An electroplated aluminum winding device
The electroplated aluminum winding device, with its clamping ring and auxiliary roller structure, solves the problems of cumbersome disassembly and assembly of winding rollers and wrinkles, achieving convenient disassembly and high-quality winding.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- ZHEJIANG XINXIN PACKAGING MATERIAL CO LTD
- Filing Date
- 2025-06-27
- Publication Date
- 2026-05-26
AI Technical Summary
In existing electroplated aluminum winding devices, the winding rollers are cumbersome to disassemble and assemble, and are prone to causing wrinkles in the electroplated aluminum, which affects the winding quality.
It adopts a ring and auxiliary roller structure, and the winding roller is driven by a motor to rotate and the auxiliary roller is used to roll and prevent wrinkles. The winding roller is fixed with screws, which makes it easy to disassemble the winding roller.
It enables convenient disassembly and wrinkle prevention of electroplated aluminum coils, thus improving the coiling quality.
Smart Images

Figure CN224279151U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of electroplated aluminum production, specifically to an electroplated aluminum winding device. Background Technology
[0002] Hot stamping foil, also known as electroplated aluminum foil, is a special transfer decorative material widely used in printing and packaging, gift decoration, labeling, textiles, and plastic products. It is not produced through electrolytic aluminum processing, but rather gets its name from the metallic aluminum sheen it exhibits.
[0003] After production, electroplated aluminum is generally wound up by a winding device. During winding, the electroplated aluminum is wound onto the winding roller. However, existing winding rollers are usually limited to the winding device, and the disassembly and assembly process is relatively cumbersome. This can lead to the problem of inconvenience in removing the wound electroplated aluminum coil. During the winding process, various factors may cause wrinkles in the electroplated aluminum, which can lead to a decrease in winding quality. Utility Model Content
[0004] The purpose of this invention is to provide an electroplated aluminum winding device to solve the problems mentioned in the background art.
[0005] To achieve the above objectives, this utility model provides the following technical solution: an electroplated aluminum winding device, comprising a base, a winding roller located above the base, and supports fixedly mounted above the base and located on the left and right sides of the winding roller. The supports are provided with mounting components and auxiliary components. The mounting components include a motor fixedly mounted on the supports, a bearing seat A fixedly mounted on the supports, a rotating sleeve rotatably mounted on the bearing seat A, a retaining ring A fixedly mounted below the rotating sleeve, a retaining ring B located above the retaining ring A and rotatably connected to it, and screws. The motor output shaft is fixedly connected to the rotating sleeve. The left and right ends of the winding roller are inserted between the retaining ring A and the retaining ring B, and abut against them. A round sleeve and a threaded sleeve are fixedly mounted on the front sides of the retaining ring A and the retaining ring B, respectively. The screw is inserted into the round sleeve and then screwed into the threaded sleeve to fix it to the retaining ring A and the retaining ring B. The auxiliary components include a bearing seat B located above the winding roller, an auxiliary roller rotatably mounted on the bearing seat B, and a spring. A through groove is provided on the supports. The bearing seat B is located within the through groove and slidably connected to the supports. The upper and lower ends of the spring are fixedly connected to the top wall of the through groove and the bearing seat B, respectively.
[0006] Preferably, a sliding strip is fixedly provided on both the front and rear side walls of the through groove, and a sliding groove is provided on both the front and rear side walls of the bearing seat B, wherein the sliding strip is inserted into the sliding groove and slidably connected to the bearing seat B.
[0007] Preferably, the retaining ring A has a rotating groove inside that matches the retaining ring B, and the retaining ring B is inserted into the rotating groove and rotatably connected to the retaining ring A.
[0008] Preferably, a positioning block is fixedly provided on the inner side of the retaining ring A, and a groove matching the positioning block is provided on the take-up roller. The positioning block is inserted into the groove on the take-up roller and abuts against the take-up roller.
[0009] Preferably, a plurality of rubber strips are fixedly provided on the inner side of the retaining ring B, and when the left and right ends of the take-up roller are inserted between the retaining ring A and the retaining ring B, the rubber strips are in contact with the take-up roller.
[0010] Preferably, a magnet is fixedly disposed below the circular sleeve, a magnetic groove is formed on the retaining ring A, an iron sheet is fixedly disposed on the bottom wall of the magnetic groove, and the circular sleeve is inserted into the magnetic groove so that the magnet is magnetically connected to the iron sheet on the bottom wall of the magnetic groove.
