Electric sock strap winding machine
The design of the electric garter wrapping machine has solved the problem of tangling and knotting of cellulose fiber garters during the refining process, enabling rapid and orderly wrapping and single-person operation, improving dyeing efficiency and reducing labor costs.
Patent Information
- Application Number
- CN202520322257.2
- Authority / Receiving Office
- CN · China
- Patent Type
- Utility models(China)
- Current Assignee / Owner
- Filing Date
- 2025-02-27
- Publication Date
- 2025-12-19
- Estimated Expiration
- 2035-02-27
AI Technical Summary
In existing technologies, cellulose fiber garter belts are prone to tangling and knotting during the refining process, resulting in poor dyeing effects. Furthermore, traditional straightening methods are inefficient and require multiple people to work together.
The electric sock wrapping machine includes a frame, rotating shaft, reducer, motor, sock frame, wrapping sleeve, wrapper, and adjuster. The motor rotation is controlled by a foot pedal switch, enabling orderly wrapping and quick removal of socks, reducing the need for manual operation.
It enables rapid and orderly winding of cellulose fiber glove belts, avoiding tangling and knotting, improving dyeing efficiency, reducing labor requirements, and increasing the work efficiency of single-person operation.
Smart Images

Figure CN223687762U_ABST
Abstract
Description
TECHNICAL FIELD
[0001] The utility model belongs to the field of textile technology, concretely relates to electric sock belt winding machine. BACKGROUND
[0002] The quality of cellulose fiber is mainly reflected by the dyeing performance of cellulose fiber, and if the dyeing performance of cellulose fiber is abnormal, it will directly cause economic loss to downstream customers and affect the reputation of enterprises in the industry.
[0003] At present, the judgment of the dyeing performance of cellulose fiber at home and abroad adopts the method of weaving socks, refining, dyeing, drying and judging color; the workload of judging the dyeing performance of cellulose fiber is large, and the working procedure is particularly complicated; when judging the dyeing performance of cellulose fiber, the sock belt woven by cellulose fiber is long and thin, and after washing and spinning, the sock belt is easy to wind and knot in the refining process, therefore, before the sock belt enters the dyeing machine for dyeing, it is necessary to straighten the sock belt to prevent the sock belt from winding and knotting in the dyeing machine and affecting the dyeing effect of the sock belt; the traditional straightening method of sock belt adopts the cooperative method of multiple people, which not only seriously affects the straightening efficiency of the sock belt, but also makes the straightened sock belt difficult to realize orderly winding, which is easy to cause the straightened sock belt to wind and knot again. CONTENT OF THE UTILITY MODEL
[0004] In order to solve the above problems, the electric sock belt winding machine capable of conveniently and quickly winding the sock belt in order is provided.
[0005] Based on the above purpose, the utility model realizes the following technical scheme:
[0006] The electric sock belt winding machine comprises a rack, a rotating shaft is arranged on one side of the rack, the rotating shaft is connected with a motor arranged on the other side of the rack through a speed reducer arranged on the rack; a sock belt frame is arranged on the rotating shaft, the sock belt frame comprises a winding sleeve matched with the rack in a gap manner and arranged on the rotating shaft, both ends of the winding sleeve are respectively provided with an outer winding cylinder and an inner winding cylinder, and a sock belt winder matched with the outer winding cylinder and a winding adjuster are arranged on the inner winding cylinder.
[0007] Preferably, the sock belt winder comprises winding support rods arranged on the inner winding cylinder and the outer winding cylinder respectively and symmetrically, and the winding support rods are connected through a winding cross rod.
[0008] Preferably, the winding adjuster comprises a main adjusting rod and an auxiliary adjusting rod arranged on the inner winding cylinder and symmetrically with the winding support rod shaft, a main adjusting cross rod is connected with the main adjusting rod through an adjusting shaft at the top end, and the main adjusting cross rod is connected with a blade lifting piece arranged on the outer winding cylinder.
[0009] Preferably, the blade lifting piece comprises a blade lifting disc, the center of the blade lifting disc is provided with a lifting shaft, the lifting shaft is connected with a lifting column arranged on the outer winding cylinder; the blade lifting disc is provided with a lifting rotating shaft in gap cooperation with the lifting shaft, and the lifting rotating shaft is provided with a lifting connecting rod which is rotationally connected with a main adjusting horizontal rod through an adjusting shaft.
