Positioning mechanism for online transmission

By designing an online transmission and positioning mechanism, the lifting and positioning components are used to achieve accurate product positioning and surface cleaning, solving the problem of misaligned sheet material caused by inaccurate positioning of the transmission mechanism and improving the protection effect.

CN223888557UActive Publication Date: 2026-02-10CHONGQING YUHAI TECH CO LTD
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Patent Information

Application Number
CN202520181615.2
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-02-05
Publication Date
2026-02-10
Estimated Expiration
2035-02-05

AI Technical Summary

Technical Problem

The existing transmission mechanism cannot accurately position the product when it reaches the preset position, which causes deviations when the protective film is applied and affects the protective effect.

Method used

Design an online transmission positioning mechanism, including a transmission component, a lifting component, a front-end positioning and pushing component, a rear-end positioning block, a left-end positioning block, and a right-end positioning and pushing component. The lifting component drives these components to move up and down, and the front-end and left-end positioning and pushing components are combined to achieve accurate positioning of the product. A dust cleaning component is also provided to remove surface impurities.

Benefits of technology

It achieves accurate product positioning, avoids deviations during sheet application, improves the adhesion of the protective film, and removes dust and large particles from the product surface, thus enhancing the protective effect.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to the technical field of positioning, and discloses an online transmission positioning mechanism which comprises a transmission assembly, a lifting assembly, a front end positioning pushing assembly, a rear end positioning block, a left end positioning block, a right end positioning pushing assembly and a dust cleaning assembly. By the adoption of the structure, after a preset positioning position is reached, a product can be pushed to the rear-end positioning block through the front-end positioning pushing assembly for front-back positioning, the product can be pushed to the left-end positioning block through the right-end positioning pushing assembly for left-right positioning, accurate positioning of the product is achieved, sheet materials are effectively prevented from being obliquely attached in the attaching process, and the product quality is improved. Therefore, the protection effect of the sheet stock is guaranteed; and then the surface of the product is cleaned through the dust cleaning assembly, so that dust or large-particle impurities on the surface of the product are removed, the attaching effect of the sheet materials is improved, and direct damage of the dust or the large-particle impurities to the product is avoided.
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Description

Technical Field

[0001] This utility model relates to the field of positioning technology, specifically to an online transmission positioning mechanism. Background Technology

[0002] After manufacturing, some laptop components require the application of protective films to prevent scratches and dust during subsequent transportation, thus achieving the desired protection. The protective films are cut to size according to the specific product, and large quantities of films of the same size are stacked for easy access and application to the product by the appropriate equipment. Products are typically transported via conveyor belts or chain conveyors to the application station. To reduce equipment and labor costs, products are often placed directly onto the conveyor. However, with some existing conveyor systems, accurate product positioning during film application cannot be guaranteed, leading to misalignment and reduced protective effectiveness. Utility Model Content

[0003] This utility model mainly provides an online transmission positioning mechanism to solve the problem that when using some existing transmission mechanisms, the product cannot be positioned accurately when it reaches the preset position and the protective film is applied, which leads to misalignment and reduced protection effect.

[0004] To solve the above-mentioned technical problems, the present invention adopts the following technical solution:

[0005] A positioning mechanism for online transmission includes a transmission component, a lifting component, a front-end positioning and pushing component, a rear-end positioning block, a left-end positioning block, and a right-end positioning and pushing component. Multiple transmission components are arranged in a straight line. The lifting component is positioned below the transmission components. The front-end positioning and pushing component is positioned at the front end of the lifting component, corresponding to the middle gap of the transmission components. The rear-end positioning block is positioned at the rear end of the lifting component, corresponding to the middle gap of the transmission components. The left-end positioning block is positioned on the left side of the lifting component, corresponding to the left-side gap of the transmission components. The right-end positioning and pushing component is positioned on the right side of the lifting component, corresponding to the outer side of the transmission components. A dust cleaning component for the upper surface of the product is provided on either side of the lifting component, corresponding to the outer side of the transmission components. The linear arrangement of the transmission components allows for the formation of multiple attachment stations. The transmission components can be positioned at the end of a traditional transmission mechanism for product transfer. Furthermore, the transmission components have gaps that accommodate the lifting components and other parts, allowing the corresponding parts to move up and down within these gaps. Using the structure of this application, the lifting component can drive the front positioning push component, rear positioning block, left positioning block, right positioning push component, and dust cleaning component to move up and down to the preset positioning position. After reaching the preset positioning position, the front positioning push component can push the product to the rear positioning block for front-to-back positioning, and the right positioning push component can push the product to the left positioning block for left-to-right positioning, achieving accurate positioning of the product and effectively preventing the sheet material from being misaligned during application, thus ensuring the protective effect of the sheet material. Then, the dust cleaning component cleans the surface of the product, thereby removing dust or large particles of impurities from the product surface, improving the adhesion effect of the sheet material, and preventing dust or large particles of impurities from directly damaging the product.

