EP2125295B1 - Auswechselbares gesenk für zangen, zange mit einem solchen gesenk und aufbewahrungsvorrichtung - Google Patents

Auswechselbares gesenk für zangen, zange mit einem solchen gesenk und aufbewahrungsvorrichtung Download PDF

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Publication number
EP2125295B1
EP2125295B1 EP08717943A EP08717943A EP2125295B1 EP 2125295 B1 EP2125295 B1 EP 2125295B1 EP 08717943 A EP08717943 A EP 08717943A EP 08717943 A EP08717943 A EP 08717943A EP 2125295 B1 EP2125295 B1 EP 2125295B1
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EP
European Patent Office
Prior art keywords
die
pliers
hooks
crimping
halves
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.)
Active
Application number
EP08717943A
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German (de)
English (en)
French (fr)
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EP2125295A1 (de
Inventor
Horst Hofmann
Thomas Wagner
Georg Holland-Moritz
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.)
Rennsteig Werkzeuge GmbH
Original Assignee
Rennsteig Werkzeuge 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.)
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Publication date
Application filed by Rennsteig Werkzeuge GmbH filed Critical Rennsteig Werkzeuge GmbH
Priority to PL08717943T priority Critical patent/PL2125295T3/pl
Publication of EP2125295A1 publication Critical patent/EP2125295A1/de
Application granted granted Critical
Publication of EP2125295B1 publication Critical patent/EP2125295B1/de
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Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25BTOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
    • B25B27/00Hand tools, specially adapted for fitting together or separating parts or objects whether or not involving some deformation, not otherwise provided for
    • B25B27/14Hand tools, specially adapted for fitting together or separating parts or objects whether or not involving some deformation, not otherwise provided for for assembling objects other than by press fit or detaching same
    • B25B27/146Clip clamping hand tools
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25BTOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
    • B25B7/00Pliers; Other hand-held gripping tools with jaws on pivoted limbs; Details applicable generally to pivoted-limb hand tools
    • B25B7/02Jaws
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25BTOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
    • B25B7/00Pliers; Other hand-held gripping tools with jaws on pivoted limbs; Details applicable generally to pivoted-limb hand tools
    • B25B7/02Jaws
    • B25B7/04Jaws adjustable
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01RELECTRICALLY-CONDUCTIVE CONNECTIONS; STRUCTURAL ASSOCIATIONS OF A PLURALITY OF MUTUALLY-INSULATED ELECTRICAL CONNECTING ELEMENTS; COUPLING DEVICES; CURRENT COLLECTORS
    • H01R43/00Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors
    • H01R43/04Apparatus or processes specially adapted for manufacturing, assembling, maintaining, or repairing of line connectors or current collectors or for joining electric conductors for forming connections by deformation, e.g. crimping tool
    • H01R43/042Hand tools for crimping
    • H01R43/0424Hand tools for crimping with more than two radially actuated mandrels

