Wire coil packaging production line
By designing a wire coil packaging production line and utilizing the flipping equipment and the collaborative work of multiple devices, the problems of low automation and low efficiency in the copper wire coil packaging stage were solved, achieving an efficient, continuous, and stable packaging process, and improving packaging quality and equipment synergy.
Patent Information
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2026-01-08
- Publication Date
- 2026-03-13
AI Technical Summary
The current packaging stage for copper wire coils suffers from low automation, low efficiency, insufficient fastening and sealing, high operational barriers, and poor equipment coordination, which affects the continuity of the production line.
A wire reel packaging production line was designed, including a primary threading and end cap removal device, a screw removal device, a flipping device, a bagging and film covering device, a heat sealing device, a transfer and clamping device, a reciprocating transport device, an intermediate conveyor device, a pallet supply device, and an overall threading device. The flipping device enables automatic adjustment of the wire reel's posture, ensuring that all devices work together to improve packaging efficiency and quality.
It achieves an efficient, continuous, and stable packaging process for copper wire coils, reduces the uncertainty of manual operation, improves packaging quality and equipment synergy, and ensures the continuity and stability of the packaging process.
Smart Images

Figure CN223990204U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of wire coil packaging technology, and more specifically, to a wire coil packaging production line. Background Technology
[0002] In the post-processing stage of copper wire production, especially in the product packaging stage of copper wire coils after the large copper drawing machine has tightly wound the wire, the existing technology mainly relies on a combination of "manual labor and multiple decentralized equipment".
[0003] Specifically, the aforementioned existing technologies have the following shortcomings: limited automation, low packaging efficiency, insufficient fastening and sealing effect, high operating threshold and poor equipment coordination, which can easily affect the continuity of the overall production line, thus limiting production efficiency to some extent. Utility Model Content
[0004] The main objective of this invention is to provide a wire coil packaging production line to solve the problem of low work efficiency in the product packaging stage of copper wire coils in the prior art.
[0005] To achieve the above objectives, this utility model provides a wire reel packaging production line, which is set on a supporting base. The wire reel packaging production line includes: an initial threading and end cap removal device and a screw removal device. The initial threading and end cap removal device is used to initially thread the wire reel in the wire reel, and the screw removal device is used to remove the screws on the end caps in the wire reel after the initial threading. The initial threading and end cap removal device is also used to remove the end caps after screw removal. A flipping device is set between the initial threading and end cap removal device and the screw removal device. The flipping device includes a flipping support part, which is provided with a receiving cavity for accommodating the wire reel. The flipping support part is rotatably arranged so that at least a portion of the opening of the receiving cavity faces the initial threading and end cap removal device or the screw removal device.
[0006] Furthermore, the flipping device also includes: a first rotating component and a second rotating component, spaced apart in the receiving cavity, the center lines of the first rotating component and the second rotating component being perpendicular to each other; the first rotating component and the second rotating component are respectively rotatably arranged relative to the flipping support about their own center lines, so as to drive the coil to rotate; and / or, a flipping drive unit, the flipping drive unit being drivenly connected to the flipping support unit to drive the flipping support unit to rotate.
[0007] Furthermore, the wire coil packaging production line includes: a bagging and film-coating device, which is located on the side of the screw-removing device away from the flipping device, and is used to bag and film the wire coil after the end cap is removed; and a transfer and clamping device, part of which is set between the bagging and film-coating device and the screw-removing device, for transferring the wire coil after the end cap is removed from the receiving cavity to the bagging and film-coating device.
[0008] Furthermore, the transfer clamping device includes a support frame and a third rotating component, a lifting and moving component, and a clamping component connected sequentially in a direction away from the support frame. The support frame is located between the bagging and film covering device and the screw unloading device. The third rotating component is rotatably arranged about the center line of the support frame perpendicular to the support base surface. The lifting and moving component is vertically arranged in a direction parallel to the center line of the support frame. The clamping component includes at least two grippers that can be arranged close to or far from each other for clamping or releasing the coil.
[0009] Furthermore, the wire coil packaging production line includes: a heat sealing device, with the heat sealing device and a bagging and film covering device spaced apart; the heat sealing device includes a heating space for heating the bag or film covering the wire coil; and a reciprocating transport device, which is located between the bagging and film covering device and the heat sealing device, for receiving the wire coil from the transfer clamping device and driving the wire coil to move between the bagging and film covering device and the heat sealing device.
[0010] Furthermore, the heat sealing equipment includes: a heating support frame, the heating support frame including a heating space; a top heating component disposed on the top surface of the heating space; and a side heating component disposed on the side of the heating space.
