Manual printing table inlet and outlet structure

By introducing a connecting and pulling mechanism into the manual printing equipment, the problem of the printing head interfering with manual operation is solved, achieving labor-saving, buffered, and precise product handling, thus improving printing efficiency and accuracy.

CN223545970UActive Publication Date: 2025-11-14CHANGSHA JIANYU SCREEN PRINTING MACHINERY
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Patent Information

Application Number
CN202423291116.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-12-31
Publication Date
2025-11-14
Estimated Expiration
2034-12-31

AI Technical Summary

Technical Problem

In existing manual printing equipment, the printing head interferes with manual product handling, resulting in low efficiency and increased manual workload.

Method used

A manual printing table entry and exit structure was designed, including a connecting mechanism and a pull-out mechanism. By reducing the flipping force of the rotating plate, a buffering effect is provided, and the sliding entry and exit of the printing platform is realized through the guide rail mechanism, thereby improving the convenience and accuracy of operation.

Benefits of technology

It reduces the force required to manually flip and rotate the plate, reduces vibration, improves printing efficiency and accuracy, and facilitates product handling.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model discloses an in-out structure of a manual printing table, which relates to the technical field of manual printing tables and comprises a base, mounting plates are symmetrically and fixedly mounted at the top of the base, a rotating plate is rotatably mounted between the two mounting plates, a connecting mechanism is arranged between the base and the rotating plate, and a drawing mechanism is arranged at the top of the base. The drawing mechanism is located under the rotating plate. Through the arrangement of the connecting mechanism, the force for rotating the rotating plate is reduced, the labor-saving effect is achieved, meanwhile, a certain buffering effect is achieved, vibration generated between the rotating plate and the supporting piece when the rotating plate is reset is reduced, the effect of protecting the printing machine head is achieved, and through the arrangement of the drawing mechanism, after the rotating plate is turned over, the connecting plate can slide in and out, and the printing machine head is protected. Products on the printing platform can be conveniently and manually taken and placed, the printing efficiency is improved, meanwhile, the sliding-in position of the connecting plate every time is fixed, and the printing precision is improved.
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Description

Technical Field

[0001] This utility model relates to the field of manual printing table technology, specifically a manual printing table entry and exit structure. Background Technology

[0002] Screen printing tables (machines) are used for small-batch processing. Due to their simple structure and low production cost, they are favored by some users. With the booming development of the printing industry and increasingly fierce competition, higher requirements are placed on the convenience and multi-functionality of the equipment.

[0003] Currently, manual printing equipment generally uses a fixed printing platform for products. This causes the printing head to interfere with the efficiency of manual product handling, increases the workload of manual workers, and affects product production efficiency.

[0004] Based on this, a manual printing table entry and exit structure is now provided, which can eliminate the drawbacks of existing devices. Utility Model Content

[0005] The purpose of this invention is to provide a manual printing table entry and exit structure to solve the problem of printing head interference with manual product handling in the prior art.

[0006] To achieve the above objectives, this utility model provides the following technical solution:

[0007] A manual printing table entry and exit structure includes a base, on the top of which mounting plates are symmetrically fixedly installed, and a rotating plate is rotatably installed between the two mounting plates.

[0008] A connecting mechanism is provided between the base and the rotating plate, and a pull-out mechanism is provided on the top of the base, with the pull-out mechanism located directly below the rotating plate.

[0009] Based on the above technical solutions, this utility model also provides the following optional technical solutions:

[0010] In one alternative: the connecting mechanism includes a telescopic sleeve, which is rotatably mounted on both sides of the base. A telescopic rod is slidably mounted inside the telescopic sleeve. A sealing gasket is fixedly mounted at the bottom end of the telescopic rod and is located inside the telescopic sleeve. A first spring is provided between the bottom of the telescopic sleeve and the bottom of the sealing gasket. Air holes are symmetrically opened on the outside of the telescopic sleeve.

[0011] In one alternative: the pull-out mechanism includes a guide rail mechanism, which is symmetrically arranged on the top of the base. A connecting plate is provided on the top of the guide rail mechanism. A first handle is fixedly installed on the outer side of the connecting plate, and a printing platform is fixedly installed on the top of the connecting plate.

