CN1180149C - Dresser - Google Patents

Dresser Download PDF

Info

Publication number
CN1180149C
CN1180149C CNB02103253XA CN02103253A CN1180149C CN 1180149 C CN1180149 C CN 1180149C CN B02103253X A CNB02103253X A CN B02103253XA CN 02103253 A CN02103253 A CN 02103253A CN 1180149 C CN1180149 C CN 1180149C
Authority
CN
China
Prior art keywords
warp thread
water
nozzle
warp
sizing
Prior art date
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.)
Expired - Fee Related
Application number
CNB02103253XA
Other languages
Chinese (zh)
Other versions
CN1369591A (en
Inventor
г
中出清
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Tsudakoma Corp
Original Assignee
Tsudakoma Industrial Co Ltd
Priority date (The priority date 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 date listed.)
Filing date
Publication date
Application filed by Tsudakoma Industrial Co Ltd filed Critical Tsudakoma Industrial Co Ltd
Publication of CN1369591A publication Critical patent/CN1369591A/en
Application granted granted Critical
Publication of CN1180149C publication Critical patent/CN1180149C/en
Anticipated expiration legal-status Critical
Expired - Fee Related legal-status Critical Current

Links

Images

Classifications

    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06BTREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
    • D06B21/00Successive treatments of textile materials by liquids, gases or vapours
    • DTEXTILES; PAPER
    • D06TREATMENT OF TEXTILES OR THE LIKE; LAUNDERING; FLEXIBLE MATERIALS NOT OTHERWISE PROVIDED FOR
    • D06BTREATING TEXTILE MATERIALS USING LIQUIDS, GASES OR VAPOURS
    • D06B1/00Applying liquids, gases or vapours onto textile materials to effect treatment, e.g. washing, dyeing, bleaching, sizing or impregnating
    • D06B1/02Applying liquids, gases or vapours onto textile materials to effect treatment, e.g. washing, dyeing, bleaching, sizing or impregnating by spraying or projecting
    • 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

Abstract

A slasher includes a moistening unit for moistening warp yarns by spraying water on the warp yarns, a squeezing unit for squeezing the moistened warp of the warp yarns, and a sizing unit for sizing the moistened and squeezed warp yarns. The moistening unit sprinkles water on the warp yarns to moisten the warp yarns. The warp yarns absorb part or all of the water sprinkled thereon. The warp yarns are not immersed in water during moistening to avoid excessive moistening. The squeezing unit squeezes the moistened warp yarns so that moisture infiltrates the warp yarns and the warp yarns is moistened uniformly. The moisture moistening the warp yarns is replaced and mixed with size liquor while the warp yarns are being passed through size liquor, so that the warp yarns can be easily and uniformly sized.

