Powerful decorating machine magnetic table
By designing a magnetic platform and replacement device in the printing machine, the magnetic plate can be quickly replaced, solving the problem of insufficient magnetic force caused by fabric wear, and improving production efficiency and the stability of printing quality.
Patent Information
- Application Number
- CN202520347569.9
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-03-03
- Publication Date
- 2026-01-27
- Estimated Expiration
- 2035-03-03
AI Technical Summary
In existing technologies, the fabric is worn down by continuous friction between magnetic tables, resulting in insufficient magnetic force and difficulty in adhering to the fabric. This causes the fabric to become skewed during movement, which is not conducive to processing, and downtime for maintenance affects production efficiency.
A powerful printing machine magnetic table was designed, comprising a magnetic table and a replacement device. Through the combination of a plug rod, a sliding sleeve, a push rod, a locking block, a pressure spring, and an ejection assembly, the magnetic plate can be quickly replaced, reducing the difficulty of replacement and downtime.
It greatly shortens the magnetic table replacement time, reduces equipment downtime, improves production efficiency, ensures the stability of printing quality, and reduces quality problems caused by wear.
Smart Images

Figure CN223835217U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of printing machine technology, and in particular to a magnetic table for a high-strength printing machine. Background Technology
[0002] Existing technologies, such as the utility model with publication number CN2710894Y, disclose an improved magnetic table for a magnetic rod rotary screen printing machine. This improvement is achieved through the following technical solution: the improved magnetic table for a magnetic rod rotary screen printing machine includes a worktable, an electromagnet, and a housing, characterized by a cooling water channel on the back of the worktable, which is a concealed pipe integrated with the worktable. According to this solution, the magnetic table for a magnetic rod rotary screen printing machine, due to the cooling circulating water channel on the back of the worktable, absorbs and carries away the heat generated by the magnet and transferred to the worktable during printing and operation, effectively preventing deformation of the worktable due to overheating. This significantly ensures the printing quality of the product and improves productivity. This utility model is indeed a beneficial improvement. However, during long-term operation, the fabric continuously passes through the magnetic table, rubbing against it, inevitably causing wear and tear. This leads to insufficient magnetic force on the magnetic table, making it difficult to attract the fabric, resulting in skewing of the fabric during movement, which is detrimental to processing.
[0003] To address the issue that continuous fabric passing over the magnetic platform inevitably causes wear and tear, resulting in insufficient magnetic force and difficulty in adhering to the fabric, leading to fabric skewing during movement and hindering processing, the current technology involves stopping the machine for maintenance. However, this affects fabric processing and consequently reduces work efficiency. Utility Model Content
[0004] The purpose of this invention is to solve the problems in the existing technology where the fabric continuously passes through the magnetic table and rubs against it, inevitably causing wear and tear, resulting in insufficient magnetic force of the magnetic table, difficulty in adhering to the fabric, and causing the fabric to skew during movement, which is not conducive to processing. Therefore, a high-strength magnetic table for printing machines is proposed.
[0005] The specific solution of this utility model is as follows: a magnetic table for a high-strength printing machine includes a magnetic table and a replacement device. A magnetic plate is provided on the surface of the magnetic table. The replacement device is located on the lower surface of the magnetic plate and includes a rod that is fixedly connected to the magnetic plate. A slot is provided on the side of the magnetic table near the rod, and the rod is inserted into the slot on the surface of the magnetic table. A sliding sleeve is fixedly connected to one side of the magnetic plate, and a push rod is slidably connected to the inner wall of the sliding sleeve. A fixing hole is provided on the lower surface of the sliding sleeve, and a sliding groove is provided on the lower surface of the magnetic table. A locking block is slidably connected to the inner wall of the sliding groove on the lower surface of the magnetic table. By setting up the replacement device, the operational difficulty of replacing the magnetic plate is greatly reduced, the replacement time of the magnetic table is significantly shortened, equipment downtime is reduced, and the printing machine can resume production more quickly. This minimizes the impact of magnetic table replacement on production progress, improves overall production efficiency, ensures that the magnetic table is always in good working condition, helps maintain stable printing quality, and reduces the frequency of quality problems such as pattern deformation and unstable adsorption caused by magnetic table wear.
