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EP0859881B1 - Platine de selection et de commande des mouvements de tricotage des outils de tricotage d'une machine a tricoter - Google Patents

Platine de selection et de commande des mouvements de tricotage des outils de tricotage d'une machine a tricoter Download PDF

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Publication number
EP0859881B1
EP0859881B1 EP96933436A EP96933436A EP0859881B1 EP 0859881 B1 EP0859881 B1 EP 0859881B1 EP 96933436 A EP96933436 A EP 96933436A EP 96933436 A EP96933436 A EP 96933436A EP 0859881 B1 EP0859881 B1 EP 0859881B1
Authority
EP
European Patent Office
Prior art keywords
control
spring
sinker
base
knitting
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 - Lifetime
Application number
EP96933436A
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German (de)
English (en)
Other versions
EP0859881A1 (fr
Inventor
Claus Kowitz
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.)
Hans Ruester and Co GmbH
Original Assignee
Hans Ruester and Co GmbH
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 Hans Ruester and Co GmbH filed Critical Hans Ruester and Co GmbH
Publication of EP0859881A1 publication Critical patent/EP0859881A1/fr
Application granted granted Critical
Publication of EP0859881B1 publication Critical patent/EP0859881B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • DTEXTILES; PAPER
    • D04BRAIDING; LACE-MAKING; KNITTING; TRIMMINGS; NON-WOVEN FABRICS
    • D04BKNITTING
    • D04B15/00Details of, or auxiliary devices incorporated in, weft knitting machines, restricted to machines of this kind
    • D04B15/66Devices for determining or controlling patterns ; Programme-control arrangements
    • D04B15/68Devices for determining or controlling patterns ; Programme-control arrangements characterised by the knitting instruments used

