Bobbin frame for supplying yarns for weaving

By designing a yarn spool frame that includes components such as a main support frame, a fixed base, a yarn distribution bracket, a flexible rod, and a lead-in ring, the problems of yarn entanglement and low operating efficiency are solved, and the orderly guidance and fixation of yarn are achieved, thereby improving production efficiency and quality.

CN223892153UActive Publication Date: 2026-02-10GANZHOU YIDA NEW MATERIALS CO LTD
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Patent Information

Application Number
CN202520669718.3
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2025-04-10
Publication Date
2026-02-10
Estimated Expiration
2035-04-10

AI Technical Summary

Technical Problem

The existing yarn spools used in weaving are prone to yarn tangling during threading operations, which increases labor intensity and reduces production efficiency, especially in large-scale production.

Method used

Design a yarn spool frame that includes components such as a main support frame, a fixed base, a yarn distribution bracket, a flexible rod, a lead-in ring, a pull plate, a yarn clamp, and a movable clamp. Through layered arrangement and a guiding mechanism, it can achieve orderly guidance and fixation of yarn, reduce yarn entanglement, and improve operating efficiency.

Benefits of technology

It achieves orderly guidance and fixation of yarn, avoids yarn tangling, improves production efficiency and yarn quality, simplifies operation procedures, and reduces labor intensity.

✦ Generated by Eureka AI based on patent content.

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Abstract

The utility model relates to a bobbin frame, and provides the bobbin frame for supplying threads for weaving, which comprises a main support frame, a fixed seat, an inserting groove, a thread separating inserting frame, an embedding groove, a flexible rod, a thread leading ring and the like, at least two fixing seats are arranged on the left portion of the main supporting frame in a front-back symmetrical and layered mode, inserting grooves are formed in the fixing seats, branching inserting frames are arranged in the inserting grooves of the fixing seats in an embedded mode, a plurality of flexible rods are evenly arranged on one sides of the branching inserting frames at intervals, and lead rings are connected to the tail ends of the flexible rods. According to the utility model, the removable wire leading part is arranged and is matched with the clamping mechanism on the wire pulling plate, so that orderly arrangement and clamping of wire ends conveyed out of a plurality of bobbins can be realized at one time, and during wire pulling, a worker only needs to return once to finish wire leading and wire pulling work of a layer of bobbins on the upright post, so that the problem that the wire pulling efficiency is high in the conventional operation is avoided. The yarn entanglement caused by the fact that a worker holds a plurality of yarns is avoided, and the situation that the worker reciprocates between a yarn separating frame and a bobbin for many times is avoided.
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Description

TECHNICAL FIELD

[0001] The utility model relates to a bobbin rack, especially to a bobbin rack for weaving cloth. BACKGROUND

[0002] In the field of textile, the bobbin rack for weaving cloth as a key component, usually in a plane layered multiple bobbin seat to fix bobbin, and in the end of the bobbin rack configuration with lead hole lead plate. Its main function is to pull the yarn from the bobbin and guide to the loom through the lead hole, realize stable supply line. However, the design of the existing bobbin rack has obvious shortcomings: because there is no pulling tool, workers in the line threading, will manually hold multiple yarn threading operation, easy to cause the entanglement between yarn, affect the threading efficiency and yarn quality; if the worker orderly yarn on the bobbin into the lead plate, then the worker needs more times between the line rack and bobbin adjustment yarn path, not only increase the labor intensity, but also reduce the overall production efficiency, especially in large-scale production problem more prominent. SUMMARY

[0003] In order to overcome the shortcomings mentioned in the background art, the purpose of the utility model is to provide a bobbin rack for weaving cloth.

