CN102485988A - Texturing machine - Google Patents

Texturing machine Download PDF

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Publication number
CN102485988A
CN102485988A CN2010105755705A CN201010575570A CN102485988A CN 102485988 A CN102485988 A CN 102485988A CN 2010105755705 A CN2010105755705 A CN 2010105755705A CN 201010575570 A CN201010575570 A CN 201010575570A CN 102485988 A CN102485988 A CN 102485988A
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China
Prior art keywords
yarn
carriage
package
auxilliary
station
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Pending
Application number
CN2010105755705A
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Chinese (zh)
Inventor
姜华
彭克勤
王小兵
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Oerlikon China Technology Co Ltd
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Oerlikon China Technology Co Ltd
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Application filed by Oerlikon China Technology Co Ltd filed Critical Oerlikon China Technology Co Ltd
Priority to CN2010105755705A priority Critical patent/CN102485988A/en
Publication of CN102485988A publication Critical patent/CN102485988A/en
Pending legal-status Critical Current

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Abstract

The invention relates to a texturing machine, which is provided with at least one processing zone used for producing composite yarn. In order to realize the purpose, the processing zone is provided with a main yarn station, an auxiliary yarn station, a plurality of guidance units, a plurality of processing devices and a winding device, wherein the main yarn station is provided with a main yarn package for providing the main yarn; the auxiliary station is provided with an auxiliary package used for providing auxiliary yarn; the winding device is used for winding the composite yarn to form a winded package; and the guidance units and the processing units are combined in a rack to form a yarn proceeding path. In order to ensure that distance is as short as possible when the auxiliary yarn is supplied no matter which place a feeding position is on. According to the texturing machine, the auxiliary yarn station is provided with an elongate rigid bracket which is provided with a fixed end and a relative maintaining end, wherein the fixed end of the bracket can be detachably installed on the rack, and the relative maintaining end of the bracket is provided with a package bracket assembly used for the auxiliary package.