[0011] Furthermore, the reciprocating transport equipment includes: a sliding component, the two ends of which extend to the bagging and film-coating equipment and the heat-sealing equipment, respectively; and a fourth rotating component, which carries the wire coil and is mounted on the slider of the sliding component to drive the wire coil to move with the slider of the sliding component. The fourth rotating component is rotatably mounted relative to the slider of the sliding component about its own center line to drive the wire coil to rotate.
[0012] Furthermore, the wire coil packaging production line includes: an intermediate conveyor, the first end of which extends to a bagging and film-coating device for conveying wire coils after bagging, film-coating, and heating are completed; a pallet supply device and an overall threading device, which are spaced apart at the second end of the intermediate conveyor. The pallet supply device supplies pallets to the overall threading device, and the pallets are used to receive wire coils from the second end of the intermediate conveyor. The overall threading device is used to thread the supplied pallets and the wire coils on the pallets together to form finished wire coil packaging products.
[0013] Furthermore, the pallet supply equipment includes: a storage bin disposed at the second end of the intermediate conveyor, the storage bin including a storage space for storing pallets; and a feeding component, at least a portion of which is disposed within the storage space and is movably disposed in a direction toward or away from the overall threading device for pushing pallets in the storage space toward the overall threading device.
[0014] Furthermore, the wire coil packaging production line also includes: a feeding conveyor, one end of which extends to a turning device for conveying the incoming wire coil to the turning device; and / or, a discharging conveyor, one end of which extends to a second end of an intermediate conveyor for discharging the finished wire coil packaging product.
[0015] Applying the technical solution of this utility model, the wire reel packaging production line of this utility model is set on a supporting base. The wire reel packaging production line includes: an initial threading and end cap removal device and a screw removal device. The initial threading and end cap removal device is used to initially thread the wire reel in the wire reel, and the screw removal device is used to remove the screws on the end caps in the wire reel after the initial threading. The initial threading and end cap removal device is also used to remove the end caps after screw removal. A flipping device is set between the initial threading and end cap removal device and the screw removal device. The flipping device includes a flipping support part, which is provided with a receiving cavity for accommodating the wire reel. The flipping support part is rotatably arranged so that at least a portion of the opening of the receiving cavity faces the initial threading and end cap removal device or the screw removal device. In this way, the wire reel packaging production line of this utility model realizes automatic adjustment of the wire reel posture through the flipping device. During the packaging process, the initial threading and end cap removal equipment first threads the wire coil in the coil on the flipping equipment. Then, the flipping support in the flipping equipment rotates so that after the initial threading is completed, the coil is rotated to the screw removal equipment for screw removal. Next, the flipping support in the flipping equipment rotates again so that the initial threading and end cap removal equipment can also be used to remove the end cap after screw removal. This solves the problem of low work efficiency in the product packaging stage of copper wire coils in the prior art, realizes efficient connection of the wire coil packaging production process, avoids the uncertainty of manual operation, ensures the accuracy of threading, screw removal and end cap removal operations, reduces potential damage to the wire coil, improves the packaging quality of the wire coil, and realizes the continuous, efficient and stable packaging process of the wire coil. Attached Figure Description
[0016] The accompanying drawings, which form part of this application, are used to provide a further understanding of the present invention. The illustrative embodiments of the present invention and their descriptions are used to explain the present invention and do not constitute an undue limitation of the present invention. In the drawings:
[0017] Figure 1 A schematic diagram of the layout of an embodiment of a wire coil packaging production line according to the present invention is shown.
[0018] The above figures include the following reference numerals:
[0019] 1. Equipment for initial strap insertion and end cap removal; 2. Equipment for removing screws;
[0020] 3. Tilting device; 30. Receiving cavity; 31. Tilting support; 32. First rotating component; 33. Second rotating component; 34. Tilting drive unit;
[0021] 4. Bagging and film coating equipment;
[0022] 5. Transfer and clamping device; 51. Support frame; 52. Third rotating component; 53. Lifting and moving component; 54. Clamping component; 541. Gripper;
[0023] 6. Heat sealing equipment; 60. Heating space; 61. Heating support frame; 62. Top heating component; 63. Side heating component;
[0024] 7. Reciprocating transport equipment; 71. Sliding parts; 72. Fourth rotating parts;
[0025] 8. Intermediate conveying equipment;
[0026] 9. Pallet supply equipment; 90. Storage space; 91. Storage bin; 92. Feeding components;
[0027] 10. Overall threading equipment;
[0028] 11. Feeding conveyor equipment; 12. Discharging conveyor equipment;
[0029] 100, spool; 200, spool roll; 300, end cap; 400, tray. Detailed Implementation
[0030] It should be noted that, unless otherwise specified, the embodiments and features described in this application can be combined with each other. The present invention will now be described in detail with reference to the accompanying drawings and embodiments.
