Adjustable independent feeding mechanism of single-needle-cylinder hosiery machine

The single-needle hosiery machine has an adjustable independent feeding mechanism, and utilizes hydraulic control and sensor induction to solve the problems of thread entanglement and breakage, achieving a fast and stable feeding process, and improving production efficiency and worker convenience.

CN223304650UActive Publication Date: 2025-09-05ZHUJI XINGHUA MASCH CO LTD
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Patent Information

Application Number
CN202422228827.X
Authority / Receiving Office
CN · China
Patent Type
Utility models(China)
Current Assignee / Owner
Filing Date
2024-09-11
Publication Date
2025-09-05
Estimated Expiration
2034-09-11

AI Technical Summary

Technical Problem

In the prior art, wire materials are easily entangled and fall off during the feeding process, and become scattered after breaking, which affects production efficiency and workers' physical exertion.

Method used

The single-needle hosiery machine adopts an adjustable independent feeding mechanism, including a feeding hydraulic press, a motor, a hydraulic rod, a clamp assembly and a sensor. Through hydraulic control and sensor induction, the thread material can be automatically collected, fixed and quickly fed.

Benefits of technology

It improves the speed and efficiency of wire feeding, avoids production interruptions caused by wire entanglement and breakage, and reduces the time and physical energy consumption of workers in arranging and replacing the feeding shaft.

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Abstract

The utility model relates to the technical field of hosiery machines, and discloses an adjustable independent feeding mechanism of a single-needle hosiery machine, which comprises a feeding bottom plate, a feeding hydraulic machine is inserted on the upper surface of the feeding bottom plate, and one end of the feeding hydraulic machine is sleeved with a feeding hydraulic rod, a feeding motor, a feeding shaft, a fixing rod and a fixing hydraulic machine. The feeding device is reasonable in structure, the feeding shaft with collected threads is inserted into the movable seat and the thread end fixing hook to be wound, time waste caused by the fact that thread ends are difficult to find during feeding is avoided, the sliding rail on the inner side of the feeding box enables the feeding shaft to be stored on one side of the feeding box, the sliding seat slides on the feeding box, and the suction cup on the sliding seat is sucked to the lower surface of the movable seat. The feeding shaft moves to the feeding position for feeding, after feeding is completed, a worker pulls the feeding shaft to take out the feeding shaft, the sliding base adsorbs a new feeding shaft for feeding, the feeding shaft is stored through the feeding box, the sliding base drives the feeding shaft to move, the feeding speed is greatly increased, the working efficiency is greatly improved, and waste of time and physical strength of the worker is reduced.
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Description

Technical Field

[0001] The utility model relates to the technical field of cylinder sock machines, in particular to an adjustable independent feeding mechanism of a single-needle cylinder sock machine. Background Art

[0002] Socks are a type of clothing worn on the feet that protects the feet and prevents foot odor. Socks are categorized by material into cotton, wool, silk, and various synthetic fiber socks. Socks are categorized by style into long socks, mid-calf socks, boat socks, and pantyhose. They come in a variety of styles and designs, including flat hems, cuffs, heeled or non-heeled, and jacquard and woven patterns.

[0003] In the Chinese utility model patent application disclosure CN214992530U, a device for producing compression stockings is disclosed. Although it can straighten compression stockings of different sizes and facilitate ironing of compression stockings by setting a groove, a sliding rod, a slider, a first connecting plate, a second spring clip, a through hole, a first mounting frame, a first connecting block, a first motor, a first rotating shaft, a reel, a connecting rope, a first fixed pulley and a second fixed pulley, the device only straightens compression stockings of different sizes after production is completed and facilitates ironing of compression stockings. However, how to quickly load the thread needed before production, the thread transported before loading is too large to enter the stocking machine, how to quickly and conveniently collect the thread and quickly enter the stocking machine, and how to avoid the thread falling off when replacing the feeding shaft during collection, causing the thread to be entangled and affecting the worker's working speed, and the thread shrinking after the thread breaks, causing the worker to be scattered and need to sort it out and collect it again, which is time-consuming and labor-intensive. How to quickly load the material, so a utility model is proposed to solve the above problems. Utility Model Content

