EP2949425B1 - Werkzeug mit griffweitenverstellung - Google Patents

Werkzeug mit griffweitenverstellung Download PDF

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Publication number
EP2949425B1
EP2949425B1 EP15164611.4A EP15164611A EP2949425B1 EP 2949425 B1 EP2949425 B1 EP 2949425B1 EP 15164611 A EP15164611 A EP 15164611A EP 2949425 B1 EP2949425 B1 EP 2949425B1
Authority
EP
European Patent Office
Prior art keywords
bearing body
bearing
handle
drive lever
latching
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
EP15164611.4A
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German (de)
English (en)
French (fr)
Other versions
EP2949425A2 (de
EP2949425A3 (de
Inventor
Zbigniew Noniewicz
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.)
Wolfcraft GmbH
Original Assignee
Wolfcraft 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 Wolfcraft GmbH filed Critical Wolfcraft GmbH
Priority to EP16190358.8A priority Critical patent/EP3210724B1/de
Priority to PL15164611T priority patent/PL2949425T3/pl
Publication of EP2949425A2 publication Critical patent/EP2949425A2/de
Publication of EP2949425A3 publication Critical patent/EP2949425A3/de
Application granted granted Critical
Publication of EP2949425B1 publication Critical patent/EP2949425B1/de
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • B05C17/01Hand 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
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25BTOOLS OR BENCH DEVICES NOT OTHERWISE PROVIDED FOR, FOR FASTENING, CONNECTING, DISENGAGING OR HOLDING
    • B25B5/00Clamps
    • B25B5/06Arrangements for positively actuating jaws
    • B25B5/068Arrangements for positively actuating jaws with at least one jaw sliding along a bar

