CN223704760U - Automatic winding machine for textile yarns - Google Patents
Automatic winding machine for textile yarnsInfo
- Publication number
- CN223704760U CN223704760U CN202520187378.0U CN202520187378U CN223704760U CN 223704760 U CN223704760 U CN 223704760U CN 202520187378 U CN202520187378 U CN 202520187378U CN 223704760 U CN223704760 U CN 223704760U
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- Prior art keywords
- winding drum
- pulley
- winding
- belt pulley
- belt
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Abstract
The utility model discloses an automatic winding machine for textile yarns, which comprises a frame, wherein a case is arranged above the frame, a first belt is arranged on a first belt pulley and a second belt pulley in a tensioning manner, one end of the second belt pulley is connected with a first winding drum, the other end of the second belt pulley is provided with a third belt pulley, a fourth belt pulley is arranged above the third belt pulley, a second belt is arranged on the third belt pulley and the fourth belt pulley in a tensioning manner, and one end of the fourth belt pulley is connected with a second winding drum. According to the utility model, the first belt wheel is driven by the servo motor, so that the linkage of the reciprocating screw rod, the second belt wheel, the third belt wheel and the fourth belt wheel is driven, the synchronous rotation winding of the first winding drum and the second winding drum is realized, the synchronous winding mechanism enables the first winding drum and the second winding drum to work simultaneously, the winding efficiency of yarns is obviously improved, and particularly when a large amount of yarns are processed, the winding time can be greatly shortened and the production efficiency is improved by the design.
Description
Technical Field
The utility model relates to the technical field of textile yarn winding, in particular to an automatic winding machine for textile yarns.
Background
The textile yarn is a continuous linear object made of various textile fibers, is mainly used for weaving woven fabrics, knitted fabrics, braided fabrics and partial non-woven fabrics, and needs to be rapidly and stably wound into coiled materials with certain length and weight in the production process so as to be convenient for subsequent storage, transportation and processing, so that after the yarn is wound into a roll shape by a winding machine, the storage space is saved, and the transportation of the yarn is facilitated.
The utility model discloses a textile yarn winding device, for example, with the publication number of CN221810173U, which comprises a bottom plate, wherein one end of the top of the bottom plate is rotatably provided with a pay-off roller, the other end of the bottom plate is rotatably provided with a take-up roller, a fixed block is fixedly arranged between the pay-off roller and the take-up roller, a limiting groove is formed in the bottom plate and is positioned in the fixed block along the vertical direction, the limiting groove is rotatably provided with a first lead screw which is in threaded connection with a moving block, the moving block can slide up and down along the limiting groove, the upper end of the fixed block is rotatably provided with a second tension roller, the first tension roller and the second tension roller are arranged below the second tension roller in parallel, and the textile yarn winding device can accommodate winding of different yarns.
Therefore, it is necessary to invent an automatic winder for textile yarns to solve the above problems.
Disclosure of utility model
The utility model aims to provide an automatic winding machine for textile yarns, which solves the problem that in the prior art, only one type of yarn can be wound at the same time, when a plurality of types of yarns need to be treated simultaneously, the yarns need to be replaced frequently or the current yarn winding is waited for, and the production efficiency is reduced.
In order to achieve the aim, the automatic winding machine for the textile yarns comprises a frame, a first winding drum and a second winding drum, wherein a machine case is arranged above the frame, an installation box is arranged on the front side of the machine case, a servo motor is arranged inside the machine case, a first belt wheel is arranged at the output end of the servo motor, a reciprocating screw is connected to one side of the first belt wheel, a sliding block is arranged on the top surface of the installation box in a sliding mode, a vertical frame is arranged on the top surface of the sliding block, a first wire sleeve and a second wire sleeve are arranged on the vertical frame, a second belt wheel is arranged on one side of the first belt wheel, a first belt is arranged on one side of the first belt wheel and the second belt wheel in a tensioning mode, a first winding drum is connected to one end of the second belt wheel, a third belt wheel is arranged on the other end of the second belt wheel, a fourth belt wheel is arranged on the upper side of the third belt wheel, a second belt is arranged on one end of the fourth belt wheel in a tensioning mode, and a second belt is connected to the second belt drum.
Preferably, the front side wall surface of the case is rotatably connected with 3 conveying rollers, and the arrangement and rotation of the three conveying rollers can guide yarns to smoothly enter a subsequent winding process.
Preferably, a shuttle is arranged in the spiral groove of the reciprocating screw, a sliding block is arranged above the shuttle, and the reciprocating movement of the sliding block can be realized through the cooperation of the reciprocating screw and the shuttle.