[0012] In one alternative embodiment: the guide rail mechanism includes a first slide rail, which is symmetrically and fixedly installed on the top of the base. A positioning groove is provided on the top of the first slide rail. A sliding sleeve is slidably installed on the outside of the first slide rail. An installation groove is provided on the bottom of the sliding sleeve. A positioning element is slidably installed inside the installation groove. The positioning element is adapted to the positioning groove. A second spring is provided on the top of the positioning groove, and the second spring is located inside the installation groove.

[0013] In one alternative: the top of the base is symmetrically equipped with support members, and the two support members are located on the outer sides of the pull-out mechanism.

[0014] In one alternative: a second handle is fixedly mounted on the outer side of the rotating plate.

[0015] In one alternative: a second slide rail is symmetrically fixedly mounted on the top of the rotating plate, and a printing head is slidably mounted between the two second slide rails.

[0016] In one alternative: scale lines are provided on the outer side of both second slide rails.

[0017] Compared with the prior art, the beneficial effects of this utility model are as follows:

[0018] 1. This utility model reduces the force required to rotate the rotating plate by setting up a connecting mechanism, thus saving effort. At the same time, it has a certain buffering effect, reducing the vibration between the rotating plate and the support when it returns to center, thereby protecting the printing head.

[0019] 2. With the addition of a pull-out mechanism, the connecting plate can slide in and out after the rotating plate is flipped, making it convenient for manual handling of products on the printing platform and improving printing efficiency. At the same time, the connecting plate is fixed in position each time it slides in, which improves printing accuracy. Attached Figure Description

[0020] Figure 1 This is a schematic diagram of the overall internal structure of this utility model.

[0021] Figure 2 This is a schematic diagram of the connection mechanism of this utility model.

[0022] Figure 3 This is a schematic diagram of the guide rail mechanism of this utility model.

[0023] Figure 4 This is a schematic diagram of the rotating plate flipping structure of this utility model.

[0024] Figure 5 This is a schematic diagram of the pull-out mechanism of this utility model.

[0025] Figure reference numerals: 1. Base; 2. Mounting plate; 3. Rotating plate; 4. Connecting mechanism; 401. Telescopic sleeve; 402. Telescopic rod; 403. Sealing gasket; 404. First spring; 405. Air hole; 5. Pull-out mechanism; 501. Guide rail mechanism; 5011. First slide rail; 5012. Positioning groove; 5013. Sliding sleeve; 5014. Mounting groove; 5015. Positioning component; 5016. Second spring; 502. Connecting plate; 503. First handle; 504. Printing platform; 6. Support component; 7. Second handle; 8. Second slide rail; 9. Printing head; 10. Scale line. Detailed Implementation

[0026] To make the objectives, technical solutions, and advantages of this utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments.

[0027] In one embodiment, such as Figures 1-5 As shown, a manual printing table entry and exit structure includes a base 1, on the top of the base 1, mounting plates 2 are symmetrically fixedly installed, and a rotating plate 3 is rotatably installed between the two mounting plates 2.

[0028] A connecting mechanism 4 is provided between the base 1 and the rotating plate 3, and a pull-out mechanism 5 is provided on the top of the base 1, with the pull-out mechanism 5 located directly below the rotating plate 3.

[0029] In this embodiment, the connecting mechanism 4 reduces the force required to rotate the rotating plate 3, thus saving effort. It also provides a certain buffering effect, reducing the vibration between the rotating plate 3 and the support member 6 when the rotating plate 3 returns to its original position, thereby protecting the printing head 9. With the pull-out mechanism 5, the connecting plate 502 can slide in and out after the rotating plate 3 is flipped, facilitating manual loading and unloading of products on the printing platform 504 and improving printing efficiency. At the same time, the connecting plate 502 is fixed in position each time it slides in, improving printing accuracy.