[0031] like Figure 1 As shown, this utility model provides a wire coil packaging production line, which is set on a supporting base. The wire coil packaging production line includes: an initial threading and end cap removal device 1 and a screw removal device 2. The initial threading and end cap removal device 1 is used to initially thread the wire coil 200 in the wire coil 100. The screw removal device 2 is used to remove the screws on the end cap 300 in the wire coil 100 after the initial threading. The initial threading and end cap removal device 1 is also used to remove the end cap 300 after the screws are removed. A flipping device 3 is set between the initial threading and end cap removal device 1 and the screw removal device 2. The flipping device 3 includes a flipping support part 31. The flipping support part 31 is provided with a receiving cavity 30 for accommodating the wire coil 100. The flipping support part 31 is rotatably arranged so that at least a portion of the opening of the receiving cavity 30 faces the initial threading and end cap removal device 1 or the screw removal device 2.
[0032] In this way, the wire coil packaging production line of this utility model achieves automatic adjustment of the posture of the wire coil 100 through the flipping device 3. During the packaging process, the initial threading and end cap removal device 1 first threads the wire coil 200 in the wire coil 100 on the flipping device 3. Then, the flipping support part 31 in the flipping device 3 rotates so that after the initial threading is completed, the wire coil 100 is rotated to the screw removal device 2 for screw removal. Then, the flipping support part 31 in the flipping device 3 rotates again so that the initial threading and end cap removal device 1 can also remove the end cap 300 after screw removal. This solves the problem of low work efficiency in the product packaging stage of copper wire coils in the prior art, realizes efficient connection of the packaging production process of wire coil 200, avoids the uncertainty of manual operation, ensures the accuracy of threading, screw removal and end cap removal operations, reduces potential damage to wire coil 200, improves the packaging quality of wire coil 200, and realizes the continuous, efficient and stable packaging process of wire coil 200.
[0033] Specifically, the screw removal device 2 includes an automatic positioning component, a robotic arm resetting component, and a screw tightening component to alternately tighten screws on end caps 300 in multiple reels 100.
[0034] like Figure 1 As shown, the flipping device 3 further includes: a first rotating component 32 and a second rotating component 33, which are spaced apart in the receiving cavity 30, and the center lines of the first rotating component 32 and the second rotating component 33 are perpendicular to each other; the first rotating component 32 and the second rotating component 33 are respectively rotatably arranged relative to the flipping support 31 around their own center lines, so as to drive the coil 100 to rotate; and / or, a flipping drive 34, which is drivenly connected to the flipping support 31 to drive the flipping support 31 to rotate.
[0035] In this invention, the flipping device 3 is equipped with a first rotating component 32 and a second rotating component 33, which are rotatably arranged relative to the flipping support 31. The first rotating component 32 and the second rotating component 33 respectively drive the thread reel 100 to achieve precise multi-axis rotation, facilitating multiple threading operations at multiple angles on the thread reel 100. Furthermore, a flipping drive unit 34 is configured to drive the flipping support 31, ensuring the controllability and efficiency of the flipping process. The thread reel 100 can quickly and accurately change its posture throughout the packaging process, meeting the requirements for automated packaging after tight thread winding.
[0036] Specifically, when the flipping support 31 is rotated so that at least a portion of the opening of the receiving cavity 30 faces the initial threading and end cap removal device 1, the center line of the first rotating component 32 is perpendicular to the support base surface, the center line of the second rotating component 33 is parallel to the support base surface, and the spool 100 is in a horizontal state for the initial threading and end cap removal device 1 to operate; when the flipping support 31 is rotated so that at least a portion of the opening of the receiving cavity 30 faces the screw removal device 2, the center line of the first rotating component 32 is parallel to the support base surface, the center line of the second rotating component 33 is perpendicular to the support base surface, and the spool 100 is in a vertical state for the screw removal device 2 to operate.
[0037] In this invention, the flipping drive unit 34 includes a drive gear, and the outer peripheral surface of the flipping support unit 31 on the side away from the opening of the receiving cavity 30 is provided with an arc-shaped rack for meshing with the drive gear, so that the flipping support unit 31 can be driven to rotate by the rotation of the drive gear.
[0038] like Figure 1 As shown, the wire coil packaging production line includes: a bagging and film-coating device 4, which is located on the side of the screw-removing device 2 away from the flipping device 3, and is used to bag and film the wire coil 200 after the end cap is removed; and a transfer clamping device 5, part of which is arranged between the bagging and film-coating device 4 and the screw-removing device 2, for transferring the wire coil 200 after the end cap is removed, which is located in the receiving cavity 30, to the bagging and film-coating device 4.
