Upward drawing wire arranging and winding linkage device
By designing an upward-drawing wire winding linkage device, flexible adjustment of the winding diameter and dynamic adaptation of the copper rod are achieved, solving the problems of cumbersome adjustment and uneven wire winding in traditional equipment, and improving production efficiency and the tightness of the copper rod coil.
Patent Information
- Application Number
- CN202511424051.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Patents(China)
- Current Assignee / Owner
- Filing Date
- 2025-09-30
- Publication Date
- 2026-01-02
- Estimated Expiration
- 2045-09-30
AI Technical Summary
Traditional copper rod winding equipment cannot adjust the winding space according to actual needs, resulting in long production downtime. In addition, copper rods are prone to problems such as wire misalignment, overlap, and loosening during the winding process.
The device employs an upward-drawing wire winding linkage mechanism, which uses a slide rail support frame, self-locking guide wheels, and an adjustable winding reel structure to achieve flexible adjustment of the winding diameter. It also applies uniform pressure to the copper rod through an external pressure component to adapt to the dynamic position changes of the copper rod.
It reduces equipment adjustment time, improves equipment versatility, avoids cable misalignment and collapse, and enhances production efficiency and the tightness of copper rod coils.
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Figure CN120885576B_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The present application relates to the technical field of wire winding, in particular to an up-drawing type wire winding linkage device. BACKGROUND
[0002] In the field of copper rod production and processing, the up-drawing method is a commonly used copper rod preparation process. The core process is to draw molten copper liquid into a copper rod through an up-drawing mechanism, and then to complete the finished product processing through subsequent processes such as straightening and winding. Among them, the winding link is a key step for connecting production and storage and transportation, and has very high requirements for the stability of the winding equipment, the regularity of the wire arrangement and the adaptability.
[0003] However, the current traditional copper rod winding equipment generally has the following technical defects: the traditional winding disc is mostly of fixed diameter structure, and cannot adjust the winding space according to the actual production needs (such as the requirements of different customers for the diameter and weight of the copper rod coil). If different specifications of winding finished products need to be replaced, the winding disc needs to be replaced as a whole, which not only is cumbersome to operate, but also causes the production downtime to be prolonged, seriously affecting the production efficiency.
[0004] The guide mechanism of the traditional equipment is mostly designed with fixed trajectory, and the copper rod is prone to problems such as wire arrangement deviation, overlapping and loosening during winding. Especially, the copper rod still has slight elastic deformation after straightening, and the fixed guide cannot adapt to the dynamic position change of the copper rod in real time, resulting in uneven tightness of the copper rod coil after winding, and the copper rod cannot be dynamically extruded during winding. SUMMARY
[0005] To achieve the above purpose, the present application is implemented through the following technical scheme: an up-drawing type wire winding linkage device, comprising a straightening machine and a guide rail, a copper rod subjected to the up-drawing method is straightened by the straightening machine and then wound on a winding device, a slide rail support frame is movably arranged on the guide rail, a self-locking guide wheel on the slide rail support frame is movably connected with a guide groove of the guide rail, a winding motor is fixedly installed on the inner side of the slide rail support frame, an inner frame is arranged at the output end of the winding motor, a winding disc is arranged on the outer side of the inner frame, a plurality of expansion grooves are equidistantly arranged on the surface of the winding disc, two groups of positioning assemblies are arranged on each group of expansion grooves, an intercepting rod is fixedly installed on the positioning assembly, an outer pressing assembly is arranged on the inner side of the inner frame, the outer pressing assembly is used in cooperation with one group of positioning assemblies, a pressure plate is sleeved on the outer side of the intercepting rod, the pressure plate is movably arranged with the outer pressing assembly, and the positioning assembly comprises a poking piece, the poking piece comprises a round rod cylinder and a poking rod.
[0006] Further, the positioning assembly comprises a sliding block, a telescopic hole, a locking pin, a reset spring, the sliding block is movably installed on the inner wall of the telescopic groove, the telescopic hole is symmetrically arranged on the side of the sliding block, the bottom end of the sliding block is provided with a circular hole and is in communication with the locking pin, the two ends of the reset spring are fixedly connected with the inner end of the locking pin, and the locking pin is connected with the pushing part.
