EP3113891A2 - Coulisseau porte-outil - Google Patents

Coulisseau porte-outil

Info

Publication number
EP3113891A2
EP3113891A2 EP15709659.5A EP15709659A EP3113891A2 EP 3113891 A2 EP3113891 A2 EP 3113891A2 EP 15709659 A EP15709659 A EP 15709659A EP 3113891 A2 EP3113891 A2 EP 3113891A2
Authority
EP
European Patent Office
Prior art keywords
slide
sliding
guide
driver
bed
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.)
Granted
Application number
EP15709659.5A
Other languages
German (de)
English (en)
Other versions
EP3113891B1 (fr
Inventor
Markus Meyer
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.)
Voestalpine Camtec GmbH
Original Assignee
Voestalpine Giesserei Linz 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 Voestalpine Giesserei Linz GmbH filed Critical Voestalpine Giesserei Linz GmbH
Priority to EP17161167.6A priority Critical patent/EP3238848B1/fr
Publication of EP3113891A2 publication Critical patent/EP3113891A2/fr
Application granted granted Critical
Publication of EP3113891B1 publication Critical patent/EP3113891B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

Links

Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C17/00Hand tools or apparatus using hand held tools, for applying liquids or other fluent materials to, for spreading applied liquids or other fluent materials on, or for partially removing applied liquids or other fluent materials from, surfaces
    • B05C17/005Hand tools or apparatus using hand held tools, for applying liquids or other fluent materials to, for spreading applied liquids or other fluent materials on, or for partially removing applied liquids or other fluent materials from, surfaces for discharging material from a reservoir or container located in or on the hand tool through an outlet orifice by pressure without using surface contacting members like pads or brushes
    • B05C17/00583Hand tools or apparatus using hand held tools, for applying liquids or other fluent materials to, for spreading applied liquids or other fluent materials on, or for partially removing applied liquids or other fluent materials from, surfaces for discharging material from a reservoir or container located in or on the hand tool through an outlet orifice by pressure without using surface contacting members like pads or brushes the container for the material to be dispensed being deformable
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B05SPRAYING OR ATOMISING IN GENERAL; APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05CAPPARATUS FOR APPLYING FLUENT MATERIALS TO SURFACES, IN GENERAL
    • B05C17/00Hand tools or apparatus using hand held tools, for applying liquids or other fluent materials to, for spreading applied liquids or other fluent materials on, or for partially removing applied liquids or other fluent materials from, surfaces
    • B05C17/005Hand tools or apparatus using hand held tools, for applying liquids or other fluent materials to, for spreading applied liquids or other fluent materials on, or for partially removing applied liquids or other fluent materials from, surfaces for discharging material from a reservoir or container located in or on the hand tool through an outlet orifice by pressure without using surface contacting members like pads or brushes
    • B05C17/01Hand tools or apparatus using hand held tools, for applying liquids or other fluent materials to, for spreading applied liquids or other fluent materials on, or for partially removing applied liquids or other fluent materials from, surfaces for discharging material from a reservoir or container located in or on the hand tool through an outlet orifice by pressure without using surface contacting members like pads or brushes with manually mechanically or electrically actuated piston or the like
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D28/00Shaping by press-cutting; Perforating
    • B21D28/24Perforating, i.e. punching holes
    • B21D28/32Perforating, i.e. punching holes in other articles of special shape
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D28/00Shaping by press-cutting; Perforating
    • B21D28/24Perforating, i.e. punching holes
    • B21D28/32Perforating, i.e. punching holes in other articles of special shape
    • B21D28/325Perforating, i.e. punching holes in other articles of special shape using cam or wedge mechanisms, e.g. aerial cams
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B21MECHANICAL METAL-WORKING WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21DWORKING OR PROCESSING OF SHEET METAL OR METAL TUBES, RODS OR PROFILES WITHOUT ESSENTIALLY REMOVING MATERIAL; PUNCHING METAL
    • B21D37/00Tools as parts of machines covered by this subclass
    • B21D37/14Particular arrangements for handling and holding in place complete dies
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B1/00Presses, using a press ram, characterised by the features of the drive therefor, pressure being transmitted directly, or through simple thrust or tension members only, to the press ram or platen
    • B30B1/40Presses, using a press ram, characterised by the features of the drive therefor, pressure being transmitted directly, or through simple thrust or tension members only, to the press ram or platen by wedge means
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B30PRESSES
    • B30BPRESSES IN GENERAL
    • B30B15/00Details of, or accessories for, presses; Auxiliary measures in connection with pressing
    • B30B15/02Dies; Inserts therefor; Mounting thereof; Moulds
    • B30B15/026Mounting of dies, platens or press rams
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B65CONVEYING; PACKING; STORING; HANDLING THIN OR FILAMENTARY MATERIAL
    • B65DCONTAINERS FOR STORAGE OR TRANSPORT OF ARTICLES OR MATERIALS, e.g. BAGS, BARRELS, BOTTLES, BOXES, CANS, CARTONS, CRATES, DRUMS, JARS, TANKS, HOPPERS, FORWARDING CONTAINERS; ACCESSORIES, CLOSURES, OR FITTINGS THEREFOR; PACKAGING ELEMENTS; PACKAGES
    • B65D83/00Containers or packages with special means for dispensing contents
    • B65D83/0055Containers or packages provided with a flexible bag or a deformable membrane or diaphragm for expelling the contents