[0039] Specifically, the bags and films used for packaging line coil 200 can both be made of PE (i.e., polyethylene) material to facilitate heat sealing.
[0040] In this utility model, the wire coil packaging production line further integrates a bagging and film-coating device 4 and a transfer and clamping device 5. The bagging and film-coating device 4 is used to efficiently bag and film the wire coil 200 after the end cap is removed, so as to ensure the moisture-proof, dust-proof and protective functions of the wire coil 200 during transportation and storage. The transfer and clamping device 5 is used to accurately clamp and transfer the wire coil 200 after the end cap is removed from the receiving cavity 30 to the bagging and film-coating device 4. Through the coordinated operation of the bagging and film-coating device 4 and the transfer and clamping device 5, the entire wire coil packaging production line achieves seamless connection of the automated process, improves packaging efficiency and quality consistency, reduces the technical dependence on operators, and thus provides strong technical support for the efficient and stable packaging of wire coils.
[0041] like Figure 1As shown, the transfer clamping device 5 includes a support frame 51 and a third rotating component 52, a lifting and moving component 53, and a clamping component 54 connected sequentially in a direction away from the support frame 51. The support frame 51 is located between the bagging and film covering device 4 and the screw removal device 2. The third rotating component 52 is rotatably arranged around the center line of the support frame 51 perpendicular to the support base surface. The lifting and moving component 53 is vertically and vertically arranged in a direction parallel to the center line of the support frame 51. The clamping component 54 includes at least two grippers 541 that can be arranged close to or far from each other for clamping or releasing the coil 200.
[0042] In this utility model, the transfer and clamping device 5 integrates a support frame 51, a third rotating component 52, a lifting and moving component 53, and a clamping component 54, ensuring stable transmission of the wire coil 200 between different processes, realizing precise adjustment of the position of the wire coil 200, providing necessary positioning support for subsequent packaging steps, ensuring a smooth transition from unloading the end cap to bagging and film coating processes, avoiding damage or displacement of the wire coil 200 during the transfer process, not only improving the automation level and precision of the packaging process, but also significantly improving the efficiency and quality of the wire coil 200 packaging.
[0043] Specifically, the clamping component 54 also includes anti-slip pads provided on the grippers 541, and each gripper 541 contacts the coil 200 through the corresponding anti-slip pads to avoid damage to the coil 200.
[0044] like Figure 1 As shown, the wire coil packaging production line includes: a heat sealing device 6, which is spaced apart from a bagging and film covering device 4. The heat sealing device 6 includes a heating space 60 for heating the bag or film covering the wire coil 200; and a reciprocating transport device 7, which is disposed between the bagging and film covering device 4 and the heat sealing device 6 to receive the wire coil 200 from the transfer clamping device 5 and to move the wire coil 200 between the bagging and film covering device 4 and the heat sealing device 6.
[0045] In this invention, the wire coil packaging production line integrates a heat-sealing device 6 and a reciprocating transport device 7, ensuring the continuity of the wire coil 200 during the packaging process, reducing manual intervention, and improving packaging efficiency. The heat-sealing device 6 provides a uniform heat source, ensuring that the bag or film wrapped on the wire coil 200 is heated evenly in the heating space 60, thus tightly adhering to the surface of the wire coil 200 and enhancing the sealing performance of the heat-sealed packaging. The reciprocating transport device 7 not only achieves a smooth transition between different processes for the wire coil 200 but also ensures precise connection between bagging, bag heating, film coating, and film heating processes, improving the automation level and production continuity of the overall packaging production line, thereby achieving stability and consistency in packaging quality.
[0046] like Figure 1 As shown, the heat sealing device 6 includes: a heating support frame 61, which includes a heating space 60; a top heating component 62, which is disposed on the top surface of the heating space 60; and a side heating component 63, which is disposed on the side of the heating space 60.
[0047] In this invention, the heat-sealing device 6 is structured to achieve uniform heat sealing of bags or films wrapped on the coil 200. The heating support frame 61 forms a heating space 60, with a top heating component 62 on its top surface and side heating components 63 on its sides. This configuration ensures that when the coil 200 is placed within the heating space 60, the top heating component 62 and the side heating components 63 can heat the bag or film wrapped on the coil 200 from different directions, thereby promoting its uniform softening and adhesion.
[0048] like Figure 1 As shown, the reciprocating transport device 7 includes: a sliding component 71, the two ends of the slide rail of the sliding component 71 extending to the bagging and film covering device 4 and the heat sealing device 6 respectively; a fourth rotating component 72, the fourth rotating component 72 being used to carry the wire coil 200, the fourth rotating component 72 being disposed on the slider of the sliding component 71 to drive the wire coil 200 to move with the slider of the sliding component 71, and the fourth rotating component 72 being rotatably disposed relative to the slider of the sliding component 71 around its own center line to drive the wire coil 200 to rotate.