[0007] Further, the inner end of the locking pin is connected with the pushing part, the circular rod barrel is in communication with the circular hole, the pushing rod is connected with the pushing lever through the rotating shaft, the rotating shaft is fixedly connected with the inner wall of the circular rod barrel, the pushing lever is movable with the rotating shaft, the end surface of the pushing lever is fixedly connected with the pulling steel wire, and the other end of the pulling steel wire is fixedly connected with the inner end of the locking pin.
[0008] Further, the outer pressing assembly comprises a pressing part, a rotating disc, an arc-shaped hole, a spiral hole, an L-shaped connecting rod and a hinged part, the rotating disc is arranged in the inner frame, the arc-shaped holes are equidistantly arranged on the surface of the rotating disc, the spiral hole is arranged on the center surface of the rotating disc, the L-shaped connecting rod is movably arranged on the inner side of the arc-shaped hole, the hinged part is movably arranged at one end of the L-shaped connecting rod, the other end of the hinged part is fixedly connected with the positioning assembly, and the pressing part is arranged at the bottom of the pressing disc.
[0009] Further, the pressing part comprises an extension rod, a threaded part, a U-shaped hole and a direction hole, the extension rod is fixedly installed at the bottom center position of the pressing disc, the threaded part is arranged on the outer side of the extension rod, the threaded part is in a straight line with the spiral hole, the spiral hole is movably connected with the threaded part, the direction hole is arranged on the surface of the pressing disc, and the U-shaped hole is arranged on the surface of the pressing disc.
[0010] Further, a plurality of groups of positioning holes are equidistantly arranged on the inner side wall of the telescopic groove, and the positioning holes are used in cooperation with the positioning assembly.
[0011] Further, the surface of the winding disc is fixedly installed with a wire clamp, the outer side of the intercepting rod is sleeved with a positioning spring, the inner diameter of the positioning spring is greater than the width of the U-shaped hole, and the initial state of the positioning spring is the original length state.
[0012] Further, the center position of the winding disc is provided with a mounting cavity, the mounting cavity is in communication with the telescopic groove, and the inner frame is fixedly connected with the side wall of the mounting cavity.
[0013] Further, a strip-shaped hole is arranged on the inner bottom wall of the telescopic groove, and the pushing assembly passes through the strip-shaped hole.
[0014] Further, the shape of the sliding block is rectangular, the intercepting rod is fixedly connected with the top of the sliding block, and the initial state of the sliding block is clamped with the telescopic groove.
[0015] Beneficial effects
[0016] The present application has the following advantages:
[0017] The device can flexibly adjust the effective winding diameter of the winding disc through the combination of the telescopic groove, the positioning assembly and the intercepting rod: the operator only needs to control the clamping state of the clamping pin and the positioning hole through the dial member (round rod cylinder, dial rod), so as to drive the sliding block to slide in the telescopic groove, and then change the extension length of the intercepting rod, so as to realize the free adjustment of the winding space. Without the need of replacing the winding disc as a whole, the winding demand of copper rods of different specifications can be adapted, the equipment adjustment time is greatly shortened, the production downtime loss is reduced, and the equipment versatility is improved.
[0018] The device is provided with a linkage guide structure of guide rail, sliding rail support frame and lock guide wheel, the sliding rail support frame can flexibly slide along the guide rail, the lock guide wheel is accurately matched with the guide groove of the guide rail, and the dynamic position change in the copper rod winding process can be adapted in real time, so as to avoid the deviation and overlap of the wire.