[0010] Preferably, the blade lifting disc is symmetrically provided with a blade lifting handle and a fixing column on two sides, the fixing column is provided with a fixing spring, and the fixing spring is connected with a limiting column arranged on the lifting column.
[0011] Preferably, the auxiliary adjusting rod is connected with an auxiliary lifting piece arranged on the outer winding cylinder through an auxiliary adjusting horizontal rod; the auxiliary lifting piece comprises an auxiliary stand arranged on the outer winding cylinder, and the auxiliary stand is provided with an auxiliary sleeve which is threadedly connected with an auxiliary sleeve rod arranged on the auxiliary adjusting horizontal rod.
[0012] Preferably, the auxiliary adjusting horizontal rod is respectively provided with an auxiliary rotating shaft connected with the auxiliary sleeve rod and the auxiliary adjusting rod at two ends.
[0013] Preferably, the bottom end of the rack is provided with a bottom plate, and the bottom plate is provided with a movable foot switch connected with the motor.
[0014] Compared with the prior art, the utility model has the advantages that:
[0015] 1、The utility model discloses a sock belt frame, a sock belt winding device, a winding adjusting device and a foot switch, wherein the sock belt frame is provided with a sock belt frame, the sock belt winding device is arranged on the sock belt frame, the winding adjusting device is arranged on the sock belt winding device, and the foot switch is arranged on the bottom of the rack.
[0016] 2、The utility model discloses a sock belt frame, a sock belt winding device, a winding adjusting device and a foot switch, wherein the sock belt frame is provided with a sock belt frame, the sock belt winding device is arranged on the sock belt frame, the winding adjusting device is arranged on the sock belt winding device, and the foot switch is arranged on the bottom of the rack.
[0017] 3、The utility model discloses a sock belt frame, a sock belt winding device, a winding adjusting device and a foot switch, wherein the sock belt frame is provided with a sock belt frame, the sock belt winding device is arranged on the sock belt frame, the winding adjusting device is arranged on the sock belt winding device, and the foot switch is arranged on the bottom of the rack.
[0018] 4. The pedal switch: after stepping on the pedal switch, the rotating shaft starts to rotate, and the rotating shaft stops rotating when the pedal switch is released; this mode can achieve random start and stop, and also frees the operator's hands; so that one person can complete it independently.
[0019] 5. The utility model discloses a speed reducer reduces the motor speed, control at 70r / min, on the one hand, reduce the safety risk of the equipment, on the other hand, also make the operator more convenient control. BRIEF DESCRIPTION OF DRAWINGS
[0020] Figure 1 It is the structural schematic diagram of the utility model in example 1;
[0021] Figure 2 It is the structural schematic diagram of the sock belt frame in example 1;
[0022] Figure 3 It is the side structural schematic diagram of the sock belt frame in example 1;
[0023] Figure 4 It is the structural schematic diagram of the vane lifting piece in example 1.
[0024] In the drawing, bottom plate 1, pedal switch 2, rack 3, controller 4, motor 5, speed reducer 6, rotating shaft 7, inner winding cylinder 8, winding cross rod 9, main adjusting cross rod 10, winding sleeve 11, vane lifting piece 12, outer winding cylinder 13, auxiliary lifting piece 14, auxiliary adjusting cross rod 15, winding support rod 16, adjusting shaft 17, auxiliary stand 18, auxiliary sleeve 19, auxiliary rotating shaft 20, auxiliary sleeve rod 21, auxiliary adjusting rod 22, main adjusting rod 23, lifting connecting rod 24, lifting handle 25, fixed spring 26, vane lifting disc 27, lifting column 28, fixed column 29, lifting shaft 30, limit column 31, lifting rotating shaft 32. DETAILED DESCRIPTION
[0025] The utility model will be further explained in detail by specific embodiment, but does not limit the range of the utility model.