Description

Texturing Machines
Technical field
The present invention relates to according to claim 1 a kind of Texturing Machines as described in the preamble, it has at least one machining area.
Background technology
In the preparation process of textured yarn, be well known that through making up a plurality of yarns in yarn, to produce special effect.Therefore, in order to increase elasticity, for example, the extraordinary auxilliary yarn of elasticity is mixed with the main yarn that was out of shape.For this purpose, Texturing Machines also must have the auxilliary yarn station that at least one is used for auxilliary yarn package except having the common main yarn station that is used for main yarn package.
For example, by known this Texturing Machines among the WO2009/040850A2.This known Texturing Machines has machining area; This machining area has the auxilliary yarn station that is used for the main yarn station of main yarn package, a plurality of moving cell, a plurality of treating apparatus and is used to prepare auxilliary yarn, and said a plurality of treating apparatus are made up of heater, cooling device, anamorphic attachment for cinemascope and interlacing apparatus.In this situation, auxilliary yarn station is assigned to one of them guidance unit, so that main yarn and auxilliary yarn are jointly guided at this guidance unit place.Depend on prepared composite yarn in various situation, the diverse location place in machining area supplies with auxilliary yarn.Therefore, the first auxilliary yarn station is directly distributed to first guidance unit, so that before main yarn distortion, supplied with auxilliary yarn.In the yarn travel path, the second auxilliary yarn station is assigned to the 3rd guidance unit, for example, can offer the main yarn that had been out of shape with assisting yarn through the second auxilliary yarn station.The type that depends on technology and yarn, one of them auxilliary yarn station is adapted to an auxilliary yarn package and activated.Yet in order on Texturing Machines, to carry out PROCESS FOR TREATMENT very neatly, this needs very high expense with regard to equipment.
WO 2004/009886 discloses another kind of Texturing Machines, and wherein, auxilliary yarn station is directly distributed to first guidance unit in the machining area.Yet in this case, when auxilliary yarn was supplied to the main yarn that has been out of shape, it was necessary overcoming corresponding long distance through other thread-carrier.
Summary of the invention
Therefore which kind of technology no matter, the objective of the invention is to develop a kind of universal Texturing Machines, be, can on short as far as possible distance, will assist yarn and offer main yarn.
Another object of the present invention is in known Texturing Machines, to realize a kind of machining area, and in machining area, auxilliary yarn station has compact structure as far as possible.
Realize above-mentioned purpose according to the present invention; Wherein, auxilliary yarn station has the rigid carriers of elongation, and this carriage has stiff end and relative maintenance end; Wherein, The stiff end of carriage is detachably mounted on the frame, and wherein, the relative maintenance end of carriage carries the package carriage assembly that is used for auxilliary yarn package.
Useful improvement of the present invention is to be limited characteristic in each dependent claims and combination of features.
Special advantage of the present invention is: the auxilliary yarn station in the machining area of Texturing Machines is maintained on the frame, so that it can easily be changed.Therefore, depend on the kind of technology and yarn, auxilliary yarn station can be arranged on all places place in the machining area.This can both allow when yarn is assisted in supply, to obtain very short confession yarn path.For this purpose, the stiff end of carriage is directly installed on the pre-position on the frame.Therefore, the elongated structure of carriage allows to realize that the package carriage assembly from auxilliary yarn package has enough intervals, and this package carriage assembly is maintained on the relative maintenance end of carriage.
, auxilliary yarn package kept certain tensile stress when extracting out in order to work as auxilliary yarn; The following improvement of preferred embodiment of the present invention: the package carriage assembly has movable revoliving arm and rotatable friction roller; When auxilliary yarn was extracted out, revoliving arm and friction roller and auxilliary yarn package interacted.
Therefore, an end of revoliving arm is connected on the maintenance end of carriage by the revolution trunnion, and the opposed end place of revoliving arm has the rotatable receiver that is used to receive auxilliary yarn package.By this revoliving arm, auxilliary yarn package can be maintained on the circumference of friction roller, and this friction roller is installed in rotation on the maintenance end of carriage.
In order to ensure extracting auxilliary yarn continuously out, friction roller preferably is connected to motor and is driven by predetermined peripheral speed.