[0006] Preferably, the card block is inserted into the fixing hole, and a pressure spring is fixedly connected to the side of the magnetic platform near the card block. The side of the pressure spring away from the card block is fixedly connected to the magnetic platform. By setting the pressure spring, the pressure spring plays a key force application role in the cooperation between the card block and the fixing hole. When the insertion rod of the new magnet plate is inserted into the magnetic platform, the sliding sleeve moves downward to squeeze the card block and make it slide backward. Once the fixing hole is close to the card block, the pressure spring can quickly squeeze the card block into the fixing hole by its own elasticity, thus realizing a reliable fixed connection between the magnet plate and the magnetic platform.
[0007] Preferably, a pressure plate is fixedly connected to the surface of the push rod, and the push rod is located on the upper surface of the block. By setting the pressure plate, the pressing action of the pressure plate can accurately drive the push rod to move, thereby accurately causing the block to be subjected to force in a predetermined manner and slide backward away from the fixing hole, thus initiating the disassembly process of the magnet plate.
[0008] Preferably, the lower surface of the push rod is provided with an angle, and the side of the locking block near the push rod is provided with an angled surface. The push rod abuts against the locking block. By setting the push rod, when the pressure plate is pressed, the pressure plate drives the push rod to slide downward. The push rod here acts as a medium for force transmission. The operator only needs to apply a relatively small and easy-to-operate pressing force to the pressure plate, and the force can be accurately transmitted to the locking block through the push rod, so that the locking block is subjected to force and produces a corresponding sliding action, thereby realizing the subsequent unlocking and fixing hole operation.
[0009] Preferably, the surface of the magnetic platform is provided with an ejection assembly, which includes a round rod that is slidably connected to the magnetic platform. A handle is fixedly connected to the lower surface of the round rod. By providing the ejection assembly, it is easier to assist the operator in quickly removing and replacing the magnet plate, thereby increasing the speed and convenience of magnet plate replacement.
[0010] Preferably, the round rod is located on the lower surface of the magnet plate and abuts against the magnet plate. By setting the round rod, when it is necessary to push out the worn magnet plate, the operator only needs to hold the round rod and squeeze upward. By using the lever principle, the force can be effectively transmitted to the magnet plate to complete the pushing operation.
[0011] Preferably, a return spring is sleeved on the surface of the round rod. The two ends of the return spring are fixedly connected to the handle and the magnetic table, respectively. By setting the return spring, the return spring can quickly push the round rod back to the initial position by its own elastic force. This automatic reset function does not require manual operation to return the round rod to its position, which not only saves manpower, but also ensures that the entire replacement device can quickly enter the next round of use and is ready to deal with the next replacement of the magnet plate.
