Adjustable winding device for steel wire machining
By designing a winding device for steel wire processing with an automatic lifting mechanism, the problem that existing devices are inconvenient to automatically disassemble the winding sleeve is solved, and automatic disassembly is realized, reducing the workload and time of the operator.
Patent Information
- Application Number
- CN202421865379.8
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2024-08-03
- Publication Date
- 2025-06-20
- Estimated Expiration
- 2034-08-03
AI Technical Summary
The existing winding device for steel wire processing is inconvenient for automatic disassembly of the winding sleeve when used, which increases the workload and fatigue of the operator.
An adjustable steel wire processing winding device is designed, which drives the threaded rod to rotate through the first motor, drives the threaded block to move forward and backward, and then drives the connecting rod and short rod to lift and lower, realizing automatic fixing and disassembly of the winding sleeve and the hollow rotary shaft.
It realizes that the winding sleeve is automatically removed after the wire winding is completed, reducing the workload and time of the operator and improving operational convenience.
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Figure CN222999394U_ABST
Abstract
Description
Technical Field
[0001] The utility model relates to the technical field of wire processing, in particular to an adjustable wire winding device for wire processing. Background Technique
[0002] Wire is one of the four major varieties of steel products, namely plates, tubes, profiles, and wires. It is a reprocessed product made by cold drawing hot-rolled wire rods. The main production processes include raw material selection, removal of scale, drying, coating treatment, heat treatment, wire drawing, plating treatment, etc.
[0003] Classified by cross-sectional shape, wires mainly include round, square, rectangular, triangular, elliptical, flat, trapezoidal, Z-shaped, etc.; classified by size: there are extra-fine, finer, fine, medium, thick, coarser, extra-thick; classified by strength: there are low-strength, lower-strength, ordinary-strength, higher-strength, high-strength, extra-high-strength; classified by use: ordinary-quality wires include wires for electrodes, nails, wire meshes, packaging, and printing industries, cold-heading wires for cold-heading rivets, screws, etc., electrical wires including special wires for producing overhead communication lines, steel-core aluminum stranded wires, etc., wires for the textile industry including coarse combs, heddles 013, card clothing, and needle wires, wire ropes for producing wire ropes and spokes, spring wires including those for springs and spring washers, piano wires, and wires for tires, cord fabrics, and conveyor belts, structural wires for the watch industry, ball bearings, and easy-cutting wires for automatic machines, stainless steel wires including stainless steel wires for the above-mentioned uses and surgical implant wires, resistance alloy wires for heater elements and resistance elements, and tool wires including reinforcing bar wires and shoemaking wires.
[0004] After the wire is formed, in order to facilitate the placement or transportation of the wire, people usually wind the wire. Application No.: 202321541211.7 discloses a winding device for wire coil processing, including components such as a rotating shaft, a winding sleeve, a fixing key, an installation groove, and an annular partition, enabling the device to separate the winding parts of each wire, preventing the wires from being wound in a mess during winding, thereby improving the winding efficiency of the wire. However, when using this device, the operator needs to first sleeved the winding sleeve on the side surface of the rotating shaft, and then six wires are wound around six different winding sleeves. After the winding is completed, the operator also needs to manually remove the six winding sleeves from the side surface of the rotating shaft in sequence. After a long time, during the installation and disassembly of the winding sleeve, it will not only increase the workload of the operator but also bring fatigue to the operator, thus causing inconvenience to the operator.
[0005] Therefore, it is necessary to provide an adjustable wire winding device for wire processing to solve the above technical problems. Summary of the Utility Model
[0006] The utility model provides an adjustable wire winding device for wire processing, which solves the problem that in the related art, when some existing wire winding devices for wire processing are in use, it is inconvenient to automatically disassemble the winding sleeve.
