EP2007553B1 - Self-opening tool - Google Patents

Self-opening tool Download PDF

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Publication number
EP2007553B1
EP2007553B1 EP07728133A EP07728133A EP2007553B1 EP 2007553 B1 EP2007553 B1 EP 2007553B1 EP 07728133 A EP07728133 A EP 07728133A EP 07728133 A EP07728133 A EP 07728133A EP 2007553 B1 EP2007553 B1 EP 2007553B1
Authority
EP
European Patent Office
Prior art keywords
spring element
handle
hand tool
joint
tool according
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Not-in-force
Application number
EP07728133A
Other languages
German (de)
French (fr)
Other versions
EP2007553A1 (en
Inventor
Stefan Pfab
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.)
Will Werkzeuge GmbH and Co KG
Original Assignee
Will Werkzeuge GmbH and Co KG
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 Will Werkzeuge GmbH and Co KG filed Critical Will Werkzeuge GmbH and Co KG
Publication of EP2007553A1 publication Critical patent/EP2007553A1/en
Application granted granted Critical
Publication of EP2007553B1 publication Critical patent/EP2007553B1/en
Not-in-force legal-status Critical Current
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
    • B25B7/00Pliers; Other hand-held gripping tools with jaws on pivoted limbs; Details applicable generally to pivoted-limb hand tools
    • B25B7/18Adjusting means for the operating arms
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26BHAND-HELD CUTTING TOOLS NOT OTHERWISE PROVIDED FOR
    • B26B13/00Hand shears; Scissors
    • B26B13/12Hand shears; Scissors characterised by the shape of the handles
    • B26B13/14Hand shears; Scissors characterised by the shape of the handles without gripping bows in the handle
    • B26B13/16Hand shears; Scissors characterised by the shape of the handles without gripping bows in the handle spring loaded, e.g. with provision for locking the blades or the handles
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B26HAND CUTTING TOOLS; CUTTING; SEVERING
    • B26BHAND-HELD CUTTING TOOLS NOT OTHERWISE PROVIDED FOR
    • B26B17/00Hand cutting tools, i.e. with the cutting action actuated by muscle power with two jaws which come into abutting contact

Definitions

  • the invention firstly relates to a hand tool with two tool halves crossing in a joint, in particular in the form of pliers, scissors or the like, wherein a tool half forms a jaw on one side of the joint and a handle on the other side of the joint, wherein a handle is further formed a spring element is assigned consisting of an elastically deformable rubber or plastic material having an opening which is penetrated by the handle and can be selectively brought by rotation from a non-operative position in at least one operative position, in which operative position the spring element in response to a spread the handles and generating corresponding restoring force comes into contact with the opposite handle.
  • a generic hand tool in the form of pliers for example, from the German utility model 75 08 863 known.
  • the opening of the spring element has a circular cross-section. Due to the circular opening, the individual positions of the spring element are not precisely defined. An unwanted displacement of the spring element may be the result.
  • the spring element is made of an elastic material and is held solely by the resulting holding force of the elastic material on the handle of the pliers.
  • the invention has for its object to further develop a hand tool described above advantageous use.
  • Such a ausgestaltetes hand tool is advantageous in use for the user as is held by a positive fit, the spring element in the respective position and can be reliably fixed to the tool half by a handle cover which is usually captive on the corresponding portion of the mold half , For example, by a hinge-side edge of the handle cover is used to fix the spring element on the mold half.
  • the benefits associated with such a handle cover anyway can also be used in combination with a spring element as described here. Due to the positive locking unwanted twisting of the spring element during use of the hand tool is usually no problem.
  • the spring element can also be designed so that it can be arranged in a form-fitting manner in different operative positions relative to the opposite handle, which leads accordingly to different spring characteristics or different opening angles between the jaws with a relaxed spring.
  • the positive connection can be given both between the spring element and the handle, as well as between the spring element and the handle cover. This also in the form of a catch.
  • the handle cover passes through the opening of the spring element.
  • the spring element thus sits on the handle cover.
  • the positive connection results here between the spring element and the handle cover.
  • the fact that the handle cover penetrates the spring element the usual insulation protection of the handle cover can be obtained.
  • the complete coverage by insulating plastic of the corresponding section of the mold half is guaranteed.
  • the non-circular cross-section is in particular a polygon, for example a cross-section oriented in a square. The corners can be rounded to suit the material. Notwithstanding this, the cross section may also be one which is oriented on a pentagon, hexagon, octagon or the like. It can also be an oval cross-section.
  • the cross-section is preferably chosen so that the different operative positions or extra-active position are taken and held stable, but still one of manual adjustment is readily possible.
  • the spring element is arranged on the hinge side of a support shoulder formed on the handle shell. Even with penetrated by the handle shell spring element this is prevented from sliding.
  • the spring element is trapped between the support shoulder and the joint.
  • the support shoulder is preferably adapted to the plan of the spring element in the non-action position.
  • the suction corresponds to the combined with the spring element handle cover so the usual handle cover, the joint-side thickening, which prevent slipping of the hand toward the joint should, thickened is formed. In that regard, then the grips of the two tool halves are also designed differently.
  • the handle cover which passes through the spring element, preferably forms hinge side of the spring element - suitably: also, that is, in addition to the support shoulder already described - a shoulder.
  • the spring element can not, which could be disturbing, be pushed beyond the shoulder to the joint.
  • a defined distance of the spring element to the joint can be maintained.
  • the spring element - optionally secured by the shoulder - is suitably arranged at a distance from the outer contour of the joint.
  • the distance may correspond to 1 to 4 times, preferably 1 to 2 times the thickness of the spring element in the axial direction of the tool half or the handle cover.
  • the dimension preferably corresponds to 11 ⁇ 2 times the thickness dimension of the spring element.
  • an axially immovable arrangement is preferred.
  • the shoulder has a smaller floor plan than the support shoulder. This according to their function, primarily to ensure only the axial securing of the spring element. In addition, as an exposed loading surface of the spring element (wide side, joint side) can be achieved, which can also be used to actuate the spring element.
  • the smaller floor plan of the shoulder is also advantageous in the sense that the spring element for mounting - with elastic expansion - can be performed over the shoulder (and then possibly only the so combined handle cover can be pushed onto the mold half).
  • the spring element is preferably geometrically designed in further detail so that due to the geometry results in a specific or over the circumference and individual working positions assigned different spring characteristic. It is thus preferable to provide at least one recess in the spring element.
  • This recess - preferably formed as a passage recess - is located in the effective range of the spring element. Due to the design of the recesses in detail, the spring action of the spring element can be set as desired.
  • the recess which preferably extends in the thickness direction of the spring element, can also pass into the already existing opening. It can be a large recess or it can also be formed many small recesses in the spring element. The recesses can enforce the spring element only partially.
  • the spring element is preferably made of a rubber material or a thermoplastic elastomer. It offers a polyurethane or polypropylene elastomer (PPEPDM).
  • PPEPDM polyurethane or polypropylene elastomer
  • the Shore A hardness is preferably selected in the range of 50 to 80, more preferably 60 to 70.
  • the spring element can also be made in combination of two or more materials, which then suitably have different hardnesses. For example, it is advantageous to form regions of the spring element, which are acted upon by hand for adjustment in the various operative positions, with a harder material, the actual spring areas in contrast, from a softer material. But also the said combinations of materials can be used to adjust the spring characteristic.
  • recessed grips on the spring element may be provided to support the handling low. These can then consist in the sense of the above explanation of a harder material, if about the spring element is produced in total in two-component injection molding. Last but not least, a sparklingness can be set by the different materials.
  • the opening dimension of the opening of the spring element in the effective direction of the spring element is greater than the thickness of the spring element in the axial extension of the mold half or the handle cover.
  • the opening dimension preferably corresponds to 1.2 to 4 times the said thickness dimension of the spring element, more preferably 1.2 to 2 times and more preferably 1.5 times.
  • the invention relates to a hand tool with two in a joint intersecting tool halves, in particular in the form of pliers, scissors or the like, wherein a tool half on one side of the joint forms a jaw and on the other side of the joint a handle which of a Gripping sleeve is surrounded, further being associated with a handle shell inside a spring element which can be brought by displacement in the longitudinal extension direction of the handle cover, in the direction of the joint, from a Außerwirk ein in which the spring element is back-backed by the handle in at least one operative position in which Active position, the spring element in response to a spread of the handles and generating a corresponding restoring force comes into contact with the opposite handle.
  • Such a hand tool in the form of a pair of pliers is for example from the DE 10 2004 024 385 A1 known.
  • the spring element is formed of a metallic lamella, which is guided between the handle and the handle cover.
  • the lamella has a predetermined curvature, which curvature in the non-operative position under elastic deformation, and thus constantly applied bias, is greatly reduced.
  • the blade takes its predetermined curvature below Increasing relaxation initially again, whereby a fingerkragendes end of the blade comes at a significant distance from the handle or the handle cover.
  • this free end is moved to the handle, with appropriate elastic deformation and build up a restoring force.
  • the object of the invention is to provide an advantageous hand tool with a spring element, which is to be brought by displacement in the longitudinal direction of the tool half in operative position or non-operative position.
  • the spring element consists of an elastically deformable rubber or plastic material.
  • the spring element itself has an active portion and a carriage portion.
  • the carriage section is preferably provided with laterally formed longitudinal grooves, in which guide rails of the handle cover engage.
  • the carriage section preferably has a width that corresponds to more than half the width of the tool half or the handle in this area. Preferably about 4/10 to 9/10 of said width.
  • the spring element further preferably forms a finger rest section in the region of the carriage section. This is the inward, the other tool half facing exposed back area of the carriage.
  • a finger rest section in the region of the carriage section. This is the inward, the other tool half facing exposed back area of the carriage.
  • this spring element also has one or more openings in the active section.
  • the active section rising above the carriage section can be designed by means of the opening in such a way that a slipper-like design results.
  • This opening may also be formed as a passage opening.
  • the handle cover also results in the area of the spring element a complete enclosure of the handle.
  • this spring element of several materials, possibly different hardnesses exist.
  • it can also be produced in a two-component injection process.
  • it is recommended to manufacture in particular the region of the sliding interaction with the handle cover of a harder material, however, the active section of a softer material.
  • the finger rest portion forming free back of the carriage portion may be formed of a softer material, so as to allow a more favorable handling.
  • FIGS. 1 to 5 Shown and described is with reference to the FIGS. 1 to 5 a first embodiment of a hand tool 1 in the form of a combination pliers.
  • the hand tool 1 is formed by two tool halves 2, 3, which are connected to each other by means of a joint 4. Each mold half 2, 3 each forms a jaw 5 and a handle 6.
  • the two handles 6 are each received in a handle cover 7.
  • the handle cover 7 forms a support shoulder 11 on the hinge side.
  • On the hinge side of the support shoulder 11 is in one of the two handle covers 7 a spring element 8 is arranged.
  • the spring element 8 is made of an elastic rubber or plastic material. Furthermore, the spring element 8 forms an opening 9 with a cross-section which is oriented on a square cross-section.
  • This opening 9 is penetrated by a portion 10 of the handle cover 7, which has a shape adapted to the shape of the opening 9 cross-section.
  • the length of the portion 10 is the strength, that is the thickness, adapted to the spring element 8.
  • the strength of the spring element 8 corresponds to 0.5 to 2 times, preferably about 1.5 times the thickness of the handle 6 in the region of the spring element eighth
  • the spring element 8 further comprises a plurality of recesses 12 in an effective region 13, which are separated from one another by means of webs.
  • the shoulder 14 has a smaller floor plan than the support shoulder 11. The floor plan of the shoulder 14 is dimensioned so that the spring element 8 can be mounted by elastic expansion of the opening 9 via the shoulder 14 on the section 10. Thus, the shoulder 14 engages over only a small surface area of the spring element 8 for securing the axial position.
  • FIG. 2 only to pivot by 90 °.
  • an effective range 13 ' as he also for example in the Figures 2 and 6 to 8 is basically indicated. Obviously results in a different opening angle between the tool halves, from which - on further Zusanmenaccept - the restoring force of the spring element 8 acts.
  • the different effective regions 13 'and 13 are created here by a different width (distance from the opening border to the outer edge) of the spring element 8.
  • FIG. 6 a further embodiment of the spring element 8 is shown.
  • the spring element 8 only has a large recess 15.
  • the webs between the individual recesses 12 of the spring element 8 in the FIG. 2 are, as it were, removed.
  • a large recess 15 has been created.
  • the spring force of the spring element 8 can be adjusted.
  • FIG. 7 another embodiment of a spring element 8 is shown.
  • This embodiment has no recesses, however, recessed grips 16 are incorporated in the broad sides of the effective regions 13 '.
  • the recessed grips 16 result in a certain positive engagement for a finger actuation of the spring element 6 with respect to pivoting.
  • the recesses as previously explained, can also in the embodiments of the FIGS. 7 and 8 be provided.
  • the spring element 8 also consist of different materials or plastics. In particular, it may be produced by two-component injection molding.
  • the effective regions 13 'with the recessed grips 16 are made of a harder material than the effective region 13, but the region immediately around the opening 9 is made of a softer material than the regions of the recessed grips 16.
  • FIGS. 9 to 12 Another embodiment of a hand tool 1 is described.
  • the hand tool 1 in the FIGS. 9 to 12 it is a side cutter.
  • Previously used reference numerals are also used here for the same elements.
  • the spring element 8 is arranged on the handle inner side 17 of the handle cover 7.
  • the spring element 8 has an elongated carriage section 18, which is guided in a longitudinal groove 19 of the handle cover 7.
  • the spring element 8 is made of an elastic rubber or plastic material.
  • the carriage section 18 forms laterally extending grooves 20, in which protrude from the handle cover 7 formed guide rails 21.
  • the guide rails 21 extend from the edge of the longitudinal groove 19 into the grooves 20 of the carriage section 18.
  • the longitudinal groove 19 extends approximately from the half of the handle cover 7 until shortly before the end of the handle cover 7 in the direction of the joint 4. Thus, the spring element 8 can be moved in the direction of the joint 4. How out FIG. 10 As can be seen, the longitudinal groove 19 is incorporated so far into the handle cover 7, that the handle 6 is completely enclosed in the longitudinal groove 19 of the handle cover 7.
  • the spring element 8 forms an active section 22 on the carriage section 18.
  • the active section 22 is penetrated by an opening 23.
  • the axis of the opening 23 extends at an acute angle to the longitudinal extension of the longitudinal groove 19. In this case, the vertex of the acute angle in the direction of the joint 4.
  • the finger rest section 24 is adapted to the width of the spring element 8.
  • the spring element 8 is displaced in the direction of the joint 4 within the longitudinal groove 19 to the end, so is the spring element 8 in the operative position, which in the FIG. 11 is shown.
  • the active portion 22 is located on the opposite handle inner side 17 of the handle cover 7 at.
  • the two handles 6 and the jaws 5 are spaced from each other.
  • the hand tool 1 is held in the open position.
  • the elastic active portion 22 of the spring element 8 is elastically deformed.
  • the restoring force which emanates from the elastic active portion 22 of the spring element 8, the hand tool 1 is moved back to the open position, which in FIG. 11 is shown.
  • the opening angle ⁇ of the jaws 5 can also be changed here. This can be adjusted continuously by the position of the spring element 8 to the joint 4. The closer the spring element 8 is positioned to the joint 4, the larger the opening angle ⁇ becomes.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Life Sciences & Earth Sciences (AREA)
  • Forests & Forestry (AREA)
  • Scissors And Nippers (AREA)
  • Table Equipment (AREA)
  • Gripping Jigs, Holding Jigs, And Positioning Jigs (AREA)
  • Orthopedics, Nursing, And Contraception (AREA)
  • Gloves (AREA)
  • Professional, Industrial, Or Sporting Protective Garments (AREA)