Definitions

  • the invention relates to a storage device for dies pliers and exchangeable dies for pliers for pressing workpieces, for example for crimping tools for pressing electrical connection elements.
  • a storage device for dies pliers and exchangeable dies for pliers for pressing workpieces for example for crimping tools for pressing electrical connection elements.
  • By replacing the die an adaptation of the pliers to the compression to be made possible, in particular the adaptation to different types and sizes of the connecting elements to be pressed. So that not different pliers but only several dies for a single pliers must be kept for different crimping.
  • the invention further relates to a pair of pliers that can be equipped with such dies and the storage device in which such dies can be stored and with the help of a simple change of the dies on a pair of pliers is possible without additional tools.
  • the US 4,109,845 A shows a pair of pliers for fastening push buttons, in which the two receiving units for the push buttons can be replaced.
  • the recording units are each attached to one of the two jaws and secured with a screw. Tools are required to change these units, and a quick change in frequently changing tasks is impractical.
  • the DE 201 00 031 U1 discloses a pressing tongs with two mutually pivotally arranged clamping jaws on which corresponding pressing profile inserts are releasably held via a latching connection.
  • the press profile inserts can be solved individually by overcoming the locking connection of the jaws and be kept in magazine guides in the grips of the pliers, if they are not needed for a pressing operation.
  • a disadvantage of this solution is that the exchange has to be cumbersome due to an individual release and introduction of the individual press profile inserts.
  • Another disadvantage is that in the grips of the pliers, only a small number of press profile inserts can be kept and that increases the weight of the pliers by the additionally stored in the grip profile inserts. If several profile inserts stockpiled, there is also the risk that mismatched inserts selected by the user and used in the pliers, which can lead to poor Crimpterminn or even the destruction of the profile inserts.
  • the DE 198 02 287 C1 shows a pressing pliers with at least one mounted on a holding jaw replaceable pressing jaw.
  • the pressing tongs comprise a drive for in particular Scissor-like moving the holding jaws.
  • the replaceable press jaw has a lying in the contour of the holding jaw flange, which has like the holding jaw aligned holes. In the holes, a fastening screw is used, with which the pressing jaw is releasably secured to the holding jaw.
  • a cable crimping pliers which first comprises a forceps body in which a handle pair and a head formed of two platelets are connected by a hinge. In the head sits a construction of a clamping piece with two corresponding gripping surfaces. The head provides support for the two ends of a square, inlaid connector via two square, horizontal communication holes on each side. The connectors each have an attached to the opposite opposite outer sides securing ball, which corresponds to the clamping piece.
  • the clamping piece has at the outer edge a relatively narrow connecting element, which extends to the rear and thus forms the clamping element for an inner plug groove. Between the clamping element and the main body of the clamping piece, a slide-in groove is formed, by which the two inserted connecting pieces are secured in the head via the safety ball in the plug-in groove.
  • the object of the present invention is to provide a die and a storage device therefor, wherein the die can be used easily and quickly in a pair of pliers but also in the storage device.
  • the above object is achieved by a storage device according to the accompanying claim 1 and by a die according to the appended claim 6.
  • the die according to the invention is provided for a pair of pliers for pressing workpieces and comprises a first and a second die half, between which the workpiece to be pressed is introduced and receives a desired shaping by the pressing.
  • the two die halves can be inserted together into the pliers and removed together from the pliers. It thus requires only a single step to introduce the complete die in the pliers or to remove from this.
  • the two die halves each have a guide.
  • the two die halves each have a first connecting element for releasably securing the die in the pliers.
  • the two die halves each have a second connecting element for releasably securing the die in a storage device. This ensures that the formed by the two die halves die is held during or after removal from the pliers in the storage device and remains in this for storage.
  • the Gesenkhunn belonging to a die are always in this way as stored closed die, so that mixing of different die halves is excluded.
  • the two die halves but also individually be inserted into the pliers. In this case, but then two mounting steps are required, but increases the flexibility of the pliers, since different die halves can be combined.
