reel stand
Patent Information
- Application Number
- CN202522148669.1
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-10-11
- Publication Date
- 2026-09-25
- Estimated Expiration
- 2035-10-11
AI Technical Summary
[0002]在配电盘组装时,通常需要多种不同规格的线盘,现有技术中,不同规格的线盘放在物料平台上,一方面,在工作人员需要使用特定规格的电线时,需要围绕物料平台转动,以寻找对应规格的线盘,导致费工、费时;另一方面,在多规格的电线需合并使用并截取相同长度时,工作人员先将多个规格的电线的端部对齐,在同时拉动多个规格的电线时,由于不同规格电线的线盘直径和张紧力以及在物料平台的位置存在差异,不仅力度难以控制,且容易造成电线弯折或损伤,影响配电盘的装配质量
[0021]本实用新型的放线架包括底座组件、转动支撑组件和至少两个承载盘,至少两个承载盘能够同步转动,承载盘上安装有能够支撑线盘并使线盘能够转动的转动支撑组件。在使用该放线架时,每个线盘放置在一个转动支撑组件上,工作人员作业时,可以使多个承载盘同步转动,便于在所有的承载盘上快速寻找所需规格的电线,减小作业强度,提高作业的效率;在工作人员拉扯取用一个线盘上的电线或者同步拉扯两个及以上线盘上的电线时,对应的转动支撑组件带动该线盘转动,从而能够协调各个线盘的张紧力,不仅提高了取线的便利性,且能避免拉扯电线时电线弯折或损伤,提升配电盘的装配质量。
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Figure CN224798220U_ABST
Abstract
Description
Technical Field
[0001] This utility model relates to the field of power distribution assembly tools, and in particular to a wire feeding frame. Background Technology
[0002] When assembling a distribution panel, various types of reels of different specifications are usually required. In the existing technology, reels of different specifications are placed on a material platform. On the one hand, when workers need to use a specific specification of wire, they need to rotate around the material platform to find the corresponding reel, which is labor-intensive and time-consuming. On the other hand, when multiple specifications of wire need to be combined and cut to the same length, workers first align the ends of the multiple specifications of wire. When pulling multiple specifications of wire at the same time, due to the differences in the diameter and tension of the reels of different specifications of wire and their positions on the material platform, it is not only difficult to control the force, but it is also easy to cause the wire to bend or be damaged, affecting the assembly quality of the distribution panel.
[0003] Therefore, there is an urgent need for a wire feeding frame to solve the above-mentioned technical problems. Utility Model Content
[0004] The purpose of this utility model is to provide a wire feeding rack that facilitates quick location of the required wires, and allows for coordination of the tension of the wire reel during wire feeding, making it easy to control the force and preventing damage to the wires.
[0005] To achieve this objective, the present invention adopts the following technical solution:
[0006] This utility model provides a wire feeding frame. The wire feeding frame includes a base assembly, a rotating support assembly, and at least two carrier disks. The at least two carrier disks are arranged at intervals along a first direction and are both supported by the base assembly. The at least two carrier disks can rotate synchronously about an axis along the first direction relative to the base assembly. The rotating support assembly is provided on the carrier disk, and the rotating support assembly is configured to carry the wire reel and enable the wire reel to rotate relative to the corresponding carrier disk.
[0007] As an optional solution, the base assembly includes a support column extending in a first direction, the bearing plate is provided with a first through hole, and the support column passes through at least two of the first through holes of the bearing plate.
[0008] The aforementioned cable tray also includes a support plate and a connecting assembly. The support plate is rotatably supported on the top of the aforementioned support column, and at least two of the aforementioned bearing plates are connected to the support plate through the aforementioned connecting assembly.
[0009] As an optional solution, the connecting assembly includes a screw and a first nut. The upper end of the screw is connected to the support plate. At least two of the bearing plates are sequentially inserted through the screw. The first nut is threadedly connected to the screw. The lower side of each bearing plate is supported by the first nut, and the position of the bearing plate along the first direction is adjustable.