[0049] In this invention, the reciprocating transport device 7 includes a sliding component 71 and a fourth rotating component 72. The sliding component 71 ensures the smooth movement of the coil 200, enabling the coil 200 to maintain a stable and precise positional movement throughout the entire transfer process from bagging, bag heating, film coating, and film heating. The fourth rotating component 72 is located on the slider of the sliding component 71 and bears the load of the coil 200. It not only drives the coil 200 forward with the movement of the slider, but also has the ability to rotate relative to the slider around its own center line, achieving uniform rotation during the heat sealing process. This further enhances the consistency of the heat sealing effect, avoids damage to the packaging film caused by local overheating or uneven heating, and improves the tightness and stability of the packaging. During the heat sealing stage, its own rotation ensures that the bag or film wrapped on the coil 200 is evenly heated and fastened to the surface of the coil 200, greatly improving the consistency of the bag and film adhesion and fastening effect.
[0050] like Figure 1As shown, the wire coil packaging production line includes: an intermediate conveyor 8, the first end of which extends to a bagging and film-coating device 4, for conveying the wire coil 200 after bagging, film-coating, and heating are completed; a pallet supply device 9 and an integral threading device 10, which are spaced apart at the second end of the intermediate conveyor 8. The pallet supply device 9 supplies pallets 400 to the integral threading device 10. The pallet 400 is used to receive the wire coil 200 from the second end of the intermediate conveyor 8. The integral threading device 10 is used to integrally thread the supplied pallet 400 and the wire coil 200 located on the pallet 400 to form the finished wire coil package.
[0051] In this invention, the wire coil packaging production line integrates an intermediate conveyor 8, a pallet supply device 9, and an overall threading device 10 to further optimize the packaging process. The intermediate conveyor 8 smoothly and efficiently transports the wire coils 200 that have undergone bagging, filming, and heating, ensuring a smooth transition to the overall threading process during packaging. The pallet supply device 9 and the overall threading device 10 are located at the second end of the intermediate conveyor 8. Working together, they form a stable packaged wire coil, achieving automated continuous operation from finished product output to pallet loading and overall securing. This not only improves packaging efficiency and precision but also reduces the uncertainties caused by manual operation, ensuring the safety and stability of the packaged product during transportation and storage.
[0052] like Figure 1 As shown, the pallet supply device 9 includes: a storage bin 91, which is disposed at the second end of the intermediate conveyor 8, and includes a storage space 90 for storing pallets 400; and a feeding component 92, at least a portion of which is disposed within the storage space 90 and is movably disposed along a direction toward or away from the overall threading device 10, for pushing the pallets 400 in the storage space 90 toward the overall threading device 10.
[0053] In this utility model, the pallet supply device 9 includes a storage bin 91 and a feeding component 92. The storage space 90 of the storage bin 91 is used to store pallets 400 to be used. The feeding component 92 can effectively push the pallets 400 from the storage bin 91 to the overall threading device 10, ensuring the precise docking of the wire coil 200 and the pallet 400. This not only realizes the automatic supply of pallets 400, but also optimizes the connection of the packaging process, reduces manual intervention, improves production efficiency and packaging accuracy, thereby realizing the continuity and automation of the packaging process, reducing the difficulty of operation, ensuring the stability of packaging quality, and providing strong support for the mass production of the wire coil 200.
[0054] like Figure 1As shown, the wire coil packaging production line also includes: a feeding conveyor 11, one end of which extends to a turning device 3 for conveying the incoming wire coil 100 onto the turning device 3; and / or, a discharging conveyor 12, one end of which extends to the second end of an intermediate conveyor 8 for discharging the finished wire coil packaging product.
[0055] In this invention, the wire coil packaging production line also integrates a feeding conveyor 11 and a discharging conveyor 12, aiming to optimize the logistics efficiency and continuity of the entire packaging process. The feeding conveyor 11 extends directly to the turning device 3, responsible for efficiently conveying the wire coils 100 to be processed into place, ready for the packaging process. The discharging conveyor 12 is used to automatically transfer the packaged finished wire coils to the next processing stage or storage area, ensuring timely delivery of finished products, avoiding congestion and stagnation on the production line. This not only enhances the degree of automation and reduces manual intervention, but also significantly improves the overall throughput and capacity of the packaging line, realizing the streamlining and intelligent upgrading of the production process.