Definitions

  • the invention relates to a tool slide.
  • Wedge drives are used in tools in metalworking, eg in forming presses. Associated with these wedge drives are usually facilities or tools that allow Stan ⁇ zen or otherwise deforming.
  • a conventional wedge drive has an upper guide member comprising a sliding ⁇ berelement and a slider guide element and a lower guide member comprising a driving element and vice versa. The wedge drives are moved by the slider guide element by a drive applying a generally vertical pressing force.
  • On the part of the driver element wedge drives are mounted in the tool or the press on a base plate on which the workpiece to be machined is placed directly or via a corresponding support device.
  • a wedge drive for redirecting a vertical pressing force in an angularly acting for the forming process force is known.
  • This wedge drive consists of a drive wedge, acts on the vertical force of a corre sponding ⁇ working press, and a slide wedge, which transmits the force in the horizontal.
  • the driver wedge and the slide wedge run either over a rounded cooperating region or, in another embodiment, over a roller.
  • a wedge press with a prism-shaped wedge guide is known, wherein the contact surfaces are roof-shaped or channel-like and wherein extending roof or gutter over the entire pressure receiving width of the wedge.
  • overhead wedge drives used in the body industry consist of a driver, a slider, and a slider receiver.
  • On the top of the slider recording acts a vertical force that pushes the slide ⁇ berfact down.
  • the driver is firmly anchored in the tool, so that when pressed on the slide holder of the anchored in the slide holder slide is pressed in a belie ⁇ bige direction outside the vertical direction.
  • the slider depends in his leadership movable in the slide holder.
  • the driver sits rigidly in the lower part and specifies the working direction of the slider.
  • the spring-loaded slider sets on the driver and is pushed by the continuing slide holder over the driver surface in the working direction.
  • a wedge drive is known, which is producible in egg ⁇ nem continuously industrial production process and should have long service life.
  • angle brackets are present, which are formed of bronze and the sliding blocks mounted in the angle of graphite verf ⁇ gene.
  • this wedge drive for deflecting a vertical pressing force with a driver, a slider and a slide holder is equipped , wherein the driver has a prism ⁇ leadership and the travel of the slider on the Trei ⁇ ber is shorter than the travel of the slider on the Schie ⁇ berfact and the ratio of travels to each ⁇ at least 1 to 1.5 and the angle between the travel distances are 50 ° to 70 °.
  • the driver element has a prismatic surface, wherein the flanks of the prismatic surface are formed sloping outwardly.
  • this wedge drive has forced return clamps on two opposite sides in respective grooves of the slide element and the driver element. In this way, in the case of a breakage of the slider element in its starting position retrieving spring element ensures a return of the slider element at spring break and thereby to avoid tearing out of screwed punching elements.
  • the slider element is attached to the slider guide member via the angle brackets and retaining screws and can be moved along the angle strips relative to the slider guide element.
  • the guide brackets engage in this form-fitting manner in the slider guide element, whereby the slide member depends on the guide guide elements on the slide guide element via this positive engagement.
  • the movable slide element When the rear stroke, in which the press tool has exceeded its lower suction point and its two parts move apart again, usually the movable slide element is pushed back by means of a spring element designed accordingly ⁇ elastic in its original position, after which the process can be restarted.
  • the force required to get back to the slide member ⁇ retraction force is üb ⁇ SHORT- between 2% and 10% of the actual working ⁇ force and the weight of the slide element.
  • the size of the pressing force here are the dimensions of the pressure-transmitting surfaces referred to as sliding surfaces be the respective inclinations of linear guides in the slider element recording and tilting of the driver element as well as the interaction of the surfaces and inclinations and the construction of the ⁇ slider element itself be decisive.
  • the bearing to ⁇ pressures are usually between ⁇ 100 kN up to several 10,000 kN.