Definitions

  • the invention relates to a control board, which at a a variety (e.g. 2000) of knitting tools Knitting machine each one of the knitting tools as a control element is assigned, and with the others, in generic term of claim 1, generic Characteristics.
  • the board carrier contains a large number of boards, e.g. 2000, in open edge, radial grooves, with the central longitudinal axis of the plate carrier parallel, vertical Course, equidistant in the azimuthal direction, side by side are arranged, being in each of these grooves a board is slidably arranged up and down.
  • the boards are provided with sprouting feet that cross Contour edges running to the board guiding direction have, by sliding over one with an output edge provided stator drive lock part Deflections of the control boards can be controlled.
  • the control boards by the effect of a minimum bias one each from a base body of the board outgoing, the basic shape elongated rod-shaped Control spring, the free end of which at the bottom of the Guide groove of the control board is slidably supported in the engagement position mediating the deflection drive of their expulsion foot with the expulsion edge of the expulsion lock part of the lock bearer.
  • Such a control board is known from WO 94/03668 known.
  • the control spring has most of its length, that of its free end extends to a spring section close to the base with which the control spring connects to the main body of the board, a constant width. Only within the base Spring section that extends over about 1/5 of their Total length extends, the width of the control spring increases to about twice the value of their free end given width.
  • the control spring is opposite to that Steering shaft of the board separated by a narrow slot the slot width over about half the length seen the control spring is constant and then grows towards the free end of the spring, the Slot width in the closer to the board body Range approximately corresponds to the width of the spring that it has the major part of its length.
  • the known control board is because of it described form, of which in the relaxed state the shape given to the board deviates slightly at most, suffers from at least the following disadvantages.
  • the object of the invention is therefore a circuit board of the beginning to improve the type mentioned in such a way that high quality and long service life with cheap low manufacturing costs can be produced.
  • This object is achieved in that the width (h a ) of the control spring at its free end between 80% and 120% and at the base between 150% and 250% of the material thickness of the board and varies continuously between them, and that the radius of curvature , with which the control spring connects smoothly to the base body and to the control shaft of the board between 1.5 times and twice the value of the base width of the control spring.
  • the resulting shape of the circuit board and its control spring with a widening with smooth curvature and also with a smooth curvature in the main body of the board transitional design of the base area of the spring has the advantage that notch effects in the base area of the Control spring and wear-related wear in the connection area the spring to the main body of the board can be practically avoided completely and thus favorable long service life of the circuit board according to the invention are reachable.
  • the board can be in an advantageous design, which also the uniformity of the distribution of the preload the spring serves over its length, be designed that the control spring in the extended position of the board parallel or approximately parallel to an elongated one
  • the steering shaft of the board runs on a middle one Section of its length at its end facing away from the spring end Longitudinal side is provided with the expulsion foot, and that the control spring in its relaxed configuration, which it takes up before installation in the board carrier, has a curvature pointing away from the shaft, the radius of curvature thereof is greater than the length of the spring and the 5 times to 8 times the spring length, preferably about which corresponds to 6.5 times the value.
  • the spring base from which the smooth curvature begins with which the control spring in the Board base body and the support end of the spring longitudinally extending control shaft of the board passes, also with a smooth curvature to one of the board base outgoing, on the tax shaft opposite side of the spring, connecting nose pointing towards the free end of the spring, the side facing away from the control spring with a an obtuse-angled marking of the board Support edge is provided with which they are at the bottom of a Guide groove is supported, and that the radii of curvature, with which the base of the control spring smooth on the neighboring Tax shaft and support nose connects, amounts between the value of the base width of the spring and its 1.5 times the value, preferably approximately 1.1 times the value have the same.
  • the length 1b of the portion of the control spring which is close to the base and extends between the support nose and the control shaft of the circuit board, preferably between 7% and 15% of the spring length L ' F by 10% of the same.
  • the circuit board according to the invention is, in particular for a Use in an embroidery machine as a control for the selection and control of stitch-forming movements suitable for knitting tools.
  • 1a and 1b is a total of 10 each by parts of her needle cylinder 11 and her lock cylinder 12 represented circular knitting machine, the works with electronically controllable selection of the needles 13, which are programmable for stitch formation in the sense of achieving one predetermined knitting pattern can be used.
  • the knitting machine 10 is of the type in which the Needle cylinder 11 rotating about a central vertical axis 14 is drivable and the lock cylinder 12, the stator the circular knitting machine 10, the needle cylinder 11 coaxial encloses.
