assembly of a tower building tower building machine, which comprises a hollow groove, a connecting piece, a light-transmitting plate, hanging rack mechanisms and a connecting plate, when the hanging rack mechanisms fall off naturally, a blocking structure is rotated in advance between the hanging rack mechanisms, so that the blocking structure is separated from the clamping of the connecting piece; therefore, when the hanging frame mechanisms naturally fall off, the adjacent hanging frame mechanisms drive the connecting pieces to vertically slide and be separated in the hollow grooves, instability caused by blocking of the connecting pieces when the hanging frame mechanisms naturally fall off is prevented, and after the blocking structures are separated from clamping of the special-shaped blocks, the stress blocks are still matched with one sides of the special-shaped blocks. And the two adjacent hanging frame mechanisms are limited through the W-shaped matching of the special-shaped blocks on the stress blocks, so that the hanging frame mechanisms can only vertically slide on the stress blocks through the special-shaped blocks, and the problem that the two adjacent hanging frame mechanisms shake after the blocking structures are disengaged from clamping is prevented.
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Description

Technical Field

[0001] This utility model relates to the field of bracket connection technology, specifically a bracket connection component for tower construction machines in tower control. Background Technology

[0002] The tower construction machine requires the erection of a hanging frame around the tower to facilitate the construction of the tower's outer wall. The hanging frame is fixed to the I-shaped extension frame of the lifting mechanism, and the lifting mechanism is raised and lowered through a large lifting system. As the height of the project increases, the hanging frame is raised, which greatly reduces the need for manual labor. The hanging frames are spliced ​​together by connecting components, and a large number of threads are used for connection and fixation during splicing to improve the stability of the hanging frame.

[0003] However, when the hanger is disassembled, after the threaded rod is removed, there are no connecting components between the hangers. It is easy to lose balance and sway quickly at high altitude, so the staff needs to evacuate quickly. The stability of the hanger is poor after the connecting components are removed. In addition, the hanger needs to fall freely when it is disassembled. However, the disassembly only involves the connection and disassembly. When the hanger falls, it is easy to be blocked by adjacent hangers, resulting in unstable fall. Utility Model Content

[0004] This utility model provides a hanging frame connection assembly for a tower construction machine in tower construction, which overcomes the shortcomings described in the background art.

[0005] The technical solution adopted by this utility model to solve its technical problem is:

[0006] A hanging frame connection assembly for a tower construction machine includes a hollow groove, a connector, a light-transmitting plate, a hanging frame mechanism, and a connecting plate. The hollow groove is disposed on the left and right sides of the hanging frame mechanism, the light-transmitting plate is disposed in the middle of the hanging frame mechanism, the connector is engaged inside the hollow groove, the upper end of the hanging frame mechanism is provided with symmetrically arranged connecting plates, and the lower end of the hanging frame mechanism is provided with holes, which are embedded in adjacent connecting plates.

[0007] The hanging bracket mechanism includes a hanging plate, a blocking structure, a movable groove, and a force-bearing block. The movable groove is located inside the hanging plate, and the connector is inserted into the hanging plate from the hollow groove. The blocking structure is located inside the hanging plate, and the force-bearing block is located inside the hanging plate. The blocking structure and the force-bearing block are symmetrically distributed. When connecting the hanging plate and the connector, the blocking structure is screwed on and pressed against one side of the connector, and the other side of the connector matches and presses against the corresponding force-bearing block.

[0008] A preferred technical solution: The connector is provided with a retaining plate and an irregularly shaped block. The irregularly shaped block is disposed at both ends of the retaining plate. The irregularly shaped block is "W" shaped, and the blocking structure matches the irregularly shaped block. The side of the retaining plate corresponding to the blocking structure is flat, and the side of the retaining plate corresponding to the force-bearing block is "W" shaped. The retaining plate and the irregularly shaped block slide vertically relative to the force-bearing block.

[0009] A preferred technical solution: The blocking structure includes a folding plate, a screw, a support block, and a rotating rod. The rotating rod is movably disposed within the hanging plate. The screw rotates within the support block via a bearing. The screw moves spirally within the hanging plate and pushes the support block. The folding plate hinges at the upper end of the support block and abuts against one side of the irregularly shaped block.

[0010] A preferred technical solution: The folding plate is supported by two irregularly shaped blocks and its movement is blocked by a clamping plate. The blocking structures in the two adjacent hanging plates are symmetrically pressed against the clamping plates from the left and right, and the two adjacent hanging plates are fixed.

[0011] A preferred technical solution: The support block drives one end of the folding plate to move horizontally and causes the folding plate to rotate clockwise around the rotating rod. A hinge rod is provided in the middle of the folding plate. The folding plate changes its included angle through the hinge rod. After the folding plate hinge rotates, the position of the folding plate hinge rod is disengaged from the obstruction of the clamping plate.

