Moving auxiliary disc structure of winding machine
Through the L-shaped mobile jib structure and the automatic clamping system driven by cylinder, the problems of large installation space requirements and poor adaptability in the existing winding machines are solved, and rapid adaptation and high-precision winding are achieved.
Patent Information
- Application Number
- CN202521095632.0
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-05-30
- Publication Date
- 2025-07-22
- Estimated Expiration
- 2035-05-30
AI Technical Summary
The installation method of I-wheel reels in existing winders requires a large lateral operating space, resulting in inefficient layout of the workshop, cumbersome and time-consuming operation, and poor adaptability to I-wheel reels of different specifications, increasing equipment downtime and maintenance costs.
The L-shaped mobile auxiliary arm structure is adopted, including a fixed plate part and a clamping plate part, equipped with an adjustable mounting sleeve and a U-shaped frame and frame seat sliding structure. It is driven by the cylinder to realize automatic clamping and release of the clamping plate, adapt to different sizes of I-wheel reels, eliminate axial center deviation, and improve winding accuracy.
It realizes rapid adaptation of I-wheel reels in different sizes, reduces manual intervention, shortens installation time, and improves rolling accuracy and equipment layout efficiency.
Smart Images

Figure CN223133607U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of winding machines, in particular to a movable secondary disk structure of a winding machine. Background Art
[0002] In the existing technical field of winding machines, the spool is usually fixed on the main disk of the rotating boom of the winding machine by means of the cooperation of a threaded rod and a nut. This installation method requires a large lateral operation space, resulting in low efficiency of the workshop layout, and the staff needs to frequently adjust the position of the nut, which is cumbersome and time-consuming. Therefore, this application proposes a movable secondary disk structure installed on the rotating boom of the winding machine and cooperating with the main disk, which can quickly adapt to different specifications of spools. In addition, the traditional structure has poor adaptability to spools of different specifications, and multiple components need to be replaced or adjusted, increasing the equipment downtime and maintenance costs.
[0003] Therefore, it is necessary to provide a new movable secondary disk structure of a winding machine to solve the above technical problems. Summary of the Utility Model
[0004] To solve the above technical problems, the utility model provides a movable secondary disk structure of a winding machine.
[0005] The movable secondary disk structure of the winding machine provided by the utility model includes an L-shaped movable secondary arm, the L-shaped movable secondary arm includes a fixing plate part and a clamping plate part, the fixing plate part and the clamping plate part are fixedly connected and form an L-shaped structure, and a plurality of symmetrically distributed linear sliders are fixedly installed on the outer plate surface of the fixing plate part, and a linearly sliding linear slide rail is inserted on the collinear linear sliders;
[0006] An adjustable mounting bushing is installed on the clamping plate part, and a rotatably connected rotating shaft is inserted on the mounting bushing, and a clamping disk is fixedly installed on the rotating shaft.
[0007] Preferably, an installation cavity is formed on the clamping plate part, and an adjusting component is arranged in the installation cavity. The adjusting component includes a U-shaped frame, a frame seat is slidably connected in the U-shaped frame, the mounting bushing is installed in the frame seat, and a detachable side beam is installed on the opening side of the U-shaped frame.
[0008] Preferably, sliding grooves are formed on both side frame walls of the frame seat, the middle plate body of the U-shaped frame forms a middle connecting plate, and the middle connecting plate and the side beam are respectively inserted into the two sliding grooves formed on the frame seat and are slidably connected with the sliding grooves.
[0009] Preferably, threaded through holes are formed on both side frame walls of the frame seat, and fastening screw rods are inserted into the threaded through holes.
[0010] Preferably, the sides of the clamping plate portion are bent inward, the U-shaped frame is inserted into the clamping plate portion and is slidably connected to the clamping plate portion, and the bent portion of the clamping plate portion and the upper and lower frames of the U-shaped frame are provided with a number of evenly distributed locking holes, and fastening bolts are inserted into the locking holes.
