Device for spin-drying coiled wires

The disk sway reduction mechanism for wire coils addresses the issue of off-center rotation during centrifugal drying by maintaining coil position and stability, improving drying efficiency and equipment safety.

CN223106586UActive Publication Date: 2025-07-15ZHE JIANG SELENO SCI & TECH CO LTD
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Patent Information

Application Number
CN202421961804.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-08-14
Publication Date
2025-07-15
Estimated Expiration
2034-08-14

AI Technical Summary

Technical Problem

During the drying process, the shaking of the disc wire causes eccentric rotation, causing the equipment to wear. The existing drying method may cause damage to the disc wire or the quality will be reduced.

Method used

The rotating equipment is used to drive the disc filament to rotate at high speed, and the disc filament is fixed with the limiting assembly and connecting parts to ensure that it maintains a stable position during the drying process, reduces shaking, and quickly discharges moisture through the air flow path. The load-bearing device and auxiliary rotary mechanism are designed to enhance the stability of the device.

Benefits of technology

It effectively avoids the wear of the equipment by eccentric rotation of the disc wire, improves the drying efficiency and the stability of the device, reduces the energy loss and safety risks of the equipment, and improves production efficiency.

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Abstract

The utility model relates to a device for spin-drying coiled wires, which comprises a rotating device and a coiled wire container, the coiled wire container comprises a placing basket and a coiled wire limiting assembly, the coiled wire limiting assembly is fixedly arranged at the central position of the placing basket, the center of the coiled wire limiting assembly is provided with a through hole, the side wall of the placing basket is provided with at least two through holes, and the through holes are symmetrically arranged. A connecting part used for being fixedly connected with another placing basket is further arranged at the bottom of the placing basket, the rotating equipment comprises a driving motor and a connecting rod, a motor rotating shaft of the driving motor faces upwards, the connecting rod is fixedly connected with the motor rotating shaft, and the penetrating hole is fixedly connected with the connecting rod. Coiled wires are dried in a spin-drying mode, the coiled wire containing tool is driven to rotate through rotating equipment, a series of structures are designed to guarantee the stability and reliability of the device, shaking of the coiled wires in the spin-drying process is reduced, and abrasion of the equipment caused by eccentric rotation of the coiled wires is avoided.
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Description

Technical Field

[0001] The utility model relates to the field of metal wire processing and manufacturing, in particular to a device for drying coiled wire. Background Art

[0002] In the processing of brazing materials, the filler metal forms a welding wire after extrusion, and the welding wire is wound on a welding wire reel to form coiled wire for transportation and storage. Some coiled wire is prone to moisture absorption and oxidation when stored in a humid and dark environment for a long time. Therefore, it is necessary to remove the surface oxide scale, rust and other impurities by pickling with dilute sulfuric acid to improve the surface quality of the welding wire, so as to ensure the stability during the welding process and the quality of the welded joint. After pickling, it is usually necessary to wash with water again to remove the residual pickling solution and dissolved oxides, and then dry to prevent new pollution or corrosion caused by residual moisture. After the coiled wire is washed, due to the mutual overlap of the wires, a large amount of water will be adsorbed in the gaps between the wires, which brings certain difficulties to drying.

[0003] The Chinese utility model patent with the publication number CN217979644U discloses "a flux drying device for welding wire production", which includes a drying box and a welding wire reel. The drying box includes a hollow base and a housing fixed on the top of the base. A motor is fixed in the base, and the output shaft of the motor extends upward and is connected with a turntable. Clamping components are symmetrically arranged on both sides of the turntable to clamp the lower ends of both sides of the welding wire reel. Heating wires are symmetrically arranged in the inner walls of both sides at the lower end of the housing, and a drying component for hot air drying the welding wire reel is arranged at the top of the housing. By using this method, the inner and outer sides of the welding wire reel are uniformly dried by hot air, which speeds up the evaporation of moisture, makes the welding wire easier to be thoroughly dried, and improves the drying effect and efficiency.

[0004] However, drying the coiled wire by drying has its advantages but also has some problems. The drying effect is often affected by various factors, such as drying temperature, time, coiled wire material, etc. If the drying is improper, it may cause damage to the coiled wire or a decline in quality. Therefore, drying by centrifugal drying is a more stable and efficient drying method.

