EP0916755B1 - Modulare spinn- und zwirnmaschine mit an den spindeln individuellen fadenführern mit wickelsystem für konische oder doppelkonische spulen - Google Patents

Modulare spinn- und zwirnmaschine mit an den spindeln individuellen fadenführern mit wickelsystem für konische oder doppelkonische spulen Download PDF

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Publication number
EP0916755B1
EP0916755B1 EP98905425A EP98905425A EP0916755B1 EP 0916755 B1 EP0916755 B1 EP 0916755B1 EP 98905425 A EP98905425 A EP 98905425A EP 98905425 A EP98905425 A EP 98905425A EP 0916755 B1 EP0916755 B1 EP 0916755B1
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EP
European Patent Office
Prior art keywords
spindles
thread
machine
spinning
conical
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Expired - Lifetime
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EP98905425A
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English (en)
French (fr)
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EP0916755A1 (de
Inventor
Jordi Galan I Llongueras
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Galan Int SL
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Galan Int SL
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Priority claimed from ES9700470A external-priority patent/ES2154093B1/es
Priority claimed from PCT/ES1997/000168 external-priority patent/WO1999001597A1/es
Application filed by Galan Int SL filed Critical Galan Int SL
Publication of EP0916755A1 publication Critical patent/EP0916755A1/de
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    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01HSPINNING OR TWISTING
    • D01H1/00Spinning or twisting machines in which the product is wound-up continuously
    • D01H1/14Details
    • D01H1/36Package-shaping arrangements, e.g. building motions, e.g. control for the traversing stroke of ring rails; Stopping ring rails in a predetermined position
    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01HSPINNING OR TWISTING
    • D01H1/00Spinning or twisting machines in which the product is wound-up continuously
    • D01H1/14Details
    • D01H1/20Driving or stopping arrangements
    • D01H1/24Driving or stopping arrangements for twisting or spinning arrangements, e.g. spindles
    • D01H1/244Driving or stopping arrangements for twisting or spinning arrangements, e.g. spindles each spindle driven by an electric motor
    • DTEXTILES; PAPER
    • D01NATURAL OR MAN-MADE THREADS OR FIBRES; SPINNING
    • D01HSPINNING OR TWISTING
    • D01H1/00Spinning or twisting machines in which the product is wound-up continuously
    • D01H1/14Details
    • D01H1/20Driving or stopping arrangements
    • D01H1/32Driving or stopping arrangements for complete machines