[0004] Technical scheme: a bobbin rack for weaving cloth, including main support frame, fixed seat, plug-in slot, line distribution plug-in frame, embedding groove, flexible rod, lead ring, lead plate, line clamp, movable clamp block, stand, rotary support seat and bobbin rack, the left part of the main support frame is symmetrically arranged and layered with not less than two fixed seats, the plug-in slot is formed in the fixed seat, the line distribution plug-in frame is embedded in the plug-in slot of the fixed seat, a plurality of flexible rods are uniformly arranged on one side of the line distribution plug-in frame, the lead ring is connected to the end of the flexible rod, the lead plate is arranged on the side of the line distribution plug-in frame away from the flexible rod, the lead plate is arranged in the same direction as the line distribution plug-in frame, the line clamp is arranged on the lead plate, the number of line clamps is consistent with the number of lead rings on the same line distribution plug-in frame, the line clamp is provided with a line clamp groove on the upper part, the movable clamp block is rotatably connected in the line clamp groove, the movable clamp block is in the shape of "L", the spring is connected to the lower part of the movable clamp block, the other end of the spring is connected to the line clamp, a plurality of stands are vertically and spaced arranged on the main support frame, the rotary support seat is arranged on the front and rear sides of the stand, the number of rotary support seats is consistent with the number of fixed seats on the same side, the rotary support seats are layered and arranged, the height positions of the rotary support seats correspond to the height positions of the line distribution plug-in frames on the same side, the number of stands is consistent with the number of lead rings on the line distribution plug-in frames, the bobbin rack is rotatably arranged on the rotary support seat, and the bobbin is hung on the bobbin rack.

[0005] As a further preferred scheme, the puller plate and the branch plug-in holder on the same fixing base are provided separately, the branch plug-in holder is provided with an embedding groove, and the two ends of the puller plate are respectively inserted into the embedding groove of the branch plug-in holder and the plug-in groove of the fixing base, so that the puller plate holding the yarn can be independently taken out when the puller work is completed, and the yarn is introduced into the subsequent processing equipment through the puller plate.

[0006] As a further preferred scheme, it further comprises strip springs, circular springs and mounting plates, and the strip springs are arranged circumferentially on the cylinder holders, and the circular springs are mounted at the ends of the cylinder holders.

[0007] As a further preferred scheme, it further comprises mounting plates, sensors and indicator lights, and a plurality of mounting plates are arranged in layers on the front and rear sides of the stand, the sensors are integrated on each mounting plate, the indicator lights are arranged close to the sensors on the mounting plates, the indicator lights are connected with the signals of the adjacent sensors, and the detection ends of the sensors are all directed to one side of the cylinder holder.

[0008] As a further preferred scheme, it further comprises a sliding table, a material moving trolley, a bottom plate and a plug rod, the sliding table is horizontally arranged at the lower part of the main support frame, the material moving trolley is slidably arranged in the sliding table, two front and rear symmetrical material bins are formed in the material moving trolley, the bottom plates are arranged at the lower parts of the material bins, and a plurality of plug rods are vertically arranged on the bottom plates.

[0009] As a further preferred scheme, it further comprises a lead wire support and a lead wire wheel, a plurality of lead wire supports are symmetrically arranged on the stand, the lead wire supports correspond to the positions of the cylinder holders on the same stand, the lead wire wheels are arranged on the lead wire supports, and the yarn drawn out of the bobbin can pass through the lead wire wheels during the pulling process.

[0010] The utility model has the advantages that: 1, the utility model sets up the lead wire component that can be taken out, cooperates the clamping mechanism on the puller plate, realizes orderly arrangement clamping of the line end of multiple bobbins, when pulling, workers only need to return once to complete the lead wire and pulling work of the bobbins on the stand, avoid the entanglement of yarn and the situation that workers move back and forth between the branch plug-in holder and the bobbins in conventional operation.

[0011] 2, the utility model discloses the combination design of strip spring and circular spring, can fix the bobbins, adapt to the demand of different size bobbins installation, prevent the bobbins from shaking or deviating during operation.

[0012] 3, the material moving trolley moves stably through the sliding table, the two front and rear symmetrical material bins are used for centralized storage of bobbins, the plug rods on the bottom plates can neatly arrange and fix the bobbins, when replacing the bobbins, workers can quickly take and replace the bobbins by moving the trolley, and the time required for replacing the bobbins is shortened.