[0005] Centrifugal drying is a physical drying method that uses centrifugal force to dry, which can more thoroughly remove the moisture on the surface and inside of the coiled wire, and also avoids problems such as the surface of the coiled wire being oxidized again due to the heating of the residual pickling solution during the drying process. However, the coiled wire is heavy, and it is easy to shake during the centrifugal drying process, resulting in eccentric rotation of the coiled wire, which causes wear of the centrifugal drying equipment. Summary of the Invention

[0006] In view of the defects of the prior art, the technical problem to be solved by the utility model is to provide a device for spinning and drying the coiled wire, which uses a spinning method to dry the coiled wire while reducing the shaking of the coiled wire during the spinning process, thereby avoiding wear on the equipment caused by eccentric rotation of the coiled wire.

[0007] In order to solve the above technical problems, the utility model proposes a device for drying coiled wire, which adopts the following technical solutions:

[0008] A device for drying coiled wire comprises a rotating device and a coiling container, the coiling container comprises a placing basket and a coiling limit assembly, the coiling limit assembly is fixedly arranged at the center of the placing basket, a through opening is arranged in the center of the coiling limit assembly, a through hole is arranged on the side wall of the placing basket, there are at least two through holes and they are symmetrically arranged, a connecting part for fixedly connecting to another placing basket is also arranged at the bottom of the placing basket, the rotating device comprises a driving motor and a connecting rod, the motor rotating shaft of the driving motor faces upward, the connecting rod is fixedly connected to the motor rotating shaft, and the through opening is fixedly connected to the connecting rod.

[0009] With this structure, the wire coil limiting assembly and the placement basket jointly fix the wire coil in the wire coil container, ensuring that the wire coil can maintain a fixed position during the drying process, avoiding the wire coil from being scattered, preventing the wire coil from colliding with the wire coil container, reducing the shaking of the wire coil, and effectively avoiding eccentric rotation. The rotating device drives the connecting rod and the wire coil container in the through hole fixedly connected to it to rotate at high speed through the rotational power of the driving motor. This direct drive method effectively reduces the energy loss during power transmission, allowing the wire coil to be dried more quickly and evenly under the action of centrifugal force, thereby improving the drying efficiency. In addition, the openings provided on the wire coil container increase the path for air circulation, which helps to quickly discharge the moisture thrown out of the wire coil. The presence of the connecting part allows multiple placement baskets to be used in combination through fixed connection. During the drying process, multiple wire coil containers are fixed together to avoid collisions between multiple wire coil containers that affect the operation of the rotating device.

[0010] Furthermore, the wire coil limiting assembly includes an adjustment part and a fixed block, the fixed block is arranged at the center of the placement basket, there are four adjustment parts, the four adjustment parts are evenly arranged along the circumference of the outer side of the fixed block, a clamping block is arranged at the bottom of the adjustment part, a clamping slot is arranged at the bottom of the placement basket, there are at least two clamping slots, the clamping slots are evenly arranged along the radial direction of the placement basket, and the clamping block can be clamped into the clamping slot. The adjustment part can be adjusted for wire coils with different inner diameters, and the four adjustment parts form a balanced support structure to prevent eccentric rotation caused by the destruction of balance during rotation. The design of the clamping slot and the clamping block allows the adjustment part to be flexibly clamped into different clamping slot positions according to the inner diameter of the wire coil, thereby effectively limiting the movement range of the wire coil.

[0011] Preferably, the connecting part is fixedly arranged at the bottom edge of the placing basket. The connecting part is arranged in a ring shape, and a groove with the same shape as the top of the placing basket is arranged on the inner side of the connecting part. The groove can be used for clamping with the top of another placing basket. When multiple wire mesh containers are stacked, the top edge of the lower placing basket can closely fit on the inner side of the connecting part of the upper placing basket, forming a stable contact surface, enhancing the stability during the stacking process, and reducing the risk of stacking collapse caused by shaking or tilting.

