Automatic wheel feeding device for take-up equipment
By designing an automatic wheel-loading device and utilizing telescopic drive components and a rod structure to realize automatic loading and unloading of the spool, the problems of complex lifting and potential safety hazards in the prior art are solved, and safe and efficient loading and unloading of the spool is realized.
Patent Information
- Application Number
- CN202422906567.7
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-11-27
- Publication Date
- 2025-09-30
- Estimated Expiration
- 2034-11-27
AI Technical Summary
The existing steel cord production equipment has complex lifting and safety hazards during the winding process, especially the internal winding equipment, which is cumbersome to operate and difficult to achieve automated and safe I-spool loading and unloading.
An automatic wheel loading device is designed. The telescopic driving component and the rod structure are used to switch the spool support plate between the loading and unloading positions. The driving shaft is aligned with the spool shaft hole to realize the automatic loading and unloading of the spool, avoiding the use of a lifting device.
The system realizes safe and efficient automatic loading and unloading of the spool, improves the safety and simplicity of operation, and reduces the complexity of operation and safety risks.
Smart Images

Figure CN223397223U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of steel cord production, in particular to an automatic pulley-mounting device for wire-taking equipment. Background Art
[0002] Steel cord take-up equipment is specialized equipment that collects steel cord from production lines such as electroplating machines and arranges it onto reels, drums, or reels. Steel cord take-up equipment is typically equipped with an automatic tension control system to ensure constant tension during the take-up process, preventing deformation or damage to the cord caused by tension fluctuations.
[0003] At present, steel cord production equipment generally uses various types of cranes to lift the I-spool for winding. Since each rope-making equipment is different, the various lifting devices are different and there are many types. The lifting is complicated and there is a safety risk of falling off. For some internal winding equipment, the lifting is even more difficult and the operation is cumbersome, and there is a greater safety hazard. Therefore, there is an urgent need for an automatic wheel-loading device for winding equipment. Utility Model Content
[0004] In view of the technical problems existing in the steel cord take-up pulley in the prior art, the first aspect of the present invention proposes an automatic pulley device for a take-up device, comprising:
[0005] A rotating shaft is provided below the wire-taking device and is rotatably connected to the ground, wherein an outer wall of the rotating shaft is connected to a first rod and a second rod;
[0006] a telescopic driving component, a first end of which is connected to the ground and a second end of which is connected to the end of the second rod;
[0007] a spool supporting plate connected to the end of the first rod, the spool supporting plate being used to support the spool;
[0008] Spool transition plate;
[0009] In which, the telescopic driving component has an extended position and a retracted position. When the telescopic driving component is in the retracted position, the first rod is in a horizontal state, and the I-spool supporting plate is docked with the I-spool transition plate. When the telescopic driving component is in the extended position, the first rod is in an inclined state, and the I-spool supporting plate lifts the I-spool until the axial hole of the I-spool is aligned with the drive shaft of the wire-taking device.
[0010] Preferably, the spool supporting plate includes a first support plate and a second support plate, the first support plate is arranged in the extension direction of the first rod, and the second support plate is perpendicular to the first support plate.
[0011] Preferably, the length of the first support plate is greater than that of the second support plate.
[0012] Preferably, the length of the first support plate is greater than the radius of the spool.
[0013] Preferably, a limiting strip is provided at the end of the first support plate, and the length of the limiting strip from the second support plate is greater than the radius of the I-spool.
[0014] Preferably, a predetermined angle is formed between the first rod and the second rod, and when the first rod is in a horizontal state, the second rod is inclined upward.
[0015] Preferably, the length of the first rod is greater than the length of the second rod.
[0016] Preferably, the telescopic driving component includes a cylinder, the cylinder includes a cylinder body and a telescopic rod, and the line connecting the hinge point between the bottom of the cylinder body and the ground and the hinge point between the rotating shaft and the ground is parallel to the horizontal plane.
[0017] Compared with the prior art, the advantages of the present invention are:
[0018] The automatic wheel loading device proposed by the utility model has a telescopic driving component that drives rods at a certain angle to each other so that the I-wheel supporting plate can reach the loading position or the unloading position. At the unloading position, the empty I-wheel can be rolled onto the I-wheel supporting plate or the full I-wheel can be unloaded from the supporting plate. At the loading position, the driving shaft of the wire-taking device extends inward and is inserted into the shaft hole of the I-wheel. This loading and unloading method of the I-wheel does not require the use of a lifting device and has high safety. BRIEF DESCRIPTION OF THE DRAWINGS
[0019] The accompanying drawings are not intended to be drawn to scale. In the accompanying drawings, each identical or nearly identical component shown in various figures may be represented by the same reference numeral. For the sake of clarity, not every component is labeled in every figure. Embodiments of various aspects of the present invention will now be described by way of example and with reference to the accompanying drawings, in which:
[0020] Figure 1 This is a structural schematic diagram of the telescopic drive component in the automatic upper wheel device for the wire-taking device shown in the present invention in the retracted position;
[0021] Figure 2 This is a structural schematic diagram of the telescopic drive component in the automatic upper wheel device for the wire-taking device shown in the present invention in the extended position;
[0022] Figure 3 This is a schematic diagram of the shortening process of the telescopic drive component in the automatic upper wheel device for the wire-taking equipment shown in the present invention;
[0023] Figure 4 It is a structural schematic diagram of the I-shaped wheel supporting plate shown in the utility model. DETAILED DESCRIPTION
[0024] In order to better understand the technical content of the present invention, specific embodiments are given and described below with reference to the accompanying drawings.
