EP3463762B1 - Dispositif de rangement d'outils - Google Patents

Dispositif de rangement d'outils Download PDF

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Publication number
EP3463762B1
EP3463762B1 EP17716156.9A EP17716156A EP3463762B1 EP 3463762 B1 EP3463762 B1 EP 3463762B1 EP 17716156 A EP17716156 A EP 17716156A EP 3463762 B1 EP3463762 B1 EP 3463762B1
Authority
EP
European Patent Office
Prior art keywords
plug
storage device
storage housing
latching
tool storage
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
EP17716156.9A
Other languages
German (de)
English (en)
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EP3463762A1 (fr
Inventor
Stefan Christen
David Steinlin
Simon Isch
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
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Filing date
Publication date
Application filed by Robert Bosch GmbH filed Critical Robert Bosch GmbH
Publication of EP3463762A1 publication Critical patent/EP3463762A1/fr
Application granted granted Critical
Publication of EP3463762B1 publication Critical patent/EP3463762B1/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
    • B25HWORKSHOP EQUIPMENT, e.g. FOR MARKING-OUT WORK; STORAGE MEANS FOR WORKSHOPS
    • B25H3/00Storage means or arrangements for workshops facilitating access to, or handling of, work tools or instruments
    • B25H3/003Holders for drill bits or the like
    • BPERFORMING OPERATIONS; TRANSPORTING
    • B25HAND TOOLS; PORTABLE POWER-DRIVEN TOOLS; MANIPULATORS
    • B25HWORKSHOP EQUIPMENT, e.g. FOR MARKING-OUT WORK; STORAGE MEANS FOR WORKSHOPS
    • B25H3/00Storage means or arrangements for workshops facilitating access to, or handling of, work tools or instruments
    • B25H3/02Boxes
    • B25H3/021Boxes comprising a number of connected storage elements
    • B25H3/022Boxes comprising a number of connected storage elements in fixed relationship

Definitions

  • the invention relates to a tool storage device, in particular a tool storage box, for storing insert tools and / or assembly aids, according to claim 1.
  • a tool case is disclosed with an additional storage container that is accessible from an interior of the tool case, wherein the storage container can be attached in or on the tool case by means of a snap mechanism and is used to provide additional stowage options for various small parts.
  • the storage container has a clamping arm with a clamping recess which forms a connection with the tool case and is provided to secure the storage container against inadvertent detachment from the tool case.
  • the invention is based on the object of improving a tool storage device for storing insert tools and / or assembly aids using simple structural measures.
  • the plug-in means has a first holding end connected, in particular at least partially positively, to the receiving area of the storage housing and a second holding end, at least partially positively connected to the receiving area of the storage housing, in order to secure the plug-in means positively in relation to at least one first direction.
  • the plug-in means in particular the first holding end and the second holding end of the plug-in means, is connected to the storage housing in such a way that the plug-in means is fixed, in particular clamped, on the storage housing in at least one second direction, in particular free of play.
  • plug-in means is firmly connected to the storage housing and is secured against unintentional loosening.
  • plug-in means is particularly braced with respect to the storage housing and thus, in addition to the form-fitting connection of the plug-in means with the storage housing, there is a non-positive connection that stores the plug-in means, in particular without play.
  • an insertion means braced with respect to the storage housing can be particularly advantageous for an operator of the
  • the storage device enables an advantageously simple detachment of the plug-in means from the storage housing by, for example, releasing the positively connected second holding end so that the plug-in means can be removed from the storage housing with little effort.
  • a pretensioned tool storage device in particular a plug-in means and / or a storage housing, can be implemented by elastic deformation such as compression or bending of the plug-in means and / or the storage housing, which reversibly changes the original dimensions of the plug-in means and / or the storage housing causes.
  • the plug-in means and / or the storage housing can deform in order to achieve a bracing of the tool storage device.
  • the plug-in means can preferably be designed in one piece.
  • the storage housing should preferably be designed in one piece. “In one piece” is to be understood as meaning, in particular, materially bonded, such as through manufacture from a cast and / or through manufacture in a one-component or multi-component injection molding process.
  • a "tool storage device” is to be understood in particular as a container that is used to store insert tools, such as drilling tools and / or screwdriver bits, and / or assembly aids, such as screws, dowels and / or nails .
  • insert tools such as drilling tools and / or screwdriver bits
  • assembly aids such as screws, dowels and / or nails .
  • the insert tools and / or the assembly aids can be present in an assortment and in particular have different sizes and purposes.
  • a "plug-in means” is to be understood in particular as a means which is provided for receiving and holding insert tools and / or assembly aids and additionally enables a detachable connection to the receiving area of the storage housing.
  • the plug-in means preferably contains several receiving means for receiving several insert tools and / or assembly aids.
  • the receiving means of the plug-in means are preferably arranged next to one another in one plane.
  • several plug-in means can be provided, which are arranged, for example, next to one another in one plane and connected to the tool storage device.
  • firmly connected is to be understood as meaning, in particular, a connection which releasably and securely connects two bodies that are not connected to one another or at least structurally not one-piece in a fastening state and, in particular, fastened, fixed or braced.