[0012] Preferably, a limiting device is further included. The limiting device includes a moving mechanism and a bearing. A bearing mounting hole is arranged at the bottom of the moving mechanism, and the bearing is mounted in the bearing mounting hole. A guiding hole is arranged at the center of the bearing, and a guiding pin is fixedly arranged at the top of the connecting rod. The guiding hole is fixedly connected with the guiding pin. Through the close fit between the guiding hole and the guiding pin, the limiting device provides additional support and positioning for the connecting rod and the entire dehydration device. The lateral force and impact force received by the connecting rod and its related components during rotation are effectively dispersed and relieved, effectively preventing the possible offset or shaking during high-speed rotation.

[0013] Preferably, a pressing device is further included. The pressing device includes a pressing plate and a locking screw. The locking screw is in threaded connection with the pressing plate, and the locking screw is used to fix the pressing plate on the connecting rod. The pressing device fixes multiple wire mesh containers on the connecting rod, effectively preventing the possible loosening or falling off during high-speed rotation, and playing a further role in fixing the wire mesh containers.

[0014] Preferably, a load-bearing device is further included. The load-bearing device is fixedly arranged outside the driving motor. The load-bearing device includes a load-bearing seat and a load-bearing plate. The load-bearing plate is rotatably connected with the load-bearing seat. An opening is arranged at the center of the load-bearing plate, and the connecting rod passes through the opening and is fixedly connected with the opening. After multiple wire mesh containers are filled with wire mesh, they are heavy. Relying solely on the rotation equipment to bear the weight will cause a great load on the motor. By arranging a load-bearing device outside the driving motor to transfer the weight of the wire mesh to the ground, the problem of safe load bearing is considered. This helps to prevent equipment damage or safety accidents caused by excessive or unstable loads, and reduces mechanical stress caused by vibration or load changes, thereby prolonging the service life of the equipment.

[0015] Preferably, an auxiliary rotation mechanism is arranged between the load-bearing device and the rotation equipment. The inner side of the auxiliary rotation mechanism is fixedly connected with the motor rotating shaft, and the outer side of the auxiliary rotation mechanism is fixedly connected with the load-bearing seat. The design of the auxiliary rotation mechanism can enhance the stability of the rotation equipment, prevent excessive vibration or offset during rotation, and ensure the safety and accuracy of operation.

[0016] Preferably, it further includes a feeding device. A mechanical claw is provided at the bottom of the feeding device, and the mechanical claw is engaged with the placement basket. The presence of the feeding device makes the entire production process smoother and more efficient. The mechanical claw can accurately send the placement basket filled with coil wire to the drying position and take it out in time after drying, providing convenience for subsequent processing and treatment steps.

[0017] Preferably, it further includes guide rails. There are two guide rails, and chutes are provided on one side of each of the two guide rails. The two guide rails are arranged symmetrically in a mirror image. Both the limiting device and the feeding device are slidably connected to the chutes. The limiting device and the feeding device slide in the chutes, enabling easy precise positioning and rapid movement of these components. At the same time, the guide rails can be combined with automated devices such as sensors and controllers to achieve automatic control and precise positioning of the limiting device and the feeding device, further improving the automation level of the system.

[0018] Preferably, it further includes a water collection device. The water collection device includes a water collection tray and a water blocking chamber. The water collection tray is located at the bottom of the load-bearing device, and a water outlet is provided on the water collection tray. The water blocking chamber is rotatably connected to the water collection tray. The water outlet is connected to a drain pipe, and the waste liquid can flow to the waste liquid collection pool through the drain pipe during the drying process. The presence of the water collection device ensures effective collection of water, avoiding water splashing everywhere or penetrating into the interior of the equipment, reducing the workload of cleaning and maintenance. The design of the water blocking chamber can also prevent external water or foreign objects from entering the interior of the equipment to a certain extent, further enhancing safety.

[0019] In summary, this device for drying coil wire drives the coil wire container to rotate through a rotating device, dries the coil wire by means of centrifugation, and designs a series of structures to ensure the stability and reliability of the device, reducing the shaking of the coil wire during the drying process and avoiding wear on the equipment caused by eccentric rotation of the coil wire. BRIEF DESCRIPTION OF THE DRAWINGS

[0020] The following further elaborates on the present utility model in detail in conjunction with the drawings and specific embodiments.

