Coiled wire pay-off seat
By designing it as a wire feeding base, and utilizing the automatic wire management functions of the wire separating rod, connecting rod, and conductor section, the problem of copper wire knotting during the wire drawing process is solved, improving wire drawing efficiency and reducing feeding resistance.
Patent Information
- Application Number
- CN202520222774.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-12
- Publication Date
- 2025-12-26
- Estimated Expiration
- 2035-02-12
AI Technical Summary
Copper wires are prone to knotting during the drawing process, which affects the drawing efficiency, especially at high speeds, requiring manual intervention.
Design a wire unwinding base for coiled wires, including a wire divider, a connecting rod, a conductor section, and a column. The rotation of the column drives the wire divider and connecting rod to automatically manage the wires, preventing the copper wires from tangling. A fixing mechanism simplifies the fixing method and optimizes the installation structure.
It enables automatic wire management and release of copper wire, reduces manual intervention, improves wire drawing efficiency, reduces wire release resistance, and stabilizes the installation of connecting rods and branch rods.
Smart Images

Figure CN223718043U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The application belongs to the technical field of cable production, and particularly relates to a coiled wire feeding seat. BACKGROUND
[0002] Copper rod, i.e. copper wire with large diameter, is one of important raw materials of cable. In the process of cable production, the copper wire needs to be drawn into copper wire through a wire drawing machine. Before feeding of the wire drawing machine, the coiled copper wire needs to be hoisted to the wire feeding seat, and then the first end of the copper wire is threaded through the high-altitude wire feeding frame and the conveying roller of the wire drawing machine, and the wire drawing machine is operated to draw the copper wire. Since the copper wire is randomly wound, the copper wire is prone to knotting during wire feeding, especially when the wire drawing machine is operated at high speed, the knotting phenomenon is more frequent, and manual intervention is required, thereby affecting the wire drawing efficiency. CONTENT OF THE UTILITY MODEL
[0003] In order to solve the above problems of the prior art, the application provides a coiled wire feeding seat, which can effectively solve the problem of copper wire knotting and improve the wire drawing efficiency.
[0004] In order to achieve the above purpose, the utility model adopts the following technology:
[0005] A coiled wire feeding seat comprises:
[0006] A seat body is vertically provided with a stand column rotating around the axis thereof, the stand column is provided with a mounting portion, the mounting portion is movably arranged along the length direction of the stand column, and a plurality of limiting blocks are arranged on the seat body around the stand column;
[0007] A wire separating rod is hingedly connected to one end of the mounting portion, and the hinging axis is perpendicular to the axis of the stand column;
[0008] A connecting rod is hingedly connected to one end of the mounting portion, and the hinging axis is perpendicular to the axis of the stand column and the hinging axis of the wire separating rod;
[0009] A wire guide portion is arranged at one end of the connecting rod and used for guiding the wire.
[0010] Further, mounting tables are arranged at the upper and lower ends of the stand column, a plurality of guide rods are arranged in parallel to the stand column and arranged in an array around the stand column between the mounting tables, and the mounting portion is in the form of a ring and is slidably fitted on the guide rods.
[0011] Further, a pair of first vertical plates is arranged on the mounting portion and located on both sides of the axis of the stand column, one end of the wire separating rod is hingedly connected to the first vertical plate, a first locking hole is arranged on the first vertical plate, a first matching hole is arranged on the rod body of the wire separating rod, when the wire separating rod is turned to be perpendicular to the stand column, the first locking hole and the first matching hole are coincided, and the first locking hole is used for penetrating the first locking pin.
[0012] Further, the mounting portion is further provided with a pair of second vertical plates located on both sides of the column axis, the second vertical plates are perpendicular to the first vertical plates, and one end of the connecting rod is hinged to the second vertical plates; a pair of horizontal plates are arranged on the mounting portion above the second vertical plates and located on both sides of the connecting rod respectively; a second lock hole is formed in the horizontal plate, a second matching hole is formed in the connecting rod body, the second lock hole is coincided with the second matching hole when the connecting rod is turned to form a predetermined angle with the column axis, and the second lock hole is used for penetrating the second lock pin.