[0012] Compared with existing technologies, this technical solution has the following advantages:

[0013] In this invention, adjacent hanging bracket mechanisms are embedded vertically by connecting plates and engaged on both sides of the hanging bracket mechanism by connecting parts from the hollow slot. When engaging the connecting parts, rotating the screw causes the support block to rotate inward, and then the folding plate abuts against the "W" shape of the irregular block. The force block blocks the other side of the irregular block, causing the locking plate to engage with the blocking structure, thus connecting and engaging the left and right sides of the adjacent hanging bracket mechanisms. When the hanging bracket mechanism falls naturally, the blocking structure between the hanging bracket mechanisms rotates in advance, causing the blocking structure to disengage from the connecting parts. Thus, when the hanging bracket mechanism falls naturally, the adjacent hanging bracket mechanism drives the connecting parts to slide vertically and disengage within the hollow slot, preventing the hanging bracket mechanism from being blocked by the connecting parts and causing instability when it falls naturally.

[0014] In this utility model, after the blocking structure disengages from the irregular block, the force-bearing block still matches one side of the irregular block. The "W"-shaped match of the irregular block on the force-bearing block limits the two adjacent hanging mechanisms, so that the hanging mechanism can only slide vertically on the force-bearing block through the irregular block, preventing the problem of the two adjacent hanging mechanisms shaking after the blocking structure disengages from the blocking structure. Attached Figure Description

[0015] The present invention will be further described below with reference to the accompanying drawings and embodiments.

[0016] Figure 1 This is an overall drawing of the present utility model.

[0017] Figure 2 This is a plan view of the hanging bracket mechanism.

[0018] Figure 3 This is a three-dimensional schematic diagram of the connector.

[0019] Figure 4 This is a planar schematic diagram of the barrier structure.

[0020] In the diagram: Hollow groove-1, Connector-2, Light-transmitting plate-3, Hanging mechanism-4, Connecting plate-5, Hanging plate-41, Blocking structure-42, Movable groove-43, Force-bearing block-44, Clamping plate-21, Irregular block-22, Folding plate-421, Screw-422, Support block-423, Rotating rod-424. Detailed Implementation

[0021] like Figures 1 to 4 As shown, this utility model proposes a hanging frame connection assembly for a tower construction machine, including a hollow groove 1, a connector 2, a light-transmitting plate 3, a hanging frame mechanism 4, and a connecting plate 5. The hollow groove 1 is arranged on the left and right sides of the hanging frame mechanism 4, the light-transmitting plate 3 is arranged in the middle of the hanging frame mechanism 4, the connector 2 is engaged inside the hollow groove 1, the upper end of the hanging frame mechanism 4 is provided with symmetrically arranged connecting plates 5, and the lower end of the hanging frame mechanism 4 is provided with holes, which are embedded in adjacent connecting plates 5.

[0022] The hanging bracket mechanism 4 is provided with a hanging plate 41, a blocking structure 42, a movable groove 43, and a force-bearing block 44. The movable groove 43 is located inside the hanging plate 41, and the connecting piece 2 is inserted into the hanging plate 41 from the hollow groove 1. The blocking structure 42 is located inside the hanging plate 41, and the force-bearing block 44 is located inside the hanging plate 41. The blocking structure 42 and the force-bearing block 44 are symmetrically distributed. When connecting the hanging plate 41 and the connecting piece 2, the blocking structure 42 is screwed and abuts against one side of the connecting piece 2. The other side of the connecting piece 2 matches and presses against the force-bearing block 44.

[0023] The connector 2 is provided with a retaining plate 21 and a shaped block 22. The shaped block 22 is disposed at both ends of the retaining plate 21. The shaped block 22 is in the shape of a "W". The blocking structure 42 is aligned with the shaped block 22. The side of the retaining plate 21 corresponding to the blocking structure 42 is flat. The side of the retaining plate 21 corresponding to the force-bearing block 44 is in the shape of a "W". The retaining plate 21 and the shaped block 22 slide vertically relative to the force-bearing block 44.

[0024] Furthermore, the force-bearing block 44 is made of plastic, which has a surface that is easy to slide, so that the irregular block 22 will not experience much frictional resistance when sliding vertically on the surface of the force-bearing block 44.

[0025] The blocking structure 42 includes a folding plate 421, a screw 422, a support block 423, and a rotating rod 424. The rotating rod 424 is movably disposed within the hanging plate 41. The screw 422 rotates within the support block 423 via a bearing and moves spirally within the hanging plate 41, pushing the support block 423. The folding plate 421 hinges at the upper end of the support block 423 and abuts against one side of the irregular block 22.

[0026] The folding plate 421 supports two irregularly shaped blocks 22 and blocks movement through the clamping plate 21. The blocking structures 42 in the two adjacent hanging plates 41 symmetrically press against the clamping plate 21 from the left and right, and fix the two adjacent hanging plates 41.

[0027] Furthermore, the support block 423 drives one end of the folding plate 421 to translate and causes the folding plate 421 to rotate clockwise around the rotating rod 424. The folding plate 421 is provided with a hinge rod in the middle. The folding plate 421 changes its included angle through the hinge rod. After the folding plate 421 is hinged and rotated, the position of the hinge rod of the folding plate 421 is disengaged from the obstruction of the clamping plate 21.

