Reinforcement cage concrete vibrating device

By designing a concrete vibrating device for reinforced cages with lifting components and moving vibrating parts, the problem of the vibrating device being unable to penetrate into each layer was solved, achieving uniform vibration of concrete and tight bonding of the reinforcing cage, thus improving the quality of concrete.

CN224092994UActive Publication Date: 2026-04-07SHANDONG WANSEN PREFABRICATED COMPONENTS CO LTD
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-07
Publication Date
2026-04-07

AI Technical Summary

Technical Problem

Existing vibration devices are unable to penetrate to the appropriate depth of each layer of concrete within the rectangular mold, resulting in insufficient vibration of the upper or lower layers and failing to ensure a tight bond between the reinforcing cage and the concrete.

Method used

A concrete vibratory device for reinforced cages was designed, which adopts a lifting component and a vibratory moving component. The vibrator can be raised and lowered to flexibly adapt to the height of each layer. The vibrator can be deeply inserted through the moving frame and rotating component to ensure uniform vibration of each layer of concrete.

Benefits of technology

This ensured that each layer of concrete was fully vibrated, avoiding insufficient vibration, and ensuring a tight bond between the reinforcing cage and the concrete, thereby improving the uniformity and strength of the concrete.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses a reinforcement cage concrete vibrating device which comprises a rectangular mold, a reinforcement cage is placed in an inner cavity of the rectangular mold, two symmetrical moving frames are arranged on the front side and the rear side of the rectangular mold, and the tops of the two moving frames are fixedly connected with a connecting frame. A rotating assembly is installed at the center axis of the bottom of the connecting frame, a lifting assembly is fixedly connected to the moving end of the rotating assembly, four symmetrical connecting locking rings are arranged at the bottom of the lifting assembly, and a cross plate is arranged at the bottom of the end, away from the lifting assembly, of each connecting locking ring. A reinforcement cage is placed in the inner cavity of the rectangular mold, concrete is poured in the inner cavity of the rectangular mold, and the moving frame, the lifting assembly and the vibrating moving part are used in cooperation, so that the vibrating rod can move to the inner cavity of the rectangular mold to vibrate the concrete in the inner cavity of the rectangular mold; the reinforcement cage can be fully wrapped by the concrete.
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Description

TECHNICAL FIELD

[0001] The utility model belongs to the technical field of steel reinforcement cage concrete processing, especially relates to a steel reinforcement cage concrete vibrating device. BACKGROUND

[0002] The vibrating device is the component part of the concrete vibrator, and the vibration generated by the power device is transmitted to the vibrating device. The vibrating device sharply reduces the internal friction and adhesion between the particles in the concrete, and the concrete is in the heavy liquid state. The aggregate slides and rearranges, the voids are filled with mortar, and the bubbles are squeezed out, thereby achieving the tamping effect.

[0003] The rectangular mold has special parts such as right angles and edges. The concrete in the rectangular mold is usually poured in layers, and the thickness of each layer is different. The vibrating device cannot be lifted, so it is difficult to vibrate each layer of concrete to the appropriate depth. Therefore, we need to design a steel reinforcement cage concrete vibrating device. The vibrating device can be lifted by using a vibrating machine shell lifting structure. The vibrating device can be lifted to adapt to the height of each layer of concrete. The vibrating device starts from the bottom layer and gradually rises to ensure that each layer of concrete is fully vibrated, avoiding insufficient vibration of the upper or lower layer. The vibrating device can penetrate the concrete at the bottom of the steel reinforcement cage and at various heights to uniformly vibrate the concrete around the steel reinforcement cage, ensuring that the steel reinforcement cage and the concrete are tightly combined. SUMMARY

[0004] The utility model discloses a steel reinforcement cage concrete vibrating device, which can ensure that each layer of concrete is fully vibrated, avoid insufficient vibration of the upper or lower layer, penetrate the concrete at the bottom of the steel reinforcement cage and at various heights, uniformly vibrate the concrete around the steel reinforcement cage, and ensure that the steel reinforcement cage and the concrete are tightly combined, thereby solving the above background technical problems.