[0010] As an optional solution, the above-mentioned connecting assembly further includes a second nut, which is threadedly connected to the screw. The second nut is provided on the upper side of each of the above-mentioned bearing discs, and the first nut and the second nut on both sides of the bearing discs clamp the bearing discs along the axial direction of the screw.
[0011] As an alternative, multiple screws are provided, forming at least two sets of screw groups. Each set of screw groups includes at least two screws arranged radially at intervals along the bearing disk. The at least two sets of screw groups are evenly distributed along the circumference of the bearing disk.
[0012] As an optional solution, a first adhesive strip is provided at the outer edge of the aforementioned carrier plate; and / or
[0013] A second adhesive strip is provided on the inner wall of the first through hole, and the second adhesive strip is in contact with the support column.
[0014] As an optional solution, the aforementioned wire feeding frame also includes a universal bullseye ball bearing, and the aforementioned support plate is rotatably supported on the top of the aforementioned support column via the aforementioned universal bullseye ball bearing.
[0015] As an optional solution, the aforementioned cable tray further includes a reinforcing member connected to the aforementioned support plate to reinforce the support plate; and / or
[0016] The support plate is provided with a second through hole, and the top of the support column passes through the second through hole. The cable feeding frame also includes a shielding member, which is provided on the upper side of the support plate and can cover the mating position between the support plate and the support column.
[0017] As an optional solution, the support plate is provided with a connecting hole, the connecting component passes through the connecting hole and is fixed to the support plate, and the reinforcing member covers the connection position between the support plate and the connecting component; and / or
[0018] The aforementioned wire feeding frame includes at least two of the aforementioned reinforcing members, which are evenly arranged along the circumference of the aforementioned support plate, and each of the aforementioned reinforcing members extends radially along the aforementioned support plate.
[0019] As an optional solution, the aforementioned rotating support assembly includes a double-layer turntable and a rotating shaft. The double-layer turntable includes a fixed disk and a rotating disk. The fixed disk is fixedly connected to the aforementioned bearing disk, and the rotating disk is rotatably disposed on the upper side of the aforementioned fixed disk. The rotating shaft is fixedly connected to the aforementioned rotating disk and is used for mounting the aforementioned coil.
[0020] The beneficial effects of this utility model are:
[0021] This utility model's wire feeding frame includes a base assembly, a rotating support assembly, and at least two carrier discs. The at least two carrier discs can rotate synchronously, and each carrier disc is equipped with a rotating support assembly that supports and allows the wire reels to rotate. When using this wire feeding frame, each wire reel is placed on a rotating support assembly. During operation, multiple carrier discs can rotate synchronously, facilitating quick location of the required wire specification on all carrier discs, reducing workload, and improving efficiency. When an operator pulls to retrieve a wire from one reel or simultaneously pulls wires from two or more reels, the corresponding rotating support assembly drives that reel to rotate, thereby coordinating the tension of each reel. This not only improves the convenience of wire retrieval but also prevents wire bending or damage during pulling, improving the assembly quality of the distribution panel. Attached Figure Description
[0022] Figure 1 This is a schematic diagram of the wire feeding frame provided in an embodiment of the present invention from a first-view perspective;
[0023] Figure 2 This is a schematic diagram of the wire feeding frame provided in this embodiment of the present invention from a second perspective;
[0024] Figure 3 This is a schematic diagram of the structure of the carrier plate provided in an embodiment of the present utility model;
[0025] Figure 4 This is a partial structural schematic diagram of the wire feeding frame provided in an embodiment of the present utility model;
[0026] Figure 5 This is a structural schematic diagram of the reinforcing member provided in an embodiment of this utility model.
