EP0264584B1 - Elément d'impression - Google Patents

Elément d'impression Download PDF

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Publication number
EP0264584B1
EP0264584B1 EP87112468A EP87112468A EP0264584B1 EP 0264584 B1 EP0264584 B1 EP 0264584B1 EP 87112468 A EP87112468 A EP 87112468A EP 87112468 A EP87112468 A EP 87112468A EP 0264584 B1 EP0264584 B1 EP 0264584B1
Authority
EP
European Patent Office
Prior art keywords
detent
setting
actuating knob
printing mechanism
mechanism according
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
EP87112468A
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German (de)
English (en)
Other versions
EP0264584A3 (en
EP0264584A2 (fr
Inventor
Heinrich Volk
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.)
Meto International GmbH
Original Assignee
Esselte Meto International Produktions 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 Esselte Meto International Produktions GmbH filed Critical Esselte Meto International Produktions GmbH
Priority to AT87112468T priority Critical patent/ATE63862T1/de
Publication of EP0264584A2 publication Critical patent/EP0264584A2/fr
Publication of EP0264584A3 publication Critical patent/EP0264584A3/de
Application granted granted Critical
Publication of EP0264584B1 publication Critical patent/EP0264584B1/fr
Anticipated expiration legal-status Critical
Expired - Lifetime legal-status Critical Current

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Classifications

    • B—PERFORMING OPERATIONS; TRANSPORTING
    • B41—PRINTING; LINING MACHINES; TYPEWRITERS; STAMPS
    • B41K—STAMPS; STAMPING OR NUMBERING APPARATUS OR DEVICES
    • B41K1/00—Portable hand-operated devices without means for supporting or locating the articles to be stamped, i.e. hand stamps; Inking devices or other accessories therefor
    • B41K1/08—Portable hand-operated devices without means for supporting or locating the articles to be stamped, i.e. hand stamps; Inking devices or other accessories therefor with a flat stamping surface and changeable characters
    • B41K1/10—Portable hand-operated devices without means for supporting or locating the articles to be stamped, i.e. hand stamps; Inking devices or other accessories therefor with a flat stamping surface and changeable characters having movable type-carrying bands or chains