[0004] (1) Technical problems solved

[0005] In response to the shortcomings of the existing technology, the utility model provides an adjustable independent feeding mechanism for a single-needle hosiery machine, which solves the problems of rapid loading and transportation of large thread materials that are difficult to enter the hosiery machine, the problem of material shedding and entanglement caused by replacement of the feeding axis, and the problem of thread materials breaking and shrinking, causing them to be scattered and difficult to recover.

[0006] (2) Technical solution

[0007] To achieve the above objectives, the utility model is implemented through the following technical solutions: a single-needle hosiery machine with an adjustable independent feeding mechanism, comprising a feeding base plate, the upper surface of the feeding base plate is plugged with a feeding hydraulic press, one end of the feeding hydraulic press is sleeved with a feeding hydraulic rod, one side of the feeding base plate is plugged with a feeding motor, one end of the feeding motor is sleeved with a feeding shaft, one side of the feeding base plate is sequentially plugged with a fixing assembly, a clamp assembly, and a feeding assembly from front to back, one side of the feeding base plate is plugged with a feeding box, one side of the feeding box is plugged with a feeding motor, one end of the feeding motor is sleeved with a feeding screw, the interior of the feeding box is slidingly connected to a sliding seat, the upper surface of the sliding seat is plugged with a suction cup, the inner side of the feeding box is slidingly connected to a movable seat, the upper surface of the movable seat is plugged with a fixed hook, and one side of the movable seat is rotatably connected to the feeding shaft.

[0008] Optionally, the fixing assembly includes a fixing rod, a fixing hydraulic press, a fixing hydraulic rod, and a fixing axle seat. One side of the fixing rod is plugged with the fixing hydraulic press, one end of the fixing hydraulic press is sleeved with the fixing hydraulic rod, and one end of the fixing hydraulic rod is plugged with the fixing axle seat.

[0009] Optionally, the clamp assembly includes a clamp rod, a clamp frame, a hydraulic press A, a hydraulic rod A, a splint, a hydraulic rod B, and a hydraulic press B. One side of the clamp rod is connected to the clamp frame, the upper surface of the clamp frame is connected to the hydraulic press A, one end of the hydraulic press A is connected to the hydraulic rod A, one end of the hydraulic rod A is connected to the splint, the other side of the upper surface of the splint is connected to the hydraulic rod B, and one end of the hydraulic rod B is sleeved with the hydraulic press B.

[0010] Optionally, a clamp hole is provided on a side of the upper surface of the clamp frame close to the clamp rod, and the clamp hole of the clamp frame fixes the B hydraulic press.

[0011] Optionally, the feeding assembly includes a feeding rod, a sensor, a feeding rack, a C hydraulic press, a C hydraulic rod, a rotating shaft, and a feeding wheel. The sensor is connected to one side of the feeding rod, and the feeding rack is connected to the other side of the feeding rod. The upper surface of the feeding rack is connected to the C hydraulic press, and one end of the C hydraulic press is connected to the C hydraulic rod. The inner side of the feeding rack is connected to the rotating shaft, and the surface of the rotating shaft is connected to the feeding wheel.

[0012] Optionally, a shaft seat is provided on one side of the feed rod close to the feed rack, the shaft seat of the feed rod is fixed to the rotating shaft, and the length of the rotating shaft is consistent with that of the feed rack.

[0013] Optionally, a screw slide rail is provided at the bottom of the loading box, and the screw slide rail of the loading box fixes the loading screw to prevent it from falling off.

[0014] Optionally, a movable slide rail is provided in the middle of the inner side of the loading box, a movable slider is inserted into one side of the movable seat, and the movable slide rail and the movable slider are adapted to each other.