Definitions

  • the invention relates to a tool, in particular cartridge ejecting tool or clamping tool with a handle carrier to which a fixed handle and a pivotable about a first position in at least a second position pivot axis drive lever is attached, which in the first position, a first home position and in the second position occupies a second basic position, wherein the drive lever is pivotable by Fingerumgriff a Fingerumgriffsflanke of the drive lever of the hand ball on a Handballenabstützflanke of the handle supporting hand from the respective basic position about the pivot axis in a pivoting plane in the direction of the handle in an operating position doing a force on an actuator of the tool.
  • a handle carrier supports a push rod which can be displaced in its direction of extent to displace the piston of a cartridge.
  • the drive lever is two-armed. Its longer forms a gripping finger flank from the fingers of one hand.
  • the shorter lever arm carries a roller which acts on the transmission element.
  • the drive lever is pivotable about a pivot axis by the fingers of a hand supporting it with its palm on a handle connected firmly to the handle carrier.
  • the cartridge ejection device has a stroke length adjustment which comprises adjusting means with an adjusting wheel, which is arranged on the outside of the handle.
  • the adjusting wheel is connected to the pivot axis of the drive lever, on which an eccentric sits. By rotating the eccentric, the length of the drive arm, which projects beyond the pivot axis, adjustable. As a result, the power transmission is adjustable.
  • the DE 197 31 579 A1 describes a clamping tool with a handle carrier and a pivotable about a pivot axis drive lever having a drive arm which engages a transmission element which can shift a push rod linear. At the push rod sits a first jaw. On the handle support sits a second jaw. By a pumping movement, the push rod can be shifted in one direction.
  • the EP 0 486 455 A2 describes a cartridge ejecting device in which the angle of the drive lever relative to the handle in the distance angular position is adjustable. For this purpose, an adjustment screw arranged within a housing formed by the handle carrier must be adjusted.
  • the DE 94 138 72 and the DE 11 802 73 show pruning shears, where the angle between the drive lever and handle in the distance angle position is adjustable. This is done by a screwed onto an external thread screw or by a stop, which is formed by an eccentric disc. As a result, the angular position of the handle and drive lever can be adjusted in the distance angle position to the respective reach of the user.
  • the DE 197 04 627 A1 describes a spray gun with a trigger to open by a pulling movement in the direction of a handle a valve.
  • the DE 10 2007 057111 A1 describes a squeezing device in which the actuating arm may have a long or short load arm. The axis of rotation lies in a U-shaped slot of the housing and can assume two positions in which the load arm of the lever has different lengths, thereby exerting different forces on a push rod.
  • the US 2002/0092871 A1 discloses a cartridge ejecting device in which the effective length of a load arm of a drive lever with respect to its axis of rotation can be adjusted.
  • the invention has for its object to make the grip width in a generic tool, ie in particular in a cartridge ejection device or a clamping tool, changeable.
  • the object is achieved in that the position of the pivot axis is displaceable between two or more positions such that the distance that the finger grip edge has in the distance angle position of the Handballenabstützflanke is different from each other in the two positions. It is sufficient that the distance of the Fingerumgriffsflanke are different from the Handballenabstützflanke in the two basic positions at least in the region of the remote from the pivot axis ends of the Handballenabstützflanke and the Fingerumgriffsflanke.
  • the drive lever assumes a stop position in the basic position. In the basic position, the angle between the handle and the drive lever can be maximum. It decreases when the drive lever is pivoted against the handle, with the drive arm performing a power stroke.
  • the pivot axis of the drive lever can assume two mutually different positions.
  • the two positions differ by the distance of the finger grip flank from the Handballenabstützflanke in the particular defined by a stop basic position of the drive lever relative to the handle, in which the drive lever is included at the beginning of working with the tool.
  • This distance can be adjusted by adjusting a bearing body.
  • the bearing body is according to the invention in a bearing body receptacle of the handle carrier. It is rotatable about an adjustment axis. It can be adjusted between the two positions, which correspond to rotational positions of the bearing body.
  • the pivot axis of the drive lever according to the invention is arranged eccentrically relative to the adjustment axis.
  • the two positions correspondingly preferred rotational angular positions of the bearing body, which are angularly offset by 180 ° from each other. If one sets a straight line through the axis positions of the pivot axis in the two adjustment positions of the bearing body, then this straight line runs transversely to a further imaginary straight line through the pivot axis, which extends between the finger gripping flank and the palm supporting flank. This straight line can thus be an angle bisector between the palm supporting flank and the finger flank.
  • the Fingerumgriffsflanke is in the second basic position along its entire length closer to the Handballenabstützflanke than in the first basic position.
  • a latching cam or a latching lug can rest in a latching position in a latching recess, for example a latching recess.
  • the locking cam is formed by a detent.
  • This latch is located in one or more different rotational positions in one of several locking recesses. If a torque is exerted on the bearing body, the nose can emerge from the detent recess. It stretches a spring bar.
  • the nose can be formed integrally with the material of the spring bar.
  • the spring bar can be formed by a free space.
  • the nose can be in the radial direction dodge.
  • the latching depressions can then be arranged as latching grooves in a bearing body receptacle.
  • a locking cam in a locking position eino positively in a recess.
  • a displacement of the locking means in a release position of the locking cam comes out of the recess.
