CN220148862U - Silk thread coiling mechanism for weaving - Google Patents

Silk thread coiling mechanism for weaving Download PDF

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Publication number
CN220148862U
CN220148862U CN202321031018.9U CN202321031018U CN220148862U CN 220148862 U CN220148862 U CN 220148862U CN 202321031018 U CN202321031018 U CN 202321031018U CN 220148862 U CN220148862 U CN 220148862U
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CN
China
Prior art keywords
winding
swinging
assembly
lifting
telescopic
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Active
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CN202321031018.9U
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Chinese (zh)
Inventor
莫第根
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Hangzhou Qiguan Electric Machinery Co ltd
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Hangzhou Qiguan Electric Machinery Co ltd
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Priority to CN202321031018.9U priority Critical patent/CN220148862U/en
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    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y02TECHNOLOGIES OR APPLICATIONS FOR MITIGATION OR ADAPTATION AGAINST CLIMATE CHANGE
    • Y02WCLIMATE CHANGE MITIGATION TECHNOLOGIES RELATED TO WASTEWATER TREATMENT OR WASTE MANAGEMENT
    • Y02W30/00Technologies for solid waste management
    • Y02W30/50Reuse, recycling or recovery technologies
    • Y02W30/66Disintegrating fibre-containing textile articles to obtain fibres for re-use

Abstract

The utility model discloses a silk thread winding device for spinning, which comprises a guide component and a winding component which are sequentially arranged; the winding assembly comprises a winding frame, a winding wheel and a swinging assembly, the winding wheel is rotationally arranged on the winding frame, the winding wheel is provided with a driving mechanism, the winding frame is provided with a lifting assembly, the swinging assembly is arranged on the lifting assembly and comprises a swinging disc positioned above a winding wheel shaft line, a swinging long hole is formed in the swinging disc, a wire is sequentially wound through the guiding assembly, the swinging long hole and the winding wheel, a telescopic wire cutting device is arranged on the swinging assembly, and the telescopic wire cutting device comprises a cutting knife attached to the swinging disc. The utility model has the advantages of realizing cycloid, enabling the winding of silk thread to be more uniform, adjusting winding tension to a certain extent and having low cost for controlling the tension.

