Auxiliary feeding device for correction tape gear assembly
By designing an auxiliary feeding device, the problems of cumbersome mold plate disassembly and assembly and difficult part removal in the assembly of the correction belt gear were solved, realizing rapid installation, automated disassembly and part removal, and improving production efficiency.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-14
- Publication Date
- 2026-04-03
AI Technical Summary
In the current process of assembling correction belt gears, the disassembly and assembly steps of the assembly mold plate are cumbersome. After the gears are placed, excess parts need to be removed manually, which limits efficiency.
An auxiliary feeding device was designed, which includes a frame, a swing vibration mechanism and a clamping plate. By setting side baffles, front baffles, rear baffles and switch movable plates on the clamping plate, the mold plate can be quickly installed and limited. Excess parts are automatically scraped off by a scraper and the mold plate is automatically disassembled by an auxiliary pusher.
It enables rapid assembly and disassembly of mold plates and automated parts removal, improving assembly efficiency and reducing manual operation steps.
Smart Images

Figure CN224076492U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of stationery production equipment technology, and in particular to an auxiliary feeding device for assembling correction tape gears. Background Technology
[0002] After the various parts of the correction tape are manufactured, they still need to be assembled. The existing assembly method uses assembly mold plates to splice the parts in batches, and then stack the mold plates together to achieve the purpose of batch assembly. When placing the correction tape gears on the assembly mold plate, in order to save manpower and improve efficiency, a machine-assisted method is used. The assembly mold plate with several placement slots is placed on a swing vibration device and fixed. Then the gear parts are laid on the assembly mold plate, and the swing vibration device is started to automatically lay the gear parts in the placement slots through swing vibration. After that, the assembly mold plate is removed and the excess parts are moved to the next station for batch assembly. However, the process has problems such as cumbersome disassembly and assembly steps of the assembly mold plate and the need to manually remove excess gears after the gears are placed, which further limits the efficiency of placing gears on the assembly mold plate and urgently needs to be improved. Utility Model Content
[0003] To address the shortcomings of the aforementioned technologies, this utility model provides an auxiliary feeding device for assembling gears, comprising a frame, a swing vibration mechanism, and a clamping plate for clamping assembly mold plates. The swing vibration mechanism is mounted on the frame, and the clamping plate is connected to the swing vibration mechanism. The clamping plate includes a base and a pair of side baffles, a front baffle, a rear baffle, and a switch movable plate mounted on the base and connected to each other. The connection between the front baffle and the base has an opening for the assembly mold plate to pass through during assembly and disassembly. A pair of switch slide grooves are symmetrically provided on the pair of side baffles near their connection with the front baffle. Both sides of the switch movable plate are provided with connecting round posts that match the switch slide grooves. The switch movable plate is movably connected to the pair of switch slide grooves through the connecting round posts. A locking groove with a shape and size matching the switch movable plate is provided on the base below the switch slide grooves.
[0004] By adopting the above technical solution, a pair of side baffles, a front baffle, a rear baffle, and a switch movable plate are set on the clamping plate, and a through hole is set on the front baffle. When the assembly mold plate is installed on the clamping plate, simply open the switch movable plate, align the assembly mold plate with the through hole, and push it in. After the assembly mold plate is fully pushed in, turn the switch movable plate down and insert it into the locking groove to complete the installation and limiting of the assembly mold plate, thus realizing the quick installation and removal of the installation mold plate on the clamping plate.
[0005] A further feature of this invention is that an L-shaped extension plate is fixedly connected to the end of the tail baffle, and a telescopic cavity is formed between the L-shaped extension plate, a pair of side baffles, and the base. An auxiliary push plate is connected to the telescopic cavity by a compression spring, and a fixing plate is provided on the base at the opening of the telescopic cavity.
[0006] By adopting the above technical solution, since an L-shaped extension plate is fixedly connected to the end of the tail baffle, a telescopic cavity is formed between the L-shaped extension plate, a pair of side baffles and the base. An auxiliary push plate is connected to the telescopic cavity by a compression spring. A fixing plate is provided on the base at the opening of the telescopic cavity. When the assembly mold plate is removed after the parts are laid, simply pull up and release the switch movable plate. The auxiliary push plate will automatically push out the assembly mold plate under the action of the compression spring, which further facilitates the disassembly of the assembly mold plate.
[0007] A further feature of this invention is that a scraper is provided on the pair of side baffles near the opening, and a material discharge port is provided on the base between the pair of side baffles, the front baffle, and the rear baffle.
[0008] By adopting the above technical solution, since a scraper is provided on the pair of side baffles near the opening, and a material discharge port is opened on the base between the pair of side baffles, the front baffle and the rear baffle, when the assembly mold plate is taken out, the scraper will scrape off the excess parts from the assembly mold plate. The excess parts can then fall back onto the frame through the material discharge port, eliminating the step of manually removing excess parts from the assembly mold plate and further improving efficiency.
[0009] A further feature of this invention is that a handle for convenient operation is fixedly provided on the switch movable plate.
[0010] By adopting the above technical solution, since a handle for easy operation is fixedly provided on the switch movable plate, the disassembly and disassembly of the mounting box is more convenient. Attached Figure Description
[0011] Appendix Figure 1 This is a schematic diagram of the structure of an auxiliary feeding device for assembling a correction belt gear, according to a specific embodiment of the present utility model.
[0012] Appendix Figure 2 This is a partially enlarged structural diagram of an auxiliary feeding device for assembling a correction belt gear, according to a specific embodiment of this utility model.