[0027] In the picture:
[0028] 1. Base assembly; 11. Support column; 12. Base;
[0029] 2. Support plate; 21. First through hole; 22. First adhesive strip; 23. Second adhesive strip; 24. First mounting hole; 25. Second mounting hole;
[0030] 3. Rotating support assembly; 31. Double-layer turntable; 311. Fixed disc; 312. Rotating disc; 32. Rotating shaft;
[0031] 4. Support plate; 41. Second through hole;
[0032] 5. Connecting assembly; 51. Screw; 52. First nut; 53. Second nut;
[0033] 6. Universal bullseye ball bearing;
[0034] 7. Reinforcing components;
[0035] 8. Covering components;
[0036] 9. Thread reel. Detailed Implementation
[0037] The embodiments of this utility model are described in detail below. Examples of the embodiments are shown in the accompanying drawings, wherein the same or similar reference numerals denote the same or similar parts or parts having the same or similar functions throughout. The embodiments described below with reference to the accompanying drawings are exemplary and intended to explain this utility model, and should not be construed as limiting this utility model.
[0038] In the description of this utility model, unless otherwise explicitly specified and limited, the terms "connected," "linked," and "fixed" should be interpreted broadly. For example, they can refer to a fixed connection or a detachable connection; a mechanical connection or an electrical connection; a direct connection or an indirect connection through an intermediate medium; or the internal communication of two components or the interaction between two components. Those skilled in the art can understand the specific meaning of the above terms in this utility model according to the specific circumstances.
[0039] In the description of this utility model, unless otherwise expressly specified and limited, "above" or "below" the second feature can include direct contact between the first and second features, or contact between the first and second features through another feature between them. Furthermore, "above," "over," and "on top" of the second feature includes the first feature directly above or diagonally above the second feature, or simply indicates that the first feature is at a higher horizontal level than the second feature. "Below," "below," and "under" the second feature includes the first feature directly below or diagonally below the second feature, or simply indicates that the first feature is at a lower horizontal level than the second feature.
[0040] This embodiment provides a wire feeding frame for carrying wire reels 9. Different wire reels 9 can contain wires of different specifications. The following describes the process in conjunction with... Figure 1-5 The specific structure of the wire feeding frame will be described through specific implementation methods.
[0041] like Figure 1 and Figure 2As shown, the wire feeding frame includes a base assembly 1, a rotating support assembly 3, and at least two carrier disks 2. The at least two carrier disks 2 are spaced apart along a first direction and are both supported by the base assembly 1. The at least two carrier disks 2 are capable of synchronously rotating relative to the base assembly 1 about an axis along the first direction. In this embodiment, the first direction is vertical. The rotating support assembly 3 is provided on each carrier disk 2, and the rotating support assembly 3 is configured to support a wire reel 9 and enable the wire reel 9 to rotate relative to the corresponding carrier disk 2. When workers are operating the equipment, they first need to locate the required wire specifications. At this time, rotating one carrier plate 2 can drive all other carrier plates 2 to rotate synchronously, making it easy to locate the required wire specifications on all carrier plates 2. This can greatly reduce the intensity of work and improve the efficiency of work. Then, when workers pull to retrieve the required wires, especially when they need to retrieve two or more specifications of wires at the same time, the wire reels 9 located on the rotating support assembly 3 can rotate relative to the carrier plates 2. The rotation of each wire reel 9 relative to its corresponding carrier plate 2 can prevent the wires from getting tangled and coordinate the tension of each wire reel 9. This avoids the situation where the operator needs to repeatedly adjust the force due to the difference in the diameter and tension of the wire reels 9 of different specifications of wires. This improves the convenience of retrieving wires and can also prevent the wires from bending or being damaged when pulling them, thus improving the assembly quality of the distribution panel.
[0042] In this embodiment, as Figure 1 As shown, there are six support trays 2, and each support tray 2 has three rotating support components 3. The total number of rotating support components 3 is also the number of wire reels 9 that the pay-off frame can support. Optionally, the rotating support components 3 on the support trays 2 are evenly distributed to ensure uniform weight distribution of the entire pay-off frame and overall stability. In some optional embodiments, the number of support trays 2 can also be designed to be two, three, four, or other numbers, which can be flexibly set according to actual needs and are not specifically limited here. In some optional embodiments, the number of rotating support components 3 on each support tray 2 can also be designed to be two, four, or other numbers, which can be flexibly set according to actual needs and are not specifically limited here.
