Embossing plate roller with high-precision inlaid module
Through the design of the base cylinder and movable cylinder, combined with the push shaft and magnet locking mechanism, the problem of large module installation workload is solved, and the module is quickly installed and efficiently used.
Patent Information
- Application Number
- CN202422265308.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-09-18
- Publication Date
- 2025-07-08
- Estimated Expiration
- 2034-09-18
AI Technical Summary
In the prior art, the installation workload of multiple modules is relatively large, resulting in insufficiency of installation.
The design of the base cylinder, movable cylinder, pushing shaft and pushing locking mechanism is adopted. Through the cooperation of the pushing shaft and the pulling rod, the module is quickly extended and retracted, and fixed by using a magnet locking mechanism to simplify the installation process of the module.
It realizes rapid installation of multiple modules, reduces installation workload and improves work efficiency.
Smart Images

Figure CN223072201U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of inlaid module embossing rollers, in particular to a high-precision inlaid module embossing roller. Background Art
[0002] The plate roller, also called a steel roller, is divided into a hollow roller and a solid roller, a roller with a shaft and a roller without a shaft. It is generally used for plate making. The surface of the roller is plated with copper, engraved with patterns by an intaglio electronic engraving machine, and then plated with a layer of chromium.
[0003] In the prior art, a high-precision inlaid module embossing roller disclosed in CN205853572U is mostly adopted. This technology includes a base roller, on the outer surface of which a module is installed. A bolt groove is opened at the top of the module, a buffer washer is inlaid at the bottom of the inner wall of the bolt groove, a bolt is installed in the bolt groove, and the module is fixedly connected to the base roller through the bolt. An inner ring is arranged inside the base roller, ball bearings are inlaid between the base roller and the inner ring, an anti-slip washer is fixedly installed on the inner wall of the inner ring, a rotating shaft adapted to the inner ring is inserted through the inner ring, and connecting rods are fixedly installed at both ends of the rotating shaft. Through the setting of the module, the module can be arranged on the base roller in different forms, so that different patterns can be pressed. There is no need to replace the base roller, and only the arrangement order of the modules needs to be adjusted, which effectively improves the working efficiency of the staff and improves the quality of embossing. However, there are still problems in the use process due to structural limitations in the above technology:
[0004] In the above technology, when installing multiple modules, since the modules in the above technology are not integrally arranged but are independently arranged as single units, and the modules in the above technology are installed by bolts, it is necessary to sequentially install the modules on the base roller through bolts, which undoubtedly greatly increases the installation workload of multiple modules. Summary of the Utility Model
[0005] The purpose of the utility model is to solve the problem of large installation workload of multiple modules in the prior art, and to provide a high-precision inlaid module embossing roller.
[0006] In order to achieve the above purpose, the utility model adopts the following technical scheme:
[0007] A high-precision inlaid module embossing roller includes a base cylinder, both left and right ends of which are open, and the following are arranged in the base cylinder:
[0008] A first through groove, a movable cylinder body and a second through groove. Five groups of the first through grooves are linearly and equidistantly opened on the base cylinder, the movable cylinder body is movably arranged in the base cylinder, and five groups of the second through grooves are linearly and equidistantly opened on the movable cylinder body;
[0009] A driving shaft, a fixed shaft and modules, wherein the driving shaft is movably arranged at one end of the movable cylinder body, the fixed shaft is fixedly installed at the other end of the movable cylinder body, and the five groups of modules are respectively arranged in five groups of second through grooves in a linear movement manner;
[0010] A driving locking mechanism, which is arranged in the movable cylinder body and is used to extend or retract the module from the second through groove and lock the module.
[0011] Preferably, the number of each group of the first through grooves, the second through grooves and the modules is four, and the four first through grooves, the four second through grooves and the four modules in one group are all distributed at equal circumferential intervals.
[0012] Preferably, a driving hole is formed at the center of one end of the movable cylinder body, one end of the driving shaft extends into the movable cylinder body through the driving hole, and the other end of the driving shaft is located at the outer end of the movable cylinder body.