In order to use common supply line at the inner cabling of frame, the following improvement of embodiment of the present invention is useful especially, and wherein, motor is maintained at the stiff end of carriage; And wherein, between the stiff end and maintenance end of carriage, have the belt drive unit that is formed on the carriage, by means of this belt drive unit, motor is connected to friction roller.Therefore, supply and control auxilliary yarn station with regard to available relatively shorter cable route.
In this case, the mode of saving the space especially is to be designed to make that motor and friction roller are maintained at a side of carriage to drive unit, and belt drive unit is formed on the opposite side of carriage.Guaranteed that also thread-carrier and driving element are separated by carriage so simultaneously.
In addition, can also isolate belt drive unit and external environment through outer cover.
In order to supply auxilliary yarn as far as possible continuously and to make the interruption after auxilliary yarn package uses up very of short duration; Improve below preferred employing is of the present invention; Wherein, the sensor bracket with yarn sensor is maintained on the carriage, and in the yarn travel path, is arranged on the downstream of package carriage assembly.Therefore, the extraction of auxilliary yarn can be monitored by yarn sensor continuously.
If being used as auxilliary yarn, mixes elastomeric yarn with main yarn; Then machine is preferably designed to and makes carriage directly be fixed on the part frame according to a modification of this invention, and this part frame extends and is used to make the treating apparatus of supplying with the yarn distortion and is arranged between the guidance unit in anamorphic attachment for cinemascope downstream.This allows directly to come from auxilliary yarn package, to extract out the auxilliary yarn of elasticity by second guidance unit in the machining area.
Realized a kind of compact especially layout of each device and unit, wherein, anamorphic attachment for cinemascope, auxilliary yarn station carriage, second guidance unit and being used to makes treating apparatus that two yarns merge be set at a rack unit of vertically locating by the mode of arranging up and down.Particularly, this also makes and can operate all relevant treatment unit and treating apparatus simply from maintenance channel.
Because this Texturing Machines has a plurality of machining areas usually, so according to improvement of the present invention, auxilliary yarn station can be preferably integrated, wherein, the carriage of the auxilliary yarn station of adjacent machining area remains on the same crossbeam of frame.Therefore, during each auxilliary yarn station machine in normal service that can be integrated into machining area spaces.
Description of drawings
Hereinafter, illustrate in greater detail the present invention with reference to accompanying drawing and by the exemplary embodiment of machine according to a modification of this invention, wherein:
Fig. 1 has schematically shown the cutaway view of the exemplary embodiment of machine according to a modification of this invention;
Fig. 2 and Fig. 3 have schematically shown the side view of the auxilliary yarn station of exemplary embodiment among Fig. 1;
Fig. 4 has schematically shown the front view of the auxilliary yarn station of exemplary embodiment among Fig. 1.
The specific embodiment
Fig. 1 shows first exemplary embodiment of machine according to a modification of this invention.The cutaway view of this exemplary embodiment has been represented the yarn travel path in the Texturing Machines machining area; Wherein, The extraction from main yarn package of main yarn quilt, guiding, distortion and tractive, and wherein, combine and be wound into composite yarn to main yarn after the distortion and auxilliary yarn to form the coiling package.For the necessary guidance unit of this purpose and treating apparatus are arranged in the multi-piece type frame 7, to form the yarn travel path that partly surrounds maintenance channel 19.This Texturing Machines has a plurality of machining areas on longitudinal direction (the figure paper plane is equivalent to transverse plane among Fig. 1), so that in each machining area, produce a composite yarn in all cases.Therefore, be arranged side by side machining area more than 200 usually.Because the structure of each machining area has identical form in this exemplary embodiment, so describe the guidance unit and the treating apparatus of one of them machining area hereinafter with reference to Fig. 1.