[0007] To solve the above technical problems, an adjustable wire winding device for wire processing provided by the utility model includes: a mounting table horizontally placed and provided with four support legs at the bottom, and a rotating mechanism and a fixing mechanism are arranged on the upper surface of the mounting table;
[0008] The rotating mechanism includes a first fixing frame vertically placed and fixed on the right side of the upper surface of the mounting table by bolts. A first through groove is arranged inside the first fixing frame. A first telescopic rod vertically placed with its extending end downward is arranged at the top of the first fixing frame. The extending end of the first telescopic rod is fixed with a first slider vertically placed. Two vertically placed first sliding rods are arranged inside the first fixing frame. The circumferences of the two first sliding rods are both slidably connected to the inner side of the first slider. A short round rod longitudinally placed is rotatably connected inside the first slider. The rear side of the short round rod is fixed with a rotating shaft horizontally placed through two short plates. A hollow rotating shaft longitudinally placed is fixed on the circumference of the rotating shaft.
[0009] The fixing mechanism includes three round holes arranged at the top of the hollow rotating shaft. A first motor longitudinally placed with its output end forward is fixed at the rear side of the hollow rotating shaft. The output end of the first motor penetrates through the rear side of the hollow rotating shaft and extends into the hollow rotating shaft. The output end of the first motor is fixed with a threaded rod longitudinally placed. Three fixing blocks are fixed on the circumference of the threaded rod. Three thread blocks that can move back and forth are threadedly connected to the circumference of the threaded rod. The three thread blocks are respectively located at the rear sides of the three fixing blocks. Connecting rods are rotatably connected to the tops of the three fixing blocks and the tops of the three thread blocks. The tops of the six connecting rods are rotatably connected to three short rods.
[0010] Preferably, a second motor for driving the rotating shaft to rotate is fixed on the right side of the right short plate. Three winding sleeves are sleeved on the circumference of the hollow rotating shaft. Round holes are arranged at the tops of the three winding sleeves.
[0011] Preferably, a third motor for driving the short round rod to rotate is fixed on the front surface of the first slider. A vertical plate vertically placed is fixed on the rear side of the mounting table by bolts. Two second telescopic rods longitudinally placed with their extending ends forward are arranged inside the vertical plate.
[0012] Preferably, the extension ends of the two second telescopic rods are fixed with vertically placed second fixing frames. A through groove consistent with the first through groove is arranged inside the second fixing frames. The tops of the second fixing frames are fixed with vertically placed third telescopic rods with their extension ends facing downwards. The extension ends of the third telescopic rods are fixed with second sliders. Two vertically placed second sliding rods are fixed inside the second fixing frames. The inner sides of the second sliders are slidably connected to the peripheral sides of the two second sliding rods. A hollow placement ring is arranged inside the second sliders.
[0013] Preferably, three longitudinally placed screws are rotatably connected to the left side of the upper surface of the mounting table through two support plates. Third sliding rods are fixed to the opposite sides of the two support plates and on the right side of the three screws. Threaded blocks that can move back and forth are threadedly connected to the peripheral sides of the three screws. The inner sides of the three threaded blocks are respectively slidably connected to the peripheral sides of the three third sliding rods. Limiting rings are fixed to the upper surfaces of the three threaded blocks. Three fourth motors for driving the three screws to rotate are arranged on the front surface of the front support plate.
[0014] Preferably, a second through groove is arranged at the top of the mounting table. A placement box is fixed to the bottom of the mounting table and at the bottom of the second through groove.
[0015] Compared with the related art, an adjustable wire processing winding device provided by the present utility model has the following beneficial effects:
[0016] The present utility model provides an adjustable wire processing winding device. The rotation of the output end of the first motor drives the threaded rod to rotate, thereby driving the threaded block to move back and forth, further driving the connecting rod to move, and further driving the short rod to rise or fall, fixing or disassembling the winding sleeve and the hollow rotating shaft. The structure is simple and practical, enabling the device to automatically disassemble the winding sleeve after the wire winding is completed, reducing the workload of the operator and saving operation time, thus bringing convenience to the operator. BRIEF DESCRIPTION OF THE DRAWINGS
[0017] Figure 1 is a schematic structural diagram of a preferred embodiment of an adjustable wire processing winding device provided by the present utility model;
[0018] Figure 2 is Figure 1 a schematic structural diagram of the left view of the first fixing frame shown;
[0019] Figure 3 is Figure 1 a schematic structural diagram of the right view cross-section of the hollow rotating shaft shown;
[0020] Figure 4 is Figure 1 a schematic structural diagram of the right view of the vertical plate shown.