[0013] Further, the wire guide portion comprises a mounting frame connected to the other end of the connecting rod, a pair of guide wheels are arranged in the mounting frame, the axes of the two guide wheels are parallel to each other and arranged in the same plane with the column axis, and the axes of the two guide wheels are perpendicular to the axis of the column when the connecting rod is turned to form a predetermined angle with the column axis.
[0014] The utility model has the advantages that:
[0015] 1. By arranging the dividing rod, the connecting rod and the wire guide portion and cooperating with the rotation of the column, automatic wire arranging and unwinding of the copper wire in a roll can be realized without human intervention, the problem of copper wire knotting is effectively solved, the unwinding resistance is effectively reduced, and the copper wire drawing efficiency is improved.
[0016] 2. The fixing mechanism simplifies the fixing mode of the connecting rod and the dividing rod, is convenient for operators to use, optimizes the mounting mode of the connecting rod and the dividing rod by arranging the guide rod and the mounting portion, and improves the stability of the connecting rod and the dividing rod when the column rotates. DRAWINGS
[0017] Figure 1 is a schematic view of the main body structure of the unwinding seat of the embodiment of the application.
[0018] Figure 2 is a state view of the unwinding seat of the embodiment of the application.
[0019] Figure 3 is Figure 1 the enlarged view of the A part in FIG.
[0020] Figure 4 is Figure 2 the enlarged view of the B part in FIG.
[0021] Fig. 1 is a schematic view of the main body structure of the unwinding seat of the embodiment of the application. DETAILED DESCRIPTION
[0022] In order to make the purpose, technical scheme and advantages of the embodiments of the present application clearer, the embodiments of the present application will be described in detail below with reference to the drawings. The embodiments described in the present application are only some of the embodiments of the present application, not all the embodiments.
[0023] The embodiments of the present application provide a coiled wire line pay-off stand, as shown in Figure 1 and Figure 2 , comprising a seat body 1, a line splitting rod 2, a connecting rod 3, a wire guide 4, a fixing mechanism 5 and the like.
[0024] Among them, the seat body 1 is vertically provided with a stand 11 rotating around its own axis, the stand 11 is provided with a mounting portion 12, the mounting portion 12 is movably arranged along the length direction of the stand 11, three limiting blocks 13 are arranged on the seat body 1 of the side of the stand 11, for limiting the position of the coiled copper wire; the line splitting rod 2 is hingedly connected to the mounting portion 12, the hinging axis of the line splitting rod 2 is perpendicular to the axis of the stand 11; the connecting rod 3 is hingedly connected to the mounting portion 12 at one end, the hinging axis of the connecting rod 3 is perpendicular to the axis of the stand 11 and the hinging axis of the line splitting rod 2; the wire guide 4 is arranged at the other end of the connecting rod 3, for guiding the wire; the fixing mechanism 5 is arranged on the mounting portion 12, for fixing the positions of the line splitting rod 2 and the connecting rod 3; the seat body 1 is provided with a driving portion 6 at the bottom, for driving the stand 11 to rotate around its own axis.