[0021] Figure 1 is the schematic diagram of the overall assembly structure of the present utility model;

[0022] Figure 2 is the schematic diagram of a partial structure of the present utility model;

[0023] Figure 3 is the schematic diagram of the structure of the coil wire container of the present utility model;

[0024] Figure 4 is the schematic diagram of the structure of the limiting device of the present utility model;

[0025] Figure 5 is the schematic diagram of the structure of the coil wire limiting assembly of the present utility model;

[0026] Figure 6 It is a schematic diagram of the connection method of multiple wire coiling containers of the present utility model;

[0027] Rotating device - 1, driving motor - 11, motor rotating shaft - 111, connecting rod - 12, guiding pin - 121, wire coiling container - 2, placing basket - 21, connecting part - 211, clamping groove - 212, wire coiling limiting component - 22, through - opening - 221, adjusting part - 222, clamping block - 2221, fixing block - 223, through - hole - 23, limiting device - 3, moving mechanism - 31, bearing mounting hole - 311, bearing - 32, guiding hole - 321, pressing device - 4, pressing plate - 41, locking screw - 42, load - bearing device - 5, load - bearing seat - 51, load - bearing plate - 52, auxiliary rotating mechanism - 6, feeding device - 7, mechanical claw - 71, guide rail - 8, sliding groove - 81, water - collecting device - 9, water - collecting tray - 91, water outlet - 911, water - blocking chamber - 92. Detailed implementation manners

[0028] In order to make the purpose, technical solutions and advantages of the present utility model clearer, the present utility model will be further described in detail below with reference to the accompanying drawings and embodiments.

[0029] As Figure 1 shown, a device for drying wire coils includes a rotating device 1 and a wire coiling container 2. As Figure 3 shown, the wire coiling container 2 includes a placing basket 21 and a wire coiling limiting component 22. The wire coiling limiting component 22 is fixedly arranged at the central position of the placing basket 21. A through - opening 221 is arranged at the center of the wire coiling limiting component 22. Through - holes 23 are arranged on the side wall of the placing basket 21. There are at least two through - holes 23 and they are symmetrically arranged. A connecting part 211 for fixedly connecting another placing basket 21 is also arranged at the bottom of the placing basket 21. As Figure 2 shown, the rotating device 1 includes a driving motor 11 and a connecting rod 12. The motor rotating shaft 111 of the driving motor 11 faces upwards. The connecting rod 12 is fixedly connected to the motor rotating shaft 111. The through - opening 221 is fixedly connected to the connecting rod 12.

[0030] With this structure, the wire coil limiting assembly 22 and the placement basket 21 jointly fix the wire coil in the wire coil container 2, ensuring that the wire coil can maintain a fixed position during the drying process, avoiding the scattered wire coil, preventing the wire coil from colliding with the wire coil container 2, reducing the shaking of the wire coil, and effectively avoiding eccentric rotation. The rotating device 1 drives the connecting rod 12 and the wire coil container 2 in the through hole 221 fixedly connected thereto to rotate at high speed through the rotational power of the driving motor 11. This direct drive method effectively reduces the energy loss during the power transmission process, so that the wire coil can be dried more quickly and evenly under the action of centrifugal force, thereby improving the drying efficiency. In addition, the openings provided on the wire coil container 2 increase the path for air circulation, which helps to quickly discharge the water thrown out of the wire coil. The presence of the connecting portion 211 allows multiple placement baskets 21 to be used in combination through fixed connection. During the drying process, multiple wire coil containers 2 are fixed together to avoid collisions between multiple wire coil containers 2 that affect the operation of the rotating device 1.

[0031] Among them, as an embodiment of the fixed connection between the through hole 221 and the connecting rod 12, the through hole 221 is set as a square hole, the connecting rod 12 is set as a square tube, and the square hole and the square tube are interference fit; as another embodiment, the through hole 221 is set as a round hole, the connecting rod 12 is set as a round tube, the side wall of the round tube is provided with a connecting key, the inner wall of the round hole is provided with a keyway, and the connecting key and the keyway are fixedly connected. These embodiments can improve the stability and reliability of the structure, reduce looseness or displacement caused by vibration, and ensure that the connection part 211 remains stable when subjected to heavy loads.

