EP0536088B1 - Modulierte Fadenbremse für eine Schussfadenliefervorrichtung - Google Patents

Modulierte Fadenbremse für eine Schussfadenliefervorrichtung Download PDF

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Publication number
EP0536088B1
EP0536088B1 EP92830487A EP92830487A EP0536088B1 EP 0536088 B1 EP0536088 B1 EP 0536088B1 EP 92830487 A EP92830487 A EP 92830487A EP 92830487 A EP92830487 A EP 92830487A EP 0536088 B1 EP0536088 B1 EP 0536088B1
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EP
European Patent Office
Prior art keywords
thread
braking body
truncated
drum
cone
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Expired - Lifetime
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EP92830487A
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English (en)
French (fr)
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EP0536088A1 (de
Inventor
Pietro Zenoni
Giovanni Pedrini
Rosario Castelli
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LGL Electronics SpA
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LGL Electronics SpA
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Classifications

    • DTEXTILES; PAPER
    • D03WEAVING
    • D03DWOVEN FABRICS; METHODS OF WEAVING; LOOMS
    • D03D47/00Looms in which bulk supply of weft does not pass through shed, e.g. shuttleless looms, gripper shuttle looms, dummy shuttle looms
    • D03D47/34Handling the weft between bulk storage and weft-inserting means
    • D03D47/36Measuring and cutting the weft
    • D03D47/361Drum-type weft feeding devices
    • D03D47/364Yarn braking means acting on the drum
    • DTEXTILES; PAPER
    • D03WEAVING
    • D03DWOVEN FABRICS; METHODS OF WEAVING; LOOMS
    • D03D47/00Looms in which bulk supply of weft does not pass through shed, e.g. shuttleless looms, gripper shuttle looms, dummy shuttle looms
    • D03D47/34Handling the weft between bulk storage and weft-inserting means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2511/00Dimensions; Position; Numbers; Identification; Occurrences
    • B65H2511/30Numbers, e.g. of windings or rotations
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2551/00Means for control to be used by operator; User interfaces
    • B65H2551/20Display means; Information output means
    • B65H2551/22Numerical displays
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65HHANDLING THIN OR FILAMENTARY MATERIAL, e.g. SHEETS, WEBS, CABLES
    • B65H2553/00Sensing or detecting means
    • B65H2553/20Sensing or detecting means using electric elements
    • B65H2553/26Piezoelectric sensors