[0056] The cavity 30 has an opening that is perpendicular to each other, including a first opening and a second opening. When the center line of the first rotating component 32 is perpendicular to the support base, the first opening faces the initial threading and unloading end cap device 1, and the second opening faces the feeding conveyor device 11. When the center line of the second rotating component 33 is perpendicular to the support base, the second opening faces the screw unloading device 2, and the first opening faces the feeding conveyor device 11.
[0057] The working process of the wire coil packaging production line of this utility model is as follows:
[0058] (1) Feeding: The newly made wire spool 100 is slowly released from the take-up bin and immediately arrives at the feeding conveyor 11. It arrives at the receiving cavity 30 of the flipping device 3 along the conveying track of the feeding conveyor 11. At this time, the first opening of the receiving cavity 30 faces the initial threading and unloading end cap device 1, and the second opening of the receiving cavity 30 faces the feeding conveyor 11.
[0059] (2) Threading: While the flipping support 31 remains stationary, the first rotating component 32 and the second rotating component 33 work together to drive the coil 100 to rotate. At the same time, the initial threading and end cap removal device 1 performs the initial threading of the coil 200 in the coil 100. When the second rotating component 33 rotates 45°, the initial threading and end cap removal device 1 completes one initial threading operation, so that the plastic steel belt forms a uniform wrap on the coil 200, thereby achieving multi-directional fastening of the coil 200.
[0060] (3) Unloading the end cap: After the initial threading is completed, the flip support 31 is rotated 90° so that the second opening faces the screw unloading device 2 and the first opening faces the feeding conveyor 11. The screw unloading device 2 automatically identifies and accurately positions the screw on the end cap 300 and quickly unloads the screw. After unloading the screw, the flip support 31 is rotated 90° so that the first opening faces the initial threading and end cap unloading device 1 and the second opening faces the feeding conveyor 11. The initial threading and end cap unloading device 1 is also used to remove the end cap 300 after screw unloading and quickly unload the end cap. After unloading the end cap, the flip support 31 is rotated 90° so that the second opening faces the screw unloading device 2 and the first opening faces the feeding conveyor 11. The transfer clamping device 5 transfers the wire coil 200 to the bagging and film covering device 4.
[0061] (4) Bagging: During the process of the transfer clamping device 5 placing the wire coil 200 below the bagging and film-coating device 4, the bagging and film-coating device 4 starts bagging from below the wire coil 200. After bagging, the wire coil 200 is placed on the fourth rotating part 72 of the reciprocating transport device 7. At this time, the fourth rotating part 72 is located at the end of the slide rail near the bagging and film-coating device 4. After bagging, the slider of the sliding part 71 of the reciprocating transport device 7 moves the wire coil 200 to the heating space 60 of the heat sealing device 6 through the fourth rotating part 72 to heat the bag wrapped on the wire coil 200.
[0062] (5) Film coating and film heating: After the bag is heated, the slider of the sliding component 71 moves the coil 200 to the bag coating equipment 4 through the fourth rotating component 72; then, the fourth rotating component 72 drives the coil 200 to rotate, and at the same time, the bag coating equipment 4 coats the top of the coil 200 with film; after the film coating is completed, the slider of the sliding component 71 moves the coil 200 to the heating space 60 of the heat sealing equipment 6 through the fourth rotating component 72 again, so as to heat the film wrapped on the coil 200.
[0063] (6) Overall threading: After heat sealing, the pallet 400 is pushed by the pallet supply equipment 9 to the overall threading equipment 10, and the wire coil 200 reaches the intermediate conveyor equipment 8 to be transported by the intermediate conveyor equipment 8 to the pallet 400 at the overall threading equipment 10; then, the overall threading equipment 10 performs overall threading on the supplied pallet 400 and the wire coil 200 located on the pallet 400 to form the finished wire coil package.
[0064] (7) Unloading: After the entire threading is completed, the finished product of the coil packaging arrives at the unloading conveyor 12 and is unloaded by the unloading conveyor 12.