Description

Sizing machines
Technical field
The present invention relates to a kind of Sizing machines that is used for to warp sizing, more particularly, relate to a kind of Sizing machines that is provided with the humidity conditioner of the moisture percentage that is used for controlling exactly warp thread.
Background technology
Traditional Sizing machines is provided with damping device, is used for wetting warp thread before making warp sizing.Before sizing, make the moistening sizing effect that has improved after wetting of warp thread, and therefore can reduce necessary starching amount.Damping device is immersed in warp thread in the water that is contained in the pond, and pushes these warp thread with compression roller.When pushing these warp thread like this with compression roller, moisture penetration fiber and moisture are diffused into the part with low humidity percentage from the part with high humility percentage in warp thread, thereby whole warp thread is by wetting and removed redundant moisture equably.Since warp thread with certain moisture percentage by correctly wetting, so warp thread with fixing starching percentage by starching.The starching percentage (%) of moisture percentage of warp thread (%) and warp thread is defined by following expression.
(moisture percentage)={ (moisture weight)/(yarn weight) } * 100 (%)
(starching percentage)={ (starching weight)/(yarn weight) } * 100 (%)
This traditional Sizing machines makes warp thread pass through water in the pond.Therefore, promptly use compression roller extruding warp thread, the warp thread of some kinds also can keep water too much, and Sizing machines can not make warp thread wetted under correct moisture percentage.Even the maximum extrusion pressure that Sizing machines can be applied is applied on the warp thread, the warp thread of some types in the yarn (for example cotton/artificial silk blended yarns or 100% polyester spun yarn) can not be lowered to correct moisture percentage.When the warp thread of some types was squeezed process, the intensity of this warp thread can reduce, and formed fine hair in these sizing, and perhaps the connection degree of the component fibre of warp thread can reduce, and the quality of warp thread can slacken.Therefore, even extruding force is lower than the maximum extrusion pressure that can bear, high extruding force can not be applied on the warp.
If warp thread kept the water of volume, then with low excessively starching percentage warp thread is carried out starching by sizing technique.In the starching process, the moisture of wetting warp is replaced by sizing liquor and mixes with it, and sizing liquor is kept by warp thread.The moisture dilution of the wetted warp thread of drawing by warp thread of sizing liquor.Therefore, then exceedingly diluted if warp thread has kept excessive moisture by the sizing liquor of warp thread absorption, and to push the warp thread that keeps sizing liquor.The result is, warp thread with low excessively starching percentage by starching.
If the warp thread that has kept excessive water is through the starching process, then sizing liquor promptly is maintained at the water dilution on the warp thread, and be difficult to the sizing liquor in the sizing compartment be remained on the predetermined starching concentration, therefore be difficult to make warp thread starching equably with correct starching percentage by upgrading sizing compartment with new sizing liquor.
Summary of the invention
Therefore, the object of the present invention is to provide a kind of Sizing machines, it makes warp sizing after wetting warp thread, and can be with the suitable wetting warp thread of moisture percentage.
According to the present invention, by water being sprayed at wetting warp thread on the warp.These are sprayed onto water on the warp through the line absorption all or part, and become wetting.Because warp thread is not to be immersed in the water that is contained in the container, so warp thread can be exceedingly not wetted.Even warp thread is by wetting brokenly, the moisture of wetting warp thread also can disperse on warp equably, and penetrates warp thread when wetted warp thread is squeezed.By sizing liquor and when being squeezed, the moisture of wetting warp thread is replaced by sizing liquor and mixes with it at warp thread.Therefore, the moisture penetration warp thread, and sizing liquor can permeate warp thread satisfactorily.
According to an aspect of the present invention, a kind of Sizing machines comprises: the damping device that is used for coming by spray water on warp wetting warp thread; Be used to push the pressurizing unit of wetted warp; And be used to make wetted and quetsch warp starching that be squeezed.
Preferably, damping device is regulated the spray rate of the water that sprays warp thread according to condition of work.
Preferably, damping device is sprayed at water on the warp thread by utilizing nozzle that water is injected on the warp thread.
Preferably, damping device comprises a plurality of nozzle sets, and each nozzle sets has a plurality of nozzles of arranging along the warp width direction, and these nozzle sets are controlled individually.
Preferably, the interval that the nozzle of each nozzle sets of damping device is provided with is different with the interval that is provided with the nozzle sets of other nozzle sets, and with different pressure water is offered nozzle sets respectively.
Preferably, one or more nozzles can towards and leave warp thread and move.
Preferably, damping device comprises the movable wetting adjusting parts that are arranged between one or more nozzles and the warp thread.
Preferably, damping device with hot water spray on warp thread.
Because the damping device water sprays warp thread with wetting warp thread, so these warp thread absorb all or part of water that is sprayed onto on it and wetted.Warp thread is not soaked in the water that is contained in the container, so these warp thread are not by excessively wetting.Because the warp thread that the pressurizing unit extruding is wetted, so even warp thread is by wetting brokenly, moisture also can be distributed on the part with low humidity percentage from the part with high humility percentage in warp thread when warp thread is squeezed, thereby warp thread is penetrated warp thread satisfactorily by wetting and moisture equably.When quetsch made wetted warp sizing, the moisture of wetting warp thread was replaced by sizing liquor and is mixed with it, thereby sizing liquor can permeate warp thread satisfactorily.
In Sizing machines according to the present invention, damping device can be regulated the spray rate that is sprayed at the water on the warp thread according to condition of work.
Because damping device is according to regulating the water spray rate according to condition of work, thus come suitably spray water according to the translational speed that comprises quantity, type, number of yarns counting and warp thread, thus warp thread is by suitably wetting.
In Sizing machines according to the present invention.Damping device can come injection water that water is sprayed on the warp thread by utilizing one or more nozzles.
Because water is that the form with droplet is sprayed under the effect of expulsion pressure, thereby these drops are to fly at a high speed, so warp thread can pass through with low spray rate injection water effectively and be wetted equably.
In Sizing machines according to the present invention, damping device can comprise a plurality of nozzle sets, and each nozzle sets has a plurality of nozzles that are provided with along warp width, and nozzle sets can be controlled individually.