Definitions

  • the present invention relates to a modulated thread braking device in weft feeders for shuttle-less looms and in particular for gripper, bullet and pneumatic looms.
  • weft feeders are devices which comprise a fixed drum on which a rotating arm winds a plurality of turns of thread which constitute a loom feed reserve. At each beat, the loom removes a certain number of threads from said reserve, and the thread which unwinds from the drum of the feeder is subjected to braking means which allow to control its mechanical tension.
  • Brush brakes of the first type, are constituted by a ring of bristles, typically made of synthetic fibers, arranged inside a ring which surrounds the feeder drum. The bristles are in contact with the drum, and by means of their elastic action they brake the thread which unwinds from said drum.
  • Lamina brakes of the second type, are constituted by a ring of individual elastically yielding metallic laminae or fingers which are arranged in a row along the generatrices of a rotational solid, such as a conoid or a paraboloid, and also elastically engage the surface of the drum.
  • the thread For a correct weaving process, the thread must be subjected to adequate mechanical tension during the entire beat cycle.
  • the thread must be subjected to adequate tension -- hereinafter termed static tension -- even when its speed becomes zero, for example during the exchange of the thread among the clamps, or when the weft is released at the sides of the portion of fabric.
  • the static tension of the thread is set by means of adjustment elements which act on the braking means; said elements vary the contact pressure between the braking means and the thread which runs in contact with the drum of the feeder. Said tension cannot drop below a given value in order to avoid the presence of slack wefts on the sides of the portion of fabric being formed. Said static tension, which is normally set to the minimum value compatible with these requirements, reaches -- as the thread advancement speed increases -- values which are percentually much higher, and with modern looms it is easy to reach 700% increases in static tension. It is easily understood that this causes easy and frequent breakages of the thread during the weaving process.
  • Said known braking element is generally used in combination with a brush braking means and is constituted by a movable annular disk which is arranged coaxially to the drum of the feeder and in front of it in the thread exit direction.
  • the outer diameter of the disk is much smaller than the diameter of the drum of the feeder, for example 60-70% smaller, and the thread is pressed with a variable elastic force between said annular disk and a corresponding protruding central part of the drum .
  • the movable disk is subjected to the elastic load of a spring and is rigidly coupled to the movable element of an electromagnet which is supplied with a current which varies proportionally to the speed of the loom. By virtue of this electromagnet, the elastic load of the spring which acts on the disk is modulated proportionally to the speed of the loom.
  • a device according to the preamble of claim 1 is disclosed in document WO-A-9 114 032.
  • the aim of the present invention is essentially to eliminate these severe problems and, within the scope of this general aim, an important object of said invention is to provide a device for positively modulated braking which can control the unwinding of the thread from the drum of the feeder and can vary the braking action applied to the thread proportionally with respect to the mechanical tension which acts on said thread in order to keep said tension substantially constant, for example within variation limits not higher than 20-50% of the static tension.
  • Another important object of the present invention is to provide a device which is constructively very simple and can respond, in terms of adaptation of the braking action applied to the thread, even to instantaneous changes in the mechanical tension of said thread.
  • This high sensitivity of the device in practice allows the passage of any knots present on the thread, without producing such stresses as to cause its breakage.
  • a positive modulated braking device which comprises a braking body which has a continuous circular extension, typically a truncated-cone body, is supported by elastic means frontally and coaxially with respect to the drum of the feeder and is actuated by said means into elastic contact engagement with its larger cross-section against said drum along a circumference of the drum which is slightly smaller than the maximum one, in that the thread runs between said drum and said braking body along an inclined path which extends between the tangency circumference of the braking body with respect to the drum and the smaller cross-section of the braking body and in that the braking body has, at its smaller cross-section, a cylindrical portion which is rigidly coupled thereto, extends into the annular gap of the skirt of a permanent magnet and is provided with a coil which is supplied with an energization current which is modulated in accordance with the variations in the mechanical tension of the thread; means
  • FIG 1 shows a weft feeder 10 with a fixed drum T on which a hollow rotating arm 11 winds a plurality of turns of thread SF which constitute a weft reserve.
  • the rotating arm 11 is rigidly coupled to an equally hollow drive shaft AM of the feeder 10, and the thread F which arrives from the spool of thread, which is not illustrated, runs in the cavity of said shaft and of said arm.
  • the braking means is constituted by a braking body 12 which has a continuous circular extension and is typically a truncated-cone body.
  • the generatrices of the braking body 12 are preferably straight, but this is non-limitative and it is equally possible to use bodies such as 12 with curved generatrices, for example parabolic ones.
  • An elastic means is provided in order to support the truncated-cone braking body 12 frontally and coaxially to the drum T, with its larger cross-section directed toward said drum. The elastic means furthermore actuates the braking body 12 into elastic contact engagement with the drum along a circumference C1 thereof, termed tangency circumference, which is slightly smaller than the maximum circumference of said drum.
  • the elastic means is constituted by a lamina 13 which is centrally perforated and is made of metal or synthetic material or cardboard impregnated with synthetic resin.
  • the lamina 13 surrounds the body 12 with the edge of its central hole, for example at the smaller cross-section of said body, and has a surface which is elastically deformable along a direction which is parallel to the axis of the drum T.
  • the axial elasticity of the laminae 13 is obtained by means of concentric undulations 130 formed on the surface of said laminae.
  • the lamina 13 is provided with a lobed outer contour 131 and with a double series of punched openings 132-133 which surround the central hole 134 which is meant to surround the truncated-cone body 12.