Definitions

  • the invention relates to a printing unit with a plurality of type carriers, which carry printing types on their outer circumferential surface in one area and reading types in another area, the printing types being able to be brought into a desired printing position by rotating the type carriers, an adjustment arrangement which is axially fixed has its connected actuating button and can be brought into a drive connection by rotating it axially with each of the type carriers to rotate it, and stop means for limiting the rotation path of the type carriers, the adjusting arrangement being provided with a device for limiting the torque which can be transmitted by means of the actuating button.
  • Such a printing unit is known from DE-PS 34 06 762.
  • the sling means prevent the type support from rotating so far by turning the adjusting knob and the adjusting shaft connected to it be rotated so that the reading types reach the printing position and come into contact with the printing ink in this position. This would seriously impair the readability of the reading types.
  • a slipping clutch is provided in the known printing unit between an adjusting shaft and the actuating button seated on it as a torque limiting device, which slips and prevents further rotation of the adjusting shaft and the type carrier coupled therewith as soon as the torque transmitted from the actuating button to the adjusting shaft is greater than the torque required to turn the type carrier.
  • the limit torque at which the slipping clutch begins to slip is predetermined by the interaction of the material of the actuation button and the fit with which the actuation button is seated on the adjusting shaft. It has been shown that the exact observance of the limit torque leads to difficulties, since it requires a large constancy of the material properties of the actuating button. Factors over which the printing group manufacturer has no influence can influence the limit torque; for example, the limit torque is drastically reduced when oil gets on the adjusting shaft. In this case it can be reduced, for example, to such an extent that normal adjustment of the type carrier is no longer possible, since the actuating button slips on the adjusting shaft even when this adjusting torque is applied.
  • Another problem with the known printing unit is that it cannot be adapted to different operating conditions, that is to say to different required limiting torques. In practice, however, the torques required for the adjustment of the type carriers are different, so that accordingly different limit torques should also be set.
  • the type carriers are belts which are guided around setting wheels and a fixed deflection edge
  • belts of different widths also require adjusting torques of different sizes. This results from the fact that the belts can be guided around the deflection edge with narrow belts with a lower torque than with wide belts. If only a single limit torque can be set, this torque must be set to a value that is greater than the largest torque required to adjust the type carrier. This value can, however, be so great that damage to the printing unit occurs even before the limit torque is exceeded, because the desired slipping does not yet occur if the operator tries to turn the actuating button anyway after the slings become effective.
  • the invention has for its object to provide a printing unit, in which the limit torque that can be transmitted to the type carrier via the drive connection and, when exceeded, the drive connection is interrupted, can be set according to the respective requirements.
  • the device for limiting the torque has resilient detent elements, the actuating button with a detent torque determined by its spring hardness, which is greater than the torque required to rotate the type carrier, against rotation relative to that with the Hold the setting assembly in the drive connection of the type carrier, and that an adjusting element can be brought into engagement with the locking elements to influence the spring hardness of the locking elements.
  • the limit torque is determined by the interaction of the locking elements with the adjusting element.
  • the locking elements generate a certain locking torque due to their spring hardness, which can then be influenced by means of the adjusting element in order to achieve the desired limit torque.
  • different setting elements which accordingly also influence the spring hardness of the latching elements differently, different limiting torques can be set, which enables the desired adaptability of the printing unit to different applications with different type carrier sets.
  • the printing unit 10 shown in FIG. 1 is a stamp printing unit in which type tapes 12 are used as type carriers.
  • the printing unit contains two housing halves 14 and 16 which can be connected to one another via snap hooks 18.
  • an adjusting shaft 20 is rotatably mounted, over which a slotted sleeve 22 is pushed.
  • Carriers 24 attached to the end of the adjusting shaft 20 engage through slots 26 in the sleeve 22 beyond their outer circumference.
  • the window carrier 30 is also axially displaced, and the drivers 24 slide axially along the slots 26 in the sleeve 22. into which the drivers 24 of the setting shaft 20 engage.
  • the drivers 24 can each be brought into engagement with grooves 36 of a setting wheel 34.
  • each of the dials 34 can be rotated sequentially by rotating the operation knob 32.