[0021] Reference numerals in the figure: 1, mounting table; 2, rotating mechanism; 3, fixing mechanism; 21, first fixing frame; 22, first through groove; 23, first telescopic rod; 24, first slider; 25, first sliding rod; 26, short round rod; 27, rotating shaft; 28, hollow rotating shaft; 29, second motor; 31, round hole; 32, first motor; 33, threaded rod; 34, fixing block; 35, threaded block; 36, connecting rod; 37, short rod; 38, winding sleeve; 4, third motor; 5, vertical plate; 6, second telescopic rod; 7, second fixing frame; 8, third telescopic rod; 9, second slider; 10, second sliding rod; 11, hollow placing ring; 12, screw; 13, third sliding rod; 14, screw block; 15, limiting ring; 16, fourth motor; 17, second through groove; 18, placing box. Specific embodiments
[0022] The present invention will be further described below in conjunction with the drawings and embodiments.
[0023] Please refer to Figure 1 , Figure 2 , Figure 3 and Figure 4 , wherein Figure 1 is a schematic structural diagram of a preferred embodiment of an adjustable wire processing winding device provided by the present invention; Figure 2 is Figure 1 a schematic structural diagram of the left view of the first fixing frame shown in Figure 3 is Figure 1 a schematic structural diagram of the right view cross-section of the hollow rotating shaft shown in Figure 4 is Figure 1 a schematic structural diagram of the right view of the vertical plate shown in , an adjustable wire processing winding device, comprising: a mounting table 1 horizontally placed and provided with four support legs at the bottom, and a rotating mechanism 2 and a fixing mechanism 3 are arranged on the upper surface of the mounting table 1.
[0024] By providing the mounting table 1, it is used to fix all components of the device. The rotating mechanism 2 is provided to drive the winding sleeve 38 to rotate for wire winding work. The fixing mechanism 3 is provided to automatically fix and automatically release the fixing of the winding sleeve 38.
[0025] The rotating mechanism 2 includes a first fixing frame 21 which is vertically placed and fixed to the upper surface of the mounting table 1 on the right side by bolts. A first through groove 22 is provided inside the first fixing frame 21. At the top of the first fixing frame 21, a first telescopic rod 23 which is vertically placed with its extending end downward is provided. The extending end of the first telescopic rod 23 is fixed with a first slider 24 which is vertically placed. Inside the first fixing frame 21, two vertically placed first sliding rods 25 are provided. The circumferential sides of the two first sliding rods 25 are both slidably connected to the inner side of the first slider 24. Inside the first slider 24, a longitudinally placed short round rod 26 is rotatably connected. The rear side of the short round rod 26 is fixed with a laterally placed rotating shaft 27 through two short plates. The circumferential side of the rotating shaft 27 is fixed with a longitudinally placed hollow rotating shaft 28.
[0026] By setting the first fixing frame 21, it is used to fix components such as the first telescopic rod 23 and the first slider 24. By setting the first through groove 22, it is convenient for the first slider 24 to slide inside the first fixing frame 21. The setting of the first telescopic rod 23 is used to adjust the height of the first slider 24, so that the device can adjust the height of the hollow rotating shaft 28 according to the thickness of the steel wire to be wound as needed. The setting of the first slider 24 is used to fix the third motor 4 and the short round rod 26. The setting of the first sliding rod 25 has the functions of guiding and increasing stability. The setting of the short round rod 26 is used to connect the rotating shaft 27, so that when the short round rod 26 rotates, it drives the rotating shaft 27 and the hollow rotating shaft 28 to rotate to wind the steel wire. The setting of the rotating shaft 27 is convenient for the hollow rotating shaft 28 to rotate around the rotating shaft 27 as the center, which is convenient for installing and automatically disassembling the winding sleeve 38. The setting of the hollow rotating shaft 28 is used to drive the winding sleeve 38 to rotate when rotating.
