EP2059370B1 - Dispositif de manipulation supplémentaire - Google Patents

Dispositif de manipulation supplémentaire Download PDF

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Publication number
EP2059370B1
EP2059370B1 EP07787419.6A EP07787419A EP2059370B1 EP 2059370 B1 EP2059370 B1 EP 2059370B1 EP 07787419 A EP07787419 A EP 07787419A EP 2059370 B1 EP2059370 B1 EP 2059370B1
Authority
EP
European Patent Office
Prior art keywords
auxiliary handle
fastening
component
axis
achieving
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
EP07787419.6A
Other languages
German (de)
English (en)
Other versions
EP2059370A1 (fr
Inventor
Aldo Di Nicolantonio
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.)
Robert Bosch GmbH
Original Assignee
Robert Bosch 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 Robert Bosch GmbH filed Critical Robert Bosch GmbH
Publication of EP2059370A1 publication Critical patent/EP2059370A1/fr
Application granted granted Critical
Publication of EP2059370B1 publication Critical patent/EP2059370B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25FCOMBINATION OR MULTI-PURPOSE TOOLS NOT OTHERWISE PROVIDED FOR; DETAILS OR COMPONENTS OF PORTABLE POWER-DRIVEN TOOLS NOT PARTICULARLY RELATED TO THE OPERATIONS PERFORMED AND NOT OTHERWISE PROVIDED FOR
    • B25F5/00Details or components of portable power-driven tools not particularly related to the operations performed and not otherwise provided for
    • B25F5/02Construction of casings, bodies or handles
    • B25F5/025Construction of casings, bodies or handles with torque reaction bars for rotary tools
    • B25F5/026Construction of casings, bodies or handles with torque reaction bars for rotary tools in the form of an auxiliary handle

