CN211251323U - Fiber yarn stretching, shaping and winding device - Google Patents
Fiber yarn stretching, shaping and winding device Download PDFInfo
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- CN211251323U CN211251323U CN201921925594.1U CN201921925594U CN211251323U CN 211251323 U CN211251323 U CN 211251323U CN 201921925594 U CN201921925594 U CN 201921925594U CN 211251323 U CN211251323 U CN 211251323U
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Abstract
The utility model belongs to the technical field of the cellosilk apparatus for producing, a tensile design wind of cellosilk is disclosed. The main technical characteristics are as follows: including oiling mechanism and the spool frame that has the winding spool, be provided with the waste silk between oiling mechanism and spool frame and collect the mechanism, the waste silk is collected the mechanism and is included the box and is located the power unit that has the pivot in this box, and the pivot is stretched out outside the box, be provided with the waste silk winding that comprises interior separation blade, outer separation blade and waste silk winding axle in the pivot in the box outside and collect the axle, be connected with the carousel through drive mechanism in the box, be provided with the eccentric bar on the carousel, swing joint has the push rod on the eccentric bar, is provided with the slide bar in push rod the place ahead, and the box is stretched out to the front end of slide bar, is provided with the guide ring at the front end of slide bar, and the slide bar is located the side of waste. The waste wire generated immediately after the machine is started is uniformly wound on the waste wire winding and collecting shaft, so that the power resource is saved.
Description
Technical Field
The utility model belongs to the technical field of cellosilk production machinery, especially, relate to a tensile design wind of cellosilk.
Background
After the fiber is subjected to high-temperature drawing forming, the fiber needs to be subjected to cooling forming in a water bath workshop, then the surface of the fiber is soaked with lubricating oil after traction, and finally the fiber is wound on a spool of a spool stand. The fiber yarn stretching, shaping and winding device has the following defects: firstly, because the thickness of the fiber which is generated when the machine is started for the first time is uneven and the tensile strength is poor due to the influence of the temperature of the furnace body and the like within half an hour to one hour of the beginning of the production of the fiber, the quality of the fiber wound on a bobbin which is collected at the beginning is poor, and the fiber is often sold to users as a defective product or thrown away as a waste product; secondly, when winding and collecting are carried out, a plurality of bobbins rotate simultaneously, electric energy is wasted, and the service lives of the bobbins and the traction system are shortened; thirdly, the poor quality of the fiber wound on the bobbin causes the bobbin to be simultaneously wasted, which causes the waste of the bobbin.
SUMMERY OF THE UTILITY MODEL
The to-be-solved technical problem of the utility model is to provide a tensile design wind of cellosilk of the quality of practicing thrift the electric power energy, the unified collection of waste silk is retrieved, is improved cellosilk.
In order to solve the above problem, the utility model discloses the technical scheme that the tensile design wind device of cellosilk adopted does: including drawing mechanism, the mechanism of oiling and the spool frame that has the winding spool oiling mechanism with be provided with waste silk between the spool frame and collect the mechanism, waste silk is collected the mechanism and is included the box and is located the power unit that has the pivot in this box, the pivot is stretched out outside the box be provided with in the pivot and collect the axle by the waste silk winding that interior separation blade, outer separation blade and waste silk winding axle are constituteed be connected with the carousel through drive mechanism in the box be provided with the eccentric bar on the carousel swing joint has the push rod on the eccentric bar push rod the place ahead is provided with the slide bar, the front end of slide bar stretches out the box the front end of slide bar is provided with the guide ring, the slide bar is located the side of waste silk winding axle.
The additional technical characteristics are as follows:
a fixed nut is arranged on the rotating shaft at the outer side of the outer baffle;
the side of the guide ring is provided with an opening.
Compared with the prior art, the utility model provides a tensile design wind of cellosilk has following advantage: one of which, because of comprising a drawing mechanism, an oiling mechanism and a bobbin bracket with a winding bobbin, the oiling mechanism and the bobbin bracket are provided with a waste silk collecting mechanism, the waste silk collecting mechanism comprises a box body and a power mechanism which is arranged in the box body and is provided with a rotating shaft, the rotating shaft extends out of the box body, the rotating shaft outside the box body is provided with a waste silk winding collecting shaft which is composed of an inner blocking piece, an outer blocking piece and a waste silk winding bobbin, the box body is internally connected with a turntable through a transmission mechanism, the turntable is provided with an eccentric rod, the eccentric rod is movably connected with a push rod, the front part of the push rod is provided with a sliding rod, the front end of the sliding rod extends out of the box body, the sliding rod is arranged at the side surface of the waste silk winding bobbin, and after the start-up, all the fiber silks after being stretched and shaped are combined, the waste silk winding and collecting device comprises a guide ring, a waste silk winding and collecting shaft, a power mechanism, a rotary table, a push rod, a sliding rod, a filament winding shaft frame, a filament winding shaft and a filament winding shaft, wherein the end of the filament winding shaft is fixed on the filament winding shaft; secondly, as the fixing nut is arranged on the rotating shaft outside the outer baffle, the outer baffle and the waste wire winding shaft can be taken down, and the wound waste wire can be taken down, so that the use is more convenient; thirdly, the side surface of the guide ring is provided with an opening, so that the fiber filaments can be conveniently taken out of the guide ring.