[0026] Example 1
[0027] The structure of the electric sock belt winding machine is as shown in Figures 1-4 The rotating shaft 7 is connected with the motor 5 arranged on the other side of the rack 3 through the speed reducer 6 arranged on the rack 3. The sock belt frame is arranged on the rotating shaft 7, and the sock belt frame comprises a winding sleeve 11 arranged in clearance fit between the rotating shaft 7 and the rack 3. The two ends of the winding sleeve 11 are respectively provided with an outer winding cylinder 13 and an inner winding cylinder 8. The inner winding cylinder 8 is provided with a sock belt winder matched with the outer winding cylinder 13 and a winding adjuster.
[0028] The sock band winding device comprises winding support rods 16 symmetrically arranged on the inner winding cylinder 8 and the outer winding cylinder 13 respectively and connected by the winding cross rod 9. The winding adjuster comprises the main adjusting rod 23 and the auxiliary adjusting rod 22 symmetrically arranged on the inner winding cylinder 8 with the winding support rod 16, and the top end of the main adjusting rod 23 is connected with the main adjusting cross rod 10 through the adjusting shaft 17, and the main adjusting cross rod 10 is connected with the blade lifting piece 12 arranged on the outer winding cylinder 13.
[0029] The blade lifting piece 12 comprises the blade lifting disc 27, the center of which is provided with the lifting shaft 30 connected with the lifting column 28 arranged on the outer winding cylinder 13, and the blade lifting disc 27 is provided with the lifting rotating shaft 32 in gap cooperation with the lifting shaft 30, and the lifting rotating shaft 32 is provided with the lifting connecting rod 24 rotationally connected with the main adjusting cross rod 10. The blade lifting disc 27 is symmetrically provided with the blade lifting handle 25 and the fixing column 29 on both sides, and the fixing column 29 is provided with the fixing spring 26 connected with the limiting column 31 arranged on the lifting column 28.
[0030] The auxiliary adjusting rod 22 is connected with the auxiliary lifting piece 14 arranged on the outer winding cylinder 13 through the auxiliary adjusting cross rod 15, and the auxiliary lifting piece 14 comprises the auxiliary vertical column 18 arranged on the outer winding cylinder 13, and the auxiliary vertical column 18 is provided with the auxiliary sleeve 19 threadedly connected with the auxiliary sleeve rod 21 arranged on the auxiliary adjusting cross rod 15. The auxiliary adjusting cross rod 15 is provided with the auxiliary rotating shaft 20 connected with the auxiliary sleeve rod 21 and the auxiliary adjusting rod 22 at both ends.
[0031] The bottom end of the frame 3 is provided with the bottom plate 1, and the bottom plate 1 is provided with the movable foot switch 2 connected with the motor 5.
[0032] In use, the foot switch 2 on the bottom plate 1 is stepped on, the foot switch 2 drives the motor 5 on the frame 3 to rotate through the controller 4, and under the action of the speed reducer 6, the rotating speed of the rotating shaft 7 moving with the motor is reduced, so that the operator can conveniently control the electric sock band winding machine, the rotating shaft 7 drives the inner winding cylinder 8 and the outer winding cylinder 13 to rotate through the winding sleeve 11, the sock band frame is used to orderly wind the cellulose fiber sock band, and when the wound sock band is taken down, the blade lifting piece 12 is used for adjustment, the lifting handle 25 is rotated, the blade lifting disc 27 rotates along the lifting shaft 30 on the lifting column 28, the lifting connecting rod 24 moves with the lifting rotating shaft 32, the lifting connecting rod 24 drives the main adjusting cross rod 10 to approach the outer winding cylinder 13 through the adjusting shaft 17, the main adjusting cross rod 10 inclines on the main adjusting rod 23 along the adjusting shaft 17, the main adjusting rod 23 is inclined downward by 30 degrees, and thus the sock band is smoothly taken off from the sock band frame.
[0033] When the sock band on the sock band frame is too tight, the auxiliary sleeve 19 of the auxiliary lifting member 14 is rotated, the auxiliary upright column 18 and the auxiliary sleeve rod 21 are close to each other, the auxiliary adjusting crossbar 15 is inclined on the auxiliary adjusting rod 22 along the auxiliary rotating shaft 20, the auxiliary adjusting rod 22 is close to the outer winding cylinder 13, the tightness of the sock band on the sock band frame is further reduced, and the sock band can be smoothly taken off from the sock band frame.
