CN111719262A - Reduce high-efficient starching machine of yarn surface adhesion bubble - Google Patents

Reduce high-efficient starching machine of yarn surface adhesion bubble Download PDF

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Publication number
CN111719262A
CN111719262A CN202010438140.2A CN202010438140A CN111719262A CN 111719262 A CN111719262 A CN 111719262A CN 202010438140 A CN202010438140 A CN 202010438140A CN 111719262 A CN111719262 A CN 111719262A
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CN
China
Prior art keywords
yarn
wall
cylinder body
sizing
annular balloon
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Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Pending
Application number
CN202010438140.2A
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Chinese (zh)
Inventor
梅丽峰
邬星星
徐卓华
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Jiaxing Jinkeda Textile Technology Co ltd
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Jiaxing Jinkeda Textile Technology Co ltd
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Publication date
Application filed by Jiaxing Jinkeda Textile Technology Co ltd filed Critical Jiaxing Jinkeda Textile Technology Co ltd
Priority to CN202010438140.2A priority Critical patent/CN111719262A/en
Publication of CN111719262A publication Critical patent/CN111719262A/en
Pending legal-status Critical Current

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    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06BTREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
    • D06B3/00Passing of textile materials through liquids, gases or vapours to effect treatment, e.g. washing, dyeing, bleaching, sizing, impregnating
    • D06B3/04Passing of textile materials through liquids, gases or vapours to effect treatment, e.g. washing, dyeing, bleaching, sizing, impregnating of yarns, threads or filaments
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06BTREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
    • D06B15/00Removing liquids, gases or vapours from textile materials in association with treatment of the materials by liquids, gases or vapours
    • D06B15/02Removing liquids, gases or vapours from textile materials in association with treatment of the materials by liquids, gases or vapours by squeezing rollers
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06BTREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
    • D06B15/00Removing liquids, gases or vapours from textile materials in association with treatment of the materials by liquids, gases or vapours
    • D06B15/08Removing liquids, gases or vapours from textile materials in association with treatment of the materials by liquids, gases or vapours by scraping

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Yarns And Mechanical Finishing Of Yarns Or Ropes (AREA)

Abstract

The invention relates to a high-efficiency sizing machine for reducing adhesion bubbles on the surface of yarns, which belongs to the field of yarn sizing equipment and comprises an unwinding mechanism, a sizing mechanism and a winding mechanism, wherein the sizing mechanism comprises a size tank, the size tank is rotatably provided with a sizing roller and a squeezing roller, the size tank is provided with a foam scraping plate positioned in yarn size, the foam scraping plate is provided with a plurality of foam scraping holes for single yarns to pass through, the inner walls of the foam scraping holes are in clearance fit with the outer circumferential walls of the yarns, and the yarns sequentially pass through the unwinding mechanism, the spaces between the sizing roller and the squeezing roller, the foam scraping plate and the winding mechanism.