In order from main yarn package 2, to extract main yarn 11 out, be provided with main yarn station 1.Main yarn station 1 is formed in the bobbin cradle 6, on bobbin cradle 6, maintains one group of master's yarn station 1.Be arranged in the face of on the rack unit 7.1 of bobbin cradle 6 being first guidance unit 3.The treating apparatus (being called cooling device 5 here) that is used to heat the treating apparatus (being expressed as heater 4 here) of main yarn 11 and is used to cool off main yarn 11 is in the back of first guidance unit 3 on the yarn travel path.Heater 4 is arranged on the center frame 7.2 that strides across maintenance channel 19 with cooling device 5.At the remainder place of yarn travel path, followed by be the treating apparatus that is used to make main yarn 11 distortion, in this example, be expressed as anamorphic attachment for cinemascope 8.In this example, anamorphic attachment for cinemascope 8 is normally formed by being called the frictional disk unit, and wherein, yarn is directed in by three piles of formed gaps of dish.These three piles of dishes are stacked each other, and all drive through power transmission shaft separately.Anamorphic attachment for cinemascope 8 is arranged in the upper area of rack unit 7.3 of vertical arrangement.Anamorphic attachment for cinemascope 8 and heater 4 form so-called deformed region with cooling device 5, in this deformed region, make main yarn 11 distortion.
Main yarn 11 for tractive and extraction were out of shape is provided with second guidance unit 9 in the downstream of anamorphic attachment for cinemascope 8.Being in the part between the anamorphic attachment for cinemascope 8 and second guidance unit 9 of rack unit 7.3, frame 7 has the crossbeam 27 that is used for fixing auxilliary yarn station 20.For this reason, auxilliary yarn station 20 has the rigid carriers 23 of elongation, and this rigid carriers 23 has end of maintenance 24 and stiff end 25.Stiff end 25 is fixed on the crossbeam 27, and relative maintenance end 24 stretches out towards the direction of maintenance channel 19.The package carriage assembly 26 that is used to receive auxilliary yarn package 21 is arranged on the maintenance of carriage 23 and holds 24 places.
In order to further specify auxilliary yarn station 20, in addition referring to Fig. 2,3 and 4.Fig. 2 has shown the view of carriage one side 40.2, and Fig. 3 has shown the view of the opposition side 40.1 of carriage.Fig. 4 shows auxilliary yarn station 20 by front view.Not especially under the situation of arbitrary accompanying drawing, below explain to be applicable to all accompanying drawings.
Hold the package carriage assembly 26 at 24 places to have movable revoliving arm 29 in the maintenance of carriage 23, this movable revoliving arm 29 is installed into and can keeping revolution on the end 24 through revolution trunnion 30.Relative free end at revoliving arm 29 is provided with rotatable package receiver 31, on this rotatable package receiver 31, is keeping auxilliary yarn package 21.Revoliving arm 29 interacts with the friction roller 32 that is rotatably installed on the carriage 23.Be directed to the operating position place on friction roller 32 circumference in order to assist yarn package 21 by revoliving arm 29, on revoliving arm 29, be formed with handle 28.In operation, assisting yarn package 21 is maintained on the circumference of friction roller 32.In this example,, drive friction roller 32 by motor 33 in order from auxilliary yarn package 21, to extract auxilliary yarn 22 out.
Motor 33 is arranged on the stiff end 25 of carriage 23.Belt pulley 35.1 and 35.2 is assigned to motor 33 and friction roller 32 respectively on carriage opposition side 40.2, wherein, belt pulley 35.1 is connected on the motor 33, and belt pulley 35.2 is connected on the friction roller 32.Belt pulley 35.1 and 35.2 has formed belt drive unit 34, and this belt drive unit 34 is formed on the bracket side 40.2 that keeps between end 24 and the stiff end 25.For the protection of anti-external environment influence is provided, protect belt drive unit 34 through the outer cover 36 that only is shown in broken lines.
The stiff end 25 of carriage 23 is fixed on the crossbeam 27 of rack unit 7.3 (not shown here).Here, as an example, removably connecting between stiff end 25 and the crossbeam 27 is depicted as screw and connects.As shown in Figure 4, a plurality of auxilliary yarn stations are remained on the crossbeam 27 in such a way.During the auxilliary yarn station 20 of adjacent machining area can space by the machine in normal service that this mode is integrated into the machining area of Texturing Machines.
In the central area of carriage 23 and below package carriage assembly 26, be provided with yarn sensor 37, this yarn sensor 37 is maintained on the carriage 23 by sensor bracket 38.Yarn sensor 37 is arranged so that when auxilliary yarn 22 is drawn out of that with respect to package carriage assembly 26 auxilliary yarn 22 is directed passing yarn sensor 37.Yarn sensor 37 is connected on the control device of distributing to machining area by holding wire (not shown here).
As shown in Figure 1, directly extract auxilliary yarn 22 out through second guidance unit 9 from auxilliary yarn station 20.Therefore, both are transmitted the main yarn that was out of shape 11 and auxilliary yarn 22 together and pass second guidance unit 9.