[0065] As can be seen from the above description, the embodiments of this utility model achieve the following technical effects:
[0066] The wire reel packaging production line of this utility model is set on a supporting base. The production line includes: an initial threading and end cap removal device 1 and a screw removal device 2. The initial threading and end cap removal device 1 is used to initially thread the wire reel 200 in the wire reel 100. The screw removal device 2 is used to remove the screws on the end cap 300 in the wire reel 100 after the initial threading. The initial threading and end cap removal device 1 is also used to remove the end cap 300 after screw removal. A flipping device 3 is set between the initial threading and end cap removal device 1 and the screw removal device 2. The flipping device 3 includes a flipping support part 31, which has a receiving cavity 30 for accommodating the wire reel 100. The flipping support part 31 is rotatably arranged so that at least a portion of the opening of the receiving cavity 30 faces the initial threading and end cap removal device 1 or the screw removal device 2. Thus, the wire reel packaging production line of this utility model achieves automatic adjustment of the posture of the wire reel 100 through the flipping device 3. During the packaging process, the initial threading and end cap removal device 1 first threads the wire coil 200 in the wire coil 100 on the flipping device 3. Then, the flipping support 31 in the flipping device 3 rotates so that after the initial threading is completed, the wire coil 100 is rotated to the screw removal device 2 for screw removal. Then, the flipping support 31 in the flipping device 3 rotates again so that the initial threading and end cap removal device 1 can also remove the end cap 300 after screw removal. This solves the problem of low work efficiency in the product packaging stage of copper wire coils in the prior art, realizes efficient connection of the packaging production process of wire coil 200, avoids the uncertainty of manual operation, ensures the accuracy of threading, screw removal and end cap removal operations, reduces potential damage to wire coil 200, improves the packaging quality of wire coil 200, and realizes the continuous, efficient and stable packaging process of wire coil 200.
[0067] It should be noted that the terminology used herein is for the purpose of describing particular embodiments only and is not intended to limit the exemplary embodiments according to this application. As used herein, the singular form is intended to include the plural form as well, unless the context clearly indicates otherwise. Furthermore, it should be understood that when the terms "comprising" and / or "including" are used in this specification, they indicate the presence of features, steps, operations, devices, components, and / or combinations thereof.
[0068] Unless otherwise specifically stated, the relative arrangement, numerical expressions, and values of the components and steps described in these embodiments do not limit the scope of this application. It should also be understood that, for ease of description, the dimensions of the various parts shown in the drawings are not drawn to actual scale. Techniques, methods, and devices known to those skilled in the art may not be discussed in detail, but where appropriate, such techniques, methods, and devices should be considered part of the specification. In all examples shown and discussed herein, any specific values should be interpreted as merely exemplary and not as limitations. Therefore, other examples of exemplary embodiments may have different values. It should be noted that similar reference numerals and letters in the following drawings denote similar items; therefore, once an item is defined in one drawing, it need not be further discussed in subsequent drawings.
[0069] In the description of this application, it should be understood that the orientation or positional relationship indicated by directional terms such as "front, back, up, down, left, right", "horizontal, vertical, horizontal" and "top, bottom" is usually based on the orientation or positional relationship shown in the accompanying drawings, and is only for the convenience of describing this application and simplifying the description. Unless otherwise stated, these directional terms do not indicate or imply that the device or element referred to must have a specific orientation or be constructed and operated in a specific orientation, and therefore should not be construed as a limitation on the scope of protection of this application; the directional terms "inner" and "outer" refer to the inner and outer contours relative to the outline of each component itself.
[0070] For ease of description, spatial relative terms such as "above," "on top of," "on the upper surface of," "above," etc., are used herein to describe the spatial positional relationship of a device or feature as shown in the figures to other devices or features. It should be understood that spatial relative terms are intended to encompass different orientations in use or operation beyond the orientation of the device as described in the figures. For example, if the device in the figures were inverted, a device described as "above" or "on top of" other devices or structures would subsequently be positioned as "below" or "under" other devices or structures. Thus, the exemplary term "above" can include both "above" and "below." The device may also be positioned in other different ways (rotated 90 degrees or in other orientations), and the spatial relative descriptions used herein will be interpreted accordingly.
[0071] Furthermore, it should be noted that the use of terms such as "first" and "second" to define components is merely for the purpose of distinguishing the corresponding components. Unless otherwise stated, the above terms have no special meaning and therefore cannot be construed as limiting the scope of protection of this application.
[0072] The above description is merely a preferred embodiment of this utility model and is not intended to limit the utility model. Various modifications and variations can be made to this utility model by those skilled in the art. Any modifications, equivalent substitutions, improvements, etc., made within the spirit and principles of this utility model should be included within the protection scope of this utility model.
Claims
1. A spool winding package production line, characterized in that, The wire coil packaging production line is arranged on a support base and comprises: a primary threading and end cap removing device (1) and a screw removing device (2), the primary threading and end cap removing device (1) is used for primary threading of a wire coil (200) in a wire coil (100), the screw removing device (2) is used for removing a screw on an end cap (300) of the wire coil (100) after primary threading, and the primary threading and end cap removing device (1) is also used for taking away the end cap (300) after screw removal. A wire coil turning device (3) is arranged between the primary threading and end cap removing device (1) and the screw removing device (2), the wire coil turning device (3) comprises a turning support portion (31), the turning support portion (31) is provided with a containing cavity (30) for containing the wire coil (100), and the turning support portion (31) is rotatably arranged so that at least part of an opening of the containing cavity (30) is arranged towards the primary threading and end cap removing device (1) or the screw removing device (2).