[0015] In summary, the technical effects and advantages of the utility model are:

[0016] 1. The utility model has a reasonable structure. The feeding shaft is placed in the feeding shaft seat. The feeding shaft on the feeding hydraulic rod rises to be consistent with the fixed shaft seat and the feeding shaft. The fixed shaft seat is telescopically sleeved on one end of the feeding shaft, and the other end of the feeding shaft is sleeved on the feeding shaft. The feeding shaft of the feeding shaft rotates, which is convenient for the feeding shaft to collect wire materials. Two sets of feeding motors, feeding shafts and two sets of fixed hydraulic presses, fixed hydraulic rods and fixed shaft seats collect wire materials for the two feeding shafts to speed up production. The wire ends of the wires are wound on the feeding wheel, and after winding, they pass through the lower surface of the splint and are on the feeding shaft. The surface is wrapped with two circles to fix it. After the feeding shaft is collected, the splint drops to press and fix the wire material to the bottom of the clamp frame, which is convenient for workers to quickly collect the new feeding shaft after replacement, to avoid the wire material falling off during replacement, the wire material is easily broken due to collision during transportation, and the wire material breaking when collecting. When the sensor senses the reversal of the rotating shaft, the feeding clamp of the C hydraulic rod drops, and the feeding clamp clamps the wire material wrapped in the feeding wheel to avoid the wire material shrinking after it breaks, resulting in scattered workers. It is time-consuming and laborious to sort out and collect it again, affecting work speed and increasing workers' physical consumption.

[0017] 2. In the utility model, the feeding shaft with collected wire materials is plugged into the movable seat, and the wire ends are wound on the fixed hooks, so as to avoid wasting time in finding the wire ends during feeding. The slide rail inside the feeding box stores the feeding shaft to one side of the feeding box, and the sliding seat slides on the feeding box. The suction cup on the sliding seat is adsorbed on the lower surface of the moving seat, and the feeding shaft moves to the feeding position to load the material. After loading, the worker pulls the feeding shaft to take it out, and the sliding seat adsorbs the new feeding shaft to load the material. The feeding box stores the feeding shaft and the sliding seat drives the feeding shaft to move, which greatly speeds up the feeding speed, improves the work efficiency, and saves the workers' time and physical strength. BRIEF DESCRIPTION OF THE DRAWINGS

[0018] Figure 1 This is a schematic diagram of the structure of the utility model;

[0019] Figure 2 This is an exploded schematic diagram of the feed hydraulic rod structure of the utility model;

[0020] Figure 3 This is an exploded schematic diagram of the feeding bottom plate structure of the utility model;

[0021] Figure 4 This is an exploded schematic diagram of the fixing rod structure of the utility model;

[0022] Figure 5 This is an exploded schematic diagram of the fixture rod structure of the utility model;

[0023] Figure 6 This is an exploded schematic diagram of the feed rod structure of the utility model;

[0024] Figure 7 This is an exploded schematic diagram of the loading box structure of the utility model.

[0025] In the figure: 1. Feeding bottom plate; 2. Feeding hydraulic press; 3. Feeding hydraulic rod; 4. Feeding motor; 5. Feeding shaft; 6. Fixing assembly; 601. Fixing rod; 602. Fixing hydraulic press; 603. Fixing hydraulic rod; 604. Fixing shaft seat; 7. Clamp assembly; 701. Clamp rod; 702. Clamp frame; 703. Hydraulic press A; 704. Hydraulic rod A; 705. Clamp plate; 706. Hydraulic rod B; 707. Hydraulic press B; 8. Feeding assembly; 801. Feeding rod; 802. Sensor; 803. Feeding frame; 804. Hydraulic press C; 805. Hydraulic rod C; 806. Rotating shaft; 807. Feeding wheel; 9. Feeding box; 10. Feeding motor; 11. Feeding screw; 12. Sliding seat; 13. Suction cup; 14. Moving seat; 15. Fixed hook; 16. Feeding shaft. DETAILED DESCRIPTION

[0026] The following will be combined with the drawings in the embodiments of the present invention to clearly and completely describe the technical solutions in the embodiments of the present invention. Obviously, the embodiments described are only part of the embodiments of the present invention, not all of the embodiments. Based on the embodiments of the present invention, all other embodiments obtained by ordinary technicians in this field without making creative efforts are within the scope of protection of the present invention.