[0025] Combine Figures 1 to 2 As shown, the first aspect of the present invention proposes an automatic wheel-loading device for a wire-taking device. It should be understood that when the drive shaft 5 of the wire-taking device is in a suspended position and the spool is on the ground, its shaft hole and the axis of the drive shaft 5 do not correspond. Therefore, the spool 100 needs to be raised to a certain height, and then the drive shaft 5 extends inward and is inserted into the shaft hole of the spool 100 before the spool 100 can be driven to rotate.
[0026] The automatic wheel loading device mainly includes a rotating shaft 1, a telescopic driving component 2 and a spool supporting plate 3. The spool supporting plate 3 is used to support the spool 100, and the telescopic driving component 2 is responsible for moving the spool supporting plate 3 to the spool loading position or unloading position.
[0027] Among them, the loading position refers to the position where the upper edge of the spool shaft hole corresponds to the axis of the drive shaft 5, and the unloading position refers to the position flush with the ground. At the unloading position, the spool can be rolled to enter the spool support plate 3 or move out of the spool support plate 3.
[0028] Furthermore, the rotating shaft 1 is arranged below the wire-winding device and is rotatably connected to the ground. The outer wall of the rotating shaft 1 is connected to a first rod 11 and a second rod 12 .
[0029] Specifically, shaft seats are provided at both ends of the rotating shaft 1 , and the shaft seats are installed on the ground. The rotating shaft 1 can rotate relative to the shaft seats.
[0030] The first end of the telescopic driving component 2 is connected to the ground, the second end of the telescopic driving component 2 is connected to the end of the second rod 12 , and the spool support plate 3 is connected to the end of the first rod 11 .
[0031] Thus, the rotating shaft 1 is connected to both the telescopic drive component 2 and the spool support plate 3. When the rotating shaft 1 rotates, the first rod 11 and the second rod 12 rotate synchronously around the axis of the rotating shaft 1. The telescopic drive component 2 acts as a driving component to drive the rotating shaft 1 to rotate. The telescopic drive component 2 has an extended position and a retracted position.
[0032] Combine Figure 1 As shown, when the telescopic driving component 2 is in the retracted position, the first rod 11 is in a horizontal state, and the I-spool supporting plate 3 is docked with the I-spool transition plate 4. At this time, the full-wheel I-spool 100 after winding can roll from the I-spool supporting plate 3 to the I-spool transition plate 4, or the empty-wheel I-spool can roll from the I-spool transition plate 4 to the I-spool supporting plate 3.
[0033] Combine Figure 2As shown, when the telescopic driving component 2 is in the extended position, the first rod 11 is in an inclined state, and the spool support plate 3 lifts the spool 100 to the upper edge of the axial hole of the spool and aligns it with the drive shaft 5 of the wire-taking device, wherein the front end of the drive shaft 5 is set to be conical. When the drive shaft 5 is extended, it contacts the axial hole of the spool 100 and slightly lifts the spool 100 until the axis of the axial hole of the drive shaft 5 and the spool 100 coincide. At this time, the drive shaft 5 presses the side end face of the spool, which can drive the spool to rotate.
[0034] Combine Figure 3 As shown, before the driving shaft 5 drives the spool to rotate, the telescopic driving component 2 is shortened, so that the spool supporting plate 3 is restored to the position of docking with the spool transition plate 4. When the spool is completed, the telescopic driving component 2 is extended again to lift the spool that has completed winding, and then shortened again to connect the spool supporting plate 3 with the spool transition plate 4. The fully wound spool rolls from the spool supporting plate 3 to the spool transition plate 4.
[0035] In an optional embodiment, the spool supporting plate 3 includes a first support plate 31 and a second support plate 32 . The first support plate 31 is arranged in the extension direction of the first rod 11 , and the second support plate 32 is perpendicular to the first support plate 31 .
[0036] In this way, the first support plate 31 and the second support plate 32 form an angle of 90°. When the I-shaped wheel is on the first support plate 31 , it will be limited by the second support plate 32 during the entire lifting process.