Description

Reduce high-efficient starching machine of yarn surface adhesion bubble
Technical Field
The invention relates to the field of yarn sizing equipment, in particular to a high-efficiency sizing machine for reducing air bubbles adhered to the surface of yarn.
Background
In the weaving process, the warp yarn is subjected to various friction, stretching and tension effects on the weaving machine, and the unsized warp yarn has many hairiness exposed on the surface of the yarn and insufficient cohesive force between fibers, so the hairiness on the yarn can be loosened and fluffed under the action of mechanical force of the weaving machine, partial fibers are separated from the yarn, the warp yarn is broken, weaving defects are generated, and even weaving cannot be performed, so the quality of the woven fabric is influenced. In order to reduce the end breakage rate of a loom and improve the weavability and the product quality of the warp, the warp needs to be subjected to a sizing process, so that hairiness on the warp is attached to the warp, and the original elasticity of the warp is kept as much as possible. The sizing warp yarns have the advantages that the fibers protruding from the periphery are adhered to the yarn evenness by the size, so that the smoothness of the yarns is improved, and meanwhile, a layer of size film is formed on the warp yarns after the size is dried, so that the anti-friction capacity of the warp yarns is improved; on the other hand, the slurry penetrates into the warp yarns to adhere partial fibers to each other, so that the strength of the warp yarns is improved.
The authorization number is: CN205617078U patent discloses a sizing machine, which comprises a yarn releasing device, a pre-cleaning device, a sizing mechanism, a pulp recovering device and a yarn collecting device, wherein the pre-cleaning device is located at one side of the sizing mechanism, the pre-cleaning device comprises a vacuum cleaner with a hollow structure, the vacuum cleaner comprises a yarn inlet, a yarn outlet, a dust collecting head and an impurity box which are arranged in the vacuum cleaner and correspond to each other, a connecting rod is arranged in the vacuum cleaner, a yarn guide ring is arranged on the connecting rod, the impurity box is located below the dust collecting head, a dust collecting pipe is arranged between the vacuum cleaner and the impurity box, the sizing mechanism comprises a sizing tank and sizing equipment, the sizing equipment comprises an immersion roller, a sizing roller and a sizing roller located above the sizing roller, the immersion roller is located in the sizing tank, the immersion roller and the sizing roller are driven by a driving mechanism, supports are arranged at two sides of the sizing tank, the utility model discloses a sizing machine, including sizing roller, cylinder, thick liquids recovery unit, dressing roller's pivot swing joint, the pivot swing joint of sizing roller is on the support, be equipped with the cylinder on the support, the piston rod of cylinder and the pivot fixed connection of sizing roller, thick liquids recovery unit is located sizing mechanism's a yarn one side, thick liquids recovery unit includes the mount, the thick liquids brush of being connected with the mount and is located the accumulator below the thick liquids brush, be equipped with the water level inductor in the accumulator, accumulator one side is equipped with replenishing device, thick liquids water level inductor and replenishing device electric connection.
The above-described sizing machine presses the already sized yarns using the sizing roll and the press roll in an attempt to press out air bubbles attached between or in the yarns to improve the sizing quality. However, since the size is a liquid with a relatively high viscosity, the size adheres to the surfaces of the sizing roller and the sizing roller, and a part of the size remains between the sizing roller and the sizing roller, when the sizing roller and the sizing roller extrude the bubbles in the yarn, a part of the gas directly goes into the retained size to continue forming the bubbles, so that the bubbles are seen to be continuously generated between the sizing roller and the sizing roller, and thus a part of the bubbles may adhere to the outer surface of the yarn, so that the bubble removing effect is not very ideal, and the sizing effect is affected.
Disclosure of Invention
Aiming at the defects in the prior art, the invention aims to provide the high-efficiency sizing machine for reducing the air bubbles adhered to the surface of the yarn, and the sizing machine can reduce the air bubbles adhered to the surface of the yarn when the yarn is sized and improve the sizing effect.
The above object of the present invention is achieved by the following technical solutions:
the utility model provides a reduce high-efficient starching machine of yarn surface adhesion bubble, includes unwinding mechanism, starching mechanism and winding mechanism, starching mechanism includes the dressing trough, the dressing trough is equipped with sizing roller and squeeze roll with rotating, the dressing trough is equipped with the bubble board of scraping that is located the yarn thick liquid, it is equipped with the bubble of scraping that a plurality of supplied single yarn to pass to scrape the bubble board, scrape the bubble hole of inner wall of the bubble and the outer periphery clearance fit of yarn, the yarn passes through between unwinding mechanism, sizing roller and the squeeze roll in proper order, scrapes bubble board and winding mechanism.
Through adopting above-mentioned technical scheme, the yarn enters into the dressing trough in the sizing back, extrudees the yarn that has been stained with the thick liquid through sizing roller and mud jacking roller, will adhere to between the yarn or the bubble extrusion in the yarn comes out, and the partial bubble that extrudees out still can the adhesion on the surface of yarn, scrapes the bubble through scraping the bubble board to the yarn surface again and handles to can further reduce the bubble of yarn surface adhesion, improve the effect of sizing.
The invention is further configured to: scrape the annular balloon that the bubble board includes that plate body and a plurality of supplied single yarn to pass, the plate body is equipped with the installation through-hole that is used for installing the annular balloon, the annular balloon is installed in the installation through-hole, the annular balloon is equipped with communicating pipe rather than inside intercommunication, the import department of communicating pipe is equipped with the sealing device who is used for sealed communicating pipe.
The thickness of different yarns can be different, through adopting above-mentioned technical scheme, scrape the bubble board and include plate body and annular balloon, thereby just can change the internal diameter of annular balloon through changing the content of gaseous in the annular balloon to can be applicable to scraping the bubble of multiple different diameter yarns, enlarge its application range.