  • the setting wheels 34 are also provided on their outer circumferential surface with grooves 38, into which projections 40 attached to the inner circumferential surface of the type strips 12 engage. In this way, the type bands 12 can be moved via the engagement between the drivers 24 and the grooves 36 and the engagement between the grooves 38 and the projections 40.
  • the type tapes 12 are placed around the setting wheels 34 in the printing unit, and they also encompass a pressure web 42 located on the lower end face of the housing half 14, which serves as a deflecting edge for the type tapes 12 Adjustment of the type tapes 12 located just below the pressure web 42 produces the desired impression.
  • the reading types are shown on the type tapes 12 in FIG. 1; the print types are located on the rear side of the type support set formed by the type supports 12, which cannot be seen in FIG. 1.
  • the recognizable reading types 44 and the respectively assigned printing types are attached to the type tapes 12 in such a way that whenever a printing type is below the printing web 42 in the printing position, the corresponding reading type is visible through a window 46 in the window support 30. In this way, it can always be seen through the window 46 which print types are currently in the printing position under the printing web 42.
  • the pressure web 42 is attached in one piece to the lower end of a carrier element 48 connected to the housing half 14.
  • the carrier element 48 has a recess 50, in which a rubber strip 52 and a coil spring 54 are located in the assembled state of the printing unit.
  • the rubber strip 52 and the coil spring 54 together have such a height that the coil spring 54 protrudes upward from the recess 50 and comes into contact with the setting wheels 34 arranged above it.
  • the coil spring 54 exerts a limited holding force on the setting wheels, which counteracts their rotation.
  • the stamp printing unit can be screwed, for example, to a printing unit carrier of a hand-held labeling device.
  • the corresponding screws can be inserted through holes in the housing halves 14, 16 and screwed into threaded holes in the ends of the square piece 56.
  • two ring collars 60, 62 are provided, the radial spacing of which forms a recess 64, the radial dimension of which is equal to the wall thickness of the sleeve 22, so that this sleeve is pushed into the recess and separated from the ring collars 60 and 62 can be held.
  • the inner collar 62 engages inside the sleeve 22, while the outer collar 60 surrounds the sleeve 22 on the outside.
  • the two ring collars have only a small axial extent, so that they each hold only the rightmost end of the sleeve 22 in FIG. 1.
  • the setting shaft of the printing unit of Fig. 1 is shown in an enlarged view.
  • the end region 28 of the setting shaft 20 intended for receiving the actuating button 32 has a partially square cross section with rounded corners, so that four locking surfaces 66 are created.
  • the setting shaft 20 has a bead 68 and an adjoining circumferential groove 70.
  • a diametrical slot 72 provided in the end region 28 of the setting shaft 20 produces a certain elasticity of this end region and a resilience of the bead 68.
  • the bead 68 and the circumferential groove 70 have the purpose of securely holding the actuating button 32 pushed onto the end region 28 without the latter being included Help must be attached to additional resources. How the detention is carried out will then be discussed can still be seen in the description of the design of the actuating button.
  • the end region 28 of the setting shaft 20 projects through an opening 74 in a side plate 76 of the window support 30, the step 78 acting as a stop on the setting shaft 20, which prevents the setting shaft 20 from being pushed further into the opening 74.
  • the section of the end region 28, which has the square cross section, projects out of the opening 74 in the side plate 76 to the left in the view of FIG. 1, so that the actuating button 32 can be pushed onto the end region.
  • the operating button 32 is slightly conical on its outer circumferential surface, so that it is easier to touch and operate.
  • the outer circumferential surface is corrugated, which is indicated in FIG. 5 to simplify the illustration only with the aid of two corrugated grooves 80.
  • the actuation button 32 has an outer sleeve 82 and an inner sleeve 84 which is connected to the outer sleeve 82 on the end face of the actuation button 32.
  • the inner sleeve 84 surrounds an inner cavity 88 which has a constriction in the form of an annular bead 90 in the region of the end face 84.
  • the annular bead 90 presses the bead 68 together, taking advantage of the flexibility given by the slot 72, until the annular bead 90 slides into the circumferential groove 70.
  • the bead 68 then comes to lie in the extension 92 in the actuation button 32, so that the actuation button 32 is securely held on the setting shaft 20.
  • the inner sleeve 84 of the actuating button 32 has an essentially square cross section, as can be seen in FIG. 5. At the corners of the square shape, slots 94 are provided in the axial direction, so that four axially extending locking fingers 96 are formed which, when the actuating button 32 is pushed onto the end region 28 of the setting shaft 20, rest against the locking surfaces 66. If the rotation of the setting shaft 20 is not counteracted by a section modulus, the setting shaft 20 can be rotated by means of the pushed-on actuation button 32 due to the interaction of the locking fingers 96 with the locking surfaces 66. The locking fingers 96 can be deflected in the radial direction due to the presence of the slots 94 and act like springs which have a certain spring hardness. This spring hardness is determined by the material and the structural design of the locking fingers.