[0005] The utility model discloses a steel reinforcement cage concrete vibrating device, which can ensure that each layer of concrete is fully vibrated, avoid insufficient vibration of the upper or lower layer, penetrate the concrete at the bottom of the steel reinforcement cage and at various heights, uniformly vibrate the concrete around the steel reinforcement cage, and ensure that the steel reinforcement cage and the concrete are tightly combined, thereby solving the above background technical problems. A steel reinforcement cage concrete vibrating device includes a rectangular mold, a steel reinforcement cage placed in the inner cavity of the rectangular mold, two symmetrical moving frames arranged on the front and back sides of the rectangular mold, a connecting frame fixedly connected to the top of the two moving frames, a rotating assembly installed at the middle shaft of the bottom of the connecting frame, a lifting assembly fixedly connected to the moving end of the rotating assembly, four symmetrical connecting lock rings arranged at the bottom of the lifting assembly, a cross plate arranged at the bottom of the end of the connecting lock ring away from the lifting assembly, a side baffle fixedly connected to the opposite four edges of the cross plate, a vibrating main plate arranged at the bottom of the four side baffles, a vibrating moving piece installed at the top of the vibrating main plate, and four vibrating rods installed at the moving end of the vibrating moving piece.

[0006] Preferably, the bottom of the lifting assembly is fixedly connected to two symmetrical hooks, and the inner cavities of the four connecting locking rings are hooked to the top of the two hooks.

[0007] Preferably, a hook plate is fixedly connected to one end of the four connecting locking rings away from the lifting assembly, and the four hook plates are fixedly connected to the top of the cross plate.

[0008] Preferably, a connecting block is fixedly connected to the bottom of each of the four side baffles on opposite sides, and the bottom of each of the four connecting blocks is fixedly connected to the top of the vibrating main board by bolts.

[0009] Preferably, the front and rear sides of the vibratory main board are both fixedly connected with rails, and the rails are slidably connected to the vibratory moving parts.

[0010] Preferably, the four vibrating rods are located inside the reinforcing cage, and concrete is poured into the inner cavity of the rectangular mold.

[0011] The beneficial effects of this utility model are:

[0012] 1. This utility model places the reinforcing cage in the inner cavity of a rectangular mold and pours concrete into the inner cavity of the rectangular mold. Through the coordinated use of the moving frame, lifting components and vibrating moving parts, the vibrator moves to the inner cavity of the rectangular mold to vibrate the concrete in the inner cavity of the rectangular mold, ensuring that the concrete can fully wrap the reinforcing cage. This ensures that each layer of concrete is fully vibrated, avoiding insufficient vibration in the upper or lower layers. It can penetrate to the bottom of the reinforcing cage and the concrete at various heights, so that the concrete is evenly vibrated around the reinforcing cage, ensuring a tight bond between the reinforcing cage and the concrete.

[0013] 2. This utility model, through the setting of the hook, can be stably connected to one end of the connecting lock ring, which is a key connection point for the lifting component and the cross plate. Through the hook, the connecting lock ring and the hook are tightly matched, and the hook and the connecting lock ring are reliably connected.

[0014] 3. The present invention provides a stable connection point for the connecting lock ring and the cross plate by setting the hook plate. The hook plate can firmly hook the connecting lock ring and the cross plate to ensure that the connection does not loosen or slip during the hoisting process, thus ensuring the safety of the vibrator hoisting. The hook plate can effectively prevent the connecting lock ring and the cross plate from accidentally separating.

[0015] 4. By setting up a track, this utility model guides the moving vibrator as it slides on top of the main vibrator, ensuring the smooth movement of the vibrator and the vibrating rod and improving the stability of the sliding of the moving vibrator. Attached Figure Description

[0016] The advantages of the present invention, as described above and / or in the following detailed description in conjunction with the accompanying drawings, will become clearer and more readily understood. These drawings are merely illustrative and do not limit the scope of the present invention.