  • the bearing body In the locked position of the bearing body is rotationally secured.
  • the bearing body In the release position, the bearing body can be rotated about the adjustment axis.
  • the bearing body In a preferred embodiment, the bearing body is to be displaced in the direction of the adjustment axis in order to bring the latching means into the release position.
  • the bearing body carries one or more locking cams, which eino in the locking position in a recess of the handle carrier.
  • the locking means are preferably held by a spring element in the locking position.
  • the bearing body may have a first bearing portion.
  • This first bearing section is preferably a circular cylinder jacket surface.
  • the bearing portion lies in a circular opening of the handle carrier.
  • the handle carrier may form a two-walled housing.
  • the first opening, which has the first bearing portion, lies in a wall.
  • a second bearing portion is located in a second opening which is associated with the opposite wall.
  • Between the two walls of the handle carrier of the drive arm is mounted and extends an eccentric portion of the bearing body.
  • the two end portions of the bearing body may each have a radial projection. In a recess of the housing, which is open to the outside, a helical gear spring is supported.
  • the other end of the helical compression spring is supported on a radially protruding edge of a head of the bearing body.
  • the opposite end portion of the bearing body forms the locking elements, which are formed by opposing locking cams, which in the locking position in recesses of the bearing opening intervention.
  • the cross section of the connecting shaft is non-circular, so that the two end sections are non-rotatably connected to each other.
  • the eccentric sleeve is rotatably connected to the connecting pin.
  • the outer circumferential surface of the eccentric portion is circular and forms a bearing shaft for the drive lever, wherein the axis of the bearing shaft with respect to the axis of the connecting pin, which is located in the adjustment axis of the bearing body, is offset eccentrically.
  • the bearing body may have an actuating aid. This actuating aid is preferably associated with the first end portion of the bearing body.
  • the actuating aid may be a slot into which, for example, a coin can be inserted. But it is also envisaged that the actuating aid is formed by a radially projecting switching arm.
  • the tool has a cartridge holder, which has a trough shape.
  • One end of the cartridge receptacle forms an abutment, on which the end of a cartridge having an outlet nozzle can be supported.
  • the front side has a particular slot-open opening through which the spout can protrude.
  • the other end of the cartridge is open. In this opening, a free end of a push rod can engage to displace a piston disposed in the cartridge in the direction of the spout to express the cartridge contents, a pasty mass.
  • the front end of the cartridge receptacle has a rotatable grip sleeve.
  • the grip sleeve does not completely surround the cartridge receptacle, but in one section more than 180 °. It can be turned into a neutral position in which the gap of a gap opening of an end face of the grip sleeve coincides with the gap opening of the opening of the end face of the cartridge receptacle. In this position, the cartridge in the radial direction - based on the axle defined by the push rod - be placed in the trough-shaped cartridge holder. In operation, the grip sleeve can be rotated about the axis.
  • the opening gap of the front side opening can be closed by an edge portion of the opening of the grip sleeve.
  • the grip sleeve is preferably clipped onto the front end in the axial direction.
  • a locking bar engages behind a projection.
  • the latching web can be formed by the grip sleeve and the projection of the cartridge receptacle.
  • the embodiment is a cartridge ejecting device.
  • the invention essentially relates to elements of the handle arrangement of a tool, so that the use of the actuating element 26 as a push rod of a cartridge ejection device is merely exemplary.
  • the illustrated in the drawings and explained below handle assembly may also also on a jig, as for example the DE 197 31 579 A1 describes to be used.
  • the tool has a handle support 1, which has a housing consisting of two mutually parallel walls. Within the space between the two walls is a portion of a drive lever 4.
  • the drive lever 4 is pivotally mounted with this section on the handle support 1 about a pivot axis 7 '.
  • the handle carrier 1 forms a handle 2, which forms a handle assembly together with the drive lever 4.
  • the drive lever 4 is two-armed. It has a protruding from the handle support housing 1 arm forming a Fingerumgriffsflanke 5, and extending within the handle support 1 arm, namely the drive arm 23 which acts against an actuating element 26 having an opening 25 through which a push rod 26th extends, which forms the actuating element.
  • the transmission element 24 is brought into a Verkipplage, so that a clamping connection between the push rod 26 and opening 25 occurs.
  • a further pivoting of the drive lever 4 leads to a linear displacement of the transmission element 24 and the connecting rod 26 connected thereto.
  • a cartridge accommodated in a cartridge receptacle 28 can be expressed in that the end of the push rod 26 engages the piston of the cartridge and drives the piston into the cartridge.
  • the pivoting of the drive lever 4 is carried out by the hand of a user whose palm is supported on a Handballenabstützflanke 3.
  • the handle assembly 2, 4 is thus held in the Um spontaneoussgriff.
  • the distance A 1 , A 2 of the finger grip flank 5 can be changed to the hand ball supporting flank 3.
  • FIG. 3 shows the handle assembly 2, 4 with a distance of the Fingerumgriffsflanke 5 from the Handballenabstützflanke 3, which is maximum.
  • the drive lever 4 in the in the FIG. 3 shown position, so that the distance A 1 is a maximum distance between the two flanks 3, 5.
  • the drive lever 4 can be lubbeetzschlagt this clockwise by a spring, not shown, which spring, not shown, the drive arm 23 is acted upon by a small contact force to the transmission element 24.
  • the spring, not shown develops a force which is less than the force of the return spring 27th
  • FIG. 4 shows the handle assembly 2, 4 with a shortened distance A 2 between Handballenabstützflanke 3 and Fingerumgriffsflanke 5.