[0030] In one embodiment, such as Figure 2As shown, the connecting mechanism 4 includes a telescopic sleeve 401, which is rotatably mounted on both sides of the outer surface of the base 1. A telescopic rod 402 is slidably mounted inside the telescopic sleeve 401. A sealing gasket 403 is fixedly mounted at the bottom end of the telescopic rod 402, and the sealing gasket 403 is located inside the telescopic sleeve 401. A first spring 404 is provided between the bottom of the inside of the telescopic sleeve 401 and the bottom of the sealing gasket 403. Air holes 405 are symmetrically opened on the outside of the telescopic sleeve 401. When the rotating plate 3 rotates, the telescopic rod 402 slides outward. Spring 404 is always in a compressed state, so the force exerted by spring 404 on telescopic rod 402 will be applied to rotating plate 3, reducing the force required to manually flip rotating plate 3 and saving effort. When rotating plate 3 returns to center, telescopic rod 402 slides into telescopic sleeve 401, and spring 404 is compressed. At the same time, due to the setting of sealing gasket 403, the air inside telescopic sleeve 401 can only be discharged through air hole 405, which plays a damping role, preventing rotating plate 3 from rotating too fast and colliding strongly with support member 6, and reducing vibration when returning to center.

[0031] In one embodiment, such as Figure 5 As shown, the pull-out mechanism 5 includes a guide rail mechanism 501, which is symmetrically arranged on the top of the base 1. A connecting plate 502 is provided on the top of the guide rail mechanism 501. A first handle 503 is fixedly installed on the outer side of the connecting plate 502. A printing platform 504 is fixedly installed on the top of the connecting plate 502. When it is necessary to pick up or load materials, the rotating plate 3 is flipped over, and the connecting plate 502 is pulled out along the length direction of the guide rail mechanism 501 through the first handle 503, which facilitates the loading or unloading of materials onto the printing platform 504. After loading is completed, the connecting plate 502 is pushed back to its original position.

[0032] In one embodiment, such as Figure 3As shown, the guide rail mechanism 501 includes a first slide rail 5011, which is symmetrically fixedly installed on the top of the base 1. A positioning groove 5012 is formed on the top of the first slide rail 5011. A sliding sleeve 5013 is slidably installed on the outside of the first slide rail 5011. A mounting groove 5014 is formed on the bottom of the sliding sleeve 5013. A positioning element 5015 is slidably installed inside the mounting groove 5014. The positioning element 5015 is adapted to the positioning groove 5012. A second spring 5016 is provided on the top of the positioning groove 5012, and the second spring 5016 is located in the mounting groove 5012. Inside 014, during the process of pulling the connecting plate 502 using the first handle 503, the positioning component 5015 is squeezed and moves into the interior of the mounting groove 5014. The second spring 5016 is compressed. After the positioning component 5015 is fully inside the mounting groove 5014, the sliding sleeve 5013 can slide outside the first slide rail 5011. After pushing the connecting plate 502 back to its original position, the resetting action of the second spring 5016 drives the positioning component 5015 to move into the interior of the positioning groove 5012, which plays a positioning role. This ensures that the position of the printing platform 504 remains the same after each loading, improving the printing accuracy.

[0033] In one embodiment, such as Figure 1 and Figure 4 As shown, support members 6 are symmetrically installed on the top of the base 1. The two support members 6 are located on the outer sides of the pull-out mechanism 5, and the bottom two corners of the rotating plate 3 are effectively supported by the support members 6.

[0034] In one embodiment, such as Figure 1 and Figure 4 As shown, a second handle 7 is fixedly installed on the outer side of the rotating plate 3, which facilitates the rotation of the rotating plate 3.

[0035] In one embodiment, such as Figure 1 and Figure 4 As shown, the top of the rotating plate 3 is symmetrically fixed with second slide rails 8, and a printing head 9 is slidably installed between the two second slide rails 8. The printing head 9 slides along the length of the second slide rails 8 to complete the printing process and improve the printing quality.

[0036] In one embodiment, such as Figure 1 As shown, scale lines 10 are provided on the outer side of both second slide rails 8. The printing head 9 can be moved precisely through the scale lines 10 to improve the printing accuracy.