[0011] Preferably, the reel movable sub-disk structure further comprises a cylinder, which is fixedly mounted on the reel rotating arm through a frame, and the output end of the cylinder is fixedly connected to the end surface of the fixed plate portion;
[0012] The linear slide rail is fixedly mounted on the rotating arm of the winder, and the linear slide rail is arranged parallel to the cylinder.
[0013] Preferably, reinforcing ribs are fixedly installed at the connection between the fixed plate portion and the clamping plate portion.
[0014] Preferably, a protective cover for protecting the mounting sleeve is fixedly mounted on the back side of the clamping plate portion.
[0015] Compared with the related art, the mobile sub-disk structure of the winder provided by the utility model has the following beneficial effects:
[0016] The utility model discloses that the L-shaped movable auxiliary arm is provided with a mounting sleeve which can be adjusted horizontally and vertically on the clamping plate part, and cooperates with the U-shaped frame and the frame seat sliding structure in the adjustment component, so as to quickly adapt to the I-shaped wheel drum of different sizes, eliminate the axial deviation between the clamping disk and the main disk, and improve the winding accuracy of the coiled material; and the L-shaped movable auxiliary arm is driven by the cylinder to slide along the linear slide rail, so as to realize the automatic clamping and releasing of the clamping disk, greatly reduce the manual intervention, and shorten the installation time. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 This is one of the structural schematic diagrams of a preferred embodiment of the mobile auxiliary disk structure of the winder provided by the utility model;
[0018] Figure 2 A second structural schematic diagram of a preferred embodiment of the mobile auxiliary disk structure of the winder provided by the utility model;
[0019] Figure 3 for Figure 1 A schematic structural diagram of the clamping plate portion shown;
[0020] Figure 4 for Figure 1 A schematic diagram of the structure of the regulating component shown;
[0021] Figure 5 The utility model is a schematic diagram of the installation structure on the rotating arm of the winder.
[0022] Reference numerals in the figure: 1. L-shaped movable auxiliary arm; 11. Fixed plate part; 12. Clamping plate part; 12a. Locking hole; 12b. Installation cavity; 13. Reinforcing rib; 2. Linear slider; 3. Linear slide rail; 4. Installation bushing; 5. Adjusting assembly; 51. U-shaped frame; 511. Intermediate connecting plate; 512. Side beam; 52. Frame base; 6. Cylinder; 7. Protective cover; 8. Clamping disc. Detailed implementation mode
[0023] In order to make the purpose, technical solutions and advantages of the present utility model clearer, the following further details the present utility model in conjunction with the accompanying drawings and embodiments. It should be understood that the specific embodiments described herein are only used to explain the present utility model and are not used to limit the present utility model.
[0024] The following describes in detail the specific implementation of the present utility model in conjunction with specific embodiments.
[0025] Please refer to Figures 1 to 5 A winding machine movable sub-disk structure provided by an embodiment of the present utility model, the winding machine movable sub-disk structure includes an L-shaped movable auxiliary arm 1, an installation bushing 4 and an adjusting assembly 5.
[0026] In an embodiment of the present utility model, please refer to Figures 1 to 5 , the L-shaped movable auxiliary arm 1 includes a fixed plate part 11 and a clamping plate part 12. The fixed plate part 11 and the clamping plate part 12 are fixedly connected to form an L-shaped structure. A plurality of symmetrically distributed linear sliders 2 are fixedly installed on the outer plate surface of the fixed plate part 11. A linearly arranged linear slide rail 3 is inserted on the collinear linear sliders 2, and the linear slide rail 3 is fixedly installed on the rotating boom of the winding machine;
[0027] An adjustable-position installation bushing 4 is installed on the clamping plate part 12, and a rotatably connected rotating shaft is inserted on the installation bushing 4, and a clamping disc 8 is fixedly installed on the rotating shaft.