  • the drive lever 4 is held by stops or the like in the maximum angular position relative to the handle 2.
  • the distance A 2 is lower than in the operating position according to FIG. 3 , Again, the above-mentioned not shown, the drive lever 4 acting clockwise spring act on the drive arm 23 with little pressure against the transmission element 24.
  • the bearing body 6 is latched in its respective adjustment position.
  • the catch is canceled by an axial pressure on an end face of the bearing body 6 and an axial displacement of the bearing body 6 against the restoring force of a spring.
  • the core 21 On its central region, the core 21 carries an eccentric sleeve 7, which has an outer cross section.
  • the circular outer cross section defines the pivot axis 7 ', by which the drive lever 4 can be pivoted.
  • the sleeve thus forms a bearing shaft for the drive lever 4.
  • each case On the two facing away from each other ends of the core 21 is inserted in each case an end portion 9,14.
  • the two end portions 9,14 can be made of plastic and each have a bore 22 in which an end portion of the core 21 inserted.
  • the first end portion 9 forms a head piece 13, which has a radial projection with respect to a cylindrical bearing portion 11.
  • the axis of the cylindrical bearing portion 11 corresponds to the center line of the core 21.
  • the bearing portion 11 With the bearing portion 11, the first end portion 9 is in a bearing cavity 10 a bearing body receiving 8 of the handle body 1 stored.
  • the bearing body receptacle 8 forms a recess 20, on the bottom of which one end of a helical compression spring 12 is supported.
  • the other end of the helical gear compression spring 12 is supported on a radial projection of the head piece 13.
  • the head piece 13 is thus subjected to a force from the spring element 12 in the direction of its axis.
  • the second end portion 14 has a foot 17, which also forms a radial projection.
  • the second end portion 14 also has a bearing portion 16 which is rotatably mounted in a bearing cavity 15 of the handle support 1. Between the two bearing cavities 10 and 15, the drive lever 4 extends, which is guided with its outwardly facing broad sides of bearing surfaces of the inside of the housing walls of the handle support 1 slidably.
  • the bearing cavity 15 is part of a bearing body receptacle 8 ', which also forms a recess 20'. In the recess 20 'is the head piece 13 a.
  • the second end portion 14 opposite the sprung first end portion 9 has latching elements which can be brought from a latching position by axial pressure on the end face of the first end portion 9 into a release position.
  • the locking elements consist of at least one locking cam 18 which can occur in two different rotational positions of the bearing body 6 in locking recesses 19.
  • the second end portion 14 carries two diametrically opposed locking cams 18.
  • the bearing body receptacle 8 ' forms corresponding, likewise diametrically opposite latching recesses 19 from.
  • the two in the Figures 3 and 4 or 7 and 8 illustrated functional positions show two different locking positions of the bearing body 6, in which the bearing body 6 occupies different rotational positions by 180 °.
  • the eccentric to the adjustment axis 6 'arranged pivot axis 7' moves from an extreme position to another extreme position.
  • the eccentric sleeve 7 occupies positions offset by 180 ° in the two basic positions.
  • the center of the eccentric sleeve 7 is in each case offset in a different direction with respect to the center of rotation of the bearing body 6, which is given by the center axis of the core 21.
  • the sleeve 7 has a central axis lying eccentrically to the center axis of the core 21.
  • the center axis of the eccentric sleeve 7 lies at two mutually different positions relative to the housing or the handle 2.
  • the axial positions in the two basic positions thus provide two points which define a straight line on which the positions of the pivot axis are. If you draw through this line to a transverse line, so this line is between the handle 2 and drive lever 4. It may be an angle bisector, which runs centrally through the space between the drive lever 4 and handle 2.
  • first end portion 9 in the first embodiment as an actuating aid has a slot 29
  • first end portion 9 of the second embodiment has a radially from the axis of rotation the bearing body 6 projecting Shift arm 30.
  • Shift arm 30 On the shift arm 30, a finger of a user can attack to rotate the bearing body by 180 °.
  • the second end portion 14 has locking cams 18, which are lifted out of the latching recess 19 by an axial displacement of the bearing body 6. This is done by pressing down the switching arm 30 having end portion 9, wherein the compression spring 12 is tensioned.
  • An essential difference of the second embodiment compared to the first embodiment relates to the front end of the cartridge receptacle 28.
  • the trough-shaped cartridge receptacle 28 has an end face 33 which has a slot-shaped opening 32 in which the spout of a cartridge can lie.
  • the cartridge can be supported on the end face 33.
  • the free end of the push rod 26 can engage to displace a piston arranged in the cartridge in the direction of the spout in order to squeeze the pasty mass contained in the cartridge through the spout.
  • the grip sleeve 31 surrounds the front end of the cartridge receptacle 28 in the region of the end face 33 by more than 180 °.
  • the front side of the grip sleeve 31 has a slot open towards the edge opening 34.
  • the opening of the slot 32 of the end face 33 of the cartridge receptacle 28 can be closed. It is sufficient if only the spatially the end face 33 associated portion of the grip sleeve 31 surrounds the outer, extending on a circular arc line edge of the end face 33 by more than 180 °.
  • An axially adjoining section of the grip sleeve 31 can surround the cartridge receptacle 28 at a smaller angle.
  • the grip sleeve 31 can be embraced, for example, by the left hand of a user.
  • the user's right hand grips the handle 2 and drive lever 4.
  • the user's left hand grip need not be disengaged to move the cartridge ejector to a different rotational position as the cartridge receptacle 28 in the handle sleeve 31 can rotate.
  • the jacket wall of the grip sleeve 31 is below the trough-shaped cartridge receptacle 28, so that the longitudinal opening of the cartridge receptacle 28 is free.