  • a “storage housing” is to be understood in particular as a frame-shaped housing that preferably completely surrounds the plug-in means at least in one plane.
  • the storage housing is preferably 200 to 100 mm, particularly preferably 170 to 160 mm, such as 165 mm, long.
  • the storage housing is preferably 150 to 80 mm, particularly preferably 120 to 100 mm, such as 110 mm, wide.
  • the storage case is preferably 30 to 70 mm, particularly preferably 45 to 60 mm, such as 40 or 50 mm, high.
  • the storage housing can have a greater thickness than the plug-in means. In a closed position, the plug-in means can lie completely in a space spanned by the storage housing.
  • the storage housing is preferably constructed in at least two parts and consists of a first storage housing and a second storage housing, which are pivotably connected to one another.
  • the two storage housings can assume an open or a closed position, so that, for example, in an open position, both the insert tools or the assembly aids and the plug-in means can be removed from the storage housing in a particularly simple manner.
  • the receiving area forms a cavity which is completely delimited or surrounded by the storage housing at least in one plane. In particular, when the tool storage device is in a closed position, the receiving area is completely surrounded by the storage housing.
  • the insert tools and / or assembly aids can be removed quickly and easily from the tool storage device in a particularly advantageous manner.
  • free of play is to be understood in particular to mean that the plug-in means is connected to the storage device in at least one fastening state in such a way that there is contact between the plug-in means and the storage device in at least one direction.
  • the plug-in means and / or the storage device should be pretensioned so that the plug-in means and / or the storage device achieve an elastic deformation in at least one direction compared to an initial dimension, for example by a deformation that is dependent on a change in the extent and preferably to generate a counterforce proportional to the change, which counteracts the change.
  • the counterforce is preferably provided to produce play-free storage of the plug-in means in or on the storage device.
  • a backlash-free connection can take place by means of an interference fit or a press fit, in that, for example, the clamping means has a greater extent than the receiving area of the storage device provided for receiving the plug-in means.
  • the plug-in means can be compressed in order to fit into the receiving area provided for receiving the plug-in means.
  • a corresponding change in length of the plug-in means and / or the storage device should be able to be applied to the plug-in element by a force with, for example, a finger of an operator.
  • the plug-in means and / or the storage housing contain or consist of a plastic.
  • a “second direction” should be understood to mean a direction which is understood along a main direction of extent of the plug-in means, which in particular represents the length of the plug-in means.
  • a “first direction” should be understood to mean a direction which, in particular, is angled to the second direction at an angle in a range from approximately 85 ° to 95 °, in particular in a range from 88 ° to 92 ° represents the depth of the plug-in means. In particular, this can be understood to mean a direction which is perpendicular or at a right angle to the second direction of the plug-in means.
  • a “third direction” is to be understood in this context as a direction which, in particular at an angle in a range from approximately 85 ° to 95 °, in particular in a range from 88 ° to 92 °, to the first and / or to the second Direction is angled and in particular reproduces the width of the plug-in means.
  • the plug-in means can contain or consist of elastic material, the plug-in means being intended to be at least partially deformed at least in the second direction and to mount the plug-in means firmly, in particular free of play, in the receiving area, in particular to tension it.
  • the storage housing can be designed to be particularly stable in order to enable an advantageously robust or stable connection between the plug-in means and the storage housing.
  • the plug-in means can be elastically changeable in a normal operating state by up to 5%, in particular by up to 3%, preferably by up to 2%, preferably by up to 1%, particularly preferably by up to 0.5%, in particular achieve a corresponding change in the extension compared to an initial dimension and in particular generate a counterforce which is dependent on a change in the extension and preferably proportional to the change and which counteracts the change.
  • the plug-in means and / or the storage device can in a normal operating state by up to 7%, in particular by up to 5%, preferably by up to 3%, preferably by up to 2%, particularly preferably by up to 1%, such as 2.8%, can be changed elastically.
  • the storage device can have a modulus of elasticity of approximately 500 to 7000 MPa, in particular of approximately 1500 to 3100 MPa, preferably of approximately 2300 MPa.
  • the plug-in means can have a modulus of elasticity of about 300 to 5000 MPa, in particular of about 1000 to 2000 MPa, preferably of about 1460 MPa.
  • an “elastic material” should be understood to mean, in particular, a material that can be repeatedly deformed without the material being damaged as a result is mechanically damaged or destroyed, and which, in particular after a deformation, automatically strives for a basic shape again.
  • Provided is to be understood in particular as specifically programmed, designed and / or equipped.
  • the fact that an object is provided for a specific function should be understood in particular to mean that the object fulfills and / or executes this specific function in at least one application and / or operating state.
  • the second holding end of the plug-in means can be arranged on a side of the plug-in means facing away from the first holding end and to have a stop geometry extending in the first direction, in particular a stop elevation, which is provided to hold the plug-in means in one with the Receiving area of the storage housing connected fastening state in at least the second direction, in particular free of play, to be stored, in particular to be tensioned.
  • the stop geometry can extend in the first direction in order to increase the extent of the plug-in means in at least the first direction.
  • the storage housing can contain or consist of elastic material which is provided to deform at least in the second direction and to mount the plug-in means firmly, in particular free of play, in the receiving area, in particular to tension it.