  • Fig. 7 shows that the free ends of the latching fingers 96 are connected to the outer sleeve via connecting webs 98, the location at which the connecting webs are connected to the outer sleeve 82 being approximately in the middle of the longitudinal extension of the outer sleeve 82.
  • These connecting webs increase the spring hardness of the latching fingers, but otherwise have no influence on the latching fingers 96, which act like leaf springs clamped on one side.
  • the printing unit of FIG. 1 is designed in such a way that the type tapes 12 can only execute a predetermined adjustment path when the adjusting shaft 20 is rotated, a very large section modulus being opposed to each further rotation.
  • This Large section modulus is generated by 12 projections 100 and 102 are attached to the inner circumferential surface of the type tapes, which are dimensioned so that they are not through a gap 106 between the pressure web 42 and the wall of the housing 14 or a gap between the pressure web 42 and fit through a stop web 108 connected to the housing 14.
  • the two projections 100 and 102 thus limit the adjustment path of the type straps in both adjustment directions in such a way that, although all types of print can get under the web 42, but not the reading types 44 assigned to the type of printing. So if a type type has been adjusted so far that If the projection 100 comes into contact with the upper edge 110 of the pressure web 142, the section modulus which counteracts the further rotation increases very sharply.
  • the spring hardness of the locking fingers 96 is dimensioned such that in this situation the spring fingers 96 are deflected radially outward, so that the locking force exerted by the locking fingers 96 is overcome and the actuating button 32 slips on the end region 28 of the adjusting shaft 20. In this way it is prevented that any further damage to the printing unit is caused by a violent turning of the operating button 32.
  • the projection 102 leads to a sharp increase in the section modulus.
  • the limit torque at which the slipping of the actuating button 37 on the end section 28 of the adjusting shaft 20 must be adapted to the respective circumstances.
  • the limit torque In the case of the narrow type straps 12, as shown in FIG Torque relatively low, since the type tapes can be pulled around the pressure web 42 with relatively little force. However, if wider type tapes are used to print larger numbers, the torque required to adjust the type tapes also increases. In this case the limit torque must have a higher value.
  • an adjusting element 112 is provided, which is explained with reference to FIGS. 8, 9 and 10.
  • the adjusting member 112 has a circular disk 114 which rigidly connects a plurality of fastening elements 116 to one another. These stiffening elements 116 protrude vertically from the disk 114, and they can be inserted into openings 118 in the end wall 86 of the actuating button 32. As shown in FIG. 8, the stiffening elements 116 rest against the rear surfaces 120 of the locking fingers 96 in the pushed-in state and thereby increase the spring hardness of these locking fingers 96.
  • the disk 114 of the adjusting member 112 lies against the end wall 86 of the actuating button 32.
  • two stiffening elements 116 are attached to the disk 114, which can be brought into engagement with two latching fingers 96 to influence their spring hardness.
  • Retaining hooks 122 are also attached to the disk 114 and, like the stiffening elements 116, project vertically. When the stiffening elements 116 are pushed into the openings 118, these retaining hooks penetrate into corresponding openings and cause the setting member 112 to be held on the actuating button 32.
  • the setting member 112 enables the spring hardness of the locking fingers 96 to be set within a large setting range.
  • four stiffening elements could also be attached to the disk 114, so that the spring hardness of all four locking fingers 96 can be increased.
  • the operating button 132 is in the form of a hollow cylinder, the wall 133 of which is provided with projections 134 on its outer peripheral surface in order to improve the grip.
  • projections 136 and, in each case, locking grooves 138 are provided on the inner circumferential surface of the cylindrical wall 133 of the actuation button 132.
  • the end area 128 of the adjusting shaft 140 which receives the operating button 32 has eight slots 142 in its cylindrical wall 141 surrounding an axial passage 143, so that a total of eight axially extending latching elements are produced.
  • Four of these locking elements form locking fingers 144, while four further locking elements, each lying between two adjacent locking fingers 144, form locking hooks 146.
  • the locking fingers 144 and the locking hooks 146 each have a different axial extension, namely the locking hooks extend to the end face of the actuation button 132 on the right in FIG. 11, while the locking fingers 144 protrude only as far to the right as the projections 136 to the right.