[0013] 4. The utility model discloses a sensor real -time detection every cylinder on the cylinder frame's surplus line amount to be visualized reminding through demonstration light, and when the line cylinder surplus line is insufficient, sensor triggers demonstration light to light in time, and prompts the operator to replace or supplement, effectively avoid the situation that the whole production line is interrupted because of the individual line cylinder line shortage. BRIEF DESCRIPTION OF DRAWINGS

[0014] Figure 1 It is the three-dimensional structure schematic diagram of the utility model.

[0015] Figure 2 It is the three-dimensional structure schematic diagram of the utility model post, rotary support seat and cylinder frame etc.

[0016] Figure 3 It is the three-dimensional structure schematic diagram of the utility model wire guide mechanism.

[0017] Figure 4 It is the exploded view of the utility model wire guide mechanism.

[0018] Figure 5 It is the three-dimensional structure schematic diagram of the utility model mounting plate, sensor and demonstration light etc.

[0019] Figure 6 It is the three-dimensional structure schematic diagram of the utility model sliding table and material removal trolley etc.

[0020] Figure mark name: 1-main support frame, 2-fixed seat, 201-insertion slot, 21-wire insertion support, 2101-embedded groove, 22-flexible rod, 23-wire guide ring, 24-tensioning plate, 25-wire clamping seat, 26-movable clamping block, 3-post, 31-rotary support seat, 32-cylinder frame, 33-strip spring, 34-circular spring, 4-mounting plate, 41-sensor, 42-demonstration light, 5-sliding table, 51-material removal trolley, 52-bottom plate, 53-insertion rod, 6-wire guide bracket, 61-wire guide wheel. DETAILED DESCRIPTION

[0021] The technical solutions will be further described below in combination with specific embodiments, and it should be noted that: the words of indicating directions such as up, down, left and right in this paper are only for the position of the shown structure in the corresponding drawing. The serial numbers of parts in this paper, such as first, second, etc., are only used to distinguish the described objects, and do not have any sequence or technical meaning. Unless otherwise specified, the connection (coupling) mentioned in this application includes direct and indirect connection (coupling).

[0022] Example 1

[0023] A line cylinder frame for supplying line for weaving cloth, such as Figures 1-5As shown, it comprises a main support frame 1, a fixed seat 2, a plug-in slot 201, a line distribution plug-in frame 21, an embedded slot 2101, a flexible rod 22, a lead ring 23, a pull wire plate 24, a wire clamping seat 25, a movable clamp block 26, a stand 3, a rotating support seat 31 and a cylinder frame 32. A plurality of fixed seats 2 are symmetrically arranged on the left part of the main support frame 1 in layers, and the fixed seat 2 is connected with the main support frame 1 by welding or integral molding, which is stable and reliable in structure and ensures the stability of the whole device. The fixed seat 2 is provided with a plug-in slot 201, and the internal shape of the plug-in slot 201 matches the line distribution plug-in frame 21, so that the line distribution plug-in frame 21 can be easily inserted and firmly fixed in the fixed seat 2, and it is convenient to disassemble, which provides convenience for subsequent pull wire operation.

[0024] The plug-in slot 201 of the fixed seat 2 is embedded with the line distribution plug-in frame 21, and a plurality of flexible rods 22 are uniformly arranged on one side of the line distribution plug-in frame 21. The flexible rod 22 is connected with the line distribution plug-in frame 21 through the embedded slot 2101, which has a certain elastic deformation capacity and can adjust the position appropriately when the yarn is forced to pass through, so as to avoid damage to the yarn due to hard contact. The flexible rod 22 is connected with the lead ring 23 at the end, and the lead ring 23 provides a clear guide path for the yarn, so that the yarn can be accurately and correctly drawn out from the bobbin and pass through the corresponding lead ring 23, effectively reducing the crossing and entanglement between the yarns.