  • Each one of the openings 132-133 extends through an arc of approximately 120° and delimits corresponding series of radial spokes 135-136.
  • the arrangement is advantageous, since it provides the lamina 13 with high elasticity in an axial direction and at the same time with adequate rigidity in a radial direction.
  • the support 14 is rigidly coupled, by means of a rigid arm 150, to a slider 15 which can slide on a guide 16 which is arranged parallel to the drum T.
  • a known traction device for example of the screw-and-nut type, provided with an actuation knob 17, allows to move the slider 15 along the guide 16 and consequently to move the support 14 in order to vary the elastic force with which the body 12 presses on the drum T. This allows to adjust the static tension applied to the thread F.
  • the braking body 12 is made of a high-strength synthetic material, for example a fabric or laminate of carbon fibers impregnated with polymeric resin, and has a cylindrical portion 120 at its smaller cross-section. Said cylindrical portion 120 extends into the annular gap of a skirt 18 of magnetic material which surrounds an annular permanent magnet 19.
  • the skirt 18, which is contained in the cup-shaped support 14, is formed by two disks 18a-18b and by a perforated hub which delimits said annular gap together with the disk 18a; the thread F which exits from the device 10 passes through the hole in the hub.
  • a winding 20 is arranged on the extension 120 and is supplied with an energization current I which is modulated and can vary in accordance with the variations in the mechanical tension of the thread detected by a tension sensor S which probes said thread.
  • the current I interacts with the magnetic field produced by the magnet 19 and generates a magnetomotive force which acts in order to vary, in a correspondingly modulated manner, the contact pressure of the truncated-cone body 12 on the drum T.
  • the sensor for the mechanical tension of the thread is constituted by a thread guiding eyelet 21 which is arranged adjacent to the smaller cross-section of the truncated-cone body 12.
  • the thread F extends from the tangency circumference C1 of the drum T to the eyelet 21 and forms, with respect to the axis of the drum T, an angle which is greater than the taper of the truncated-cone braking body 12; therefore the truncated-cone braking body 12 engages the thread only at said tangency circumference.
  • the eyelet 21 is supported at the free end of an elastic arm 22, and figure 2 shows that the other end of the arm 22 is rigidly coupled, by means of an L-shaped wing 220, to the rigid arm 150.
  • the wing 220 has a free arm portion 221.
  • Four strain gauges, designated by the reference numerals 23 to 26, are arranged on the arm 22 and on the arm portion 221 and are located in pairs on both faces of said arm and of said arm portion.
  • the four strain gauges 23 to 26 are connected with a bridge-like arrangement P, as shown in the detail view of figure 3, and the diagonal of the bridge P is connected to the inputs of a differential amplifier A which provides in output a signal "t" which is proportional to the mechanical tension of the thread.
  • the described arrangement for the four strain gauges 23 to 26 eliminates any noise signals due to the vibrations of the feeder 10, and the signal "t" correctly depends only on the mechanical tension of the thread.
  • the signal t present at the output of the amplifier A is sent to a microprocessor ⁇ P.
  • the microprocessor also receives a signal "to", for example set by means of a keyboard 27, which represents the maximum tension which the thread can reach during the beat of the loom, and a synchronization signal “s” provided by the loom TE.
  • a control signal “c” is output by the microprocessor ⁇ P and drives an amplifier B which provides in output the energization current I, modulated proportionally to the variation in the mechanical tension of the thread with respect to said maximum tension "to", which supplies the winding 20.
  • the microprocessor ⁇ P is programmed to provide a signal to the amplifier B such that the corresponding energization current I allows to keep the signal "t" within values equal to 20-50% of the preset signal "to".
  • the means for sensing the mechanical tension of the thread is constituted by a probe 28 with rollers which is located externally to the feeder 10 and is not rigidly coupled thereto.
  • the probe 28 can be of the known type with three rollers, wherein the central roller is supported by an elastic arm (not illustrated) with which at least one strain gauge is associated, said strain gauge being capable of providing a tension signal "t" which is proportional to the stress which the thread discharges onto said central roller.
  • the truncated-cone braking body 12 has a greater taper than the angle which the thread forms with respect to the axis of the drum T and constitutes, with its smaller cross-section, a thread guide for the thread F arranged upstream of the hole of the hub of the skirt 18.
  • the smaller cross-section of the truncated-cone braking body 12 is surrounded by a protruding ring 210 which extends slightly inside the truncated-cone braking body 12. Consequently, the thread is in contact with the body 12 only at the points of the tangency circumference C1 and at the points of the ring 210. In this manner the thread, which rotates clockwise with respect to the truncated-cone braking body 12, is not subjected to unwanted torsions and provides a self-cleaning action as regards lint and other deposits which tend to accumulate on the truncated-cone body.
  • the cylindrical portion 120 which extends in the annular gap of the skirt 18 and is provided with the winding 20 is associated with the smaller cross-section of the truncated-cone braking body 12.
  • the energization current I is fed to the winding 20 by the amplifier B under the control of the microprocessor ⁇ P, and said microprocessor receives the signal "t" which corresponds to the mechanical tension of the thread from the probe 28 with the interposition of the amplifier A.
  • this function is performed by an optical sensor 30 which detects the turns which unwind from the drum T.
  • the sensor 30 is associated with a counter 31 whose output is connected to a timer 32 which is in turn connected to the microprocessor ⁇ P.
  • the counter 31 after the unwinding of a preset integer number of turns of thread, activates the timer 32 which, after a time which corresponds to the unwinding of the possible fraction of a turn K, issues a stop signal "a".
  • the microprocessor ⁇ P by means of the amplifier B, energizes the coil 20 with a stop current which pushes the truncated-cone.body 12 against the drum T with a force which is sufficient to prevent the further advancement of the thread F.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Looms (AREA)
  • Tension Adjustment In Filamentary Materials (AREA)