  • the plug-in means can be designed to be particularly stable in order to enable an advantageously robust or stable connection between the plug-in means and the storage housing.
  • the plug-in means and the storage housing can contain or consist of an elastic material, so that an elastic deformation of both the plug-in means and the storage housing is made possible in order to brace the plug-in means and the storage housing.
  • the elastic material of the storage housing can preferably have a modulus of elasticity that is lower than the modulus of elasticity of the plug-in means. This creates a particularly simple connection, in particular consisting of Frictional connection and / or frictional connection generated between storage housing and plug-in means.
  • the receiving area of the storage housing and / or the plug-in means can have a first latching geometry, in particular an elastic latching tongue, which is provided to releasably connect the plug-in means to the receiving area in at least the first direction, in particular to latch .
  • a first latching geometry in particular an elastic latching tongue
  • the operator receives a secure form-fitting connection in at least the first direction X when the plug-in means is snapped into place in the storage housing and furthermore a particularly advantageous feedback in the form of an acoustic noise, such as a snapping or a Clicking, or a haptic impression is obtained and can thus ensure that the plug-in means is firmly connected or latched to the storage housing.
  • the latching geometry assumes a latching connection only in the first direction and correspondingly secures the plug-in means in the first direction.
  • a “latching geometry” should be understood to mean a geometry of at least one latching element which forms a latching device at least partially contrary to a further latching geometry corresponding to the geometry and which is provided in particular to enable non-stepless adjustment or protection against falling out.
  • a “latching device” is to be understood in particular as a device comprising at least two latching elements, the at least two latching elements being displaceable or rotatable relative to one another and being provided to prevent a movement, in particular a rotary movement, or to counteract a movement in at least one position in particular to enable a movement, in particular a rotary movement, in at least one further position.
  • the locking elements are elastically deflectable in order to then lock behind a corresponding locking element by an internal tensioning force.
  • the latching device is not designed to be stepless.
  • the latching geometry in particular the latching elements, should not be intended to brace the plug-in means with the storage housing in at least the second direction, but only to secure the plug-in means in at least the first direction in the fastening state. Bracing the plug-in means with the storage housing in the second direction would, among other things, have a detrimental effect on the function of the latching geometry and thus could not ensure easy removal of the plug-in means from the storage housing, since the latching geometry requires increased effort to release the plug-in means from the storage housing.
  • the receiving area have a guide device which is provided to exert a constraining force on the plug-in means, in particular the stop geometry of the plug-in means, when the plug-in means is transferred from a released state to a fastening state, in order to move the plug-in means in at least the second direction Y must be specified.
  • a guide device which is provided to exert a constraining force on the plug-in means, in particular the stop geometry of the plug-in means, when the plug-in means is transferred from a released state to a fastening state, in order to move the plug-in means in at least the second direction Y must be specified.
  • guide device is intended here to define in particular a device that is provided to exert a constraining force at least along a direction perpendicular to a point of contact or a contact surface between the plug-in means and the tool storage device in order to provide a possibility of movement of the plug-in device along the storage area of the tool storage device .
  • constraining force is intended to define a force that is provided to prevent a body from moving in at least one direction and / or to keep the body moving on a path predetermined by the action of the force on the body .
  • the guide device surrounds the first latching geometry in one plane by at least 30 °, in particular by at least 90 °, preferably by at least 180 °, in order to protect the first latching geometry, in particular from inadmissible loading.
  • the guide device can also serve as a protective element which at least partially surrounds the first detent geometry and protects the guide device from impermissible movement of the first detent geometry, in particular the detent tongue, which can prevent the first detent geometry from being unacceptably loaded or even destroyed during handling will.
  • the guide device can extend at least partially parallel to the first locking geometry and limit a deflection of the first locking geometry in at least the second direction.
  • the guide device can have a delimiting rib which extends essentially parallel to the first latching geometry or to the latching tongue and is provided to serve as a stop for the first latching geometry in a deflected state of the first latching geometry.
  • the guide device preferably surrounds the first latching geometry in a U-shape in at least one plane.
  • the guide device can have a guide wall that connects the two guide ribs.
  • the guide wall can be arranged on a side of the first locking geometry facing away from the second locking geometry.
  • the guide wall can be formed in one piece with a side wall of the storage device.
  • the guide device has at least one guide rib, in particular comprising at least one inclined guide rib surface or at least one inclined guide rib edge, which limits a movement of the plug-in means in at least the second direction.
  • the guide rib can in particular have at least one guide rib surface which extends essentially in the first direction and in the second direction and which is provided to limit a movement of the plug-in means in at least the third direction.
  • the guide rib protrudes in the second direction from a side wall of the storage housing.
  • the guide device preferably has two opposing guide rib surfaces which limit a movement of the plug-in means in at least the third direction.
  • At least one guide rib surface is preferably angled to a plane spanned by the third and the second direction so that an insertion means sliding along the guide rib surface slides into a constriction formed, for example, by the two guide rib surfaces, and is clamped in at least the third direction when the insertion means is in a fastening state or is clamped.