  • the die according to the invention can be treated during the change processes as a unit consisting of the two die halves, so that an uncomplicated, tool-free handling during these operations is possible.
  • the first and second fasteners optionally enable releasable fastening in the pliers or in the storage device, so that a quick and easy change is feasible.
  • the first connecting elements are preferably formed by mouth-like locking elements, which are aligned in an insertion direction. During the insertion of the die into the pliers, the mouth-like locking elements can engage in corresponding connecting elements of the pliers and engage due to a spring load or the like. Consequently, a removal of the die formed by the two die halves can be initiated by a force opposite to the insertion direction, with which the latching force is overcome and the mouth-like locking elements emerge from the corresponding elements of the pliers.
  • the first connecting elements may be designed so that they can engage in mouth-like locking elements of the pliers.
  • the first connecting elements can also be used by others releasable fastening means, such as spring-loaded detent balls, holding magnets or pawls are formed.
  • the second connecting elements are preferably formed by hooks, which are arranged on a side facing away from the insertion direction of the respective die half.
  • the hooks are at or near an outer surface of the forceps when the die is inserted into the forceps.
  • the die can be removed from the pliers. It is then already held by the hooks in the storage device, so that no additional effort for introducing the die is required in the storage device.
  • the second connecting elements can also be formed by other releasable fastening means, such as lockable pawls.
  • the first connecting elements have preferably received a detachable connection with first holding elements of the pliers.
  • the first holding elements ensure that the two die halves are securely held in the pliers and a compression of the workpiece to be pressed is made possible.
  • the first holding elements ensure that when the pliers are subsequently opened, the die halves detach from the pressed workpiece and release it.
  • the die according to the invention is preferably designed so that the two die halves are spaced apart in an open state of the pliers, so that an insertion of the workpiece to be pressed is made possible.
  • a closed state of the pliers the two die halves are arranged adjacent to each other, that is, the die is closed, wherein the compressed workpiece is located between the two die halves and has adopted the shaping to be achieved.
  • the two die halves move toward one another in a closing direction. This closing direction is preferably aligned perpendicular to the insertion direction. This ensures that the forces acting on closing the forceps parts of the forceps do not hinder the insertion and removal of the die.
  • the first holding elements of the forceps are preferably formed by bolts, which are enclosed by the mouth-like locking elements.
  • the bolts ensure a secure attachment of the two die halves in the pliers.
  • the locking elements and bolts allow easy insertion of the die in the pliers.
  • Such a locking connection is suitable for frequent loosening and fastening.
  • the necessary for the locking connection elasticity can by a ball catch on be formed the bolt.
  • the mouth-like opening of the locking element can be made elastic or spring steel sleeve.
  • the mouth-like locking elements are arranged on the pliers, while the bolts are arranged on the die.
  • Other releasable connections between pliers and dies are possible.
  • the die has only the jaw-like locking elements and the hook preferably a simple cuboid shape when the pliers is closed. Due to this cuboid shape, the die is easy to insert into the pliers. Due to the universal cuboid shape, the die can be designed for a wide variety of press profiles. In addition, the parallelepiped shape allows an equally distributed transmission of the forces required for the pressing of the forceps on the die.
  • the mouth-like locking elements are arranged on the perpendicular to the closing direction outer sides of the cuboid shape. Such an arrangement allows a flat design of the pliers head.
  • the jaw-like locking elements preferably have at the transition to the cuboid shape of the die a rail which forms the guide for inserting the die formed by the two die halves in the pliers.
  • This rail may be formed by a flat plate whose side surfaces ensure lateral guidance.
  • Such a plate preferably has a smaller width than the cuboid shape of the die, so that a step is formed, which ensures a guide in the closing direction.
  • the hooks are each as an angled extension of one of End of the rail is formed so that the die receives a compact shape.
  • the two die halves, including the first and second connecting elements and the guide, are preferably each in one piece, for example made of hardened tool steel. Such a design allows a low-cost production and a high load capacity of the connecting elements.
  • the second connecting elements are preferably detachably connected to second holding elements of the storage device.