Abstract

The tool has tool halves (2, 3) that cross over each other at a joint (4), where one of the halves forms a jaw (5) and a handle (6) on corresponding sides of the joint. The handle has a spring (8) made of elastically deformable rubber or plastic material. The spring comes into contact with the handle depending on inclination of the handle and generation of appropriate restoring force in an operating position of the spring. The handle is accommodated in a handle case, and the spring is supported on the handle in a for-fit manner to maintain the operating position or non-operating position.

Description

Die Erfindung betrifft zunächst ein Handwerkzeug mit zwei sich in einem Gelenk kreuzenden Werkzeughälften, insbesondere in Form einer Zange, Schere oder dergleichen, wobei eine Werkzeughälfte auf einer Seite des Gelenks eine Backe und auf der anderen Seite des Gelenks einen Griff ausbildet, wobei weiter einem Griff ein Federelement bestehend aus einem elastischen deformierbaren Gummi- oder Kunststoffmaterial zugeordnet ist, das eine Öffnung aufweist, die von dem Griff durchsetzt ist und wahlweise durch eine Drehung aus einer Außerwirkstellung in mindestens eine Wirkstellung gebracht werden kann, in welcher Wirkstellung das Federelement in Abhängigkeit einer Spreizung der Griffe und Erzeugung entsprechender Rückstellkraft mit dem gegenüberliegenden Griff in Kontakt tritt.The invention firstly relates to a hand tool with two tool halves crossing in a joint, in particular in the form of pliers, scissors or the like, wherein a tool half forms a jaw on one side of the joint and a handle on the other side of the joint, wherein a handle is further formed a spring element is assigned consisting of an elastically deformable rubber or plastic material having an opening which is penetrated by the handle and can be selectively brought by rotation from a non-operative position in at least one operative position, in which operative position the spring element in response to a spread the handles and generating corresponding restoring force comes into contact with the opposite handle.