[0032] Further, such as Figure 3 and Figure 5 As shown, the wire coiling limiting assembly 22 includes an adjusting portion 222 and a fixing block 223. The fixing block 223 is arranged at the center of the placement basket 21. Four adjusting portions 222 are arranged. The four adjusting portions 222 are evenly arranged along the outer circumference of the fixing block 223. A clamping block 2221 is arranged at the bottom of the adjusting portion 222. A clamping slot 212 is arranged at the bottom of the placement basket 21. There are at least two clamping slots 212. The clamping slots 212 are evenly arranged along the radial direction of the placement basket 21. The clamping block 2221 can be clamped into the clamping slot 212. The adjusting portion 222 can be adjusted for wire coils with different inner diameters. The four adjusting portions 222 form a balanced support structure to prevent eccentric rotation caused by the destruction of balance during rotation. The design of the clamping slot 212 and the clamping block 2221 allows the adjusting portion 222 to be flexibly clamped into different positions of the clamping slot 212 according to the inner diameter of the wire coil, thereby effectively limiting the movement range of the wire coil.

[0033] As a preference, Figure 3 and Figure 6As shown in the figure, the connecting part 211 is fixedly arranged at the bottom edge of the placing basket 21. The connecting part 21 is arranged in a ring shape. A groove with the same shape as the top of the placing basket 21 is arranged inside the connecting part 211, and the groove can be used for clamping with the top of another placing basket 21. When multiple wire-reel holders 2 are stacked, the top edge of the lower placing basket 21 can closely fit inside the connecting part 211 of the upper placing basket 21, forming a stable contact surface, enhancing the stability during the stacking process, and reducing the risk of stacking collapse caused by shaking or tilting.

[0034] Preferably, as Figure 1 and Figure 4 shown in the figure, a limiting device 3 is further included. The limiting device 3 includes a moving mechanism 31 and a bearing 32. A bearing mounting hole 311 is arranged at the bottom of the moving mechanism 31, and the bearing 32 is mounted in the bearing mounting hole 311. A guiding hole 321 is arranged at the center of the bearing 32, and a guiding pin 121 is fixedly arranged at the top of the connecting rod 12. The guiding hole 321 is fixedly connected with the guiding pin 121. Through the tight fit between the guiding hole 321 and the guiding pin 121, the limiting device 3 provides additional support and positioning for the connecting rod 12 and the entire dehydration device. The lateral force and impact force received by the connecting rod 12 and its related components during rotation are effectively dispersed and relieved, effectively preventing possible offset or shaking during high-speed rotation.

[0035] Preferably, as Figure 1 and Figure 2 shown in the figure, a pressing device 4 is further included. The pressing device 4 includes a pressing plate 41 and a locking screw 42. The locking screw 42 is in threaded connection with the pressing plate 41, and the locking screw 42 is used to fix the pressing plate 41 on the connecting rod 12. The pressing device 4 fixes multiple wire-reel holders 2 on the connecting rod 12, effectively preventing possible loosening or falling off during high-speed rotation, and playing a further role in fixing the wire-reel holders 2.

[0036] Preferably, as Figure 2 shown in the figure, a load-bearing device 5 is further included. The load-bearing device 5 is fixedly arranged outside the driving motor 11. The load-bearing device 5 includes a load-bearing seat 51 and a load-bearing plate 52. The load-bearing plate 52 is rotatably connected with the load-bearing seat 51. An opening is arranged at the center of the load-bearing plate 52, and the connecting rod 12 passes through the opening and is fixedly connected with the opening. After multiple wire-reel holders 2 are filled with wire reels, the weight is relatively large. Relying only on the rotating device 1 to bear the load will cause a great load on the motor. By arranging the load-bearing device 5 outside the driving motor 11 to transfer the weight of the wire reels to the ground, the problem of safe load bearing is considered. This helps to prevent equipment damage or safety accidents caused by excessive or unstable load, and reduces mechanical stress caused by vibration or load change, thereby extending the service life of the equipment.