  • the locking fingers 144 have the same effect as the locking fingers 96 in the previously described embodiment. They prevent the actuation button 132 from freely rotating on the end region 128 of the setting shaft 140. Because of their spring hardness, these locking fingers 144 oppose the turning of the actuation button 132 relative to the setting shaft 140, a latching force that must first be overcome so that a relative rotation is possible.
  • the spring hardness of the locking fingers 144 is dimensioned such that the relative rotation of the actuating button 132 with respect to the setting shaft 140 only occurs when the section modulus 12 caused by the resistance moment is greater than the torque to be used for a normal adjustment of the type tapes.
  • this is the case when one of the projections 100 or 102 runs against the upper edge of the pressure web 42. Only then does the actuation button 132 slip on the end region 128 of the setting shaft 140, the latching fingers 144 being deflected radially inward by the projections 136. In this way, damage to the printing unit is prevented when a torque that is above the limit torque is applied.
  • an adjusting member 152 comparable to the adjusting member 112 is used, which can be inserted into the inner cavity of the end region 128 of the adjusting shaft 140.
  • the adjusting member 152 carries four stiffening elements on one side of a disk 154 and a locking member 158 each between two adjacent stiffening members 156.
  • the stiffening elements 156 are thickened at 160 in the region of their connection to the disk 154, so that the adjusting member 152 is inserted only in such a position can be that the stiffening elements 156 come to lie axially in line with the locking fingers 144. Only in this position is there space in the groove 150 for the thickening shown at 160.
  • the stiffening elements 156 rest with their heads 162 on the rear surfaces of the locking fingers 144, so that they increase their spring hardness, since the locking fingers 144 can only be deflected radially inward if the stiffening elements 156 are deflected inwards at the same time.
  • the spring hardness of the locking fingers 144 is increased more or less. The effect can also be caused by a thickening of the stiffening elements 156 the stiffening elements 156 act on the spring hardness of the locking fingers 144.
  • the locking members 158 When inserting the adjusting member 152, the locking members 158 come into contact with the rear surfaces of the locking hooks 148. This prevents any deflection of the locking hooks 148 radially inward, which contributes to the fact that the actuating button 132 is held very securely on the end region 128 of the adjusting shaft 140. When the adjusting member 152 is inserted, the operating button 132 cannot be pulled off the adjusting shaft 140.
  • the described constructive designs of the actuating buttons and the end regions of the adjusting shafts ensure that the actuating button is held securely on the associated adjusting shaft and can only be rotated relative to the adjusting shaft when a certain limit torque is exceeded.
  • the limiting torque can be adapted to the respective requirements by acting on the spring hardness of the locking fingers.
  • the torque-limiting device that can be transferred to the type carrier is not arranged between the actuation button 170 and the setting shaft 172, but between its end facing away from the actuation button 170 and an additional component, namely a driver carrier 174 that carries the drivers 176 that engage the grooves in the inner peripheral surfaces of the dials 34.
  • the driver carrier 174 can be inserted into the axial feedthrough 178 of the setting shaft 172 and it is provided with resilient locking fingers 180 which engage in locking grooves 182, which engage in the inner circumferential surface of the axial bushing 178 of the setting shaft 172.
  • the carrier carrier 174 also has resilient locking hooks 184 which engage in a circumferential groove 186 made in the inner circumferential surface of the axial bushing 178.
  • an adjusting member 188 is provided which, like the adjusting members of the previously described embodiments, has stiffening elements which are rigidly connected to one another by a disc 190 and which are inserted through an axial opening 194 in the driver carrier 174 can be and come in contact with the axially inner surfaces 196 of the detent fingers 180 when inserted.
  • stiffening elements 192 the spring hardness of the locking fingers 180 is increased more or less.
  • Locking members 198 are also attached to the disc 190 of the adjusting member 188, which can also be inserted into the opening 194 in the carrier carrier 174 and come into contact with the axially inner surfaces 200 of the locking hooks 184 in the inserted state.
  • the locking members 198 bring about a considerable stiffening of the locking hooks 184, so that the driver carrier 174 is held very securely in the setting shaft 172 due to the interaction of the locking hooks 184 and the circumferential groove 186.
  • the special design of the carrier carrier 174 thus ensures that only a certain torque can be transmitted to the respective type carrier engaged with the carrier 176 by acting on the actuating button 170, so that damage to the Printing unit can be prevented by applying too much torque after the attachment means limiting the adjustment path of the type carrier.