Definitions

  • the object of present invention consists of a modular machine for spinning and doubling with individual transmission elements for spindles with continuous and individual conical or double conical folding system by means of conventional asynchronous alternative current motors controlled by frequency converters and programmed by a control or microprocessor unit.
  • the textile industry uses two types of the so called continuous spinning and doubling machines whic, among other elements, are provided basically with some elements, called spindles, in a number ranging from fiive units up to several hundreds in each machine. Said spindles are turning continuosly at the same speed, driven by only one electric motor by means of gear or pulleys assembly. Also, there is the possibility of having each spindle driven by an individual electric motor, with all motors controlled by a frequency variation unit so that all spindles turn at a same speed.
  • US-A-4562388 discloses a speed control system with a spindle motor, in order to achieve a bobbin filling cycle in which the initial bobbin filling rate is n1 and the final rate is n2.
  • US-A-4562388 requires the same thread torsion degree maintenance on each spindle.
  • the present invention as recited by claim 1, relates to a machine having a spindle with a corresponding individual driving system, and a continuous individual conical, double conical folding system.
  • the machine has a continuous, individual, conical and double conical folding system that is able to process threads of different widths and torsion degree.
  • the folding system of the present invention differs significantly from the traditional folding system set forth in US-A-4562388.
  • the modular machine for spinning and doubling with elements for spindles individual transmission with a continuous and individual conical or double conical folding system is made of a frame composed by two metal cabinets, one at the left and the other at the right hand side, with vertical cubic shape, made preferably in steel plate, each cabinet provided in its exterior side with a pivoting access door.
  • the central portion of said frame, connecting the two cabinets fastened by bolts, is provided with cross bars made preferably of welded steel tubes whic will act as a support for the different moving elements that will be described hereinafter.
  • the central portion of said frame contains within the space between both cabinets and held by the crossing tubes, from one to thirty spinning or folding spindles, each having its own driving means.
  • the spindles are turning vertical axis on which the different types of spinning or folding reels will be mounted.
  • Said spindles are held by a twin roller system of the ball type bearing.
  • the upper bearing unit is packed in connection with a synthetic rubber ring to absorb the radial vibrations and the lower bearing unit is mounted on a support of the swinging type which is allowed to be displaced radially.
  • the spindle bottom part has fastened a pulley arranged to receive a transmission flat belt, for connection to the output of an induction electrical motor mounted on a pair of crossing tubes placed in the back side of frame.
  • a ring rail having a vertical up and down displacement, on which a sliding piece rotates to create the twisting of the thread, is mounted coaxially on the spindle head.
  • a thread guide having a similar movement but with a different speed, said thread guide having the purpose of guiding the different threads towards the sliding piece coming from the hake box or feeding assembly.
  • the feeding assembly for each spindle comprises a pair of feeding rollers, an inlet thread roller and a pressure cylinder.
  • the feeding rollers made preferably of chromed carbon steel, are driven by means of two horizontal shafts, which are also driven, through a flat belt transmission system by an alternate current motor controlled by a conventional frequency variator controlled by a potentiometer, the whole assembly being located in the right hand side cabinet.
  • Said shafts are made of carbon steel and go through from one cabinet to the other supported by said cabinets, and a shaft is located vertically above the other, connected to each other by means of a chain that makes them turn in the same direction.
  • the pressure roller is located between the two feeding rollers and exerts a pressure on the thread in order to obtain a better draw, said pressure roller being held by means of ball bearings, the pressure arm is also fastened by means of bearings to another vertical shaft placed on top of those supported by the feeding rollers. Said pressure arm is allowed to move radially when actuated by a neumatic piston as to exert more or less pressure on threads moving through the pressure roller and feeding rollers.
  • the neumatic pistons acting on the pressure rollers of the feeding system in each spindle are driven by the pressured air flow coming from the air pressure piping system, with pressure regulated by a pressure control valve located in the left hand side cabinet.
  • spindles are the main elements that are in continuous movement, and are able to turn at different speeds;
  • the ring rail has a vertical up and down movement, with the sliding pieces and thread guides turning around and having, as in the case of the ring rail, a vertical up and down movement, the feeding rollers, the pressure rollers and the inlet thread rollers.
  • Each spindle turns around its own shaft driven by an alternate current induction motor by means of a belt preferably of the flat type with interior teeth.
  • Each motor is individually controlled by a frequency variator, preferably of the conventional, vectorial or other type, which is programmed independently for each spindle by means of a potentiometer located in each spindel control panel, so that each spindle can turn at a different speed and have a opposite turning direction.
  • the ring rail can move vertically along two vertical guides, one in each side cabinet.
  • Said guides are of cylindrical shape and are made of carbon steel and fastened in the bottom to each cabinet forming the machine frame.
  • Said ring rail moves vertically up and down with a stroke equivalent to the spindle reel height, being possible to regulate the length of said stroke.
  • the thread guides move above the ring rail, following a similar motion pattern, along said guides.
  • the ring rail as well as the thread guides are driven by an alternate current electric motor provided with a speed variator of the manual regulation disc type.
  • Said variator transmits the turning movement to a speed reduction unit by means of said flat teethed belt, the output of said reduction unit being an horizontal shaft driving two drums with a different diameter on which steel cables are wound which hold the thread guides and the ring rail.