Selectively use in a plurality of nozzle sets optimized one according to condition of work.
In Sizing machines according to the present invention, the interval that the nozzle of each nozzle sets of damping device is provided with can be different with the set interval of the nozzle of other nozzle sets, and can with different pressure water be offered nozzle sets respectively.
Therefore, even change the water pressure that offers damping device according to condition of work by the nozzle sets that changes injection water, the spray regime of nozzle ejection water can be exceedingly not overlapping yet, and do not have warp thread and do not have wetted.
In Sizing machines according to the present invention, one or more nozzles can towards and leave warp thread and move.
Therefore, can regulate the warp of the spray regime of nozzle and warp thread can be by wetting equably.
In Sizing machines according to the present invention, damping device can comprise the movable wetting adjusting parts that are arranged between one or more nozzles and the warp thread.
Therefore, can regulate the water yield that is ejected on the warp thread according to condition of work.
In Sizing machines according to the present invention, damping device can be with hot water spray on warp.
Hot water can more easily permeate warp thread, and because uprised by the wetting yarn temperature of hot water, so more moisture was evaporated from the surface of warp thread before warp thread reaches quetsch.Therefore, warp thread can be exceedingly not wetted.
Description of drawings
Can be well understood to above and other objects of the present invention, feature and advantage more from the following specification that provides with reference to accompanying drawing, wherein:
Fig. 1 is the schematic side elevation of Sizing machines in a preferred embodiment according to the present invention;
Fig. 2 is the schematic plan view that helps to illustrate the warp thread of spray regime;
Fig. 3 is the schematic side elevation of movable nozzle;
Fig. 4 is for being the schematic side elevation of movable nozzle; And
Fig. 5 is the schematic side elevation of damping device and pressurizing unit.
The specific embodiment
With reference to Fig. 1 and 2, be used to make the Sizing machines 1 of warp thread 2 starchings to comprise damping device 3, pressurizing unit 4, known quetsch 5 and known drying device in a preferred embodiment according to the present invention.Be fed to known drying device 6 by the warp thread 2 of known quetsch starching.
In general, Sizing machines 1 with low-speed mode work so that connect to go up the warp thread of fracture, perhaps with normal mode work so that carry out slashing operation.Damping device 3 is from the top injection water 7 of warp thread 2, so that warp thread 2 is moistening.Water 7 provides by two pipelines from high-pressure water 8, described two pipelines comprise first pipeline 9 that links to each other with a plurality of first nozzles 14 that are used for during carrying out slashing operation, being used for injection water 7 with low-speed mode and with a plurality of second pipelines 9 of linking to each other at second nozzle 15 of being used for normal mode operating period injection water 7.First pipeline 9 is equipped with electromagnetic valve 10 and flow control valve 12.Second pipeline 9 is equipped with electromagnetic valve 11 and flow control valve 13.Spraying controller 16 is being controlled electromagnetic valve 10 and 11.Spraying controller 16 opens electromagnetic valve 10 and cuts out electromagnetic valve 11, so that operate with low-speed mode.Spraying controller 16 cuts out electromagnetic valve 10 and opens electromagnetic valve 11, so that operate with normal mode.
A plurality of nozzles 14 and 15 are arranged with predetermined interval along the width of warp thread 2.First nozzle 14 is included in first nozzle sets that is used for carrying out with low-speed mode spraying, and second nozzle 15 is included in second nozzle sets that is used for carrying out with normal mode spraying.The water spray regime different according to supply pressure, the spacing of first nozzle 14 is less than the spacing of second nozzle 15.In Fig. 2, ellipse representation nozzle 14 and 15 water spray regime.Represent water spray regime oval overlapped of first nozzle, and represent water spray regime oval overlapped of second nozzle.The respective spray scope that can regulate nozzle 14 and 15 by the position of regulating first screen board 17 and second screen board 18 (being wetting adjusting parts). Screen board 17 and 18 is separately positioned between the passage of first nozzle 14 and warp thread 2 and between the passage of second nozzle 15 and warp thread 2.Screen board 17 with 18 can along the moving direction of warp thread 2, can vertically move or can around with rotate through the parallel axis of line width. Electromagnetic valve 10 and 11 is opened and closed with by nozzle 14 and 15 injection waters 7, or makes by nozzle 14 and 15 injection water 7 is stopped.Be supplied to the pressure of the water 7 of nozzle 14 and 15 to regulate by flow control valve 12 and 13.Be used for the pressure of the water 7 of low-speed mode work lowlyer, and be used for the pressure of the water 7 of normal mode work higher.The pressure that flow control valve 12 and 13 is regulated the pressure of the water 7 that is supplied to the nozzle 14 in first nozzle sets and is supplied to the water 7 of the nozzle 15 in second nozzle sets respectively.In the practice, water 7 be temperature at 80 ℃ or above hot water, but the temperature of water 7 also can be lower than 80 ℃.
Pressurizing unit 4 has the compression roller 19 of a pair of overlapping setting.Pressurizing unit 4 extruding is by the wetting moistening warp thread 2 of damping device 3.Moistening warp thread 2 is squeezed between compression roller 19, so that moisture penetration forms the fiber of warp thread 2 and not have abundant wetting part by moisture is distributed to from the part of excessive moistening in warp.Where necessary, redundant moisture is extruded warp thread 2.Warp thread 2 under the guiding of deflector roll 20 and 21 below nozzle 14 and 15 and be engaged on compression roller to 19 between and move on the known quetsch 5.The superfluous water of extruding from warp thread 27 is collected in the water tank 34, and is discharged into the outside from water tank 34.Water tank 34 can be provided with the weir, to store a certain amount of water 7 therein.If following compression roller 10 parts are immersed in the water 7 in the water tank 34, the then wetting water 7 of compression roller 19 down is transferred on the warp thread 2.
After extruding, moistening warp thread carries out the starching process under the effect of quetsch 5.Quetsch 5 comprises that the starching case 24 that sizing liquor 25 is housed, a pair of part are immersed in sizing roller 22 and a pair of compression roller 23 in the sizing liquor 25 in the starching case 24.The surface of the sizing liquor 25 in the starching case 24 remains on the fixing horizontal by weir or similar device.Sizing roller is immersed in warp thread 2 in the sizing liquor 25 that starching uses 22, and extruding is by the warp thread 2 of starching, to remove too much sizing liquor 25 from warp thread 2.When warp thread 2 and is squeezed at starching, be supplied to the part moisture of warp thread 2 to be replaced and mixing with it by damping device 3 by sizing liquor 25.