Ein gattungsgemäßes Handwerkzeug in Form einer Zange ist beispielsweise aus dem deutschen Gebrauchsmuster 75 08 863 bekannt. Die Öffnung des Federelements weist einen kreisrunden Querschnitt auf. Durch die kreisrunde Öffnung sind die einzelnen Stellungen des Federelements nicht genau definiert. Ein ungewolltes Verlagern des Federelements kann die Folge sein. Das Federelement besteht aus einem elastischen Material und wird ausschließlich durch die resultierende Haltekraft des elastischen Materials an dem Griff der Zange gehalten.A generic hand tool in the form of pliers, for example, from the German utility model 75 08 863 known. The opening of the spring element has a circular cross-section. Due to the circular opening, the individual positions of the spring element are not precisely defined. An unwanted displacement of the spring element may be the result. The spring element is made of an elastic material and is held solely by the resulting holding force of the elastic material on the handle of the pliers.

Der Erfindung liegt die Aufgabe zugrunde, ein eingangs beschriebenes Handwerkzeug gebrauchsvorteilhaft weiterzubilden.The invention has for its object to further develop a hand tool described above advantageous use.

Diese Aufgabe ist zunächst und im wesentlichen bei einem Handwerkzeug mit den Merkmalen des Anspruches 1 gelöst, wobei darauf abgestellt ist, dass der Griff in einer Griffhülle aufgenommen ist und dass die Einhaltung einer Wirkstellung oder Außerwirkstellung des Federelementes durch Formschluss unterstützt ist.This object is achieved initially and essentially in a hand tool with the features of claim 1, wherein it is based on the fact that the handle is received in a handle cover and that compliance with an operative position or Extrawirkstellung the spring element is supported by positive locking.

Ein derartig ausgestaltetes Handwerkzeug ist in der Handhabung für den Benutzer gebrauchsvorteilhaft, da durch einen Formschluss das Federelement in der jeweiligen Stellung gehalten wird und durch eine Griffhülle, die gewöhnlich unverlierbar an dem entsprechenden Abschnitt der Werkzeughälfte gehaltert ist, zugleich zuverlässig an der Werkzeughälfte festgesetzt werden kann. Etwa indem eine gelenkseitige Randkante der Griffhülle zur Festsetzung des Federelementes auf der Werkzeughälfte herangezogen ist. Darüber hinaus lassen sich vorteilhaft die ohnehin mit einer solchen Griffhülle verbundenen Vorteile (Isolation, Griffkontur etc.) auch in Kombination mit einem Federelement wie hier beschrieben nutzen. Durch den Formschluss ist ein ungewolltes Verdrehen des Federelementes während der Benutzung des Handwerkzeuges in der Regel kein Problem. Des Weiteren kann das Federelement auch so gestaltet sein, dass es in unterschiedlichen Wirkpositionen zu dem gegenüberliegenden Griff formschlüssig anordbar ist, was entsprechend zu unterschiedlichen Federcharakteristiken bzw. unterschiedlichen Öffnungswinkeln zwischen den Backen bei entspannter Feder führt. Der Formschluss kann sowohl zwischen dem Federelement und dem Griff, als auch zwischen dem Federelement und der Griffhülle gegeben sein. Dies auch in Form einer Verrastung. Beispielsweise einer Verrastung im Bereich der Öffnung des Federelementes oder eine Verrastung in Zusammenwirkung mit einer Flachseite des Federelementes und der Griffhülle. Es können mehrere Verrastungsstellungen, bevorzugt zugeordnet unterschiedlichen Wirkstellungen der Feder vorgesehen sein.Such a ausgestaltetes hand tool is advantageous in use for the user as is held by a positive fit, the spring element in the respective position and can be reliably fixed to the tool half by a handle cover which is usually captive on the corresponding portion of the mold half , For example, by a hinge-side edge of the handle cover is used to fix the spring element on the mold half. In addition, the benefits associated with such a handle cover anyway (insulation, handle contour etc.) can also be used in combination with a spring element as described here. Due to the positive locking unwanted twisting of the spring element during use of the hand tool is usually no problem. Furthermore, the spring element can also be designed so that it can be arranged in a form-fitting manner in different operative positions relative to the opposite handle, which leads accordingly to different spring characteristics or different opening angles between the jaws with a relaxed spring. The positive connection can be given both between the spring element and the handle, as well as between the spring element and the handle cover. This also in the form of a catch. For example, a latching in the region of the opening of the spring element or a latch in cooperation with a flat side of the spring element and the handle cover. It can be provided a plurality of Verrastungsstellungen, preferably associated with different operative positions of the spring.

Im Weiteren sind Merkmale beschrieben, die bevorzugt in Kombination mit den Merkmalen des Anspruches 1 Bedeutung haben.Furthermore, features are described which preferably have in combination with the features of claim 1 meaning.

So ist vorgesehen, dass die Griffhülle die Öffnung des Federelementes durchsetzt. Das Federelement sitzt somit auf der Griffhülle. Der Formschluss ergibt sich hierbei zwischen dem Federelement und der Griffhülle. Dadurch, dass die Griffhülle das Federelement durchsetzt, kann auch der übliche Isolationsschutz der Griffhülle erhalten werden. Die vollständige Überdeckung durch isolierenden Kunststoff des entsprechenden Abschnitts der Werkzeughälfte ist gewährleistet.Thus, it is provided that the handle cover passes through the opening of the spring element. The spring element thus sits on the handle cover. The positive connection results here between the spring element and the handle cover. The fact that the handle cover penetrates the spring element, the usual insulation protection of the handle cover can be obtained. The complete coverage by insulating plastic of the corresponding section of the mold half is guaranteed.

Weiter bevorzugt ist - über die jeweilige Länge gesehen - zur Erreichung des Formschlusses der Griff bzw. die Griffhülle im Querschnitt unrund gestaltet und die Öffnung des Federelementes im Querschnitt dem Abschnitt des Griffes bzw. der Griffhülle formangepasst. Bei dem unrunden Querschnitt handelt es sich insbesondere um ein Vieleck, beispielsweise um einen an einem Quadrat orientierten Querschnitt. Die Ecken können werkstoffangepasst gerundet sein. Abweichend hiervon kann es sich bei dem Querschnitt auch um einen solchen handeln, der an einem Fünfeck, Sechseck, Achteck oder dergleichen orientiert ist. Es kann sich auch um einen Oval-Querschnitt handeln. Der Querschnitt ist bevorzugt so gewählt, dass die unterschiedlichen Wirkstellungen bzw. Außerwirkstellung stabil eingenommen und gehalten sind, gleichwohl aber noch eine von Handverstellung ohne weiteres möglich ist.Further preferred is - seen over the respective length - to achieve the positive fit of the handle or the handle cover in cross-section out of round and shaped the opening of the spring element in cross section the portion of the handle or the handle cover. The non-circular cross-section is in particular a polygon, for example a cross-section oriented in a square. The corners can be rounded to suit the material. Notwithstanding this, the cross section may also be one which is oriented on a pentagon, hexagon, octagon or the like. It can also be an oval cross-section. The cross-section is preferably chosen so that the different operative positions or extra-active position are taken and held stable, but still one of manual adjustment is readily possible.

Bevorzugt ist das Federelement gelenkseitig einer an der Griffhülle ausgebildeten Stützschulter angeordnet. Auch bei von der Griffhülle durchsetztem Federelement ist dieses an einem Abgleiten gehindert. Das Federelement ist zwischen der Stützschulter und dem Gelenk gefangen. Des Weiteren ist bevorzugt die Stützschulter dem Grundriss des Federelementes in der Außerwirkstellung formangepasst. In der Außerwirkstellung entspricht die mit dem Federelement kombinierte Griffhülle so der üblichen Griffhülle, wobei die gelenkseitige Verdickung, die ein Abrutschen der Hand in Richtung auf das Gelenk verhindern soll, verdickt ausgebildet ist. Insoweit sind dann die Griffhüllen der beiden Werkzeughälften auch unterschiedlich ausgebildet.Preferably, the spring element is arranged on the hinge side of a support shoulder formed on the handle shell. Even with penetrated by the handle shell spring element this is prevented from sliding. The spring element is trapped between the support shoulder and the joint. Furthermore, the support shoulder is preferably adapted to the plan of the spring element in the non-action position. In the Nichtwirkstellung corresponds to the combined with the spring element handle cover so the usual handle cover, the joint-side thickening, which prevent slipping of the hand toward the joint should, thickened is formed. In that regard, then the grips of the two tool halves are also designed differently.

Die Griffhülle, die das Federelement durchsetzt, bildet bevorzugt gelenkseitig des Federelementes - geeigneter Weise: auch, das heißt zusätzlich zu der bereits beschriebenen Stützschulter - eine Schulter aus. Hierdurch kann das Federelement nicht, was störend sein könnte, über die Schulter hinaus auf das Gelenk zu verschoben werden. Ein definierter Abstand des Federelementes zum Gelenk kann eingehalten werden. Das Federelement - gegebenenfalls gesichert durch die Schulter - ist geeigneter Weise in einem Abstand zu der Außenkontur des Gelenks angeordnet. Der Abstand kann dem 1- bis 4-Fachen, bevorzugt dem 1- bis 2-Fachen des Dickenmaßes des Federelementes in Axialrichtung der Werkzeughälfte bzw. der Griffhülle entsprechen. Bevorzugt entspricht das Maß dem 1 ½-Fachen des Dickenmaßes des Federelementes. Grundsätzlich ist es auch möglich, das Federelement zwischen der Schulter und der Stützschulter in Axialrichtung der Griffhülle verschiebbar anzuordnen. Etwa um hierüber auch eine weitere Variation der Wirkstellungen zu erreichen. Bevorzugt ist jedoch eine axial unverschiebbare Anordnung.The handle cover, which passes through the spring element, preferably forms hinge side of the spring element - suitably: also, that is, in addition to the support shoulder already described - a shoulder. As a result, the spring element can not, which could be disturbing, be pushed beyond the shoulder to the joint. A defined distance of the spring element to the joint can be maintained. The spring element - optionally secured by the shoulder - is suitably arranged at a distance from the outer contour of the joint. The distance may correspond to 1 to 4 times, preferably 1 to 2 times the thickness of the spring element in the axial direction of the tool half or the handle cover. The dimension preferably corresponds to 1½ times the thickness dimension of the spring element. In principle, it is also possible to displaceably arrange the spring element between the shoulder and the support shoulder in the axial direction of the handle cover. In order to achieve this also a further variation of the impact positions. However, an axially immovable arrangement is preferred.