Preferably, the first wire sleeve is located right above the second wire sleeve, the first wire sleeve and the second wire sleeve are made of silica gel materials, and the up-down arrangement of the first wire sleeve and the second wire sleeve can guide yarns to move according to a preset path.
Preferably, one side of the first wire sleeve and one side of the second wire sleeve are provided with a first wire roller and a second wire roller, and the first wire roller is positioned right above the second wire roller, so that yarns can be further guided, and the yarns are ensured to be kept stable and continuous in the transmission process.
Preferably, the lateral wall of mounting box is provided with the support frame, be provided with wire roller and No. two wire rollers on the support frame, the both ends of wire roller and No. two wire rollers rotate and connect on the support frame, and the support frame provides stable support for wire roller and No. two wire rollers.
Preferably, a first winding drum and a second winding drum are arranged on one sides of the first wire guide roller and the second wire guide roller, and the first winding drum and the second winding drum are of the same structural design, so that synchronous winding and uniform distribution of yarns can be realized.
Preferably, the first winding drum and the second winding drum are rotationally connected to the front side of the case, and the first winding drum is located above the second winding drum, so that the first winding drum and the second winding drum can work simultaneously, and overall winding efficiency is improved.
In the technical scheme, the utility model has the technical effects and advantages that:
1. According to the utility model, the first belt wheel is driven by the servo motor, so that the linkage of the reciprocating screw rod, the second belt wheel, the third belt wheel and the fourth belt wheel is driven, the synchronous rotation winding of the first winding drum and the second winding drum is realized, the synchronous winding mechanism enables the first winding drum and the second winding drum to work simultaneously, the winding efficiency of yarns is obviously improved, and particularly when a large amount of yarns are processed, the winding time can be greatly shortened, and the production efficiency is improved by the design;
2. According to the utility model, through the cooperation of the reciprocating screw and the shuttle, the sliding block can drive the first wire sleeve and the second wire sleeve to accurately move along a specific path, the silica gel materials of the first wire sleeve and the second wire sleeve are selected, and the sliding block and the first wire roller and the second wire roller are used in cooperation, so that friction and loss between yarns and the wire sleeve are reduced, and stability and continuity of the yarns in the transmission process are ensured.
Drawings
FIG. 1 is a schematic diagram of the overall structure of the present utility model;
FIG. 2 is a perspective view of a servo motor according to the present utility model;
FIG. 3 is a schematic perspective view of a first belt pulley, a second belt pulley and a first belt according to the present utility model;
FIG. 4 is a schematic view of a perspective structure of a reciprocating screw and shuttle of the present utility model;
fig. 5 is a schematic perspective view of a third belt pulley, a fourth belt pulley and a second belt according to the present utility model.
Reference numerals illustrate:
1. the device comprises a frame, a machine case, a 3 conveying roller, a 4 mounting case, a 5, a servo motor, a 6, a first belt wheel, a 7, a reciprocating screw, a 8, a shuttle, a 9, a slider, a 10, a vertical frame, a 11, a first wire sleeve, a 12, a second wire sleeve, a 13, a support frame, a 14, a first wire roller, a 15, a second wire roller, a 16, a second belt wheel, a 17, a first belt, a 18, a first winding drum, a 19, a third belt wheel, a 20, a fourth belt wheel, a 21, a second belt, a 22 and a second winding drum.
Detailed Description
In order to make the technical scheme of the present utility model better understood by those skilled in the art, the present utility model will be further described in detail with reference to the accompanying drawings.
The utility model provides an automatic winding machine for textile yarns, which is shown in figures 1-5, and comprises a frame 1, a first winding drum 18 and a second winding drum 22, wherein a machine box 2 is arranged above the frame 1, the front side wall surface of the machine box 2 is rotatably connected with conveying rollers 3, 3 conveying rollers 3 are arranged, the front side of the machine box 2 is provided with a mounting box 4, a servo motor 5 is arranged in the machine box 2, the output end of the servo motor 5 is provided with a first belt wheel 6, one side of the first belt wheel 6 is connected with a reciprocating screw 7, the top surface of the mounting box 4 is slidably provided with a sliding block 9, the top surface of the sliding block 9 is provided with a vertical frame 10, and the vertical frame 10 is provided with a first wire sleeve 11 and a second wire sleeve 12.