  • the second holding elements ensure that the two die halves are held securely in the storage device and do not fall out.
  • the second holding elements also ensure that a force for inserting the die into the pliers or for releasing the die from the pliers can be transferred from the storage device to the die.
  • the storage device may simultaneously be in the function of a gripping device for inserting and releasing the die.
  • the second holding elements of the storage device are preferably formed by pivot hooks which hook into the hooks of the two die halves.
  • the pivot hooks can be swung out of the hooks of the die halves by actuation of a release element, so that the die is no longer held in the storage device.
  • This embodiment allows a convenient transfer of the die from the storage device into the pliers. After inserting the die with the help of the storage device in the pliers has been and is engaged there, is released by actuation of the release element, the die of the storage device, so that the storage device can be removed from the pliers.
  • the pivot hooks are preferably urged toward each other by a spring. They have successive directed stop surfaces, between which a counter to the insertion direction tapered hollow wedge is formed. If a die is introduced into the storage device, it first strikes against the stop surfaces with its hooks. The hooks have in this area away from each other directed wedge surfaces through which a counter to the insertion direction tapered wedge is formed. The wedge is adapted to the wedge in terms of its dimensions. If the die is inserted into the storage device, the wedge slides into the hollow wedge and drives the pivot hooks so that they pivot away from each other. If the wedge is pushed past the hollow wedge, it releases the hooks, whereupon they swing into the hooks. This embodiment allows a quick and easy insertion of the die into the storage device.
  • the storage device of the die according to the invention is designed for example as a disc-shaped magazine, in which a plurality of dies can be inserted circumferentially.
  • the disk-shaped magazine is particularly well suited as a storage device, since it can take on the one hand a larger number of dies and on the other hand can be conveniently gripped, so that the insertion of one of the dies can be done in the pliers without difficulty.
  • the storage device of the die according to the invention may alternatively be designed as a single magazine, wherein the single magazine is detachably connectable to one or more other individual magazines, whereby a multiple magazine can be formed with multiple dies.
  • a magazine has the advantage that the composition of the dies in the magazine can be changed with little effort.
  • the die according to the invention is particularly suitable as a crimp die for pressing electrical connection elements such as ferrules or contact plugs.
  • the crimping die can have a plurality of molds for pressing different connection elements.
  • the hollow molds which can be introduced in a crimping die often do not suffice, so that further crimp dies with further hollow shapes are required.
  • the pliers can be brought into a defined Gesenk celgna. This is achieved, for example, by a pawl can be pivoted between the handles of the pliers, which maintains a minimum distance between the handles upright.
  • the die itself a locking element is mounted, with which the two die halves can be locked in a closed position to each other, so that the die remains closed even when it is removed from the pliers and not inserted into a storage unit ,
  • the locking element is preferably designed to automatically release the die halves when the die is inserted into the pliers.
  • Fig. 1 shows a crimping die 01 according to the invention, which was introduced into a crimping tool 02.
  • the crimping die 01 comprises a first die half 03 and a second die half 04, which are interconnected only indirectly via the crimping tool 02.
  • the crimping tool is shown in a closed state, in which the two die halves 03, 04 are arranged resting on each other.
  • the two die halves 03, 04 are spaced from each other (in FIG Fig. 2 shown).
  • the die halves 03, 04 move toward one another in a closing direction 06.
  • the mutually facing sides of the die halves 03, 04 have a plurality of molds 07 for crimping electrical connection elements different size.
  • this is inserted into the hollow mold 07 provided for this purpose in the first or the second die half 03, 04 when the crimping tool 02 is open. Subsequently, the crimping tool 02 is closed, so that the inserted electrical connection element experiences a deformation as a result of the pressing within the closing hollow mold 07.
  • this can be a ferrule by pressing attached to a ladder.
  • the crimping tool 02 is shown partially cut in the region of the crimping die 01, so that the crimping die 01 is completely visible.
  • Each of the two die halves 03, 04 has a mouth-like locking element 08, which are plugged onto pins 09 on the jaws of the crimping tool 02, so that between the jaw-like locking elements 08 and the pin 09 is in each case given a releasable latching connection.