[0027] Example: Reference Figure 1-Figure 7 The single-needle hosiery machine shown has an adjustable independent feeding mechanism, including a feeding base plate 1, a feeding hydraulic press 2 is connected to the upper surface of the feeding base plate 1, one end of the feeding hydraulic press 2 is sleeved with a feeding hydraulic rod 3, a feeding motor 4 is connected to one side of the feeding base plate 1, one end of the feeding motor 4 is sleeved with a feeding shaft 5, a fixing component 6, a clamp component 7, and a feeding component 8 are sequentially inserted on one side of the feeding base plate 1 from front to back, a feeding box 9 is connected to one side of the feeding box 1, a feeding motor 10 is connected to one side of the feeding box 9, one end of the feeding motor 10 is sleeved with a feeding screw 11, the inside of the feeding box 9 is slidingly connected to a sliding seat 12, the upper surface of the sliding seat 12 is inserted with a suction cup 13, the inner side of the feeding box 9 is slidingly connected to a moving seat 14, the upper surface of the moving seat 14 is inserted with a fixed hook 15, and one side of the moving seat 14 is rotatably connected to a feeding shaft 16.

[0028] As a preferred implementation in this embodiment, Figures 2 to 7As shown, the upper surface of the feed bottom plate 1 is plugged with a feed hydraulic press 2, one end of the feed hydraulic press 2 is sleeved with a feed hydraulic rod 3, one end of the feed hydraulic rod 3 is plugged with a shaft seat, the upper surface of the feed bottom plate 1 is plugged with a feed hydraulic press 2 and two feed hydraulic rods 3, one side of the feed bottom plate 1 is plugged with a feed motor 4, one end of the feed motor 4 is sleeved with a feed shaft 5, one side of the feed bottom plate 1 is plugged with a feed motor 4 and two feed shafts 5 from top to bottom, one side of the feed bottom plate 1 is sequentially plugged with a fixing component 6, a clamp component 7, and a feed component 8 from front to back, and the fixing component 6 includes a fixing Rod 601, fixed hydraulic press 602, fixed hydraulic rod 603, fixed shaft seat 604, one side of the fixed rod 601 is plugged with the fixed hydraulic press 602, one end of the fixed hydraulic press 602 is sleeved with the fixed hydraulic rod 603, one end of the fixed hydraulic rod 603 is plugged with the fixed shaft seat 604, one side of the fixed rod 601 is provided with two fixed seats from top to bottom, the fixed seats fix the fixed hydraulic press 602, the number of the fixed hydraulic press 602, the fixed hydraulic rod 603, and the fixed shaft seat 604 is two, the clamp assembly 7 includes a clamp rod 701, a clamp frame 702, a hydraulic Machine 703, A hydraulic rod 704, clamping plate 705, B hydraulic rod 706, B hydraulic press 707, one side of the clamp rod 701 is plugged with the clamp frame 702, the upper surface of the clamp frame 702 is plugged with A hydraulic press 703, one end of the A hydraulic press 703 is plugged with A hydraulic rod 704, one end of the A hydraulic rod 704 is plugged with clamping plate 705, the other side of the upper surface of the clamp plate 705 is plugged with B hydraulic rod 706, one end of the B hydraulic rod 706 is sleeved with B hydraulic press 707, a clamp hole is opened on the side of the upper surface of the clamp frame 702 close to the clamp rod 701, and the clamp of the clamp frame 702 The hole fixes the B hydraulic press 707. There are two clamp frames 702, A hydraulic press 703, A hydraulic rod 704, clamp plate 705, B hydraulic rod 706, and B hydraulic press 707. One side of the clamp rod 701 is plugged with the clamp frame 702 from top to bottom. The feeding assembly 8 includes a feeding rod 801, a sensor 802, a feeding frame 803, a C hydraulic press 804, a C hydraulic rod 805, a rotating shaft 806, and a feeding wheel 807. One side of the feeding rod 801 is plugged with a sensor 802. The sensor 802 is a forward and reverse sensor, and the forward and reverse sensor is detected by a dual Hall probe. It can give two speed signals with a certain phase difference, so it can distinguish between forward and reverse rotation. It only needs to fix the magnetic steel at the detection point of the shaft or wheel and install the detector close to the detection