[0006] Furthermore, the lifting assembly includes a mounting platform fixed to the frame, a lifting cylinder disposed on the lower side of the mounting platform, and a lifting plate disposed at the output end of the lifting cylinder; a first lifting platform is disposed on the lifting plate corresponding to the left gap of the transmission assembly, a middle lifting platform is disposed corresponding to the middle gap of the transmission assembly, and a second lifting platform is disposed corresponding to the right gap of the transmission assembly; a left-end positioning block is disposed on the first lifting platform, a right-end positioning and pushing assembly is disposed on the right end of the lifting plate, a dust cleaning assembly is disposed on the left end of the lifting plate, and both the front-end positioning and pushing assembly and the rear-end positioning block are disposed on the middle lifting platform; a lifting guide rod is disposed on the lower side of the lifting plate, and a lifting guide sleeve that cooperates with the lifting guide rod is disposed on the mounting platform. In this application, the mounting platform and the support for the transmission assembly are mounted on any existing support platform. This structure allows the lifting plate to move up and down via a lifting cylinder, which in turn moves the first lifting platform, the middle lifting platform, and the second lifting platform, along with their corresponding components, up and down within the left, middle, and right gaps on the transmission assembly. This allows the components to position the product, while the lifting guide sleeve and lifting guide rod enhance the overall stability of the structure and ensure accurate positioning of each component.

[0007] Furthermore, the front-end positioning and pushing component includes a front-end cylinder mounted on the intermediate lifting platform, with a front-end positioning block at the output end of the front-end cylinder; the right-end positioning and pushing component includes a right-end support frame mounted on the right end of the lifting plate, with a right-end cylinder mounted on the right-end support frame, and a right-end positioning block at the output end of the right-end cylinder. In use, the front-end cylinder can drive the front-end positioning block to move, and the right-end cylinder can drive the right-end positioning block to move; the overall structure is simple and practical.

[0008] Furthermore, the dust cleaning assembly includes a left-end support frame located at the left end of the lifting plate, a left-end cylinder mounted on the left-end support frame, and a cleaning brush mounted on the left-end cylinder. A cleaning guide rod is mounted on the outer side of the cleaning brush, and a left-end guide sleeve that cooperates with the cleaning guide rod is mounted on the left-end support frame. The lower side of the cleaning brush body is higher than the upper surface of the left-end positioning block. With this structure, the cleaning brush can be moved by the left-end cylinder, thereby cleaning the surface of the product using the cleaning brush. The cleaning guide rod makes the brush body structure more stable.

[0009] Furthermore, a limit block is provided at the lower end of the lifting guide rod. This structure allows for the lower end of the lifting guide rod to be limited, preventing it from rising too high.

[0010] Beneficial effects: The structure of this application enables the lifting component to move the front-end positioning push component, rear-end positioning block, left-end positioning block, right-end positioning push component, and dust cleaning component vertically to a preset positioning position. After reaching the preset positioning position, the front-end positioning push component pushes the product to the rear-end positioning block for front-back positioning, and the right-end positioning push component pushes the product to the left-end positioning block for left-right positioning, achieving accurate product positioning and effectively preventing the sheet material from being misaligned during application, thus ensuring the protective effect of the sheet material. Then, the dust cleaning component cleans the surface of the product, removing dust or large particles of impurities, improving the adhesion effect of the sheet material, and preventing direct damage to the product from dust or large particles of impurities. Attached Figure Description

[0011] Figure 1 This is a slanted view of a single transmission component in this embodiment;

[0012] Figure 2 This is a side view of the transmission component in this embodiment;

[0013] Figure 3 This is a top view schematic diagram of the transmission component in this embodiment.