[0027] The fixing mechanism 3 includes three circular holes 31 provided at the top of the hollow rotating shaft 28. At the rear side of the hollow rotating shaft 28, a first motor 32 which is longitudinally placed with its output end forward is fixed. The output end of the first motor 32 penetrates the rear side of the hollow rotating shaft 28 and extends into the inside of the hollow rotating shaft 28. The output end of the first motor 32 is fixed with a longitudinally placed threaded rod 33. The circumferential side of the threaded rod 33 is fixed with three fixing blocks 34. The circumferential side of the threaded rod 33 is threadedly connected with three threaded blocks 35 which can move back and forth. The three threaded blocks 35 are respectively located at the rear sides of the three fixing blocks 34. The tops of the three fixing blocks 34 and the tops of the three threaded blocks 35 are both rotatably connected with connecting rods 36. The tops of the six connecting rods 36 are rotatably connected with three short rods 37.
[0028] By setting the round holes 31, it is convenient for the short rod 37 to penetrate through the hollow rotating shaft 28 and the winding sleeve 38, facilitating the short rod 37 to fix the winding sleeve 38 on the circumferential side of the hollow rotating shaft 28. The setting of the first motor 32 is used to provide the power for the rotation of the threaded rod 33. By setting the threaded connection between the threaded rod 33 and the threaded block 35, it can meet the requirement that when the threaded rod 33 rotates, it drives the threaded block 35 to move back and forth along the circumferential side of the threaded rod 33. By setting the fixed block 34, the threaded block 35 and the connecting rod 36 to cooperate with each other, the height of the short rod 37 can be adjusted.
[0029] On the right side of the right short board, a second motor 29 for driving the rotating shaft 27 to rotate is fixed. Three winding sleeves 38 are sleeved on the circumferential side of the hollow rotating shaft 28, and round holes 31 are arranged at the tops of the three winding sleeves 38.
[0030] The setting of the second motor 29 is used to provide the power for the rotation of the rotating shaft 27, and the setting of the winding sleeve 38 is used to place the steel wire.
[0031] On the front surface of the first slider 24, a third motor 4 for driving the short round rod 26 to rotate is fixed. At the rear side of the installation table 1, a vertically placed vertical plate 5 is fixed by bolts, and two second telescopic rods 6 placed longitudinally with their extending ends facing forward are arranged inside the vertical plate 5.
[0032] By setting the third motor 4, it is used to provide the power for the rotation of the short round rod 26. The setting of the vertical plate 5 is used to fix the second telescopic rod 6, and the setting of the second telescopic rod 6 is used to adjust the front and rear positions of the second fixing frame 7.
[0033] The extending ends of the two second telescopic rods 6 are fixed with a vertically placed second fixing frame 7. A through groove consistent with the first through groove 22 is arranged inside the second fixing frame 7. At the top of the second fixing frame 7, a vertically placed third telescopic rod 8 with its extending end facing downward is fixed. The extending end of the third telescopic rod 8 is fixed with a second slider 9. Two vertically placed second sliding rods 10 are fixed inside the second fixing frame 7. The inner side of the second slider 9 is slidably connected to the circumferential sides of the two second sliding rods 10, and a hollow placement ring 11 is arranged inside the second slider 9.
[0034] By setting the second fixing frame 7, it is used to fix components such as the third telescopic rod 8. The setting of the third telescopic rod 8 is used to adjust the height of the second slider 9. The setting of the second slider 9 is used to fix the hollow placement ring 11. The setting of the second sliding rod 10 is used to increase the stability when the second slider 9 moves up and down. The setting of the hollow placement ring 11 is used to place the rear end of the hollow rotating shaft 28 and support the hollow rotating shaft 28 at the rear end of the hollow rotating shaft 28.
[0035] On the left side of the upper surface of the installation table 1, three longitudinally placed screw rods 12 are rotatably connected through two support plates. On the opposite sides of the two support plates and on the right side of the three screw rods 12, third sliding rods 13 are fixed. The circumferential sides of the three screw rods 12 are all threadedly connected with screw blocks 14 that can move back and forth. The inner sides of the three screw blocks 14 are respectively slidably connected to the circumferential sides of the three third sliding rods 13. The upper surfaces of the three screw blocks 14 are all fixed with limiting rings 15. On the front surface of the front support plate, three fourth motors 16 are provided respectively for driving the three screw rods 12 to rotate.