  • the bolts 09 a spring sleeve 11 and ball catch, which is engaged by overcoming their spring force in the respective mouth-like locking elements 08.
  • the die 01 is detachably connected by the two latching connections with the crimping tool 02.
  • the introduction of the die 01 in the crimping tool 02 is carried out by inserting the same into corresponding receptacle, which are located on the respective jaw of the crimping tool 02, in an insertion direction 12.
  • the openings of the mouth-like locking elements 08 are aligned in the insertion direction 12 so that they in the Insert the bolts 09 and engage them.
  • the molds 07 are each arranged in a cuboid center piece 13 of the die halves 03, 04.
  • the mouth-like locking elements 08 are each a flat rail 14 with the cuboid center piece 13 of the respective Die half 03, 04 connected.
  • the flat rail 14 extends over the entire length of the crimp die 01, but it has a smaller width than the center pieces 13 of the two die halves 03, 04.
  • a step 16 is respectively formed between the rail 04 and the cuboid center piece 13, which forms a guide for the introduction of the crimp die 01 into the crimping tool 02.
  • the side surfaces of the mouth-like locking elements 08 allow lateral guidance during the introduction of the crimping die 01 in the crimping tool 02.
  • the guide can also be formed by other structural measures, such as a through opening into which engage one or more pins of the pliers.
  • the insertion direction 12 is perpendicular to the closing direction 06, so that the design of the die 01 is largely independent of its design with regard to the insertion function with regard to the crimping function. For example, this ensures that the latching connection is not released by the pressing forces when closing the pliers.
  • the flat rails 14 are each angled at one of their ends, so that a hook 17 is formed.
  • the hooks 17 are located respectively on the outwardly facing end of the rail 14, which faces away from the insertion direction 12. Thus, they are located on the periphery of the crimping tool 02.
  • the hooks 17 have no function with respect to the crimping tool 02.
  • the pliers 02 is located in the in Fig. 1 shown state in a position which allows the removal of the die 01.
  • a pawl 15 is pivoted between the two handles 20 of the forceps, which maintains a minimum distance between them.
  • the minimum distance is like that chosen that the die 01 is loosely closed but still no removal of the die blocking clamping forces occur.
  • the pliers can be completely closed in the normal operating state, the pawl 15 can swing into a handle 20 ( Fig. 2 ).
  • Another special feature of the crimping tool is the shape of the handles 20 at its end facing the pliers head.
  • the existing example of plastic sheathing of the handles is formed in this end region on the mutually facing sides of the handles to complementarily shaped closure surfaces 20a, 20b and 20c.
  • the closing surface 20a formed on the handle which is to be regarded as fixed, lies in the closed state of the forceps (FIG. Fig. 1 ) of a rear closure surface 20b on the handle to be regarded as movable handle in such a parallel opposite, that remains in substantially no gap.
  • the closure surface 20a of a front closure surface 20c of the movable handle is in turn so opposite in parallel that no larger gap between the closure surfaces remains.
  • the closure surfaces 20b and 20c on the movable handle are approximately perpendicular to each other and are connected by a rounded portion, which pivots in the opening / closing of the pliers on the opposite closure surface 20a. This shaping of the handle ends ensures that the user can not slip his fingers between the end regions of the handles facing the pliers head, which avoids the risk of clamping.
  • Fig. 2 shows the crimping tool 02 with inserted die 01 in the open state.
  • the two die halves 03, 04 are spaced from each other.
  • they are the hollow molds 07 visible, which are each formed to a part in the first die half 03 and the other part in the second die half 04.
  • the electrical connection element to be pressed can be inserted into the respective hollow mold 07 between the first die half 03 and the second die half 04.
  • Fig. 3 shows the crimping die 01 according to the invention, which is located simultaneously in the crimping tool 02 and in a disk-shaped magazine 18.
  • the Crimpgesenk 01 allows a quick and convenient replacement of the same. It can be inserted directly from the magazine 18 into the crimping tool 02. In the same way, the crimping die 01 can be inserted directly from the crimping tool 02 into the magazine 18 for storage.
  • another crimping die 19 according to the invention which is held in the magazine 18, can be introduced into the crimping tool 02.
  • the further crimping die 19 differs from the original crimping die 01 in that it has other hollow dies 07.
  • the crimping dies 19 provided in the magazine have a multiplicity of hollow dies 07, so that a variety of hollow dies 07 are available.
