CN202139351U - Multi-layered type spandex air flow network covering yarn machine - Google Patents

Multi-layered type spandex air flow network covering yarn machine Download PDF

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Publication number
CN202139351U
CN202139351U CN201120137524U CN201120137524U CN202139351U CN 202139351 U CN202139351 U CN 202139351U CN 201120137524 U CN201120137524 U CN 201120137524U CN 201120137524 U CN201120137524 U CN 201120137524U CN 202139351 U CN202139351 U CN 202139351U
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China
Prior art keywords
roller
spandex
flow network
network covering
roller mechanism
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Expired - Fee Related
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CN201120137524U
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Chinese (zh)
Inventor
张永清
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YONGLE SHAOXING TEXTILE MACHINERY CO Ltd
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YONGLE SHAOXING TEXTILE MACHINERY CO Ltd
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Abstract

The utility model relates to a multi-layered type spandex air flow network covering yarn machine for producing spandex network covering yarn. The multi-layered type spandex air flow network covering yarn machine is capable of effectively forming the covering yarn, high in covering quality, good in forming effect and high in production efficiency. The multi-layered type spandex air flow network covering yarn machine comprises a yarn frame and a machine frame and is characterized in that a plurality of covering processing units are regularly arranged on the machine frame, each covering processing unit comprises a single yarn roller mechanism, a doubling roller mechanism, a forming groove drum mechanism, a yarn guide roller mechanism and an oil groove mechanism which are driven by a power mechanism and arranged vertically and correspondingly on the machine frame from the top to the bottom, and a pair of air blowing mechanisms for blowing air to the yarn are arranged between the doubling roller mechanism and the yarn guide roller mechanism.