  • the guide rib surface can be flat and at an angle of up to 4 °, in particular up to 3 °, preferably up to 2 °, such as 1.5 °, with respect to a plane spanned by a second direction and a third direction, be angled.
  • the guide rib edge can preferably be angled at an angle of up to 10 °, in particular up to 8 °, preferably up to 6 °, such as 5 °, with respect to a plane spanned by a first direction and a third direction.
  • the guide ribs are arranged in particular on a side delimiting the receiving area of the storage device.
  • the second holding end of the plug-in means can be arranged on a side of the plug-in means facing away from the first holding end and to have a second latching geometry extending essentially in the second direction Y, in particular at least one latching rib, which is provided for the purpose of holding the plug-in means, in particular the second holding end of the plug-in means to lock in relation to the first locking geometry of the storage housing in at least the first direction.
  • a second latching geometry extending essentially in the second direction Y, in particular at least one latching rib, which is provided for the purpose of holding the plug-in means, in particular the second holding end of the plug-in means to lock in relation to the first locking geometry of the storage housing in at least the first direction.
  • the second holding end of the plug-in means can have a guide geometry extending in the second direction Y, in particular at least one guide rib, which is provided to position the plug-in means along the guide device. This ensures that the guide rib along the guide device, in particular the Guide rib surface of the guide device, is positively guided and occupies a clearly defined position in the receiving area of the storage device.
  • the guide rib surface can in particular have at least one guide rib surface extending essentially in the first direction and in the second direction, which is provided to limit a movement of the plug-in means in at least the third direction.
  • the guide rib surface preferably protrudes in the second direction from a side wall of the storage housing.
  • At least one guide rib surface is preferably angled to a plane spanned by the third and second directions so that an insertion means sliding along the guide rib surface slides into a constriction formed, for example, by the two guide rib surfaces, and is clamped in at least the third direction when the insertion means is in a fastening state or is clamped.
  • the guide rib can have a conductor elevation protruding in the third direction, in particular an elastic pretensioning elevation, which is provided to mount the plug-in means firmly, in particular without play, in the receiving area in at least the third direction, in particular with no play tighten.
  • the conductor elevation preferably contains or consists of an elastic material so that the conductor elevation can be elastically deformed in at least the third direction and the plug-in means can be supported without play in at least the third direction or can be clamped between the guide device.
  • the first holding end of the plug-in means has a holding tongue which delimits the plug-in means in the second direction and which is provided to grip into a recess in the receiving area of the storage housing and to limit movement in at least the second direction and / or the third direction, and in particular to brace the plug-in means in the first direction.
  • the first holding end of the plug-in means can be particularly advantageous, in particular positively connected to the storage device.
  • the recess in the receiving area of the storage housing can be designed as a trough extending in at least the second direction or a notch in the storage housing and can be provided with the plug-in means in at least the second and / or the third direction to form a positive and / or non-positive connection form.
  • the recess in the receiving area of the storage housing can be designed as a material opening extending in at least the second direction which, in particular, 100% penetrates the storage housing at least 100% of the material thickness.
  • the retaining tongue be adapted to the recess in the receiving area, in particular by means of an interference fit, in such a way that a force acting at least in the first direction, in particular a pretensioning force, is applied to the plug-in means, in particular the retaining tongue.
  • the holding tongue can have an extension in the first direction which is at least partially smaller than an extension of the recess in the first direction.
  • the retaining tongue can in particular serve as a positioning element which, for example, engages in the recess of the storage housing when the plug-in means is inserted and optimally positions the plug-in means for guidance in the guide device of the storage housing. This is ensured in particular by the fact that the retaining tongue is designed to be flat and has a main extent in the second direction and in the third direction, so that, for example, the plug-in means is rotated about an axis pointing in the second direction through the recess and the recess in the storage housing inserted retaining tongue is prevented.
  • the plug-in means has a pretensioning elevation which is provided to apply a pretensioning force acting in the first direction to the holding tongue when the plug-in means is transferred from a released state to a fastening state.
  • the prestressing elevation preferably contains or consists of an elastic material so that the prestressing elevation can be elastically deformed in at least the first direction and the plug-in means can be supported without play in at least the first direction or can be clamped between the recess.
  • the figures each relate to a tool storage device, in particular a tool storage box, for storing insert tools, such as drilling tools and / or screwdriver bits, and / or assembly aids, such as screws, dowels and / or nails.
  • the tool storage device is designed in at least two parts and has at least one plug-in means and at least one storage housing that receives the plug-in means.
  • the plug-in means can differ in their embodiments in that, for example, plug-in means are provided for receiving insert tools such as screwdriver bits or plug-in means for receiving assembly aids such as small parts or screws.
  • other embodiments of the plug-in means for receiving various other things are also conceivable, but will not be discussed further.
  • Figs. 1 to 3 show a tool storage device 10 with two pivotable storage housings 15, 15 ′ that can be deflected relative to one another and a plurality of plug-in means 13 detachably connected to the storage device 10.
  • pivotably mounted is to be understood in particular to mean that the storage housing 15 is connected to the base body, in particular a further storage housing 15 ', such that it can be moved about an axis, in particular a pivot axis.
  • the pivoting movement of the two storage housings 15 is brought about in particular by a commercially available joint 101 in the form of, for example, a hinge.