Claims (13)

  1. Modulierte Fadenbremse für Schußfadenliefervorrichtungen (10), die eine feststehende Trommel (T) aufweisen, auf der ein Vorrat aus Faden in der Form von Fadenwindungen (SF) angehäuft ist, dadurch gekennzeichnet, daß sie einen Bremskörper aufweist, der eine kontinuierliche, kreisförmige Ausdehnung hat, typischerweise ein Konusstumpf-Körper (12), der von einer elastischen Einrichtung (13) frontal und koaxial zu der Trommel (T) der Liefervorrichtung (10) getragen wird und von dieser Einrichtung (13) mit seinem größeren Querschnitt in elastischen Kontakteingriff gegen die Trommel entlang eines Tangentialumfangs (C1) der Trommel gebracht wird, welcher etwas kleiner als der maximale Umfang ist, daß der Faden (F) zwischen der Trommel (T) und dem Bremskörper (12) entlang eines geneigten Weges verläuft, der sich zwischen dem Tangentialumfang (C1) des Bremskörpers mit Bezug auf die Trommel und dem kleineren Querschnitt des Bremskörpers erstreckt, und daß der Bremskörper (12) einen zylindrischen Abschnitt (120) hat, der starr mit ihm an seinem kleineren Querschnitt gekoppelt ist und der sich in den ringförmigen Spalt der Einfassung (18) eines Permanentmagneten (19) hinein erstreckt und mit einer Spule (20) versehen ist, der ein Erregerstrom (I) zugeführt wird, der entsprechend den Schwankungen der mechanischen Spannung des Fadens moduliert wird, wobei eine Einrichtung (21-23, 26-28) zum Detektieren der mechanischen Spannung des Fadens und zum Umwandeln der mechanischen Spannung in ein entsprechendes elektrisches Signal (t), das zum Modulieren des Erregerstroms verwendet wird, vorgesehen ist.
  2. Vorrichtung nach Anspruch 1, dadurch gekennzeichnet, daß der Konusstumpf-Bremskörper (12) von einer Platte (13) getragen wird, die zentral perforiert ist und mit ihrem zentralen Loch den Konusstumpf-Bremskörper umgibt, wobei die Platte elastisch entlang einer Axialrichtung deformierbar ist, die parallel zur Achse der Trommel (T) der Liefervorrichtung (10) ist.
  3. Vorrichtung nach den Ansprüchen 1 und 2, dadurch gekennzeichnet, daß die axiale Elastizität der Platte (13), die den Konusstumpf-Bremskörper (12) trägt, durch Vorsehen einer Reihe konzentrischer Wellenformen (130) auf dem Körper der Platte erhalten wird.
  4. Vorrichtung nach den Ansprüchen 1 und 2, dadurch gekennzeichnet, daß die axiale Elastizität der Platte (13), die den Konusstumpf-Bremskörper trägt, erhalten wird, indem auf dem Körper der Platte zwei Reihen gestanzter Öffnungen (132-133) vorgesehen sind, die das zentrale Loch der Platte umgeben, und daß jede der Öffnungen sich über einen Bogen von ungefähr 120° erstreckt, der entsprechende Reihen von Radialspeichen (134-135) begrenzt.
  5. Vorrichtung nach den Ansprüchen 1, 2, 3 oder 4, dadurch gekennzeichnet, daß die Platte (13) zumindest an bestimmten Punkten ihres Außenrandes mit einem becherähnlichen Träger (14) starr gekoppelt ist, der starr mit einem Schlitten (15) gekoppelt ist, der auf einer Führung (16) gleiten kann, die parallel zu der Trommel (T) der Liefervorrichtung (10) ist, und daß der Schlitten von einem Bewegungsmechanismus mit einem Knopf (17) gesteuert wird, der es erlaubt, die statische Spannung zu variieren, die der Bremskörper (12) auf den Faden (F) ausübt.
  6. Vorrichtung nach den Ansprüchen 1 bis 5, dadurch gekennzeichnet, daß sich der zylindrische Abschnitt (120) des Konusstumpf-Bremskörpers (12) in den ringförmigen Spalt einer Einfassung (18) hinein erstreckt, die aus magnetischem Material besteht, das einen ringförmigen Permanentmagneten (19) umgibt, und daß die Einfassung (18) in dem becherähnlichen Träger (14) enthalten und mit diesem starr gekoppelt ist und durch zwei Platten und durch eine perforierte Nabe gebildet wird, durch die der Faden läuft, der die Liefervorrichtung (10) verläßt.