[0028] It should be noted that: when installing the spool drum, the outer sliding L-shaped movable auxiliary arm 1 is used, so that the L-shaped movable auxiliary arm 1 slides out along the linear slide rail 3 with the linear slider 2. At this time, one end of the spool drum is inserted into the main disk of the rotating boom of the winding machine, and then the inner sliding L-shaped movable auxiliary arm 1 is used to drive the linear slider 2 to slide in along the linear slide rail 3. Therefore, the clamping disc 8 on the L-shaped movable auxiliary arm 1 can cooperate with the main disk on the rotating boom of the winding machine to quickly clamp the spool drum, which is simple and fast.
[0029] Furthermore, the winding machine movable sub-disk structure further includes a cylinder 6. The cylinder 6 is fixedly installed on the rotating boom of the winding machine through a frame, and the output end of the cylinder 6 is fixedly connected to the end face of the fixed plate part 11, and the linear slide rail 3 is arranged in parallel with the cylinder 6. The arranged cylinder 6 realizes the flexible and fast clamping operation of the clamping disc 8 without manual operation.
[0030] Furthermore, a reinforcing rib 13 is fixedly installed at the connection between the fixed plate portion 11 and the clamping plate portion 12, thereby improving the connection strength between the fixed plate portion 11 and the clamping plate portion 12.
[0031] In an embodiment of the present utility model, please refer to Figures 1 to 4 , an installation cavity 12b is formed in the clamping plate portion 12, and an adjusting assembly 5 is arranged in the installation cavity 12b. The adjusting assembly 5 includes a U-shaped frame 51. A frame seat 52 is slidably connected in the U-shaped frame 51. The installation bushing 4 is installed in the frame seat 52. A detachable side beam 512 is installed on the open side of the U-shaped frame 51. Sliding grooves are formed on both side frame walls of the frame seat 52. The plate body in the middle of the U-shaped frame 51 constitutes a middle connection plate 511. The middle connection plate 511 and the side beam 512 are respectively inserted into the two sliding grooves formed in the frame seat 52 and are slidably connected with the sliding grooves. Threaded through holes are formed on both side frame walls of the frame seat 52, and fastening screws are inserted into the threaded through holes;
[0032] The side of the clamping plate portion 12 bends inwards. The U-shaped frame 51 is inserted into the clamping plate portion 12 and is slidably connected with the clamping plate portion 12. A plurality of uniformly distributed locking holes 12a are formed in the bending portions of the clamping plate portion 12 and the upper and lower frame edges of the U-shaped frame 51. Fastening bolts are inserted into the locking holes 12a.
[0033] It should be noted that: by sliding the U-shaped frame 51 left and right along the bending portion of the clamping plate portion 12, the position of the clamping disc 8 in the horizontal direction can be adjusted. By sliding the frame seat 52 up and down along the middle connection plate 511 and the side beam 512, the position of the clamping disc 8 in the height direction can be adjusted. With the locking mechanism of the locking holes 12a and the fastening bolts, the problem of non-coaxiality between the clamping disc 8 and the main disc can be effectively eliminated, and the winding precision of the coil can be improved.
[0034] Among them, a protective cover 7 for protecting the installation bushing 4 is fixedly installed on the back of the clamping plate portion 12, effectively protecting the installation bushing 4. The protective cover 7 can be fixed by welding or screws. The specific installation method can be set according to actual requirements. The rotating shaft is rotatably connected with the installation bushing 4 through a bearing. One end of the rotating shaft extends to the outside of the installation bushing and is provided with a shaft shoulder. The shaft shoulder abuts against the inner end face of the clamping disc 8. The other end is fixed by a shaft retaining ring or a locking nut to ensure that the clamping disc will not fall off during rotation.