Description

Silk thread coiling mechanism for weaving
Technical Field
The utility model relates to the technical field of silk thread winding devices for spinning, in particular to a silk thread winding device for spinning.
Background
In the actual textile production process, a winding device of textile threads is one of indispensable production equipment, and the winding device of the textile threads has the function that the manufactured textile threads and reels are combined and packaged into thread reels serving as actual products, and each thread reel is formed by winding the textile threads on the outer surface of the reel under the drive of a driving device. In the prior art, most silk threads can have uneven tension in the winding process, a precise silk thread tension controller is adopted to control the tension of each silk thread, one silk thread is required to use one tension controller, the production cost is greatly improved, the later maintenance cost is also improved, impurities or other substances can be attached to the outer side of the silk thread in the production or drafting process, the winding quality is affected, the winding requirement can not be met, and on the basis, the design of the silk thread winding device for spinning, which can coarsely adjust the tension in a certain range, is necessary, and the increase of the winding cost by tension control can be obviously reduced under the condition of adjusting the tension.
Disclosure of Invention
Based on the defects in the prior art, the yarn winding device for spinning provided by the utility model can adjust yarn winding tension and has a cycloid function, so that yarn winding is more uniform.
In order to achieve the above object, the present utility model adopts the following technical scheme.
A silk thread winding device for spinning comprises a guide component and a winding component which are sequentially arranged; the winding assembly comprises a winding frame, a winding wheel and a swinging assembly, the winding wheel is rotationally arranged on the winding frame, the winding wheel is provided with a driving mechanism, the winding frame is provided with a lifting assembly, the swinging assembly is arranged on the lifting assembly and comprises a swinging disc positioned above a winding wheel shaft line, a swinging long hole is formed in the swinging disc, a wire is sequentially wound through the guiding assembly, the swinging long hole and the winding wheel, a telescopic wire cutting device is arranged on the swinging assembly, and the telescopic wire cutting device comprises a cutting knife attached to the swinging disc.
According to the utility model, the lifting control of the swinging component during winding is realized through the lifting component, so that the cycloid mechanism keeps a relatively constant distance relative to the outer diameter of a winding wire on the winding wheel, cycloid can be realized, winding of the wire is more uniform, winding tension can be regulated to a certain extent, and the cost for controlling the tension is low.
Preferably, the guiding component comprises two rollers which are arranged up and down oppositely, the rollers are arranged in a rotating mode, and wire ring grooves corresponding to the wires are formed in the rollers. The wire ring groove is used for corresponding wires, reliable guiding of the wires is achieved, the two roll shafts are opposite, the wire ring groove is equally used for guiding the wires, the guiding effect is reliable, and falling-out is avoided.
Preferably, the guiding assembly and the winding assembly are provided with an adjusting assembly, the adjusting assembly comprises a fixed roll shaft and an adjusting roll shaft, the adjusting roll shaft is arranged in a sliding mode relative to the fixed roll shaft, and the silk thread is sequentially wound through the fixed roll shaft and the adjusting roll shaft. The relative positions of the fixed roll shaft and the adjusting roll shaft are adjusted, so that the tension of the silk thread between the fixed roll shaft and the adjusting roll shaft can be adjusted, the reliability of silk thread winding is further improved, and the setting cost is lower.
Preferably, the adjusting roll shaft is located above the fixed roll shaft, a plurality of ring grooves are formed in the fixed roll shaft, and the adjusting roll adopts an optical axis structure. The annular groove on the fixed roll shaft can be matched with the corresponding silk thread and is matched with single conduction realized by the guide assembly, the adjusting roll corresponds to the swinging assembly, and the optical axis is arranged, so that the silk thread can be wound conveniently after swinging.
Preferably, the lifting assembly comprises a lifting screw rod arranged on the winding frame, the lifting screw rod is provided with a lifting motor, a lifting sliding block is matched with the lifting screw rod, a guide groove matched with the lifting sliding block is arranged on the winding frame, a lifting plate is fixedly arranged on the lifting sliding block, and the swinging disc is arranged on the lifting plate in a sliding mode. The lifting motor can adopt a servo motor to reliably control lifting formation, so that the reliable lifting of the swinging disc on the lifting plate is realized.
Preferably, the lifting plate is provided with a guide chute, one end of the lifting plate is provided with a swinging cylinder, one end of the swinging plate is provided with a guide sliding block matched with the guide chute, and the swinging plate is matched with the swinging cylinder. The swing cylinder drives the swing disc to swing reciprocally along the guide chute, and the action is reliable and the operation is convenient.
Preferably, the telescopic thread cutting device comprises a telescopic air cylinder arranged on a swinging disc, a telescopic guide groove is formed in the swinging disc, a telescopic sliding block is arranged in the telescopic guide groove in a sliding mode, and a cutting knife is fixed on the telescopic sliding block and matched with the telescopic air cylinder. When the cutter is pushed out by the telescopic cylinder, the thread can be cut off, and when the winding of the thread is completed, the thread is cut off automatically, so that the operation is convenient and reliable.
The beneficial effects of the utility model are as follows: cycloid can be realized, so that the winding of the silk thread is more uniform; the winding tension can be adjusted to a certain extent and the cost for tension control is small.
Drawings
Fig. 1 is a schematic structural view of the present utility model.
Fig. 2 is a schematic view of the structure of the winding frame and its upper components in the present utility model.
Fig. 3 is a schematic representation of the relative positions of the components of the present utility model as the yarn is being wound.
Fig. 4 is a schematic representation of the relative positions of the components of the present utility model as the thread is wound up more.
In the figure: the guide assembly 2 of the workbench 1 leads the ring groove 21, the upright post 3 mounting block 30 winds the driving mechanism 32 of the wheel 31, the lifting assembly 33, the lifting screw rod 34, the guide groove 36, the lifting slide block 35, the swinging plate 41, the swinging plate 43, the swinging long hole 44, the guide chute 45, the swinging cylinder 46, the stretching and cutting device 5, the cutting knife 51, the stretching and stretching cylinder 52, the stretching and stretching guide groove 53, the fixing roll shaft 61, the fixing roll shaft 62, the fixing column 63, the adjusting column 64 and the adjusting cylinder 65 silk 7.