point. When the wheel or shaft rotates, the magnetic steel sweeps across the detector in the direction of the mark point, and the sensor outputs low level or high resistance. The other side of the feed rod 801 is connected to the feed rack 803, and the upper surface of the feed rack 803 is connected to the C hydraulic press 804. One end of the C hydraulic press 804 is connected to the C hydraulic rod 805, and one end of the C hydraulic rod 805 is provided with a feed clamp. The inner side of the feed rack 803 is connected to the rotating shaft 806, and the surface of the rotating shaft 806 is connected to the feed wheel 807.The feeding rod 801 is provided with an axle seat on one side close to the feeding rack 803. The axle seat of the feeding rod 801 is fixed to the rotating shaft 806. The length of the rotating shaft 806 is consistent with the feeding rack 803. One side of the feeding rod 801 is connected with two sensors 802, the feeding rack 803, the C hydraulic press 804, the C hydraulic rod 805, the rotating shaft 806, and the feeding wheel 807 are two. The other side of the feeding rod 801 is sequentially connected with the feeding rack 803 from top to bottom. One side of the movable seat 14 is rotatably connected to the feeding shaft 16. There are several feeding shafts 16. During use, the feeding shaft 16 is taken out and placed on the shaft seat of the feeding hydraulic rod 3, and the feeding liquid is driven by the feeding hydraulic press 2. The pressure rod 3 is lifted and lowered, so that the feeding shaft 16 on the feeding hydraulic rod 3 rises to be consistent with the fixed shaft seat 604 and the feeding shaft 5, and the fixed hydraulic press 602 drives the fixed hydraulic rod 603 to be extended and retracted, so that the fixed shaft seat 604 is extended and retracted to be connected to one end of the feeding shaft 16, and the other end of the feeding shaft 16 is connected to the feeding shaft 5 through the extension and retraction of the fixed shaft seat 604. The feeding shaft 5 is driven to rotate by the feeding motor 4, so that the feeding shaft 16 on one side of the feeding shaft 5 is rotated, so that the feeding shaft 16 is convenient for collecting the wire material by the rotation of the feeding motor 4. By having two sets of feeding motors 4, feeding shaft 5 and two sets of fixed hydraulic presses 602, fixed hydraulic rods 603, and fixed shaft seats 604, it is possible At the same time, the two feeding shafts 16 are used to collect the thread materials to speed up the production speed and prevent the transported thread materials from being too large to enter the tube socks machine. The thread ends of the thread materials are taken out and wound around the inside of the feeding wheel 807. After winding, the thread ends of the thread materials pass through the lower surface of the clamping plate 705, so that the thread ends are wound around the surface of the feeding shaft 16 twice for fixation. The thread materials are collected by the feeding motor 4. After the feeding shaft 16 collects the thread materials, the hydraulic press A 703 drives the hydraulic rod A 704 to retract and retract, so that the clamping plate 705 is lowered inside the clamp frame 702 so that the thread materials on the lower surface of the clamping plate 705 are pressed and fixed to the bottom of the clamp frame 702, so that the worker can replace the feeding shaft 16. The new feeding shaft 16 is quickly wound and collected to prevent the wire from falling off when the feeding shaft 16 is replaced, causing the wire to be tangled and affecting the workers' work speed. The wire is easily broken when it is transported and is easily broken when the feeding shaft 16 is collected. When the sensor 802 senses the reverse rotation of the rotating shaft 806, the C hydraulic press 804 drives the C hydraulic rod 805 to rise and fall, causing the feeding clamp at one end of the C hydraulic rod 805 to descend, so that the feeding clamp can press and clamp the wire wrapped in the feeding wheel 807. This prevents the wire from retracting after the wire breaks and causing it to be scattered and the workers need to sort it out and collect it again, which is time-consuming and labor-intensive, affecting work speed and increasing workers' physical exertion.