  • the plug-in means 13 is elongated and has a main extension forming a length of the plug-in means 13 in a second direction Y and a transverse extension forming a width of the plug-in means 13 in a third direction Z.
  • An extension of the plug-in means 13 in a first direction X forms a depth of the plug-in means 13.
  • the storage housing 15 is essentially cuboid and has a main extension forming a length of the storage housing 15 in a third direction Z and a transverse extension forming a width of the storage housing 15 in a second direction Y.
  • An extension of the storage housing 15 in a first direction X forms a depth of the storage housing 15, in particular when the storage housing 15 is in a closed state.
  • the storage housing 15 has a receiving area 17 which forms a cavity 103 and is provided to provide a hollow volume for receiving insert tools and / or assembly means.
  • the cavity 103 is in particular delimited by four side walls 105, each forming a first frame, and a bottom wall 107, which forms a lower delimitation, so that the storage housing 15 is open at the top on a side opposite the bottom wall 107.
  • a further storage housing 15 ′ in particular an essentially contrary configuration to the storage housing 15, is connected to the storage housing 15 so as to be pivotable relative to the storage housing 15 and is provided for this purpose, the cavity 103 of the storage housing 15 in a closed state of the tool storage device 10.
  • the storage housing 15 ′ has on at least one side wall 105 a, in particular form-fitting, locking mechanism 109 which releasably connects the two storage housings 15, 15 ′ in a closed state of the tool storage device 10.
  • the directions X, Y and Z of the storage housing 15 form a stationary coordinate system which is identical to a reference coordinate system of the plug-in means 13 at least in one fastening state, so that the first, second and third directions X, Y and Z of the stationary coordinate system of the storage housing 15 at least represents the first, second and third directions X, Y and Z of the reference coordinate system in the fastening state.
  • the reference coordinate system can be rotated about at least the third direction Z or axis relative to the fixed coordinate system of the storage housing 15, in particular when the plug-in means 13 is released.
  • first, second and third directions X, Y and Z are transverse, in particular perpendicular or orthogonal, to one another. Minor deviations, such as an angular deviation of up to 5%, in particular up to 4%, preferably up to 3%, preferably up to 2%, particularly preferably up to 1%, of the directions X, Y, Z within the scope of a technical knowledge and skills of a person skilled in the art.
  • the plug-in means 13 contains or consists of an elastic material.
  • the entire plug-in means 13 can be elastically deformed in at least the second direction Y.
  • the plug-in means 13 is preferably formed from a plastic which has elastic properties and enables elastic deformation or a change in length in a range from 98 to 99.5% compared to an initial length of the plug-in means 13. Alternatively, other materials other than plastic would also be possible.
  • the plug-in means 13 preferably has a plurality of holding means 111 for holding insert tools, such as drilling tools or screwdriver bits, which are arranged in particular between the first holding end 21 and the second holding end 23.
  • the plug-in means 13 contains a plurality of receiving means 111 for receiving assembly aids.
  • the receiving means 111 of the plug-in means 13 are arranged next to one another in one plane.
  • the receiving means 111 have at least one conventional form-locking element 113, in particular a form-locking arm, which secures the insert tool against inadvertent detachment from the receiving means 111 of the plug-in means 13.
  • the receiving means 111 has a conventional force-locking element 115, in particular a spring arm, which is provided to apply a holding force to the insert tool received in the receiving means 111.
  • the insert tools are held in the receiving means 111, in particular in a form-fitting manner.
  • several plug-in means 13 can be provided, which are arranged, for example, next to one another in one plane and are connected to the tool storage device 10.
  • form-fit element should be understood to mean at least one element such as a recess, in particular a shoulder, shoulder, projection or stop, which interacts with at least one corresponding form-fit element.
  • a form-fit connection thus has two at least partially opposing surfaces and / or edges, which advantageously hinder each other's movement and form a tight fit of the form-fit elements in at least one direction X, Y, Z.
  • the plug-in means 13 can, for example, be a box 115 ( Fig. 2 ) for receiving assembly aids, which is arranged in particular between the first holding end 21 and the second holding end 23.
  • the box 115 can in particular have a cavity 117 which is delimited by several, in particular four, side walls 119, a bottom wall 121 connecting the side walls 119 and a cover 123 pivotably connected to at least one side wall 119.
  • the lid 123 has a closure 125, which is provided to open or close the cavity 117.
  • the plug-in means 13 has a first holding end 21 and a second holding end 23 facing away from the first holding end 21.
  • the plug-in means 13 is limited in particular in the second direction Y by the first holding end 21 and the second holding end 23.
  • the first holding end 21 has a holding tongue 61 which extends in the second direction Y and delimits the first holding end 21.
  • the holding tongue 61 is flat and has a main extension in the third direction Z and protrudes in the second direction Y.
  • the second holding end 23 has a second latching geometry 51, in particular a latching rib 53, which extends essentially in the third direction Z and protrudes in the second direction Y, which is intended to be latched to the storage housing 15 and the plug-in means 13 in to secure the storage housing 15 in a form-fitting manner in at least the first direction X.