Detailed Description
The utility model will be further described with reference to the drawings and the specific embodiments.
In the case of example 1,
as shown in fig. 1 to 2, a yarn winding device for spinning comprises a workbench 1, a guide component 2 and a winding component which are sequentially arranged on the workbench 1; the guiding component 2 comprises two roll shafts which are arranged up and down oppositely, the roll shafts are arranged in a rotating mode, and a plurality of wire ring grooves 21 corresponding to the silk threads 7 are formed in the roll shafts. Each wire ring groove 21 may correspond to at least one wire 7.
The winding subassembly includes winding frame, winding wheel 31 and swing subassembly 42, the winding wheel 31 rotates and sets up on the winding frame, the winding frame includes two parallel relative arrangement's stand 3, in this embodiment, winding wheel 31 sets up in a key groove driven pivot, the pivot rotates and connects on two stand 3, can dismantle on the stand 3 and be connected with installation piece 30, install the two half bearing that can amalgamate on piece 30 and the stand 3, installation piece 30 and stand 3 accessible bolt or hasp etc. realize dismantling and connect, when installation piece 30 demolishs, can wholly shift out the pivot that the rolling was accomplished, slip withdraws from winding wheel 31, continue the rolling work after changing the winding wheel 31 of unloading. The winding wheel 31 is provided with a driving mechanism 32, and the driving mechanism 32 employs a driving motor, and the driving motor and the winding wheel 31 are transmitted through a gear set or a chain or the like. The winding frame is provided with a lifting assembly 33, the swinging assembly 42 is arranged on the lifting assembly 33, the lifting assembly 33 comprises a lifting screw rod 34 arranged on the winding frame, the lifting screw rod 34 is provided with a lifting motor, the lifting screw rod 34 is matched with a lifting sliding block 35, the winding frame is provided with a guide groove 36 matched with the lifting sliding block 35, the lifting sliding block 35 is fixedly provided with a lifting plate 41, and the swinging plate 43 is arranged on the lifting plate 41 in a sliding manner.
The swinging assembly 42 comprises a swinging disc 43 positioned above the axis of the winding wheel 31, a swinging long hole 44 is arranged in the swinging disc 43, the silk thread 7 sequentially passes through the guiding assembly 2, the swinging long hole 44 and the winding wheel 31 when being wound, the swinging long hole 44 is a waist-shaped hole, and the upper edge and the lower edge of the swinging long hole 44 are respectively provided with a round corner transition. The lifting plate 41 is provided with a guide chute 45, one end of the lifting plate 41 is provided with a swing cylinder 46, one end of the swing disc 43 is provided with a guide sliding block matched with the guide chute 45, the swing disc 43 is matched with the swing cylinder 46 to realize the swing of the swing disc 43, and the swing cylinder 46 and the guide chute 45 are both arranged in parallel with the axis of the winding wheel 31. The swing unit 42 is provided with a retractable thread cutting device 5, and the retractable thread cutting device 5 includes a cutter 51 attached to the swing disk 43. The telescopic thread cutting device 5 comprises a telescopic air cylinder 52 arranged on the swinging disc 43, a telescopic guide groove 53 is arranged on the swinging disc 43, a telescopic sliding block is arranged in the telescopic guide groove 53 in a sliding mode, the cutting knife 51 is fixed on the telescopic sliding block, and the cutting knife 51 is matched with the telescopic air cylinder 52. The telescopic cylinder 52 and the telescopic guide groove 53 are arranged perpendicular to the axis of the upright 3 and the axis of the winding wheel 31.
The guiding assembly 2 and the winding assembly are provided with an adjusting assembly, the adjusting assembly comprises a fixed roll shaft 61 and an adjusting roll shaft 62, the adjusting roll shaft 62 is arranged in a sliding mode relative to the fixed roll shaft 61, and the silk threads 7 sequentially pass through the fixed roll shaft 61 and the adjusting roll shaft 62 when being wound. The adjusting roller shaft 62 is located above the fixed roller shaft 61, a plurality of ring grooves are formed in the fixed roller shaft 61, and the adjusting roller adopts an optical axis structure. Two opposite fixing columns 63 and two opposite adjusting columns 64 are arranged on the workbench 1, the fixing columns 63 are fixed on the workbench 1, and two ends of the fixing roll shaft 61 are respectively connected with the two fixing columns 63 in a rotating mode. The lower extreme of adjusting post 64 is equipped with the regulation slider, is equipped with the regulation spout that cooperates the regulation slider on the workstation 1, is equipped with adjusting cylinder 65 on the workstation 1, and adjusting cylinder 65 connects adjusting post 64, and the adjusting post 64 is removed along the regulation spout through adjusting cylinder 65 drive, and the parallel flexible guide slot 53 of adjusting spout sets up.
When the device is used, the silk thread 7 sequentially passes through the guide component 2, the fixed roll shaft 61, the adjusting roll shaft 62, the cycloid long holes and the winding wheel 31, the adjusting roll shaft 62 can adjust the position back and forth, the swinging long holes 44 swing left and right, and when the silk thread 7 is wound, the swinging long holes 44 drive the silk thread 7 to swing, so that a uniform winding effect is obtained. As shown in fig. 3, when the wire 7 starts to be wound, because the diameter of the wire 7 wound by the winding wheel 31 is small, the wire diameter is small, and a larger tensioning force of the wire 7 is required to ensure that the wire 7 is tensioned and wound on the winding wheel 31, so that the adjusting roller shaft 62 is moved to the side, close to the guide assembly 2, of the upper end of the fixed roller shaft 61, the wire 7 is reliably tensioned, the wire 7 wound on the adjusting assembly is long in size, and the friction resistance is large, so that the winding effect is reliable; as shown in fig. 4, when the winding of the wire is large, the diameter of the wire 7 wound by the winding wheel 31 is large, and the wire diameter is large, and the winding speed is high at the same rotation speed, so that the tension needs to be reduced, and the adjusting roller shaft 62 moves toward the winding frame, and the wire 7 wound on the adjusting component is short in size and small in friction resistance. The adjusting roller shaft 62 adopts a uniform movement mode in the winding process, the adjusting roller shaft 62 moves to the rightmost end position when the winding is completed, the lifting component 33 adopts a uniform movement mode in the winding process, the swinging plate 43 moves to the uppermost end position when the winding is completed, and the swinging plate 43 is controlled to ascend, so that the winding diameter in the winding process is increased, but the size of the cycloid long holes and the outer end of the silk thread 7 wound on the winding wheel 31 is always kept in a relatively stable range, and cycloid and winding and reliability are ensured.