[0029] like Figure 7As shown, in this embodiment, a feeding box 9 is plugged into one side of the feeding bottom plate 1, a feeding motor 10 is plugged into one side of the feeding box 9, and a feeding screw 11 is sleeved on one end of the feeding motor 10. A screw slide rail is provided at the bottom of the feeding box 9. The screw slide rail of the feeding box 9 fixes the feeding screw 11 to prevent it from falling off. A screw slider is provided on the lower surface of the sliding seat 12. The screw slider and the screw slide rail are adapted to each other. The interior of the feeding box 9 is slidably connected to the sliding seat 12. The upper surface of the sliding seat 12 is provided with a screw slider. The surface is plugged with a suction cup 13, the inner side of the loading box 9 is slidably connected to a moving seat 14, the upper surface of the moving seat 14 is plugged with a fixed hook 15, the middle part of the inner side of the loading box 9 is provided with a moving slide rail, one side of the moving seat 14 is plugged with a moving slider, the moving slide rail and the moving slider are adapted to each other, one side of the moving seat 14 is rotatably connected to a loading shaft 16, the moving seat 14 and the fixed hook 15 are symmetrical in number, and the two sides of the interior of the loading box 9 are provided with moving slide rails. During use, by The feeding shaft 16 of the collected wire material is inserted into the movable seat 14, and the wire end of the wire material is wound on the fixed hook 15, which avoids wasting time in finding the wire end when feeding. After fixing, the feeding shaft 16 is stored to one side of the feeding box 9 through the slide rail inside the feeding box 9, and the feeding motor 10 drives the feeding screw 11 to rotate, so that the sliding seat 12 slides back and forth in the feeding box 9, and the suction cup 13 on the sliding seat 12 is adsorbed on the lower surface of the movable seat 14, and the sliding of the sliding seat 12 is The movable seat 14 drives the loading shaft 16 to move to the position where loading is required for loading. After the loading shaft 16 is loaded, the worker pulls the loading shaft 16 forward to take out the used movable seat 14 and the loading shaft 16, and the sliding seat 12 moves backward to absorb the new loading shaft 16 to continue loading. The loading shaft 16 is stored in the loading box 9 and the sliding seat 12 drives the loading shaft 16 to move, which greatly speeds up the loading speed, improves work efficiency, and saves workers' time and physical energy.

[0030] This utility works as follows:

[0031] During use, the feeding shaft 16 is taken out and placed on the shaft seat of the feeding hydraulic rod 3, and the feeding hydraulic press 2 drives the feeding hydraulic rod 3 to rise and fall, so that the feeding shaft 16 on the feeding hydraulic rod 3 rises to be consistent with the fixed shaft seat 604 and the feeding shaft 5, and the fixed hydraulic press 602 drives the fixed hydraulic rod 603 to be telescopic, so that the fixed shaft seat 604 is telescopically sleeved on one end of the feeding shaft 16, and the other end of the feeding shaft seat 604 is sleeved in the feeding shaft 5, and the feeding shaft 5 is driven to rotate by the feeding motor 4, so that the feeding shaft 16 on one side of the feeding shaft 5 is rotated, so that the feeding shaft 16 on the feeding shaft 5 is convenient to collect the wire material by the rotation of the feeding motor 4. By having two sets of feeding motors 4, feeding shaft 5 and two sets of fixed hydraulic presses 602 and fixed The hydraulic rod 603 and the fixed shaft seat 604 can collect the wire materials for the two feeding shafts 16 at the same time. The wire ends of the wire materials are taken out and wrapped around the feeding wheel 807 for one circle. After the winding, the wire ends pass through the lower surface of the clamping plate 705, so that the wire ends are wrapped around the surface of the feeding shaft 16 twice for fixation. The feeding motor 4 rotates to collect the wire materials. After the feeding shaft 16 collects the wire materials, the hydraulic press A 703 drives the hydraulic rod A 704 to retract and retract, so that the clamping plate 705 is lowered inside the clamp frame 702 so that the wire materials on the lower surface of the clamping plate 705 are pressed and fixed with the bottom of the clamp frame 702. The wire materials are easily broken when they are bumped during transportation. The wire materials are broken when they are collected by the feeding shaft 16. When the sensor 802 senses the reversal of the rotating shaft 806, The C hydraulic press 804 drives the C hydraulic rod 805 to rise and fall, so that the feeding clamp at one end of the C hydraulic rod 805 descends, so that the feeding clamp presses and clamps the wire material wound in the feeding wheel 807, and the feeding shaft 16 of the collected wire material is inserted into the movable seat 14. The wire end of the wire material is wound on the fixed hook 15. After it is fixed, the feeding shaft 16 is stored to one side of the feeding box 9 through the slide rail inside the feeding box 9. The feeding motor 10 drives the feeding screw 11 to rotate, so that the sliding seat 12 slides back and forth in the feeding box 9, and the suction cup 13 on the sliding seat 12 is adsorbed on the lower surface of the moving seat 14. The sliding of the sliding seat 12 makes the moving seat 14 drive the feeding shaft 16 to move to the position where the material needs to be loaded for loading. After the material is loaded through the feeding shaft 16, the worker moves to The feeding shaft 16 is pulled forward to take out the used movable seat 14 and the feeding shaft 16, and the sliding seat 12 moves backward to absorb the new feeding shaft 16 to continue feeding. The equipment can collect the wire materials on the two feeding shafts 16 at the same time to speed up the production speed. After the worker replaces the feeding shaft 16, he can quickly wind the new feeding shaft 16 to collect the wire materials, avoiding the wire materials falling off when replacing the feeding shaft 16, causing the wire materials to be entangled and affecting the working speed of the workers, and avoiding the wire materials shrinking after the wire materials breakage and causing the workers to be scattered and need to be sorted and collected again, which is time-consuming and labor-intensive, affecting the working speed and increasing the physical consumption of the workers. The feeding shaft 16 is stored in the feeding box 9 and the sliding seat 12 drives the feeding shaft 16 to move, which greatly speeds up the feeding speed and improves the work efficiency.It saves workers’ time and energy.

[0032] The electrical components mentioned in this article are all connected to an external main controller and 220V AC power, and the main controller can be a conventional known device that performs control such as a computer.

[0033] Finally, it should be noted that the above is only a preferred embodiment of the present invention and is not intended to limit the present invention. Although the present invention has been described in detail with reference to the aforementioned embodiments, those skilled in the art can still modify the technical solutions described in the aforementioned embodiments or make equivalent replacements for some of the technical features therein. Any modifications, equivalent replacements, improvements, etc. made within the spirit and principles of the present invention should be included in the scope of protection of the present invention.

