Automatic feeding turning plate type rapid assembling platform

The automatic feeding flip-type rapid assembly platform realizes automatic positioning and multi-angle flipping of workpieces, solving the problems of low efficiency and poor accuracy in the traditional workpiece assembly process, and improving production efficiency and equipment versatility.

CN224074335UActive Publication Date: 2026-04-03NINGBO WUYUN PEN MFG
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Patent Information

Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-05-09
Publication Date
2026-04-03

AI Technical Summary

Technical Problem

In traditional workpiece assembly processes, relying on manual adjustment of position and fixture fixation is inefficient, results in inconsistent positioning and poor accuracy, and makes it difficult to adapt to workpieces of different sizes and types, leading to low production efficiency and increased costs.

Method used

An automatic feeding flip-type rapid assembly platform was designed, which adopts components such as positioning plate, adjustment plate, lifting mechanism, telescopic mechanism and clamping plate. Through hydraulic rod and motor control, it realizes automatic positioning, clamping and multi-angle flipping of workpieces, and adapts to different workpiece sizes and types.

Benefits of technology

It improves the accuracy and stability of workpiece positioning and flipping, simplifies the operation process, reduces the skill requirements for operators, enhances the versatility and production efficiency of the equipment, and reduces costs.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of assembling platforms, in particular to an automatic feeding turning plate type rapid assembling platform which comprises a positioning plate and an adjusting plate, a lifting mechanism is arranged at the bottom end of the adjusting plate, connecting frames are arranged at the two ends of one side of the adjusting plate, bearing seats are arranged between the connecting frames and the positioning plate, and the bearing seats are connected with the adjusting plate. A positioning plate is arranged at the top end of the platform, a connecting frame is arranged at the top end of the positioning plate, an adjusting motor is arranged between one connecting frame and the positioning plate, telescopic mechanisms are arranged on the two sides of the top end of the positioning plate, a mounting plate is arranged at the output ends of the telescopic mechanisms, and a clamping plate is arranged on one side of the mounting plate. The whole operation process is greatly simplified, the distance between the positioning blocks can be flexibly adjusted according to different sizes of workpieces, the assembling platform is suitable for processing the workpieces of various types and specifications, the universality of equipment is enhanced, and the production cost is reduced.
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Description

Technical Field

[0001] This utility model relates to the field of assembly platform technology, specifically an automatic feeding flip-type rapid assembly platform. Background Technology

[0002] As is well known, in traditional workpiece assembly processes, workpieces need to be clamped and rotated to facilitate assembly. This typically requires operators to manually adjust the workpiece's position and use fixtures for fixation. This method is not only inefficient, but also difficult to guarantee consistency and accuracy in positioning and clamping due to human factors. This process becomes even more time-consuming and error-prone, especially when handling workpieces with complex shapes or large dimensions. For some workpieces requiring assembly at specific angles, traditional methods often rely on manual measurement and adjustment, which is neither accurate nor efficient. Furthermore, without proper fixing measures, the workpiece can easily shift when rotating to achieve the required angle, leading to assembly failure or quality degradation. Different sizes and types of workpieces require different fixtures and equipment for processing, meaning companies need to prepare specialized tools for each type of workpiece, increasing costs and management complexity. At the same time, changing workpiece types requires time to adjust equipment, further reducing production efficiency. Therefore, it is necessary to propose solutions to this technical problem. Utility Model Content

[0003] (a) Technical problems to be solved

[0004] To address the shortcomings of existing technologies, this utility model provides an automatic feeding and flip-type rapid assembly platform.

[0005] (II) Technical Solution

[0006] To achieve the above objectives, this utility model provides the following technical solution: an automatic feeding flip-type rapid assembly platform, comprising a positioning plate and an adjusting plate. The bottom end of the adjusting plate is provided with a lifting mechanism, and both ends of one side of the adjusting plate are provided with connecting frames. A bearing seat is provided between the connecting frame and the positioning plate. An adjusting motor is provided between the connecting frame and the positioning plate. Telescopic mechanisms are provided on both sides of the top end of the positioning plate. A mounting plate is provided at the output end of the telescopic mechanism. A clamping plate is provided on one side of the mounting plate. An adjusting groove is formed inside the clamping plate, and an installation groove is formed between the adjusting groove and the interior of the mounting plate. A bidirectional lead screw is provided between the adjusting groove and one end of the clamping plate. A slot is formed between both ends of the adjusting groove and one side of the clamping plate. A positioning block is provided between the slot and the adjusting groove. A threaded hole is formed on the positioning block. The bidirectional lead screw passes through the threaded hole. A fastening hole is formed between the mounting groove and one end of the mounting plate. A fastening post is provided on the fastening hole. An elastic component is provided between the fastening post and the mounting groove. A toothed block is provided at one end of the fastening post. A gear is provided on the bidirectional lead screw. The toothed block meshes with the gear. A guide mechanism is provided between the positioning plate and the two mounting plates.