Definitions

  • the invention is based on an auxiliary handle device according to the preamble of claim 1.
  • Additional handgrip devices which have a fastening unit with at least one fastening means.
  • Examples are from the EP0249037A2 . DE10106050A1 . US2006 / 067801A1 or US2005 / 081364A1 known.
  • the invention is based on an auxiliary handle device, in particular for handheld power tools, with a fastening unit having at least one fastening means. It is proposed that the fastening means is provided for achieving a positive connection in an axial direction of a fastening axis, whereby an efficient securing of an auxiliary handle in the axial direction can be achieved. In this case, for example, during operation of the power tool When blocking a tool slipping of the auxiliary handle in the axial direction can be advantageously avoided.
  • the auxiliary handle device is in particular for the attachment of the auxiliary handle on a hand tool, in particular a drilling and / or beating hand tool provided, for example, a percussion drill, so that the attachment axis of the attachment unit of a tool axis of the power tool, in particular a drilling axis corresponds.
  • a hand tool in particular a drilling and / or beating hand tool provided, for example, a percussion drill
  • an "axial direction of a fastening axis" is understood to mean a direction along the fastening axis.
  • the fastening unit has at least one further fastening means for achieving a form-locking connection in a circumferential direction of the fastening axis, whereby in addition to a backup of an additional handle in the axial direction of the mounting axis additionally securing the auxiliary handle in the circumferential direction of the mounting axis can be achieved on a hand tool.
  • the fastening means for achieving the positive connection in the circumferential direction of the fastening axis is arranged and / or formed differing from the fastening means for achieving the form-locking connection in the axial direction of the fastening axis.
  • a "circumferential direction of the attachment axis" is to be understood here as a direction which is directed around the attachment axis.
  • the fastening means for achieving a positive connection in the axial direction the fastening axis has a rib-shaped fastening element, whereby a robust fastening means and an efficient securing of an auxiliary handle in the axial direction can be achieved.
  • a main extension direction of the rib-shaped fastening element is aligned perpendicular to the fastening axis, so that a maximum securing and / or fastening surface for securing in the axial direction can be achieved.
  • the rib-shaped fastening element can in this case be arranged in a receiving region of the auxiliary handle or be coupled to a provided for fastening the auxiliary handle component of the power tool.
  • the rib-shaped fastening element can be formed by a bolt-shaped or rod-shaped component, a stamped sheet-metal part or further components which appear to be suitable for the person skilled in the art.
  • the rib-shaped fastening element is arranged within an auxiliary handle, whereby a comfortable insertion of the auxiliary handle, in particular a play-free insertion, can be achieved. Further, advantageously, further components, space, installation costs and costs can be saved if the rib-shaped fastening element is formed integrally with the auxiliary handle.
  • the rib-shaped fastening element can in this case be pressed into the auxiliary handle, injected or fastened in a further manner which appears appropriate to a person skilled in the art on the additional handle.
  • the fastening means to achieve a positive connection in the axial direction of the mounting axis on a groove-shaped recess, whereby a simple and in particular tool-free engagement of a corresponding fastener can be achieved.
  • a main extension direction of the groove-shaped recess is aligned perpendicular to the mounting axis.
  • the groove-shaped recess can extend in the circumferential direction of the fastening axis.
  • a particularly compact embodiment of a power tool can be achieved if the groove-shaped recess is arranged on a spindle neck of the power tool.
  • a corresponding to the groove-shaped fastening means on the additional handle such as a rib-shaped fastener, also a haptic security feeling of an operator of the power tool can be achieved by means of a locking mechanism of the fastener.
  • a robust securing can be achieved if the fastening means to achieve a positive connection in the circumferential direction of the mounting axis has at least one elevation.
  • the survey can be arranged on an additional handle or on a provided for attachment of the auxiliary handle component of a power tool.
  • the survey is arranged on a spindle neck of the power tool.
  • the survey is expediently formed integrally with the spindle neck of the power tool, whereby further components, space, installation costs and costs can be saved.
  • the survey is web-shaped coupled to a housing of the power tool.
  • the fastening means to achieve a positive connection in the circumferential direction of the attachment axis at least one recess, whereby a simple, positive locking with corresponding fasteners, in particular with elevations, can be achieved in the circumferential direction.
  • the fastening means having the recesses may be arranged on a component of a hand-held power tool provided for fastening the auxiliary handle, and particularly advantageously on an additional handle.
  • the auxiliary handle device comprises a receiving unit of an auxiliary handle, which is at least two parts, whereby a particularly comfortable and structurally simple attachment of the auxiliary handle to a hand tool, especially on a spindle neck of a percussion drill, can be achieved. Furthermore, a particularly advantageous and play-free insertion of the spindle neck in the receiving unit can be achieved by a part of the receiving unit for axial securing and another part of the receiving unit is provided for insertion.