  • the grip sleeve 31 can be rotated freely about the axis, so take a position as they Figures 18,19 and 21 show, in which the lateral surface of the grip sleeve 31, the longitudinal opening of the cartridge receptacle 28 covers in the region of the end face.
  • the gap opening 32 is closed.
  • the gap opening of the opening 34 is closed by a portion of the end face 33.
  • the spout protrudes in this operating position through an annular opening from the inside of the cartridge receptacle 28 to the outside.
  • the grip sleeve 31 is tied to the cartridge receptacle 28 by means of a latching web 35.
  • the detent web 35 thereby traverses a projection 36 of the edge of the cartridge receptacle 28.
  • a radial fixation of the grip sleeve 31 to the cartridge receptacle 28 is ensured because of the more than 180 ° Umgriffs.
  • a projection 37 is provided, under which the spout opposite end of the cartridge must be inserted before the spout having end can be inserted into the cartridge receptacle 28.
  • the cartridge After locking by rotating the grip sleeve 31, the cartridge is in the trough-shaped Cartridge receptacle 28 tied up, because on either end of the cartridge either the projection 37 or a portion of the grip sleeve 31 opposite the bottom of the trough-shaped cartridge receptacle 28.
  • the cartridge ejecting device according to the invention thus has a receiving opening 32 which can be brought from an open position into a closed position by rotating a closure part 31 for receiving a discharge spout of a cartridge.
  • the bearing body 6 can be fixed in different rotational positions. To this end protrudes from the end portion 9 of the bearing body 6 in the radial direction from a locking lug 38.
  • the locking lug 38 projects centrally from a web 40, behind which there is a free space, so that the web 40 can act as a spring element by being able to deflect radially inwardly.
  • the bearing body receptacle 8 are in the cylinder inner surface a plurality of locking recesses 39, in which either the locking lug 38 can engage.
  • the rotational inhibition is released by applying a torque to the arm 30.
  • the detent 38 can then emerge from the respective detent recess 39 with deformation of the spring bar 40.
  • a tool which is characterized in that the distance A 1 , A 2 of the Fingerumgriffsflanke 5 from the Handballenabstützflanke 3 at least in the area of the pivot axis 7 'remote ends of the Handballenabstützflanke 3 and the Fingerumgriffsflanke 5 is different from each other in the two basic positions.
  • a tool characterized in that the two positions of the pivot axis 7 'are a line which extends transversely to a further line extending through the pivot axis 7' and between the finger grip flank 5 and the palm support flank 3 and / or between the first and second the second position, a plurality of intermediate positions are provided, in which the distances A 1 , A 2 take different values from each other.
  • a tool which is characterized by a bearing body 6 which rotatably rests in a bearing body receptacle 8 of the handle support about an adjustment axis 6 ', wherein the pivot axis 7' is eccentrically offset from the adjustment axis 6 'and by an adjustment angle of, for example, 180 ° between two first Positions is adjustable.
  • a tool which is characterized in that the bearing body 6 in the two positions and optionally in the intermediate positions by means of particular interlocking locking means is rotationally inhibited or rotationally secured.
  • a tool which is characterized in that the bearing body 6 is held by engaging a detent 31 in one of a plurality of detent recesses 32 in a rotationally locked detent position, which is overcome by applying a torque to the bearing body 6, wherein it is provided in particular that one of a spring ridge 33 radially projecting nose 31 engages in a groove of a bearing body receptacle 8.
  • a tool which is characterized in that the bearing body 6 is held by the force of a spring element in its detent position, which spring element unfolds a restoring force, which is to overcome in the displacement of the bearing body 6 from the detent position to the release position.
  • a tool which is characterized in that the bearing body 6 has a substantially circular cylindrical first bearing portion 11 which rests in a bearing cavity 10 and has a substantially circular cylindrical second bearing portion 16 which rests in a bearing cavity 15, wherein the bearing cavities 10,15 are formed by the handle carrier 1 and is mounted between the bearing cavities 10,15 of the drive lever 4.
  • a tool which is characterized in that the latching means can be brought by an axial displacement of the latching body 6 from a latching position rotatably securing the bearing body 6 in a release position allowing an adjustment of the bearing body 6, wherein it is further provided in particular that the bearing body 6 has a first end portion. 9 having a radially projecting Head forms, on which the spring element 12 located in a recess 20 is supported, and at its opposite end a second end portion 14 which forms one or more locking cams 18, which eino in the detent position in a recess 19.
  • a tool which is characterized in that the bearing body 6, in particular in the region of its first end portion 9 an actuating aid, for example in the form of a slot 29 or a radially projecting switching arm 30, with the aid of the bearing body 6 is rotatable.
  • a cartridge ejection tool which is characterized by a arranged in the region of the end face 33, rotatable about the axis grip sleeve 31st
  • a cartridge ejection tool characterized in that the grip sleeve 31 has a gap open towards its edge opening 34 which is partially congruent to an opening 32 of the end face 33 and / or that the grip sleeve 31 in the axial direction on the front end of the cartridge receiving 28 is clipped on.
  • a cartridge ejection tool characterized in that the grip sleeve 31 forms a closure part with which an edge-side opening gap of an opening 32 for receiving a spout of a cartridge can be closed.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Coating Apparatus (AREA)
  • Surgical Instruments (AREA)
  • Manipulator (AREA)
  • Portable Nailing Machines And Staplers (AREA)
EP15164611.4A 2014-04-28 2015-04-22 Werkzeug mit griffweitenverstellung Active EP2949425B1 (de)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP16190358.8A EP3210724B1 (de) 2014-04-28 2015-04-22 Werkzeug mit griffweitenverstellung
PL15164611T PL2949425T3 (pl) 2014-04-28 2015-04-22 Narzędzie do wyciskania nabojów z podstawą uchwytową