[0043] In this embodiment, the base assembly 1 includes a base 12 and a support column 11 extending along a first direction. The base 12 is used to support the ground, and the lower end of the support column 11 is fixed to the base 12. The support column 11 is used to support each bearing plate 2. In this embodiment, the base 12 can be designed as square, or as round, polygonal, etc., and can be flexibly set according to actual needs. No specific limitation is made here. In addition, the base 12 can be a solid block, or it can be made of sheet metal welded into a shell and filled with configuration materials to ensure that the base assembly 1 stably supports the entire wire feeding frame.
[0044] Specifically, such as Figure 2 and Figure 3As shown, the carrier plate 2 is provided with a first through hole 21, and the support column 11 passes through the first through hole 21 of each carrier plate 2. In addition, the cable feeder also includes a support plate 4 and a connecting assembly 5. The support plate 4 is rotatably supported on the top of the support column 11, and at least two carrier plates 2 are connected to the support plate 4 via the connecting assembly 5. The connecting assembly 5 connects the carrier plates 2 and the support plate 4, enabling each carrier plate 2 and the support plate 4 to move synchronously. The support column 11 passes through the first through hole 21 of the carrier plate 2, and its top rotates to support the support plate 4, allowing all carrier plates 2 to rotate relative to the support column 11.
[0045] Optionally, in this embodiment, both the carrier disk 2 and the support disk 4 are circular in shape and approximately equal in size, thus minimizing interference with other external structures during synchronous rotation of the carrier disk 2 and the support disk 4. In this embodiment, the first through hole 21 is located at the center of the carrier disk 2. In other optional embodiments, the shapes of the support disk 4 and the carrier disk 2 can also be rectangular, polygonal, etc., and can be flexibly set according to actual needs, without specific limitations here.
[0046] In this embodiment, as Figure 2 As shown, the wire feeding frame also includes a universal ball bearing 6, and the support plate 4 is rotatably supported on the top of the support column 11 via the universal ball bearing 6. One end of the universal ball bearing 6 is a ball bearing, and the other end is a connecting bolt. The end of the universal ball bearing 6 with the connecting bolt is installed on the top of the support column 11, and the other end of the universal ball bearing 6 with a ball bearing is engaged in the second through hole 41 on the support plate 4. The universal ball bearing 6 connects the support column 11 and the support plate 4, realizing the rotational support of the support plate 4. Optionally, the second through hole 41 is located at the center of the support plate 4, so that the support plate 4 remains balanced under the support of the universal ball bearing 6. In some other optional embodiments, the connection between the support plate 4 and the support column 11 can also be achieved by other structures that can bear loads and allow the support plate 4 to rotate, such as ball joint bearings or angular contact bearings. The connection can be flexibly set according to actual needs, and no specific limitation is made here.
[0047] In some embodiments (not shown), the wire feeding frame also includes connecting columns, and the base assembly 1 includes only the base 12. Each bearing plate 2 is fixedly connected to the connecting column, and the connecting column is rotatably connected to the base 12 via bearings. This solution can also achieve synchronous rotation of multiple bearing plates 2.
[0048] like Figure 2As shown, in this embodiment, the connecting component 5 includes a screw 51 and a first nut 52. The upper end of the screw 51 is connected to the support plate 4. At least two bearing plates 2 are sequentially inserted through the screw 51. The first nut 52 is threadedly connected to the screw 51. The lower side of each bearing plate 2 is supported by the first nut 52, and the position of the bearing plate 2 along the first direction is adjustable. The first nut 52 is not only used to support the bearing plate 2, but when the position of the first nut 52 on the screw 51 is adjusted, the distance between the corresponding bearing plate 2 and the adjacent bearing plate 2 or support plate 4 can be adjusted to meet the space placement requirements of different specifications of coils 9. Specifically, as shown... Figure 2 and Figure 3 As shown, the bearing plate 2 has a first mounting hole 24, and the screw 51 passes through the first mounting hole 24. Specifically, the number of screws 51 and the number of first mounting holes 24 are equal and correspond one-to-one.