  • the vertical up and down displacement is created as a consequence of the reverse in the motor turning direction by means of the control provided by limit switches mounted on said drums.
  • the thread guides and the ring rail are driven by same means and the same motor with reduction unit, so all have the same frequency of movement.
  • the feeding rollers are mounted on two horizontal cross shafts vertically one on top of the other and are driven through a flat belt transmission system by an alternate current motor controlled by a conventional frequency variator controlled by a potentiometer.
  • the turning movement is transmitted, between both of them, by means of a driving chain so that both shafts turn in the same direction.
  • the driving motor as well as the frequency variator and the control potentiometer are located in the right hand side cabinet. Finally, the swing arm of each pressure roller is actuated by means of a neumatic cylinder.
  • a conventional reel comprising a cylindrical central body with its bottom provided with disc having a diameter from two to five times de central body diameter to support the processed thread, will be inserted in spindles of spinning and doubling machine, said reel havingin its upper part another disc with a diameter slightly larger than that of central body.
  • the processed thread is inserted in the central body bottom part of said reel, driving the spinning and doubling machine so the reel turns driven by the spindle.
  • the process to obtain a bobbin is totally different from the conventional process.
  • the thread or welt is folded in accordance with a bobbin simple pattern with most of its lenght being of cylindrical shape and truncoconical upper portion
  • the folding pattern corresponds to a bobbin made up of multiple concentric cylinders and truncocones, forming assemblies called "subcycles", each of said subcycles comprising a smaller given number of thread or welt coats, with respect to the conventional system, and each subcycle having a height slightly lower than that of previous subcycle.
  • the assembly comprising a given number of subcycles is called "repeated great cycle".
  • the modular machine for spinning and doubling with individual transmission elements for spindles is provided with a control unit comprising a microprocessor which enables said machine to program, on a display, the length required to be stored in each reel, the reel length, the height (h) of the cone or truncocone, and by means of a display restricted to the user, the number of subcycles (m) and number of thread or welt coats in each subcycle (n) in accordance with the features of the processed products.
  • said microprocessor provides said machine with capability to program different bobbin shapes: single cone, double cone or cylinder, all these patterns obtained under same process of sub cycles and coats as previously described.
  • the spinning machine With the improvement introduced with the new control unit, the spinning machine, doubling machine, textile spinning, spool roving frame, spool doubling macines, etc., having the capacity to apply the above described programs, individually to each spindle of the machine.
  • the modular spinning and doubling machine with individual transmission elements for spindles with continuous, individual, conical or double conical folding system is made of a frame composed by two metal cabinets, one at the left (2) and the other at the right (1) hand side, with vertical cubic shape, made preferably in steel plate, each cabinet provided in its exterior side with a pivoting access door.
  • the central portion of said frame, connecting the two cabinets fastened by bolts, is provided with cross bars made preferably of welded steel tubes whic will act as a support for the different moving elements that will be described hereinafter.
  • the central portion of said frame contains within the space between both cabinets (1, 2)and held by the cross tubes (4) from one to thirty spinning or folding spindles (5), each having its own driving means.
  • the spindles (5) are turning vertical axis on which the different types of spinning or folding reels will be mounted. Said spindles (5) are held by a twin roller system of the ball type bearing.
  • the upper bearing unit (8) is packed in connection with a synthetic rubber ring (9) to absorb the radial vibrations and the lower bearing unit (10) is mounted on a support (11) of the swinging type which is allowed to be displaced radially.
  • the spindle bottom part is fastened to a pulley (12) arranged to receive a transmission flat belt(13), for connection to the output of an induction electrical motor (14) mounted on a pair of crossing tubes placed in the back side of frame.
  • a threads guide (17) having a similar movement but with a different speed, said thread guide having the purpose of guiding the different threads towards the sliding piece (15) coming from the hake box or feeding assembly.
  • the feeding assembly for each spindle comprises a pair of feeding rollers (19), an inlet thread roller (18) and a pressure cylinder (21).
  • the feeding rollers (19), are made preferably of chromed carbon steel, are driven by means of two horizontal shafts (22), which are also driven, through a flat belt (23) transmission system by an alternate current motor (24) controlled by a conventional frequency variator controlled by the control unit or microprocessor (29).
  • Said shafts are made of carbon steel and go through from one cabinet to the other supported by said cabinets, and a shaft is located vertically above the other, connected to each other by means of a chain (25) that makes them turn in the same direction.
  • the pressure roller (21) is located between the two feeding rollers (19) and exerts a pressure on the threads (26) in order to obtain a better draw, said pressure roller being held by means of ball bearings, the pressure arm (20) is also fastened by means of bearings to another horizontal shaft (27) placed on top of those supported by the feeding rollers (19). Said pressure arm (20) is allowed to move radially when actuated by a neumatic piston (28) as to exert more or less pressure on threads moving through the pressure roller (21) and feeding rollers (19).
  • the neumatic pistons (26) acting on the pressure rollers (21) of the feeding system in each spindle are driven by the pressured air flow coming from the air pressure piping system, with pressure regulated by a pressure control valve located in the left hand side cabinet.
  • spindles (5) are the main elements that are in continuous movement, and are able to turn at different speeds;
  • the ring rail has a vertical up and down movement, with the sliding pieces (16) and thread guides (17) turning around and having, as in the case of the ring rail (15), a vertical up and down movement, the feeding rollers (19), the pressure rollers (21) and the inlet thread rollers (18).