  • the needles 13 are equidistant in the circumference of the needle cylinder Distributed needle channels 16 vertically up and down performed, these needle channels as to the lock cylinder 12 open, narrow grooves are formed, the are individually assigned to the needles 13.
  • this 2000 needles 13th and have needle channels 16 which e.g. on 40 knitting units are distributed, on each of which a thread is processed.
  • the vertical opening and closing required for stitch formation Down movements of the needles 13, the rotational movement of the Needle cylinders are superimposed by the sliding form-fitting Intervention of radial control feet, not shown the needles 13 also for the sake of simplicity Needle lock tracks of the lock cylinder, not shown 12 controlled.
  • individually assigned control boards 17 are provided for the needles 13, which in turn consist of a - as it were - Inactive state of the corresponding needle 13 corresponding to it, shown in FIG. 1a, in a concentric position, can be brought into a selection position shown in FIG.
  • Control board 17 shown in the relaxed state is punched out of a spring steel strip, which is a typical Thickness between 0.4 and 0.6 mm, which is a slight greater clear width of the grooves forming the needle channels 16 of the needle cylinder 11 corresponds.
  • the board 17, its design in all essential details the scale representation of FIG. 2 can be removed is, has a trapezoidal shape Base body 18, from the needle end of the control board 17 a one-sided projecting, beard-shaped extension 19 goes out, the needle-side transverse edge 21 with the end edge 22 of the base body 18 is aligned and with a 90 ° only slightly different obtuse angles to the one in the illustrated functional positions of the board 17 radially internally arranged oblique leg edge 23 of the base body 18 of the control board 17 connects.
  • This angle is slightly larger as a tilt angle ⁇ (FIG. 1a) around which the control board 17th within the needle channel 16 from that shown in Fig. 1a Concentricity up to that shown in Fig. 1b Expulsion position can be tilted in the radially inner oblique leg edge 23 of the base body 18 on Base 25 of the groove-shaped needle channel 16 abuts.
  • the fulcrum 27 of this possible tilting movement of the control board 17 is through marked an obtuse-angled corner edge on which the radially inner oblique leg edge 23 of the base body 18 with one of 180 ° only slightly different obtuse angles to the radial inner, straight longitudinal edge 28 of an in Longitudinal direction of the control board 17 only a short base section Connect 29 of them.
  • the base region 36 of the control leg 34 is the one, in relation to the length L S of the control leg 34, of a short circuit section within which the radially outer straight longitudinal edge 39 collinearly adjoins the straight outer longitudinal edge 31 of the base section 29, on the one hand, and, on the other hand, his radially inner longitudinal edge 41, which, in the vicinity of the base region 36 parallel to the outer longitudinal edge 39 of the control arm 34, adjoins the radially outer longitudinal edge 43 of the spring arm 37 with a semicircular contour, the extension of its base region 36 measured in the longitudinal direction of the control arm 36 being the radius of curvature R 1 corresponds to the curved contour 42. In a typical design of the control board 17, this radius of curvature has a value of 1.5 mm.
  • the base area 38 of the spring leg 37 is the length L F of the control board, within the length of the control board, compared to the length L F measured between the base 44 of the spring leg 37 and its free support end 46, with which it can be supported on the groove base 25 of the needle channel 16 the radially inner longitudinal edge 47 of the spring leg 37 with a smoothly curved course of its radially inner contour connects smoothly to the radially inner, straight longitudinal edge 28 of the base region 29, the curved contour region with which the radially inner longitudinal edge 47 of the spring leg 37 smoothly adjoins the radial inner straight longitudinal edge 28 of the base region 29 connects, has a spring-side section 49 with a concave curvature and a base section-side section with a convex curvature, the radii of curvature R 2 and R 3 of which have the same amount that has a value of around 2 mm in a typical design of the control board 17 , with both curvature marks rich 49 and 51, viewed from the respective center of curvature 52 or 53,
  • the distance a of the base 44 running at right angles to the neutral bending line 54 of the spring leg 37 from that parallel to the base line 33 of the base body 18 is Control board 17 extending tangent 56 to the curved contour area 42, with which the radially inner longitudinal edge 41 of the control leg 34 connects to the base section 29 of the control board 17 and the base section 38 of its spring leg 37, the concave / convexly curved contour area 48 of this base section 38 at the intersection of the tangent 56 with the radially inner contour 47, 48, 28, 23 of the control board 17 smoothly adjoins the straight, radially inner longitudinal edge 28 of the base section 29 of the control board 17.
  • the distance a 2 of the base line 58 of the control arm 24 from the tangent 56, which corresponds to the radius of curvature R 1 is designated.
  • control plate 17 runs the neutral bending line 54 of their spring leg 37 in the area of the base 44 of the same parallel or approximately parallel to those in turn parallel mutually extending longitudinal edges 39 and 41 of the control leg 34, with which this on its base portion 36 connects.
  • the effective length L F of the spring leg 37 measured between the spring base 44 and the free support end 46 of the spring leg 37, which has a convex curvature in the region of the support point, is slightly greater than half the effective length L S of the control leg 34 measured between its base line 58 and its free edge 59.