[0019] The lower pressing piece in the outer pressing assembly in the device can realize the stable lifting of the pressing disc through the cooperation of the threaded part and the spiral hole of the rotating disc, and can apply uniform pressure to the copper rod in the winding process; the outer pressing piece is arranged to extrude the sliding block in the telescopic groove outward, so that the intercepting rod extrudes the inner circle of the wound copper rod, so that the copper rod will not be wound back and collapsed; when the pressing disc is extruded by the wound copper pipe, the extension rod is driven downward and the threaded part is inserted into the spiral hole; since the threaded part and the spiral hole are spirally arranged, the threaded part will drive the rotating disc to rotate when it moves downward; when the rotating disc rotates, the L-shaped connecting rod will be driven under the driving of the arc-shaped hole, so that the L-shaped connecting rod moves in the outwardly expanded state; at this time, the L-shaped connecting rod is deflected to drive the sliding block arranged on the inner wall of the telescopic groove to move outward, so as to drive the intercepting rod to extrude the wound copper rod and prevent the copper rod from collapsing.
[0020] Of course, it is not necessary for any product implementing the present application to achieve all the advantages mentioned above. BRIEF DESCRIPTION OF DRAWINGS
[0021] Figure 1 It is a three-dimensional structure schematic diagram of the present application;
[0022] Figure 2 It is a part structure schematic diagram in the present application Figure One ;
[0023] Figure 3 It is a part structure schematic diagram in the present application Figure Two ;
[0024] Figure 4 It is a part structure schematic diagram in the present application Figure Three ;
[0025] Figure 5This is a schematic diagram of the winding reel and pressure plate and some of their structures in this invention;
[0026] Figure 6 This is an exploded view of the winding reel and pressure plate and some of their structures in this invention;
[0027] Figure 7 This is a partial structural diagram of the present invention. Figure Four ;
[0028] Figure 8 For the present invention Figure 7 Enlarged schematic diagram of section B in the middle;
[0029] Figure 9 This is a bottom view of the winding reel structure of the present invention;
[0030] Figure 10 This is a schematic diagram of the pressure plate and turntable structure in this invention;
[0031] Figure 11 For the present invention Figure 3 Enlarged schematic diagram of the structure of section A in the middle.
[0032] In the diagram, 1. Straightening machine; 2. Guide rail; 3. Rewinding reel; 4. Pressure plate; 5. Interceptor bar; 6. Stop bar; 7. Telescopic groove; 8. Slide rail support frame; 9. Rewinding motor; 10. Inner frame; 11. Turntable; 12. Extension rod; 13. Positioning hole; 14. L-shaped lever; 15. U-shaped hole; 16. Wire clamp; 17. Direction hole; 18. Threaded part; 19. Hinge part; 20. Arc-shaped hole; 21. Spiral hole; 22. L-shaped connecting rod; 23. Positioning spring; 24. Slider; 25. Telescopic hole; 26. Round cylinder; 27. Locking pin; 28. Return spring; 29. Pulling steel rope; 30. Rotating shaft; 31. Mounting cavity. Detailed Implementation
[0033] The technical solutions of the embodiments of the present invention will be clearly and completely described below with reference to the accompanying drawings. Obviously, the described embodiments are only some embodiments of the present invention, and not all embodiments. Based on the embodiments of the present invention, all other embodiments obtained by those skilled in the art without creative effort are within the scope of protection of the present invention.
[0034] In the description of this invention, it should be understood that the terms "opening", "upper", "lower", "thickness", "top", "middle", "length", "inner", "around", etc., which indicate orientation or positional relationship, are only for the convenience of describing this invention and simplifying the description, and do not indicate or imply that the components or elements referred to must have a specific orientation, or be constructed and operated in a specific orientation, and therefore should not be construed as limiting this invention.