In rack unit 7.3, be used for being set directly at second guidance unit, 9 downstreams to the treating apparatus that two yarns 11 and 22 merge to together.Be used for being shown as interlacing apparatus 15 to the treating apparatus that yarn merges to together here.In interlacing apparatus 15, the fibre single thread of main yarn 11 is mixed, with the fibre single thread of auxilliary yarn 22 so that obtain composite yarn 39.In this example, elastomeric yarn preferably is used as auxilliary yarn 22, so that improve the elasticity of composite yarn 39.
In the exemplary embodiment shown in Fig. 1, composite yarn 39 is directed into the treating apparatus that is used to relax via the setting guidance unit 16 that is used for post processing.The treating apparatus that is used for relaxing is represented as setting heater 13 in this example.
After the post processing of composite yarn 39, composite yarn 39 is directed in the coiler device 10.1 via the 3rd guidance unit 14.In coiler device 10.1, composite yarn 39 is wound into coiling package 12.For this purpose, coiler device 10.1 has movable bobbin cradle 17 and driven roller 18.Driven roller 18 is arranged on traversing gear (no longer illustrating in greater detail) upstream side here in the yarn travel path; Before being put into yarn in the coiling package; This traversing gear reciprocally guides yarn in the travel range of traversing, so that in coiler device 10.1, wind cross winding package.In this example, coiling package 12 contacts on the circumference that is bearing in driven roller 18 and with constant peripheral speed and is driven, so that reel this composite yarn 39.
Because coiler device 10.1 than the guidance unit that is arranged on the coiler device upstream side 3,9 and 16 and treating apparatus 8 and 15 in machining area, need bigger width, so the coiler device 10.2 and 10.3 of adjacent machining area is provided with up and down by layer mode.In this exemplary embodiment, coiler device 10.1,10.2 and 10.3 is kept by self ground in rack unit 7.3, and be arranged on coiler device 10.1 to 10.3 upstream side guidance unit 3,9 with 16 and treating apparatus by maintenance abreast each other.
In exemplary embodiment shown in Figure 1, some guidance units are the form of winding guidance unit, and some guidance units are the form of clamping guidance unit.Particularly, the guidance unit 3 and 9 that is used to be out of shape with tractive forms by twining guidance unit in this exemplary embodiment.Therefore, in various situation, first guidance unit 3 and second guidance unit 9 have branch roll dies and active draw-off godet, and main yarn 11 is repeatedly twined the ground guiding on them.
On the contrary; The 3rd guidance unit 14 forms the clamping guidance unit with power transmission shaft and pressure roll in this exemplary embodiment; Pressure roll is maintained on the circumference of power transmission shaft by clamping limb, so that composite yarn 39 is guided by in the folder crack between power transmission shaft and pressure roll in this example.
Yet to point out clearly that here the design of the guidance unit in this Texturing Machines and structure are to not influence of the present invention.Therefore, shown guidance unit both can form the winding guidance unit also can form the clamping guidance unit, perhaps can form the combination of twining guidance unit and clamping guidance unit.
The exemplary embodiment of the Texturing Machines shown in Fig. 1 only shows the structure of the general technology that is used to produce composite yarn.In principle, composite yarn 39 even can after two yarns 11 and 22 are incorporated in together, directly just be wound into coiling package 12 without any post processing.In this case, composite yarn 39 does not pass setting guidance unit 16 and setting heater 13.Composite yarn is directly extracted out from interlacing apparatus 15 by the 3rd guidance unit 16, and is provided for coiler device 10.1.
Equally, auxilliary yarn station 20 in rack unit 7.3 shown in the location be as an example.In principle, auxilliary yarn station 20 can be set on the coiling frame parts 7.1.Depend on the place that on the yarn travel path of main yarn 11, requires to supply with auxilliary yarn 22, carriage 23 can be connected on corresponding rack unit 7.1 or 7.2.Like this, can in Texturing Machines, realize the very short confession yarn path of auxilliary yarn 22.
Reference numerals list
1 main yarn station
2 main yarn packages
3 first guidance units
4 heaters
5 cooling devices
6 bobbin cradles
7 frames
7.1,7.2,7.3 rack units
8 anamorphic attachment for cinemascopes
9 second guidance units
10.1,10.2,10.3 coiler devices
11 main yarns
12 coiling packages
13 setting heaters
14 the 3rd guidance units
15 interlacing apparatus
16 setting guidance units
17 bobbin cradles
18 driven rollers
19 maintenance channels
20 auxilliary yarn stations
21 auxilliary yarn packages
22 auxilliary yarns
23 carriages
24 keep end
25 stiff ends
26 package carriage assemblies
27 crossbeams
28 handles
29 revoliving arms
30 revolution trunnions
31 package receivers
32 friction rollers
33 motor
34 belt drive units
35.1,35.2 belt pulleys
36 outer covers
37 yarn sensors
38 sensor brackets
39 composite yarns
40.1,40.2 bracket side