  • the crimping tool 02 with the aid of the magazine 18 and the crimping dies 01, 19 according to the invention can be adapted quickly and easily to many different types of electrical connecting elements to be pressed.
  • Fig. 3 the magazine 18 and the crimping tool 02 are in the region of the introduction of the crimping tool 02 into the magazine 18 shown partially cut so that the crimp die 01 is completely visible. Furthermore, pivoting hooks 21 of the magazine 18 are shown, which hold the crimping die 01 in the magazine 18. The pivot hooks 21 are hooked into the hooks 17 of the two die halves 03, 04, after the crimp die 01, which is located unchanged in the crimping tool 02, was inserted into the magazine 18. For this purpose, the area of the crimping tool 02, in which the crimping die 01 is located, was introduced into the magazine 18, for which purpose the crimping tool 02 and the magazine 18 are grasped by the user.
  • the crimping die 01 is not available for this purpose.
  • the crimping tool 02 is to be inserted into a free area of the magazine 18, in which there is no crimping die.
  • the area between the pivoting levers 21 is still free at the time before the insertion of the crimping tool 02 with the crimping die 01.
  • the hooks 17 first strike against the pivoting hooks 21.
  • the pivoting hooks 21 have contact surfaces 22 directed towards one another, between which a hollow wedge tapering counter to the insertion direction 12 is formed.
  • the hooks 17 have in this area away from each other directed wedge surfaces 23 through which a counter to the insertion direction 12 tapered wedge is formed.
  • the wedge surfaces 23 drive the pivoting hooks 21 away from each other so that they pivot away from each other and allow the hooks 17 to enter the region between the two pivoting hooks 21.
  • the two pivot hooks 21 are urged toward each other by a respective compression spring 24.
  • the two pivot Swivel hook 21 due to the force acting through the springs 24 spring forces back to each other and hook into the hook 17 a.
  • the crimping die 01 is held in the magazine 18 from this time. If a force now acts on the crimping tool 02 in relation to the magazine 18, which is directed counter to the insertion direction 12, then the crimping die 01 can not be pulled out of the magazine 18 again since the two pivoting hooks 21 hold the crimping die 01 against its hook 17. Therefore, the two locking connections between the jaw-like locking elements 08 and the pin 09 detach from a certain force, so that the crimping die slides out of the crimping tool 02. The crimping tool 02 is then separated from the magazine 18 and contains no crimping die.
  • crimping die 19 can be selected and the crimping tool 02 inserted at the position of this crimping die 19 into the magazine 18, so that in turn the crimping die 19 is inserted into the crimping tool 02.
  • the jaw-like locking elements 08 of the crimping die 19 engage in the pin 09.
  • the two associated pivot hooks 21 are pivoted away from each other and release the hooks 17 of the crimping die 19.
  • the crimping tool 02 can be pulled out together with the crimping die 19 from the magazine 18, wherein both locking connections between the mouth-like locking elements 08 of the crimping die 19 and the pin 09 of the crimping tool 02 remain engaged.
  • the crimping tool 02 is available with the other crimping die 19 for crimping the electrical connection elements suitable for the other crimping die 19.
  • Fig. 4 shows the crimp die 01 when it is in the magazine 18 after the crimping tool 02 has been removed.
  • Illustration Vein Fig. 4 shows a plan view, which is partially cut.
  • Figure b) the Fig. 4 shows a sectional view of the marked in Figure a) section AA.
  • one of the release buttons 26 is not shown, so that a release pin 27 located underneath becomes visible. By tilting the release button 26 at the same time the underlying release pin 27 is tilted, which pivots away the two associated pivot hooks 21 from each other.
  • Fig. 5 shows the crimping tool 02 with the crimping die 01 and an alternative embodiment of the magazine.
  • it is initially a single magazine 28, but any number of these individual magazines 28 on their side surfaces via connecting rails (not shown) can be put together and form a magazine for a variety of Crimpgesenken 01, 19.
  • the single magazine 28, the crimping die 01 and the crimping tool 02 in the region of the crimping die 01 are shown in a sectional representation.
  • the pivot hooks 21 are urged toward each other in the single magazine 28 by two leg springs 29.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Manufacturing & Machinery (AREA)
  • Manufacturing Of Electrical Connectors (AREA)
  • Gripping Jigs, Holding Jigs, And Positioning Jigs (AREA)
  • Hand Tools For Fitting Together And Separating, Or Other Hand Tools (AREA)
EP08717943A 2007-03-26 2008-03-18 Auswechselbares gesenk für zangen, zange mit einem solchen gesenk und aufbewahrungsvorrichtung Active EP2125295B1 (de)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL08717943T PL2125295T3 (pl) 2007-03-26 2008-03-18 Wymienna matryca do szczypców, szczypce z taką matrycą oraz urządzenie do przechowywania