[0035] Please seeFigures 1-11 The embodiment of the present application provides a technical scheme: the upper drawing type wire winding linkage device, including straightening machine 1 and guide rail 2, the copper rod through the upper drawing method is straightened through the straightening machine 1 and is wound on the winding device to be wound, the slide rail support frame 8 is movably arranged on the guide rail 2, the self-locking guide wheel on the slide rail support frame 8 is movably connected with the guide groove of the guide rail 2, the winding motor 9 is fixedly installed on the inner side of the slide rail support frame 8, the output end of the winding motor 9 is provided with the inner frame 10, the outer side of the inner frame 10 is provided with the winding disc 3, the surface of the winding disc 3 is provided with the expansion slot 7 at equal intervals, two groups of positioning assemblies are arranged on each group of expansion slots 7, the intercepting rod 5 is fixedly installed on the positioning assembly, the inner side of the inner frame 10 is provided with the outer pressure assembly, the outer pressure assembly is used in cooperation with a group of positioning assemblies, the outer side of the intercepting rod 5 is provided with the pressure plate 4, the pressure plate 4 is movably arranged with the outer pressure assembly, the positioning assembly comprises a poking member, the poking member comprises a round rod cylinder 26 and a poking rod 14, the round rod cylinder 26 is arranged at the bottom of the positioning assembly, the poking rod 14 is movably arranged on the round rod cylinder 26, and the swinging of the poking rod 14 controls the movement of the positioning assembly.
[0036] When the device is used, the copper rod manufactured through the upper drawing method is aligned and straightened through the straightening machine 1, the technology is prior art, after the copper rod is straightened, the end portion is clamped and fixed with the wire clamp 16 on the winding disc 3, then the winding motor 9 is energized to make it rotate at low speed, with the rotation of the winding disc 3, the copper rod wound on the pressure plate 4 and the winding disc 3 is stacked into a coil, and the stacked copper rod coil falls between the two groups of intercepting rods 5, wherein before winding, the slide rail support frame 8 is moved to the specified position along the guide rail 2, and the self-locking guide wheel at the bottom of the slide rail support frame 8 is locked;
[0037] With the winding of the copper rod, the gravity received by the pressure plate 4 gradually increases and extrudes the positioning spring 23 outside the intercepting rod 5 at the bottom of the pressure plate 4, when the positioning spring 23 is extruded, the pressure plate 4 moves downward, at this time, the extension rod 12 at the center position of the pressure plate 4 drives the threaded portion 18 to move downward, at this time, the threaded portion 18 drives the outer pressure assembly to rotate counterclockwise, at this time, the L-shaped connecting rod 22 in the outer pressure assembly extrudes the sliding block 24 outward, so that the sliding block 24 moves outward along the inner wall of the expansion slot 7, at this time, the positioning assembly arranged is in contact with the inner ring surface of the copper rod coil, and the intercepting rod 5 on the other group of positioning assemblies intercepts the outer ring surface of the copper rod coil, so that the copper rod wound is extruded to ensure that the winding is neat and does not collapse.
[0038] Specifically, the positioning assembly comprises a sliding block 24, a telescopic hole 25, a locking pin 27, a reset spring 28, the sliding block 24 is movably installed on the inner wall of the telescopic groove 7, the telescopic hole 25 is symmetrically arranged on the side of the sliding block 24, the bottom end of the sliding block 24 is provided with a round hole and is in communication with the locking pin 27, the two ends of the reset spring 28 are fixedly connected with the inner end of the locking pin 27, the locking pin 27 is connected with the pushing part, the shape of the sliding block 24 is rectangular, the intercepting rod 5 is fixedly connected with the top of the sliding block 24, and the initial state of the sliding block 24 is clamped with the telescopic groove 7;
[0039] The inner end of the locking pin 27 is connected with the pushing part, the round rod barrel 26 is arranged in communication with the round hole, the pushing rod 14 is connected with the pushing rod 14 through the rotating shaft 30, wherein the rotating shaft 30 is fixedly connected with the inner wall of the round rod barrel 26, the pushing rod 14 is movable with the rotating shaft 30, the end surface of the pushing rod 14 is fixedly connected with the pulling steel wire 29, and the other end of the pulling steel wire 29 is fixedly connected with the inner end of the locking pin 27.