  • the spring leg 37 In the relaxed state of the spring leg 37 shown in FIG. 2, the spring leg 37 has a weak curvature pointing away from the control leg 34, the average radius of curvature of which corresponds to the course of the neutral bending line 54 and has a value which is approximately 4.5 times that Spring length L F corresponds.
  • the width h measured perpendicular to the neutral bending line 54 continuously decreases, the leg width h b at the base 44 of the spring leg 37 being approximately 1.8 times the value of the spring leg width h a am free support end 46 of the spring leg 37 corresponds.
  • the control leg 34 has one on its radially outer side to the lock cylinder 12 pointing, flag-shaped projection 61, through which the base region 36 of the control leg outgoing, straightforward beginning section 62 of the control leg 34 against one over the end of the spring leg 37 protruding support section 63 set whose radially outer, i.e.
  • the basic shape slim trapezoidal, forming a "radial" support leg End portion of the control leg 34 communicates itself Middle region extending about 2/5 of the length of the support portion 63 the same, whose width b 'is somewhat smaller than the width of the start portion 62 of the support leg 34 and about 80% of the same.
  • Control board 17 takes this its lowest in the needle channel 16 Position in which the output foot 61 in the needle channel 16 is pushed in and with its straightforward extending longitudinal edge 66 on a cylinder jacket-shaped, radially inner peripheral region of the drive-out lock part 73 is slidably supported radially, while that with the Needle cylinder 11 rotating control board 17 on this cylinder jacket-shaped Circumferential area 74 passes, the end portion 68 of the control leg 34 with its radially inner Longitudinal edge 69 in contact with a permanent magnet 76 of the respective knitting system of the circular knitting machine on which the support foot 68 of the control board 17 is slidably supported is.
  • This permanent magnet 76 exerts on the support leg 68 of the control leg 34 an attractive force that is sufficient around the tax leg against the - repulsive - force of the the basic running position is maximally pre-tensioned by the spring leg 37 formed control spring of the control board 17th to keep in touch with him.
  • the control magnet assembly 70 of the respective knitting system further comprises - only schematically indicated - excitable by means of a control current Magnetic coil 77, through the excitation of which the attractive Magnetic force to cancel the permanent magnet 76 Opposing field can be generated so that when the magnet coil 77 is excited, the control leg 34 of the control board 17 by the effect of its control spring 37 in that shown in Fig.
  • the drive lock part 73 seen in the azimuthal direction, one by at least the amount of the stroke by which the Control board 17 in the needle channel 16 can be moved up and down is, periodically varying height, with ascending and descending as well as horizontally running sections of the blade-shaped Leading edge 79 of the drive lock part 73 smooth - "wavy" - connect to each other.
  • a selection control of the control board 17 to raise it from the concentric position shown in FIG is always possible if the control board on a Area of lower height of the drive lock part 73 passes by, at which the leading edge 79 of the drive lock part 73, as shown in dashed lines, below the corner edge 82 of the board output foot 61 runs on the whose oblique support edge 71 to its free longitudinal edge 66 connects.
  • Control board 17 ' is in accordance with the control board 17 Fig. 2 is functionally analogous and only differs from this by designing the transition areas over which the control leg 34 'and the spring leg 37' to the Connect the main body 18 'of the control board 17', its design otherwise the same as with the control board 17 described in FIG. 2. So far the same in FIG. 3 Reference numerals are used as in Fig. 2, without the elements of the control board 17 'designated hereby the explanations are specifically mentioned, this is the reference on their description given with reference to FIG. 2.
  • control board 17 ' for the purpose of explanation, assuming that instead of the control board 17 according to 2 can be used in knitting machine 10 with the same function and accordingly the orientation and length of the sloping leg edges 23 and 26 of their trapezoidal Base body 18 ', the between the tilting edge 27 and the this opposite obtuse-angled corner edge 32 measured Basic width a, the designs of your return foot 19, their Austriebsfußes 61, whose in the direction of displacement Control board 17 'measured distances from each other and the arrangement the support end 46 of the spring leg 37 'with respect of the output foot 61 of the control board 17 'are the same as with the control board 17 according to FIG. 2.
  • Different compared to this are in the board 17 'of FIG. 3 following details:
  • the distance between the base 33 'of the spring leg 37', up to which the radially outer longitudinal edge 43 and the radially inner longitudinal edge 47 of the spring leg, as seen in its illustrated, relaxed state, between the free support end 46 and the spring base 33 'with a constant radius of curvature extend from the end face edge 22 of the trapezoidal base body 18 'of the control board 17' is smaller than the distances of the obtuse-angled corners 27 and 32 of the board base body 18 'measured from this end face edge 22.
  • the base 33 'of the spring leg 37' is, as it were, 'laid' into the base body 18 ', so that, compared with the exemplary embodiment according to FIG.
  • the base width h '/ b of the spring leg 37' is only about 20% larger than its width h a at the free support end 46.
  • the on the groove bottom 25 of the control board 17 'receiving Needle channel 16 supportable, the fulcrum around which the board 17 'is tiltable, marking, obtuse-angled edge 27 on a, measured from the spring base 33 ', over about 1/10 of the spring leg length L '/ F extending support lug 83 arranged, the spring leg 37 'facing radially outer longitudinal edge 84 in the base region 33 'parallel to the neutral bending line 54 'of the spring leg 37'.