Description

Multiple field spandex air-flow network covering filament machine
Technical field
The utility model relates to a kind of textile machine, specifically is the multiple field spandex air-flow network covering filament machine of producing spandex network covering filament.
Background technology
Spandex network covering filament is a kind of new type structure for textile yarn, the market of always selling well in recent years.Yet the air coating machine of existing production covering filament is because structural design is comparatively backward; Production efficiency lower (speed of a motor vehicle is about 200~300 meters/minute); Energy consumption is bigger, and covering filament product covered effect is poor, is difficult to satisfy current energy-saving and emission-reduction, constantly promotes the market demand of yarn product quality.
Summary of the invention
The purpose of the utility model is the deficiency that overcomes above-mentioned prior art, and a kind of air-flow network spandex coating machine is provided, and this function realizes the shaping of coating cotton thread effectively, has the characteristics that quality is high, forming effect is good, production efficiency is high that coat.
The technical scheme that the utility model adopts is:
Multiple field spandex air-flow network covering filament machine; Comprise guide frame and frame; It is characterized in that being installed with on the described frame several regularly arranged coating machining cells; Each coat machining cell comprise by actuating unit drive and from top to bottom vertically correspondence be arranged on monofilament roller mechanism, doubling roller mechanism, shaping groove drum mechanism, conductive filament roller mechanism and oil groove mechanism on the frame, the jet mechanism of the jet effect of a pair of silk thread also is installed between aforementioned doubling roller mechanism and the conductive filament roller mechanism.
Said monofilament roller mechanism comprises that one receives first roller of the horizontal arrangement that actuating unit drives and be used for plug-in mounting spandex silk tube to make its rotating shaft that driven by first roller, the parallel axes of the axis of this rotating shaft and first roller; The movable presser feet that rotating shaft is installed is hinged on the presser feet seat parallel axes of the axis of its jointed shaft and first roller swingably; Other has the two ends of an extension spring to collude respectively to draw and is connecting presser feet seat and movable presser feet, so that movable presser feet has the trend of clockwise swing or make movable presser feet have the trend of counter-clockwise swing.
Said doubling roller mechanism comprises that one receives second roller of the horizontal arrangement that actuating unit drives and exert pressure at spring down processed silk to be pressed on first pair of skin rod apron pressing mechanism on the second roller periphery; The axis of two rollers in the said pair of skin rod apron pressing mechanism and the axis of second roller are parallel to each other.
Said conductive filament roller mechanism comprises that one receives the 3rd roller of the horizontal arrangement that actuating unit drives and exert pressure at spring down processed silk to be pressed on second pair of skin rod apron pressing mechanism on the 3rd roller periphery; The axis of two rollers in the said pair of skin rod apron pressing mechanism and the axis of the 3rd roller are parallel to each other.
Said jet mechanism comprises that one is arranged on the nozzle of interlace of doubling roller mechanism below and passes through the source of the gas of tracheae to the nozzle of interlace air feed; This nozzle of interlace contains one vertically arranges a straight pipe that from top to bottom passes through for the processing silk, and the internal chamber wall portion of straight pipe is shaped on the spout that communicates with source of the gas, with the processing silk jet-stream wind to being passed through.
Said oil groove mechanism comprises an oil groove and is driven and the oiling roller of accumbency in oil groove by actuating unit that other is provided with at least one and is used for the guide wheel that is pressed in oiling roller periphery upper end under the covering filament.
Said source of the gas is an air pump.
The operation principle of the utility model is: be inserted into spandex silk tube 6 in the rotating shaft and abut against on first roller 8 and driven by first roller, quantitatively unwinding discharges the spandex silk G of processing aequum; Drawing by the doubling roller mechanism after the tow S that gets off with another unwinding from the bobbin of guide frame of this spandex silk (unwinding is come out from the silk tube 2 of creel 1 terylene thread or POLYAMIDE YARNS) merges afterwards and advancing; During this, because the rotating speed of first roller is less than the rotating speed of second roller 11, so the spandex silk has received drawing-off to a certain degree.Then; The air-flow that the processed silk of being carried by the doubling roller mechanism gets in the jet mechanism under the conductive filament roller mechanism traction of bottom coats chamber 12; Processed silk receives the severe impact of air-flow in coating the chamber, terylene or polyamide fibre tow twine the spandex monofilament to coat at random and form polyurethane covered yarn.Then, processed oil groove mechanism that is delivered to the road, back by conductive filament roller mechanism through aforementioned processing coats textile finish oil (elimination Electrostatic Treatment) back and is configured as the covering filament bobbin through shaping groove drum mechanism.
The beneficial effect of the utility model is: owing to adopted vertically corresponding monofilament roller mechanism, doubling roller mechanism and the conductive filament roller mechanism that is provided with from top to bottom, and jet mechanism and the shaping groove drum mechanism to the jet effect of silk thread has been installed between doubling roller mechanism and conductive filament roller mechanism; The network of not only effectively having realized yarn coats, and forming effect is good, and has reduced floor space significantly, improved the speed of a motor vehicle (improving more than 50%), has significantly improved production efficiency, has good market prospects.
Description of drawings
Fig. 1 is the main TV structure sketch map of the utility model.
Fig. 2 is the structural representation of the embodiment (mechanism on frame both sides is symmetrical set) of the utility model.
Fig. 3 is the structural representation of the monofilament roller mechanism in the utility model.
Fig. 4 is the structural representation of the oil groove mechanism in the utility model.
The specific embodiment
As shown in the figure, multiple field spandex air-flow network covering filament machine comprises that several regularly arranged air-flows of installing on guide frame 1, frame 25 and the frame coat machining cell; Each coat machining cell comprise by actuating unit drive and from top to bottom vertically correspondence be arranged on monofilament roller mechanism, doubling roller mechanism, conductive filament roller mechanism, shaping groove drum mechanism and oil groove mechanism on the frame, the jet mechanism of the jet effect of a pair of silk thread also is installed between aforementioned doubling roller mechanism and the conductive filament roller mechanism.