  • the linear guide is to cause backlash in the sliding ⁇ berelementam the movable valve member and thereby has to endure high press forces and realize a long service life.
  • a tolerance of the running accuracy of the movable slide element a tolerance of 0.02 mm is specified.
  • such wedge drives or slide consist of a Schieberbaugrup ⁇ pe, which in turn consists of a driver, a slide part and a slide bed.
  • the slide part is fastened with retaining elements on the slide bed, wherein the slide ⁇ part is slidably suspended between the driver and slide bed.
  • Corresponding bevels on slide bed and driver are arranged inclined in opposite directions, so that the slide member "pushed out” when moving together slide valve and driver between the two parts. Since, as already stated, this very large forces act, a corresponding Füh ⁇ tion must be provided.
  • the known guides here are the cover strip guide, the guide with guide clips, the guide with guide columns and the dovetail guide (DE 10 2007 045 703 AI).
  • the wedge drive should have a Schiebeelementaufnähme, a movable slide slide and a driver and is formed with sliding surfaces between the slide carriage and the driver element, wherein at least one sliding ⁇ surface chucking be present should, which simulates the pressing force adjustable during assembly of the working tool, for producing a backlash between the at least one slide slide and the at least one slider receptacle.
  • the object of the invention is to provide a slider guide, which has optimized space and power transmission properties with improved assembly capability.
  • Another object is to provide a method of compensating for a manufacturing offset between a slider body and the driver.
  • the web may in particular be prism-shaped, in particular dovetail-shaped.
  • the guide play by a wedge surface ⁇ setting bar, for which purpose a separate sliding member is provided.
  • this guide is applied to a known slide assembly consisting of driver, slide part and slide bed, the slide part in the slide bed is hung in a sliding manner. Between the driver and the sliding ⁇ berteil sliding pairings are arranged.
  • the slide bed has the recess for receiving the spring, wherein on the outside of the spring and on the actual sliding surface, a sliding element is formed.
  • the sliding element is formed with a wedge-shaped surface or bevel.
  • This bevel or wedge shape can here be formed slightly wedge-like on the groove-side surface of an L-shaped sliding element, then the groove is formed with a corresponding surface, in particular a corresponding inclined surface.
  • both sliding elements or only one sliding element may be formed slightly wedge-like and have the slope or wedge-shaped surface.
  • the slide centered by the guide prism on the driver in the position in the tool - the Gleitele ⁇ elements between the slide part and slide bed are adapted to the centered position of the slide part.
  • the guide clearance between the slide bed and the slide ⁇ body is changed, ie in particular reduced.
  • the L-shaped sliding element can in this case also be made of flat individual sliding elements which are L-shaped with respect to one another.
  • the adjustment of the slide bed to the slider body can be achieved by oppositely displacing the slide strips.
  • the invention is exemplified erläu ⁇ tert reference to a drawing. It shows:
  • Figure 1 a tool slide according to the invention in a sectional view
  • Figure 2 the slide bed of the slide according to the invention with the settings of the slide strips
  • FIG. 3 shows the setting state according to FIG. 2 in a view from FIG
  • Figure 4 the slide bed of Figure 2 in a further Verstellansicht the strips.
  • Figure 5 the setting of Figure 4 in a view from behind. a tool slide in the off-hook condition with the driver below, with the prism guide in an unfixed condition with gaps; the tool slide of Figure 6 in the contracted state, wherein the production-related offset on the gap dimensions and the centering on the Trei ⁇ ber is set;
  • FIG. 8 shows the tool slide according to FIG. 6 in the contracted state with defined gap dimensions after setting the guide play via the adjustable strips
  • FIG. 9 shows a slider with cover strip guide according to the prior art
  • FIG. 10 shows a slider with column guide according to the prior art
  • Figure 11 a slider with staple guide according to the prior
  • FIG. 12 shows a slide with dovetail guide according to FIG. 12
  • FIG. 13 shows a further embodiment of the invention
  • FIG. 14 shows the slide according to FIG. 13 in a partially cutaway view