[0007] Furthermore, the present invention is improved in that the lifting mechanism includes a lifting frame, and a lifting device and a sliding rod mechanism are provided between the lifting frame and the adjusting plate.

[0008] Furthermore, the present invention is improved in that the sliding rod mechanism includes a support column and a support rod, the support column is installed on the lifting frame, the top end of the support column is provided with a support hole, and the support rod is installed at the bottom end of the adjusting plate and extends into the support hole.

[0009] Furthermore, the present invention is improved in that the guiding mechanism includes a guide groove and a guide block, the guide groove is formed at the top of the positioning plate, and the guide block is installed at the top of the mounting plate and located in the guide groove.

[0010] Furthermore, the present invention is improved in that both the guide groove and the guide block are T-shaped structures.

[0011] Furthermore, the present invention is improved in that the sliding rod mechanism is provided in two parts and arranged symmetrically.

[0012] Furthermore, an improvement of this utility model is that a sealed bearing is provided between the bidirectional lead screw and the adjusting groove.

[0013] Furthermore, an improvement of this utility model is that both the telescopic mechanism and the lifting device are hydraulic rods.

[0014] (III) Beneficial Effects

[0015] Compared with the prior art, this utility model provides an automatic feeding flip-type rapid assembly platform, which has the following beneficial effects:

[0016] This automatic feeding flip-type rapid assembly platform allows for easy adjustment of the positioning blocks by pulling the fastening column. The bidirectional lead screw enables the two positioning blocks to move in opposite directions according to the workpiece size, quickly adapting to workpieces of different sizes. This reduces the time required for traditional manual adjustments and significantly improves efficiency during the assembly preparation stage. After the positioning blocks are close to both sides of the workpiece, releasing the fastening column causes the elastic component to automatically reset, engaging the gear and locking the position of the bidirectional lead screw. This ensures that the workpiece will not shift due to external forces during subsequent processing. This design is particularly suitable for applications requiring high-precision operation and multi-angle flipping, effectively guaranteeing workpiece stability and positional accuracy. This structure allows for the completion of workpiece positioning, clamping, angle adjustment, and feeding all on a single platform. Comprehensive control of the workpiece can be achieved simply by controlling the telescopic mechanism and adjusting the motor, greatly simplifying the entire operation process and reducing the skill requirements for operators. Because the distance between the positioning blocks can be flexibly adjusted according to different workpiece sizes, the assembly platform is suitable for handling various types and specifications of workpieces, enhancing the equipment's versatility and reducing production costs. Attached Figure Description

[0017] Figure 1 This is a schematic diagram of the structure of the present utility model. Figure 1 ;

[0018] Figure 2 This is a schematic diagram of the structure of the present utility model. Figure 2 ;

[0019] Figure 3 This is a front half-sectional view of the structure of this utility model;

[0020] Figure 4 This utility model Figure 1 A partially enlarged top view of the central positioning plate.

[0021] In the diagram: 1. Positioning plate; 2. Adjusting plate; 3. Connecting frame; 4. Bearing seat; 5. Adjusting motor; 6. Telescopic mechanism; 7. Mounting plate; 8. Clamping plate; 9. Two-way lead screw; 10. Positioning block; 11. Fastening column; 12. Elastic component; 13. Tooth block; 14. Gear; 15. Lifting frame; 16. Lifting device; 17. Support column; 18. Support rod; 19. Guide groove; 20. Guide block; 21. Sealed bearing. Detailed Implementation

[0022] The technical solutions of the present utility model will be clearly and completely described below with reference to the accompanying drawings of the embodiments. Obviously, the described embodiments are only some embodiments of the present utility model, and not all embodiments. Based on the embodiments of the present utility model, all other embodiments obtained by those of ordinary skill in the art without creative effort are within the protection scope of the present utility model.