  • a second latching geometry 51 in particular a latching rib 53, which extends essentially in the third direction Z and protrudes in the second direction Y, which is intended to be latched to the storage housing 15 and the plug-in means 13 in to secure the storage housing 15 in a form-fitting manner in at least the first direction X.
  • the storage housing 15 has a first latching geometry 31 adjacent to at least one side wall 105.
  • the first locking geometry 31 is designed as a flat locking arm 127, which extends in the third direction Z and protrudes from the bottom wall 107 in the first direction X.
  • the latching arm 127 has on a side of the latching arm 127 facing away from the bottom wall 127 a latching shoulder 129 protruding in the second direction Y, which is provided to prevent the latching rib 53 from loosening in the first direction X when it is positively connected to the latching arm 127 to secure.
  • the latch arm 127 is elastically bent in a second direction Y in order to guide the latching rib 53 along at least part of the latch arm 127 and, in a fastening state, in a second direction Y opposite to the second direction Y to transfer back to the starting position.
  • the storage housing 15 has a plurality of first latching geometries 31, which are provided to each receive a plug-in means 13. It is thus also possible to use different plug-in means 13, in particular with different shapes and functions, so that an operator can select the corresponding plug-in means 13 as he wishes.
  • the first locking geometries 31 are arranged at a distance from one another in the third direction Z.
  • the plug-in means 13 has a detent geometry that forms a detent arm, not shown, which is intended to releasably connect the plug-in means 13 to the receiving area 17 of the storage housing 15 in at least the first direction X, in particular to lock it.
  • the storage housing 15 is preferably formed from a plastic which has elastic properties and enables elastic deformation or a change in length in a range of 96 to 99% compared to an initial length of the storage housing 15.
  • a plastic which has elastic properties and enables elastic deformation or a change in length in a range of 96 to 99% compared to an initial length of the storage housing 15.
  • other materials other than plastic would also be possible.
  • the second holding end 23 has a guide geometry 55 that extends essentially in the first direction X and protrudes in the second direction Y, in particular two guide ribs 57, which are provided for this purpose, along a guide device 41, in particular a guide rib 43 of the guide device 41, of the storage case 15 to slide.
  • two guide ribs 43 parallel to one another can be provided, between which at least one guide rib 57 is provided, which limits a movement of the second holding end 23 in at least the third direction Z.
  • two guide ribs 57 parallel to one another can be provided, between which at least one guide rib 43 is provided, which limit a movement of the second holding end 23 in at least the third direction Z.
  • the guide ribs 57 have a guide rib surface 57a, which is provided with a guide rib surface 43a of the guide device 41 to a sliding pair form so that the guide rib surface 57a slides relative to the guide rib surface 43a.
  • the guide rib surface 43a extends in particular in a plane spanned by the first direction X and the second direction Y.
  • the guide surface limits a movement of the plug-in means 13, in particular the second holding end 23, with respect to the guide device 41, in particular the guide rib 43, in the third direction Z.
  • Fig. 4 shows the plug-in means 13 in the receiving area 17 of the storage housing 15 in a fastening state.
  • a plug-in means 13 with a storage housing 15 can be seen in a fastening state.
  • the two guide ribs 43 each have a guide bevel 43c, which is provided to guide the guide ribs 57 in the guide device 41.
  • the guide ribs 57 are arranged in such a way that the guide ribs 43 slide between two guide ribs 43 in a transition from the release state to the fastening state.
  • the guide rib surfaces 43b of the respective guide ribs 43 are opposite the guide rib surfaces 57a of the respective guide ribs 57.
  • At least one guide rib 57 has at least one conductor elevation 57, which is provided to be elastically deformable in at least the third direction Z in order to support the second holding end 23, in particular the guide ribs 57, between the two guide devices 41, in particular to tension it.
  • the guide ribs 57 extend in the first direction X and protrude in the third direction Z from the guide rib surface 43b opposite a guide rib surface 43a.
  • the guide ribs 57 limit the maximum extent of the guide ribs 57 in the third direction Z.
  • At least one guide rib surface 43b can be angled with respect to the guide rib surfaces 57a, so that when the plug-in means 13 is transferred from a release state to a fastening state, a wedge-shaped connection in at least the third direction Z of the second holding end 23 in the Guiding device 41 results and thus limits a movement of the plug-in means 13 in the third direction Z.
  • Fig. 5 shows a section AA through the plug-in means 13 and the storage housing 15 from Fig. 4 .
  • Fig. 5 shows a recess 71, in particular a trough, adjacent to a side wall 105 and a bottom wall 107 of the storage housing 15, which is provided to receive the first holding end 21, in particular the holding tongue 61, of the plug-in means 13 and positively and / or non-positively in the storage device 10 to keep.
  • the holding tongue 61 can be pretensioned in at least the first direction X by the holding tongue 61 having two pretensioning protrusions 63 extending in the third direction Z and protruding in the second direction Y, which are elastically deformed in a fastening state of the plug-in means 13 in the storage housing 15 and bias the plug-in means 13 in at least the first direction X.
  • the recess 71 extends in the second direction Y and is completely surrounded or limited in a plane orthogonal to the second direction Y in order, in particular, to limit a movement of the retaining tongue 61 in the first direction X and in the second direction Y.