  • FIG. 15 shows a further embodiment according to the invention of the slide according to the invention with a slide strip fixing accessible from the outside;
  • FIG. 16 shows the slide according to FIG. 15 in a partially cutaway view
  • An inventive tool slide 1 has a slide bed 2, a slider body 3 and a driver. 4
  • the slide part 3 is arranged hanging on the slide bed 2 in the case shown, wherein the slider part 3 from the driver 4 can be lifted ⁇ .
  • the driver 4 is usually arranged in a first (in the case shown the lower) mold half, while the slide part 3 is arranged on the slide bed 2 on a corresponding second (upper) mold half (not shown).
  • the slide bed 2 is approximately box-shaped and has an elongated rectangular groove 5, wherein in addition to the L Lucas ⁇ Lich rectangular groove 5 screw holes 6 for receiving corresponding screws (not shown) are provided.
  • the groove and the adjacent, the groove defining surfaces 7 form a support surface for L-shaped sliding strips 8, which rest on the surfaces 7 and hineinersummen with an L-leg 9 in the groove.
  • the L-shaped sliding strips 8 have mounting holes 10 for screwing mounting screws for placement in the screw holes. 6
  • the L-shaped wear strips 8 have the groove center towards oriented diverging surfaces 11 with which they define a prismati ⁇ rule space between them.
  • the L-shaped slide strips 8 Towards the slider body 3, the L-shaped slide strips 8 have sliding surfaces 12, which are planar and perpendicular to an X-axis 13 shown.
  • the slider body 3 has sliding surfaces or sliding strips 14 which correspond to the surfaces 12 and are designed as sliding partners to the L-shaped slide strips 8.
  • the guide bar 15 Symmetrically to the vertical axis extends between the sliding strips 14 as a spring 15, a guide member 15 or guide bar 15 up into the groove 5 in.
  • the guide bar 15 has ⁇ in particular a prismatic cross-section.
  • the guide bar 15 has elongated prismatic surfaces 16, with de ⁇ nen he can rest on the surfaces 11 of the L-shaped wear strips 8.
  • the slider body further has slide strips 17 which are based on the X-axis 13 inclined at ⁇ arranged and having prismatic sliding surfaces 18 of the Trei- bers 4 correspond.
  • the strips 17 form, as they are connected to the slider body, lift-off sliding strips, which are brought along when moving together of the upper tool part and the lower tool part in operative connection with the surfaces 18.
  • the roof-like inclined corresponding sliding elements 17, 18 between the slider body and driver form a so-called prism guide.
  • the leadership of the slider body in the slider ⁇ bed must be adjustable or the slide strips 8 and the guide bar 15 must be adjusted to each other.
  • the mounting holes 10 in the slide ⁇ afford 8 designed as slots so that they along the mounting screws 20 and thus along an adjustment direction 21 are displaced.
  • the displacement of the slide strips 8 along the direction 21 does not change any existing gaps or distances between the surfaces of the slide strips 8 and the L-leg 9 and the surfaces 16 of the guide web 15. Based on the longitudinal extent and the direction 21 therefore Contact surfaces 22 of the L-leg 9 of the L-shaped sliding strips 8 on the slide bed 2 obliquely.
  • This means that the short L Leg 9, which protrude into the groove 5, based on the Rich ⁇ tion 21 are slightly wedge-shaped and change their thickness relative to the longitudinal extent.
  • the wedge shape or slope has, for example, a slope of 1-5 degrees.
  • the contact surfaces 11 on the L-legs 9 of the L-shaped sliding strips 8 are directed to corresponding corresponding surfaces 16 of the guide web 15.
  • the groove side walls 19 are also formed obliquely with corresponding chamfers or wedge-like.
  • a displacement along the direction 21 thus causes the slide strips 8 are moved toward the guide bar 15 or moved away from it. Since this is at the same time an approximation of the wear strips or removal of the wear strips in the transverse direction, i.
  • Direction 23 causes the elongated holes 10 are formed so that a floating bearing is also made possible in the direction 23 around the screws 20 around.
  • a displacement along the direction 21 thus causes, due to the corresponding inclined surfaces 19/22, the distance between the L-legs 9 and the surfaces 16 is reduced or eliminated.
  • both both slide strips 8 and only one slide bar 8 can be moved.
  • the setting can, for example, from a Antschpo ⁇ sition of the screws 20 in the slots 10 (Fig. 4) are made.