[0025] The pull wire plate 24 is arranged on the side of the line distribution plug-in frame 21 away from the flexible rod 22, and the pull wire plate 24 is fixedly connected with the line distribution plug-in frame 21 by bolts or welding, which ensures the structural strength and stability between the two. The arrangement direction of the pull wire plate 24 is consistent with that of the line distribution plug-in frame 21, and the pull wire plate 24 is provided with a wire clamping seat 25. The number of wire clamping seats 25 is consistent with the number of lead rings 23 on the same line distribution plug-in frame 21, which ensures that each yarn has an independent fixed point. The wire clamping seat 25 is provided with a wire clamping groove at the upper part, and the movable clamp block 26 is rotatably connected in the wire clamping groove. The movable clamp block 26 is in the shape of "L", and the lower part of the movable clamp block 26 is connected with a spring, and the other end of the spring is connected with the wire clamping seat 25. The spring applies a clamping force to the movable clamp block 26, so that the upper part of the movable clamp block 26 is overlapped on the upper part of the wire clamping seat 25, forming a stable clamping state; when it is necessary to release or fix the yarn, only the lower part of the movable clamp block 26 needs to be actuated, and the upper part of the movable clamp block 26 will rotate outward and open, thereby realizing the function of quickly assembling and disassembling the yarn. This design not only improves the operation efficiency, but also effectively prevents the problem of loosening caused by insufficient clamping force during the fixing process.

[0026] The plurality of vertical columns 3 are arranged vertically and spaced apart on the main support frame 1, and are connected to the main support frame 1 by welding or bolting, thereby enhancing the rigidity and stability of the overall structure. The plurality of vertical columns 3 are arranged on the front and rear sides of the vertical columns 3, and each vertical column 3 is provided with a plurality of rotary support seats 31 corresponding to the number of the same side fixed seats 2. The height positions of the rotary support seats 31 arranged in layers correspond to the height positions of the front and rear same side one-way plug-in frames 21, so that each one-way plug-in frame 21 can be accurately matched with the corresponding rotary support seat 31. The number of the vertical columns 3 is consistent with the number of the lead rings 23 on the one-way plug-in frames 21, that is, the number of the rotary support seats 31 arranged in each layer is consistent with the number of the lead rings 23 on the same side and the same layer, so that the yarn of each bobbin can be guided by a corresponding lead ring 23.

[0027] During the lead-out operation, the one-way plug-in frame 21 in the fixed seat 2 is first removed, and the yarn of the bobbin on the same side and the same height on the cylinder frame 32 is sequentially led out from right to left. The led-out yarn is sequentially arranged through the lead ring 23 according to the leading position of the yarn, and one end of the yarn is clamped in the wire clamping seat 25 by the movable clamping block 26 according to the position of the corresponding lead ring 23. After the wire clamping is completed, the one-way plug-in frame 21 is reinserted into the fixed seat 2. In this way, the worker only needs to return once to complete the lead-out and lead-out operation of the bobbin on one layer of the vertical column 3, which greatly reduces the situation that the worker repeatedly goes back and forth between the one-way plug-in frame and the bobbin in the traditional operation, and significantly improves the work efficiency. At the same time, since each yarn is guided by an independent lead ring 23 and fixed in the wire clamping seat 25, the entanglement problem of the plurality of yarns during holding is effectively avoided, the neatness and stability of the yarn are ensured, and the quality and efficiency of the textile production are further improved.

[0028] Embodiment 2

[0029] Based on the embodiment 1, as shown in Figure 4 The embedded groove 2101 in the one-way plug-in frame 21 matches the position and size of the two ends of the lead-out plate 24, so that the lead-out plate 24 can be accurately inserted and stably connected. The two ends of the lead-out plate 24 are respectively inserted into the insertion groove 201 of the fixed seat 2 and the embedded groove 2101 of the one-way plug-in frame 21. Through this double insertion mode, the lead-out plate 24 can be firmly fixed between the one-way plug-in frame 21 and the fixed seat 2 during the lead-out process, so as to avoid loosening or displacement of the lead-out plate 24 due to yarn tension or other external forces, thereby ensuring the stability of the lead-out operation.