3 coating machining cells that are arranged above and below in frame monolateral (the right) have been shown among Fig. 1; Among the figure; In width (perpendicular to the paper direction) scope of each shaping groove drum mechanism (comprising shaping grooved drum box 18, friction roller 19 and winding shaping translation frame 20); 3 monofilament roller mechanisms, 3 doubling roller mechanisms, 3 conductive filament roller mechanisms and 3 oil groove mechanisms arrange (because difference is overlapping, so only show the view of 1 monofilament roller mechanism, 1 doubling roller mechanism, 1 conductive filament roller mechanism and 1 oil groove mechanism among the figure) respectively up and down.In addition, walk fiber tube 3 and also be distributed in (fiber tube 3 is walked in 1 of also overlapping demonstration among the figure) in this scope for 3.
Fig. 2 is being arranged above and below respectively 3 in frame bilateral (the right and left) to coat machining cell.And can arrange a plurality of coating machining cells (lines are overlapping among the figure, can't show) at the length direction (perpendicular to the paper direction) of frame, its quantity can be confirmed as required.
Said monofilament roller mechanism (shown in Figure 3) comprises that one receives first roller 8 and a rotating rotating shaft 23 of the horizontal arrangement of actuating unit driving; This rotating shaft is used for plug-in mounting spandex silk tube 6 and makes spandex silk tube receive first roller to drive (during duty, the parallel axes of the axis of this rotating shaft and first roller); The movable presser feet 7 that rotating shaft is installed is hinged on the presser feet seat 21 parallel axes of the axis of jointed shaft 7-3 and first roller swingably through jointed shaft 7-3; Other has the two ends of an extension spring 22 to collude respectively to draw and is connecting presser feet seat and movable presser feet, and presser feet seat and movable presser feet are applied pulling force respectively, so that movable presser feet has the trend of clockwise swing spandex silk tube is pressed against (duty on first roller; Represent with solid line among Fig. 3); The trend that perhaps makes movable presser feet have counter-clockwise swing is pulled away from first roller with spandex silk tube, and makes spandex silk tube keep breaking away from the state (off working state of first roller; Represent with chain-dotted line among Fig. 3).Operating personnel pull the handle 7-2 of presser feet seat, just can carry out the switching of duty and off working state.
In the said doubling roller mechanism, second roller 11 of horizontal arrangement is driven by actuating unit, and other has first couple of skin rod apron pressing mechanism 11-1 that processed silk is pressed on the second roller periphery; The axis of two rollers in said first pair of skin rod apron pressing mechanism and the axis of second roller are parallel to each other.
In the said conductive filament roller mechanism, the 3rd roller 14 of horizontal arrangement is driven by actuating unit, and other has second couple of skin rod apron pressing mechanism 14-1 that processed silk is pressed on the 3rd roller periphery; The axis of two rollers in said second pair of skin rod apron pressing mechanism and the axis of the 3rd roller are parallel to each other.
Above-mentioned first pair of skin rod apron pressing mechanism, second pair of skin rod apron pressing mechanism are the conventional mechanism in the textile machine, so its structure is not described in detail.
Above-described actuating unit is the gear reduction (conventional mechanism) of driven by motor; Its view omits.
Said jet mechanism comprises that one is arranged on the nozzle of interlace 12 (conventional mechanism) of doubling roller mechanism below and passes through source of the gas (the said source of the gas preferred air pump of tracheae to the nozzle of interlace air feed; Air pump is conventional mechanism, and view omits); This nozzle of interlace contains one vertically arranges a straight pipe that from top to bottom passes through for the processing silk, and the internal chamber wall portion of straight pipe is shaped on the spout that communicates with source of the gas, with to passing through the processing silk jet-stream wind of straight pipe.
Said oil groove mechanism comprises an oil groove 16 and the oiling roller 24 of accumbency oil groove 16 in that is driven by driving mechanism, and other is provided with at least one and is used for the guide wheel 17 that is pressed under the covering filament on the oiling roller periphery.Driving mechanism is chain sprocket mechanism normally, and its view omits.During work, oiling roller 24 rotates under actuating unit drives, and the periphery that has finish is above the bottom slowly turns to; Twined the covering filament H that coat to be shaped, through (direction of motion of covering filament like figure in arrow A represent), and then be wound into thread tin at upper end face that guide wheel 17 effects nestle up the oiling roller periphery down; The finish of oiling roller circumferential surface just is transferred to covering filament, has accomplished the processing that oils to covering filament.
The structure of said shaping groove drum mechanism is identical with the groove drum mechanism structure of existing doubling winder, can directly divert from one use to another.
Also be provided with the fracture of wire automatic stop arrangement of forming by yarn cutter 4 and several sense silk devices (having shown last perceptron 9 and following sense silk device 15 among the figure) (conventional equipment, buyable obtains) on the frame; When the fracture of wire situation took place, sense silk device sent signal, and yarn cutter cuts off the core silk with regard to action immediately, and the core silk is no longer imported, and prevented silk thread and twined roller and disturb the situation of machining cell on every side.
In addition, a wire leading pipe 13 also is set between jet mechanism and the conductive filament roller mechanism; Processed silk guides to conductive filament roller mechanism by godet roller again after this wire leading pipe passes through, the covering filament that has twined the coating shaping is further adjusted, and helps improving the silk thread quality.
Also have among the figure: traveller 10.
The characteristics brief summary of the utility model is following:
1, each roller that coats in the machining cell adopts the variable-frequency stepless speed-regulating drive, has researched and developed spandex and terylene, polyamide fibre plying air-flow network coating technology, makes that spandex drawing-off amount is adjustable, becomes the filament network coverage degree controlled; More traditional spindle swinging spandex coats, and speed of production significantly improves, and network coating speed reaches 500m/min.
2, design the multilayer staggered form and arranged complete machine structure; Machine coats machining cell for three layers along cross-sectional direction cross arrangement from top to bottom, when the network of having realized yarn is Overmolded, has effectively reduced occupation area of equipment; Shorten operative employee's round, reduced enterprises using the labor.
3, developed constant pressure type spandex bobbin reel cage, thoroughly solved the conventional spandex feeding and adopted silk tube deadweight pressurization, when High-speed machining, caused fibre transportation amount problem of unstable owing to the bobbin deadweight changes; Researched and developed the spandex network covering filament indirect type mechanism that oils, finish shifted to covering filament, guaranteed oil quality, and only need change the velocity of rotation of oiling roller through oiling roller, just can adjust oil mass how much, regulate very convenient.