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  • Engineering & Computer Science (AREA)
  • Textile Engineering (AREA)
  • Knitting Machines (AREA)
  • Mechanical Control Devices (AREA)
  • Braiding, Manufacturing Of Bobbin-Net Or Lace, And Manufacturing Of Nets By Knotting (AREA)

Claims (5)

  1. Platine de commande (17 ; 17'), qui dans un métier à tricoter (10) comprenant une multiplicité (2000 par exemple) d'outils de tricotage (13) est associée à chacun des outils de tricotage comme élément de commande possédant une forme de base de barre plate oblongue, avec un corps de base (18 ; 18') qui peut s'appuyer contre l'outil de tricotage associé et du côté, opposé à un bord frontal terminal (22) duquel partent une tige de commande (34 ; 34') oblongue, prévue pour la commande des excursions et des mouvements de basculement de la platine de commande et pourvue d'un pied d'expulsion (61) en forme de talon, ainsi qu'un ressort de commande (37 ; 37') possédant une forme de base de barre plate oblongue et d'allure parallèle ou environ parallèle à ladite tige, la platine (17 ; 17'), y compris sa tige de commande et son ressort de commande, étant réalisée sous forme de pièce en acier à ressorts d'un seul tenant dans laquelle la largeur de base (hb) du ressort de commande (37 ; 37') par laquelle ce dernier se raccorde au corps de base (18 ; 18') de la platine possède une plus grande valeur qu'à l'extrémité libre (46) et le ressort, sur son côté de base, se raccorde au corps de base (18 ; 18') de la platine par une courbure plane élargissant la région de base, caractérisée en ce que la largeur (ha) du ressort de commande (37 ; 37') à son extrémité libre (46) est comprise entre 80% et 120% de l'épaisseur de matériau de la platine (17 ; 17'), et entre 150% et 250% à la base, et varie de façon continue entre les deux, et en ce que le rayon de courbure, par lequel le ressort de commande (37) se raccorde de façon plane au corps de base (18) et à la tige de commande (34) de la platine (17), possède une valeur comprise entre 1,5 et 2 fois la valeur de la largeur de base du ressort de commande.
  2. Platine de commande (17 ; 17'), qui dans un métier à tricoter (10) comprenant une multiplicité (2000 par exemple) d'outils de tricotage (13) est associée à chacun des outils de tricotage comme élément de commande possédant une forme de base de barre plate oblongue, avec un corps de base (18 ; 18') qui peut s'appuyer contre l'outil de tricotage associé et du côté, opposé à un bord frontal terminal (22)duquel partent une tige de commande (34 ; 34') oblongue, prévue pour la commande des excursions et des mouvements de basculement de la platine de commande et pourvue d'un pied d'expulsion (61) en forme de talon, ainsi qu'un ressort de commande (37 ; 37') possédant une forme de base de barre plate oblongue et d'allure parallèle ou environ parallèle à ladite tige, la platine (17 ; 17'), y compris sa tige de commande et son ressort de commande, étant réalisée sous forme de pièce en acier à ressorts d'un seul tenant dans laquelle la largeur de base (hb) du ressort de commande (37 ; 37') par laquelle ce dernier se raccorde au corps de base (18 ; 18') de la platine possède une plus grande valeur qu'à l'extrémité libre (46) et le ressort, sur son côté de base, se raccorde au corps de base (18 ; 18') de la platine par une courbure plane élargissant la région de base, caractérisée en ce que la base (33') du ressort, à partir de laquelle commence la courbure plane (86) par laquelle le ressort de commande (37') se raccorde au corps de base (18') de la platine et à la tige de commande (34') de la platine qui s'étend au-delà de l'extrémité d'appui du ressort (37') en direction longitudinale, cette base donc se raccorde, également par une courbure plane (87), à un ergot d'appui (83), partant du corps de base (18') de la platine, disposé sur le côté du ressort de commande (37') qui fait face à la tige de commande (34'), et tourné vers l'extrémité libre du ressort, ergot qui est pourvu, sur son côté opposé au ressort de commande, d'un bord d'appui à angle obtus matérialisant un axe de basculement (27) de la platine, et en ce que les rayons de courbure, par lesquels la base (33') du ressort de commande (37') se raccorde de façon plane à la tige de commande (34') voisine et à l'ergot d'appui de la platine, ont des valeurs comprises entre la valeur de la largeur de base du ressort de commande (37') et 1,5 fois cette valeur, de préférence égales à environ 1,1 fois cette valeur.