Claims (11)

1. Texturing Machines, it has at least one machining area that is used to produce composite yarn (39), and wherein, this machining area has: main yarn station (1), this main yarn station (1) has the main yarn package (2) that is used to provide main yarn (11); Auxilliary yarn station (20), this auxilliary yarn station (20) has the auxilliary yarn package (21) that is used to provide auxilliary yarn (22); A plurality of guidance units (3,9,14); A plurality of treating apparatus (4,5,8,15); With the composite yarn (39) that is used to reel forming the coiler device (10.1) of coiling package (12), and wherein, guidance unit (3,9,14) and treating apparatus (4,5,8,15) are set in the frame (7) to be combined to form the yarn travel path, it is characterized in that:
Auxilliary yarn station (20) has the rigid carriers (23) of elongation; This rigid carriers (23) has stiff end (25) and has relative maintenance end (24); Wherein, The stiff end (25) of this carriage (23) is removably mounted on the frame (7), and wherein, the relative maintenance end (24) of this carriage (23) carries the package carriage assembly (26) that is used for auxilliary yarn package (21).
2. Texturing Machines according to claim 1; It is characterized in that; Package carriage assembly (26) has movable revoliving arm (29) and rotatable friction roller (32), and when this auxilliary yarn (22) when being drawn out of, this revoliving arm (29) and friction roller (32) interact with auxilliary yarn package (21).
3. Texturing Machines according to claim 2; It is characterized in that; An end of revoliving arm (29) is connected on the maintenance end (24) of carriage (23) by revolution trunnion (30), and the opposed end of revoliving arm (29) has the receiver (31) that is used to receive auxilliary yarn package (21); And friction roller (32) is rotatably installed on the maintenance end (24) of carriage (23), and is bearing in during operation on the circumference of auxilliary yarn package (21).
4. according to claim 2 or 3 described Texturing Machiness, it is characterized in that friction roller (32) is coupled to motor (33).
5. Texturing Machines according to claim 4 is characterized in that, motor (33) is maintained at the stiff end (25) of carriage (23) and locates; And between the stiff end (25) and maintenance end (24) of carriage (23), on carriage (23), be formed with belt drive unit (34), motor (33) is connected to friction roller (32) by means of this belt drive unit (34).
6. Texturing Machines according to claim 5 is characterized in that, motor (33) and friction roller (32) are maintained at a bracket side (40.1), and belt drive unit (34) is maintained at relative bracket side (40.2).
7. Texturing Machines according to claim 6 is characterized in that, isolates belt drive unit (34) and external environment with outer cover (36).
8. according to described Texturing Machines in the aforementioned claim, it is characterized in that the sensor bracket (38) with yarn sensor (39) is maintained on the carriage (23), and on the travel path of yarn, be set at the downstream of package carriage assembly (26).
9. according to described Texturing Machines in the claim 1 to 8; It is characterized in that carriage (23) is fixed in a part of frame (7) that is used to extension between the guidance unit (9) that makes the treating apparatus (8) (anamorphic attachment for cinemascope) of main yarn (11) distortion and be arranged on anamorphic attachment for cinemascope (8) downstream.
10. Texturing Machines according to claim 9; It is characterized in that anamorphic attachment for cinemascope (8), the treating apparatus (15) of assisting carriage (23), the guidance unit (9) of yarn station and being used to make two yarns (11,22) to merge all are arranged on the rack unit (7.3) of same vertical location by the mode of arranging up and down.
11., it is characterized in that the carriage (23) of the auxilliary yarn station (20) of each adjacent machining area all is maintained on the same crossbeam (27) of frame (7.3) according to described Texturing Machines in the claim 1 to 10.
CN2010105755705A 2010-12-02 2010-12-02 Texturing machine Pending CN102485988A (en)