[0025] In application, as shown in Figure 1 and Figure 2As shown, first rotate the dividing rod 2 and connecting rod 3 upwards, and hoist the coiled copper wire onto the base 1, so that the limiting block 13 abuts against the periphery of the coiled copper wire, while the column 11 is located in the middle of the coiled copper wire; rotate the dividing rod 2 to be perpendicular to the column 11, and position the dividing rod 2 below the first coil formed at the beginning of the coiled copper wire, while fixing the position of the dividing rod 2 using the fixing mechanism 5; rotate the connecting rod 3 until the conductor part 4 at its other end is above the coil formed by the coiled copper wire, and fix the position of the connecting rod 3 using the fixing mechanism 5; pull the beginning of the coiled copper wire, so that it passes sequentially through the conductor part 4, the high-altitude wire feeding frame, and the conveyor roller of the wire drawing machine; wire drawing. When the machine starts operating, it begins to pull the copper wire. Simultaneously, the drive unit 6 drives the column 11 to rotate, which in turn drives the wire separating rod 2 and the connecting rod 3 to rotate. The wire separating rod 2 rotates between the coils formed by the coiled copper wire, which can sort out the disordered coils from top to bottom and effectively separate the copper wire to be released from the copper coils below it. The mounting part 12 and the guide part 4 also move from top to bottom with the wire separating rod 2. The separated copper wire to be released is then guided to the high-altitude wire release frame through the guide part 4, reducing the resistance of the wire drawing machine's conveyor rollers. At the same time, the drive unit 6 can be driven by a motor, which can effectively control the speed of the column 11 to adapt to the speed of the wire drawing machine. Through the setting of the wire separating rod 2, the connecting rod 3, and the guide part 4, and in conjunction with the rotation of the column 11, automatic wire sorting and release of the coiled copper wire can be achieved without human intervention, which effectively solves the problem of copper wire knotting. At the same time, it effectively reduces the wire release resistance and helps to improve the efficiency of copper wire drawing.
[0026] Specifically, such as Figures 1 to 4 As shown, the column 11 has mounting platforms 14 at its upper and lower ends, and three guide rods 15 arranged parallel to the column 11 and in a circular array around the axis of the column 11 are provided between the mounting platforms 14. The mounting part 12 is annular and is slidably fitted onto the guide rods 15. The fixing mechanism 5 includes a pair of first vertical plates 16 provided on the mounting part 12 and located on both sides of the axis of the column 11. One end of the dividing rod 2 is hinged to the first vertical plate 16. The first vertical plate 16 has a first locking hole 161, and the dividing rod 2 has a first mating hole 21. When the dividing rod 2 is rotated to be perpendicular to the column 11, the first locking hole 161 coincides with the first mating hole 21 and is used to insert the first locking pin 162. The fixing mechanism 5 also includes a pair of second vertical plates 17 disposed on the mounting part 12 and located on both sides of the axis of the column 11. The second vertical plates 17 are perpendicular to the first vertical plate 16. One end of the connecting rod 3 is hinged to the second vertical plate 17. A pair of horizontal plates 18 are disposed on the mounting part 12 above the second vertical plate 17 and are respectively located on both sides of the connecting rod 3. A second locking hole 181 is provided on the horizontal plate 18, and a second mating hole 31 is provided on the rod body of the connecting rod 3. When the connecting rod 3 rotates to form a predetermined angle with the axis of the column 11, the second locking hole 181 coincides with the second mating hole 31 and is used to pass through the second locking pin 182.
[0027] In application, rotate the dividing rod 2 to be perpendicular to the stand 11, the first lock hole 161 coincides with the first matching hole 21, and the first lock pin 162 is inserted to fix the dividing rod 2. Similarly, rotate the connecting rod 3 to form a predetermined angle with the axis of the stand 11. At this time, the wire guide part 4 is above the coil formed by the coiled copper wire. The second lock hole 181 coincides with the second matching hole 31, and the second lock pin 182 is inserted to fix the connecting rod 3. When it is needed to rotate the connecting rod 3 and the dividing rod 2 upward, only the first lock pin 162 and the second lock pin 182 are removed. The fixing mode of the connecting rod 3 and the dividing rod 2 is simplified, which is convenient for the operator to use. At the same time, the installation mode of the connecting rod 3 and the dividing rod 2 is optimized through the structure of the guide rod 15 and the installation part 12, and the stability of the connecting rod 3 and the dividing rod 2 when the stand 11 rotates is improved.
[0028] Specifically, as shown in Figure 3 and Figure 4 , the wire guide part 4 includes an installation frame 41 connected to the other end of the connecting rod 3. A pair of guide wheels 42 are arranged in the installation frame 41. The axes of the two guide wheels 42 are parallel to each other and coplanar with the axis of the stand 11. When the connecting rod 3 is rotated to form a predetermined angle with the axis of the stand 11, the axes of the two guide wheels 42 are perpendicular to the axis of the stand 11. A guide groove 43 with a diameter suitable for the wire is formed on the side of the guide wheel 42. The copper wire is inserted between the two guide wheels 42 through the guide groove 43. Under the sliding cooperation of the copper wire and the guide wheel 42, the wire laying resistance can be effectively reduced, and the copper wire can be prevented from knotting, and the wire drawing efficiency is improved.