  7. Vorrichtung nach Anspruch 1, dadurch gekennzeichnet, daß die Einrichtung zum Detektieren der mechanischen Spannung des Fadens und zum Umwandeln derselben in ein brauchbares Signal eine fadenführende Öse (21) aufweist, die benachbart zu dem kleineren Querschnitt des Konusstumpf-Bremskörpers (12) angeordnet ist und am freien Ende eines elastischen Armes (22) getragen wird, dessen anderes Ende, das ähnlich einem L-förmigen Flügel (220) ausgebildet ist, starr mit dem steifen, einstellbaren Träger (150) des Konusstumpf-Bremskörpers (12) gekoppelt ist, daß der L-förmige Flügel (220) einen freien Armabschnitt (221) hat, der parallel zu dem Arm (22) der Öse angeordnet ist, und daß vier Dehnungsmeßstreifen (23 bis 26) auf dem Arm (22) und auf dem Armabschnitt (221) angeordnet sind und in Paaren auf beiden Flächen des Armes und des Armabschnitts angeordnet sind, wobei die Dehnungsmeßstreifen dazu geeignet sind, ein elektrisches Signal bereitzustellen, das korrekt nur von der mechanischen Spannung des Fadens abhängig ist.
  8. Vorrichtung nach Anspruch 7, dadurch gekennzeichnet, daß die vier Dehnungsmeßstreifen (23 bis 26) miteinander wechselseitig gemäß einer brückenähnlichen Schaltungsanordnung (P) verbunden sind und daß der Diagonalausgang der Brücke mit den Eingängen eines Differentialverstärkers (A) verbunden ist, der am Ausgang das Signal (t) bereitstellt, das proportional zur mechanischen Spannung des Fadens ist.
  9. Vorrichtung nach Anspruch 1, dadurch gekennzeichnet, daß die Einrichtung zum Detektieren der mechanischen Spannung des Fadens und zum Umwandeln derselben in ein brauchbares Signal außerhalb der Liefervorrichtung (10) angeordnet ist und von einem Meßfühler (28) mit bewegbaren Rollen vom piezoelektrischen Typ gebildet wird, der dazu geeignet ist, ein elektrisches Signal bereitzustellen, das proportional zur relativen Verschiebung der Rollen ist.
  10. Vorrichtung nach den Ansprüchen 1, 7 und 8, dadurch gekennzeichnet, daß der Konusstumpf-Bremskörper (12) eine geringere Abschrägung als der geneigte Weg des Fadens hat, der zwischen dem Tangentialumfang (C1) und der fadenführenden Öse (21) vorhanden ist, die die Einrichtung zum Detektieren der mechanischen Spannung des Fadens bildet, so daß Kontakt zwischen dem Faden und dem Bremskörper nur an den Punkten des Tangentialumfangs (C1) besteht.
  11. Vorrichtung nach den Ansprüchen 1 und 9, dadurch gekennzeichnet, daß der Konusstumpf-Bremskörper (12) eine größere Abschrägung als der geneigte Weg hat, der zwischen dem Tangentialumfang (C1) und dem Fadenausgangsloch vorhanden ist, das koaxial zum ringförmigen Spalt der Einfassung (18) des Permanentmagneten ist, so daß der Faden mit dem Bremskörper an den Punkten des Tangentialumfangs und an dem kleineren Querschnitt des Bremskörpers in Kontakt ist, wobei der kleinere Querschnitt von einem hervorstehenden Ring umgeben wird, der sich etwas in Richtung der Innenseite des Konusstumpf-Bremskörpers erstreckt.
  12. Vorrichtung nach Anspruch 1 und einem der Ansprüche 2 bis 11, dadurch gekennzeichnet, daß der modulierte Strom (I) zum Erregen der Spule (20) des Konusstumpf-Bremskörpers (12) von einem Verstärker (B) bereitgestellt wird, der von dem Ausgangssignal angetrieben wird, das von einem Mikroprozessor (µP) erzeugt wird, der am Eingang das Signal (t), das proportional zu dem Momentanwert der mechanischen Spannung des Fadens ist, ein vorgegebenes Vergleichssignal (to) und ein weiteres Synchronisationssignal empfängt, das von der Webvorrichtung aus ankommt, und daß der Mikroprozessor programmiert ist, um den Verstärker (B) anzutreiben, so daß die Bremswirkung des Bremskörpers (12), die von dem Erregerstrom (I) erzeugt wird, erlaubt, das Signal (t) innerhalb von Werten zu halten, die gleich 20-50% des vorgegebenen Signals (to) sind.
  13. Vorrichtung nach den Ansprüchen 1 und 12, dadurch gekennzeichnet, daß der Mikroprozessor (µP) weiterhin ein Stoppsignal (a) empfängt, das von einer Zähler-Zeitgeber-Einheit (31-32) ausgegeben wird, die die Windungen und den Abschnitt der Windung, die von der Trommel (T) der Liefervorrichtung (10) abgewickelt werden, detektiert und programmiert ist, bei Vorhandensein des Stoppsignals und mittels des zwischengeschalteten Verstärkers (B) die Spule (20) des Konusstumpf-Bremskörpers (12) mit einem entsprechenden Stoppstrom zu erregen, der den Konusstumpf-Bremskörper (12) mit einer Kraft gegen die Trommel (T) drückt, die ausreicht, um die Weiterbewegung des Fadens (F) zu verhindern.
EP92830487A 1991-09-20 1992-09-15 Modulierte Fadenbremse für eine Schussfadenliefervorrichtung Expired - Lifetime EP0536088B1 (de)