The invention is further configured to: the sealing device comprises a cylinder body, a piston is arranged in the cylinder body in a vertically sliding mode, the outer wall of the piston is in sealing fit with the inner wall of the cylinder body, a piston rod extending out of the cylinder body is fixedly arranged on the piston, an external thread is arranged on the outer wall of the piston rod, the cylinder body is provided with a threaded hole matched with the external thread, and the communicating pipe is connected with one end, away from the piston rod, of the cylinder body and is communicated with the inside of the cylinder body.
Through adopting above-mentioned technical scheme, rotating piston rod can drive the piston and realize going up and down in the cylinder body to can realize aerifing or breathing in annular balloon, after piston rod stall, the piston rod can fix a position the piston, realizes the function of auto-lock, and such sealing device can inflate or deflate annular balloon more conveniently accurately.
The invention is further configured to: the outer end of the piston rod is provided with a gear, and two adjacent gears are meshed with each other.
Through adopting above-mentioned technical scheme, through gear intermeshing back to can realize the linkage between several piston rods, only need rotate a piston rod and can drive other piston rods and rotate together, the volume of aerifing or the volume of bleeding to the annular balloon are all the same simultaneously, and such structure can be more convenient aerifys or deflates the annular balloon.
The invention is further configured to: a positioning piece is arranged between the gear and the cylinder body.
Through adopting above-mentioned technical scheme, fix a position the gear through the setting element for in work, the piston rod is more difficult for taking place pivoted phenomenon.
The invention is further configured to: the mounting through hole has been seted up the round arc wall along its inner wall, annular balloon expands tightly in the arc wall, the outer wall and the laminating of arc wall inner wall of annular balloon, the cylinder body sets firmly on scraping the bubble board, it is equipped with the inside passageway of intercommunication ring channel and cylinder body in the bubble board to scrape, intercommunication outer wall of tubes and the cooperation of pegging graft of passageway inner wall.
Through adopting above-mentioned technical scheme, when certain annular bubble appears damaging when needing to be changed, only need with that annular balloon's that damages communicating pipe extract from the passageway can, then install a new annular balloon again, the communicating pipe of new annular balloon is pegged graft in the passageway, at last inflate new annular balloon can, new annular balloon just can expand tightly to be fixed in the arc wall, the arc wall can carry out axial spacing to annular balloon, such structure makes the change of annular balloon more convenient.
The invention is further configured to: the cylinder body is close to and scrapes bubble board one end lateral wall and is equipped with the snuffle valve with the inside intercommunication of cylinder body.
Through adopting above-mentioned technical scheme, when need aerify it after changing a new annular balloon in certain installation through-hole, need not rotate the screw rod, make the height of this screw rod and other screw rods still keep unanimous, gear on this screw rod still with adjacent gear intermeshing, only need open the release valve, aerify it through outside pump can, like this when subsequent need carry out the starching to the yarn of another diameter, because all gears are intermeshing, the height of piston is also all the same, only need normally go rotate certain piston rod can, it is more convenient to adjust.
The invention is further configured to: the sizing roller and the squeezing roller are both positioned in the yarn size.
When being stained with thick liquid yarn in the air by the extrusion, although inside bubble at that time has been extruded, nevertheless extrude the back, gaseous still runs easily and forms the bubble in the yarn, through adopting above-mentioned technical scheme, sizing roller and mud jacking roller all are located the yarn thick liquid for be stained with the yarn after thick liquid and can be extruded in the yarn thick liquid, be difficult for forming a large amount of bubbles by the inside of the yarn after the extrusion.
In conclusion, the beneficial technical effects of the invention are as follows:
the sizing roller and the squeezing roller extrude the yarn after being stained with the size in the yarn size, so that the bubbles inside the yarn are extruded, and the bubbles are scraped to the yarn by the bubble scraping plate, thereby reducing the bubbles adhered to the surface of the yarn and improving the sizing effect.
Scrape the bubble through annular balloon and handle to the yarn, through the content of the interior gas of adjustment annular balloon to can adjust the internal diameter of annular balloon, thereby can adapt to the yarn of multiple different thicknesses, enlarge its application range.
Drawings
Fig. 1 is a schematic structural view of the present invention.
Fig. 2 is a schematic view of a portion of the bubble scraping plate of fig. 1.
Fig. 3 is a cross-sectional view a-a of fig. 2.
In the figure, 1, an unwinding mechanism; 2. a winding mechanism; 3. a sizing mechanism; 31. a slurry tank; 32. a sizing roller; 33. a squeezing roller; 4. scraping a bubble plate; 41. a plate body; 42. an annular balloon; 5. scraping foam holes; 6. mounting a through hole; 7. a communicating pipe; 8. a sealing device; 81. a cylinder body; 82. a piston; 83. a piston rod; 84. an external thread; 85. a threaded hole; 9. a gear; 10. a positioning member; 11. an arc-shaped slot; 12. a channel; 13. a gas release valve; 14. a chute; 15. a yarn; 16. a turntable; 17. and a drying device.
Detailed Description
The present invention will be described in further detail with reference to the accompanying drawings.
Referring to fig. 1, the efficient sizing machine for reducing the adhesion bubbles on the surface of the yarn disclosed by the invention comprises an unwinding mechanism 1, a sizing mechanism 3 and a winding mechanism 2, wherein the yarn 15 is unwound from the unwinding mechanism 1 and then enters a sizing device for sizing, the sized yarn 15 enters a drying device 17 for drying, the yarn 15 is finally wound on the winding device, and the unwinding mechanism 1, the winding mechanism 2 and the drying device 17 are authorized to be as follows: CN205617078U, which is not specifically disclosed.