The warp thread 2 of drying device 6 dry starchings.Drying device 6 comprises a plurality of warm-up mills 26 and a plurality of guide reel 27.Make to be contacted with the surface of warm-up mill 26 and carry out drying by the warp thread 2 of starching.Starching and dried warp thread 2 are delivered to slasher beam 29 by guide reel 27 and yarn-distributing rod 28, and are wrapped on the slasher beam 29.
In Sizing machines 1, warp thread 2 passes through damping device 3, pressurizing unit 4, quetsch 5 and drying device in turn.Damping device 3 carries out by nozzle 14 and 15 water 7 being sprayed on the wet processes of wetting warp thread 2 on the warp thread 2.The process of the warp thread 2 of a pair of compression roller 19 extruded wet of pressurizing unit 4 usefulness, in forming the fiber of this warp thread 2, disperseing moisture equably, thus wetting equably warp thread 2.Quetsch 5 utilizes a pair of sizing roller 22 and a pair of compression roller 23 to carry out to the warp thread 2 starching process of starching suitably.Drying device 6 heats and is dry by the dry run of the warp thread 2 of starching.Like this, separated by split rods 28 by starching and dry warp thread 2 and be wrapped on the slasher beam 29.
Wet processes by nozzle 14 or 15 at full speed mist or the form of drop the mode that water 7 is sprayed on the warp thread 2 is carried out, with wetting warp thread 2 suitably, thereby warp thread 2 can be by excessively not wetting.Water 7 by first nozzle 14 with low speed ejection simultaneously Sizing machines 1 be decelerated to and stop or water 7 being sprayed on the warp thread 2 that low speed moves with low cruise.Water 7 is by 15 ejections of second nozzle, and Sizing machines 1 moves with normal speed simultaneously.
Then, wetting warp thread 2 is by 19 extruding of a pair of compression roller, with wetting warp thread 2 equably, and makes the water infiltration form the fiber of warp thread 2.The warp thread 2 of moisture penetration is replaced by sizing liquor 25 in the starching process and mixes with it.Therefore, sizing liquor 25 is to permeate sizing 2 equably.Even therefore the rate of sizing of warp thread 2 is lower, sizing 2 also can be by starching effectively.
As mentioned above, water 7 is sprayed on the warp thread 2 that moves with low speed simultaneously Sizing machines 1 by first nozzle 14 with the form of the mist of low speed or drop and is decelerated to and stops or with low cruise.Water 7 is sprayed on the warp thread 2 with high-speed mobile with the form of at a high speed mist or drop by second nozzle 15, and Sizing machines 1 moves with normal speed simultaneously.Therefore, can wetting warp thread 2, Sizing machines 1 moves under low-speed mode with the degree identical with warp thread 2 wetness degrees in the Sizing machines 1 high-speed cruising pattern simultaneously.Because water 7 is offered first nozzle sets that comprises first nozzle 14 respectively and comprises second nozzle sets of second nozzle 15 with different pressure, therefore, water 7 is with the ejection from first nozzle 14 and second nozzle 15 respectively of different ejection pressure.So water can spray with the water spouting velocity of optimizing according to the service condition that comprises warp thread 2 translational speeds.Can adjust the wettability power of warp thread 2 according to the service condition that comprises warp thread 2 translational speeds, quantity, type and yarn amount by the water spouting velocity of adjusting first nozzle 14 or second nozzle, 15 ejection water.Can be used to regulate and control the pressure of water and the flow control valve 12 that flows and 13 and/or adjust the spray orifice area of section of nozzle 14 and the hand-drive substrate 15 of moving nozzle needle-valve by adjustment, adjust the water spouting velocity of first nozzle 14 and second nozzle, 15 ejection water.Position that can be by adjusting screen board 17 and 18 and/or be applied to the wettability power that squeeze pressure on the warp thread 2 is adjusted warp thread 2 by pressurizing unit 4.First nozzle 14 that is used for low-speed mode can remain inoperation and can only be used for second nozzle 15 and the screen board 18 of normal mode.Therefore can in wide water-jet velocity scope, adjust injection flow rate.Nozzle 14 and 15 can be sprayed on water on the surface of compression roller 19.By nozzle 14 and 15 ejections and be collected in the tank by the water of screen board 17 and 18 interceptings and deliver to the outside or send in the water tank 34.
Fig. 3 and Fig. 4 demonstrate the mechanism that comprises hydraulic cylinder actuator 30, are used to make second nozzle 15 of damping device 3 vertically to move with respect to warp thread 2.According to operating condition, water spray operation control 16 is adjusted the position of second nozzle 15 by controlling hydraulic cylinder actuator 30, and changes ejection angle (ejection scope) by control flow control valve 13, thereby adjusts the pressure that is applied on the water 7.
In general, the pressure that reduces water 7 reduce when Sizing machines 1 during with low cruise water from the ejection power of second nozzle, 15 ejections, thereby water sprays from second nozzle 15 with little ejection angle.The result is that the some parts of warp thread 2 is not wetting by the water of ejection from second nozzle 15 institute, so warp thread 2 can not be wetted equably.Therefore, water spray operation control 16 control hydraulic cylinder actuator 30 are removed second nozzle 15 from warp thread 2, and second nozzle 15 being set on the preferred heights apart from warp thread 2, thereby each second nozzle 15 can be sprayed water with the ejection scope of necessity.Therefore, water spray operation control 16 is according to the distance between the pressure adjustment warp thread 2 that applies feedwater and second nozzle 15, with the ejection scope that is maintained fixed.Like this, can adjust the ejection scope (area) of second nozzle 15 water spray, with wetting warp thread 2 equably.
With reference to figure 5, shown the damping device 3 in another embodiment of the present invention, width along warp thread 2 on compression roller 19 is provided with (or a plurality of) sparge pipe 31, a plurality of nozzle shapes hole 32 is formed in the sparge pipe 31 with predetermined space, and movable screen board 33 is arranged on below the blast tube 31.The water 7 that sparge pipe 31 is advanced in supply is discharged on the surface of compression roller 19 by nozzle shape hole 32, and the moistening water of going up the surface of compression roller 19 is transferred on the warp thread 2.Advance the flowing and regulate the position of screen board 33 of water of sparge pipe 31 by regulate supply with flow control valve 13, thereby can regulate the moisture percentage of wetted warp thread 2 with respect to sparge pipe 31 by flatly or vertically moving.
As mentioned above, damping device 3 uses hot water, so that wetting where necessary warp thread 2.Hot water permeates warp thread 2 easily, and the easier evaporation during warp thread 2 moves into quetsch 5 of the hot water of wetting warp thread 2, thereby warp thread 2 can be too not moistening.Above compression roller 19, be provided with tank and replace sparge pipe 31, and water (hot water) 7 can overflow described tank and can drop onto naturally on the compression roller 19.
Though in preferred embodiment, described the present invention, obviously, had many modification and improvement therein with particularity to a certain degree.Therefore, it should be noted that under situation about not departing from the scope of the present invention with spirit, the present invention can implement to be different from mode described in detail here.

