CN223087355U - Fabric collecting and releasing integrated machine - Google Patents

Fabric collecting and releasing integrated machine Download PDF

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Publication number
CN223087355U
CN223087355U CN202422374833.6U CN202422374833U CN223087355U CN 223087355 U CN223087355 U CN 223087355U CN 202422374833 U CN202422374833 U CN 202422374833U CN 223087355 U CN223087355 U CN 223087355U
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CN
China
Prior art keywords
winding
rotary
fabric
integrated machine
tripod
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Active
Application number
CN202422374833.6U
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Chinese (zh)
Inventor
周柱
段捷
邓仁敏
刘茂林
沈甜甜
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Tongxiang Shenglide Textile Co ltd
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Tongxiang Shenglide Textile Co ltd
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Priority to CN202422374833.6U priority Critical patent/CN223087355U/en
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Publication of CN223087355U publication Critical patent/CN223087355U/en
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Abstract

The utility model provides a fabric winding and unwinding integrated machine which comprises a rotary tripod and a support, wherein three groups of winding devices are arranged at the triangular position of the rotary tripod, cutting edges are arranged at one side of each of the three groups of winding devices, two ends of the rotary tripod are arranged on the support, one end of the rotary tripod is in transmission connection with a rotating motor, and a transmission mechanism is further arranged on the support and is in transmission connection with the three groups of winding devices respectively. The utility model has the following beneficial effects that the technical problem that no equipment integrating fabric rolling and discharging is provided in the existing fabric production equipment is solved by the rolling device on the rotary tripod and the transmission mechanism arranged on the bracket.