  • Each spindle (5) turns around its own shaft driven by an alternate current induction motor (14) by means of a belt (13, preferably of the flat type with interior teeth.
  • Each motor (14) is individually controlled by a frequency variator, preferably of the conventional, vectorial or other type, which is programmed independently for each spindle (5) by means of the control unit or microprocessor (29) located in each spindel control panel, so that each spindle can turn at a different speed and have a opposite turning direction.
  • the ring rail (15) can displace vertically along two vertical guides (30), one in each side cabinet.
  • Said guides (30) are of cylindrical shape and are made of carbon steel and fastened in the bottom to each cabinet (1, 2) forming the machine frame.
  • Said ring rail (15) moves vertically up and down with a stroke equivalent to the spindle reel height, being possible to regulate the length of said stroke.
  • the thread guides (17) move above the ring rail, following a similar motion pattern, along said guides.
  • the ring rail (15) as well as the thread guides (17) are driven by an alternate current electric motor (31) provided with a speed variator (32) of the manual regulation disc type.
  • Said variator (32) transmits the turning movement to a speed reduction unit (34) by means of said flat teethed belt (35), the output of said reduction unit being an horizontal shaft (36) driving two drums (37) with different diameter on which steel cables (38) are wound which hold the thread guides (17) and the ring rail (15).
  • the vertical up and down displacement is created as a consequence of the reverse in the motor (31) turning direction by means of the control provided by limit switches mounted on said drums.
  • the thread guides (17) and the ring rail (15) are driven by same means and the same motor with reduction unit, so all have the same frequency of movement.
  • the feeding rollers (19) are mounted on two horizontal cross shafts (27) vertically one on top of the other and are driven through a flat belt transmission system by an alternate current motor (24) controlled by a conventional frequency variator controlled by a control unit or a microprocessor (29).
  • the turning movement is transmitted, between both of them, by means of a driving chain (25) so that both shafts turn in the same direction.
  • a conventional reel (7) comprising a cylindrical central body (53) with its bottom provided with disc having a diameter from two to five times de central body diameter to support the processed thread, will be inserted in spindles (5) of spinning and doubling machine, said reel havingin its upper part another disc with a diameter slightly larger than that of central body (53).
  • the processed thread is inserted in the central body (53) bottom part of said reel (7), driving the spinning and doubling machine so the reel (7) turns driven by the spindle.
  • the process to obtain a bobbin is totally different from the conventional process.
  • the thread or welt is folded in accordance with a bobbin simple pattern with most of its lenght being of cylindrival shape and a trunco-conical upper portion
  • the folding pattern corresponds to a bobbin made up of multiple concentric cylinders and trunco-cones, forming assemblies called "subcycles" (45), each of said subcycles (45) comprising a smaller given number of thread or welt coats (44), with respect to the conventional system, and each subcycle (45) having a height slightly lower than that of previous subcycle.
  • the assembly comprising a given number of subcycles is called "repeated great cycle" (46).
  • the modular machine for spinning and doubling with individual transmission elements for spindles is provided with a control unit (29) comprising a microprocessor which enables said machine to program, on a display, the length required to be stored on each reel (7), the reel length, the height (h) (49) of the cone or trunco-cone, and by means of a display restricted to the user, the number of subcycles (m) and the number of thread or welt coats in each subcycle (n) in accordance with the features of the processed products.
  • said microprocessor (29) provides said machine with capability to program different bobbin shapes: single cone, double cone or cylinder, all these patterns obtained under same process of subcycles and coats as previously described.
  • the spinning machine With the improvement introduced with the new control unit (29), the spinning machine, doubling machine, textile spinning, spool roving frame, spool doubling macines, etc., having the capacity to apply the above described programs, individually to each spindle of the machine.
  • a operation cycle is programmed for each spindle by means of the display (29) of the control unit or microprocessor by introducin the following data: twist degree, bobbin shape (simple cone, double cone or straight), length to be processed in each spindle, conical (49) and the reel height (50).
  • the different threads (26) are inserted to form the final thread or welt through the inlet rollers (18), then through the feeding rollers (19) and pressure roller (21), through the thread guides (17) and sliding piece (16) and wound on the reels (7).
  • the feeding rollers (18), the ring rail (15) and the thread guide (17) are started by means of the feeding system start switch (51). Further to that the motors driving the spindles are started in sequence by means of individual switches.
  • the twist index is given by the control unit or microprocessor (29) to the frequency variator in each motor based on turning speed of each spindle provided by the encoder or motor pulse generator and by the turning speed of the feeding rollers , also provided by the pulse generator or encoder of the frequency variator of feeding rollers driving motor.
  • the operation cycle is started winding or folding the thread or welt on the reel central body (53) with upwards movement and when reaching the maximum reel height by the action of the ring rail sliding piece, the thread or welt starts folding next coat in downwards direction, in this case of smaller height since it is conditioned by the programmed dimension of high cone (48), and so on to configurate a complete subcycle (45) with n coats (44) which will start the configuration of a new subcycle, with the same number of coats than the previous one, which in accordance with the low cone (47) dimension, it will be of smaller height than previous one, and so on, to the point in which, as a consequence of the programmed length to be folded on each reel, said reel will stop whereas the remaining spindles will continue the process without being required to stop.
  • the individual starting switch (52) is turned on to initiate the reel operation, then starting a new folding process.