Claims (8)

1. Sizing machines comprises:
Damping device is used for by water being sprayed on the warp with wetting warp thread;
Pressurizing unit is used for pushing wetted yarn;
Quetsch is used for making wetted and warp sizing that be squeezed.
2. Sizing machines as claimed in claim 1 is characterized in that, damping device is regulated water according to condition of work and is sprayed at water spray rate on the warp thread.
3. Sizing machines as claimed in claim 1 is characterized in that, damping device is sprayed at water on the warp thread by one or more nozzle ejection water.
4. Sizing machines as claimed in claim 3 is characterized in that damping device comprises a plurality of nozzle sets, and each nozzle sets has a plurality of nozzles that are provided with along the warp width direction, and nozzle sets is independently controlled.
5. Sizing machines as claimed in claim 4 is characterized in that, the set interval of the interval that the nozzle of each nozzle sets of damping device is provided with and the nozzle of other nozzle sets is different, and with different pressure water is offered nozzle sets respectively.
6. Sizing machines as claimed in claim 3 is characterized in that, described one or more nozzles can move towards warp thread, also can move away from warp thread.
7. Sizing machines as claimed in claim 3 is characterized in that, described damping device comprises the movable wetting adjusting parts that are arranged between nozzle and the warp thread.
8. Sizing machines as claimed in claim 1 is characterized in that, damping device with hot water spray on the warp of warp thread.
CNB02103253XA 2001-02-02 2002-02-01 Dresser Expired - Fee Related CN1180149C (en)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
JP2001026764A JP2002235272A (en) 2001-02-02 2001-02-02 Warp sizing machine
JP026764/2001 2001-02-02