[0017] Figure 1 This is a front view schematic diagram of one embodiment of the present utility model;

[0018] Figure 2 This is a three-dimensional schematic diagram of the cross plate and the vibrating moving component according to an embodiment of the present utility model;

[0019] Figure 3 This is a front view schematic diagram of the connecting locking ring and vibrating rod according to an embodiment of the present invention;

[0020] Figure 4 This is a top view schematic diagram of one embodiment of the present invention;

[0021] Figure 5 This is a perspective view of the rotating assembly and the lifting assembly according to an embodiment of the present invention;

[0022] Figure 6 This is one embodiment of the present utility model. Figure 1 A magnified view of point A in the middle.

[0023] The attached diagram lists the components represented by each number as follows:

[0024] 1. Rectangular mold, 2. Rebar cage, 3. Moving frame, 4. Connecting frame, 5. Rotating assembly, 6. Lifting assembly, 7. Hook, 8. Connecting lock ring, 9. Hook plate, 10. Cross plate, 11. Side baffle, 12. Connecting block, 13. Vibrating main plate, 14. Vibrating moving part, 15. Vibrating rod, 16. Track. Detailed Implementation

[0025] In the following description, embodiments of the reinforced concrete cage vibrating device of the present invention will be described with reference to the accompanying drawings.

[0026] Figures 1-6This invention illustrates a concrete vibrating device for reinforcing cages according to an embodiment of the present invention. It includes a rectangular mold 1, with a reinforcing cage 2 placed inside the mold 1. Two symmetrical movable frames 3 are arranged on the front and rear sides of the mold 1. A connecting frame 4 is fixedly connected to the top of the two movable frames 3. A rotating assembly 5 is installed at the central axis at the bottom of the connecting frame 4. A lifting assembly 6 is fixedly connected to the moving end of the rotating assembly 5. Four symmetrical connecting locking rings 8 are arranged at the bottom of the lifting assembly 6. Two symmetrical hooks 7 are fixedly connected to the bottom of the lifting assembly 6. The inner cavities of the four connecting locking rings 8 hook onto the two hooks 7. At the top, hook 7 is securely connected to one end of connecting lock ring 8, serving as a key connection point between lifting assembly 6 and cross plate 10. Hook 7 ensures a tight fit between connecting lock ring 8 and hook 7, guaranteeing a reliable connection. A cross plate 10 is located at the bottom of the connecting lock ring 8, away from lifting assembly 6. Hook plates 9 are fixedly connected to the four ends of connecting lock rings 8 away from lifting assembly 6, and are fixedly connected to the top of the four hook plates 10. The hook plates 9 provide a stable connection point between the connecting lock ring 8 and cross plate 10. Its hook plate 9 can firmly hook the connecting locking ring 8 and the cross plate 10, ensuring that the connection does not loosen or slip during hoisting, thus guaranteeing the safe hoisting of the vibrator 15. The hook plate 9 can effectively prevent the connecting locking ring 8 and the cross plate 10 from accidentally detaching. Side baffles 11 are fixedly connected to the four opposite sides of the cross plate 10. The bottom of the four side baffles 11 is provided with a vibrating main plate 13. The bottom of the opposite side of the four side baffles 11 is fixedly connected to a connecting block 12. The bottom of the four connecting blocks 12 is fixedly connected to the top of the vibrating main plate 13 by bolts. The top of the vibrating main plate 13 is equipped with a vibrating movement device. The moving part 14 is equipped with four vibrating rods 15 at its moving end. The front and rear sides of the main vibrating plate 13 are fixedly connected with rails 16. The rails 16 are slidably connected to the moving part 14. The rails 16 guide the moving part 14 when it slides on the top of the main vibrating plate 13, ensuring the smooth movement of the moving part 14 and the moving rods 15, and improving the stability of the moving part 14. The four vibrating rods 15 are located in the inner cavity of the steel cage 2, and concrete is poured in the inner cavity of the rectangular mold 1.