  • a gap 25 exists between a corresponding wall 16 (FIG. 5) of the guide web 15 and the corresponding wall 11 of the sliding strips 8. If now the L-shaped slide strips 8 are displaced according to the direction 21 (FIG. 2), the gap 25 (FIG. 3) is thereby closed by the oblique surfaces 11.
  • this can be used to adjust a production-related offset between the slide bed with slider part in the slide upper part and the driver in the lower part (FIGS. 6 to 8).
  • the slide bed with slide part with play Zvi ⁇ rule is the wear strips 8 and the guide bar 15 mounted on the tool.
  • the gaps between the corresponding surfaces 11 of the L-legs 9 and 16 of the guide web 15 each have a gap with a gap, which depends on the Nei ⁇ tion of the slope, the manufacturing tolerances and the position of the slide parts to each other.
  • Figures 15, 16 show an example of the guide bar 8, which is designed in length so that one of the slots 20 is exposed with the fixing screw 27 at the rear end of the slider in the contracted state, and the position of the sliding ⁇ bar 8 thereby on the screw can be fixed.
  • FIGs 13, 14 show a further solution for the arrangement of the fixing device 26.
  • a screw 29 inserted in a counterbore 28 of the slide strip 8 engages through a slot 30 in the slide bed 2, and a counter piece 31 arranged underneath the counter piece means connected with a threaded adjusting screw 32 will be moved to the La ⁇ ge 33, whereby the position of the slide bar 8 fits.
  • this clamps on the counter piece 31 in the slide bed 2, which leads to the backup of the set guide clearance.
  • Other fasteners of the slide bar are accessible after moving apart of the slider.
  • the invention thus relates to a tool slide, in particular a wedge drive, which comprises at least one slide bed 2 and a slide part 3, wherein the slide part 3 on the slide ⁇ bed 2 is slidably disposed and for receiving Querkräf ⁇ th a groove 5 and a projecting into the groove Bridge 15 provided are defining a transverse movement of the slider member 3 in the slide ⁇ bed 2, wherein a sliding member is between the ridge 15 and the groove 5 to ⁇ least 8 is provided with a detachable from the slide member 3 driver 4 is present and between the slide member 3 and the Driver in the attached state, a prismatic guide of slanted elements 17 of the slider body 3 and corresponding inclined surfaces 18 of the driver 4, wherein between the slide bed 2 and the slider body 3, a flat guide is formed such that sliding elements 8 of the slide bed 2 and correspon ⁇ ing sliding elements 14th of the slider body 3 with respect to an x-axis 13 are arranged vertically, so that a BEWE ⁇ movement transversely to
  • the invention also relates to a tool slide in which the sliding member 8 to the groove 5 towards a wedge-like, ⁇ slanted surface 22, with which it rests on a corre sponding ⁇ surface 19 of the groove wall 5 and the corresponding groove wall 19 via a corresponding wedge-like chamfer has, so that an axial displacement of the sliding ⁇ telements 8 corresponding to a longitudinal axis direction 23, a gap 25 between the web 15 and sliding element 8 is reduced or increased.
  • the invention relates to a tool slide in which the sliding elements L-shaped sliding strips 8 or sliding plates 8, which have the groove center facing surfaces 11, with which they define a gap between them and the slider body 3 through sliding surfaces 12 have, which is essentially flat and are formed vertically with respect to an X-axis 13, wherein the guide member 15 or the guide web 15 extends symmetrically to the vertical axis up into the groove 5, wherein the guide web 15 elongated Has surfaces 16, with which it is formed adjacent to the surfaces 11 of the L-shaped slide strips 8.
  • the invention relates to a method for compensating a production-related offset in a tool slide, in particular a tool slide, wherein the tool slide comprises a slide bed 2, a slider body 3 and a driver 4, wherein formed between the slider body 3 and the driver 4, a self-centering guide is that when placing the slider body 2 on the Trei ⁇ ber 4 the slider body 3 centered on the driver 4 transverse to an x-axis 13 and the slider body 3 is mounted on the slide bed 2 via a flat guide transverse to the x-axis floating such that the production-related offset in centering of the valve body 3 on the driver 4 in the transverse direction economicallygli ⁇ chen is, wherein sliding elements 8 are moved between the slide bed 2 and feed ⁇ berMap 3 and adjusted so after equalization of production-related offset that the sliding surfaces form-locking on a in a groove 5 according to the abut the x-axis 13 projecting web 15 and thus the swimming ⁇ mende storage is lifted transversely to the x-axis 13.