Starching mechanism 3 includes dressing trough 31, be equipped with sizing roller 32 and squeeze roll 33 at dressing trough 31 internal rotation ground, sizing roller 32 and squeeze roll 33 pass through motor drive, sizing roller 32 and the equal submergence of squeeze roll 33 are in the yarn thick liquid, spout 14 that extend from top to bottom all have been seted up on the relative inner wall of dressing trough 31, be equipped with in the dressing trough 31 and scrape bubble board 4, the both ends of scraping bubble board 4 set up in adjacent spout 14 with sliding from top to bottom respectively, yarn 15 unreels out the back earlier enter into the yarn thick liquid in, then can enter into and extrude the yarn 15 of being stained with the thick liquid between sizing roller 32 and the squeeze roll 33, yarn 15 after the extrusion is again through scraping bubble board 4, scrape bubble board 4 and can scrape the bubble processing to the surface of yarn 15.
As shown in fig. 2 and 3, the bubble scraping plate 4 includes a plate body 41 and an annular balloon 42, the plate body 41 is provided with an installation through hole 6 for installing the annular balloon 42, a circle of arc-shaped grooves 11 are arranged along the inner wall of the installation through hole 6, the annular balloon 42 expands tightly in the arc-shaped grooves 11 after being inflated, the outer circumferential wall of the annular balloon 42 is attached to the inner wall of the arc-shaped grooves 11, the annular balloon 42 has a hole as a hole for scraping the bubble hole 5, the inner wall of the hole for scraping is in clearance fit with the outer circumferential wall of the yarn 15, a channel 12 communicated with the arc-shaped grooves 11 is arranged downward above the plate body 41, the annular balloon 42 is provided with a communicating pipe 7 communicated with the inside of the annular balloon, the outer wall of the communicating pipe 7 is in sealing fit with the inner wall of the channel 12, the communicating pipe 7 is inserted in the channel 12.
The sealing device 8 comprises a cylinder 81 fixedly arranged on the plate body 41, the channel 12 extends into the cylinder 81 to enable the arc-shaped groove 11 to be communicated with the interior of the cylinder 81, the communicating pipe 7 is hermetically inserted in the channel 12 to enable the annular balloon 42 to be communicated with the cylinder 81, a piston 82 is arranged in the cylinder 81 in a vertically sliding manner, the outer circumferential wall of the piston 82 is in sealing fit with the inner wall of the cylinder 81, a piston rod 83 is fixedly arranged on the upper end surface of the piston 82, the piston rod 83 extends upwards out of the cylinder 81, an external thread 84 is arranged on the piston rod 83, a threaded hole 85 matched with the external thread 84 is arranged on the cylinder 81, the piston 82 can be driven to move up and down after the piston rod 83 rotates, so that the annular balloon 42 can be sealed when the piston rod 83 does not rotate, the content of gas in the annular balloon 42 can be adjusted when the piston rod 83 rotates, the size of the hole 5 for blowing by the annular balloon 42 can be adjusted to accommodate blowing by a variety of different size yarns 15.
As shown in fig. 2 and 3, the upper end of the piston rod 83 is fixedly provided with the gears 9, two adjacent gears 9 are engaged with each other, the leftmost gear 9 is fixedly provided with the turntable 16, and when the turntable 16 is rotated, all the gears 9 can be driven to rotate, so that the piston rod 83 can be driven to rotate; the positioning piece 10 is arranged on the leftmost gear 9, the positioning piece 10 is a bolt, the gear 9 and the cylinder body 81 are fixed through the bolt, the lower end of the bolt is abutted against the outer wall of the cylinder body 81, and the bolt is in threaded connection with the gear 9.
As shown in fig. 3, an air release valve 13 communicating with the inside of the cylinder 81 is provided on the left side wall near the lower end of the cylinder 81, and the inside of the cylinder 81 can be released by the air release valve 13, or the inside of the cylinder 81 can be inflated by abutting the air release valve 13 with an inflator.
The implementation principle of the embodiment is as follows: yarn 15 unreels from unwinding mechanism 1 and comes out the back, enters into the yarn thick liquid earlier in, then can enter into and extrude the yarn 15 that is stained with the thick liquid between sizing roller 32 and the squeeze roll 33 for the inside bubble of yarn 15 is extruded, and in the yarn thick liquid enters into yarn 15, yarn 15 after the extrusion is again scraped bubble board 4, scrapes bubble board 4 and can scrape the bubble to the surface of yarn 15 and handle, reduces the bubble on yarn 15 surface.
When sizing of one batch of yarns 15 is finished and another thicker batch of yarns 15 needs to be sized, the turntable 16 can be rotated to drive all the piston rods 83 to rotate, so that the pistons 82 in the cylinder 81 move upwards, and after the space in the cylinder 81 is enlarged, part of gas in the annular balloon 42 can run into the cylinder 81, so that the diameter of the foam scraping hole 5 of the annular balloon 42 is enlarged, and the foam scraping of the thicker yarns 15 can be adapted; when sizing a row of finer yarns 15, the piston 82 in the cylinder 81 is moved down by rotating the rotating disc 16 in the reverse direction to compress the air in the cylinder 81 into the annular balloon 42, so that the volume of the annular balloon 42 is increased, and indirectly, the diameter of the foam-scraping hole 5 of the annular balloon 42 is decreased, thereby adapting to foam scraping of the finer yarns 15.
When a certain annular balloon 42 is damaged and needs to be replaced, the damaged annular balloon 42 only needs to be detached from the plate body 41, then a new annular balloon 42 is replaced, in the detaching process, only the communication pipe 7 of the damaged annular balloon 42 needs to be pulled out of the channel 12, then the communication pipe 7 of the new annular balloon 42 is inserted into the channel 12, and then the communication pipe is butted with the air release valve 13 by virtue of an external inflation device, the air release valve 13 is opened, the cylinder body 81 is inflated by virtue of the inflation device, the air entering from the outside can also enter the new annular balloon 42, the new annular balloon 42 is expanded, the diameter of the scraping hole 5 is measured by a tool until the diameter of the scraping hole 5 is the same as the diameters of other scraping holes 5, and therefore the whole replacing work is completed.
The embodiments of the present invention are preferred embodiments of the present invention, and the scope of the present invention is not limited by these embodiments, so: all equivalent changes made according to the structure, shape and principle of the invention are covered by the protection scope of the invention.