Bevorzugt weist die Schulter einen kleineren Grundriss auf als die Stützschulter. Dies entsprechend ihrer Funktion, vorrangig nur die Axialsicherung des Federelementes sicherzustellen. Zudem kann so eine freiliegende Beaufschlagungsfläche des Federelementes (breitseitig, gelenkseitig) erreicht werden, die auch zur Betätigung des Federelementes herangezogen werden kann. Der kleinere Grundriss der Schulter ist auch in der Hinsicht vorteilhaft, dass das Federelement zur Montage - unter elastischer Aufweitung - über die Schulter geführt werden kann (und dann gegebenenfalls erst die so kombinierte Griffhülle auf die Werkzeughälfte aufgeschoben werden kann).Preferably, the shoulder has a smaller floor plan than the support shoulder. This according to their function, primarily to ensure only the axial securing of the spring element. In addition, as an exposed loading surface of the spring element (wide side, joint side) can be achieved, which can also be used to actuate the spring element. The smaller floor plan of the shoulder is also advantageous in the sense that the spring element for mounting - with elastic expansion - can be performed over the shoulder (and then possibly only the so combined handle cover can be pushed onto the mold half).

Das Federelement ist bevorzugt geometrisch in weiterer Einzelheit so gestaltet, dass sich aufgrund der Geometrie eine bestimmte bzw. über den Umfang und einzelnen Wirkstellungen zugeordnet unterschiedliche Federcharakteristik ergibt. So ist bevorzugt, in dem Federelement mindestens eine Ausnehmung vorzusehen. Diese Ausnehmung - bevorzugt als Durchgangsausnehmung gebildet - befindet sich im Wirkbereich des Federelementes. Durch die Gestaltung der Ausnehmungen im Einzelnen kann die Federwirkung des Federelementes nach Wunsch eingestellt werden. Die Ausnehmung, die bevorzugt sich in Dickenrichtung des Federelementes erstreckt, kann auch in die schon vorhandene Öffnung übergehen. Es kann eine große Ausnehmung oder es können auch viele kleine Ausnehmungen in dem Federelement ausgebildet sein. Die Ausnehmungen können das Federelement auch nur teilweise durchsetzen.The spring element is preferably geometrically designed in further detail so that due to the geometry results in a specific or over the circumference and individual working positions assigned different spring characteristic. It is thus preferable to provide at least one recess in the spring element. This recess - preferably formed as a passage recess - is located in the effective range of the spring element. Due to the design of the recesses in detail, the spring action of the spring element can be set as desired. The recess, which preferably extends in the thickness direction of the spring element, can also pass into the already existing opening. It can be a large recess or it can also be formed many small recesses in the spring element. The recesses can enforce the spring element only partially.

Das Federelement besteht bevorzugt aus einem Gummi-Werkstoff oder einem thermoplastischen Elastomer. Es bietet sich ein Polyurethan oder Polypropylen-Elastomer an (PPEPDM). Die Shore-Härte A ist bevorzugt im Bereich von 50 bis 80 gewählt, weiter bevorzugt zwischen 60 und 70.The spring element is preferably made of a rubber material or a thermoplastic elastomer. It offers a polyurethane or polypropylene elastomer (PPEPDM). The Shore A hardness is preferably selected in the range of 50 to 80, more preferably 60 to 70.

Das Federelement kann auch kombiniert aus zwei oder mehreren Werkstoffen hergestellt sein, die dann geeigneter Weise unterschiedliche Härten aufweisen. So ist es beispielsweise vorteilhaft, Bereiche des Federelementes, die zur Verstellung in die verschiedenen Wirkstellungen von Hand beaufschlagt werden, mit einem härteren Werkstoff auszubilden, die eigentlichen Federbereiche demgegenüber aus einem weicheren Werkstoff. Auch können aber die genannten Kombinationen von Werkstoffen zur Einstellung der Federcharakteristik genutzt sein.The spring element can also be made in combination of two or more materials, which then suitably have different hardnesses. For example, it is advantageous to form regions of the spring element, which are acted upon by hand for adjustment in the various operative positions, with a harder material, the actual spring areas in contrast, from a softer material. But also the said combinations of materials can be used to adjust the spring characteristic.

Um die Handhabbarkeit günstig zu unterstützen, kann vorgesehen sein, an dem Federelement Griffmulden auszubilden. Diese können dann im Sinne der vorstehenden Erläuterung aus einem härteren Material bestehen, wenn etwa das Federelement insgesamt im Zwei-Komponenten-Spritzverfahren hergestellt wird. Nicht zuletzt kann durch die unterschiedlichen Materialien auch eine Farbigkeit eingestellt werden.To support the handling low, it may be provided to form recessed grips on the spring element. These can then consist in the sense of the above explanation of a harder material, if about the spring element is produced in total in two-component injection molding. Last but not least, a colourfulness can be set by the different materials.

Bevorzugt ist das Öffnungsmaß der Öffnung des Federelementes in Wirkrichtung des Federelementes größer als das Dickenmaß des Federelementes in Axialerstreckung der Werkzeughälfte bzw. der Griffhülle. Das Öffnungsmaß entspricht bevorzugt dem 1,2- bis 4-Fachen des genannten Dickenmaßes des Federelementes, weiter bevorzugt dem 1,2- bis 2-Fachen und darüber hinaus bevorzugt dem 1,5-Fachen.Preferably, the opening dimension of the opening of the spring element in the effective direction of the spring element is greater than the thickness of the spring element in the axial extension of the mold half or the handle cover. The opening dimension preferably corresponds to 1.2 to 4 times the said thickness dimension of the spring element, more preferably 1.2 to 2 times and more preferably 1.5 times.

Des Weiteren betrifft die Erfindung ein Handwerkzeug mit zwei sich in einem Gelenk kreuzenden Werkzeughälften, insbesondere in Form einer Zange, Schere oder dergleichen, wobei eine Werkzeughälfte auf einer Seite des Gelenks eine Backe und auf der anderen Seite des Gelenks einen Griff ausbildet, welcher von einer Griffhülle umgeben ist, wobei weiter einer Griffhülleninnenseite ein Federelement zugeordnet ist, welches durch Verlagerung in Längserstreckungsrichtung der Griffhülle, in Richtung des Gelenks, von einer Außerwirkstellung, in welcher das Federelement durch den Griff rückengestützt ist, in mindestens eine Wirkstellung gebracht werden kann, in welcher Wirkstellung das Federelement in Abhängigkeit einer Spreizung der Griffe und Erzeugung entsprechender Rückstellkraft mit dem gegenüberliegenden Griff in Kontakt tritt.Furthermore, the invention relates to a hand tool with two in a joint intersecting tool halves, in particular in the form of pliers, scissors or the like, wherein a tool half on one side of the joint forms a jaw and on the other side of the joint a handle which of a Gripping sleeve is surrounded, further being associated with a handle shell inside a spring element which can be brought by displacement in the longitudinal extension direction of the handle cover, in the direction of the joint, from a Außerwirkstellung in which the spring element is back-backed by the handle in at least one operative position in which Active position, the spring element in response to a spread of the handles and generating a corresponding restoring force comes into contact with the opposite handle.

Ein derartiges Handwerkzeug in Form einer Zange ist beispielsweise aus der DE 10 2004 024 385 A1 bekannt. Bei dieser Zange ist das Federelement aus einer metallischen Lamelle gebildet, die zwischen dem Griff und der Griffhülle geführt ist. Die Lamelle besitzt eine vorgegebene Krümmung, welche Krümmung in der Außerwirkstellung unter elastischer Verformung, und damit ständig anliegender Vorspannung, stark zurückgeführt ist. Durch Verschieben der Lamelle in ihrer Wirkstellung nimmt die Lamelle ihre vorgegebene Krümmung unter zunehmender Entspannung zunächst wieder ein, wodurch ein freikragendes Ende der Lamelle in deutlichen Abstand zu dem Griff bzw. der Griffhülle kommt. Bei der Benutzung der Zange wird dieses freie Ende auf den Griff zu verschoben, unter entsprechender elastischer Verformung und Aufbau einer Rückstellkraft.Such a hand tool in the form of a pair of pliers is for example from the DE 10 2004 024 385 A1 known. In this pliers, the spring element is formed of a metallic lamella, which is guided between the handle and the handle cover. The lamella has a predetermined curvature, which curvature in the non-operative position under elastic deformation, and thus constantly applied bias, is greatly reduced. By moving the blade in its operative position, the blade takes its predetermined curvature below Increasing relaxation initially again, whereby a freikragendes end of the blade comes at a significant distance from the handle or the handle cover. When using the pliers, this free end is moved to the handle, with appropriate elastic deformation and build up a restoring force.