[0023] Please see Figure 1-4This utility model relates to an automatic feeding flip-type rapid assembly platform, comprising a positioning plate 1 and an adjusting plate 2. The bottom of the adjusting plate 2 is equipped with a lifting mechanism. Connecting frames 3 are located at both ends of one side of the adjusting plate 2. A bearing seat 4 is provided between the connecting frame 3 and the positioning plate 1. An adjusting motor 5 is provided between one connecting frame 3 and the positioning plate 1. Telescopic mechanisms 6 are located on both sides of the top of the positioning plate 1. A mounting plate 7 is located at the output end of the telescopic mechanism 6. A clamping plate 8 is located on one side of the mounting plate 7. An adjusting groove is formed inside the clamping plate 8. An installation groove is formed between the adjusting groove and the interior of the mounting plate 7. A bidirectional lead screw 9 is provided between the adjusting groove and one end of the clamping plate 8. The two ends of the adjusting groove are connected to the clamping plate 8. A slot is formed between one side of the plate 8. A positioning block 10 is provided between the slot and the adjustment slot. A threaded hole is formed on the positioning block 10, and the bidirectional lead screw 9 passes through the threaded hole. A fastening hole is formed between the mounting slot and one end of the mounting plate 7. A fastening post 11 is provided on the fastening hole. An elastic component 12 is provided between the fastening post 11 and the mounting slot. A toothed block 13 is provided at one end of the fastening post 11. A gear 14 is provided on the bidirectional lead screw 9. The toothed block 13 meshes with the gear 14. A guide mechanism is provided between the positioning plate 1 and the two mounting plates 7. In this embodiment, by pulling the fastening post 11, the fastening post 11 moves the toothed block 13 and one end of the elastic component 12 in the fastening hole. When the elastic component 12 is stretched and deformed by the tensile force of the fastening column 11, the toothed block 13 disengages from the gear 14. Then, the double-acting screw 9 is rotated, causing the positioning blocks 10 on the two slots on one side of the adjusting groove to move linearly in opposite directions through the threaded holes. This moves the two positioning blocks 10 to a position close to both sides of the workpiece, tightly fitting the positioning blocks 10 against the sides of the workpiece. To prevent displacement of the workpiece during subsequent flipping, the fastening column 11 is loosened. The elastic restoring force of the elastic component 12 pulls the fastening column 11 back to its original position, causing the toothed block 13 to mesh against the gear 14, thus locking the double-acting screw 9 to prevent angular displacement. This ensures that the position of the two positioning blocks 10 facilitates the placement of the workpiece to be assembled between the two clamping plates 8. The workpiece will not shift due to the positioning block 10. Then, by controlling the output ends of the two telescopic mechanisms 6 to move the mounting plate 7 linearly, the clamping plates 8 of the two mounting plates 7 can be brought closer to each other, thereby clamping the workpiece. Then, by using the adjusting motor 5, the positioning plate 1 can be stably rotated by the two connecting frames 3 of the adjusting plate 2 and the bearing seat 4, which facilitates the adjustment of the workpiece angle. Then, by using the lifting mechanism to adjust the height, the workpiece can be loaded, which facilitates the alignment of the workpiece with the assembled parts and allows personnel to quickly assemble the parts using other components. The distance between the two positioning blocks 10 can be adjusted according to the different sizes of the workpiece, which can improve the placement stability of the workpiece during subsequent clamping and rotation.

[0024] In this solution, the lifting mechanism includes a lifting frame 15, and a lifting device 16 and a sliding rod mechanism are provided between the lifting frame 15 and the adjusting plate 2. The lifting frame 15 is installed at a designated position, and the lifting device 16 can drive the adjusting plate 2 to move up and down. The sliding rod mechanism can improve the stability of the adjusting plate 2 when it moves up and down, making it easier to adjust the height position of the workpiece and to carry out the loading operation stably and reliably.

[0025] In this solution, the sliding rod mechanism includes a support column 17 and a support rod 18. The support column 17 is mounted on the lifting frame 15, and a support hole is provided at the top of the support column 17. The support rod 18 is mounted on the bottom of the adjusting plate 2 and extends into the support hole. When the adjusting plate 2 moves up and down, it drives the support rod 18 to move up and down stably in the support hole, thereby improving the stability of the adjusting plate 2 and improving the stability and reliability of the feeding.