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ITTO910713 1991-09-20
ITTO910713A IT1251209B (it) 1991-09-20 1991-09-20 Dispositivo di frenatura autoregolante del filato per apparecchi alimentatori di trama.

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EP0536088A1 EP0536088A1 (de) 1993-04-07
EP0536088B1 true EP0536088B1 (de) 1996-03-27

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DE (2) DE69209424T2 (de)
IT (1) IT1251209B (de)

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DE102013113115A1 (de) 2013-11-27 2015-05-28 Memminger-Iro Gmbh Verfahren zur Steuerung der Fadenlieferung, Fadenliefergerät und System mit Fadenliefergeräten
DE102013113122A1 (de) 2013-11-27 2015-05-28 Memminger-Iro Gmbh Fadenliefergerät
DE102014118743A1 (de) 2014-12-16 2016-06-16 Memminger-Iro Gmbh Verfahren zur Steuerung der Fadenlieferung eines Fadenliefergerät und Fadenliefergerät
DE102015118027B3 (de) * 2015-10-22 2016-11-17 Memminger-Iro Gmbh Verfahren zur Steuerung der Fadenlieferung eines Fadenliefergerät und Fadenliefergerät
DE102016117506B3 (de) * 2016-09-16 2017-11-23 Memminger-Iro Gmbh Fadenliefergerät