Publications (2)

Publication Number Publication Date
CN1369591A CN1369591A (en) 2002-09-18
CN1180149C true CN1180149C (en) 2004-12-15

Family

ID=18891527

Family Applications (1)

Application Number Title Priority Date Filing Date
CNB02103253XA Expired - Fee Related CN1180149C (en) 2001-02-02 2002-02-01 Dresser

Country Status (3)

Country Link
US (1) US20020104204A1 (en)
JP (1) JP2002235272A (en)
CN (1) CN1180149C (en)

Families Citing this family (11)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US6814807B1 (en) 2001-09-19 2004-11-09 Georgia Tech Research Corp. Apparatus for single-end slashing
JP4634750B2 (en) * 2004-06-30 2011-02-16 株式会社岩本綿機 Stuffing blower
JP2007169860A (en) * 2005-12-26 2007-07-05 Toyota Industries Corp Moistening device in sizing machine
CN101165258B (en) * 2006-10-20 2010-10-13 丁宏利 Pre-humidifying starching method for yarn
CN103938379A (en) * 2013-01-23 2014-07-23 盐城华特纺织机械有限公司 Sizing machine yarn piece pre-soaking sizing spraying device
EP3299503B1 (en) * 2016-09-27 2021-09-08 Karl Mayer Rotal Srl Device and method for feeding a cloth web with a liquor
CN106757593B (en) * 2016-12-14 2018-11-02 盐城工学院 A method of having the sizing machine and manufacture sizing of broken end detection and filoplume detection function
CN108035090A (en) * 2018-01-16 2018-05-15 苏州圣元纺织机械有限公司 A kind of sizing machine tractor
CN110947574A (en) * 2018-09-26 2020-04-03 浙江久大纺织科技有限公司 Flocking yarn gluing equipment and gluing method
CN110947575A (en) * 2018-09-26 2020-04-03 浙江久大纺织科技有限公司 Gluing machine and gluing method for flocking yarns
RU196793U1 (en) * 2019-12-06 2020-03-16 федеральное государственное бюджетное образовательное учреждение высшего образования "Российский государственный университет им. А.Н. Косыгина (Технологии. Дизайн. Искусство)" Device for controlling the synchronization of speed conditions in complex zones of deformation (drawing) of fibrous materials