[0036] By setting the threaded connection between the screw rod 12 and the screw block 14, it can be satisfied that when the screw rod 12 rotates, it drives the screw block 14 to move back and forth along the circumferential side of the screw rod 12. The setting of the third sliding rod 13 is used to maintain the stability of the back-and-forth movement of the screw block 14. The setting of the screw block 14 is used to drive the limiting ring 15 to move back and forth during the back-and-forth movement. The setting of the limiting ring 15 is used to limit the position of the steel wire, so that the steel wire can be wound in a specified direction during winding. The setting of the fourth motor 16 is used to provide the power for the rotation of the screw rod 12.
[0037] A second through groove 17 is provided at the top of the installation table 1. At the bottom of the installation table 1 and at the bottom of the second through groove 17, a placement box 18 is fixed.
[0038] By setting the second through groove 17, it is convenient for the hollow rotating shaft 28 to rotate downward and then release the winding sleeve 38 on its circumferential side and place it in the placement box 18. The top of the placement box 18 is provided with an opening.
[0039] The working principle of an adjustable wire processing winding device provided by the present utility model is as follows:
[0040] During use, adjust the extended ends of the first telescopic rod 23 and the third telescopic rod 8 so that the first slider 24 and the second slider 9 move in the same direction simultaneously. After adjusting the height of the hollow rotating shaft 28 to a suitable position, turn on the second motor 29. The output end of the second motor 29 rotates to drive the rotating shaft 27 to rotate. The rotation of the rotating shaft 27 drives the hollow rotating shaft 28 to rotate. Rotate the hollow rotating shaft 28 to the horizontal position. Slip the three winding sleeves 38 onto the specified position on the circumferential side of the hollow rotating shaft 28. Turn on the first motor 32. The output end of the first motor 32 rotates to drive the threaded rod 33 to rotate. The rotation of the threaded rod 33 drives the threaded block 35 to move forward, thereby driving the position of the connecting rod 36 and raising the short rod 37. Extend it to the outside through the circular hole 31 at the top of the hollow rotating shaft 28 and the winding sleeve 38. Fix the winding sleeve 38 on the circumferential side of the hollow rotating shaft 28. Then adjust the two second telescopic rods 6. The two second telescopic rods 6 move the second fixing frame 7 forward so that the rear end of the hollow rotating shaft 28 is placed inside the hollow placing ring 11. Finally, turn on the third motor 4. The output end of the third motor 4 rotates to drive the short round rod 26 to rotate, thereby driving the hollow rotating shaft 28 and the winding sleeve 38 to rotate, and thus performing the wire winding operation. After the winding is completed, move the second fixing frame 7 backward, and then rotate the rotating shaft 27 downward so that the rear end of the hollow rotating shaft 28 faces downward. Turn on the first motor 32. The output end of the first motor 32 rotates in the reverse direction, causing the threaded block 35 to move backward, thereby lowering the height of the short rod 37 and separating the winding sleeve 38 from the hollow rotating shaft 28. The winding sleeve 38 slides from the circumferential side of the hollow rotating shaft 28 into the placing box 18 for placement, thus completing the automatic disassembly of the winding sleeve 38.
[0041] Compared with the related art, an adjustable wire winding device for wire processing provided by the present utility model has the following beneficial effects:
[0042] The rotation of the output end of the first motor 32 drives the threaded rod 33 to rotate, thereby driving the threaded block 35 to move back and forth, further driving the connecting rod 36 to move, and further driving the short rod 37 to rise or fall, fixing or disassembling the winding sleeve 38 and the hollow rotating shaft 28. The structure is simple and practical, enabling the device to automatically disassemble the winding sleeve 38 after the wire winding is completed, reducing the workload of the operator and saving operation time, thus bringing convenience to the operator.
[0043] The above are only the embodiments of the present utility model, and do not limit the patent scope of the present utility model accordingly. Any equivalent structural or equivalent process transformation made by using the specification and drawings of the present utility model, or directly or indirectly applied in other related technical fields, shall be equally included in the patent protection scope of the present utility model.