[0037] Optionally, the length of the first support plate 31 is greater than that of the second support plate 32 .
[0038] Furthermore, in order to ensure that the first support plate 31 provides stable support for the spool, the length of the first support plate 31 is greater than the radius of the spool 100 .
[0039] Combine Figure 4 As shown, a limiting strip 33 is provided at the end of the first support plate 31. The distance between the limiting strip 33 and the second support plate 32 is greater than the radius of the spool 100. In this way, the spool is limited on one side by the second support plate 32 and on the other side by the limiting strip 33, preventing the spool from rolling off the surface of the first support plate 31.
[0040] Optionally, a predetermined angle is formed between the first rod 11 and the second rod 12 , and when the first rod 11 is in a horizontal state, the second rod 12 is tilted upward.
[0041] In this way, the telescopic driving component 2 is conducive to applying force to the end of the second rod 12 to drive it to rotate.
[0042] The length of the first rod 11 is greater than the length of the second rod 12. In this way, the telescopic driving component 2 can achieve a larger upward displacement of the spool support plate 3 through a smaller telescopic length.
[0043] In an optional embodiment, the telescopic drive component 2 includes a cylinder, which includes a cylinder body 21 and a telescopic rod 22, and the line connecting the hinge point between the bottom of the cylinder body 21 and the ground and the hinge point between the rotating shaft 1 and the ground is parallel to the horizontal plane.
[0044] In combination with the above embodiments, the automatic wheel loading device proposed by the utility model, the telescopic driving component drives the rods at a certain angle to each other so that the I-wheel support plate can reach the loading position or the unloading position. In the unloading position, the empty I-wheel can be rolled to the I-wheel support plate or the full I-wheel can be unloaded from the support plate. In the loading position, the driving shaft of the wire-taking device extends inward and is inserted into the shaft hole of the I-wheel. This loading and unloading method of the I-wheel does not require the use of a lifting device and is highly safe.
[0045] While the present invention has been described above with reference to preferred embodiments, this is not intended to limit the present invention. Persons skilled in the art will readily appreciate that various modifications and variations may be made without departing from the spirit and scope of the present invention. Therefore, the scope of protection of the present invention shall be determined by the claims.
Claims
1. An automatic wheel-loading device for a wire-taking device, characterized in that: include: A rotating shaft (1) is arranged below the wire-reeling device and is rotatably connected to the ground, wherein the outer wall of the rotating shaft (1) is connected to a first rod (11) and a second rod (12); a telescopic driving component (2), a first end of which is connected to the ground, and a second end of which is connected to the end of the second rod (12); a spool supporting plate (3) connected to the end of the first rod (11), the spool supporting plate (3) being used to support the spool (100); Spool transition plate (4); The telescopic drive component (2) has an extended position and a retracted position. When the telescopic drive component (2) is in the retracted position, the first rod (11) is in a horizontal state, and the spool support plate (3) is docked with the spool transition plate (4). When the telescopic drive component (2) is in the extended position, the first rod (11) is in an inclined state, and the spool support plate (3) lifts the spool (100) until the shaft hole of the spool (100) is aligned with the drive shaft (5) of the wire take-up device.
2. The automatic wheel-loading device for wire-taking equipment according to claim 1, characterized in that: The spool support plate (3) comprises a first support plate (31) and a second support plate (32); the first support plate (31) is arranged in the extension direction of the first rod (11); and the second support plate (32) is perpendicular to the first support plate (31).
3. The automatic wheel-loading device for wire-taking equipment according to claim 2, characterized in that: The length of the first support plate (31) is greater than that of the second support plate (32).
4. The automatic wheel-loading device for wire-taking equipment according to claim 2, characterized in that: The length of the first support plate (31) is greater than the radius of the spool (100).
5. The automatic wheel-loading device for wire-taking equipment according to claim 2, characterized in that: A limiting strip (33) is provided at the end of the first support plate (31), and the length of the limiting strip (33) from the second support plate (32) is greater than the radius of the spool (100).
6. The automatic wheel-loading device for wire-taking equipment according to claim 1, characterized in that: A predetermined angle is formed between the first rod (11) and the second rod (12), and when the first rod (11) is in a horizontal state, the second rod (12) is inclined upward.
7. The automatic wheel-loading device for wire-taking equipment according to claim 6, characterized in that: The length of the first rod (11) is greater than the length of the second rod (12).
8. The automatic wheel-loading device for wire-taking equipment according to claim 1, characterized in that: The telescopic driving component (2) comprises a cylinder, which comprises a cylinder body (21) and a telescopic rod (22), and the line connecting the hinge point between the bottom of the cylinder body (21) and the ground and the hinge point between the rotating shaft (1) and the ground is parallel to the horizontal plane.