Abstract

L'invention concerne un coulisseau porte-outil, notamment un chasse-clavette, comprenant au moins une glissière (2) et une partie coulisseau (3). La partie coulisseau (3) est montée coulissante sur la glissière (2) et il existe une rainure (5) ainsi qu'une nervure (15) faisant saillie dans la rainure qui limitent un mouvement transversal de la partie coulisseau (3) dans la glissière (2) afin d'absorber les forces transversales. Au moins un élément de coulissement (8) est présent entre la nervure (15) et la rainure (5), et il existe un chassoir (4) qui peut être retiré de la partie coulisseau (3), et entre la partie coulisseau (3) et le chassoir en position montée, un guide prismatique se compose d'éléments obliques (17) du corps de coulisseau (3) et de surface inclinées (18) correspondantes du chassoir (4). Un guide plat est formé entre la glissière (2) et le corps de coulisseau (3), de telle sorte que les éléments de coulissement (8) de la glissière (2) et les éléments de coulissement (14) correspondants du corps de coulisseau (3) sont disposés verticalement par rapport à un axe X (3), ce qui permet un mouvement perpendiculairement à l'axe X (13).
EP15709659.5A 2014-03-06 2015-03-05 Coulisseau porte-outil Active EP3113891B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP17161167.6A EP3238848B1 (fr) 2014-03-06 2015-03-05 Procédé de compensation du décalage due à la fabrication dans un coulisseau porte-outil

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102014102992 2014-03-06
PCT/EP2015/054659 WO2015132353A2 (fr) 2014-03-06 2015-03-05 Coulisseau porte-outil

Related Child Applications (2)