[0037] Among them, as an implementation manner of the rotation connection between the load-bearing plate 52 and the load-bearing seat 51, a groove is provided along the circumference at the top of the load-bearing seat 51. There are a plurality of spherical balls in the groove, and the tops of the spherical balls are slightly higher than the groove. When the rotating device 1 drives the load-bearing plate 52 to rotate, the plurality of spherical balls roll in the groove, thereby reducing the friction between the load-bearing plate 52 and the load-bearing seat 51.

[0038] Preferably, as Figure 2 shown, an auxiliary rotation mechanism 6 is provided between the load-bearing device 5 and the rotating device 1. The inner side of the auxiliary rotation mechanism 6 is fixed to the motor rotating shaft 111, and the outer side of the auxiliary rotation mechanism 6 is fixed to the load-bearing seat 51. The design of the auxiliary rotation mechanism 6 can enhance the stability of the rotating device 1, prevent excessive vibration or deviation during rotation, and ensure the safety and accuracy of operation.

[0039] Among them, as an implementation manner, the auxiliary rotation mechanism 6 can be a bearing. The inner side of the bearing is fixedly connected to the connecting rod 12, and the outer side of the bearing is fixedly connected to the load-bearing seat 51, thereby reducing the vibration of the rotating device 1 and also providing a certain amount of rotation power.

[0040] Preferably, as Figure 1 shown, a feeding device 7 is further included. A mechanical claw 71 is provided at the bottom of the feeding device 7, and the mechanical claw 71 is engaged with the placing basket 21. The presence of the feeding device 7 makes the entire production process smoother and more efficient. The mechanical claw 71 can accurately send the placing basket 21 filled with coil wire to the drying position and timely take it out after drying, providing convenience for subsequent processing and treatment links.

[0041] Preferably, as Figure 1 shown, a guide rail 8 is further included. There are two guide rails 8, and a chute 81 is provided on one side of each of the two guide rails 8. The two guide rails 8 are arranged symmetrically. Both the limiting device 3 and the feeding device 7 are slidably connected to the chute 81. The limiting device 3 and the feeding device 7 slide in the chute 81, which can easily achieve the precise positioning and rapid movement of these components. At the same time, the guide rail 8 can be combined with automation devices such as sensors and controllers to realize the automatic control and precise positioning of the limiting device 3 and the feeding device 7, further improving the automation level of the system.

[0042] Preferably, as Figure 1As shown in the figure, it further includes a water collecting device 9, which includes a water collecting tray 91 and a water retaining chamber 92. The water collecting tray 91 is located at the bottom of the load-bearing device 5. An outlet 911 is provided on the water collecting tray 91. The water retaining chamber 92 is rotatably connected to the water collecting tray 91. The outlet 911 is connected to a drain pipe. During the dehydration process, the waste liquid can flow to the waste liquid collection pool through the drain pipe. The presence of the water collecting device 9 ensures that the moisture is effectively collected, avoids the moisture splashing everywhere or penetrating into the interior of the device, reduces the workload of cleaning and maintenance. The design of the water retaining chamber 92 can also prevent external moisture or foreign objects from entering the interior of the device to a certain extent, further improving the safety performance.

[0043] In summary, this device for dehydrating the wire coils drives the wire coil container to rotate through a rotating device, dries the wire coils by means of dehydration, and designs a series of structures to ensure the stability and reliability of the device, reduces the shaking of the wire coils during the dehydration process, and avoids the wear of the device caused by the eccentric rotation of the wire coils.

[0044] In short, the above description is only a preferred embodiment of the present invention and is not intended to limit the present invention. Any modifications, equivalent replacements, and improvements made within the spirit and principle of the present invention shall be included in the protection scope of the present invention.