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IT1256329B (it) * 1992-11-23 1995-11-30 Dispositivo di alimentazione di filo
IT1263623B (it) * 1993-02-23 1996-08-27 Roj Electrotex Nuova Srl Alimentatore di filo
IT1260645B (it) * 1993-04-08 1996-04-22 Lgl Electronics Spa Dispositivo di frenatura modulata del filato per apparecchi alimentatori di trama
IT1261331B (it) * 1993-11-05 1996-05-14 Lgl Electronics Spa Perfezionamento ai dispositivi di frenatura modulata positiva del filato per apparecchi alimentatori di trama.
SE9400248D0 (sv) * 1994-01-26 1994-01-26 Iro Ab Styrbar utgångsbroms för garnmatningsanordning till textilmaskiner, i synnerhet vävmaskiner av projektil eller gripar-typ
DE4415331A1 (de) * 1994-05-02 1995-11-09 Sobrevin Fadenspeichervorrichtung mit einstellbarem Fadenabzugswiderstand
IT1268111B1 (it) * 1994-10-10 1997-02-20 Lgl Electronics Spa Dispositivo di frenatura modulata positiva del filato, per apparecchi alimentatori di trama
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CN1730753B (zh) * 2004-08-05 2010-12-22 爱吉尔电子股份公司 用于装有自动控制制动装置的织机的输纬器
DE102013113122B4 (de) * 2013-11-27 2016-03-03 Memminger-Iro Gmbh Fadenliefergerät
EP2878722A1 (de) 2013-11-27 2015-06-03 Memminger-IRO GmbH Verfahren zur Steuerung der Fadenlieferung, Fadenliefergerät und System mit Fadenliefergeräten
EP2878721A1 (de) 2013-11-27 2015-06-03 Memminger-IRO GmbH Fadenliefergerät
DE102013113115B4 (de) * 2013-11-27 2016-01-28 Memminger-Iro Gmbh Verfahren zur Steuerung der Fadenlieferung, Fadenliefergerät und System mit Fadenliefergeräten
DE102013113115A1 (de) 2013-11-27 2015-05-28 Memminger-Iro Gmbh Verfahren zur Steuerung der Fadenlieferung, Fadenliefergerät und System mit Fadenliefergeräten
DE102013113122A1 (de) 2013-11-27 2015-05-28 Memminger-Iro Gmbh Fadenliefergerät
TWI568901B (zh) * 2013-11-27 2017-02-01 美名格 艾羅有限公司 控制導線之方法、導線器及具有導線器之系統
DE102014118743B4 (de) 2014-12-16 2023-12-21 Memminger-Iro Gmbh Verfahren zur Steuerung der Fadenlieferung eines Fadenliefergerät und Fadenliefergerät
DE102014118743A1 (de) 2014-12-16 2016-06-16 Memminger-Iro Gmbh Verfahren zur Steuerung der Fadenlieferung eines Fadenliefergerät und Fadenliefergerät
DE102015118027B3 (de) * 2015-10-22 2016-11-17 Memminger-Iro Gmbh Verfahren zur Steuerung der Fadenlieferung eines Fadenliefergerät und Fadenliefergerät
EP3159442A1 (de) 2015-10-22 2017-04-26 Memminger-IRO GmbH Verfahren zur steuerung der fadenlieferung eines fadenliefergeräts und fadenliefergerät
DE102016117506B3 (de) * 2016-09-16 2017-11-23 Memminger-Iro Gmbh Fadenliefergerät
EP3296242A2 (de) 2016-09-16 2018-03-21 Memminger-IRO GmbH Fadenliefergerät
EP3296242A3 (de) * 2016-09-16 2018-04-11 Memminger-IRO GmbH Fadenliefergerät

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DE536088T1 (de) 1993-09-02
IT1251209B (it) 1995-05-04
ITTO910713A1 (it) 1993-03-20
ITTO910713A0 (it) 1991-09-20
DE69209424D1 (de) 1996-05-02
EP0536088A1 (de) 1993-04-07
DE69209424T2 (de) 1996-09-05

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