[0014] Reference numerals: 1. Transmission component; 2. Rear end positioning block; 3. Left end positioning block; 4. Mounting platform; 5. Lifting cylinder; 6. Lifting plate; 7. First lifting platform; 8. Middle lifting platform; 9. Second lifting platform; 10. Lifting guide rod; 11. Lifting guide sleeve; 12. Front end cylinder; 13. Front end positioning block; 14. Right end cylinder; 15. Right end positioning block; 16. Left end support frame; 17. Left end cylinder; 18. Cleaning brush; 19. Cleaning guide rod; 20. Limiting block. Detailed Implementation

[0015] The following will provide a more detailed description of the online transmission positioning mechanism technical solution of this utility model in conjunction with the embodiments.

[0016] In the description of this utility model, it should be noted that, unless otherwise explicitly specified and limited, the terms "installation," "connection," and "joining" should be interpreted broadly. For example, they can refer to a fixed connection, a detachable connection, or an integral connection; they can refer to a mechanical connection or an electrical connection; they can refer to a direct connection or an indirect connection through an intermediate medium; and they can refer to the internal connection of two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model based on the specific circumstances.

[0017] like Figure 1 , Figure 2 , Figure 3As shown, this embodiment includes a transmission component 1, a lifting component, a front-end positioning and pushing component, a rear-end positioning block 2, a left-end positioning block 3, and a right-end positioning and pushing component; the multiple transmission components 1 are arranged in a straight line, the lifting component is disposed below the transmission component 1, the front-end positioning and pushing component is disposed at the front end of the lifting component corresponding to the middle gap of the transmission component 1, the rear-end positioning block 2 is disposed at the rear end of the lifting component corresponding to the middle gap of the transmission component 1, the left-end positioning block 3 is disposed at the left side of the lifting component corresponding to the left side gap of the transmission component 1, and the right-end positioning and pushing component is disposed at the right side of the lifting component corresponding to the outer side of the transmission component 1; and a dust cleaning component for the upper surface of the product is disposed on either the left or right side of the lifting component corresponding to the outer side of the transmission component 1. The lifting assembly includes a mounting platform 4 fixed on the frame, a lifting cylinder 5 disposed on the lower side of the mounting platform 4, and a lifting plate 6 disposed at the output end of the lifting cylinder 5; a first lifting platform 7 disposed on the lifting plate 6 corresponding to the left gap of the transmission assembly 1, a middle lifting platform 8 disposed corresponding to the middle gap of the transmission assembly 1, and a second lifting platform 9 disposed corresponding to the right gap of the transmission assembly 1; a left-end positioning block 3 disposed on the first lifting platform 7, a right-end positioning and pushing assembly disposed on the right end of the lifting plate 6, a dust cleaning assembly disposed on the left end of the lifting plate 6, and a front-end positioning and pushing assembly and a rear-end positioning block 2 disposed on the middle lifting platform 8; a lifting guide rod 10 disposed on the lower side of the lifting plate 6, and a lifting guide sleeve 11 disposed on the mounting platform 4 to cooperate with the lifting guide rod 10. The front-end positioning and pushing assembly includes a front-end cylinder 12 mounted on the intermediate lifting platform 8, with a front-end positioning block 13 at the output end of the front-end cylinder 12. The right-end positioning and pushing assembly includes a right-end support frame mounted on the right end of the lifting plate 6, with a right-end cylinder 14 mounted on the right-end support frame, and a right-end positioning block 15 at the output end of the right-end cylinder 14. The dust cleaning assembly includes a left-end support frame 16 mounted on the left end of the lifting plate 6, with a left-end cylinder 17 mounted on the left-end support frame 16, and a cleaning brush 18 mounted on the left-end cylinder 17. A cleaning guide rod 19 is mounted on the outer side of the cleaning brush 18, and a left-end guide sleeve that cooperates with the cleaning guide rod 19 is mounted on the left-end support frame 16. The lower side of the brush body of the cleaning brush 18 is higher than the upper surface of the left-end positioning block 3. A limit block 20 is provided at the lower end of the lifting guide rod 10.Using the structure of this application, the lifting component can drive the front-end positioning push component, rear-end positioning block 2, left-end positioning block 3, right-end positioning push component, and dust cleaning component to move up and down to the preset positioning position. After reaching the preset positioning position, the front-end positioning push component can push the product to the rear-end positioning block 2 for front-back positioning, and the right-end positioning push component can push the product to the left-end positioning block 3 for left-right positioning, achieving accurate positioning of the product and effectively preventing the sheet material from being misaligned during application, thus ensuring the protective effect of the sheet material. Then, the dust cleaning component cleans the surface of the product, thereby removing dust or large particles of impurities from the product surface, improving the adhesion effect of the sheet material, and preventing dust or large particles of impurities from directly damaging the product.