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

Claims (5)

  1. Modulare Spinn- und Doubliermaschine mit einzelnen Übertragungselementen für Spindeln (5) und einem kontinuierlichen, einzelnen, Kegel- und Doppelkegel-Doubliersystem, mit:
    den Spindeln (5), wobei die Spindeln (5) einzelne Antriebssysteme (6) aufweisen;
    wobei die Antriebssysteme (6) eine Rolle (12) und einen flachen, durch einen Wechselstrom-Asynchron-Elektromotor (14) angetriebenen Antriebsriemen (13) aufweisen, wobei der Wechselstrom-Asynchron-Elektromotor (14) von einem durch eine Steuereinheit (29) kontrollierten Frequenzvariator angesteuert wird;
    dadurch gekennzeichnet, dass die Antriebssysteme (6) die Maschine zur Verarbeitung des gewünschten Verzwirnungsgrades an jeder einzelnen Spindel (5) derart konfigurieren, dass Fäden von unterschiedlichem Verzwirnungsgrad gleichzeitig an jeder der Spindeln (5) verarbeitet werden können; und
    dass das Doubliersystem die Steuereinheit (29) beinhaltet, wobei das Doubliersystem die Maschine so konfiguriert, dass in der Maschine an jeder einzelnen Spindel (5) dieselben End-Spulenformate auf kontinuierliche Weise und ohne den Doublierzyklus zu unterbrechen erhalten werden, selbst bei Verarbeitung von Fäden von unterschiedlicher Art und Verdrehungsgrad und bei unterschiedlichen Spulenfüllzeiten an jeder der Spindeln (5).
  2. Modulare Spinn- und Doubliermaschine nach Anspruch 1, dadurch gekennzeichnet, daß die Steuereinheit (29) die Maschine so konfiguriert, dass sie bei unterschiedlichen Parametern entsprechend des Verdrehungsgrades jedes Fadens betrieben werden kann, wobei jeder Faden an jeder der Spindeln (5) verarbeitet wird, wodurch das Doubliersystem Fäden von unterschiedlichem Verdrehungsgrad, Breite und Spinnrichtung in der Maschine gleichzeitig an jeder der Spindeln (5) verarbeitet, wobei jede der Spindeln unabhängig voneinander gestoppt wird, wenn die programmierte Fadenlänge eine entsprechende Spule gefüllt hat.
  3. Modulare Spinn- und Doubliermaschine nach Anspruch 1, dadurch gekennzeichnet, dass das Doubliersystem entsprechend der gewünschten Spulenhöhe, dem Kegelund Doppelkegel-Format und der Konischen (49) und programmierten Fadenlänge programmiert ist, um die entsprechenden Spulen zu füllen, dass die gefüllten Spulen dasselbe Endformat haben unabhängig davon, ob die Maschine unterschiedliche Fadenprodukte oder Fäden von unterschiedlichem Verdrehungsgrad, Breite und Spinnrichtung verarbeitet, dass das Füllen der Spulen nur unterbrochen wird, wenn die Spindel (5) mit der programmierten Fadenlänge gefüllt wurde, wonach der Faden ausgetauscht werden muß; und dass die Spulen ohne Einfluß der einzelnen Spulenfüllzyklen gefüllt werden, wenn das Füllen der restlichen Spulen beginnt.
  4. Modulare Spinn- und Doubliermaschine nach Anspruch 1, dadurch gekennzeichnet, dass die Variablen "m" (45), "n" (44), "Ca" (48), "Cb" (47) und "h" (49) entsprechend den Ausdrücken "Ca = h/m" und "Cb = h/(m*n) an die erforderlichen Werte gebunden sind, um eine Schwingoperation zu gewährleisten, um einen individuellen und unabhängigen Doublierzyklus des auf jede entsprechende Spule gefüllten Fadens zu erzielen.
  5. Modulare Spinn- und Doubliermaschine nach Anspruch 1, dadurch gekennzeichnet, dass die Spindeln (5) durch ein Doppel-Lagersystem der Art eines Kugellagers gestützt sind, wobei das obere Lager (8) mit einem synthetischen Gummiring (9) abgedichtet ist, welcher die erzeugten radialen Schwingungen absorbieren kann und das untere Lager (10) an einem Gelenklager (11) montiert ist, das radial verschoben werden kann, wobei der Abstand zwischen den Lagern zwischen ca. 150 und 350mm liegt.
EP98905425A 1997-03-04 1998-03-04 Modulare spinn- und zwirnmaschine mit an den spindeln individuellen fadenführern mit wickelsystem für konische oder doppelkonische spulen Expired - Lifetime EP0916755B1 (de)