[0013] Preferably, the driving locking mechanism includes:
[0014] Vertical slide rails, traction rods, a first magnet and a second magnet. The five groups of vertical slide rails are respectively fixedly installed at the inner sides of the five groups of second through grooves. The five groups of traction rods are arranged in the movable cylinder body at equal linear intervals. The first magnet is fixedly connected to one end of the driving shaft located in the movable cylinder body, and the second magnet is fixedly connected to the inner wall of the movable cylinder body;
[0015] A moving disc and a locking threaded hole. The moving disc is integrally formed at one end of the driving shaft located in the movable cylinder body, and the locking threaded hole is formed in the moving disc and at one end of the movable cylinder body located at the driving hole.
[0016] Preferably, the five groups of modules are respectively slidably arranged on the five groups of vertical slide rails. One ends of the five groups of traction rods are respectively pin-connected to the five groups of modules, and the other ends of the five groups of traction rods are all pin-connected to the driving shaft.
[0017] Preferably, the first magnet and the second magnet are mutually attracting magnets with opposite poles, and the locking threaded hole fixedly connects the moving disc and the movable cylinder body through a bolt.
[0018] Compared with the prior art, the present utility model has the following advantages:
[0019] When the five groups of modules of the present utility model are in a storage state, the movable cylinder body is placed into the base cylinder, and then the driving shaft is pulled to the left, so that the five groups of traction rods respectively drive the five groups of modules to move outwards at the second through grooves, so that the five groups of modules respectively extend out of the base cylinder through the five groups of first through grooves, and the five groups of modules are locked through bolts and the locking threaded holes, thereby simultaneously completing the installation of multiple modules to reduce the installation workload of multiple modules. Description of the Drawings
[0020] Figure 1 Schematic structural diagram of an embossing plate roller with a high-precision inlaid module proposed by the present utility model;
[0021] Figure 2 Rear cross-sectional view of an embossing plate roller with a high-precision inlaid module proposed by the present utility model;
[0022] Figure 3 In the present utility model Figure 2 Enlarged schematic view of part A;
[0023] Figure 4 Right cross-sectional view of an embossing plate roller with a high-precision inlaid module proposed by the present utility model.
[0024] In the figure: 1, base cylinder; 2, first through groove; 3, movable cylinder; 4, second through groove; 5, push shaft; 6, fixed shaft; 7, module; 8, push hole; 9, vertical slide rail; 10, traction rod; 11, first magnet; 12, second magnet; 13, moving disc; 14, locking threaded hole. Specific embodiments
[0025] Next, the technical solutions in the embodiments of the present utility model will be clearly and completely described in conjunction with the accompanying drawings in the embodiments of the present utility model. Obviously, the described embodiments are only a part of the embodiments of the present utility model, rather than all the embodiments.
[0026] Refer to Figures 1-4 , an embossing plate roller with a high-precision inlaid module, including a base cylinder 1, both the left and right ends of the base cylinder 1 are open, as shown in the attached Figure 2 and the attached Figure 3 figures. A first through groove 2, a movable cylinder 3 and a second through groove 4 are provided in the base cylinder 1. Five groups of first through grooves 2 are arranged at equal intervals in a straight line on the base cylinder 1. The movable cylinder 3 is movably arranged in the base cylinder 1. Five groups of second through grooves 4 are arranged at equal intervals in a straight line on the movable cylinder 3;
[0027] The base cylinder 1 is also provided with a push shaft 5, a fixed shaft 6 and modules 7. The push shaft 5 is movably arranged at one end of the movable cylinder 3, the fixed shaft 6 is fixedly installed at the other end of the movable cylinder 3, and five groups of modules 7 are respectively arranged in five groups of second through grooves 4 in a linear movement manner; after the base cylinder 1 and the movable cylinder 3 are fixed, the push shaft 5 and the fixed shaft 6 need to be respectively installed at two fixedly arranged bearings, so that the five groups of modules 7 can perform printing when the base cylinder 1 and the movable cylinder 3 are in a rotating state. By using the pushable characteristic of the push shaft 5, first push the push shaft 5 towards the movable cylinder 3 to reduce the length of the outer end of the push shaft 5 located outside the movable cylinder 3. At the same time, sleeve the fixed shaft 6 onto a bearing. At this time, pull the push shaft 5 outwards to make the push shaft 5 sleeved in another bearing, and then quickly sleeve the push shaft 5 and the fixed shaft 6 onto the two bearings; a push locking mechanism is arranged in the movable cylinder 3 and is used to make the module 7 extend out of or retract into the second through groove 4 and lock the module 7 to maintain the state of the module 7.