[0011] Preferably, the top wall of the screw has a hexagonal groove, and the outer side of the screw has anti-slip texture.
[0012] The beneficial effects of this utility model are as follows: The starting end of the electroplated aluminum is fixedly connected to the take-up roller and the auxiliary roller, with the bottom of the auxiliary roller in contact with the electroplated aluminum. Starting the motor drives the rotating sleeve to rotate, which in turn drives the retaining rings A and B to rotate, thereby rotating the take-up roller to wind up the electroplated aluminum. During the winding process, the auxiliary roller rolls the electroplated aluminum, preventing wrinkles. As the electroplated aluminum roll continues to wind, its diameter increases, pushing the auxiliary roller upwards without affecting the winding process and compressing the spring. When the electroplated aluminum needs to be removed after winding, the screw is loosened. The take-up roller can be detached by removing the screw sleeve and rotating the retaining ring B to separate it from the take-up roller. This facilitates the removal of the take-up roller and the electroplated aluminum coil. At this time, the spring returns and pushes the auxiliary roller back to its original position, achieving automatic reset. In summary, this invention has the beneficial effects of facilitating the removal of the electroplated aluminum coil and preventing wrinkles in the electroplated aluminum. It solves the problem that existing take-up rollers are usually limited to the take-up device, and the disassembly and assembly process is relatively cumbersome, making it inconvenient to remove the finished electroplated aluminum coil. During the take-up process, various factors may cause wrinkles in the electroplated aluminum, leading to a decrease in take-up quality. Attached Figure Description
[0013] Appendix Figure 1 This is a front view of the present invention;
[0014] Appendix Figure 2 This is a schematic diagram of the structure of this utility model;
[0015] Appendix Figure 3 This is a schematic diagram of the installation component structure of this utility model;
[0016] Appendix Figure 4 This is an open structural diagram of the installation components of this utility model.
[0017] In the diagram: 1. Base; 2. Take-up roller; 3. Bracket; 4. Motor; 5. Bearing seat A; 6. Rotating sleeve; 7. Clamping ring A; 8. Clamping ring B; 9. Screw; 10. Round sleeve; 11. Screw sleeve; 12. Bearing seat B; 13. Auxiliary roller; 14. Spring; 15. Through groove; 16. Sliding strip; 17. Sliding groove; 18. Rotating groove; 19. Positioning block; 20. Rubber strip; 21. Magnet; 22. Magnetic groove; 23. Hexagonal groove; 24. Anti-slip texture. Detailed Implementation
[0018] The technical solutions of the present invention will be clearly and completely described below with reference to the accompanying drawings of the embodiments of the present invention.
[0019] like Figure 1-4As shown, this utility model discloses an electroplated aluminum winding device, including a base 1, a winding roller 2 located above the base 1, and a bracket 3 fixedly mounted above the base 1 and located on the left and right sides of the winding roller 2. The bracket 3 is provided with an installation component and an auxiliary component. The installation component includes a motor 4 fixedly mounted on the bracket 3, a bearing seat A5 fixedly mounted on the bracket 3, a rotating sleeve 6 rotatably mounted on the bearing seat A5, a retaining ring A7 fixedly mounted below the rotating sleeve 6, a retaining ring B8 located above the retaining ring A7 and rotatably connected to the retaining ring A7, and a screw 9. The output shaft of the motor 4 is fixedly connected to the rotating sleeve 6. The winding roller 2... The left and right ends are inserted between the retaining rings A7 and B8 and are in contact with them. The front sides of the retaining rings A7 and B8 are respectively fixedly provided with a round sleeve 10 and a screw sleeve 11. The screw 9 is inserted into the round sleeve 10 and then screwed into the screw sleeve 11 to fix and connect with the retaining rings A7 and B8. The auxiliary component includes a bearing seat B12 located above the take-up roller 2, an auxiliary roller 13 rotatably set on the bearing seat B12, and a spring 14. The bracket 3 has a through groove 15. The bearing seat B12 is located in the through groove 15 and is slidably connected to the bracket 3. The upper and lower ends of the spring 14 are fixedly connected to the top wall of the through groove 15 and the bearing seat B12, respectively.During installation, the left and right ends of the take-up roller 2 are inserted between the retaining rings A7 and B8, so that the take-up roller 2 is in contact with the retaining rings A7 and B8. Rotating the retaining ring B8 causes the circular sleeve 10 to be inserted into the magnetic groove 22, causing the magnet 21 to be magnetically attracted to the iron sheet on the bottom wall of the magnetic groove 22, thus providing a pre-fixing effect. At this time, the circular sleeve 10 is directly above the screw sleeve 11, and the rubber strip 20 presses against the take-up roller 2, contacting it. The screw 9 is then inserted into the circular sleeve 10 and screwed into the screw sleeve 11, and the screw is tightened. 