Applications Claiming Priority (7)

Application Number Priority Date Filing Date Title
ES9700470A ES2154093B1 (es) 1997-03-04 1997-03-04 Maquina de hilar y de retorcer modular con elementos de transmision individual de husos mejorada.
ES9700470 1997-03-04
ES9700168 1997-07-03
PCT/ES1997/000168 WO1999001597A1 (es) 1997-07-03 1997-07-03 Maquina de hilar y de retorcer modular con elementos de transmision individual de husos mejorada
ES9800015 1998-01-08
ES9800015A ES2159995B1 (es) 1997-03-04 1998-01-08 C.a. a la p.i. 9700470 "maquina de hilar y de retorcer modular con elementos de transmision individual de husos mejorada" introduciendo la mejora denominada "sistema de plegado conico o doble conico continuo e individual".
PCT/ES1998/000054 WO1998039504A1 (es) 1997-03-04 1998-03-04 Maquina de hilar y de retorcer modular con elementos de transmision individual de husos con sistema de plegado conico o doble conico continuo e individual

Publications (2)

Publication Number Publication Date
EP0916755A1 EP0916755A1 (de) 1999-05-19
EP0916755B1 true EP0916755B1 (de) 2002-09-04

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EP98905425A Expired - Lifetime EP0916755B1 (de) 1997-03-04 1998-03-04 Modulare spinn- und zwirnmaschine mit an den spindeln individuellen fadenführern mit wickelsystem für konische oder doppelkonische spulen

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EP (1) EP0916755B1 (de)
AU (1) AU6101098A (de)
DE (1) DE69807626T2 (de)
DK (1) DK0916755T3 (de)
ES (1) ES2184234T3 (de)
PT (1) PT916755E (de)
WO (1) WO1998039504A1 (de)

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ES2187227B1 (es) 1999-12-27 2004-10-16 Galan Textile Machinery, S.L. Maquina de hilar retorcedera-reunidora de anillos, de modulos unitarios de produccion autonomos e independientes.
ES2600314B2 (es) * 2016-08-22 2018-02-27 Twistperfect, S.L. Máquina retorcedora de hilos

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Publication number Priority date Publication date Assignee Title
US2296421A (en) * 1940-05-01 1942-09-22 Foster Machine Co Winding apparatus
JPS54147237A (en) * 1978-05-09 1979-11-17 Teijin Ltd Spiral yarn body
IT1098143B (it) * 1978-08-24 1985-09-07 Snia Viscosa Procedimento e dispositivo per il "confezionamento" di filati avvolti attorno a supporti cilindrici ("cops") e relativi cops confezionati
DE3309789A1 (de) * 1983-03-18 1984-09-20 Zinser Textilmaschinen Gmbh, 7333 Ebersbach Spinnereimaschine zum aufwinden von faeden
FR2553103A1 (fr) * 1983-10-07 1985-04-12 Asa Sa Dispositif de commande de monte-et-baisse des porte-anneaux de machines textiles tels que metiers a retordre
JPS61201028A (ja) * 1985-02-27 1986-09-05 Toyoda Autom Loom Works Ltd 紡機における駆動装置
JPH07216664A (ja) * 1994-01-27 1995-08-15 Toyota Autom Loom Works Ltd 繊維機械の運転条件設定方法及び制御装置

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Publication number Publication date
AU6101098A (en) 1998-09-22
WO1998039504A1 (es) 1998-09-11
DE69807626D1 (de) 2002-10-10
ES2184234T3 (es) 2003-04-01
EP0916755A1 (de) 1999-05-19
DE69807626T2 (de) 2003-08-07
DK0916755T3 (da) 2002-12-16
PT916755E (pt) 2002-12-31

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