Claims

1. A device for drying coiled wires, comprising a rotating device (1) and a coiled wire container (2), characterized in that: The wire coiling container (2) includes a placement basket (21) and a wire coiling limiting component (22). The wire coiling limiting component (22) is arranged at the central position of the placement basket (21). A through hole (221) is arranged at the center of the wire coiling limiting component (22). Through holes (23) are arranged on the side wall of the placement basket (21). There are at least two through holes (23) and they are symmetrically arranged. A connecting part (211) for fixedly connecting another placement basket (21) is also arranged at the bottom of the placement basket (21). The rotating device (1) includes a driving motor (11) and a connecting rod (12). The motor rotating shaft (111) of the driving motor (11) faces upward. The connecting rod (12) is fixedly connected to the motor rotating shaft (111). The through hole (221) is fixedly connected to the connecting rod (12).

2. The device for drying and threading the dish wire according to claim 1, characterized in that: The wire coiling limiting component (22) includes an adjusting part (222) and a fixing block (223). The fixing block (223) is arranged at the central position of the placement basket (21). There are four adjusting parts (222). The four adjusting parts (222) are evenly arranged circumferentially along the outer side of the fixing block (223). A clamping block (2221) is arranged at the bottom of the adjusting part (222). Clamping grooves (212) are arranged at the bottom of the placement basket (21). There are at least two clamping grooves (212). The clamping grooves (212) are evenly arranged radially along the placement basket (21). The clamping block (2221) can be clamped into the clamping groove (212).

3. The device for drying and spinning silk according to claim 2, characterized in that: The connecting part (211) is fixedly arranged at the bottom of the placement basket (21). The connecting part (211) is arranged in a ring shape. A groove with the same shape as the top of the placement basket (21) is arranged inside the connecting part (211). The groove can be used for clamping with the top of another placement basket (21).

4. The device for drying and winding silk according to claim 1, characterized in that: A limiting device (3) is also included. The limiting device (3) includes a moving mechanism (31) and a bearing (32). A bearing mounting hole (311) is arranged at the bottom of the moving mechanism (31). The bearing (32) is mounted in the bearing mounting hole (311). A guiding hole (321) is arranged at the center of the bearing (32). A guiding pin (121) is fixedly arranged at the top of the connecting rod (12). The guiding hole (321) is fixedly connected to the guiding pin (121).

5. The device for drying and winding silk according to claim 4, characterized in that: A pressing device (4) is also included. The pressing device (4) includes a pressing plate (41) and a locking screw (42). The locking screw (42) is in threaded connection with the pressing plate (41). The locking screw (42) is used for fixing the pressing plate (41) on the connecting rod (12).

6. The device for drying and threading the wire according to claim 5, characterized in that: A load-bearing device (5) is also included. The load-bearing device (5) is fixedly arranged outside the driving motor (11). The load-bearing device (5) includes a load-bearing seat (51) and a load-bearing plate (52). The load-bearing plate (52) is rotatably connected to the load-bearing seat (51). An opening is arranged at the center of the load-bearing plate (52). The connecting rod (12) passes through the opening. The opening is fixedly connected to the connecting rod (12).

7. The device for drying and winding silk according to claim 6, characterized in that: An auxiliary rotation mechanism (6) is provided between the load-bearing device (5) and the rotating device (1). The inner side of the auxiliary rotation mechanism (6) is fixed to the motor rotating shaft (111), and the outer side of the auxiliary rotation mechanism (6) is fixed to the load-bearing seat (51).

8. The device for drying and coiling wire according to claim 7, characterized in that: It further includes a feeding device (7). A mechanical claw (71) is provided at the bottom of the feeding device (7), and the mechanical claw (71) can be engaged with the placement basket (21).

9. The device for drying and threading the wire according to claim 8, characterized in that: It further includes guide rails (8). There are two guide rails (8). Chute grooves (81) are provided on one side of the two guide rails (8). The two guide rails (8) are arranged symmetrically in a mirror image. The limiting device (3) and the feeding device (7) are both slidably connected to the chute grooves (81).

10. The device for drying and winding silk according to claim 6, characterized in that: It further includes a water collecting device (9). The water collecting device (9) includes a water collecting tray (91) and a water blocking chamber (92). The water collecting tray (91) is located at the bottom of the load-bearing device (5). A water outlet (911) is provided on the water collecting tray (91). The water blocking chamber (92) is rotatably connected to the water collecting tray (91).

Citation Information

Patent Citations

  • Flux core drying device for welding wire production

    CN217979644U