  3. Platine de commande selon la revendication 2, caractérisée en ce que la longueur Ib de la partie, proche de la base, du ressort de commande (37 ; 37') qui s'étend entre l'ergot d'appui et la tige de commande (34') de la platine (17'), cette longueur donc est comprise entre 7% et 15% de la longueur (L'F) du ressort, de préférence est égale à environ 10% de cette dernière.
  4. Platine de commande selon la revendication 2 ou 3, caractérisée en ce que la base (33') du ressort de commande (37') se raccorde respectivement de façon plane, par le même rayon de courbure, aux bords de contour (41 et 84) de la tige de commande (34') et de l'ergot d'appui (83) qui lui sont voisins et s'étendent parallèlement ou quasiment parallèlement à ses bords longitudinaux (43, 47).
  5. Utilisation de la platine de commande selon une des revendications 1 à 4 dans un métier à tricoter comme élément de commande pour la sélection et la commande des mouvements de formation des mailles d'outils de tricotage à chacun desquels est associé un élément de commande de ce type, qui peut être dévié, dans une rainure de guidage d'un support de platines, dans des directions alternatives dans le sens longitudinal de ce support, le support de platines comprenant une multiplicité (2000 par exemple) de rainures de guidage de ce type, disposées de façon équidistante les unes à côté des autres en s'étendant parallèlement entre elles, qui reçoivent chacune une platine de commande dont l'entraínement s'effectue par des mouvements relatifs du support de platines et d'un support de cames, sur lequel est prévue une partie de came d'expulsion pourvue d'un bord d'expulsion qui, en passant devant des bords de contour, s'étendant transversalement à la direction de guidage des platines, de pieds d'expulsion en forme de talons, commande les excursions des platines de commande, lesquelles, par l'action d'une précontrainte minimale de leur ressort de commande partant du corps de base de la platine, ressort dont l'extrémité libre s'appuie en glissement sur le fond de la rainure de guidage de la platine de commande, peuvent être repoussées dans la position d'engagement, transmettant l'entraínement d'excursion, de leur pied d'expulsion par le bord d'expulsion de la partie de came d'expulsion du support de cames, les platines de commande pouvant être repoussées, par des éléments de commande du support de cames qui agissent par engagement positif et à force, dans une position de base dans laquelle l'engagement d'entraínement de leurs pieds d'expulsion par le bord d'expulsion de la came d'expulsion est supprimé, pouvant être immobilisées dans cette position de base par la force de retenue d'un ensemble d'aimant permanent, et pouvant être libérées, afin de prendre la position d'expulsion, par l'asservissement compensateur d'un ensemble d'aimant à commande électronique.
EP96933436A 1995-11-07 1996-10-01 Platine de selection et de commande des mouvements de tricotage des outils de tricotage d'une machine a tricoter Expired - Lifetime EP0859881B1 (fr)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE19541407A DE19541407A1 (de) 1995-11-07 1995-11-07 Platine für die Auswahl und Steuerung maschenbildender Bewegungen von Strickwerkzeugen einer Strickmaschine
PCT/EP1996/004284 WO1997017486A1 (fr) 1995-11-07 1996-10-01 Platine de selection et de commande des mouvements de tricotage des outils de tricotage d'une machine a tricoter
DE19541407 1996-11-07