Claims (8)

1. The utility model provides a reduce high-efficient starching machine of yarn surface adhesion bubble, includes unwinding mechanism (1), starching mechanism (3) and winding mechanism (2), starching mechanism (3) are including dressing trough (31), dressing trough (31) are equipped with sizing roller (32) and mud jacking roller (33) with rotating, its characterized in that: size groove (31) are equipped with scrape bubble board (4) that are located the yarn thick liquid, scrape bubble board (4) and be equipped with scraping bubble (5) that single yarn (15) of a plurality of confession passed, scrape outer wall clearance fit of bubble (5) inner wall and yarn (15), yarn (15) are in proper order through unwinding mechanism (1), sizing roller (32) and squeeze roll (33) between, scrape bubble board (4) and winding mechanism (2).
2. A high efficiency sizing machine for reducing air bubbles adhered to the surface of a yarn according to claim 1, wherein: scrape bubble board (4) including plate body (41) and annular balloon (42) that a plurality of supplied single yarn (15) to pass, plate body (41) are equipped with installation through-hole (6) that are used for installing annular balloon (42), install in installation through-hole (6) annular balloon (42), annular balloon (42) are equipped with communicating pipe (7) rather than inside intercommunication, the import department of communicating pipe (7) is equipped with sealing device (8) that are used for sealed communicating pipe (7).
3. A high efficiency sizing machine for reducing air bubbles adhered to the surface of a yarn according to claim 2, wherein: sealing device (8) include cylinder body (81), be equipped with piston (82) in cylinder body (81) with sliding from top to bottom, piston (82) outer wall and the sealed cooperation of cylinder body (81) inner wall, piston (82) have set firmly piston rod (83) that extend to outside cylinder body (81), piston rod (83) outer wall is equipped with external screw thread (84), cylinder body (81) are equipped with screw hole (85) with external screw thread (84) looks adaptation, communicating pipe (7) are connected and are communicated with cylinder body (81) inside with the one end that piston rod (83) were kept away from with cylinder body (81).
4. A high efficiency sizing machine for reducing air bubbles adhered to the surface of a yarn according to claim 3, wherein: the outer end of the piston rod (83) is provided with a gear (9), and two adjacent gears (9) are meshed with each other.
5. A high efficiency sizing machine for reducing air bubbles adhered to the surface of a yarn according to claim 4, wherein: a positioning piece (10) is arranged between the gear (9) and the cylinder body (81).
6. A high efficiency sizing machine for reducing air bubbles adhered to the surface of a yarn according to claim 3, wherein: the mounting through hole (6) has been seted up round arc wall (11) along its inner wall, annular balloon (42) expand tightly in arc wall (11), the outer wall and the laminating of arc wall (11) inner wall of annular balloon (42), cylinder body (81) set firmly on scraping bubble board (4), be equipped with passageway (12) that communicate ring channel and cylinder body (81) are inside in scraping bubble board (4), cooperation of pegging graft with passageway (12) inner wall communicating pipe (7) outer wall.
7. A high efficiency sizing machine for reducing air bubbles adhered to the surface of a yarn according to claim 6, wherein: cylinder body (81) are close to and scrape bubble board (4) one end lateral wall and are equipped with air escape valve (13) with cylinder body (81) inside intercommunication.
8. A high efficiency sizing machine for reducing air bubbles adhered to the surface of a yarn according to claim 1, wherein: the sizing roller (32) and the squeezing roller (33) are both positioned in the yarn size.
CN202010438140.2A 2020-05-21 2020-05-21 Reduce high-efficient starching machine of yarn surface adhesion bubble Pending CN111719262A (en)