[0026] In this solution, the guiding mechanism includes a guide groove 19 and a guide block 20. The guide groove 19 is formed at the top of the positioning plate 1, and the guide block 20 is installed at the top of the mounting plate 7 and located in the guide groove 19. When the mounting plate 7 moves, it drives the guide block 20 to move. The guide block 20 moves linearly in the guide groove 19, thereby improving the linear movement stability of the mounting plate 7.

[0027] In this design, both the guide groove 19 and the guide block 20 are T-shaped structures. The T-shaped guide groove 19 and guide block 20 can improve the sliding stability of the guide block 20 in the guide groove 19.

[0028] In this scheme, there are two slide rod mechanisms arranged symmetrically, which can further improve the linear lifting and lowering stability of the adjusting plate 2.

[0029] In this design, a sealed bearing 21 is provided between the bidirectional lead screw 9 and the adjusting groove, which can improve the rotational stability of the bidirectional lead screw 9.

[0030] In this solution, both the telescopic mechanism 6 and the lifting device 16 are hydraulic rods. Hydraulic rods have the characteristic of high movement accuracy, which can improve the movement accuracy and stability of the telescopic mechanism 6 and the lifting device 16.

[0031] Although embodiments of the present invention have been shown and described, it will be understood by those skilled in the art that various changes, modifications, substitutions and alterations can be made to these embodiments without departing from the principles and spirit of the present invention, the scope of which is defined by the appended claims and their equivalents.

Claims

1. An automatic feeding and flipping plate type rapid assembly platform, comprising a positioning plate (1) and an adjusting plate (2), the bottom end of the adjusting plate (2) is provided with a lifting mechanism, characterized in that, One side of the adjusting plate (2) is provided with connecting frames (3), bearing seats (4) are arranged between the connecting frames (3) and the positioning plate (1), an adjusting motor (5) is arranged between one of the connecting frames (3) and the positioning plate (1), telescopic mechanisms (6) are arranged at the top of the positioning plate (1), mounting plates (7) are arranged at the output ends of the telescopic mechanisms (6), clamping plates (8) are arranged on one side of the mounting plates (7), adjusting grooves are arranged in the clamping plates (8), mounting grooves are arranged between the adjusting grooves and the mounting plates (7), bidirectional screw rods (9) are arranged between the adjusting grooves and one end of the clamping plates (8), grooves are arranged between the two ends of the adjusting grooves and one side of the clamping plates (8), positioning blocks (10) are arranged between the grooves and the adjusting grooves, threaded holes are arranged in the positioning blocks (10), the bidirectional screw rods (9) pass through the threaded holes, fastening holes are arranged between the mounting grooves and one end of the mounting plates (7), fastening columns (11) are arranged in the fastening holes, elastic members (12) are arranged between the fastening columns (11) and the mounting grooves, tooth blocks (13) are arranged at one end of the fastening columns (11), gears (14) are arranged on the bidirectional screw rods (9), the tooth blocks (13) are engaged with the gears (14), and guide mechanisms are arranged between the positioning plate (1) and the two mounting plates (7).

2. The automatic feeding and flipping platform of claim 1, wherein, The lifting mechanism comprises lifting frames (15), lifting devices (16) and slide rod mechanisms arranged between the lifting frames (15) and the adjusting plate (2).

3. The automatic feeding and flipping platform of claim 2, wherein, The slide rod mechanism comprises support columns (17) and support rods (18), the support columns (17) are mounted on the lifting frames (15), support holes are arranged at the top ends of the support columns (17), and the support rods (18) are mounted at the bottom ends of the adjusting plate (2) and extend into the support holes.

4. The automatic feeding and flipping platform of claim 3, wherein, The guide mechanism comprises guide grooves (19) and guide blocks (20), the guide grooves (19) are arranged at the top ends of the positioning plate (1), and the guide blocks (20) are mounted at the top ends of the mounting plates (7) and located in the guide grooves (19).

5. The automatic feeding and flipping platform of claim 4, wherein, The guide grooves (19) and the guide blocks (20) are both in T-shaped structures.

6. The automatic feeding and flipping platform of claim 5, wherein, The slide rod mechanism comprises two symmetrical slide rod mechanisms.

7. The automatic feeding and flipping platform of claim 6, wherein, The bidirectional screw rods (9) are provided with sealing type bearings (21).

8. The automatic feeding and flipping platform of claim 7, wherein, The telescopic mechanisms (6) and the lifting devices (16) are both hydraulic rods.