[0013] Appendix Figure 3 This is a partially exploded structural diagram of an auxiliary feeding device for assembling a correction belt gear, according to a specific embodiment of this utility model.
[0014] 1-Frame, 2-Swing vibration mechanism, 3-Clamping plate, 4-Base, 5-Side baffle, 6-Front baffle, 7-Tail baffle, 8-Switch movable plate, 9-Passway, 10-Switch slide, 11-Connecting round post, 12-Locking groove, 13-L-shaped extension plate, 14-Telescopic cavity, 15-Compression spring, 16-Auxiliary push plate, 17-Fixing plate, 18-Scraper, 19-Discharge port, 20-Handle, 21-Assembly mold plate. Detailed Implementation
[0015] like Figure 1-3 As shown, an auxiliary feeding device for assembling a correction belt gear includes a frame 1, a swing vibration mechanism 2, and a clamping plate 3 for clamping the assembly mold plate. The swing vibration mechanism is mounted on the frame, and the clamping plate is connected to the swing vibration mechanism. The clamping plate includes a base 4 and a pair of side baffles 5, a front baffle 6, a rear baffle 7, and a switch movable plate 8, which are mounted on the base and connected to each other. The connection between the front baffle and the base has an opening 9 for the assembly mold plate to pass through during assembly and disassembly. A pair of switch slide grooves 10 are symmetrically opened on the pair of side baffles near the connection with the front baffle. Both sides of the switch movable plate are provided with connecting round posts 11 that match the switch slide grooves. The switch movable plate is movably connected to the pair of switch slide grooves through the connecting round posts. A locking groove 12 with a shape and size matching the switch movable plate is provided on the base below the switch slide groove.
[0016] By setting a pair of side baffles, a front baffle, a rear baffle, and a switch movable plate on the clamping plate, and setting a through hole on the front baffle, when installing the assembly mold plate 21 on the clamping plate, simply open the switch movable plate, align the assembly mold plate with the through hole, and push it in. After the assembly mold plate is fully pushed in, turn the switch movable plate down and insert it into the locking groove to complete the installation and limiting of the assembly mold plate, thus realizing the quick installation and removal of the installation mold plate on the clamping plate.
[0017] An L-shaped extension plate 13 is fixedly connected to the end of the tail baffle. A telescopic cavity 14 is formed between the L-shaped extension plate, a pair of side baffles, and the base. An auxiliary push plate 16 is connected to the telescopic cavity through a compression spring 15. A fixing plate 17 is provided on the base at the opening of the telescopic cavity.
[0018] Because an L-shaped extension plate is fixedly connected to the end of the tail baffle, a telescopic cavity is formed between the L-shaped extension plate, a pair of side baffles, and the base. An auxiliary push plate is connected to the telescopic cavity by a compression spring. A fixing plate is provided on the base at the opening of the telescopic cavity. When the assembly mold plate is removed after the parts are laid out, simply pull up and release the switch movable plate. The auxiliary push plate will automatically push out the assembly mold plate under the action of the compression spring, which further facilitates the disassembly of the assembly mold plate.
[0019] A scraper 18 is provided on the pair of side baffles near the opening, and a material discharge port 19 is opened on the base between the pair of side baffles, the front baffle and the rear baffle.
[0020] Because a scraper is provided on the pair of side baffles near the opening, and a discharge port is opened on the base between the pair of side baffles, the front baffle and the rear baffle, when the assembly mold plate is taken out, the scraper will scrape off the excess parts from the assembly mold plate. The excess parts can then fall back onto the frame through the discharge port, eliminating the need for manual removal of excess parts from the assembly mold plate and further improving efficiency.
[0021] A handle 20 for easy operation is fixedly provided on the switch movable plate.
[0022] The switch's movable plate is equipped with a handle for easy operation, making the disassembly and removal of the mounting box more convenient.
Claims
1. An auxiliary feeding device for assembling a correction belt gear, comprising a frame, a rocking vibration mechanism, and a clamping plate for clamping the assembly mold plate, wherein the rocking vibration mechanism is mounted on the frame, and the clamping plate is connected to the rocking vibration mechanism, characterized in that: The clamping plate includes a base and a pair of side baffles, a front baffle, a rear baffle, and a switch movable plate that are disposed on the base and connected to each other. The connection between the front baffle and the base has an opening for the assembly and disassembly of the mold plate. The pair of side baffles have a pair of switch slide grooves symmetrically arranged near the connection with the front baffle. Both sides of the switch movable plate are provided with connecting round posts that match the switch slide grooves. The switch movable plate is movably connected to the pair of switch slide grooves through the connecting round posts. The base has a locking groove with a shape and size that matches the switch movable plate at a position below the switch slide groove.
2. The auxiliary feeding device for assembling a correction belt gear according to claim 1, characterized in that: An L-shaped extension plate is fixedly connected to the end of the tail baffle. The L-shaped extension plate, a pair of side baffles, and the base form a telescopic cavity. An auxiliary push plate is connected to the telescopic cavity by a compression spring. A fixing plate is provided on the base at the opening of the telescopic cavity.
3. The auxiliary feeding device for assembling a correction belt gear according to claim 1, characterized in that: A scraper is provided on the pair of side baffles near the opening, and a material discharge port is opened on the base between the pair of side baffles, the front baffle and the rear baffle.
4. The auxiliary feeding device for assembling a correction belt gear according to claim 1, characterized in that: A handle for easy operation is fixedly provided on the switch movable plate.