9. Secure the take-up roller 2 by clamping rings A7 and B8 together. Press the rubber strip 20 onto the take-up roller 2 and secure it to the take-up roller 2, completing the installation of the take-up roller 2. Pass the starting end of the electroplated aluminum through the space between the take-up roller 2 and the auxiliary roller 13, securing it to the take-up roller 2. The bottom of the auxiliary roller 13 contacts the electroplated aluminum. Start the motor 4 to rotate the rotating sleeve 6. The rotating sleeve 6 rotates the clamping rings A7 and B8, thereby rotating the take-up roller 2 to wind up the electroplated aluminum. The winding process... The auxiliary roller 13 rolls the electroplated aluminum, preventing wrinkles. As the electroplated aluminum coil continues to wind, its diameter increases, pushing the auxiliary roller 13 upwards without affecting winding and compressing the spring 14. When the electroplated aluminum is finished winding and needs to be removed, loosen the screw 9 to separate it from the screw sleeve 11, rotate the retaining ring B8 to separate it from the winding roller 2, and then remove the winding roller 2. This facilitates the removal of the electroplated aluminum coil. At this time, the spring 14 returns and pushes the auxiliary roller 13 back to its original position, achieving automatic reset. In summary, this invention has the beneficial effects of facilitating the removal of the electroplated aluminum coil and preventing wrinkles. It solves the problem that the existing winding roller 2 is usually limited to the winding device, making the disassembly and assembly process cumbersome and inconvenient to remove the wound electroplated aluminum coil. During the winding process, various factors may cause wrinkles in the electroplated aluminum, leading to a decrease in winding quality.
[0020] Preferably, slide bars 16 are fixedly provided on both the front and rear side walls of the through groove 15, and sliding grooves 17 are provided on both the front and rear side walls of the bearing seat B12. The slide bars 16 are inserted into the sliding grooves 17 and slidably connected to the bearing seat B12. Since the slide bars 16 are inserted into the sliding grooves 17 and slidably connected to the bearing seat B12, they serve to guide the auxiliary roller 13 when it slides.
[0021] Preferably, the retaining ring A7 has a rotating groove 18 inside that matches the retaining ring B8, and the retaining ring B8 is inserted into the rotating groove 18 and rotatably connected to the retaining ring A7. Because the retaining ring B8 is inserted into the rotating groove 18 and rotatably connected to the retaining ring A7, it facilitates the rotation of the retaining ring B8.
[0022] Preferably, a positioning block 19 is fixedly provided on the inner side of the retaining ring A7, and a groove matching the positioning block 19 is provided on the take-up roller 2. The positioning block 19 is inserted into the groove on the take-up roller 2 and abuts against the take-up roller 2. Since the positioning block 19 is inserted into the groove on the take-up roller 2 and abuts against the take-up roller 2, it facilitates the positioning and installation of the take-up roller 2. When the retaining ring A7 rotates, the positioning block 19 can also drive the take-up roller 2.
[0023] Preferably, a plurality of rubber strips 20 are fixedly provided on the inner side of the retaining ring B8. When the left and right ends of the take-up roller 2 are inserted between the retaining ring A7 and the retaining ring B8, the rubber strips 20 abut against and connect with the take-up roller 2. Since a plurality of rubber strips 20 are fixedly provided on the inner side of the retaining ring B8, when the screw 9 is tightened, the rubber strips 20 are pressed against the take-up roller 2 and fixedly connected to the take-up roller 2, which plays the role of pressing the take-up roller 2 to prevent it from shifting.