  • at least the bottom wall 107 forms a limitation of the movement of the retaining tongue 61 in the recess 71
  • the first direction X increases as the distance from the adjacent, in particular adjoining, side wall 105 of the recess 71 increases.
  • the recess 71 can have a minimum distance D in the first direction X, which in particular characterizes a height of the recess 71 and the retaining tongue 61 has a minimum distance d, which characterizes a first height of the retaining tongue 61, the distance D of the recess 71 is smaller than the distance d of the retaining tongue 61, so that there is an interference fit between the distance D of the recess 71 and the Distance d of the retaining tongue 61 results.
  • the holding tongue 61 can be pretensioned at least in the first direction XYZ.
  • Fig. 6 shows a section BB through the plug-in means 13 and the storage housing 15 from Fig. 4 .
  • Fig. 6 shows the second holding end 2123 with a stop geometry 27, in particular a stop elevation, which is provided to hold the plug-in means 13 in the receiving area 17 with an accurate fit.
  • the stop geometry is at least partially cylindrical and has at least one stop surface facing the guide device 41.
  • the stop surface 27a is curved and has a curvature around the third direction Z, so that the stop geometry 27 experiences a constraining force when the plug-in means 13 changes from the release state to the fastening state along the guide device 41, which the plug-in means 13 in a fastening state in the
  • the receiving area 17 is clamped in at least the second direction Y of the storage housing 15.
  • stop geometry 27 protrudes in the third direction Z and limits the maximum extent of the plug-in means 13 in the third direction Z.
  • the stop geometry 27 protrudes in the third direction Z with respect to the guide surface of the guide rib 57.
  • the stop surface 27a delimits the guide rib surface 57a in the second direction Y.
  • the stop surface 27a is arranged transversely to the guide rib surface 57a.
  • the stop geometry 27 is set back in relation to the guide rib surface 57a of the stop geometry 27 in at least the second direction Y, so that the stop geometry 27 represents a maximum extension of the plug-in means 13 in a circumferential area of the plug-in means 13 in the second direction.
  • Fig. 7 shows the first locking geometry 31 and the guide device 41 surrounding the first locking geometry 31 in a plane by at least 180 °.
  • the guide device 41 protects the first locking geometry 31 from inadmissible loading in at least the second direction Y.
  • the guide device 41 has at least one support wall 133 that delimit the guide ribs 43 in at least the second direction Y and in particular connects.
  • the support wall 133 is arranged essentially between the two guide ribs 43.
  • the support wall 133 extends in the third direction Z and protrudes in the first direction X from the bottom wall 107 of the receiving area 17.
  • the support wall 133 has two delimiting ribs 135 which protrude in the second direction Y towards the first latching geometry 31 and limit an, in particular elastic, movement of the first latching geometry 31, in particular the latching arm 127, in the second direction Y.
  • the storage housing 15 has a guide device 41, in particular a guide rib 43, on at least one of the side walls 105, which is provided to exert a constraining force on the plug-in means 13, in particular the stop geometry 27 of the plug-in means, when the plug-in means 13 is transferred from a released state to a fastening state 13 to exercise in order to predetermine a movement of the plug-in means 13 in at least the second direction Y.
  • a guide device 41 in particular a guide rib 43, on at least one of the side walls 105, which is provided to exert a constraining force on the plug-in means 13, in particular the stop geometry 27 of the plug-in means, when the plug-in means 13 is transferred from a released state to a fastening state 13 to exercise in order to predetermine a movement of the plug-in means 13 in at least the second direction Y.
  • the guide rib has a guide rib surface 43a which is spanned essentially in the first and in the second direction Y in order to enable the second holding end 23 of the plug-in means 13 to slide and to prevent the plug-in means 13 from moving in the third direction Z.
  • the guide rib also has a guide rib edge 43b which delimits the guide rib surface 43a at least in the first and second directions Y.
  • the locking arm 127 protrudes in the first direction X from the bottom wall 107 of the storage device 10 and has a locking shoulder 129 extending in the second direction Y, which is provided for the second holding end 23, in particular the locking rib 53, of the plug-in means 13 in a form-fitting manner between the locking shoulder 129 and the bottom wall 107 of the storage case 15 to hold.
  • the locking shoulder 129 is arranged on a side of the locking arm 127 facing away from the support wall 133.
  • the latching arm 127 is designed in particular as an elastic snap arm which, when an actuating force acts, is elastic in at least the second direction Y is deflectable and automatically returns to the starting position when the actuating force is released.
  • Fig. 8 shows the guide rib 57 with an in particular elastic conductor elevation 57 extending in the third direction Z, which is provided to mount the plug-in means 13 in the receiving area 17 in at least the third direction Z in a fixed manner, in particular free of play, in particular to tension it .
  • the conductor elevation 57 is arranged on a side of the guide rib 43 facing away from the first latching geometry 31.
  • the guide ribs 57 limit the extent of the second latching geometry 51 in the third direction Z on both sides.
  • Fig. 9 shows a view of the first holding end 21 and the holding tongue 61 of the first holding end 21.