[0012] Compared with the prior art, the advantages and positive effects of this utility model are as follows: This utility model greatly reduces the operational difficulty of replacing the magnet plate, significantly shortens the replacement time of the magnetic table, reduces equipment downtime, enables the printing machine to resume production more quickly, minimizes the impact of magnetic table replacement on production progress, improves overall production efficiency, ensures that the magnetic table is always in good working condition, helps maintain stable printing quality, and reduces the frequency of quality problems such as printing pattern deformation and unstable adsorption caused by magnetic table wear. Attached Figure Description
[0013] Figure 1 This is a three-dimensional schematic diagram of the present invention;
[0014] Figure 2 This is a three-dimensional schematic diagram from another perspective of the present invention;
[0015] Figure 3 This is a schematic diagram of the replacement device structure of this utility model;
[0016] Figure 4 for Figure 3 Enlarged view of point A;
[0017] Figure 5 This is a schematic diagram of the unfolded structure of the replacement device of this utility model;
[0018] In the diagram: 1. Magnetic platform; 2. Magnetic plate; 3. Replacement device; 31. Insert rod; 32. Sliding sleeve; 33. Push rod; 34. Locking block; 35. Pressure spring; 36. Fixing hole; 37. Pressure plate; 4. Ejection assembly; 41. Return spring; 42. Round rod; 43. Handle. Detailed Implementation
[0019] Please see Figure 1-5 This embodiment is a magnetic table for a high-strength printing machine, including a magnetic table 1 and a replacement device 3. A magnetic plate 2 is provided on the surface of the magnetic table 1, and the replacement device 3 is provided on the lower surface of the magnetic plate 2. The replacement device 3 includes an insertion rod 31, which is fixedly connected to the magnetic plate 2. A slot is provided on the side of the magnetic table 1 near the insertion rod 31, and the insertion rod 31 is inserted into the slot. A sliding sleeve 32 is fixedly connected to one side of the magnetic plate 2, and a push rod 33 is slidably connected to the inner wall of the sliding sleeve 32. A fixing hole 36 is provided on the lower surface of the sliding sleeve 32, and a sliding groove is provided on the lower surface of the magnetic table 1. A locking block 34 is slidably connected to the inner wall of the sliding groove on the lower surface of the magnetic table 1.
[0020] Furthermore, the locking block 34 is inserted into the fixing hole 36. A pressure spring 35 is fixedly connected to the side of the magnetic platform 1 near the locking block 34, and the side of the pressure spring 35 away from the locking block 34 is fixedly connected to the magnetic platform 1. By setting the pressure spring 35, the pressure spring 35 plays a key force application role in the cooperation between the locking block 34 and the fixing hole 36. When the insertion rod 31 of the new magnet plate 2 is inserted into the magnetic platform 1, the sliding sleeve 32 moves downward to squeeze the locking block 34 so that it slides backward. Once the fixing hole 36 is close to the locking block 34, the pressure spring 35 can quickly squeeze the locking block 34 into the fixing hole 36 by its own elasticity, thus realizing a reliable fixed connection between the magnet plate 2 and the magnetic platform 1.
[0021] Furthermore, a pressure plate 37 is fixedly connected to the surface of the push rod 33. The push rod 33 is located on the upper surface of the locking block 34. By setting the pressure plate 37, the pressing action of the pressure plate 37 can accurately drive the push rod 33 to move, thereby accurately causing the locking block 34 to be subjected to force in a predetermined manner and slide backward away from the fixing hole 36, thus initiating the disassembly process of the magnet plate 2.
[0022] Furthermore, the lower surface of the push rod 33 is provided with an angle, and the side of the locking block 34 near the push rod 33 is provided with an angle. The push rod 33 abuts against the locking block 34. By setting the push rod 33, when the pressure plate 37 is pressed, the pressure plate 37 drives the push rod 33 to slide downward. The push rod 33 here acts as a medium for force transmission. The operator only needs to apply a relatively small and easy-to-operate pressing force to the pressure plate 37, and the force can be accurately transmitted to the locking block 34 through the push rod 33, so that the locking block 34 is subjected to force and produces a corresponding sliding action, thereby realizing the subsequent unlocking of the fixing hole 36.
[0023] Furthermore, the surface of the magnetic table 1 is provided with an ejector assembly 4, which includes a round rod 42 that is slidably connected to the magnetic table 1. A handle 43 is fixedly connected to the lower surface of the round rod 42. By providing the ejector assembly 4, it is easier for operators to quickly remove and replace the magnet plate 2, increasing the speed and convenience of replacing the magnet plate 2.