[0034] The winding crossbar 9 on the winding support rod 16 cooperates with the main adjusting crossbar 10 and the auxiliary adjusting crossbar 15 to form the sock band frame, meets the needs of orderly winding and fixing the cellulose fiber sock band, the fixing spring 26 between the fixing column 29 and the limiting column 31 can prevent the blade lifting disc 27 from rotating along the lifting shaft 30, and affects the orderly winding and fixing of the sock band on the sock band frame.
[0035] Embodiment 2
[0036] The electric sock band winding machine is different from the embodiment 1 in that the auxiliary adjusting sleeve is arranged on the auxiliary sleeve rod 21, and the auxiliary adjusting sleeve is threadedly connected with the auxiliary sleeve 19 through the auxiliary adjusting connecting rod.
[0037] Embodiment 3
[0038] The electric sock band winding machine is different from the embodiment 1 in that the limiting screw is arranged on the outer winding cylinder 13 and the inner winding cylinder 8, and the limiting screw cooperates with the plurality of limiting holes arranged on the winding sleeve 11.
[0039] The above only describes the preferred embodiments of the present application, but is not limited to the above examples, any modification, equivalent replacement and improvement within the spirit and principle of the present application should be included in the protection scope of the present application.
Claims
1. An electrically powered hosiery band-winding machine comprising a frame, characterised in that, One side of the frame is provided with a rotating shaft, the rotating shaft is connected with a motor arranged on the other side of the frame through a speed reducer arranged on the frame; the rotating shaft is provided with a sock band frame, the sock band frame comprises a winding sleeve sleeved on the rotating shaft and matched with the frame, both ends of the winding sleeve are respectively provided with an outer winding cylinder and an inner winding cylinder, the inner winding cylinder is provided with a sock band winder matched with the outer winding cylinder and a winding adjuster.
2. The motorized sock-banding machine of claim 1, wherein, The sock band winder comprises winding support rods symmetrically arranged on the inner winding cylinder and the outer winding cylinder respectively, and the winding support rods are connected through a winding cross bar.
3. The motorized sock-banding machine of claim 2, wherein, The winding adjuster comprises a main adjuster rod and an auxiliary adjuster rod arranged on the inner winding cylinder and axially symmetric with the winding support rod, a top end of the main adjuster rod is connected with a main adjuster cross bar through an adjuster shaft, and the main adjuster cross bar is connected with a blade lifting piece arranged on the outer winding cylinder.
4. The motorized sock-banding machine of claim 3, wherein, The blade lifting piece comprises a blade lifting disc, a lifting shaft is arranged at the center of the blade lifting disc, the lifting shaft is connected with a lifting column arranged on the outer winding cylinder; the blade lifting disc is provided with a lifting rotating shaft matched with the lifting shaft in a gap, and the lifting rotating shaft is provided with a lifting connecting rod rotationally connected with the main adjuster cross bar.
5. The motorized sock-banding machine of claim 4, wherein, Both sides of the blade lifting disc are symmetrically provided with a blade lifting handle and a fixing column, the fixing column is provided with a fixing spring, and the fixing spring is connected with a limiting column arranged on the lifting column.
6. The motorized sock-banding machine of claim 3 or 5, wherein, The auxiliary adjuster rod is connected with an auxiliary lifting piece arranged on the outer winding cylinder through an auxiliary adjuster cross bar; the auxiliary lifting piece comprises an auxiliary stand arranged on the outer winding cylinder, the auxiliary stand is provided with an auxiliary sleeve, and the auxiliary sleeve is screw-connected with an auxiliary sleeve rod arranged on the auxiliary adjuster cross bar.
7. The motorized sock-banding machine of claim 6, wherein, Both ends of the auxiliary adjuster cross bar are respectively provided with auxiliary rotating shafts connected with the auxiliary sleeve rod and the auxiliary adjuster rod.
8. The motorized sock wrap winder of claim 7, wherein, The bottom end of the frame is provided with a bottom plate, and the bottom plate is provided with a movable foot-operated switch connected with the motor.