[0040] In the embodiment, the positioning assembly is arranged to limit the intercepting rod 5 arranged on the top of the sliding block 24 arranged in the telescopic groove 7, the telescopic hole 25 arranged on the side of the sliding block 24 is arranged to provide space for the movement of the locking pin 27, and the locking pin 27 in the initial state is clamped with the positioning hole 13 of the side wall of the telescopic groove 7 under the extrusion of the reset spring 28, so that the sliding block 24 is positioned and the intercepting rod 5 on the sliding block 24 is always fixed and intercepts the copper rod to stack into a coil;
[0041] When it is necessary to adjust the size of the copper rod to be wound, before winding, the blocking rod 6 is inserted on the end surface of the sliding rail support frame 8, at this time, the blocking rod 6 extends along the diameter direction of the winding disc 3 and intersects with the pushing rod 14, wherein the blocking rod 6 can be discarded, the pushing rod 14 is manually pushed along with the rotation of the winding disc 3, the pushing rod 14 arranged at the bottom end of the winding disc 3 is gradually contacted with the blocking rod 6 and is turned over, the turned-over pushing rod 14 remains in an inclined state, at this time, the pulling steel wire 29 at one end of the pushing rod 14 pulls the locking pin 27 and drives the locking pin 27 to shrink into the telescopic hole 25, the reset spring 28 is extruded and stores a certain elastic potential energy, the telescopic hole 25 is separated from the positioning hole 13, when the last pushing rod 14 is pushed, the sliding block 24 arranged on the telescopic groove 7 can be adjusted, the distance between the two positioning assemblies is adjusted according to the winding requirement, then the pushing rod 14 is rotated again to reset and coincide with the round rod barrel 26, at this time, the pulling force of the pulling steel wire 29 at one end of the pushing rod 14 disappears, the locking pin 27 is reset under the elastic potential energy stored by the reset spring 28, expands outward along the telescopic hole 25 and is clamped with the positioning hole 13 of the inner wall of the telescopic groove 7 to realize positioning;
[0042] It should be noted that the number of positioning assemblies provided with the sliding block 24 of the telescopic groove 7 and the push rod 14 can be controlled artificially, and the number can be selected according to the thickness and size of the winding.
[0043] Specifically, the outer pressing assembly comprises a pressing piece, the rotating disc 11, the arc-shaped hole 20, the spiral hole 21, the L-shaped connecting rod 22, and the hinge 19. The rotating disc 11 is arranged in the inner frame 10. The arc-shaped hole 20 is circumferentially and equidistantly arranged on the surface of the rotating disc 11. The spiral hole 21 is arranged on the central surface of the rotating disc 11. The L-shaped connecting rod 22 is movably arranged on the inner side of the arc-shaped hole 20. The hinge 19 is movably arranged at one end of the L-shaped connecting rod 22. The other end of the hinge 19 is fixedly connected with the positioning assembly. The pressing piece is arranged at the bottom of the pressing disc 4.
[0044] The pressing piece comprises the extension rod 12, the threaded part 18, the U-shaped hole 15, and the direction hole 17. The extension rod 12 is fixedly arranged at the bottom center of the pressing disc 4. The threaded part 18 is arranged on the outer side of the extension rod 12. The threaded part 18 is in a straight line with the spiral hole 21. The spiral hole 21 is movably connected with the threaded part 18. The direction hole 17 is arranged on the surface of the pressing disc 4. The U-shaped hole 15 is arranged on the surface of the pressing disc 4.
[0045] In the embodiment, the outer pressing piece is arranged to extrude the sliding block 24 on the inner side of the telescopic groove 7 outward, so as to drive the intercepting rod 5 to extrude the inner circle of the wound copper rod, so as to prevent the copper rod from being wound back and collapsed. When the pressing disc 4 is extruded by the wound copper pipe, the extension rod 12 is driven downward, and the threaded part 18 is inserted into the spiral hole 21. Since the threaded part 18 and the spiral hole 21 are arranged in a spiral manner, the threaded part 18 is driven to rotate the rotating disc 11 when it moves downward. The rotating disc 11 drives the L-shaped connecting rod 22 to move outward when it rotates, so as to drive the sliding block 24 arranged on the inner wall of the telescopic groove 7 to move outward, and then drive the intercepting rod 5 to extrude the wound copper rod, so as to prevent the copper rod from being collapsed.
[0046] Specifically, a plurality of groups of positioning holes 13 are equidistantly arranged on the inner wall of the telescopic groove 7. The positioning holes 13 are used in cooperation with the positioning assembly.