  • a "receiving unit” is to be understood as meaning a unit of an additional handle which is provided for receiving a partial region of a hand-held power tool, in particular a spindle neck.
  • the auxiliary handle device comprises a first component and a second component of the auxiliary handle, which engage positively in the assembled state.
  • a particularly stable receiving unit of the auxiliary handle can be achieved and a stable and secure attachment to the power tool can be achieved.
  • this can be achieved structurally simple, if at least a portion of one of the components of the auxiliary handle is slit-like.
  • a slot-like design of one of the components is aligned perpendicular to the mounting axis.
  • a structurally simple and positive engagement of the two components of the receiving region of the auxiliary handle can be achieved if at least a portion of a component of the auxiliary handle has a cavity.
  • a hollow space is to be understood as meaning a hollow space, which is arranged in the interior of the component and is opened to the outside at a maximum of two sides.
  • FIG. 1 a hand tool 12 formed by a drilling and / or percussion drill is shown.
  • the hand tool 12 includes a tool holder 52, which is driven by a drive unit, not shown can be, and on a side facing away from the tool holder 52 side of the power tool 12 arranged main handle 54.
  • a drilling axis 22 of the power tool 12 is in the axial direction 28 in front of the tool holder 52 an additional handle 32 is arranged.
  • the auxiliary handle 32 is located on a spindle neck 44 of the hand tool 12.
  • an auxiliary handle device 10 which includes a fixing unit 14, the auxiliary handle 32 to the spindle neck 44 of the power tool 12 can be fastened.
  • FIG. 2 is a partial section of the in FIG. 1 shown drill and / or percussion drill with the spindle neck 44 for receiving the auxiliary handle 32 to see.
  • the spindle neck 44 has a cylindrical shape and is aligned along the drilling axis 22 of the drilling and / or percussion drill.
  • the attachment axis corresponds to the drilling axis 22 of the drilling and / or percussion drill.
  • the fastening unit 14 is arranged, which has a fastening means 16 for achieving a positive connection in the circumferential direction 20 of the fastening axis and a further fastening means 26 for achieving a positive connection in the axial direction 28 of the fastening axis.
  • the fastening means 16 for achieving the positive connection in the circumferential direction 20 has four web-shaped elevations 46, which are distributed in the circumferential direction 20 about the spindle neck 44.
  • the four web-shaped elevations 46 are at a distance of 90 ° in the circumferential direction 20 spaced from each other and formed integrally with the spindle neck 44.
  • the four web-shaped elevations 46 are arranged on an edge region 58 of the spindle neck 44 facing away from the tool holder 52, which connects to a housing 38 of the power tool 12.
  • the attachment means 26 for achieving the positive connection in the axial direction 28 of the attachment axis has a groove-shaped recess 42 which extends in the circumferential direction 20 about the spindle neck 44 of the power tool 12.
  • the groove-shaped recess 42 extends annularly around the entire spindle neck 44. In principle, however, it is also conceivable that the groove-shaped recess 42 extends over a limited portion in the circumferential direction 20 on the spindle neck 44.
  • the groove-shaped recess 42 is arranged along the fastening axis in the direction of the tool holder 52 after the four web-shaped elevations 46. In addition, the groove-shaped recess 42 is spaced from the four web-shaped elevations 46 on the spindle neck 44th
  • the auxiliary handle 32 comprises a receiving unit 30, which is formed in two parts, and the fastening unit 14 of the auxiliary handle device 10, which has a fastening means 18 for achieving the positive connection in the circumferential direction 20 of the fastening axis and a fastening means 24 for achieving a positive connection in the axial direction 28 of the fastening axis.
  • a first component 34 of the auxiliary handle 32 comprises a gripping means 64 and a semicircular receiving means 66 of the receiving unit 30 for receiving the spindle neck 44 of the drilling and / or percussion drilling machine ( FIG. 4 ).
  • the receiving means 66 is formed integrally with the handle 64 and 64 is open on a side facing away from the grip 64. At an edge region 68 of the semicircular receiving means 66 is followed by a molding 60 for receiving the measuring device.
  • the receiving means 66 encloses a semicircular receiving area 70 with a circle diameter K.
  • the receiving means 66 of the first component 34 has the fastening means 18.
  • the fastening means 18 is formed by uniformly spaced recesses 48, which are arranged in the circumferential direction 20 on a receiving region 70 facing side of the receiving means 66.
  • the recesses 48 extend along the attachment axis to a portion of the semicircular receiving means 66.
  • the receiving means 66, the fastening means 24 to achieve a positive connection in the axial direction 28 of the mounting axis, of a rib-shaped fastening element 50 is formed and pressed into the receiving means 66.
  • the rib-shaped fastening element 50 embodied as a bolt protrudes into the semicircular receiving region 70 of the receiving means 66.
  • a main extension direction 72 of the rib-shaped fastening element 50 is aligned perpendicular to the fastening axis (FIG. FIG. 4 ).
  • a second component 36 comprises a portion 74, which is for engaging in the first component 34 is provided, and a circular receiving means 76 for receiving the spindle neck 44 of the drilling and / or percussion drill.