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Application Number Priority Date Filing Date Title
CN2010105755705A CN102485988A (en) 2010-12-02 2010-12-02 Texturing machine

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Application Number Priority Date Filing Date Title
CN2010105755705A CN102485988A (en) 2010-12-02 2010-12-02 Texturing machine

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Publication Number Publication Date
CN102485988A true CN102485988A (en) 2012-06-06

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Cited By (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103668614A (en) * 2012-09-17 2014-03-26 欧瑞康纺织有限及两合公司 Textile machine
CN105143531A (en) * 2013-04-18 2015-12-09 欧瑞康纺织有限及两合公司 Texturing machine
CN105556011A (en) * 2013-09-20 2016-05-04 欧瑞康纺织有限及两合公司 Texturing machine
CN105752753A (en) * 2014-12-18 2016-07-13 欧瑞康纺织有限及两合公司 Textile machine

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CN1061815A (en) * 1990-11-27 1992-06-10 富地正招 Springy compound filaments and manufacture method thereof
WO2004009886A1 (en) * 2002-07-18 2004-01-29 Saurer Gmbh & Co. Kg False twist texturing machine
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CN2898066Y (en) * 2006-05-16 2007-05-09 曹利东 False twister with air-coating function
CN101087908A (en) * 2004-12-22 2007-12-12 苏拉有限及两合公司 Method and device for melt-spinning and texturing a plurality of multifilament threads
CN201068497Y (en) * 2007-06-12 2008-06-04 曹利东 False twisting machine possessing air wrapping effect
CN101215741A (en) * 2008-01-09 2008-07-09 江苏宏源纺机股份有限公司 Spandex feeding device
CN201151773Y (en) * 2008-01-09 2008-11-19 江苏宏源纺机股份有限公司 Spandex feeding device
WO2009040850A2 (en) * 2007-09-10 2009-04-02 Giudici S.P.A. Texturing- interlacing machine with double oven

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Publication number Priority date Publication date Assignee Title
CN1061815A (en) * 1990-11-27 1992-06-10 富地正招 Springy compound filaments and manufacture method thereof
CN1514891A (en) * 2001-06-28 2004-07-21 苏拉有限及两合公司 False twist texturing machine
WO2004009886A1 (en) * 2002-07-18 2004-01-29 Saurer Gmbh & Co. Kg False twist texturing machine
CN101087908A (en) * 2004-12-22 2007-12-12 苏拉有限及两合公司 Method and device for melt-spinning and texturing a plurality of multifilament threads
CN2898066Y (en) * 2006-05-16 2007-05-09 曹利东 False twister with air-coating function
CN201068497Y (en) * 2007-06-12 2008-06-04 曹利东 False twisting machine possessing air wrapping effect
WO2009040850A2 (en) * 2007-09-10 2009-04-02 Giudici S.P.A. Texturing- interlacing machine with double oven
CN101802280A (en) * 2007-09-10 2010-08-11 朱迪奇股份公司 Texturing-interlacing machine with double oven
CN101215741A (en) * 2008-01-09 2008-07-09 江苏宏源纺机股份有限公司 Spandex feeding device
CN201151773Y (en) * 2008-01-09 2008-11-19 江苏宏源纺机股份有限公司 Spandex feeding device

Cited By (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CN103668614A (en) * 2012-09-17 2014-03-26 欧瑞康纺织有限及两合公司 Textile machine
CN103668614B (en) * 2012-09-17 2017-04-12 欧瑞康纺织有限及两合公司 Textile machine
CN105143531A (en) * 2013-04-18 2015-12-09 欧瑞康纺织有限及两合公司 Texturing machine
CN105143531B (en) * 2013-04-18 2017-08-11 欧瑞康纺织有限及两合公司 Texturing machine
CN105556011A (en) * 2013-09-20 2016-05-04 欧瑞康纺织有限及两合公司 Texturing machine
CN105556011B (en) * 2013-09-20 2018-01-30 欧瑞康纺织有限及两合公司 Texturing machine
CN105752753A (en) * 2014-12-18 2016-07-13 欧瑞康纺织有限及两合公司 Textile machine
CN105752753B (en) * 2014-12-18 2019-05-21 欧瑞康纺织有限及两合公司 Weaving loom

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Application publication date: 20120606