[0049] like Figure 2 As shown, in this embodiment, the connecting component 5 further includes a second nut 53, which is threadedly connected to the screw 51. A second nut 53 is provided on the upper side of each bearing plate 2. The first nuts 52 and second nuts 53 on both sides of the bearing plate 2 clamp the bearing plate 2 along the axial direction of the screw 51. The screw 51 passes through the first mounting hole 24 of the bearing plate 2, and the first nuts 52 and second nuts 53 are respectively provided on the lower and upper sides of each bearing plate 2 to fix the bearing plate 2 to the screw 51, thus fixing the bearing plate 2 and making the wire feeding frame structure more stable, preventing the bearing plate 2 from moving up and down along the screw 51 during operation. It should be noted that when adjusting the position of the bearing plate 2 along the support column 11, the first nuts 52 and second nuts 53 on both sides of the bearing plate 2 need to be adjusted simultaneously.
[0050] like Figure 4 As shown in this embodiment, a support plate 4 passes through the upper end of the screw 51. The screw 51 is fixed to the support plate 4 by installing a first nut 52 threadedly connected to the screw 51 on the lower side and a second nut 53 threadedly connected to the screw 51 on the upper side of the support plate 4, respectively. In other optional embodiments, the upper end of the screw 51 and the support plate 4 can also be connected by snap-fit or welding, etc., depending on actual needs, and no specific limitation is made here.
[0051] In this embodiment, multiple screws 51 are provided, forming at least two sets of screw groups. Each set of screw groups includes at least two screws 51 arranged radially at intervals along the bearing plate 2. The at least two sets of screw groups are evenly distributed circumferentially along the bearing plate 2. The multiple screws 51 included in the at least two sets of screw groups, along with their first nuts 52 and second nuts 53, can provide multiple points of support and fixation for each bearing plate 2, ensuring stable support for each bearing plate 2 and its rotating support assembly 3 and wire reel 9, thereby improving the stability of the wire feeding frame support structure.
[0052] Specifically, such as Figure 1 and Figure 2 As shown, the connecting assembly 5 includes three sets of screw groups. Each set of screw groups includes two screws 51 arranged radially at intervals along the bearing plate 2. The three sets of screw groups are evenly distributed circumferentially along the bearing plate 2. The first nut 52 of each screw 51 jointly supports the bearing plate 2, thereby ensuring the stability of the bearing plate 2. The screw groups connected to the bearing plate 2 and the rotating support assembly 3 are distributed circumferentially at intervals, so that the screws 51 and the rotating support assembly 3 are staggered, making it easy to place the coil 9 on the rotating support assembly 3. In each set of screw groups, the two screws 51 arranged radially at intervals along the bearing plate 2 are positioned such that one is close to the center of the bearing plate 2 and the other is close to the edge of the bearing plate 2, further improving the stability of the bearing plate 2. By adjusting the first nuts 52 on the lower side of the same bearing plate 2 to a horizontal plane, the bearing plate 2 can be horizontally supported, preventing the bearing plate 2 from tilting during rotation and ensuring smooth rotation.
[0053] In some alternative embodiments, the number of screw groups can be two, four, etc., which can be flexibly set according to actual needs, and no specific limitation is made here. In some alternative embodiments, each screw group includes three, four, etc., which can be flexibly set according to actual needs, and no specific limitation is made here.