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CN202010438140.2A CN111719262A (en) 2020-05-21 2020-05-21 Reduce high-efficient starching machine of yarn surface adhesion bubble

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Application Number Priority Date Filing Date Title
CN202010438140.2A CN111719262A (en) 2020-05-21 2020-05-21 Reduce high-efficient starching machine of yarn surface adhesion bubble

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Cited By (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114855385A (en) * 2022-06-09 2022-08-05 徐州天虹银联纺织有限公司 Preparation facilities of glutinous two core yarns is washed to environmental protection degradable

Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4364157A (en) * 1980-11-20 1982-12-21 Cutts William H Method for applying sizing to warp yarns
CN205617078U (en) * 2015-12-21 2016-10-05 嵊州市意海电机配件厂 Starching machine
CN206970878U (en) * 2017-07-06 2018-02-06 太和县太清纺织品原料有限公司 Warp sizing machine
CN109056223A (en) * 2018-10-30 2018-12-21 石三平 A kind of device of sizing machine for warp yarn

Patent Citations (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US4364157A (en) * 1980-11-20 1982-12-21 Cutts William H Method for applying sizing to warp yarns
CN205617078U (en) * 2015-12-21 2016-10-05 嵊州市意海电机配件厂 Starching machine
CN206970878U (en) * 2017-07-06 2018-02-06 太和县太清纺织品原料有限公司 Warp sizing machine
CN109056223A (en) * 2018-10-30 2018-12-21 石三平 A kind of device of sizing machine for warp yarn

Cited By (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN114855385A (en) * 2022-06-09 2022-08-05 徐州天虹银联纺织有限公司 Preparation facilities of glutinous two core yarns is washed to environmental protection degradable
CN114855385B (en) * 2022-06-09 2023-11-24 徐州银宇纺织有限公司 Environment-friendly degradable polyester-viscose double-core yarn preparation device

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Application publication date: 20200929

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