Description

Fabric winding and unwinding integrated machine
Technical Field
The utility model relates to the technical field of fabric production, in particular to a fabric winding and unwinding integrated machine.
Background
Fabric weaving technology has evolved over the years and innovations as a core component of the textile industry, from an initial simple manual operation into a highly automated and intelligent production process. The modern weaving technology not only greatly improves the production efficiency, but also ensures the stability of the product quality.
However, even in such advanced weaving technology context, an important step in the fabric production process, namely winding and inspection, still faces challenges. After the fabric is woven, the fabric needs to be first rolled into a roll. Then, the fabrics can be subjected to quality detection through a cloth inspecting machine so as to ensure that the problems of chromatic aberration, defects and the like do not exist. The fabric after the detection is qualified is rolled up again and stored, and is ready for entering the next processing stage, packaging or direct sale. In the process, the fabric winding device and the fabric releasing device play a key role. However, most of the existing devices on the market can only implement the winding or unwinding function independently, and lack an integrated device capable of simultaneously completing the two steps, which limits the efficient connection between the fabric production line and the fabric inspection line to a certain extent. Therefore, developing a fabric treatment device which can meet the winding and paying-out requirements has important significance for improving the operation efficiency of the whole textile industry chain.
Disclosure of utility model
Aiming at the defects in the prior art, the utility model provides a fabric winding and unwinding integrated machine, which solves the technical problem that the existing fabric production equipment does not integrate the equipment for winding and unwinding the fabric.
According to the embodiment of the utility model, the fabric winding and unwinding integrated machine comprises:
The rotary tripod is characterized in that three groups of winding devices are arranged at the triangular position of the rotary tripod, and cutting edges are arranged at one side of each of the three groups of winding devices;
The support is characterized in that two ends of the rotary tripod are arranged on the support, one end of the rotary tripod is connected with a rotary motor in a transmission manner, and a transmission mechanism is further arranged on the support and is respectively connected with the three groups of winding devices in a transmission manner.
The technical principle of the utility model is that a rotating motor drives a rotating tripod to rotate, one winding device of three groups is connected with a transmission mechanism, the woven fabric is introduced into the winding device, the transmission mechanism drives the winding device to rotate, the fabric is wound, when the winding is finished, the rotating tripod is driven by the rotating motor to rotate, a cutting edge cuts off the fabric in the rotating process, when the next winding device is connected with the transmission mechanism, the winding device wound with the fabric just reaches the unreeling position of the fabric, then one winding device is used for winding the fabric, and the other winding device is connected with a cloth inspection machine for unreeling the fabric.
Therefore, the transportation process of unreeling the fabric to the cloth inspecting machine after weaving and reeling the fabric is omitted, and meanwhile, the production and inspection of the fabric form a production line.
Compared with the prior art, the utility model has the following beneficial effects that the technical problem that no equipment integrating fabric winding and releasing is available in the existing fabric production equipment is solved by the rotating tripod matched with the winding device and the transmission mechanism arranged on the bracket.
Further, the winding device comprises a winding roller and supporting plates for supporting two ends of the winding roller, the supporting plates are arranged on the rotary tripod, and one end of the winding roller penetrates through the supporting plates and is in transmission connection with the rotary tripod and the transmission mechanism.
Further, wind-up roll one side still is equipped with the compression roller, backup pad corresponds compression roller department and is equipped with the spout, compression roller both ends card is in the spout, be equipped with the tensile elastic component towards the wind-up roll in the spout, backup pad and compression roller are connected respectively at tensile elastic component both ends.
Further, bearing seats are arranged on two sides of the press roller, the bearing seats are clamped into the sliding grooves, and the stretching elastic piece is connected with the bearing seats.
Further, the transmission mechanism comprises a transmission motor and a driving gear arranged on a rotating shaft of the transmission motor, a driven gear is arranged at one end of the winding roller, and the driven gear is meshed with the driving gear.
Further, the cross section of the cutting edge is arc-shaped, and the horizontal height of the cutting edge in the length direction is gradually reduced from one end to the other end.
Further, a transmission shaft is arranged at one end of the rotary tripod, a gear disc is arranged on the transmission shaft, a rotary gear is arranged on a rotary shaft of the rotary motor, and the gear disc is meshed with the rotary gear.
Drawings
Fig. 1 is a schematic structural diagram of a fabric winding and unwinding integrated machine according to an embodiment of the utility model.
Fig. 2 is a schematic structural diagram of a winding device according to an embodiment of the present utility model.
Fig. 3 is a schematic diagram of a driving structure of a winding device according to an embodiment of the utility model.
Fig. 4 is a front view of a cutting edge according to an embodiment of the present utility model.
Fig. 5 is a schematic diagram of a driving structure of a rotary tripod according to an embodiment of the present utility model.
In the drawing, 100 parts of a rotary tripod, 110 parts of a cutting edge, 120 parts of a transmission shaft, 121 parts of a gear disc, 200 parts of a bracket, 210 parts of a rotary motor, 211 parts of a rotary gear, 220 parts of a transmission mechanism, 221 parts of a transmission motor, 222 parts of a driving gear, 300 parts of a rolling device, 310 parts of a rolling roller, 311 parts of a driven gear, 320 parts of a supporting plate, 321 parts of a chute, 330 parts of a pressing roller, 331 parts of a bearing seat, 332 parts of a stretching elastic piece.
Detailed Description
The technical scheme of the utility model is further described below with reference to the accompanying drawings and examples.
The fabric winding and unwinding all-in-one machine shown in fig. 1 comprises a rotary tripod 100 and a support 200, wherein three groups of winding devices 300 are arranged at the triangular position of the rotary tripod 100, cutting edges 110 are arranged at one side positions of the three groups of winding devices 300 and used for cutting fabrics, two ends of the rotary tripod 100 are arranged on the support 200, one end of the rotary tripod 100 is in transmission connection with a rotating motor 210 and used for driving the rotary tripod 100 to rotate, a transmission mechanism 220 is further arranged on the support 200 and is respectively in transmission connection with the three groups of winding devices 300 and used for driving the winding devices 300 to wind fabrics.
As shown in fig. 2-3, the winding device 300 includes a winding roller 310 and supporting plates 320 supporting two ends of the winding roller 310, the supporting plates 320 are mounted on the rotating tripod 100 by bolts, one end of the winding roller 310 penetrates through the supporting plates to be in transmission connection with the rotating tripod 100 and the transmission mechanism 220, and the penetrating position is guaranteed to rotate by adopting bearings.
As shown in fig. 2-3, a press roller 330 is further disposed on one side of the wind-up roller 310, and when the wind-up device 300 is located at a fabric winding position, the press roller 330 is located on the upper side of the wind-up roller 310 and is used for pressing the wound fabric, a slide groove 321 is disposed at a position of the support plate 320 corresponding to the press roller 330, bearing seats 331 are disposed on two sides of the press roller 330, the bearing seats 331 are clamped into the slide groove 321, a stretching elastic piece 332 facing the wind-up roller 310 is disposed in the slide groove 321, and two ends of the stretching elastic piece 322 are respectively connected with the support plate 320 and the bearing seats 331, so that the press roller 330 can always press the fabric on the wind-up roller 310.
As shown in fig. 1 and 3, the transmission mechanism 220 includes a transmission motor 221 and a driving gear 222 disposed on a rotating shaft of the transmission motor 221, a driven gear 311 is disposed at one end of the wind-up roller 310, the driven gear 311 is meshed with the driving gear 222, and when the wind-up device 300 rotates to a wind-up position, the driven gear 311 is meshed with the driving gear 222.
As shown in fig. 1 and 4, the cross section of the cutting edge 110 is circular arc, and the horizontal height of the cutting edge 110 in the length direction gradually decreases from one end to the other end, so that the fabric is cut sequentially from one end to the other end, and burrs generated during cutting are reduced.
As shown in fig. 1 and 5, a transmission shaft 120 is welded at one end of the rotary tripod 100, a gear disc 121 is provided on the transmission shaft 120, a rotary gear 211 is provided on a rotary shaft of the rotary motor 210, and the gear disc 121 is meshed with the rotary gear 211 for ensuring accurate driving of the rotary triangle.
Finally, it is noted that the above embodiments are only for illustrating the technical solution of the present utility model and not for limiting the same, and although the present utility model has been described in detail with reference to the preferred embodiments, it should be understood by those skilled in the art that modifications and equivalents may be made thereto without departing from the spirit and scope of the technical solution of the present utility model, which is intended to be covered by the scope of the claims of the present utility model.