[0054] like Figure 3 As shown, a first adhesive strip 22 is provided at the outer edge of the support plate 2. The first adhesive strip 22 is provided to prevent workers from being scratched by burrs on the edge of the support plate 2 when rotating it, thus reducing potential safety hazards. In addition, the first adhesive strip 22 can also be provided on the outer edge of the support plate 4. Optionally, the connection between the first adhesive strip 22 and the outer edge of the support plate 2 can be by snap-fitting, bonding, etc., which can be flexibly set according to actual needs, and no specific limitation is made here.
[0055] like Figure 3 As shown, a second adhesive strip 23 is provided on the inner wall of the first through hole 21, and the second adhesive strip 23 contacts the support column 11. The contact between the second adhesive strip 23 and the support column 11 generates a certain frictional force. On the one hand, this frictional force can prevent the operator from rotating the bearing plate 2 too quickly, which would make it inconvenient to find the wire; on the other hand, the existence of this frictional force allows the wire reel 9 to rotate relative to the bearing plate 2 when the user pulls the wire, without causing the support plate 4 and the bearing plate 2 to rotate, thus preventing the wire reel 9, the support plate 4, and the bearing plate 2 from rotating together. Optionally, the connection between the second adhesive strip 23 and the inner wall of the first through hole 21 can be in the form of snap-fit, adhesive, etc., which can be flexibly set according to actual needs, and no specific limitation is made here.
[0056] like Figure 2 and Figure 3As shown, in this embodiment, the rotating support assembly 3 includes a double-layer turntable 31 and a rotating shaft 32. The double-layer turntable 31 includes a fixed disk 311 and a rotating disk 312. The fixed disk 311 is fixedly connected to the bearing disk 2, and the rotating disk 312 is rotatably disposed on the upper side of the fixed disk 311. The rotating shaft 32 is used for mounting the coil 9. The coil 9 is mounted on the rotating shaft 32 and located on the rotating disk 312. The rotating shaft 32 is used to circumferentially limit the coil 9, preventing the coil 9 from slipping off the double-layer turntable 31 when the wire is pulled.
[0057] Optionally, the double-layer turntable 31 is circular, with the fixed disk 311 and the rotating disk 312 being the same size. A fixed shaft is located at the center of the fixed disk 311, and the rotating disk 312 is connected to the fixed shaft via rolling bearings. Multiple balls can be arranged circumferentially on the fixed disk 311, and the rotating disk 312 has corresponding tracks for the balls. The fixed disk 311 and the rotating disk 312 achieve relative rotation through ball bearing support, resulting in low friction and allowing workers to easily pull out the wires. Optionally, the double-layer turntable 31 can be an existing standard turntable component, with one end fixedly connected to the carrier disk 2 and the other end connected to the rotating shaft 32 and rotating relative to the carrier disk 2.
[0058] In this embodiment, as Figure 3 As shown, the carrier plate 2 is provided with a second mounting hole 25, and the rotating support assembly 3 is fixed at the second mounting hole 25 by fasteners such as screws. The number of second mounting holes 25 on each carrier plate 2 and the number of rotating support assemblies 3 on each carrier plate 2 correspond one-to-one.
[0059] like Figure 4 and Figure 5 As shown, in this embodiment, the wire feeding frame also includes a reinforcing member 7, which is connected to the support plate 4 to enhance the strength of the support plate 4 and prevent the support plate 4 from deforming or being damaged due to excessive weight of the support plate 2, rotating support assembly 3, and wire reel 9 it supports. Optionally, the connection between the reinforcing member 7 and the support plate 4 can be a threaded connection for easy installation and disassembly. Alternatively, other connection methods can be selected, such as welding or snap-fitting, depending on actual needs. No specific limitations are made here.
[0060] In this embodiment, the wire feeding frame includes at least two reinforcing members 7, which are evenly arranged along the circumference of the support plate 4. Each reinforcing member 7 extends radially along the support plate 4, that is, the reinforcing members 7 form a radial arrangement, which can better support and strengthen the support plate 4.