[0035] In this application, an installation bush 4 that can be adjusted horizontally and vertically is provided on the clamping plate portion 12 of the L-shaped moving secondary arm 1. By cooperating with the sliding structure of the U-shaped frame 51 and the frame base 52 in the adjustment assembly 5, it can quickly adapt to spool drums of different sizes, eliminate the axial deviation between the clamping disc 8 and the main disc, and improve the winding accuracy of the coil material. By driving the L-shaped moving secondary arm 1 to slide along the linear slide rail 3 through the cylinder 6, automatic clamping and releasing of the clamping disc 8 are realized, greatly reducing manual intervention and shortening the installation time.
[0036] The circuits and controls involved in this utility model are all prior arts and will not be elaborated here.
[0037] The above are only the embodiments of this utility model, and thus do not limit the patent scope of this utility model. Any equivalent structure or equivalent process transformation made by using the content of the specification and drawings of this utility model, or directly or indirectly applied in other related technical fields, shall be equally included in the patent protection scope of this utility model.
Claims
1. A coiling machine moving sub-disk structure, characterized in that, It includes an L-shaped movable auxiliary arm (1), and the L-shaped movable auxiliary arm (1) includes a fixed plate portion (11) and a clamping plate portion (12). The fixed plate portion (11) and the clamping plate portion (12) are fixedly connected to form an L-shaped structure. A plurality of symmetrically distributed linear sliders (2) are fixedly installed on the outer plate surface of the fixed plate portion (11), and a linearly arranged linear slide rail (3) is inserted and slidably connected on the linear sliders (2). An axially adjustable mounting bushing (4) is installed on the clamping plate portion (12), and a rotatably connected rotating shaft is inserted into the mounting bushing (4), and a clamping disc (8) is fixedly installed on the rotating shaft.
2. The coiling machine moving sub-disk structure according to claim 1, characterized in that, An installation cavity (12b) is formed on the clamping plate portion (12), and an adjusting assembly (5) is arranged in the installation cavity (12b). The adjusting assembly (5) includes a U-shaped frame (51). A frame seat (52) is slidably connected in the U-shaped frame (51). The mounting bushing (4) is installed in the frame seat (52), and a detachable side beam (512) is installed on the open side of the U-shaped frame (51).
3. The take-up machine moving sub-disk structure according to claim 2, wherein, Chute grooves are formed on both side frame walls of the frame seat (52). The middle plate body of the U-shaped frame (51) forms a middle connecting plate (511), and the middle connecting plate (511) and the side beam (512) are respectively inserted into the two chute grooves formed on the frame seat (52) and are slidably connected with the chute grooves.
4. The coiling machine moving sub-disk structure according to claim 3, characterized in that, Threaded through holes are formed on both side frame walls of the frame seat (52), and fastening screws are inserted into the threaded through holes.
5. The take-up machine moving sub-disk structure according to claim 2, wherein The side of the clamping plate portion (12) is bent inward. The U-shaped frame (51) is inserted into the clamping plate portion (12) and is slidably connected with the clamping plate portion (12). A plurality of uniformly distributed locking holes (12a) are formed on the bent portion of the clamping plate portion (12) and the upper and lower frame edges of the U-shaped frame (51), and fastening bolts are inserted into the locking holes (12a).
6. The coiling machine moving sub-disk structure according to claim 1, characterized in that, The coiling machine movable auxiliary disc structure further includes a cylinder (6). The cylinder (6) is fixedly installed on the rotating boom of the coiling machine through a frame, and the output end of the cylinder (6) is fixedly connected to the end face of the fixed plate portion (11). The linear slide rail (3) is fixedly installed on the rotating boom of the coiling machine, and the linear slide rail (3) is arranged parallel to the cylinder (6).
7. The coiling machine moving secondary disc structure according to claim 1, characterized in that A reinforcing rib (13) is fixedly installed at the connection between the fixed plate portion (11) and the clamping plate portion (12).
8. The coiling machine moving sub-disk structure according to claim 1, characterized in that A protective cover (7) for protecting the mounting bushing (4) is fixedly installed on the back surface of the clamping plate portion (12).