[0030] When the tensioning work is completed, since the tensioning plate 24 and the distribution support 21 are in a split structure, the worker can easily pull out the tensioning plate 24 clamping the yarn from the insertion slot 201 of the fixed seat 2 and the embedding slot 2101 of the distribution support 21, realizing the independent extraction of the tensioning plate 24. This design significantly simplifies the process of introducing the yarn to the subsequent processing equipment, eliminating the need to adjust the yarn path or re-fix the yarn, reducing the operation steps and time consumption. At the same time, after the independent extraction of the tensioning plate 24, the yarn can be directly carried into the subsequent processing link, such as being introduced into a loom or other textile equipment, greatly improving the continuity and efficiency of the production process.

[0031] This split design also brings convenience for maintenance and replacement. When the tensioning plate 24 or the distribution support 21 is worn or damaged, the damaged parts can be replaced individually without the need for overall replacement, reducing maintenance costs. At the same time, the independence of the tensioning plate 24 also makes multi-station operation possible, such as one group of tensioning plates 24 performing subsequent processing while another group of tensioning plates 24 continue to perform tensioning operations, further optimizing production rhythm and meeting the efficient and flexible modern textile production demand.

[0032] In addition, as shown in FIGS. 1 and Figure 5 There are also strip-shaped elastic pieces 33 and circular elastic pieces 34 and a mounting plate 4. The strip-shaped elastic pieces 33 are arranged circumferentially on the bobbin to assist the bobbin holder 32 in supporting the inside of the installed bobbin. Through the elastic deformation capability of the strip-shaped elastic pieces 33, they can closely fit the inner wall of the bobbin core, effectively preventing the bobbin from moving axially or radially due to loosening during rotation, ensuring the stability of the yarn supply.

[0033] The bobbin holder 32 is provided with a circular elastic piece 34 at the end, which is fixedly connected with the bobbin holder 32 through the mounting plate 4. This design allows the circular elastic piece 34 to produce appropriate elastic deformation under stress, while maintaining sufficient supporting force and blocking effect. When installing the bobbin, the bobbin core is sleeved on the circular elastic piece 34 and pushed to the side of the rotating support seat 31. In this process, the circular elastic piece 34 is deformed by the pressure of the inner wall of the bobbin core and smoothly passes out from the inside of the bobbin core. When the bobbin is installed in place, the circular elastic piece 34 returns to its original shape and blocks the bobbin, while contacting one end of the bobbin to provide a maintaining force, preventing the bobbin from being pulled out due to external force or inertia, ensuring the safety of the bobbin during the entire yarn supply process.

[0034] When the bobbin is assembled, the bobbin core will be simultaneously sleeved on the outer periphery of the strip-shaped elastic piece 33 on the bobbin frame 32, and the strip-shaped elastic piece 33 will support the bobbin core inside through its own elastic deformation capacity, further enhancing the fixing effect of the bobbin. Under the dual action of the strip-shaped elastic piece 33 and the circular elastic piece 34, the bobbin can not only be firmly fixed in the axial direction, but also can be kept stable in the radial direction, avoiding the shaking or deviation of the bobbin due to the change of yarn tension in the yarn feeding process, thereby improving the precision and efficiency of yarn feeding. In addition, this design also has a certain universality, which can adapt to bobbins of different sizes and meet various production needs, significantly improving the practicality and flexibility of the equipment.

[0035] Embodiment 3

[0036] Based on embodiment 2, as shown in Figure 1 and Figure 5 , it also includes mounting plates 4, sensors 41 and indicator lights 42. The mounting plates 4 are arranged in multiple layers on the front and rear sides of the stand 3. This layered arrangement design can make full use of the space of the stand 3, ensure that the components on each mounting plate 4 can be reasonably distributed and work independently, and at the same time avoid interference between them.

[0037] Each mounting plate 4 is integrated with multiple sensors 41, which are used to detect the remaining amount of yarn on the corresponding bobbin frame 32 in real time. By accurately arranging the positions of the sensors 41, the detection ends of which are all directed to one side of a bobbin frame 32, the remaining state of the yarn on the bobbin can be accurately captured. When the yarn on the bobbin gradually decreases, the sensor 41 can timely perceive this change and transmit the signal to the control system.