[0061] like Figure 1As shown, in this embodiment, the pay-off stand comprises three reinforcing members 7, and the three reinforcing members 7 are evenly arranged along the circumferential direction of the support plate 4. In some other alternative embodiments, the number of the reinforcing members 7 can also be designed as two or four. In some embodiments, each reinforcing member 7 can also be arranged and fixed into an integrated structure, which can be flexibly arranged according to actual requirements, and is not specifically limited herein.
[0062] As Figure 1 shown, a connecting hole is provided on the support plate 4, a connecting assembly 5 passes through the connecting hole and is fixed to the support plate 4, and the reinforcing member 7 covers the connecting position of the support plate 4 and the connecting assembly 5. On one hand, it prevents the above-mentioned connecting position from being exposed and damaged; on the other hand, it prevents the end of the screw rod 51 from scratching operators, and furthermore, the reinforcing member 7 achieves a reinforcing effect on the above-mentioned connecting position. In this embodiment, the number of the reinforcing members 7 is the same as that of the screw rod groups, and each reinforcing member 7 covers the connecting position between the upper end of one screw rod group and the support plate 4 as well as the connecting assembly 5. Wherein, the number of the screw rods 51 is equal to that of the connecting holes and corresponds one-to-one thereto.
[0063] As Figure 5 shown, the cross section of the reinforcing member 7 is designed in a Ω-shaped (Chinese character "ji"-shaped) structure, the hollow position of the Ω-shaped structure is used to cover the head of the screw rod 51 and the second nut 53 located above the support plate 4, and the side wings of the Ω-shaped structure are fixed on the support plate 4. In this embodiment, the radially outward end of the reinforcing member 7 along the support plate 4 is in a blocked state, which prevents the reinforcing member 7 from scratching workers. In some other alternative embodiments, the reinforcing member 7 can also be designed into other shapes, for example, a groove is formed on the bottom side of the reinforcing member 7, which can be flexibly arranged according to actual requirements, and is not specifically limited herein.
[0064] As Figure 1 shown, the top of the support column 11 passes through the second through hole 41 on the support plate 4, the pay-off stand further comprises a shielding member 8, the shielding member 8 is arranged on the upper side of the support plate 4 and can cover the fitting position of the support plate 4 and the support column 11. On one hand, it prevents impurities such as dust from entering the fitting position of the support plate 4 and the support column 11 to affect the rotation of the bearing plate 2; on the other hand, it prevents the fitting position of the support plate 4 and the support column 11 from injuring operators, which improves the safety during use. As Figure 1 shown, the shielding member 8 is connected to the reinforcing member 7, which enhances the strength of the reinforcing member 7 and simultaneously covers the universal bullseye ball bearing 6 connected between the support plate 4 and the support column 11, preventing the universal bullseye ball bearing 6 from injuring operators, which improves the safety during use.
[0065] Optionally, the shielding member 8 is a plate-like structure with wings on its main body. In this embodiment, the shielding member 8 has three identical wings that are evenly distributed circumferentially on the main body, approximately in a "Y" shape. The main body of the shielding member 8 is located above the second through hole 41 of the support plate 4, and each wing is connected to the upper side of the reinforcing member 7 facing the second through hole 41 of the support plate 4. Optionally, the number of wings on the main body of the shielding member 8 can be adjusted according to the number and connection method of the reinforcing members 7, and no specific limitation is made here.
[0066] Optionally, the connection between the reinforcing member 7 and the shielding member 8 can be a threaded connection for easy installation and disassembly. Other connection methods, such as welding or snap-fit, can also be selected. The specific settings can be flexibly configured according to actual needs, and no specific limitations are made here.
[0067] Obviously, the above embodiments of this utility model are merely examples for clearly illustrating the present utility model, and are not intended to limit the implementation of the present utility model. Those skilled in the art can make other variations or modifications based on the above description. It is neither necessary nor possible to exhaustively list all possible implementations here. Any modifications, equivalent substitutions, and improvements made within the spirit and principles of this utility model should be included within the protection scope of the claims of this utility model.