Claims
1. An adjustable winding device for steel wire processing, characterized in that: include: A mounting platform (1) placed horizontally and provided with four supporting legs at the bottom, wherein a rotating mechanism (2) and a fixing mechanism (3) are provided on the upper surface of the mounting platform (1); The rotating mechanism (2) comprises a first fixing frame (21) fixed to the right side of the upper surface of the mounting platform (1) by bolts and placed vertically, a first through slot (22) being arranged inside the first fixing frame (21), a first telescopic rod (23) being placed vertically and with its extended end facing downward being arranged on the top of the first fixing frame (21), a first vertically placed slider (24) being fixed to the extended end of the first telescopic rod (23), two vertically placed first sliders (25) being arranged inside the first fixing frame (21), the peripheral side surfaces of the two first sliders (25) being slidably connected to the inner side of the first slider (24), a short round rod (26) being placed longitudinally being rotatably connected inside the first slider (24), a horizontally placed rotating shaft (27) being fixed to the rear side of the short round rod (26) through two short plates, and a hollow rotating shaft (28) being placed longitudinally being fixed to the peripheral side surface of the rotating shaft (27); The fixing mechanism (3) comprises three circular holes (31) arranged at the top of the hollow rotating shaft (28); a first motor (32) placed longitudinally and with an output end facing forward is fixed to the rear side of the hollow rotating shaft (28); the output end of the first motor (32) passes through the rear side of the hollow rotating shaft (28) and extends into the interior of the hollow rotating shaft (28); a threaded rod (33) placed longitudinally is fixed to the output end of the first motor (32); three fixing blocks (34) are fixed to the peripheral side of the threaded rod (33); three threaded blocks (35) that can move forward and backward are threadedly connected to the peripheral side of the threaded rod (33); the three threaded blocks (35) are respectively located at the rear sides of the three fixing blocks (34); the tops of the three fixing blocks (34) and the tops of the three threaded blocks (35) are rotatably connected to connecting rods (36); the tops of the six connecting rods (36) are rotatably connected to three short rods (37).
2. The adjustable wire winding device according to claim 1, characterized in that: A second motor (29) for driving the rotating shaft (27) to rotate is fixed to the right side of the short plate on the right side. Three winding sleeves (38) are sleeved on the circumferential side of the hollow rotating shaft (28). The tops of the three winding sleeves (38) are all provided with round holes (31).
3. The adjustable wire processing winding device according to claim 2, characterized in that: A third motor (4) for driving the short round rod (26) to rotate is fixed on the front side of the first sliding block (24), and a vertically placed vertical plate (5) is fixed to the rear side of the mounting platform (1) by bolts, and two second telescopic rods (6) placed longitudinally and with their extended ends facing forward are arranged inside the vertical plate (5).
4. The adjustable wire processing winding device according to claim 3, characterized in that: The extended ends of the two second telescopic rods (6) are fixed with a second fixing frame (7) placed vertically, a through groove consistent with the first through groove (22) is arranged inside the second fixing frame (7), a third telescopic rod (8) placed vertically with the extended end facing downward is fixed on the top of the second fixing frame (7), a second slider (9) is fixed to the extended end of the third telescopic rod (8), two second sliding bars (10) placed vertically are fixed inside the second fixing frame (7), the inner side of the second slider (9) is slidably connected with the peripheral side surfaces of the two second sliding bars (10), and a hollow placement ring (11) is arranged inside the second slider (9).
5. The adjustable wire processing winding device according to claim 4, characterized in that: The left side of the upper surface of the mounting platform (1) is rotatably connected to three longitudinally placed screw rods (12) through two support plates, and third sliding rods (13) are fixed on the opposite sides of the two support plates and located on the right sides of the three screw rods (12). The peripheral side surfaces of the three screw rods (12) are threadedly connected to screw blocks (14) that can move forward and backward. The inner sides of the three screw blocks (14) are respectively slidably connected to the peripheral side surfaces of the three third sliding rods (13). The upper surfaces of the three screw blocks (14) are fixed with limiting rings (15), and the front side of the front support plate is provided with three fourth motors (16) for driving the three screw rods (12) to rotate respectively.
6. The adjustable wire processing winding device according to claim 5, characterized in that: The top of the mounting platform (1) is provided with a second through slot (17), and a placement box (18) is fixed at the bottom of the mounting platform (1) and located at the bottom of the second through slot (17).
Citation Information
Patent Citations
Winding device for steel wire coil machining
CN220547468U