  • the portion 74 and the circular receiving means 76 are integrally formed.
  • the receiving means 76 forms a circular receiving area 78, which has a circle diameter K 'which is equal to the circle diameter K of the first component 34.
  • the molding 60 for receiving the measuring device is arranged at an edge region 80 of the receiving means 76 opposite to the partial region 74.
  • auxiliary handle 32 on the lateral formation 60 of the first component 34 and the second component 36 on a receiving portion 62 for a measuring device, not shown, which is used to measure and / or detection of a borehole depth in a drilling operation with the drilling and / or Impact drill is provided ( FIG. 3 ).
  • the measuring device is advantageously attached to a form-fitting mounting of a first component 34 and a second component 36 of the auxiliary handle 32 fixed thereto ( FIGS. 6 and 7 ).
  • FIGS. 6 and 7 the positive engagement of the first component 34 and the second component 36 of the auxiliary handle 32 is shown.
  • a partial region encompassed by the gripping means 64 of the first component 34 is internally provided with a cavity 82 which is provided for receiving the second component 36 ( FIGS. 4 and 6 ).
  • the second component 36 is slotted in the subregion 74 in a region of the receiving means 76 facing the subregion 74 ( FIG. 3 ), allowing a positive intervention in the first Component 34 is possible.
  • a slotted region 84 (FIG. 3) of the second component 36 is aligned perpendicular to the fastening axis.
  • the second component 36 When mounting the auxiliary handle 32 to the spindle neck 44 of the drilling and / or percussion drill, the second component 36 is perpendicular to the mounting axis with the portion 74 ahead in the semicircular receiving area 70 and then in the FIG. 6 Dashed cavity 82 of the first component 34 introduced. In this case, the second component 36 is inserted so far into the first component 34 that substantially a complete circle diameter K 'of the second component 36 is maintained ( FIG. 6 ).
  • the circle diameter K 'of the receiving area 78 is matched to a cross section of the spindle neck 44, so that the auxiliary handle 32 can be guided on the spindle neck 44 almost free of play.
  • the first component 34 and the second component 36 are screwed together via a screw, not shown.
  • the additional handle 32 with the first component 34 and the second component 36 is guided with the recesses 48 having the side of the tool holder 52 on the spindle neck 44 until the recess 48 and the web-shaped projections 46 engage positively in one another.
  • the second component 36 is shorter than the first component 34 by an extension length of the recesses 48 in the axial direction 28 (FIG. 3).
  • the auxiliary handle 32 can be attached by means of four web-shaped elevations 46 on the spindle neck 44 and the recesses 48 on the auxiliary handle 32 in different radial orientations.
  • the first component 34 and the second component 36 via the screw clamped so that the rib-shaped fastening element 50 positively engages in the groove-shaped recess 42 provided for this purpose of the spindle neck 44 and the first component 34 and the second component 36 connect in a form-fitting manner ( FIG. 7 ).
  • the screw is loosened until the rib-shaped fastener 50 is exposed from the groove-shaped recess 42, so that the auxiliary handle 32 first axially displaced and then additionally in the circumferential direction 20 can be moved if necessary.
  • FIGS. 8 and 9 an alternative embodiment of the auxiliary handle 32 is shown.
  • corresponding components and features are numbered in principle with the same reference numerals.
  • the in the FIGS. 8 and 9 The following description is essentially limited to the differences from the exemplary embodiment in FIGS FIGS. 1 to 7 ,
  • the second component 36 has the fastening means 18 for achieving a positive connection in the circumferential direction 20.
  • the recesses 48 extend along a portion 56 of the receiving means 76 of the second component 36 in the circumferential direction 20, the portion 56 merges with the recesses 48 in the mounted state in the recesses 48 of the first member 34.
  • the rib-shaped fastening element 50 of the first component 34 is formed by a stamped sheet metal part.
  • the auxiliary handle 32 For clamping the first component 34 with the second component 36, the auxiliary handle 32 comprises in the FIGS. 8 and 9 a third component 86.
  • the third component 86 comprises a gripping means 88, which is rotatably inserted in the first component 34 and via an in FIG. 9 shown threaded rod 90 is screwed to the second component 36.
  • the partial region 74 of the second component 36 comprises a recess 92 with a nut 94 inserted into the recess 92.
  • the nut 94 has an anti-rotation lock and is positively integrated in a plastic wall of the partial region 74 of the second component 36.
  • a spring 96 which is disposed about the threaded rod 90 of the third member 86 and which is biased in the assembled state of the auxiliary handle 32. If the screw connection to the second component 36 is released by rotation of the third component 86, a spring force of the spring 96 causes the second component 36 to be pushed out of the first component 34 and the rib-shaped fastening element 50 to come away from the groove-shaped recess 42 of the spindle neck 44, and the auxiliary handle 32 can be removed from the spindle neck 44 of the power tool 12.
  • the rib-shaped fastening element 50 is spring-loaded, so that upon insertion of the auxiliary handle 32, the rib-shaped fastening element 50 engages in the groove-shaped recess 42 of the spindle neck 44, as soon as the auxiliary handle 32 is positively connected to the spindle neck 44 in the circumferential direction 20 ,