Claims (7)

1. The silk thread winding device for spinning is characterized by comprising a guide component and a winding component which are sequentially arranged; the winding assembly comprises a winding frame, a winding wheel and a swinging assembly, the winding wheel is rotationally arranged on the winding frame, the winding wheel is provided with a driving mechanism, the winding frame is provided with a lifting assembly, the swinging assembly is arranged on the lifting assembly and comprises a swinging disc positioned above a winding wheel shaft line, a swinging long hole is formed in the swinging disc, a wire is sequentially wound through the guiding assembly, the swinging long hole and the winding wheel, a telescopic wire cutting device is arranged on the swinging assembly, and the telescopic wire cutting device comprises a cutting knife attached to the swinging disc.
2. The yarn winding device for textile yarns according to claim 1, wherein the guiding assembly comprises two rollers arranged up and down in opposition, the rollers are rotatably arranged, and wire ring grooves corresponding to the yarns are arranged on the rollers.
3. The yarn winding device for spinning according to claim 1, wherein the guiding assembly and the winding assembly are provided with an adjusting assembly, the adjusting assembly comprises a fixed roll shaft and an adjusting roll shaft, the adjusting roll shaft is arranged in a sliding manner relative to the fixed roll shaft, and the yarn passes through the fixed roll shaft and the adjusting roll shaft in sequence during winding.
4. The yarn winding device for textile yarns according to claim 3, wherein the adjusting roller shaft is located above the fixed roller shaft, a plurality of ring grooves are formed in the fixed roller shaft, and the adjusting roller adopts an optical axis structure.
5. The yarn winding device for textile yarns according to claim 1, wherein the lifting assembly comprises a lifting screw rod arranged on the winding frame, the lifting screw rod is provided with a lifting motor, a lifting sliding block is matched on the lifting screw rod, a guide groove matched with the lifting sliding block is arranged on the winding frame, a lifting plate is fixedly arranged on the lifting sliding block, and the swinging disc is arranged on the lifting plate in a sliding manner.
6. The yarn winding device for textile yarns according to claim 5, wherein the lifting plate is provided with a guide chute, one end of the lifting plate is provided with a swinging cylinder, one end of the swinging plate is provided with a guide sliding block matched with the guide chute, and the swinging plate is matched with the swinging cylinder.
7. The yarn winding device for textile yarns according to claim 1 or 6, wherein the telescopic yarn cutting device comprises a telescopic cylinder arranged on a swinging disc, a telescopic guide groove is arranged on the swinging disc, a telescopic sliding block is arranged in the telescopic guide groove in a sliding manner, and a cutting knife is fixed on the telescopic sliding block and is matched with the telescopic cylinder.
CN202321031018.9U 2023-05-04 2023-05-04 Silk thread coiling mechanism for weaving Active CN220148862U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202321031018.9U CN220148862U (en) 2023-05-04 2023-05-04 Silk thread coiling mechanism for weaving

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202321031018.9U CN220148862U (en) 2023-05-04 2023-05-04 Silk thread coiling mechanism for weaving

Publications (1)

Publication Number Publication Date
CN220148862U true CN220148862U (en) 2023-12-08

Family

ID=89015436

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202321031018.9U Active CN220148862U (en) 2023-05-04 2023-05-04 Silk thread coiling mechanism for weaving

Country Status (1)

Country Link
CN (1) CN220148862U (en)

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