Claims

1. An adjustable independent feeding mechanism of a single-needle hosiery machine, comprising a feeding base plate (1), characterized in that: The upper surface of the feed bottom plate (1) is plugged with a feed hydraulic press (2), one end of the feed hydraulic press (2) is sleeved with a feed hydraulic rod (3), one side of the feed bottom plate (1) is plugged with a feed motor (4), one end of the feed motor (4) is sleeved with a feed shaft (5), one side of the feed bottom plate (1) is plugged with a fixing component (6), a clamp component (7), and a feed component (8) in sequence from front to back, one side of the feed bottom plate (1) is plugged with a loading box (9), the upper A feeding motor (10) is plugged into one side of the material box (9), a feeding screw (11) is sleeved on one end of the feeding motor (10), a sliding seat (12) is slidably connected to the inside of the feeding box (9), a suction cup (13) is plugged into the upper surface of the sliding seat (12), a moving seat (14) is slidably connected to the inside of the feeding box (9), a fixing hook (15) is plugged into the upper surface of the moving seat (14), and a feeding shaft (16) is rotatably connected to one side of the moving seat (14).

2. The adjustable independent feeding mechanism of a single-cylinder hosiery machine according to claim 1, characterized in that: The fixing assembly (6) comprises a fixing rod (601), a fixing hydraulic machine (602), a fixing hydraulic rod (603), and a fixing shaft seat (604); the fixing hydraulic machine (602) is plugged into one side of the fixing rod (601); the fixing hydraulic rod (603) is sleeved onto one end of the fixing hydraulic machine (602); and the fixing shaft seat (604) is plugged into one end of the fixing hydraulic rod (603).

3. The adjustable independent feeding mechanism of a single-cylinder hosiery machine according to claim 1, characterized in that: The clamp assembly (7) comprises a clamp rod (701), a clamp frame (702), an A hydraulic press (703), an A hydraulic rod (704), a clamp plate (705), a B hydraulic rod (706), and a B hydraulic press (707). One side of the clamp rod (701) is plugged with the clamp frame (702), the upper surface of the clamp frame (702) is plugged with the A hydraulic press (703), one end of the A hydraulic press (703) is plugged with the A hydraulic rod (704), one end of the A hydraulic rod (704) is plugged with the clamp plate (705), the other side of the upper surface of the clamp plate (705) is plugged with the B hydraulic rod (706), and one end of the B hydraulic rod (706) is sleeved with the B hydraulic press (707).

4. The adjustable independent feeding mechanism of a single-cylinder hosiery machine according to claim 3, characterized in that: A clamp hole is provided on the upper surface of the clamp frame (702) on a side close to the clamp rod (701), and the clamp hole of the clamp frame (702) is used to fix the B hydraulic press (707).

5. The adjustable independent feeding mechanism of a single-cylinder hosiery machine according to claim 1, characterized in that: The feed assembly (8) comprises a feed rod (801), a sensor (802), a feed rack (803), a C hydraulic press (804), a C hydraulic rod (805), a rotating shaft (806), and a feed wheel (807). The sensor (802) is plugged into one side of the feed rod (801), the feed rack (803) is plugged into the other side of the feed rod (801), the C hydraulic press (804) is plugged into the upper surface of the feed rack (803), one end of the C hydraulic press (804) is sleeved with the C hydraulic rod (805), the inner side of the feed rack (803) is sleeved with the rotating shaft (806), and the surface of the rotating shaft (806) is sleeved with the feed wheel (807).

6. The adjustable independent feeding mechanism of a single-cylinder hosiery machine according to claim 5, characterized in that: A shaft seat is provided on one side of the feed rod (801) close to the feed rack (803), and the shaft seat of the feed rod (801) is fixed to the rotating shaft (806), and the length of the rotating shaft (806) is consistent with that of the feed rack (803).

7. The adjustable independent feeding mechanism of a single-cylinder hosiery machine according to claim 1, characterized in that: A screw guide rail is provided at the bottom of the loading box (9), and the screw guide rail of the loading box (9) fixes the loading screw (11) to prevent it from falling off.

8. The adjustable independent feeding mechanism of a single-cylinder hosiery machine according to claim 1, characterized in that: A movable slide rail is provided in the middle of the inner side of the loading box (9), and a movable slider is plugged into one side of the movable seat (14), and the movable slide rail and the movable slider are adapted to each other.

Citation Information

Patent Citations

  • Long-tube pressure sock production device

    CN214992530U