Family Cites Families (9)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
JPS5547900Y2 (en) * 1975-08-05 1980-11-10
JPS5939544B2 (en) * 1981-06-15 1984-09-25 伸光精機株式会社 Sizing machine glue penetration promotion and fluffing device
US4577476A (en) * 1984-07-31 1986-03-25 The United States Of America As Represented By The Secretary Of Agriculture Low wet pickup fabric finishing apparatus
KR910002287B1 (en) * 1988-06-20 1991-04-11 쯔다고마 고오교오 가부시끼가이샤 Size viscosity control method and controller for slahsers
JP2770060B2 (en) * 1989-12-08 1998-06-25 津田駒工業株式会社 Warp sizing machine
US5904773A (en) * 1995-08-11 1999-05-18 Atotech Usa, Inc. Fluid delivery apparatus
DE19722159A1 (en) * 1997-05-27 1998-12-03 Voith Sulzer Papiermasch Gmbh Method and device for the direct or indirect application of a liquid or pasty application medium to a running surface
DE19820432A1 (en) * 1998-05-07 1999-11-11 Voith Sulzer Papiertech Patent Method and device for applying an application medium to a running surface
DE19832163C2 (en) * 1998-07-17 2003-08-28 Sucker Mueller Hacoba Gmbh Device for sizing a family of threads

Also Published As

Publication number Publication date
JP2002235272A (en) 2002-08-23
CN1369591A (en) 2002-09-18
US20020104204A1 (en) 2002-08-08

Similar Documents

Publication Publication Date Title
CN1180149C (en) Dresser
US7981357B2 (en) Method of making a spunbond
EP0082465A1 (en) Apparatus for feeding foam to a coating device
DE102007031755A1 (en) Process and assembly to cool extruded hotmelt polymer fibers in cooling duct delivering warm ambient air
AT526171B1 (en) Process for the continuous production of cellulose fibers
US5016308A (en) Method and apparatus for patterning substrates using gas streams
EP1402100B1 (en) Method and device for treating a fiber mass
DE2945390A1 (en) FEEDING ARRANGEMENT AND METHOD FOR FEEDING YARN O.A. TEXTILE MATERIALS
CN211645649U (en) Large-tow carbon fiber sizing device
EP0769582A1 (en) Warp sizing device
DE69915629T2 (en) METHOD AND DEVICE FOR MOISTURIZING A RAIL
CN112921539B (en) Atomizing spraying sizing device and method for digital printing pretreatment of high-pile fabric
US5003677A (en) Method and apparatus for processing a textured yarn
EP1215022B1 (en) Process for manufacturing a composite of plastics and fibres of indefinite length
DE3039834A1 (en) METHOD FOR IMPREGNATING ROOF AND DEVICE FOR IMPLEMENTING THE METHOD
US3672947A (en) Method for texturizing yarns
KR20000068811A (en) Method for making a yarn and products comprising same
CN202107813U (en) Production system for superfine short fibers
EP0480550B1 (en) Process and apparatus for producing spunbonded nonwoven
US6485566B1 (en) Method and apparatus for prewetting yarn
US3730137A (en) Apparatus for coating and impregnating texturized yarn
DE102009000639A1 (en) Method for coating a strip, in particular a papermachine fabric
DE60035620T2 (en) METHOD OF MANUFACTURING A FIBER AND PRODUCTS THEREOF CONTAINING THIS FIBER
DE102006019788A1 (en) Curtain application unit for applying aqueous pigment suspension on moving paper-, cardboard- or fibrous material web comprises, delivery-slot nozzle, guidance element and impingement surface
DE1596574C2 (en) Process for the production of a uniform thread mat

Legal Events

Date Code Title Description
C06 Publication
PB01 Publication
C10 Entry into substantive examination
SE01 Entry into force of request for substantive examination
C14 Grant of patent or utility model
GR01 Patent grant
C17 Cessation of patent right
CF01 Termination of patent right due to non-payment of annual fee

Granted publication date: 20041215

Termination date: 20140201