[0024] Preferably, a magnet 21 is fixedly disposed below the circular sleeve 10, and a magnetic groove 22 is formed on the retaining ring A7. An iron sheet is fixedly disposed on the bottom wall of the magnetic groove 22. The circular sleeve 10 is inserted into the magnetic groove 22, so that the magnet 21 is magnetically connected to the iron sheet on the bottom wall of the magnetic groove 22. Since the circular sleeve 10 is inserted into the magnetic groove 22, so that the magnet 21 is magnetically connected to the iron sheet on the bottom wall of the magnetic groove 22, it plays a role in pre-fixing the retaining ring B8, preventing the retaining ring B8 from moving, and positioning the circular sleeve 10 directly above the threaded sleeve 11, thus aligning the circular sleeve 10 and the threaded sleeve 11.
[0025] Preferably, the screw 9 has a hexagonal groove 23 on its top wall and anti-slip texture 24 on its outer side. The hexagonal groove 23 on the top wall and the anti-slip texture 24 on the outer side of the screw 9 facilitate the installation and removal of the screw 9.
[0026] The above description is only a preferred embodiment of the present utility model and is not intended to limit the present utility model. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of the present utility model should be included within the protection scope of the present utility model.
Claims
1. An electrochemical aluminum winding device, comprising a base (1), a winding roller (2) located above the base (1), a support (3) fixedly arranged above the base (1) and located on the left and right sides of the winding roller (2), characterized in that: The bracket (3) is provided with an installation component and an auxiliary component. The installation component includes a motor (4) fixedly mounted on the bracket (3), a bearing seat A (5) fixedly mounted on the bracket (3), a rotating sleeve (6) rotatably mounted on the bearing seat A (5), a retaining ring A (7) fixedly mounted below the rotating sleeve (6), a retaining ring B (8) located above the retaining ring A (7) and rotatably connected to the retaining ring A (7), and a screw (9). The output shaft of the motor (4) is fixedly connected to the rotating sleeve (6). The left and right ends of the take-up roller (2) are inserted between the retaining ring A (7) and the retaining ring B (8) and are in contact with them. The retaining ring A (7) and the retaining ring B (8) are... (8) A round sleeve (10) and a screw sleeve (11) are fixedly installed on the front side respectively. After the screw (9) is inserted into the round sleeve (10), it is screwed into the screw sleeve (11) and fixedly connected to the retaining ring A (7) and the retaining ring B (8). The auxiliary component includes a bearing seat B (12) located above the winding roller (2), an auxiliary roller (13) rotatably installed on the bearing seat B (12), and a spring (14). A through groove (15) is opened on the bracket (3). The bearing seat B (12) is located in the through groove (15) and is slidably connected to the bracket (3). The upper and lower ends of the spring (14) are fixedly connected to the top wall of the through groove (15) and the bearing seat B (12) respectively.
2. An electrochemical aluminium winding device according to claim 1, characterised in that: Slide bars (16) are fixedly installed on both the front and rear side walls of the through groove (15), and slide grooves (17) are opened on both the front and rear side walls of the bearing seat B (12). The slide bars (16) are inserted into the slide grooves (17) and slidably connected to the bearing seat B (12).
3. An electrochemical aluminum take-up device as defined in claim 1, wherein: The inner part of the retaining ring A (7) is provided with a rotating groove (18) that matches the retaining ring B (8). The retaining ring B (8) is inserted into the rotating groove (18) and rotatedly connected to the retaining ring A (7).
4. An electrochemical aluminum take-up device as defined in claim 1, wherein: A positioning block (19) is fixedly provided on the inner side of the retaining ring A (7). A groove matching the positioning block (19) is provided on the take-up roller (2). The positioning block (19) is inserted into the groove on the take-up roller (2) and abuts against the take-up roller (2).
5. The electroplated aluminum winding device according to claim 1, characterized in that: Several rubber strips (20) are fixedly arranged on the inner side of the retaining ring B (8). When the left and right ends of the take-up roller (2) are inserted between the retaining ring A (7) and the retaining ring B (8), the rubber strips (20) abut against the take-up roller (2).
6. The electroplated aluminum winding device according to claim 1, characterized in that: A magnet (21) is fixedly installed below the sleeve (10), and a magnetic groove (22) is opened on the ring A (7). An iron sheet is fixedly installed on the bottom wall of the magnetic groove (22). The sleeve (10) is inserted into the magnetic groove (22) so that the magnet (21) is magnetically connected to the iron sheet on the bottom wall of the magnetic groove (22).
7. The electroplated aluminum winding device according to claim 1, characterized in that: The screw (9) has a hexagonal groove (23) on its top wall and anti-slip texture (24) on its outer side.