[0018] 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. A positioning mechanism for online transmission, characterized in that: The device includes a transmission component, a lifting component, a front-end positioning and pushing component, a rear-end positioning block, a left-end positioning block, and a right-end positioning and pushing component. Multiple transmission components are arranged in a straight line. The lifting component is positioned below the transmission components. The front-end positioning and pushing component is positioned at the front end of the lifting component, corresponding to the middle gap of the transmission components. The rear-end positioning block is positioned at the rear end of the lifting component, corresponding to the middle gap of the transmission components. The left-end positioning block is positioned on the left side of the lifting component, corresponding to the left-end gap of the transmission components. The right-end positioning and pushing component is positioned on the right side of the lifting component, corresponding to the outer side of the transmission components. A dust cleaning component for the upper surface of the product is provided on either the left or right side of the lifting component, corresponding to the outer side of the transmission components.

2. The online transmission positioning mechanism according to claim 1, characterized in that: The lifting assembly includes a mounting platform fixed to the frame, a lifting cylinder disposed on the lower side of the mounting platform, and a lifting plate disposed at the output end of the lifting cylinder; a first lifting platform is disposed on the lifting plate corresponding to the left gap of the transmission assembly, a middle lifting platform is disposed corresponding to the middle gap of the transmission assembly, and a second lifting platform is disposed corresponding to the right gap of the transmission assembly; a left-end positioning block is disposed on the first lifting platform, a right-end positioning and pushing assembly is disposed on the right end of the lifting plate, a dust cleaning assembly is disposed on the left end of the lifting plate, and the front-end positioning and pushing assembly and the rear-end positioning block are both disposed on the middle lifting platform; a lifting guide rod is disposed on the lower side of the lifting plate, and a lifting guide sleeve that cooperates with the lifting guide rod is disposed on the mounting platform.

3. The online transmission positioning mechanism according to claim 2, characterized in that: The front-end positioning and pushing component includes a front-end cylinder disposed on the intermediate lifting platform, and a front-end positioning block is disposed at the output end of the front-end cylinder; the right-end positioning and pushing component includes a right-end support frame disposed on the right end of the lifting plate, a right-end cylinder disposed on the right-end support frame, and a right-end positioning block is disposed at the output end of the right-end cylinder.

4. The online transmission positioning mechanism according to claim 2, characterized in that: The dust cleaning assembly includes a left-end support frame disposed at the left end of the lifting plate, a left-end cylinder disposed on the left-end support frame, and a cleaning brush disposed on the left-end cylinder; a cleaning guide rod disposed on the outer side of the cleaning brush, and a left-end guide sleeve disposed on the left-end support frame to cooperate with the cleaning guide rod; the lower side of the brush body of the cleaning brush is higher than the upper surface of the left-end positioning block.

5. The online transmission positioning mechanism according to claim 2, characterized in that: A limit block is provided at the lower end of the lifting guide rod.