Claims (2)

1. multiple field spandex air-flow network covering filament machine; Comprise guide frame (1) and machine (25); It is characterized in that being installed with on the described frame several regularly arranged coating machining cells; Each coat machining cell comprise by actuating unit drive and from top to bottom vertically correspondence be arranged on monofilament roller mechanism, doubling roller mechanism, moulding groove drum mechanism, conductive filament roller mechanism and oil groove mechanism on the frame, the jet mechanism of the jet effect of a pair of silk thread also is installed between aforementioned doubling roller mechanism and the conductive filament roller mechanism.
2. multiple field spandex air-flow network covering filament machine according to claim 1; It is characterized in that: said monofilament roller mechanism comprises that one receives first roller (8) of the horizontal arrangement that actuating unit drives and be used for plug-in mounting spandex silk tube to make its rotating shaft (23) that driven by first roller, the parallel axes of the axis of this rotating shaft and first roller; The movable presser feet (7) that rotating shaft is installed is hinged on the presser feet seat parallel axes of the axis of its jointed shaft and first roller swingably; Other has the two ends of an extension spring (22) to collude respectively to draw and is connecting presser feet seat and movable presser feet, so that movable presser feet has the trend of clockwise swing or make movable presser feet have the trend of counter-clockwise swing.
3, multiple field spandex air-flow network covering filament machine according to claim 1 is characterized in that: said doubling roller mechanism comprises that one receives second roller (11) of the horizontal arrangement that actuating unit drives and exert pressure at spring down processed silk to be pressed on the first pair of skin rod apron pressing mechanism (11-1) on the second roller periphery; The axis of two rollers in the said pair of skin rod apron pressing mechanism and the axis of second roller are parallel to each other.
4, multiple field spandex air-flow network covering filament machine according to claim 1 is characterized in that: said conductive filament roller mechanism comprises that one receives the 3rd roller (14) of the horizontal arrangement that actuating unit drives and exert pressure at spring down processed silk to be pressed on the second pair of skin rod apron pressing mechanism (14-1) on the 3rd roller periphery; The axis of two rollers in the said pair of skin rod apron pressing mechanism and the axis of the 3rd roller are parallel to each other.
5, according to claim 2 or 3 or 4 described multiple field spandex air-flow network covering filament machines, it is characterized in that: said jet mechanism comprises that one is arranged on the nozzle of interlace (12) of doubling roller mechanism below and passes through the source of the gas of tracheae to the nozzle of interlace air feed; This nozzle of interlace contains one vertically arranges a straight pipe that from top to bottom passes through for the processing silk, and the internal chamber wall portion of straight pipe is shaped on the spout that communicates with source of the gas, with the processing silk jet-stream wind to being passed through.
6, multiple field spandex air-flow network covering filament machine according to claim 5; It is characterized in that: said oil groove mechanism comprises an oil groove (16) and is driven and the oiling roller (24) of accumbency in oil groove by actuating unit that other is provided with at least one and is used for the guide wheel (17) that is pressed in oiling roller periphery upper end under the covering filament.
7, multiple field spandex air-flow network covering filament machine according to claim 6, it is characterized in that: said source of the gas is an air pump.
CN201120137524U 2011-05-04 2011-05-04 Multi-layered type spandex air flow network covering yarn machine Expired - Fee Related CN202139351U (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
CN201120137524U CN202139351U (en) 2011-05-04 2011-05-04 Multi-layered type spandex air flow network covering yarn machine

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CN201120137524U CN202139351U (en) 2011-05-04 2011-05-04 Multi-layered type spandex air flow network covering yarn machine

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CN202139351U true CN202139351U (en) 2012-02-08

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CN201120137524U Expired - Fee Related CN202139351U (en) 2011-05-04 2011-05-04 Multi-layered type spandex air flow network covering yarn machine

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104562354A (en) * 2013-06-18 2015-04-29 海宁市盛祥线业有限公司 Covered yarn machine with drive mechanism

Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN104562354A (en) * 2013-06-18 2015-04-29 海宁市盛祥线业有限公司 Covered yarn machine with drive mechanism

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GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20120208

Termination date: 20130504