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  • Steering Control In Accordance With Driving Conditions (AREA)
  • Die Bonding (AREA)
  • Impact Printers (AREA)
  • Glass Compositions (AREA)
  • Printers Characterized By Their Purpose (AREA)
  • Pens And Brushes (AREA)
  • Chair Legs, Seat Parts, And Backrests (AREA)
  • Ink Jet (AREA)
  • Non-Silver Salt Photosensitive Materials And Non-Silver Salt Photography (AREA)
  • Printing Plates And Materials Therefor (AREA)
  • Labeling Devices (AREA)
  • Inks, Pencil-Leads, Or Crayons (AREA)
  • Printers Or Recording Devices Using Electromagnetic And Radiation Means (AREA)
  • Handling Of Sheets (AREA)
  • Impression-Transfer Materials And Handling Thereof (AREA)
  • Mechanical Control Devices (AREA)

Claims (18)

  1. Groupe d'impression comprenant plusieurs porte-caractères (12 ; 34) comportant sur une partie de leur surface circonférentielle extérieure des caractères d'impression et sur une autre partie de cette surface, des caractères de lecture (44), un mouvement de révolution des porte-caractères (12 ; 34) permettant de mettre les caractères d'impression à une position souhaitée d'impression, ledit groupe comprenant par ailleurs un mécanisme de positionnement (32, 132, 170 ; 20, 140, 172 ; 24, 174, 176) qui comporte un bouton de manipulation (32) avec lequel il est solidarisé axialement et qu'un déplacement axial permet de mettre en liaison d'entraînement avec chaque porte-caractères individuel (12 ; 34) afin de lui imprimer un mouvement de révolution, ainsi que des organes de butée (100, 102, 104, 106, 110) destinés à limiter la course de révolution des porte-caractères (12 ; 34), le mécanisme de positionnement (20 ; 24) étant équipé d'un dispositif de limitation du couple de rotation transmissible au moyen du bouton de manipulation (32), caractérisé en ce que le dispositif de limitation du couple de rotation comprend des éléments élastiques d'arrêt (96 ; 114 ; 180) qui retiennent le bouton de manipulation (32 ; 132 ; 170) en l'empêchant de tourner par rapport au porte-caractères qui a été mis en liaison d'entraînement avec le mécanisme de positionnement (32, 132, 170 ; 20, 140, 172 ; 24, 174, 176), ladite retenue étant produite par lesdits éléments élastiques d'arrêt avec un moment d'arrêt qui est déterminé par la raideur de ceux-ci et qui est supérieur au couple de rotation nécessaire à imposer un mouvement de révolution aux porte-caractères (12 ; 34), et en ce qu'un organe de réglage (112 ; 152 ; 188) peut être mis en prise avec les éléments d'arrêt (96 ; 114 ; 180) pour faire varier la raideur de ces derniers.
  2. Groupe d'impression selon la revendication 1, caractérisé en ce que les éléments d'arrêt (96 ; 132) sont combinés avec le bouton de manipulation (32 ; 132) et avec l'extrémité, supportant ce dernier, d'un arbre de positionnement (20 ; 140) passant axialement par une ouverture centrale (35) des porte-caractères (12) ainsi que par une ouverture centrale (35) de roues de positionnement (34) destinées à imprimer un mouvement de révolution aux porte-caractères.
  3. Groupe d'impression selon la revendication 2, caractérisé en ce que les éléments d'arrêt sont des épaulements (96) orientés axialement, placés sur le bouton de manipulation et mis en prise avec des surfaces d'arrêt (66) que comporte l'arbre de positionnement (20).
  4. Groupe d'impression selon la revendication 3, caractérisé en ce que le bouton de manipulation (32) se compose d'une douille extérieure (82) et d'une douille intérieure (84) reliée à la précédente le long de la cloison frontale (86) du bouton de manipulation (32), en ce que la douille intérieure (84) comporte des fentes axiales (94) assurant la formation des épaulements d'arrêt (96), en ce qu'un tronçon de l'extrémité (28) de l'arbre de positionnement (20) supportant le bouton de manipulation (32) est en coupe transversale un polygone dont les surfaces latérales forment les surfaces d'arrêt (66), le nombre des surfaces d'arrêt (66) étant égal à celui des épaulements d'arrêt (96).
  5. Groupe d'impression selon la revendication 4, caractérisé en ce que le tronçon polygonal de l'extrémité (28) de l'arbre de positionnement (20) supportant le bouton de manipulation (32) est carré en coupe transversale.
  6. Groupe d'impression selon l'une des revendications 3 à 5, caractérisé par un ligament (98) de liaison entre l'extrémité libre de chaque épaulement d'arrêt (96) et un emplacement situé approximativement à mi-longueur de la douille extérieure (82).
  7. Groupe d'impression selon l'une des revendications 4 à 6, caractérisé en ce que des trous (118), par lesquels les surfaces arrière (120) des épaulements d'arrêt (96), qui sont tournées du côté opposé à celui de la cavité interne (88) de la douille intérieure (84), sont accessibles, sont réalisés dans la cloison frontale (86) du bouton de manipulation (32) et en ce que l'organe de réglage (112) comprend plusieurs éléments parallèles de rigidification (116) qui sont fixement reliés les uns aux autres, qui peuvent être introduits dans les trous (118) de la cloison frontale (86) du bouton de manipulation (32) et qui, après avoir été introduits, reposent contre la surface arrière (120) des épaulements d'arrêt (96) qui est accessible par ces trous de la cloison (86).