Ausgehend von dem vorbeschriebenen Stand der Technik stellt sich der Erfindung insoweit die Aufgabe, ein vorteilhaftes Handwerkzeug mit einem Federelement anzugeben, das durch Verschieben in Längsrichtung der Werkzeughälfte in Wirkstellung bzw. Außerwirkstellung zu bringen ist.Based on the above-described prior art, the object of the invention is to provide an advantageous hand tool with a spring element, which is to be brought by displacement in the longitudinal direction of the tool half in operative position or non-operative position.

Diese Aufgabe ist zunächst und im wesentlichen beim Gegenstand des Anspruches 9 gelöst, wobei darauf abgestellt ist, dass das Federelement auch in der Wirkstellung rückengestützt ist durch den Griff bzw. die Griffhülle. Eine elastische Verformung des Federelementes bei dem Verschieben ist nicht mehr erforderlich. Das Federelement braucht nicht vorgespannt in der Außerwirkstellung gehaltert zu sein. Die Verschiebung ist nicht durch Kräfte beeinflusst, die auf einer elastischen Vorspannung des Federelementes beruhen. Insgesamt ist ein einfacher und vorteilhafter Aufbau möglich.This object is achieved first and foremost in the subject matter of claim 9, wherein it is pointed out that the spring element is also back-supported in the active position by the handle or the handle cover. An elastic deformation of the spring element during the displacement is no longer necessary. The spring element need not be biased to be held in the Nichtwirkstellung. The displacement is not influenced by forces that are based on an elastic bias of the spring element. Overall, a simple and advantageous structure is possible.

Bevorzugt besteht auch bei dieser Ausführungsform das Federelement aus einem elastischen deformierbaren Gummi- oder Kunststoffmaterial. Auf die diesbezüglichen Ausführungen weiter oben wird verwiesen.Preferably, in this embodiment, the spring element consists of an elastically deformable rubber or plastic material. Reference is made to the relevant statements above.

Das Federelement selbst weist einen Wirkabschnitt und einen Schlittenabschnitt auf. Der Schlittenabschnitt ist bevorzugt mit seitlich ausgebildeten Längsnuten versehen, in welche Führungsschienen der Griffhülle eingreifen. Mittels des Schlittenabschnittes und der Griffhülle, konkret den genannten Führungsschienen der Griffhülle, ist das Federelement in Längsrichtung der Griffhülle bzw. der Werkzeughälfte geführt. Das Federelement ist formschlüssig mit der Griffhülle verbunden.The spring element itself has an active portion and a carriage portion. The carriage section is preferably provided with laterally formed longitudinal grooves, in which guide rails of the handle cover engage. By means of the carriage section and the handle cover, specifically the said guide rails of the handle cover, the spring element in the longitudinal direction of the handle cover or the tool half out. The spring element is positively connected to the handle cover.

Der Schlittenabschnitt weist bevorzugt eine Breite auf, die mehr als der Hälfte der Breite der Werkzeughälfte bzw. des Griffes in diesem Bereich entspricht. Bevorzugt etwa 4/10 bis 9/10 der genannten Breite.The carriage section preferably has a width that corresponds to more than half the width of the tool half or the handle in this area. Preferably about 4/10 to 9/10 of said width.

Das Federelement bildet im Bereich des Schlittenabschnittes weiter bevorzugt einen Fingerauflageabschnitt aus. Dies ist der nach innen, der anderen Werkzeughälfte zugewandte freiliegende Rückenbereich des Schlittens. Durch den bevorzugt vorne - in Richtung auf das Gelenk gesehen - ballenartig ausgebildeten Wirkabschnitt des Federelementes, wodurch das Federelement im Bereich des Wirkabschnittes wesentlich dicker ist als im Bereich des Fingerauflageabschnittes, ist so eine Betätigungsfläche geschaffen, mittels welcher etwa mit dem Daumen eine einfache Verschiebung des Federelementes ermöglicht ist. Durch den größeren Wirkabschnitt ist auch zugleich eine Anlage für den Daumen nach vorne hin geschaffen. Möglich ist es auch, rückwärtig noch einen Wulst vorzusehen, an dem der beispielhaft genannte Daumen auch bei Rückbewegung des Federelementes zu einer Formschluss-Anlage kommen kann. Aufgrund der Breite des Federelementes berührt der Daumen in der Regel nicht die Griffhülleninnenseite, so dass auch aus dieser Sicht keine Beeinträchtigung der Verschiebung gegeben ist.The spring element further preferably forms a finger rest section in the region of the carriage section. This is the inward, the other tool half facing exposed back area of the carriage. By preferably front - seen in the direction of the joint - bale-like effective portion of the spring element, whereby the spring element in the region of the effective portion is substantially thicker than in the region of the finger rest portion, so an actuating surface is created by means of which about the thumb a simple displacement of Spring element is enabled. Due to the larger working section, a system for the thumb is also created at the same time. It is also possible to provide a bead at the rear, at which the thumb mentioned by way of example can also come to a form-fit installation when the spring element moves back. Due to the width of the spring element of the thumb touches usually not the handle shell inside, so that from this point of view, no impairment of the shift is given.

Weiter bevorzugt weist auch dieses Federelement in dem Wirkabschnitt eine oder mehrere Öffnungen auf. Der sich gegenüber dem Schlittenabschnitt erhebende Wirkabschnitt kann mittels der Öffnung so gestaltet sein, dass sich eine pantoffelartige Gestaltung ergibt. Auch diese Öffnung kann bevorzugt als Durchgangsöffnung ausgebildet sein.More preferably, this spring element also has one or more openings in the active section. The active section rising above the carriage section can be designed by means of the opening in such a way that a slipper-like design results. This opening may also be formed as a passage opening.

Im Weiteren ist auch in Bezug auf diese Ausführungsform bevorzugt, dass die Griffhülle auch im Bereich des Federelementes eine vollständige Umschließung des Griffes ergibt.Furthermore, it is also preferred in relation to this embodiment that the handle cover also results in the area of the spring element a complete enclosure of the handle.

Weiter kann auch dieses Federelement aus mehreren Werkstoffen, gegebenenfalls unterschiedlicher Härten, bestehen. Insbesondere kann es auch im Zwei-Komponenten-Spritzverfahren hergestellt sein. Hierbei empfiehlt es sich, insbesondere den Bereich der Gleitzusammenwirkung mit der Griffhülle aus einem härteren Werkstoff zu fertigen, dagegen den Wirkabschnitt aus einem weicheren Werkstoff. Gegebenenfalls kann auch der den Fingerauflageabschnitt bildende freie Rücken des Schlittenabschnittes aus einem weicheren Werkstoff gebildet sein, um so eine günstigere Handhabung zu ermöglichen.Next, this spring element of several materials, possibly different hardnesses exist. In particular, it can also be produced in a two-component injection process. In this case, it is recommended to manufacture in particular the region of the sliding interaction with the handle cover of a harder material, however, the active section of a softer material. Optionally, the finger rest portion forming free back of the carriage portion may be formed of a softer material, so as to allow a more favorable handling.

Nachstehend ist die Erfindung des Weiteren anhand der beigefügten Zeichnung, die jedoch lediglich Ausführungsbeispiele darstellt, erläutert. Hierbei zeigt:

Fig. 1
ein erstes Ausführungsbeispiel eines Handwerkzeuges in Form einer Kombizange, dargestellt in der Vorderansicht mit dem Federelement in der Außerwirkstellung, wobei das Handwerkzeug sich in einer Geschlossenstellung befindet;
Fig. 2
einen Schnitt gemäß der Linie II - II aus Fig.1;
Fig. 3
einen Schnitt entsprechend der Fig. 2, jedoch befindet sich hier das Federelement in der Wirkstellung;
Fig. 4
eine Ansicht entsprechend Fig. 1, jedoch befindet sich hier das Federelement in der Wirkstellung und liegt an der gegenüberliegenden Griffhülle an, so dass das Handwerkzeug sich in einer Offenstellung befindet;
Fig. 5
eine Ansicht entsprechend Fig. 4, jedoch ist hier das Handwerkzeug entgegen der Rückstellkraft des Federelements geschlossen worden;
Fig. 6 -Fig. 8
perspektivische Ansichten weiterer möglicher Ausgestaltungen des Federelements;
Fig. 9
ein weiteres Ausführungsbeispiel eines Handwerkzeuges in Form eines Seitenschneiders, wobei das Federelement in der Außerwirkstellung sich befindet und das Handwerkzeug geschlossen ist;
Fig. 10
einen Schnitt entlang der Linie X-X aus Fig. 9;
Fig. 11
eine Ansicht entsprechend Fig. 9, jedoch ist hier das Federelement in die Wirkstellung verlagert worden, wodurch das Handwerkzeug eine Offenstellung eingenommen hat und
Fig. 12
eine Ansicht entsprechend Fig. 11, jedoch wurde hier das Handwerkzeug entgegen der Rückstellkraft des Federelements geschlossen.
In the following, the invention will be explained further with reference to the attached drawing, which, however, represents only exemplary embodiments. Hereby shows:
Fig. 1
a first embodiment of a hand tool in the form of a combination pliers, shown in front view with the spring element in the non-operative position, wherein the hand tool is in a closed position;
Fig. 2
a section along the line II - II off Fig.1 ;
Fig. 3
a cut according to the Fig. 2 , but here is the spring element in the operative position;
Fig. 4
a view accordingly Fig. 1 However, here is the spring element in the operative position and is located on the opposite Handle shell, so that the hand tool is in an open position;
Fig. 5
a view accordingly Fig. 4 , but here the hand tool has been closed against the restoring force of the spring element;
Fig. 6 -Fig. 8th
perspective views of further possible embodiments of the spring element;
Fig. 9
a further embodiment of a hand tool in the form of a side cutter, wherein the spring element is in the Nichtwirkstellung and the hand tool is closed;
Fig. 10
a section along the line XX Fig. 9 ;
Fig. 11
a view accordingly Fig. 9 However, here the spring element has been shifted to the operative position, whereby the hand tool has taken an open position and
Fig. 12
a view accordingly Fig. 11 , but here the hand tool was closed against the restoring force of the spring element.

Dargestellt und beschrieben ist mit Bezug zu den Figuren 1 bis 5 ein erstes Ausführungsbeispiel eines Handwerkzeuges 1 in Form einer Kombizange. Das Handwerkzeug 1 wird von zwei Werkzeughälften 2, 3 gebildet, die mittels eines Gelenks 4 miteinander verbunden sind. Jede Werkzeughälfte 2, 3 bildet jeweils eine Backe 5 und einen Griff 6 aus. Die beiden Griffe 6 sind jeweils in einer Griffhülle 7 aufgenommen. Die Griffhülle 7 bildet gelenkseitig eine Stützschulter 11 aus. Gelenkseitig der Stützschulter 11 ist bei einer der beiden Griffhüllen 7 ein Federelement 8 angeordnet. Das Federelement 8 besteht aus einem elastischen Gummi- oder Kunststoffmaterial. Des Weiteren bildet das Federelement 8 eine Öffnung 9 mit einem Querschnitt aus, der an einem quadratischen Querschnitt orientiert ist. Diese Öffnung 9 wird von einem Abschnitt 10 der Griffhülle 7 durchgriffen, welcher einen an die Form der Öffnung 9 angepassten Querschnitt aufweist. Die Länge des Abschnitts 10 ist der Stärke, das heißt dem Dickenmaß, des Federelements 8 angepasst. Die Stärke des Federelements 8 entspricht dem 0,5- bis 2-Fachen, bevorzugt etwa dem 1,5-Fachen der Dicke des Griffes 6 im Bereich des Federelementes 8.Shown and described is with reference to the FIGS. 1 to 5 a first embodiment of a hand tool 1 in the form of a combination pliers. The hand tool 1 is formed by two tool halves 2, 3, which are connected to each other by means of a joint 4. Each mold half 2, 3 each forms a jaw 5 and a handle 6. The two handles 6 are each received in a handle cover 7. The handle cover 7 forms a support shoulder 11 on the hinge side. On the hinge side of the support shoulder 11 is in one of the two handle covers 7 a spring element 8 is arranged. The spring element 8 is made of an elastic rubber or plastic material. Furthermore, the spring element 8 forms an opening 9 with a cross-section which is oriented on a square cross-section. This opening 9 is penetrated by a portion 10 of the handle cover 7, which has a shape adapted to the shape of the opening 9 cross-section. The length of the portion 10 is the strength, that is the thickness, adapted to the spring element 8. The strength of the spring element 8 corresponds to 0.5 to 2 times, preferably about 1.5 times the thickness of the handle 6 in the region of the spring element eighth

Wie insbesondere der die Außerwirkstellung wiedergebenden Figur 2 zu entnehmen ist, ist der Grundriss des Federelementes 8 in dieser Stellung nahezu dem Grundriss der Stützschulter 11 formangepasst.How in particular the non-operative position reproducing FIG. 2 can be seen, the floor plan of the spring element 8 in this position almost adapted to the shape of the support shoulder 11.

Das Federelement 8 weist weiter mehrere Ausnehmungen 12 in einem Wirkbereich 13 auf, die mittels Stegen voneinander gesondert sind. Die Schulter 14 weist einen kleineren Grundriss auf als die Stützschulter 11. Der Grundriss der Schulter 14 ist so dimensioniert, dass das Federelement 8 durch elastisches Aufweiten der Öffnung 9 über die Schulter 14 auf den Abschnitt 10 montiert werden kann. Somit übergreift die Schulter 14 nur einen geringen Flächenbereich des Federelements 8 zur axialen Lagesicherung.The spring element 8 further comprises a plurality of recesses 12 in an effective region 13, which are separated from one another by means of webs. The shoulder 14 has a smaller floor plan than the support shoulder 11. The floor plan of the shoulder 14 is dimensioned so that the spring element 8 can be mounted by elastic expansion of the opening 9 via the shoulder 14 on the section 10. Thus, the shoulder 14 engages over only a small surface area of the spring element 8 for securing the axial position.

In der in Figur 3 dargestellten (ersten) Wirkstellung ist das Federelement 8 gegenüber der Darstellung in den Figuren 1 und 2 um 180° verschwenkt. Der Wirkbereich 13 des Federelementes 8 ist nun genau gegenüberliegend zu dem den übrigen Griff überragenden Vorsprung der Stützschulter 11 ausladend. Wie sich weiter aus Figur 4 ergibt, ist der Wirkbereich 13 nunmehr in den Bereich zwischen den Griffen 6 angeordnet. Die gegenüberliegende Griffhülle 7 kommt, ausgehend von einer größtmöglichen Öffnung der Zange, bei einem Öffnungswinkel α von ca. 24° in Anlage an den Wirkbereich 13. Ein weiteres Zusammendrücken der Werkzeughälften 2, 3 wird dann also gegen die elastische Rückstellkraft des Federelementes 8 durchgeführt. Nach Entlastung kommen die Werkzeughälften 2, 3 selbsttätig in die in Figur 4 dargestellte Stellung.In the in FIG. 3 shown (first) active position is the spring element 8 with respect to the representation in the FIGS. 1 and 2 swiveled through 180 °. The effective range 13 of the spring element 8 is now exactly opposite to the projection of the support shoulder 11 projecting beyond the remaining handle. How to get out FIG. 4 results, the effective range 13 is now arranged in the area between the handles 6. The opposite handle cover 7 comes, starting from a maximum opening of the pliers, at a Aperture angle α of about 24 ° in contact with the effective range 13. Further compression of the tool halves 2, 3 is then carried out against the elastic restoring force of the spring element 8. After relief, the tool halves 2, 3 come automatically in the FIG. 4 shown position.

Weiter besteht auch die Möglichkeit, das Federelement 8 ausgehend von der Außerwirkstellung gemäß Figur 1 bzw. Figur 2 nur um 90° zu verschwenken. Dann ergibt sich ein Wirkbereich 13', wie er auch beispielsweise in den Figuren 2 und 6 bis 8 grundsätzlich angedeuteut ist. Ersichtlich ergibt sich ein unterschiedlicher Öffnungswinkel zwischen den Werkzeughälften, ab welchem - bei weiterem Zusanmendrücken - die Rückstellkraft des Federelementes 8 wirkt.Next there is also the possibility of the spring element 8, starting from the non-action position according to FIG. 1 respectively. FIG. 2 only to pivot by 90 °. Then there is an effective range 13 ', as he also for example in the Figures 2 and 6 to 8 is basically indicated. Obviously results in a different opening angle between the tool halves, from which - on further Zusanmendrücken - the restoring force of the spring element 8 acts.

Die unterschiedlichen Wirkbereiche 13' und 13 sind hier durch eine unterschiedliche Breite (Abstand von der Öffnungsumrandung bis zur Außenkante) des Federelementes 8 geschaffen. Grundsätzlich ist es aber auch möglich, unterschiedliche Wirkbereiche dadurch zu erreichen, dass zwar die gleichen Abmessungen gegeben sind, also sich auch grundsätzlich die gleiche Rückstellung bei freigegebenen Zangenhälften einstellt, aufgrund unterschiedlicher Charakteristik, etwa unterschiedlicher Ausnehmungen 12, 15 in dem Federelement 8, jedoch sich eine unterschiedliche Federcharakteristik ergibt.The different effective regions 13 'and 13 are created here by a different width (distance from the opening border to the outer edge) of the spring element 8. In principle, however, it is also possible to achieve different effective ranges in that, although the same dimensions are given, so basically sets the same provision for released pliers halves, due to different characteristics, such as different recesses 12, 15 in the spring element 8, however, itself gives a different spring characteristic.