Application Number Title Priority Date Filing Date
EP17161167.6A Division-Into EP3238848B1 (fr) 2014-03-06 2015-03-05 Procédé de compensation du décalage due à la fabrication dans un coulisseau porte-outil
EP17161167.6A Division EP3238848B1 (fr) 2014-03-06 2015-03-05 Procédé de compensation du décalage due à la fabrication dans un coulisseau porte-outil

Publications (2)

Publication Number Publication Date
EP3113891A2 true EP3113891A2 (fr) 2017-01-11
EP3113891B1 EP3113891B1 (fr) 2018-05-16

Family

ID=52672248

Family Applications (2)

Application Number Title Priority Date Filing Date
EP17161167.6A Active EP3238848B1 (fr) 2014-03-06 2015-03-05 Procédé de compensation du décalage due à la fabrication dans un coulisseau porte-outil
EP15709659.5A Active EP3113891B1 (fr) 2014-03-06 2015-03-05 Coulisseau porte-outil

Family Applications Before (1)

Application Number Title Priority Date Filing Date
EP17161167.6A Active EP3238848B1 (fr) 2014-03-06 2015-03-05 Procédé de compensation du décalage due à la fabrication dans un coulisseau porte-outil

Country Status (8)

Country Link
US (1) US20170014888A1 (fr)
EP (2) EP3238848B1 (fr)
JP (1) JP2017507035A (fr)
KR (1) KR20160131062A (fr)
CN (1) CN106414046A (fr)
DE (1) DE112015000004B4 (fr)
ES (1) ES2684107T3 (fr)
WO (1) WO2015132353A2 (fr)

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DE202015106966U1 (de) 2015-12-21 2016-01-28 Harald Weigelt Keiltrieb
DE202017100989U1 (de) 2017-02-22 2017-04-21 Fibro Gmbh Keiltrieb mit optimierter Führung
DE102017130873B4 (de) * 2017-12-21 2020-04-23 Fibro Gmbh Vorrichtung und Verfahren zur Überwachung eines Keiltriebwerkzeugs
DE202018004995U1 (de) 2018-10-17 2018-11-29 PROMESS Gesellschaft für Montage- und Prüfsysteme mbH Antrieb für ein Werkzeug
DE102022117325B3 (de) * 2022-07-12 2023-11-09 F I B R O Gmbh Schieberanordnung

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DE102005029140B4 (de) * 2005-06-23 2008-04-03 Elke Weigelt Werkzeugbefestigungseinrichtung für einen Keiltrieb
US8430385B2 (en) * 2007-09-24 2013-04-30 Harald Weigelt Wedge drive with slider receiving means
DE102007045703A1 (de) * 2007-09-24 2009-04-09 Harald Weigelt Keiltrieb mit Schieberaufnahme
DE102008061420B9 (de) * 2008-12-10 2011-02-10 voestalpine Gießerei Linz GmbH Keiltrieb
JP2011140048A (ja) * 2010-01-08 2011-07-21 Sankyo Oilless Industry Inc カム装置
KR101139272B1 (ko) * 2011-02-16 2012-04-26 주식회사 루보 캠슬라이드의 편심구동방지수단이 구비된 에어리얼 캠 유니트
DE202011108083U1 (de) * 2011-11-21 2013-02-26 Bernd Klug Vorrichtung mit zumindest einer Einrichtung zum Einstellen eines Führungsspiels
DE102012014546A1 (de) 2012-07-21 2014-01-23 Strack Norma Gmbh & Co. Kg Keiltrieb

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DE112015000004A5 (de) 2015-11-19
EP3113891B1 (fr) 2018-05-16
WO2015132353A2 (fr) 2015-09-11
WO2015132353A3 (fr) 2015-12-17
CN106414046A (zh) 2017-02-15
KR20160131062A (ko) 2016-11-15
ES2684107T3 (es) 2018-10-01
EP3238848B1 (fr) 2019-02-06
JP2017507035A (ja) 2017-03-16
EP3238848A1 (fr) 2017-11-01
US20170014888A1 (en) 2017-01-19
DE112015000004B4 (de) 2016-03-10

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