[0047] In the embodiment, the positioning hole 13 is used in cooperation with the sliding block 24 arranged on the inner wall of the telescopic groove 7 to realize positioning. The locking pin 27 on the sliding block 24 is locked with the positioning hole 13 to realize positioning of the intercepting rod 5. The distance between the two groups of sliding blocks 24 is controlled to realize the size of the wound copper rod.
[0048] Specifically, the surface of the winding disc 3 is fixedly provided with the wire clamp 16. The outer side of the intercepting rod 5 is provided with the positioning spring 23. The inner diameter of the positioning spring 23 is greater than the width of the U-shaped hole 15. The initial state of the positioning spring 23 is the original length state.
[0049] In the embodiment, the wire clamp 16 is arranged to fix the end face of the copper rod, and the wire clamp 16 is arranged through the direction hole 17. When the copper rod wound on the pressure disc 4 is more and more, the pressure disc 4 is pressed downward to press the positioning spring 23, and the extension rod 12 is driven to drive the outer pressure assembly, so as to press the wound copper rod.
[0050] Specifically, the center of the winding disc 3 is provided with a mounting cavity 31, and the mounting cavity 31 is arranged in communication with the telescopic groove 7. The inner frame 10 is fixedly connected with the side wall of the mounting cavity 31.
[0051] In the embodiment, the mounting cavity 31 is arranged to mount the inner frame 10, and the depth of the mounting cavity 31 is greater than the total height of the extension rod 12, the rotating disc 11 and the inner frame 10. The bottom end of the rotating disc 11 is movably connected with the surface of the inner frame 10 through a cylindrical cylinder. When the rotating disc 11 is driven to rotate by the extension rod 12, the cylindrical cylinder arranged at the bottom of the rotating disc 11 plays a supporting role, so as to ensure the stable rotation of the rotating disc 11.
[0052] Specifically, the inner bottom wall of the telescopic groove 7 is provided with a strip-shaped hole, and the poking assembly is arranged through the strip-shaped hole.
[0053] In the embodiment, the strip-shaped hole is arranged for the circular rod cylinder 26 in the poking assembly to pass through. The poking assembly can be taken out from the strip-shaped hole by disassembling the parts.
[0054] It should be noted that, in the present document, the terms such as first and second, etc. are used merely to differentiate one entity or operation from another, and do not necessarily require or imply any such actual relationship or order between such entities or operations. Also, the terms "comprises", "comprising", or any other variations thereof, are intended to cover a non-exclusive inclusion, such that a process, method, article, or apparatus that comprises a list of elements does not include only those elements but can include other elements not expressly listed or inherent to such process, method, article, or apparatus.
[0055] The preferred embodiments of the application disclosed above are only used to help explain the application. The preferred embodiments do not describe all of the details of the application, and the application is not limited to the specific embodiments described. Obviously, many modifications and variations can be made according to the content of the present description. The embodiments are selected and described in detail in order to better explain the principles and practical application of the application, so that those skilled in the art can well understand and utilize the application. The application is limited only by the claims and their full scope and equivalents.