2. The spool wrap packaging line of claim 1, wherein, The wire coil turning device (3) further comprises: a first rotating component (32) and a second rotating component (33) are arranged in the containing cavity (30) in a spaced manner, a center line of the first rotating component (32) and a center line of the second rotating component (33) are perpendicular to each other, the first rotating component (32) and the second rotating component (33) are rotatably arranged relative to the turning support portion (31) around their own center lines, respectively, to drive the wire coil (100) to rotate, and / or a turning driving portion (34) is drivingly connected with the turning support portion (31) to drive the turning support portion (31) to rotate.
3. The spool wrap packaging line of claim 1, wherein, The wire coil packaging production line comprises: a bagging and film coating device (4) is arranged on a side of the screw removing device (2) away from the wire coil turning device (3), the bagging and film coating device (4) is used for bagging and film coating of the wire coil (200) after end cap removal; a transfer clamping device (5) is arranged between the bagging and film coating device (4) and the screw removing device (2) to transfer the wire coil (200) after end cap removal in the containing cavity (30) to the bagging and film coating device (4).
4. The spool wrap packaging line of claim 3, wherein, The transfer clamping device (5) comprises a support frame (51), a third rotating component (52), a lifting moving component (53) and a clamping component (54) connected in sequence in a direction away from the support frame (51), the support frame (51) is arranged between the bagging and film coating device (4) and the screw removing device (2), the third rotating component (52) is rotatably arranged around a center line of the support frame (51) perpendicular to the support base, the lifting moving component (53) is liftably arranged in a direction parallel to a center line of the support frame (51), and the clamping component (54) comprises at least two clamping jaws (541) arranged in a manner that they can approach or move away from each other to clamp or release the wire coil (200).
5. The spool wrap packaging line of claim 3, wherein, The wire coil packaging production line comprises: a heat sealing device (6) which is spaced apart from the bag covering and film coating device (4) and comprises a heating space (60) for heating the bag or film wrapped on the wire coil (200); a reciprocating conveying device (7) which is arranged between the bag covering and film coating device (4) and the heat sealing device (6) and is used for receiving the wire coil (200) from the transfer clamping device (5) and moving the wire coil (200) between the bag covering and film coating device (4) and the heat sealing device (6).
6. The spool wrap packaging line of claim 5, wherein, The heat sealing device (6) comprises: a heating support frame (61) comprising the heating space (60); a top heating component (62) arranged on the top surface of the heating space (60); a side heating component (63) arranged on the side surface of the heating space (60).
7. The spool wrap packaging line of claim 5, wherein, The reciprocating conveying device (7) comprises: a sliding component (71) whose sliding rails extend to the bag covering and film coating device (4) and the heat sealing device (6) respectively; a fourth rotating component (72) for carrying the wire coil (200), which is arranged on the sliding block of the sliding component (71) to move the wire coil (200) with the sliding block of the sliding component (71), and is rotatably arranged relative to the sliding block of the sliding component (71) around its center line to rotate the wire coil (200).
8. The spool wrap packaging line of claim 3, wherein, The wire coil packaging production line comprises: an intermediate conveying device (8) whose first end extends to the bag covering and film coating device (4) and is used for conveying the wire coil (200) after the bag covering, film coating and heating are completed; a tray supply device (9) and an overall strapping device (10) which are spaced apart at the second end of the intermediate conveying device (8), the tray supply device (9) supplies trays (400) to the overall strapping device (10), the trays (400) are used for receiving the wire coils (200) from the second end of the intermediate conveying device (8), and the overall strapping device (10) is used for overall strapping the supplied trays (400) and the wire coils (200) on the trays (400) to form wire coil packaging finished products.
9. The spool wrap packaging line of claim 8, wherein, The tray supply device (9) comprises: a storage bin (91) which is arranged at the second end of the intermediate conveying device (8) and comprises a storage space (90) for storing the trays (400); A feeding component (92) is arranged at least partially in the storage space (90), and at least a part of the feeding component (92) is movably arranged in a direction close to or away from the integrated threading device (10) for pushing the tray (400) in the storage space (90) to the integrated threading device (10).
10. The spool wrap packaging line of claim 8, wherein, The wire coil packaging production line further comprises: A feeding conveying device (11) extends to the tray turning device (3) at one end for conveying the wire coil (100) to the tray turning device (3); and / or, A discharging conveying device (12) extends to the second end of the intermediate conveying device (8) at one end for discharging the wire coil packaging finished product.