Drawings
FIG. 1 is a schematic structural view of the fiber drawing, shaping and winding device of the present invention;
FIG. 2 is a schematic structural view of a waste wire collecting mechanism;
FIG. 3 is a schematic structural view of a longitudinal section of the waste wire collecting mechanism.
Detailed Description
The structure and the operation principle of the fiber filament drawing, shaping and winding device of the present invention will be further described in detail with reference to the accompanying drawings and the following detailed description.
As shown in fig. 1, fig. 2 and fig. 3, the structure of the fiber drawing, shaping and winding device of the present invention comprises a drawing mechanism 1, an oiling mechanism 2 and a bobbin bracket 4 with a winding bobbin 3, a waste silk collecting mechanism 5 is arranged between the oiling mechanism 2 and the bobbin bracket 4, the waste silk collecting mechanism 5 comprises a box 6 and a power mechanism 8 with a rotating shaft 7 arranged in the box 6, the rotating shaft 7 extends out of the box 6, a waste silk winding and collecting shaft 18 consisting of an inner baffle 9, an outer baffle 10 and a waste silk winding shaft 11 is arranged on the rotating shaft 7 outside the box 6, a rotary table 13 is connected in front of the box 6 through a transmission mechanism 12, an eccentric rod 14 is arranged on the rotary table 13, a push rod 15 is movably connected on the eccentric rod 14, a slide rod 16 is arranged on the push rod 15, and the front end of the slide rod 16 extends out of the box 6, a guide ring 17 is provided at the front end of the slide bar 16, and the slide bar 16 is located on the side of the waste-wire winding shaft 11. The transmission mechanism 12 may be a worm wheel connected to the rotating shaft through a worm and gear mechanism, and the worm wheel is connected to the rotating disk 13 through a gear, but the transmission mechanism 12 may also be other transmission mechanisms.
After the machine is started, all the drawn and shaped cellosilks are combined and then penetrate through the guide ring 17, the end parts of the combined cellosilks are fixed on the waste silk winding and collecting shaft 18, the power mechanism is started to drive the waste silk winding and collecting shaft 18 to rotate, meanwhile, the rotary table 13 rotates to drive the push rod 15 and the sliding rod 16 to reciprocate in the horizontal direction, the waste silk is uniformly wound on the waste silk winding and collecting shaft, after the waste silk is wound for half an hour to one hour, the power mechanism is closed to cut the cellosilk, then the cellosilk is pulled to the corresponding winding spool on the spool frame to be fixed, and then production is started.
The fixing nut 19 is arranged on the rotating shaft outside the outer baffle piece 10, so that the outer baffle piece and the waste silk winding shaft can be taken down, and the wound waste silk can be taken down, and the use is more convenient.
The utility model discloses a protection scope not only limits in above-mentioned embodiment, as long as the structure with the utility model discloses the tensile design wind device structure of cellosilk is the same or similar, just falls the utility model discloses the scope of protection.
Claims (3)
1. Tensile design wind, including drawing mechanism, the mechanism that oils and the creel that has the winding spool, its characterized in that: oiling mechanism with be provided with waste silk between the spool frame and collect the mechanism, waste silk is collected the mechanism and is included the box and is located the power unit that has the pivot in this box, the pivot is stretched out outside the box be provided with in the pivot and twine the collection axle by interior separation blade, outer separation blade and waste silk winding axle constitution be connected with the carousel through drive mechanism in the box be provided with the eccentric bar on the carousel swing joint has the push rod on the eccentric bar push rod the place ahead is provided with the slide bar, the front end of slide bar stretches out the box the front end of slide bar is provided with the guide ring, the slide bar is located the side of waste silk winding axle.
2. The filament draw-setting winding device according to claim 1, wherein: and a fixing nut is arranged on the rotating shaft at the outer side of the outer baffle.
3. The filament draw-setting winding device according to claim 1, wherein: the side of the guide ring is provided with an opening.
Priority Applications (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921925594.1U CN211251323U (en) | 2019-11-11 | 2019-11-11 | Fiber yarn stretching, shaping and winding device |
Applications Claiming Priority (1)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
CN201921925594.1U CN211251323U (en) | 2019-11-11 | 2019-11-11 | Fiber yarn stretching, shaping and winding device |
Publications (1)
Publication Number | Publication Date |
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CN211251323U true CN211251323U (en) | 2020-08-14 |
Family
ID=71989996
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
CN201921925594.1U Active CN211251323U (en) | 2019-11-11 | 2019-11-11 | Fiber yarn stretching, shaping and winding device |
Country Status (1)
Country | Link |
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CN (1) | CN211251323U (en) |
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2019
- 2019-11-11 CN CN201921925594.1U patent/CN211251323U/en active Active
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