Claims
1. An up-drawing wire winding linkage device, comprising a straightening machine (1) and a guide rail (2), the copper rod through the up-drawing method is wound on the winding device after being straightened by the straightening machine (1), characterized in that: The guide rail (2) is movably provided with a slide rail support frame (8), the self-locking guide wheels on the slide rail support frame (8) are movably connected with the guide grooves of the guide rail (2), the inner side of the slide rail support frame (8) is fixedly provided with a winding motor (9), the output end of the winding motor (9) is provided with an inner frame (10), the outer side of the inner frame (10) is provided with a winding disc (3), the surface of the winding disc (3) is equidistantly provided with a plurality of telescopic grooves (7), each group of the telescopic grooves (7) is provided with two groups of positioning assemblies, the positioning assemblies are fixedly provided with intercepting rods (5), the inner side of the inner frame (10) is provided with an outer pressing assembly, the outer pressing assembly is used in cooperation with one group of the positioning assemblies, the outer side of the intercepting rod (5) is sleeved with a pressing disc (4), the pressing disc (4) is movably arranged with the outer pressing assembly, and the positioning assembly comprises a shifting piece, the shifting piece comprises a round rod cylinder (26) and a shifting rod (14). The positioning assembly comprises a sliding block (24), a telescopic hole (25), a locking pin (27) and a reset spring (28), the sliding block (24) is movably arranged on the inner wall of the telescopic groove (7), the telescopic hole (25) is symmetrically arranged on the side of the sliding block (24), the bottom end of the sliding block (24) is provided with a round hole and is in communication with the locking pin (27), and the two ends of the reset spring (28) are fixedly connected with the inner end of the locking pin (27). The inner end of the locking pin (27) is connected with the shifting part, and the round rod cylinder (26) is in communication with the round hole. The inner end of the locking pin (27) is connected with the shifting part, and the round rod cylinder (26) is in communication with the round hole. The shifting rod (14) is connected with the round rod cylinder (26) through a rotating shaft (30), wherein the rotating shaft (30) is fixedly connected with the inner wall of the round rod cylinder (26), the shifting rod (14) is movably arranged on the rotating shaft (30), the end surface of the shifting rod (14) is fixedly connected with a pulling steel wire (29), the other end of the pulling steel wire (29) is fixedly connected with the inner end of the locking pin (27), and a plurality of positioning holes (13) are equidistantly arranged on the inner wall of the telescopic groove (7). The positioning hole (13) is used in cooperation with the positioning assembly.
2. The upward drawing wire winding linkage device according to claim 1, characterized in that: The outer pressing assembly comprises a pressing piece, a rotating disc (11), an arc-shaped hole (20), a spiral hole (21), an L-shaped connecting rod (22) and a hinged part (19), the rotating disc (11) is arranged in the inner frame (10), the arc-shaped holes (20) are equidistantly arranged on the surface of the rotating disc (11), the spiral hole (21) is arranged on the center surface of the rotating disc (11), the L-shaped connecting rod (22) is movably arranged on the inner side of the arc-shaped hole (20), the hinged part (19) is movably arranged on one end of the L-shaped connecting rod (22), the other end of the hinged part (19) is fixedly connected with the positioning assembly, and the pressing piece is arranged at the bottom of the pressing disc (4).
3. The upward drawing wire winding linkage device according to claim 2, characterized in that: The lower pressing piece comprises an extension rod (12), a threaded part (18), a U-shaped hole (15) and a direction hole (17), the extension rod (12) is fixedly installed at the bottom center position of the pressing disc (4), the threaded part (18) is arranged on the outer side of the extension rod (12), the threaded part (18) is in a straight line with the spiral hole (21), the spiral hole (21) is movably connected with the threaded part (18), the direction hole (17) is arranged on the surface of the pressing disc (4), and the U-shaped hole (15) is arranged on the surface of the pressing disc (4).
4. The up-draw wire winding interlock of claim 1 wherein: The surface of the winding disc (3) is fixedly installed with a wire clamp (16), the outer side of the intercepting rod (5) is sleeved with a positioning spring (23), the inner diameter of the positioning spring (23) is greater than the width of the U-shaped hole (15), and the initial state of the positioning spring (23) is the original length state.
5. The up-draw wire winding interlock of claim 1 wherein: The center position of the winding disc (3) is provided with a mounting cavity (31), the mounting cavity (31) is communicated with the telescopic groove (7), and the inner frame (10) is fixedly connected with the side wall of the mounting cavity (31).
6. The upward drawing wire winding linkage of claim 1, wherein: The inner bottom wall of the telescopic groove (7) is provided with a strip-shaped hole, and the driving assembly is arranged through the strip-shaped hole.
7. The upward drawing wire winding linkage of claim 1, wherein: The shape of the sliding block (24) is rectangular, the intercepting rod (5) is fixedly connected with the top of the sliding block (24), and the initial state of the sliding block (24) is clamped with the telescopic groove (7).
Citation Information
Patent Citations
Winding device and winding method for galvanized steel strand production and manufacturing
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Copper rod winding frame device for up-drawing furnace
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