[0024] Furthermore, the round rod 42 is located on the lower surface of the magnet plate 2, and the round rod 42 abuts against the magnet plate 2. By setting the round rod 42, when it is necessary to push out the worn magnet plate 2, the operator only needs to hold the round rod 42 and squeeze upwards. By utilizing the lever principle, the force can be effectively transmitted to the magnet plate 2 to complete the pushing operation.
[0025] Furthermore, a return spring 41 is fitted onto the surface of the round rod 42, and the two ends of the return spring 41 are fixedly connected to the handle 43 and the magnetic platform 1, respectively. By setting the return spring 41, the return spring 41 can quickly push the round rod 42 back to its initial position by its own elastic force.
[0026] The working principle of this utility model is as follows: When the magnet plate 2 needs to be replaced, press the pressure plate 37. The pressure plate 37 drives the push rod 33 to slide downward. When the push rod 33 abuts against the locking block 34, the locking block 34 is forced to slide backward and disengage from the fixing hole 36. At this time, grasp the handle 43 and squeeze the round rod 42 upward. The round rod 42 pushes out the magnet plate 2, and the magnet plate 2 can be removed. Release the handle 43, and the return spring 41 pushes the round rod 42 to return to its original position. Insert the insertion rod 31 of the new magnet plate 2 into the slot of the magnetic table 1. At the same time, the sliding sleeve 32 moves downward and abuts against the locking block 34. The locking block 34 is forced to slide backward. When the fixing hole 36 approaches the locking block 34, When the locking block 34 is released from its restraint, the pressure spring 35 generates elastic force to squeeze the locking block 34 into the fixing hole 36. At this time, the replacement of the magnet plate 2 is completed. By setting up this utility model, the operation difficulty of replacing the magnet plate 2 is greatly reduced, the replacement time of the magnetic table is greatly shortened, the downtime of the equipment can be reduced, the printing machine can resume production more quickly, the impact of magnetic table replacement on the production progress is minimized, the overall production efficiency is improved, and the magnetic table is always in good working condition, which is conducive to maintaining the stability of printing quality and reducing the frequency of quality problems such as printing pattern deformation and unstable adsorption caused by magnetic table wear.
Claims
1. A magnetic table for a high-strength printing machine, comprising a magnetic table and a replacement device, characterized in that: The surface of the magnetic platform is provided with a magnetic plate. The replacement device is located on the lower surface of the magnetic plate. The replacement device includes a rod, which is fixedly connected to the magnetic plate. A slot is provided on the side of the magnetic platform near the rod, and the rod is inserted into the slot. A sliding sleeve is provided on one side of the magnetic plate, and a push rod is slidably connected inside the sliding sleeve. A fixing hole is provided on the lower surface of the sliding sleeve. A sliding groove is provided on the lower surface of the magnetic platform, and a locking block is slidably connected inside the sliding groove. The locking block is inserted into the fixing hole. A pressure spring is installed on the side of the magnetic platform near the locking block.
2. The magnetic table of a high-strength printing machine according to claim 1, characterized in that: A pressure plate is fixedly connected to the surface of the push rod. The push rod is located on the upper surface of the locking block. An angle is formed on the lower surface of the push rod. An inclined surface is formed on the side of the locking block near the push rod. The push rod abuts against the locking block.
3. The magnetic table of a high-strength printing machine according to claim 1, characterized in that: The surface of the magnetic platform is provided with an ejection assembly, which includes a round rod that is slidably connected to the magnetic platform. The lower surface of the round rod is provided with a handle.
4. The magnetic table of a high-strength printing machine according to claim 3, characterized in that: The round rod is located on the lower surface of the magnet plate and abuts against the magnet plate.
5. The magnetic table of a high-strength printing machine according to claim 3, characterized in that: A return spring is fitted onto the surface of the round rod, and the two ends of the return spring are fixedly connected to the handle and the magnetic platform, respectively.
Citation Information
Patent Citations
Improved magnetic bar type magnetic desk of round screen printing machine
CN2710894Y