  8. Groupe d'impression selon la revendication 7, caractérisé en ce que les éléments de rigidification (116) sont en saillie perpendiculairement sur un disque (114) qui les relie et qui, après introduction des éléments de rigidification (116), est en appui contre la cloison frontale (86) du bouton de manipulation (32).
  9. Groupe d'impression selon l'une des revendications 4 à 8, caractérisé en ce que la cavité interne (88) de la douille intérieure (84) comporte un rétrécissement (90) de section circulaire au niveau de la cloison frontale (86) du bouton de manipulation (32), en ce que l'arbre de positionnement (20) comporte directement à l'extrémité un bourrelet (68) et, derrière ce dernier, une gorge circonférentielle (70), le diamètre du bourrelet (68) étant supérieur au diamètre intérieur de la cavité interne (88) au niveau du rétrécissement (90) et le diamètre de la gorge (70) est égal à ce diamètre interne et en ce que l'arbre de positionnement (20) comporte une fente diamétrale (72) à l'extrémité (28) qui supporte le bouton de manipulation (32).
  10. Groupe d'impression selon la revendication 2, caractérisé en ce que les éléments d'arrêt sont des épaulements d'arrêt (144) orientés axialement, situés à l'extrémité (128) de l'arbre de positionnement (140) qui supporte le bouton de manipulation (132) et qui sont en prise avec des rainures axiales d'arrêt (138) réalisées dans la surface interne de la paroi (133) du bouton de manipulation (132) qui enserre l'arbre de positionnement (140).
  11. Groupe d'impression selon la revendication 10, caractérisé en ce que l'arbre de positionnement (140) comporte, au moins à l'extrémité (128) qui supporte le bouton de manipulation (132), une traversée axiale (143) et en ce que des fentes (142) orientées axialement sont réalisées dans la paroi (141) de l'arbre de positionnement (140) qui enveloppe la traversée axiale (143) afin de former les épaulements d'arrêt (144).
  12. Groupe d'impression selon la revendication 10 ou 11, caractérisé en ce que des crochets élastiques de blocage (146) réalisés sur l'arbre de positionnement (140), en plus des épaulements d'arrêt (144), sont engagés dans une gorge (150) orientée dans la direction de la circonférence et réalisée dans la surface intérieure de la paroi (133) du bouton de manipulation (132) qui enserre l'arbre de positionnement (140) afin d'interdire un déplacement axial du bouton de manipulation (132).
  13. Groupe d'impression selon l'une des revendications 10 à 12, caractérisé en ce que l'organe de réglage (152) comporte plusieurs éléments de rigidification (156) fixement reliés les uns aux autres, qui peuvent être introduits dans la traversée axiale (143) de l'arbre de positionnement (140) et, après introduction, reposent contre la surface axiale intérieure des épaulements d'arrêt (144).
  14. Groupe d'impression selon la revendication 1, caractérisé en ce que le bouton (170) de manipulation du mécanisme de positionnement est monté sur une extrémité d'un arbre de positionnement (172) passant axialement par l'ouverture centrale (35) des porte-caractères (12, 34) et sur l'autre extrémité duquel est monté un porte-tocs (174), et en ce que les éléments d'arrêt (180) sont combinés avec l'arbre de positionnement (172) et avec le porte-tocs (174).
  15. Groupe d'impression selon la revendication 14, caractérisé en ce que les éléments d'arrêt sont des épaulements d'arrêt (180) placés sur le porte-tocs (174), se prolongeant axialement dans une traversée longitudinale (178) de l'arbre de positionnement (172) et mis en prise avec des rainures axiales d'arrêt (182) se trouvant dans la surface circonférentielle intérieure enveloppant la traversée longitudinale (178) de l'arbre de positionnement (172).
  16. Groupe d'impression selon la revendication 15, caractérisé en ce que des crochets élastiques de blocage (184) que comporte le porte-tocs (174), en plus des épaulements d'arrêt (180), pénètrent dans une gorge (186) orientée dans la direction de la circonférence et réalisée dans la surface circonférentielle intérieure de la traversée longitudinale (178) de l'arbre de positionnement (172) afin d'empêcher un déplacement axial du porte-tocs (174) par rapport à l'arbre de positionnement (172).
  17. Groupe d'impression selon l'une des revendications 14 à 16, caractérisé en ce que l'organe de réglage (188) comprend plusieurs éléments de rigidification (192) fixement reliés les uns aux autres, pouvant être introduits dans une traversée axiale (194) du porte-tocs (174) et, après introduction, reposant contre la surface axiale interne (196) des épaulements d'arrêt (180).
  18. Groupe d'impression selon la revendication 17, caractérisé en ce que l'organe de réglage supporte, en plus des éléments de rigidification (192), des organes de verrouillage (198) qui peuvent aussi être introduits dans la traversée axiale (194) du porte-tocs (174) et qui, après introduction, portent contre la surface axiale intérieure des crochets de blocage (184).
EP87112468A 1986-10-21 1987-08-27 Elément d'impression Expired - Lifetime EP0264584B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
AT87112468T ATE63862T1 (de) 1986-10-21 1987-08-27 Druckwerk.