[0028] And as shown in the attached Figure 1 and the attached Figure 2 figure, the number of a group of first through grooves 2, a group of second through grooves 4 and a group of modules 7 is four each, and the four first through grooves 2 in a group, the four second through grooves 4 in a group and the four modules 7 in a group are all distributed at equal circumferential intervals. A push hole 8 is opened at the center of one end of the movable cylinder 3. When pushing the push shaft 5, one end of the push shaft 5 moves in the movable cylinder 3 through the push hole 8, and the other end of the push shaft 5 is located at the outer end of the movable cylinder 3.
[0029] The push locking mechanism includes a vertical slide rail 9, a traction rod 10, a first magnet 11 and a second magnet 12. As shown in the attached Figure 4 figure, five groups of vertical slide rails 9 are respectively fixedly installed at the inner sides of five groups of second through grooves 4, five groups of traction rods 10 are arranged in the movable cylinder 3 at equal linear intervals, the first magnet 11 is fixedly connected to one end of the push shaft 5 located in the movable cylinder 3, and the second magnet 12 is fixedly connected to the inner wall of the movable cylinder 3;
[0030] The push locking mechanism further includes a moving disc 13 and a locking threaded hole 14. As shown in the attached Figure 2 figure, the moving disc 13 is integrally formed at one end of the push shaft 5 located in the movable cylinder 3, and the locking threaded hole 14 is opened at the moving disc 13 and at one end of the movable cylinder 3 located at the push hole 8.
[0031] Preferably, five groups of modules 7 are respectively slidably arranged on five groups of vertical slide rails 9, and through the guidance of the vertical slide rails 9, the modules 7 perform linear movement. One ends of five groups of traction rods 10 are respectively pin-connected to five groups of modules 7, and the other ends of five groups of traction rods 10 are all pin-connected to the push shaft 5; as shown in the attached Figure 2As described above, when the push shaft 5 moves to the right, the upper traction rod 10 located at the upper end deflects in the horizontal direction, and the uppermost end of the upper traction rod 10 drives the upper module 7 to move downward. At the same time, the lowermost end of the upper traction rod 10 moves to the right under the drive of the push shaft 5, so that the five groups of modules 7 retract at the second through groove 4. When the push shaft 5 moves to the left, the upper traction rod 10 located at the upper end deflects in the vertical direction, and the uppermost end of the upper traction rod 10 drives the upper module 7 to move upward. At the same time, the lowermost end of the upper traction rod 10 moves to the left under the drive of the push shaft 5, so that the five groups of modules 7 extend at the second through groove 4.
[0032] Preferably, as shown in the attached Figure 2 When the push shaft 5 is pushed to the right, the five groups of modules 7 are in the retracted state, and the attracting force between the opposite poles of the first magnet 11 and the second magnet 12 is used to lock the five groups of modules 7 in the retracted state. When the push shaft 5 is pulled to the left, the five groups of modules 7 are in the extended state. At the same time, the threaded hole 14 is locked, and the moving disc 13 and the movable cylinder 3 are fixedly connected by bolts. The movable cylinder 3 is fixedly connected to the base cylinder 1, and the five groups of modules 7 in the extended state are locked. It should be particularly noted that when the five groups of modules 7 are in the retracted state, the movable cylinder 3 is first placed in the base cylinder 1, and the five second through grooves 4 are respectively aligned with the five first through grooves 2, so that the modules 7 can extend from the first through grooves 2 to the outside of the base cylinder 1 in the extended state.
[0033] The functional principle of the present utility model can be elaborated through the following operation methods:
[0034] As shown in the attached Figure 2 First, the push shaft 5 is pushed towards the push hole 8, so that the push shaft 5 moves to the right in the movable cylinder 3. At the same time, the push shaft 5 drives the five traction rods 10 to move to the right, and the module 7 moves linearly under the guidance of the vertical slide rail 9, so that the traction rod 10 located at the upper end deflects in the horizontal direction, and the five traction rods 10 respectively drive the five groups of modules 7 to retract at the second through groove 4, so that the five groups of modules 7 are retracted into the movable cylinder 3. At this time, the first magnet 11 and the second magnet 12 are in contact. Since the first magnet 11 and the second magnet 12 attract each other with opposite poles, the five groups of modules 7 in the retracted state are locked.