The inside shuttle 8 that is provided with of helicla flute of reciprocating screw 7, the top of shuttle 8 is provided with slider 9, no. one wire cover 11 is located No. two wire cover 12 directly over, no. one wire cover 11 is made for the silica gel material with No. two wire cover 12, no. one wire cover 11 is provided with No. one wire roller 14 and No. two wire rollers 15 with No. two wire cover 12 one side, no. one wire roller 14 is located No. two wire rollers 15 directly over, the lateral wall of install bin 4 is provided with support frame 13, be provided with No. one wire roller 14 and No. two wire rollers 15 on the support frame 13, no. one wire roller 14 and No. two wire rollers 15's both ends rotate and connect on support frame 13.
The reciprocating screw rod 7 is driven by the servo motor 5 to rotate to realize linear reciprocating motion, the shuttle 8 is arranged inside the spiral groove of the reciprocating screw rod 7 in a sliding mode and moves along the axial direction along with the rotation of the reciprocating screw rod 7, the sliding block 9, the first wire sleeve 11 and the second wire sleeve 12 move along with the movement of the shuttle 8, the first wire sleeve 11 and the second wire sleeve 12 are arranged up and down and used for guiding yarns to move according to a preset path, and then the yarns are guided to keep stable and continuous, so that uniformity and stability of the yarns in the winding process are ensured.
One side of a wire guide roller 14 and a wire guide roller 15 is provided with a winding drum 18 and a winding drum 22, one side of a belt pulley 6 is provided with a belt pulley 16, the tensioning is provided with a belt 17 on the belt pulley 6 and the belt pulley 16, one end of the belt pulley 16 is connected with the winding drum 18, the other end of the belt pulley 16 is provided with a belt pulley 19, the upper part of the belt pulley 19 is provided with a belt pulley 20, the tensioning is provided with a belt 21 on the belt pulley 19 and the belt pulley 20, one end of the belt pulley 20 is connected with the winding drum 22, the winding drum 18 and the winding drum 22 are of the same structural design, the winding drum 18 and the winding drum 22 are rotationally connected to the front side of the case 2, and the winding drum 18 is located above the winding drum 22.
The belt pulley 6 is connected with the belt pulley 16 through the belt 17, the belt pulley 19 and the belt pulley 21 are connected with the belt pulley 20, so that synchronous driving of the servo motor 5 on the winding drum 18 and the winding drum 22 is realized, synchronous winding of yarns is realized, and winding efficiency of the yarns is effectively improved.
The working principle of the utility model is as follows:
Referring to fig. 1-5 of the specification, when the utility model is used, two textile yarns respectively pass through a conveying roller 3, sequentially pass through a first wire guide sleeve 11, a first wire guide roller 14, a second wire guide sleeve 12 and a second wire guide roller 15, so that the yarns can stably enter a region between a first winding drum 18 and a second winding drum 22, then a servo motor 5 is started, the servo motor 5 starts to operate, a first belt pulley 6, a second belt pulley 16, a third belt pulley 19 and a fourth belt pulley 20 are driven to rotate, a reciprocating screw 7 is driven by the servo motor 5 to rotate, a shuttle 8 in a spiral groove of the reciprocating screw is moved along with the reciprocating screw, a sliding block 9 is driven to slide on the top surface of an installation box 4, and the first wire guide sleeve 11 and the second wire guide sleeve 12 arranged on the sliding block 9 are used for guiding the yarns to move according to a preset path;
One of the textile yarns passes through the first wire sleeve 11 and is simultaneously placed on the first wire roller 14 to be conveyed to the first winding drum 18 for winding, the other textile yarn passes through the second wire sleeve 12 and is placed on the second wire roller 15 to be conveyed to the second winding drum 22 for winding, so that the first winding drum 18 and the second winding drum 22 synchronously rotate, the yarns guided by the first wire sleeve 11 and the first wire roller 14 are uniformly and tightly wound on the first winding drum 18, and the yarns guided by the second wire sleeve 12 and the second wire roller 15 are uniformly and tightly wound on the second winding drum 22.
Claims (8)
Priority Applications (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520187378.0U CN223704760U (en) | 2025-02-06 | 2025-02-06 | Automatic winding machine for textile yarns |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| CN202520187378.0U CN223704760U (en) | 2025-02-06 | 2025-02-06 | Automatic winding machine for textile yarns |
Publications (1)
| Publication Number | Publication Date |
|---|---|
| CN223704760U true CN223704760U (en) | 2025-12-23 |
Family
ID=98075043
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| CN202520187378.0U Active CN223704760U (en) | 2025-02-06 | 2025-02-06 | Automatic winding machine for textile yarns |
Country Status (1)
| Country | Link |
|---|---|
| CN (1) | CN223704760U (en) |
-
2025
- 2025-02-06 CN CN202520187378.0U patent/CN223704760U/en active Active
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