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE3635732 1986-10-21
DE3635732A DE3635732C1 (de) 1986-10-21 1986-10-21 Druckwerk

Publications (3)

Publication Number Publication Date
EP0264584A2 EP0264584A2 (fr) 1988-04-27
EP0264584A3 EP0264584A3 (en) 1988-09-14
EP0264584B1 true EP0264584B1 (fr) 1991-05-29

Family

ID=6312125

Family Applications (1)

Application Number Title Priority Date Filing Date
EP87112468A Expired - Lifetime EP0264584B1 (fr) 1986-10-21 1987-08-27 Elément d'impression

Country Status (9)

Country Link
US (1) US4744295A (fr)
EP (1) EP0264584B1 (fr)
JP (1) JPS63109081A (fr)
AT (1) ATE63862T1 (fr)
AU (1) AU576454B2 (fr)
CA (1) CA1278951C (fr)
DE (2) DE3635732C1 (fr)
DK (1) DK163421C (fr)
NO (1) NO163179C (fr)

Families Citing this family (5)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE3635733A1 (de) * 1986-10-21 1988-05-05 Esselte Meto Int Gmbh Druckwerk
US5353704A (en) * 1993-07-09 1994-10-11 Wildewood Creative Products, Inc. Stamping apparatus and method for forming a stamp and stamping using elongated members
TW415377U (en) * 1996-12-24 2000-12-11 Kazunosuke Makino Character wheel, character wheel band and character wheel ring
KR100443184B1 (ko) 1999-09-14 2004-08-04 미쓰비시덴키 가부시키가이샤 오일컨트롤밸브
JP4959619B2 (ja) * 2008-03-28 2012-06-27 株式会社サトー知識財産研究所 印字器の印字選択装置およびその操作部材の組立て方法

Family Cites Families (8)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB1402722A (en) * 1971-06-23 1975-08-13 Monarch Marking Systems Inc Lable printing and applying machine
JPS5947126B2 (ja) * 1976-06-25 1984-11-16 三菱自動車工業株式会社 2サイクルエンジン
US4323010A (en) * 1979-11-19 1982-04-06 Monarch Marking Systems, Inc. Selective printing apparatus
JPS5712418U (fr) * 1980-06-26 1982-01-22
JPS584461Y2 (ja) * 1980-07-11 1983-01-25 橋本 和雄 無端「す」式海苔製造機における脱水装置
DE3406791C1 (de) * 1984-02-24 1985-11-14 Esselte Pendaflex Corp., Garden City, N.Y. Druckwerk
DE3406762C1 (de) * 1984-02-24 1985-11-14 Esselte Pendaflex Corp., Garden City, N.Y. Druckwerk
DE3635733A1 (de) * 1986-10-21 1988-05-05 Esselte Meto Int Gmbh Druckwerk

Also Published As

Publication number Publication date
DK552087A (da) 1988-04-22
US4744295A (en) 1988-05-17
DK163421B (da) 1992-03-02
EP0264584A3 (en) 1988-09-14
NO874294L (no) 1988-04-22
DE3770405D1 (de) 1991-07-04
DE3635732C1 (de) 1988-02-25
NO874294D0 (no) 1987-10-14
DK163421C (da) 1992-07-20
NO163179C (no) 1990-04-18
AU7944287A (en) 1988-05-05
CA1278951C (fr) 1991-01-15
ATE63862T1 (de) 1991-06-15
AU576454B2 (en) 1988-08-25
DK552087D0 (da) 1987-10-21
JPS63109081A (ja) 1988-05-13
EP0264584A2 (fr) 1988-04-27

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