[0029] The above only describes the preferred embodiments of the present application and is not used to limit the present application. Obviously, those skilled in the art can make various modifications and changes to the present application without departing from the spirit and scope of the present application.
Claims
1. A coiled wire unwinding holder, characterized in that, The utility model relates to a kind of winding wire reel wire seat, including: The seat body (1) is vertically provided with the stand (11) rotating around its axis, and the stand (11) is provided with the mounting portion (12), the mounting portion (12) is movably arranged along the length direction of the stand (11), and the seat body (1) on the circumferential side of the stand (11) is provided with a plurality of limit blocks (13); The wire separating rod (2) is hingedly connected to the mounting portion (12) at one end, and the hinging axis is perpendicular to the axis of the stand (11); The connecting rod (3) is hingedly connected to the mounting portion (12) at one end, and the hinging axis is perpendicular to the axis of the stand (11) and the hinging axis of the wire separating rod (2); The wire guide portion (4) is provided at the other end of the connecting rod (3) for guiding the wire; The fixing mechanism (5) is provided on the mounting portion (12) for fixing the positions of the wire separating rod (2) and the connecting rod (3).
2. A coil of wire holder according to claim 1, wherein The upper and lower ends of the stand (11) are provided with mounting tables (14), and a plurality of guide rods (15) are arranged between the mounting tables (14) in parallel to the stand (11) and circumferentially around the axis of the stand (11);The mounting portion (12) is in the form of a circular ring and is slidingly fitted on the guide rods (15).
3. The winding wire reel wire seat according to claim 2, wherein The fixing mechanism (5) comprises a pair of first vertical plates (16) provided on the mounting portion (12) and located on both sides of the axis of the stand (11), one end of the wire separating rod (2) is hingedly connected to the first vertical plate (16), a first lock hole (161) is formed in the first vertical plate (16), a first matching hole (21) is formed in the rod body of the wire separating rod (2), when the wire separating rod (2) is turned to be perpendicular to the stand (11), the first lock hole (161) coincides with the first matching hole (21), and a first lock pin (162) is arranged in the first lock hole (161).
4. A coil of wire holder according to claim 3, wherein The fixing mechanism (5) further comprises a pair of second vertical plates (17) provided on the mounting portion (12) and located on both sides of the axis of the stand (11), the second vertical plates (17) are arranged perpendicular to the first vertical plates (16), and one end of the connecting rod (3) is hingedly connected to the second vertical plates (17);A pair of horizontal plates (18) are provided on the mounting portion (12) above the second vertical plates (17) and located on both sides of the connecting rod (3) respectively;A second lock hole (181) is formed in the horizontal plate (18), a second matching hole (31) is formed in the rod body of the connecting rod (3), when the connecting rod (3) is turned to form a predetermined angle with the axis of the stand (11), the second lock hole (181) coincides with the second matching hole (31), and a second lock pin (182) is arranged in the second lock hole (181).
5. A coil of wire holder according to claim 4, wherein The wire guide portion (4) comprises a mounting frame (41) connected to the other end of the connecting rod (3), a pair of guide wheels (42) are arranged in the mounting frame (41), the axes of the two guide wheels (42) are parallel to each other and arranged in the same plane with the axis of the stand (11), when the connecting rod (3) is turned to form a predetermined angle with the axis of the stand (11), the axes of the two guide wheels (42) are perpendicular to the axis of the stand (11).
6. A coil of wire holder according to claim 5, wherein A guide groove (43) adapted to the wire is formed in the circumferential side of the guide wheel (42).
7. A coil of wire holder as defined in claim 1, wherein The bottom of the seat body (1) is provided with a driving portion (6) for driving the stand (11) to rotate.