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102007014903A DE102007014903B3 (de) 2007-03-26 2007-03-26 Auswechselbares Gesenk für Zangen, Zange mit einem solchen Gesenk und Aufbewahrungsvorrichtung
PCT/EP2008/053210 WO2008116787A1 (de) 2007-03-26 2008-03-18 Auswechselbares gesenk für zangen, zange mit einem solchen gesenk und aufbewahrungsvorrichtung

Publications (2)

Publication Number Publication Date
EP2125295A1 EP2125295A1 (de) 2009-12-02
EP2125295B1 true EP2125295B1 (de) 2011-10-19

Family

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Family Applications (1)

Application Number Title Priority Date Filing Date
EP08717943A Active EP2125295B1 (de) 2007-03-26 2008-03-18 Auswechselbares gesenk für zangen, zange mit einem solchen gesenk und aufbewahrungsvorrichtung

Country Status (8)

Country Link
US (1) US9403264B2 (pl)
EP (1) EP2125295B1 (pl)
CN (1) CN101646528B (pl)
AT (1) ATE529223T1 (pl)
DE (1) DE102007014903B3 (pl)
ES (1) ES2375771T3 (pl)
PL (1) PL2125295T3 (pl)
WO (1) WO2008116787A1 (pl)

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DE102009002155B4 (de) 2009-04-02 2016-09-15 Rennsteig Werkzeuge Gmbh Stift mit Betätigungselement zur lösbaren Befestigung eines Gesenkes oder einer Positioniereinrichtung an einer Crimpzange sowie Positioniereinrichtung und Crimpzange
US9481074B2 (en) * 2013-01-27 2016-11-01 Bosch Automotive Service Solutions Inc. Locking plier jaws
WO2014151873A1 (en) * 2013-03-15 2014-09-25 Hubbell Incorporated Crimp die set
US9821361B2 (en) 2013-03-15 2017-11-21 Hubbell Incorporated Crimp die set
US9257806B2 (en) * 2013-12-11 2016-02-09 Chang-Keng Lai Pliers for crimping terminals on wires or conductors
US10431950B2 (en) 2014-02-18 2019-10-01 Hubbell Incorporated Smart conductor/connector selecting die
US20150246432A1 (en) * 2014-02-28 2015-09-03 Irwin Industrial Tool Company Locking pliers with customizable jaws
TW201534438A (zh) * 2014-03-11 2015-09-16 Jetool Corp 壓接鉗之壓接頭快速更換結構
TWM487560U (zh) * 2014-03-11 2014-10-01 Jetool Corp 壓接鉗之壓接頭快速更換結構
EP2977146B1 (de) * 2014-07-21 2020-02-12 Wezag GmbH Werkzeugfabrik Zangenteil
US20190084136A1 (en) * 2017-09-21 2019-03-21 Ridge Tool Company Tool systems for forming sealed connections
DE102017128226A1 (de) 2017-11-29 2019-05-29 Rennsteig Werkzeuge Gmbh Abisolierzange
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CN101646528A (zh) 2010-02-10
US20100101379A1 (en) 2010-04-29
WO2008116787A1 (de) 2008-10-02
ES2375771T3 (es) 2012-03-06
DE102007014903B3 (de) 2008-07-17
US9403264B2 (en) 2016-08-02
EP2125295A1 (de) 2009-12-02
PL2125295T3 (pl) 2012-03-30
CN101646528B (zh) 2012-11-28
ATE529223T1 (de) 2011-11-15

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