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Portable Power Tools In General (AREA)
  • Details Of Rigid Or Semi-Rigid Containers (AREA)
  • Earth Drilling (AREA)
  • Percussive Tools And Related Accessories (AREA)

Claims (11)

  1. Ensemble de poignée supplémentaire, en particulier pour outil manuel motorisé (12), présentant une unité de reprise (30) d'une poignée supplémentaire (32) et une unité de fixation (14) qui présente au moins un moyen de fixation (24) prévu pour obtenir une liaison en correspondance géométrique dans une direction axiale (28) d'un axe de fixation, l'unité de fixation (14) présentant au moins un autre moyen de fixation (18) permettant d'obtenir une liaison en correspondance géométrique dans la direction périphérique (20) de l'axe de fixation,
    caractérisé en ce que
    le moyen de fixation (18) est disposé et/ou configuré de manière à obtenir une liaison en correspondance géométrique dans la direction périphérique (20) de l'axe de fixation qui diffère de celle du moyen de fixation (24) permettant d'obtenir la liaison en correspondance géométrique dans la direction axiale (28) de l'axe de fixation,
    en ce que l'unité de reprise (30) présente au moins un premier composant (34) et un deuxième composant (36), le premier composant (34) du moyen de fixation (24) étant prévu pour obtenir la liaison en correspondance géométrique dans la direction axiale (28) et le deuxième composant (36) étant prévu pour l'insertion d'un collet fileté (44) d'un outil manuel motorisé (12) et
    en ce que le premier composant (34) et le deuxième composant (36) s'engagent en correspondance géométrique l'un dans l'autre lorsqu'ils sont en position montée.
  2. Ensemble de poignée supplémentaire selon la revendication 1, caractérisé en ce que pour obtenir une liaison en correspondance géométrique dans la direction axiale (28) de l'axe de fixation, le moyen de fixation (24) présente un élément de fixation (50) en forme de nervures.
  3. Ensemble de poignée supplémentaire selon la revendication 2, caractérisé en ce que l'élément de fixation (50) est disposé à l'intérieur d'une poignée supplémentaire (32).
  4. Ensemble de poignée supplémentaire selon l'une des revendications précédentes, caractérisé en ce que pour obtenir une liaison en correspondance géométrique dans la direction axiale (28) de l'axe de fixation, le moyen de fixation (26) présente une découpe (42) en forme de rainure.
  5. Ensemble de poignée supplémentaire selon la revendication 4, caractérisé en ce que la découpe (42) en forme de rainure est disposée sur un collet fileté (44) d'un outil manuel motorisé (12).
  6. Ensemble de poignée supplémentaire selon l'une des revendications précédentes, caractérisé en ce que le moyen de fixation (16) permettant d'obtenir une liaison en correspondance géométrique dans la direction périphérique (20) de l'axe de fixation présente au moins une saillie (46).
  7. Ensemble de poignée supplémentaire selon au moins la revendication 6, caractérisé en ce que la saillie (46) est disposée sur un collet fileté (44) d'un outil manuel motorisé (12).
  8. Ensemble de poignée supplémentaire selon l'une des revendications précédentes, caractérisé en ce que pour obtenir une liaison en correspondance géométrique dans la direction périphérique (20) de l'axe de fixation, le moyen de fixation (18) présente au moins une découpe (48) .
  9. Ensemble de poignée supplémentaire selon la revendication 8, caractérisé en ce que la découpe (48) est disposée sur une poignée supplémentaire (32).
  10. Ensemble de poignée supplémentaire selon l'une des revendications précédentes, caractérisé en ce qu'au moins une partie (74) des composants (36) de la poignée supplémentaire (32) a la forme d'une fente.
  11. Ensemble de poignée supplémentaire selon l'une des revendications précédentes, caractérisé en ce qu'au moins une partie d'un des composants (34) de la poignée supplémentaire (32) présente une cavité (82).
EP07787419.6A 2006-09-01 2007-07-12 Dispositif de manipulation supplémentaire Active EP2059370B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102006041069A DE102006041069A1 (de) 2006-09-01 2006-09-01 Zusatzhandgriffvorrichtung
PCT/EP2007/057148 WO2008025605A1 (fr) 2006-09-01 2007-07-12 Dispositif de manipulation supplémentaire

Publications (2)

Publication Number Publication Date
EP2059370A1 EP2059370A1 (fr) 2009-05-20
EP2059370B1 true EP2059370B1 (fr) 2018-09-12

Family

ID=38445820

Family Applications (1)

Application Number Title Priority Date Filing Date
EP07787419.6A Active EP2059370B1 (fr) 2006-09-01 2007-07-12 Dispositif de manipulation supplémentaire

Country Status (6)

Country Link
US (1) US8132296B2 (fr)
EP (1) EP2059370B1 (fr)
CN (1) CN101511548B (fr)
DE (1) DE102006041069A1 (fr)
RU (1) RU2446935C2 (fr)
WO (1) WO2008025605A1 (fr)

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Also Published As

Publication number Publication date
US20100005629A1 (en) 2010-01-14
RU2009111544A (ru) 2010-10-10
US8132296B2 (en) 2012-03-13
EP2059370A1 (fr) 2009-05-20
CN101511548B (zh) 2013-06-19
WO2008025605A1 (fr) 2008-03-06
DE102006041069A1 (de) 2008-03-06
CN101511548A (zh) 2009-08-19
RU2446935C2 (ru) 2012-04-10

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