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102014105935.2A DE102014105935A1 (de) 2014-04-28 2014-04-28 Werkzeug mit Griffweitenverstellung

Related Child Applications (2)

Application Number Title Priority Date Filing Date
EP16190358.8A Division-Into EP3210724B1 (de) 2014-04-28 2015-04-22 Werkzeug mit griffweitenverstellung
EP16190358.8A Division EP3210724B1 (de) 2014-04-28 2015-04-22 Werkzeug mit griffweitenverstellung

Publications (3)

Publication Number Publication Date
EP2949425A2 EP2949425A2 (de) 2015-12-02
EP2949425A3 EP2949425A3 (de) 2016-08-24
EP2949425B1 true EP2949425B1 (de) 2018-03-21

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EP16190358.8A Active EP3210724B1 (de) 2014-04-28 2015-04-22 Werkzeug mit griffweitenverstellung
EP15164611.4A Active EP2949425B1 (de) 2014-04-28 2015-04-22 Werkzeug mit griffweitenverstellung

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EP16190358.8A Active EP3210724B1 (de) 2014-04-28 2015-04-22 Werkzeug mit griffweitenverstellung

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EP (2) EP3210724B1 (pl)
DE (1) DE102014105935A1 (pl)
ES (1) ES2665938T3 (pl)
PL (1) PL2949425T3 (pl)

Families Citing this family (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102017100627A1 (de) 2017-01-13 2018-07-19 Wolfcraft Gmbh Kartuschenpresse
DE102019108139B4 (de) * 2019-03-28 2022-07-07 Siang Syuan Fu Enterprise Co., Ltd. Kartuschenpistole und deren Anwendung
GB2582641B (en) * 2019-03-29 2023-05-17 Siang Syuan Fu Entpr Co Ltd Caulking gun and method for using the same

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Also Published As

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DE102014105935A1 (de) 2015-10-29
EP2949425A2 (de) 2015-12-02
PL2949425T3 (pl) 2018-07-31
ES2665938T3 (es) 2018-04-30
EP3210724A3 (de) 2017-11-22
EP3210724A2 (de) 2017-08-30
EP3210724B1 (de) 2018-11-28
EP2949425A3 (de) 2016-08-24

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