[0038] Each mounting plate 4 is provided with an indicator light 42 near the sensor 41. The indicator light 42 is connected to the signal of the nearby sensor 41. When the sensor 41 detects that the remaining amount of yarn on the bobbin is lower than the preset value, the corresponding indicator light 42 will be triggered to light up immediately, reminding the operator that the bobbin at this position needs to be replaced or supplemented with yarn through the light. This visual reminder method is not only intuitive and efficient, but also helps the operator to quickly locate the position of the bobbin that needs to be processed, thereby reducing downtime and improving production efficiency.

[0039] Since each sensor 41 and indicator light 42 independently corresponds to one bobbin frame 32, even in the case of multiple bobbins feeding yarn at the same time, the system can accurately monitor the state of each bobbin, avoiding the interruption of the entire production line due to insufficient yarn in individual bobbins. This design not only improves the intelligent level of the equipment, but also provides strong support for continuous production and automated management, significantly optimizing the textile process.

[0040] In addition, as shown in Figure 1 and Figure 6As shown, it also includes a sliding platform 5, a material moving trolley 51, a bottom plate 52 and a plug rod 53. The lower part of the main support frame 1 is transversely provided with a sliding platform 5, and the sliding platform 5 is slidably provided with a material moving trolley 51. This design enables the material moving trolley 51 to move smoothly along the sliding platform 5, facilitating the transportation of the bobbin to or from the designated position, thereby improving the operation efficiency and reducing the labor intensity of manual transportation.

[0041] The material moving trolley 51 is provided with two front and rear symmetrical material bins. Each material bin is provided with a bottom plate 52 at the lower part, and a plurality of plug rods 53 are vertically arranged on the bottom plate 52. These plug rods 53 are used to centrally place the bobbins. By sleeving the bobbin core on the plug rod 53, the bobbins can be neatly arranged and stably fixed, avoiding the bobbins from falling or colliding with each other due to vibration or shaking during transportation, effectively protecting the integrity of the bobbins and the yarns inside. This not only facilitates the taking and replacing of the bobbins, but also provides reliable material storage and conveying support for the production line. When it is necessary to replace the bobbins, the operator can push the material moving trolley 51 to the appropriate position, quickly take out the used bobbins, and place the new bobbins with full yarn amount on the corresponding bobbin holder 32. The whole process is simple and efficient, greatly shortening the time required for replacing the bobbins, and further improving the production continuity. At the same time, since the material moving trolley 51 has two material bins, one can be used to store the bobbins to be used, while the other can be used to temporarily store the used bobbins, realizing the ordering of material management and providing a strong guarantee for automated production and assembly line operation.

[0042] In a more preferred embodiment, as shown in Figure 1 and Figure 2 As shown, it also includes a lead wire support 6 and a lead wire wheel 61. A plurality of lead wire supports 6 are symmetrically arranged on the upright column 3. Each lead wire support 6 is firmly installed on the upright column 3 by means of fixed bolts or welding, and its position accurately corresponds to one bobbin holder 32 on the same upright column 3. This design ensures that the yarns drawn from the bobbins can directly enter the corresponding lead wire path, avoiding the crossing or entangling of multiple yarns, thereby improving the stability and reliability of yarn transmission.

[0043] The lead wire support 6 is provided with a lead wire wheel 61, which is installed on the lead wire support 6 through a bearing and can rotate flexibly. When pulling the yarn, the yarn drawn from the bobbin will first pass through the lead wire wheel 61. The design of the lead wire wheel 61 effectively reduces the friction between the yarn and the equipment, thereby reducing the possibility of yarn abrasion during pulling and ensuring the quality and strength of the yarn. At the same time, the lead wire wheel 61 can also exert a certain tension adjustment effect on the yarn, ensuring that the yarn always maintains an appropriate tension state during transmission, avoiding the problems of knotting or breaking caused by relaxation.

[0044] Finally, it should be noted that: the above only for the preferred embodiments of the present application, and is not intended to limit the present application, although the foregoing embodiments of the present application has been described in detail, for the skilled in the art, it still can be modified, or for part of the technical features of the equivalent replacement, the spirit and principles of the present application, made any modification, equivalent replacement, improvement, etc., should be included within the scope of the present application.