In der Figur 6 ist ein weiteres Ausführungsbeispiel des Federelements 8 dargestellt. Hier weist das Federelement 8 lediglich eine große Ausnehmung 15 auf. Die Stege zwischen den einzelnen Ausnehmungen 12 des Federelements 8 in der Figur 2 sind gleichsam entfernt. Somit ist eine große Ausnehmung 15 entstanden. Durch die Anzahl und die Form der Ausnehmungen 12,15 kann die Federkraft des Federelements 8 eingestellt werden.In the FIG. 6 a further embodiment of the spring element 8 is shown. Here, the spring element 8 only has a large recess 15. The webs between the individual recesses 12 of the spring element 8 in the FIG. 2 are, as it were, removed. Thus, a large recess 15 has been created. By the number and shape of the recesses 12,15, the spring force of the spring element 8 can be adjusted.

In der Figur 7 ist ein weiteres Ausführungsbeispiel eines Federelements 8 dargestellt. Dieses Ausführungsbeispiel weist keine Ausnehmungen auf, jedoch sind in die Breitseiten der Wirkbereiche 13' Griffmulden 16 eingearbeitet. Die Griffmulden 16 ergeben für eine Fingerbetätigung des Federelementes 6 in Bezug auf eine Verschwenkung eine gewisse Formschlüssigkeit. Die Ausnehmungen wie sie zuvor erläutert worden sind, können auch bei den Ausführungsformen der Figuren 7 und 8 vorgesehen sein.In the FIG. 7 another embodiment of a spring element 8 is shown. This embodiment has no recesses, however, recessed grips 16 are incorporated in the broad sides of the effective regions 13 '. The recessed grips 16 result in a certain positive engagement for a finger actuation of the spring element 6 with respect to pivoting. The recesses as previously explained, can also in the embodiments of the FIGS. 7 and 8 be provided.

Des weiteren kann das Federelement 8 auch aus verschiedenen Stoffen bzw. Kunststoffen bestehen. Insbesondere kann es im Zwei-Komponenten-Spritzverfahren hergestellt sein. In dem Ausführungsbeispiel der Figur 8 sind die Wirkbereiche 13' mit den Griffmulden 16 aus einem härteren Material als der Wirkbereich 13 hergestellt, jedoch ist der Bereich unmittelbar um die Öffnung 9 aus einem weicheren Material hergestellt als die Bereiche der Griffmulden 16.Furthermore, the spring element 8 also consist of different materials or plastics. In particular, it may be produced by two-component injection molding. In the embodiment of FIG. 8 For example, the effective regions 13 'with the recessed grips 16 are made of a harder material than the effective region 13, but the region immediately around the opening 9 is made of a softer material than the regions of the recessed grips 16.

In Bezug zu den Figuren 9 bis 12 ist ein weiteres Ausführungsbeispiel eines Handwerkzeuges 1 beschrieben. Bei dem Handwerkzeug 1 in den Figuren 9 bis 12 handelt es sich um einen Seitenschneider. Zuvor verwendete Bezugszeichen sind auch hierbei für gleiche Elemente verwendet.In relation to the FIGS. 9 to 12 Another embodiment of a hand tool 1 is described. In the hand tool 1 in the FIGS. 9 to 12 it is a side cutter. Previously used reference numerals are also used here for the same elements.

In diesem Ausführungsbeispiel ist das Federelement 8 an der Griffhülleninnenseite 17 der Griffhülle 7 angeordnet. Das Federelement 8 weist einen länglichen Schlittenabschnitt 18 auf, welcher in einer Längsnut 19 der Griffhülle 7 geführt ist. Auch hier ist das Federelement 8 aus einem elastischen Gummi- bzw. Kunststoffmaterial gefertigt. Der Schlittenabschnitt 18 bildet seitlich verlaufende Nuten 20 aus, in welche aus der Griffhülle 7 gebildete Führungsschienen 21 hineinragen. Die Führungsschienen 21 erstrecken sich vom Rand der Längsnut 19 in die Nuten 20 des Schlittenabschnittes 18 hinein. Somit ist das Federelement 8 formschlüssig, aber längsverschieblich in der Griffhülle 7 gehaltert.In this embodiment, the spring element 8 is arranged on the handle inner side 17 of the handle cover 7. The spring element 8 has an elongated carriage section 18, which is guided in a longitudinal groove 19 of the handle cover 7. Again, the spring element 8 is made of an elastic rubber or plastic material. The carriage section 18 forms laterally extending grooves 20, in which protrude from the handle cover 7 formed guide rails 21. The guide rails 21 extend from the edge of the longitudinal groove 19 into the grooves 20 of the carriage section 18. Thus, the spring element 8 is positively held, but longitudinally displaceable in the handle cover 7.

Aufgrund des vergleichsweise weichen Werkstoffes, aus dem jedenfalls bevorzugt der Schlittenabschnitt 18 besteht, ist auch eine einfache Montage durch Einklipsung ermöglicht. Die Längsnut 19 erstreckt sich in etwa ausgehend von der Hälfte der Griffhülle 7 bis kurz vor Ende der Griffhülle 7 in Richtung des Gelenks 4. Somit kann das Federelement 8 in Richtung des Gelenks 4 verschoben werden. Wie aus Figur 10 hervorgeht, ist die Längsnut 19 soweit in die Griffhülle 7 eingearbeitet, dass der Griff 6 auch im Bereich der Längsnut 19 von der Griffhülle 7 vollständig umschlossen ist.Due to the comparatively soft material, from which in any case preferably the carriage section 18, a simple assembly is made possible by clipping. The longitudinal groove 19 extends approximately from the half of the handle cover 7 until shortly before the end of the handle cover 7 in the direction of the joint 4. Thus, the spring element 8 can be moved in the direction of the joint 4. How out FIG. 10 As can be seen, the longitudinal groove 19 is incorporated so far into the handle cover 7, that the handle 6 is completely enclosed in the longitudinal groove 19 of the handle cover 7.

Gelenkseitig bildet das Federelement 8 auf dem Schlittenabschnitt 18 einen Wirkabschnitt 22 aus. Der Wirkabschnitt 22 wird von einer Öffnung 23 durchragt. Die Achse der Öffnung 23 verläuft in einem spitzen Winkel zur Längserstreckung der Längsnut 19. Dabei weist der Scheitelpunkt des spitzen Winkels in Richtung des Gelenks 4. In Richtung der Griffenden der Griffe 6 hinter dem Wirkabschnitt 22 bildet der Schlittenabschnitt 18 einen Fingerauflageabschnitt 24 aus. Der Fingerauflageabschnitt 24 ist der Breite des Federelements 8 angepasst.On the hinge side, the spring element 8 forms an active section 22 on the carriage section 18. The active section 22 is penetrated by an opening 23. The axis of the opening 23 extends at an acute angle to the longitudinal extension of the longitudinal groove 19. In this case, the vertex of the acute angle in the direction of the joint 4. In the direction of the grip ends of the handles 6 behind the active portion 22 of the carriage portion 18 forms a finger support portion 24. The finger rest section 24 is adapted to the width of the spring element 8.

Wird nun ausgehend von der Figur 9 das Federelement 8 in Richtung des Gelenks 4 innerhalb der Längsnut 19 bis zum Ende verlagert, so befindet sich das Federelement 8 in der Wirkstellung, welche in der Figur 11 dargestellt ist. In dieser Stellung liegt der Wirkabschnitt 22 an der gegenüberliegenden Griffhülleninnenseite 17 der Griffhülle 7 an. Dadurch werden die beiden Griffe 6 sowie die Backen 5 voneinander beabstandet. Das Handwerkzeug 1 wird in der Offenstellung gehalten. Durch Schließen des Handwerkzeuges 1 wird der elastische Wirkabschnitt 22 des Federelements 8 elastisch verformt. Nachdem keine Kraft mehr auf die beiden Griffe 6 des Handwerkzeugs 1 ausgeübt wird, wird von der Rückstellkraft, welche von dem elastischen Wirkabschnitt 22 des Federelements 8 ausgeht, das Handwerkzeug 1 wieder in die Offenstellung verlagert, welche in Figur 11 dargestellt ist. Auch bei diesem Ausführungsbeispiel wird durch die Öffnung 23 erreicht, dass das Federelement 8, in dem Fall der Wirkabschnitt 22, leichter deformiert werden kann. Ebenfalls kann auch hier der Öffnungswinkel α der Backen 5 verändert werden. Dies kann durch die Position des Federelementes 8 zu dem Gelenk 4 stufenlos eingestellt werden. Je näher das Federelement 8 an dem Gelenk 4 positioniert ist, desto größer wird der Öffnungswinkel α.Now, starting from the FIG. 9 the spring element 8 is displaced in the direction of the joint 4 within the longitudinal groove 19 to the end, so is the spring element 8 in the operative position, which in the FIG. 11 is shown. In this position, the active portion 22 is located on the opposite handle inner side 17 of the handle cover 7 at. As a result, the two handles 6 and the jaws 5 are spaced from each other. The hand tool 1 is held in the open position. By closing the hand tool 1, the elastic active portion 22 of the spring element 8 is elastically deformed. After no force is exerted on the two handles 6 of the hand tool 1, the restoring force, which emanates from the elastic active portion 22 of the spring element 8, the hand tool 1 is moved back to the open position, which in FIG. 11 is shown. Also in this embodiment is achieved through the opening 23 that the spring element 8, in the case of the effective portion 22, can be deformed easily. Also, the opening angle α of the jaws 5 can also be changed here. This can be adjusted continuously by the position of the spring element 8 to the joint 4. The closer the spring element 8 is positioned to the joint 4, the larger the opening angle α becomes.