Claims (7)

1. A fabric winding and unwinding integrated machine is characterized by comprising:
The rotary tripod is characterized in that three groups of winding devices are arranged at the triangular position of the rotary tripod, and cutting edges are arranged at one side of each of the three groups of winding devices;
The support is characterized in that two ends of the rotary tripod are arranged on the support, one end of the rotary tripod is connected with a rotary motor in a transmission manner, and a transmission mechanism is further arranged on the support and is respectively connected with the three groups of winding devices in a transmission manner.
2. The fabric winding and unwinding integrated machine according to claim 1, wherein the winding device comprises a winding roller and supporting plates for supporting two ends of the winding roller, the supporting plates are arranged on a rotary tripod, and one end of the winding roller penetrates through a supporting plate to be in transmission connection with the rotary tripod and a transmission mechanism.
3. The fabric winding and unwinding integrated machine according to claim 2, wherein a pressing roller is further arranged on one side of the winding roller, a sliding groove is formed in the position, corresponding to the pressing roller, of the supporting plate, two ends of the pressing roller are clamped in the sliding groove, a stretching elastic piece facing the winding roller is arranged in the sliding groove, and two ends of the stretching elastic piece are respectively connected with the supporting plate and the pressing roller.
4. The fabric folding and unfolding integrated machine as set forth in claim 3, wherein bearing seats are arranged on two sides of the pressing roller and are clamped into the sliding grooves, and the stretching elastic piece is connected with the bearing seats.
5. The fabric winding and unwinding integrated machine according to claim 2, wherein the transmission mechanism comprises a transmission motor and a driving gear arranged on a rotating shaft of the transmission motor, a driven gear is arranged at one end of the winding roller, and the driven gear is meshed with the driving gear.
6. The fabric folding and unfolding integrated machine as set forth in claim 1, wherein the cross section of the cutting edge is circular arc, and the horizontal height of the cutting edge in the length direction is gradually reduced from one end to the other end.
7. The fabric winding and unwinding integrated machine according to claim 1, wherein a transmission shaft is arranged at one end of the rotary tripod, a gear disc is arranged on the transmission shaft, a rotary gear is arranged on a rotary shaft of the rotary motor, and the gear disc is meshed with the rotary gear.
CN202422374833.6U 2024-09-27 2024-09-27 Fabric collecting and releasing integrated machine Active CN223087355U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN202422374833.6U CN223087355U (en) 2024-09-27 2024-09-27 Fabric collecting and releasing integrated machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN202422374833.6U CN223087355U (en) 2024-09-27 2024-09-27 Fabric collecting and releasing integrated machine

Publications (1)

Publication Number Publication Date
CN223087355U true CN223087355U (en) 2025-07-11

Family

ID=96294094

Family Applications (1)

Application Number Title Priority Date Filing Date
CN202422374833.6U Active CN223087355U (en) 2024-09-27 2024-09-27 Fabric collecting and releasing integrated machine

Country Status (1)

Country Link
CN (1) CN223087355U (en)

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