[0028] Furthermore, the connecting plate 5 is provided with bolt holes, and the uppermost hanging mechanism 4 is connected to the disassembly device through the bolt holes in the connecting plate 5. The disassembly device can be fixed on the I-shaped extension frame, and the hanging mechanisms 4 are spliced ​​together on the upper and lower sides through the connector 2 and the connecting plate 5.

[0029] In this utility model, adjacent hanging bracket mechanisms 4 are embedded vertically through connecting plates 5, and are engaged on both sides of the hanging bracket mechanism 4 through connecting parts 2 from the hollow groove 1. When engaging connecting parts 2, rotating screw 422 drives support block 423 to rotate inward, and then folding plate 421 abuts against the "W" shape of irregular block 22, and through the force block 44 blocking the other side of irregular block 22, the clamping plate 21 blocks and engages with the blocking structure 42, so that the left and right sides of adjacent hanging bracket mechanisms 4 are connected and engaged with each other. When the hanging bracket mechanism 4 falls naturally, the blocking structure 42 is rotated in advance between the hanging bracket mechanisms 4, so that the blocking structure 42 disengages from the engaging with connecting parts 2. Thus, when the hanging bracket mechanism 4 falls naturally, the adjacent hanging bracket mechanism 4 drives the connecting parts 2 to slide vertically and disengage in the hollow groove 1, preventing the hanging bracket mechanism 4 from being blocked by the connecting parts 2 when it falls naturally, causing instability.

[0030] In this invention, when the blocking structure 42 disengages from the irregular block 22, the force-bearing block 44 still matches one side of the irregular block 22. The "W"-shaped match of the irregular block 22 on the force-bearing block 44 limits the two adjacent hanging mechanisms 4, so that the hanging mechanism 4 can only slide vertically on the force-bearing block 44 through the irregular block 22, thus preventing the two adjacent hanging mechanisms 4 from shaking after the blocking structure 42 disengages from the locking.

[0031] The above description is only a preferred embodiment of the present utility model, and therefore cannot be used to limit the scope of the present utility model. All equivalent changes and modifications made in accordance with the scope of the present utility model patent and the contents of the specification should still fall within the scope of the present utility model.

Claims

1. A bracket connection assembly for a tower construction machine, characterized in that, The device includes a hollow groove (1), a connector (2), a light-transmitting plate (3), a hanging mechanism (4), and a connecting plate (5). The hollow groove (1) is located on the left and right sides of the hanging mechanism (4), the light-transmitting plate (3) is located in the middle of the hanging mechanism (4), the connector (2) is engaged inside the hollow groove (1), the upper end of the hanging mechanism (4) is provided with symmetrically arranged connecting plates (5), and the lower end of the hanging mechanism (4) is provided with holes, which are embedded in the adjacent connecting plates (5). The hanging mechanism (4) is provided with a hanging plate (41), a blocking structure (42), a movable groove (43) and a force-bearing block (44). The movable groove (43) is located inside the hanging plate (41), and the connecting piece (2) is inserted into the hanging plate (41) from the hollow groove (1). The blocking structure (42) is located inside the hanging plate (41), and the force-bearing block (44) is located inside the hanging plate (41). The blocking structure (42) and the force-bearing block (44) are symmetrically distributed. When connecting the hanging plate (41) and the connecting piece (2), the blocking structure (42) is screwed and the blocking structure (42) abuts against one side of the connecting piece (2). The other side of the connecting piece (2) matches and presses against the force-bearing block (44).

2. The bracket connection assembly for a tower construction machine according to claim 1, characterized in that, The connector (2) is provided with a clamping plate (21) and a shaped block (22). The shaped block (22) is located at both ends of the clamping plate (21). The shaped block (22) is in the shape of a "W". The blocking structure (42) matches the shaped block (22). The side of the clamping plate (21) corresponding to the blocking structure (42) is in a flat state. The side of the clamping plate (21) corresponding to the force block (44) is in the shape of a "W". The clamping plate (21) and the shaped block (22) slide vertically to the force block (44).

3. The bracket connection assembly for a tower construction machine according to claim 2, characterized in that, The blocking structure (42) is provided with a folding plate (421), a screw (422), a support block (423) and a rotating rod (424). The rotating rod (424) is movably disposed in the hanging plate (41). The screw (422) rotates in the support block (423) and moves spirally in the hanging plate (41), pushing the support block (423). The folding plate (421) is hinged at the upper end of the support block (423) and abuts against one side of the irregular block (22).

4. The bracket connection assembly for a tower construction machine according to claim 3, characterized in that, The folding plate (421) supports two irregular blocks (22) and blocks movement through the clamping plate (21). The blocking structure (42) in the two adjacent hanging plates (41) presses against the clamping plate (21) symmetrically from left to right, and fixes the two adjacent hanging plates (41).

5. The bracket connection assembly for a tower construction machine according to claim 4, characterized in that, The support block (423) drives one end of the folding plate (421) to move horizontally and causes the folding plate (421) to rotate clockwise around the rotating rod (424). The folding plate (421) is provided with a hinge rod in the middle. The folding plate (421) changes the included angle through the hinge rod. After the hinge of the folding plate (421) rotates, the position of the hinge rod of the folding plate (421) is disengaged from the obstruction of the clamping plate (21).