[0035] After that, the movable cylinder 3 is placed in the base cylinder 1, and the two ends of the movable cylinder 3 are aligned with the two ends of the base cylinder 1. And as shown in the attached Figure 2As shown in the figure, pull the push shaft 5 to the left to disconnect the connection between the first magnet 11 and the second magnet 12. At the same time, the push shaft 5 drives the five groups of traction rods 10 to move to the left, causing the traction rod 10 at the upper end to deflect in the vertical direction. And the five groups of traction rods 10 respectively drive the five groups of modules 7 to extend and move at the second through groove 4, so that the five groups of modules 7 respectively extend out of the base cylinder 1 through the five groups of first through grooves 2. At this time, the moving disc 13 abuts against the inner wall of the movable cylinder body 3, and the moving disc 13 is fixedly connected to the movable cylinder body 3 through bolts and the locking threaded holes 14, thereby locking the five groups of modules 7 in the extended state.
[0036] The above is only a preferred specific embodiment of the present invention, but the protection scope of the present invention is not limited thereto. Any person skilled in the art within the technical scope disclosed by the present invention, according to the technical solution of the present invention and its inventive concept, makes equivalent substitutions or changes, and should be covered by the protection scope of the present invention.
Claims
1. A high-precision inlaid module embossing plate roller, comprising a base cylinder (1), both left and right ends of the base cylinder (1) are provided with openings, and it is characterized in that, The base cylinder (1) is provided with: A first through groove (2), a movable cylinder (3) and a second through groove (4). Five groups of the first through grooves (2) are arranged on the base cylinder (1) at equal intervals in a straight line. The movable cylinder (3) is movably arranged in the base cylinder (1). Five groups of the second through grooves (4) are arranged on the movable cylinder (3) at equal intervals in a straight line. A push shaft (5), a fixed shaft (6) and a module (7). The push shaft (5) is movably arranged at one end of the movable cylinder (3). The fixed shaft (6) is fixedly installed at the other end of the movable cylinder (3). Five groups of the modules (7) are respectively arranged in five groups of the second through grooves (4) in a linear movement manner. A push locking mechanism, which is arranged in the movable cylinder (3) and is used to make the module (7) extend out of or retract into the second through groove (4) and lock the module (7).
2. The embossing plate roller with a high-precision inlay module according to claim 1, wherein, The number of one group of the first through grooves (2), one group of the second through grooves (4) and one group of the modules (7) is four. The four first through grooves (2) in one group, the four second through grooves (4) in one group and the four modules (7) in one group are all distributed at equal intervals in a circumferential manner.
3. The embossing plate roller with a high-precision inlay module according to claim 2, characterized in that, A push hole (8) is opened at the center of one end of the movable cylinder (3). One end of the push shaft (5) extends into the movable cylinder (3) through the push hole (8), and the other end of the push shaft (5) is located at the outer end of the movable cylinder (3).
4. The embossing plate roller with a high-precision inlay module according to claim 3, characterized in that, The push locking mechanism includes: A vertical slide rail (9), a traction rod (10), a first magnet (11) and a second magnet (12). Five groups of the vertical slide rails (9) are respectively fixedly installed at the inner sides of five groups of the second through grooves (4). Five groups of the traction rods (10) are arranged in the movable cylinder (3) at equal intervals in a straight line. The first magnet (11) is fixedly connected to one end of the push shaft (5) located in the movable cylinder (3). The second magnet (12) is fixedly connected to the inner wall of the movable cylinder (3). A moving disc (13) and a locking threaded hole (14). The moving disc (13) is integrally formed at one end of the push shaft (5) located in the movable cylinder (3). The locking threaded hole (14) is opened at the moving disc (13) and at one end of the movable cylinder (3) where the push hole (8) is located.
5. A high-precision inlaid module embossing plate roller according to claim 4, characterized in that, Five groups of the modules (7) are respectively slidably arranged on five groups of the vertical slide rails (9). One end of each of the five groups of the traction rods (10) is pin-connected to one of the five groups of the modules (7), and the other ends of the five groups of the traction rods (10) are all pin-connected to the push shaft (5).
6. The embossing plate roller with a high-precision inlay module according to claim 5, wherein The first magnet (11) and the second magnet (12) are mutually attracted magnets with opposite poles. The locking threaded hole (14) fixedly connects the moving disc (13) and the movable cylinder (3) through a bolt.
Citation Information
Patent Citations
It inlays module knurling version roller to have high accuracy
CN205853572U