[0027] Working principle: When using this utility model, the connecting locking ring 8 is hooked into the hook 7, and then the end of the connecting locking ring 8 away from the hook 7 is hooked onto the surface of the hook plate 9, so that the hook plate 9 fixes the cross plate 10. The cross plate 10 is fixed to the connecting block 12 through the side baffle 11, and then the connecting block 12 is fixed to the vibrating main plate 13 by bolts. At this time, the user adjusts the spacing of the vibrating moving part 14 at the top of the vibrating main plate 13 so that the vibrating rod 15 matches the spacing of the reinforcing cage 2. At the same time, the vibrating main plate 13 is fixedly installed at the bottom of the hook 7. By placing the reinforcing cage 2 into the inner cavity of the rectangular mold 1, Then, concrete is poured into the inner cavity of the rectangular mold 1. Next, the moving frame 3 is pushed to the front and rear sides of the rectangular mold 1. Then, the moving frame 3 drives the rotating component 5 to lower the lifting component 6 through the connecting frame 4. The lifting component 6 will drive the connecting locking ring 8 to lower through the hook 7. The connecting locking ring 8 will drive the cross plate 10 to lower. The cross plate 10 will drive the vibrator 15 to lower into the inner cavity of the rectangular mold 1 through the vibrating main plate 13. The vibrator 15 will penetrate into the bottom of the reinforcing cage. Finally, the vibrator 15 will vibrate the concrete in the inner cavity of the rectangular mold 1, so that the concrete can be evenly vibrated around the reinforcing cage 2.

[0028] In summary, this reinforced concrete vibrating device, by placing the reinforced cage 2 inside the rectangular mold 1 and pouring concrete into the inner cavity of the rectangular mold 1, uses the coordinated use of the moving frame 3, lifting component 6, and vibrating moving component 14 to move the vibrating rod 15 into the inner cavity of the rectangular mold 1 to vibrate the concrete inside the rectangular mold 1. This ensures that the concrete can fully enclose the reinforced cage 2, thereby ensuring that each layer of concrete is fully vibrated and avoiding insufficient vibration in the upper or lower layers. It can penetrate to the bottom of the reinforced cage and the concrete at various heights, so that the concrete is uniformly vibrated around the reinforced cage, ensuring a tight bond between the reinforced cage and the concrete.

Claims

1. A reinforced concrete cage vibrating device, characterized in that, The device includes a rectangular mold (1), in which a steel cage (2) is placed. Two symmetrical movable frames (3) are provided on the front and rear sides of the rectangular mold (1). A connecting frame (4) is fixedly connected to the top of the two movable frames (3). A rotating component (5) is installed at the central axis at the bottom of the connecting frame (4). A lifting component (6) is fixedly connected to the moving end of the rotating component (5). Four symmetrical connecting locking rings (8) are provided at the bottom of the lifting component (6). A cross plate (10) is provided at the bottom of the connecting locking ring (8) away from the lifting component (6). Side baffles (11) are fixedly connected to the four opposite sides of the cross plate (10). A vibrating main plate (13) is provided at the bottom of the four side baffles (11). A vibrating moving part (14) is installed on the top of the vibrating main plate (13). Four vibrating rods (15) are installed at the moving end of the vibrating moving part (14).

2. The reinforced concrete vibrating device according to claim 1, characterized in that, The bottom of the lifting assembly (6) is fixedly connected to two symmetrical hooks (7), and the inner cavities of the four connecting locking rings (8) are hooked to the top of the two hooks (7).

3. The reinforced concrete vibrating device according to claim 2, characterized in that, The four connecting locking rings (8) are fixedly connected to a hook plate (9) at one end away from the lifting assembly (6), and the four hook plates (9) are fixedly connected to the top of the cross plate (10).

4. The reinforced concrete vibrating device according to claim 3, characterized in that, Each of the four side baffles (11) has a connecting block (12) fixedly connected to the bottom of one of their opposite sides, and the bottom of each of the four connecting blocks (12) is fixedly connected to the top of the vibrating main board (13) by bolts.

5. A reinforced concrete vibrating device according to claim 4, characterized in that, The front and rear sides of the vibrating main board (13) are both fixedly connected with rails (16), and the rails (16) are slidably connected to the vibrating moving part (14).

6. A reinforced concrete cage vibrating device according to claim 5, characterized in that, The four vibrating rods (15) are located in the inner cavity of the reinforcing cage (2), and concrete is poured into the inner cavity of the rectangular mold (1).