Publications (2)

Publication Number Publication Date
EP0859881A1 EP0859881A1 (fr) 1998-08-26
EP0859881B1 true EP0859881B1 (fr) 2000-09-13

Family

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EP96933436A Expired - Lifetime EP0859881B1 (fr) 1995-11-07 1996-10-01 Platine de selection et de commande des mouvements de tricotage des outils de tricotage d'une machine a tricoter

Country Status (12)

Country Link
US (1) US6082142A (fr)
EP (1) EP0859881B1 (fr)
JP (1) JPH11501998A (fr)
CN (1) CN1139685C (fr)
AT (1) ATE196327T1 (fr)
CA (1) CA2236966C (fr)
CZ (1) CZ287829B6 (fr)
DE (2) DE19541407A1 (fr)
ES (1) ES2151676T3 (fr)
PT (1) PT859881E (fr)
TW (1) TW470797B (fr)
WO (1) WO1997017486A1 (fr)

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EP4411043A1 (fr) 2023-02-02 2024-08-07 Groz-Beckert KG Pièce d'insertion d'une machine textile, emballage pour au moins une pièce d'insertion, procédé d'alimentation d'une machine textile avec au moins une pièce d'insertion et système de traitement ultérieur de matériaux textiles

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DE19720169C2 (de) * 1997-05-14 1999-04-08 Groz Beckert Kg Auswahlplatine
DE10015730B4 (de) * 2000-03-29 2012-09-13 Sipra Patententwicklungs- Und Beteiligungsgesellschaft Mbh Platine für eine insbesondere nach der Relativtechnik arbeitende Strickmaschine und mit einer derartigen Platine ausgerüstete Strickmaschine
DE10148196C1 (de) * 2001-09-28 2003-04-03 Groz Beckert Kg Systemteil
EP2374921A1 (fr) * 2010-04-07 2011-10-12 Pai Lung Machinery Mill Co., Ltd. Machine à tricoter circulaire à aiguille Jacquard équipée d'une structure de retour
DE102010017952B4 (de) * 2010-04-22 2012-04-19 H. Stoll Gmbh & Co. Kg Stricknadel für Strickmaschinen
DE102017106961B3 (de) * 2017-03-31 2018-05-30 Terrot Gmbh Strickmaschine, Strickverfahren und Gestrick

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WO1994003668A1 (fr) * 1992-08-03 1994-02-17 Universal Maschinenfabrik Dr. Rudolf Schieber Gmbh & Co. Kg Machine textile

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Cited By (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
CZ298570B6 (cs) * 2001-03-20 2007-11-07 Uniplet Trebíc, A. S. Zarízení pro volbu jehel
EP4411043A1 (fr) 2023-02-02 2024-08-07 Groz-Beckert KG Pièce d'insertion d'une machine textile, emballage pour au moins une pièce d'insertion, procédé d'alimentation d'une machine textile avec au moins une pièce d'insertion et système de traitement ultérieur de matériaux textiles
WO2024160632A1 (fr) 2023-02-02 2024-08-08 Groz-Beckert Kg Pièce d'insertion d'une machine textile, emballage pour au moins une pièce d'insertion, procédé pour fournir à une machine textile au moins une pièce d'insertion et pour faire fonctionner ladite machine textile, système pour le traitement ultérieur de matériaux textiles

Also Published As

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ATE196327T1 (de) 2000-09-15
CA2236966C (fr) 2005-04-26
CN1201497A (zh) 1998-12-09
JPH11501998A (ja) 1999-02-16
CA2236966A1 (fr) 1997-05-15
WO1997017486A1 (fr) 1997-05-15
CZ287829B6 (en) 2001-02-14
DE19541407A1 (de) 1997-05-15
PT859881E (pt) 2001-03-30
CN1139685C (zh) 2004-02-25
ES2151676T3 (es) 2001-01-01
EP0859881A1 (fr) 1998-08-26
TW470797B (en) 2002-01-01
CZ111798A3 (cs) 1998-07-15
US6082142A (en) 2000-07-04
DE59605892D1 (de) 2000-10-19

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