[0037] The above embodiment discloses a manual printing table entry and exit structure. When the rotating plate 3 rotates, the telescopic rod 402 slides outward. Since the first spring 404 is always in a compressed state, the force exerted by the first spring 404 on the telescopic rod 402 is applied to the rotating plate 3, reducing the force required to manually flip the rotating plate 3, thus saving effort. The connecting plate 502 is pulled out along the length of the guide rail mechanism 501 via the first handle 503. The positioning member 5015 is squeezed and moves into the mounting groove 5014. The second spring 5016 is compressed. After the positioning member 5015 is fully inside the mounting groove 5014, the sliding sleeve 5013 can slide outside the first slide rail 5011. The rotating plate 3 is moved to facilitate loading or unloading of materials onto the printing platform 504. After loading, the connecting plate 502 is pushed back to its original position. Due to the reset action of the second spring 5016, the positioning component 5015 moves into the positioning groove 5012, which plays a positioning role. This ensures that the position of the printing platform 504 remains the same after each loading, improving printing accuracy. Then, the rotating plate 3 is returned to the center, and the telescopic rod 402 slides into the telescopic sleeve 401. The first spring 404 is compressed. At the same time, due to the setting of the sealing gasket 403, the air inside the telescopic sleeve 401 can only be discharged through the air hole 405, which plays a damping role and prevents the rotating plate 3 from rotating too fast and colliding violently with the support component 6.

[0038] The above description is merely a specific embodiment of this application, but the scope of protection of this application is not limited thereto. Any variations or substitutions that can be easily conceived by those skilled in the art within the technical scope disclosed in this application should be included within the scope of protection of this application. Therefore, the scope of protection of this application should be determined by the scope of the claims.

Claims

1. A manual printing table entry and exit structure, comprising a base (1), wherein mounting plates (2) are symmetrically fixedly installed on the top of the base (1), and a rotating plate (3) is rotatably installed between the two mounting plates (2); Its features are, A connecting mechanism (4) is provided between the base (1) and the rotating plate (3). A pull-out mechanism (5) is provided on the top of the base (1), and the pull-out mechanism (5) is located directly below the rotating plate (3).

2. The manual printing table in / out structure according to claim 1, characterized in that, The connecting mechanism (4) includes a telescopic sleeve (401), which is rotatably mounted on both sides of the base (1). A telescopic rod (402) is slidably mounted inside the telescopic sleeve (401). A sealing gasket (403) is fixedly mounted at the bottom end of the telescopic rod (402), and the sealing gasket (403) is located inside the telescopic sleeve (401). A first spring (404) is provided between the bottom of the inside of the telescopic sleeve (401) and the bottom of the sealing gasket (403). Air holes (405) are symmetrically opened on the outside of the telescopic sleeve (401).

3. The manual printing table in / out structure according to claim 1, characterized in that, The pull-out mechanism (5) includes a guide rail mechanism (501), which is symmetrically arranged on the top of the base (1). The top of the guide rail mechanism (501) is provided with a connecting plate (502). A first handle (503) is fixedly installed on the outer side of the connecting plate (502), and a printing platform (504) is fixedly installed on the top of the connecting plate (502).

4. The manual printing table in / out structure according to claim 3, characterized in that, The guide rail mechanism (501) includes a first slide rail (5011), which is symmetrically fixedly installed on the top of the base (1). The top of the first slide rail (5011) is provided with a positioning groove (5012). A sliding sleeve (5013) is slidably installed on the outside of the first slide rail (5011). The bottom of the sliding sleeve (5013) is provided with an installation groove (5014). A positioning element (5015) is slidably installed inside the installation groove (5014). The positioning element (5015) is adapted to the positioning groove (5012). A second spring (5016) is provided on the top of the positioning groove (5012), and the second spring (5016) is located inside the installation groove (5014).

5. The manual printing table in / out structure according to claim 1, characterized in that, Support members (6) are symmetrically installed on the top of the base (1), and the two support members (6) are located on the outer sides of the pull-out mechanism (5).

6. The manual printing table in / out structure according to claim 1, characterized in that, The second handle (7) is fixedly installed on the outer side of the rotating plate (3).

7. The manual printing table in / out structure according to claim 1, characterized in that, The top of the rotating plate (3) is symmetrically fixed with second slide rails (8), and the printing head (9) is slidably installed between the two second slide rails (8).

8. The manual printing table in / out structure according to claim 7, characterized in that, Both of the second slide rails (8) have scale lines (10) on their outer side.