Claims
1. A wire feeder, characterized in that, The assembly includes a base assembly (1), a rotating support assembly (3), and at least two carrier disks (2). The at least two carrier disks (2) are arranged at intervals along a first direction and are both supported by the base assembly (1). The at least two carrier disks (2) are capable of rotating synchronously about an axis along the first direction relative to the base assembly (1). The rotating support assembly (3) is provided on the carrier disk (2). The rotating support assembly (3) is configured to carry a wire reel (9) and enable the wire reel (9) to rotate relative to the corresponding carrier disk (2).
2. The wire feeding frame according to claim 1, characterized in that, The base assembly (1) includes a support column (11) extending in a first direction, and the bearing plate (2) is provided with a first through hole (21). The support column (11) passes through at least two of the first through holes (21) of the bearing plate (2). The wire feeding frame also includes a support plate (4) and a connecting component (5). The support plate (4) is rotatably supported on the top of the support column (11). At least two of the bearing plates (2) are connected to the support plate (4) through the connecting component (5).
3. The wire feeding frame according to claim 2, characterized in that, The connecting assembly (5) includes a screw (51) and a first nut (52). The upper end of the screw (51) is connected to the support plate (4). At least two of the bearing plates (2) are sequentially inserted through the screw (51). The first nut (52) is threadedly connected to the screw (51). The lower side of each bearing plate (2) is supported by the first nut (52), and the position of the bearing plate (2) along the first direction is adjustable.
4. The wire feeding frame according to claim 3, characterized in that, The connecting assembly (5) further includes a second nut (53), which is threadedly connected to the screw (51). The second nut (53) is provided on the upper side of each bearing plate (2). The first nut (52) and the second nut (53) on both sides of the bearing plate (2) clamp the bearing plate (2) along the axial direction of the screw (51).
5. The wire feeding frame according to claim 3, characterized in that, The screws (51) are provided in multiple ways and form at least two sets of screw groups. Each set of screw groups includes at least two screws (51) arranged radially at intervals along the bearing disk (2). The at least two sets of screw groups are evenly distributed along the circumference of the bearing disk (2).
6. The wire feeding frame according to claim 2, characterized in that, A first adhesive strip (22) is provided at the outer edge of the bearing plate (2); and / or A second adhesive strip (23) is provided on the inner wall of the first through hole (21), and the second adhesive strip (23) is in contact with the support column (11).
7. The wire feeding frame according to claim 2, characterized in that, The wire feeding frame also includes a universal bullseye ball bearing (6), and the support plate (4) is rotatably supported on the top of the support column (11) through the universal bullseye ball bearing (6).
8. The wire feeding frame according to claim 2, characterized in that, The wire feeding frame also includes a reinforcing member (7) connected to the support plate (4) for reinforcing the support plate (4); and / or The support plate (4) is provided with a second through hole (41), and the top of the support column (11) passes through the second through hole (41). The cable feeding frame also includes a shield (8), which is provided on the upper side of the support plate (4) and can cover the mating position of the support plate (4) and the support column (11).
9. The wire feeding frame according to claim 8, characterized in that, The support plate (4) is provided with a connecting hole, the connecting component (5) passes through the connecting hole and is fixed to the support plate (4), and the reinforcing member (7) covers the connection position between the support plate (4) and the connecting component (5); and / or The wire feeding frame includes at least two reinforcing members (7), which are evenly arranged around the circumference of the support plate (4), and each reinforcing member (7) extends radially along the support plate (4).
10. The wire feeder according to any one of claims 1-9, characterized in that, The rotating support assembly (3) includes a double-layer turntable (31) and a rotating shaft (32). The double-layer turntable (31) includes a fixed disk (311) and a rotating disk (312). The fixed disk (311) is fixedly connected to the bearing disk (2). The rotating disk (312) is rotatably disposed on the upper side of the fixed disk (311). The rotating shaft (32) is fixedly connected to the rotating disk (312). The rotating shaft (32) is used for the coil (9) to be fitted.