Claims (15)

  1. Hand tool (1) having two tool halves (2, 3) which cross over at a joint (4), in particular a hand tool in the form of pliers, scissors or the like, it being the case that a tool half (2, 3) forms a jaw (5) on one side of the joint (4) and forms a handle (6) on the other side of the joint (4), and also that a spring element (8) is associated with one handle (6), the spring element consisting of an elastic deformable rubber or plastics material and having an opening (9) through which the handle (6) passes, and it being the case that the spring element can be moved optionally, by rotation, out of an inactive position into at least one active position, in which active position the spring element (8), in dependence on the extent to which the handles (6) spread apart and on a corresponding restoring force being generated, comes into contact with the handle (6) located opposite, characterized in that the handle (6) is accommodated in a handle enclosure (7), and in that a positive fit assists in an active position or inactive position of the spring element (8) being maintained, the handle enclosure (7) passing through the opening (9) in the spring element (8).
  2. Hand tool according to one or more of the preceding claims, characterized in that at least one portion (10) of the handle (6) or of the handle enclosure (7) is of non-round configuration in cross-section and/or the opening (9) in the spring element (8) is cross-sectionally adapted in shape to the portion (10) of the handle (6) or of the handle enclosure (7).
  3. Hand tool according to one or more of the preceding claims, characterized in that the spring element (8) is disposed on the joint side of a supporting shoulder (11) formed on the handle enclosure (7), the supporting shoulder (11) being adapted in shape to the outline of the spring element (8) in the inactive position.
  4. Hand tool according to one or more of the preceding claims, characterized in that a shoulder (14) of the handle enclosure (7) is provided on the joint side of the spring element (8), the shoulder (14) having a smaller outline than the supporting shoulder (11),
  5. Hand tool according to one or more of the preceding claims, characterized in that at least one cavity (12) is provided in the spring element (8), the spring element (8) consisting of rubber or a thermoplastic elastomer.
  6. Hand tool according to one or more of the preceding claims, characterized in that the spring element (8) consists of a number of materials of different degrees of hardness, the spring element (8) consisting externally of a relatively hard material and internally of a relatively soft material.
  7. Hand tool according to one or more of the preceding claims, characterized in that the spring element (8) has grip hollows (16) and/or the spring element (8) is produced by two-component injection moulding.
  8. Hand tool according to one or more of the preceding claims, characterized in that the extent of the opening (9) in the spring element (8) as seen in the direction of action of the spring element (8) is greater than the thickness of the spring element (8) along the axial extent of the handle (6) and/or the spring element (8) is spaced apart from an outer contour of the joint (4).
  9. Hand tool (1) having two tool halves (2, 3) which cross over at a joint (4), in particular a hand tool in the form of pliers, scissors or the like, it being the case that a tool half (2, 3) forms a jaw (5) on one side of the joint (4) and forms a handle (6), enclosed by a handle enclosure (7), on the other side of the joint (4), and also that a spring element (8) is associated with an inner side (17) of one handle enclosure, which spring element, by displacement towards the joint (4) in the direction of the longitudinal extent of the handle enclosure (7), can be moved from an inactive position, in which the spring element (8) is supported by the back of the handle (6), into at least one active position, in which active position the spring element (8), in dependence on the extent to which the handles (6) spread apart and on a corresponding restoring force being generated, comes into contact with the handle (6) located opposite, characterized in that, even in the active position, the spring element (8) is supported in the active region by the back of the handle (6) or of the handle enclosure (7).
  10. Hand tool according to Claim 9, characterized in that the spring element (8) has a slide portion (18).
  11. Hand tool according to Claim 10, characterized in that the spring element (8) consists of an elastic deformable rubber or plastics material and/or has an active portion (22) having an opening (23), the slide portion (18) having a width which corresponds to the thickness of the joint (4) and/or the slide portion (18) forming a finger-supporting portion (24).
  12. Hand tool according to Claims 9 to 11, characterized in that the spring element (8) is not subjected to any deformation in the inactive position.
  13. Hand tool according to Claims 9 to 12, characterized in that the opening (23) is in the form of a through-opening, the handle enclosure (7), in the region of the spring element (8), fully enclosing the handle (6).
  14. Hand tool according to Claims 9 to 13, characterized in that the spring element (8) consists of a number of materials of different degrees of hardness and is produced by two-component injection moulding.
  15. Hand tool according to Claims 9 to 14, characterized in that the active portion (22) consists of a softer material than the slide portion (18).
EP07728133A 2006-04-18 2007-04-16 Self-opening tool Not-in-force EP2007553B1 (en)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE202006006159U DE202006006159U1 (en) 2006-04-18 2006-04-18 Hand-snip has two handles that pivot about a common point and incorporating a highly elastic rubber bush
DE102006050133A DE102006050133A1 (en) 2006-04-18 2006-10-25 Self-opening hand tool e.g. universal pliers, has handle with spring, which is made of elastically deformable rubber or plastic material and is supported on handle in form fit manner to maintain operating position or non-operating position
PCT/EP2007/053668 WO2007118868A1 (en) 2006-04-18 2007-04-16 Self-opening tool

Publications (2)

Publication Number Publication Date
EP2007553A1 EP2007553A1 (en) 2008-12-31
EP2007553B1 true EP2007553B1 (en) 2010-05-26

Family

ID=36710243

Family Applications (1)

Application Number Title Priority Date Filing Date
EP07728133A Not-in-force EP2007553B1 (en) 2006-04-18 2007-04-16 Self-opening tool

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Country Link
US (1) US7975577B2 (en)
EP (1) EP2007553B1 (en)
CN (1) CN101479076B (en)
AT (1) ATE468943T1 (en)
DE (3) DE202006006159U1 (en)
ES (1) ES2346804T3 (en)
WO (1) WO2007118868A1 (en)

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Publication number Priority date Publication date Assignee Title
DE102007060057A1 (en) * 2007-12-13 2009-06-18 Robert Bosch Gmbh Hand tool
CN104416494A (en) * 2013-08-26 2015-03-18 株式会社角田 Open and close work tool
US9475177B1 (en) 2014-06-13 2016-10-25 Ross Lazarov Irrigation wrench
US10081092B2 (en) 2014-06-13 2018-09-25 Ross Lazarov Irrigation bolt wrench combination
CA2959813C (en) * 2014-09-02 2023-07-11 Dr. Anthony G. STANLEY Cutting tool
US10172683B2 (en) 2015-02-18 2019-01-08 Anthony G. Stanley Measuring devices for medical tools
US11285581B2 (en) 2018-06-04 2022-03-29 Stanley Medical Designs, Inc. Hand tool
CN110524446A (en) * 2019-09-06 2019-12-03 上海外高桥造船有限公司 Multifunctional grip device
US11235446B2 (en) * 2020-01-17 2022-02-01 Tzu Yu Chen Opening structure of tool grip

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US81717A (en) * 1868-09-01 Improvement in belt-punches
GB1160272A (en) * 1965-11-27 1969-08-06 Wilkinson Sword Ltd Improvements in or relating to Hand Tools
DE7508863U (en) 1975-03-20 1976-10-07 J.A. Henckels Zwillingswerk Ag, 5650 Solingen SCISSORS, PLIERS OR THE SAME
FR2765134B1 (en) 1997-06-25 1999-09-10 Eloi Pernet Ets HAND TOOL TYPE PLIERS
CN2301305Y (en) * 1997-08-18 1998-12-23 陈进谦 Simple locking device of cutting nippers
FR2775504B1 (en) * 1998-02-27 2000-05-19 Bost Garnache Ind DAMPING AND / OR OPENING SPRING FOR A TOOL, AND CORRESPONDING TOOL
FR2855087B1 (en) 2003-05-19 2006-05-12 Mob Outil SELECTIVE RECALL CLAMP
US6941845B2 (en) * 2003-12-05 2005-09-13 Chih-Ching Hsien Hand tool having bendable holding portion
US7143672B1 (en) * 2005-07-28 2006-12-05 Helen Of Troy Limited Hand tools with suppressible stay-open mechanism

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Publication number Publication date
ES2346804T3 (en) 2010-10-20
ATE468943T1 (en) 2010-06-15
WO2007118868A1 (en) 2007-10-25
CN101479076A (en) 2009-07-08
US20090293686A1 (en) 2009-12-03
US7975577B2 (en) 2011-07-12
DE102006050133A1 (en) 2007-10-31
EP2007553A1 (en) 2008-12-31
DE202006006159U1 (en) 2006-07-06
CN101479076B (en) 2012-07-04
DE502007003943D1 (en) 2010-07-08

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