Claims

1. A yarn spool frame for weaving, comprising a main support frame (1); Its characteristics are, It also includes a fixed base (2), a plug-in slot (201), a branch plug bracket (21), a groove (2101), a flexible rod (22), a lead wire ring (23), a pull wire plate (24), a wire clamp (25), a movable clamp (26), a column (3), a rotating support base (31), and a tube frame (32). The main support frame (1) has at least two fixed bases (2) arranged symmetrically and in layers on the left side. Each fixed base (2) is provided with a plug-in slot. (201) Each of the insertion slots (201) of the fixing base (2) is embedded with a branching bracket (21). Multiple flexible rods (22) are evenly spaced on one side of the branching bracket (21). Each flexible rod (22) is connected to a lead wire ring (23) at its end. A pull plate (24) is provided on the side of the branching bracket (21) away from the flexible rods (22). The pull plate (24) is arranged in the same direction as the branching bracket (21), and each pull plate (24) is provided with a wire clamp. 25), the number of wire clamps (25) is the same as the number of lead rings (23) on the same branch plug (21). The upper part of the wire clamps (25) is opened with wire clamping grooves. The wire clamps (26) are rotatably connected in the wire clamping grooves. The rotatable clamps (26) are in an "L" shape. The lower part of the rotatable clamps (26) is connected with springs. The other end of the springs is connected to the wire clamps (25). The main support frame (1) is vertical and has multiple columns (3) spaced apart. Rotary support seats (31) are arranged on the front and rear sides of the columns (3) with the same number as the fixed seats (2) on the same side. The height of the layered rotary support seats (31) corresponds to the height of a branch plug (21) on the front and rear sides. The number of columns (3) is the same as the number of lead rings (23) on the branch plug (21). The rotary support seats (31) are rotatably equipped with tube frames (32) and the tube frames (32) are used to hang the tubes.

2. The yarn feeder frame for weaving as described in claim 1, characterized in that, The pull plate (24) and the branching bracket (21) on the same fixed base (2) are set separately. The branching bracket (21) has a groove (2101). The two ends of the pull plate (24) are respectively inserted into the insertion groove (201) of the fixed base (2) and the groove (2101) of the branching bracket (21). This allows the pull plate (24) holding the yarn to be taken out independently when the pulling work is completed, and the yarn to be introduced into the subsequent processing equipment through the pull plate (24).

3. The yarn spool frame for weaving as described in claim 2, characterized in that, It also includes strip springs (33), circular springs (34) and mounting plates (4). Strip springs (33) are arranged circumferentially on the tube frame (32), and circular springs (34) are installed at the ends of the tube frame (32).

4. The yarn feeder frame for weaving as described in claim 3, characterized in that, It also includes mounting plates (4), sensors (41) and indicator lights (42). Multiple horizontally connected mounting plates are arranged in layers on both the front and rear sides of the column (3). Each mounting plate (4) integrates multiple sensors (41). An indicator light (42) is provided on the mounting plate (4) near the sensor (41). The indicator light (42) is connected to the signal of a nearby sensor (41). The detection end of each sensor (41) faces one side of the cylinder frame (32).

5. A yarn feeder frame for weaving as described in claim 4, characterized in that, It also includes a slide table (5), a material transfer trolley (51), a base plate (52) and insert rods (53). The main support frame (1) is horizontally provided with a slide table (5). The material transfer trolley (51) is slidably provided in the slide table (5). There are two symmetrical material bins in the material transfer trolley (51). The bottom of each material bin is provided with a base plate (52). Several insert rods (53) are vertically provided on the base plate (52).

6. The yarn feeder frame for weaving as described in claim 5, characterized in that, It also includes a lead wire bracket (6) and a lead wire wheel (61). Multiple lead wire brackets (6) are symmetrically arranged on the column (3). The lead wire bracket (6) corresponds to a bobbin (32) on the same column (3). Each lead wire bracket (6) is equipped with a lead wire wheel (61). When pulling the wire, the yarn drawn from the bobbin will first pass around the lead wire wheel (61).