  • the holding tongue 61 preferably has a plurality of prestressing protrusions 63 extending essentially in the second direction Y and protruding essentially in the first direction X, which are provided for tolerance differences balance between the holding tongue 61 and the storage housing 15 and, when the holding tongue 61 is braced with at least a part of the storage housing 15, is elastically deformed at least in the first direction X and / or the second direction Y, so that a substantially in the first direction X and / or a prestressing force acting in the second direction Y acts on the holding tongue 61, in particular the plug-in means 13.
  • the prestressing elevations 63 are elongated and limit the extension of the holding tongue 61 in at least the first direction X.
  • the holding tongue 61 protrudes from in the second direction Y and limits the maximum extent of the plug-in means 13.
  • the holding tongue 61 in particular the pretensioning protrusions 63 of the holding tongue 61, can be provided to generate a pretensioning of the plug-in means 13 in a fastening state in the second direction Y.
  • the retaining tongue 61 can be adapted to the recess 71 in the receiving area 17, in particular by means of an interference fit, in such a way that a force acting at least in the first direction X, in particular a pretensioning force, acts on the plug-in means 13, in particular on the retaining tongue 61.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Purses, Travelling Bags, Baskets, Or Suitcases (AREA)
  • Packaging Of Annular Or Rod-Shaped Articles, Wearing Apparel, Cassettes, Or The Like (AREA)
  • Details Of Connecting Devices For Male And Female Coupling (AREA)
  • Clamps And Clips (AREA)
  • Casings For Electric Apparatus (AREA)

Claims (13)

  1. Dispositif de rangement d'outils, en particulier boîte de rangement d'outils (10), servant au rangement d'outils rapportés (101) et/ou d'auxiliaires de montage (103), comprenant au moins
    - un moyen d'emboîtement (13) pour retenir des outils rapportés (101) ou des auxiliaires de montage (103) et
    - un boîtier de rangement (15) doté d'une région de réception (17) pour la fixation libérable du moyen d'emboîtement (13) au boîtier de rangement (15),
    le moyen d'emboîtement (13) comprenant une première extrémité de retenue (21) reliée à la région de réception (17) du boîtier de rangement (15) en particulier au moins partiellement par complémentarité de forme et une deuxième extrémité de retenue (23) reliée à la région de réception (17) du boîtier de rangement (15) en particulier au moins partiellement par complémentarité de forme afin de fixer le moyen d'emboîtement (13) par complémentarité de forme par rapport à au moins une première direction (X),
    dans lequel
    le moyen d'emboîtement (13), en particulier la première extrémité de retenue (21) et la deuxième extrémité de retenue (23) du moyen d'emboîtement (13), est relié au boîtier de rangement (15) de telle sorte que le moyen d'emboîtement (13) soit monté, en particulier serré, sur le boîtier de rangement (15) fixement, en particulier sans jeu, dans au moins une deuxième direction (Y), caractérisé en ce que
    la première extrémité de retenue (21) du moyen d'emboîtement (13) comprend une languette de retenue (61) limitant le moyen d'emboîtement (13) dans la deuxième direction (Y), laquelle languette de retenue est destinée à venir en prise dans un évidement (71) dans la région de réception (17) du boîtier de rangement (15) et à limiter un mouvement dans au moins la deuxième (Y) et/ou la troisième direction (Z), et à serrer le moyen d'emboîtement (13) dans la première direction (X).
  2. Dispositif de rangement d'outils selon la revendication 1, caractérisé en ce que le moyen d'emboîtement (13) comporte un matériau élastique ou en est constitué, le moyen d'emboîtement (13) étant destiné à se déformer au moins partiellement au moins dans la deuxième direction (Y) et à supporter, en particulier à serrer, le moyen d'emboîtement (13) fixement, en particulier sans jeu, dans la région de réception (17).
  3. Dispositif de rangement d'outils selon l'une des revendications précédentes, caractérisé en ce que la deuxième extrémité de retenue (23) du moyen d'emboîtement (13) est disposée sur un côté du moyen d'emboîtement (13) opposé à la première extrémité de retenue (21) et comprend une géométrie de butée (27), en particulier une élévation de butée, s'étendant dans la première direction (Y), laquelle est destinée à supporter, en particulier à serrer, le moyen d'emboîtement (13) fixement, en particulier sans jeu, dans au moins la deuxième direction (Y) dans un état de fixation relié à la région de réception (17) du boîtier de rangement (15).
  4. Dispositif de rangement d'outils selon l'une des revendications précédentes, caractérisé en ce que le boîtier de rangement (15) comporte un matériau élastique ou en est constitué, lequel matériau est destiné à se déformer au moins dans la deuxième direction (Y) et à supporter, en particulier à serrer, le moyen d'emboîtement (13) fixement, en particulier sans jeu, dans la région de réception (17).
  5. Dispositif de rangement d'outils selon l'une des revendications précédentes, caractérisé en ce que la région de réception (17) du boîtier de rangement (15) et/ou le moyen d'emboîtement (13) comprend/comprennent une première géométrie d'encliquetage (31), en particulier une languette d'encliquetage élastique qui est destinée à relier de manière libérable le moyen d'emboîtement (13) à la région de réception (17) dans au moins la première direction (X), en particulier à l'encliqueter sur celle-ci.
  6. Dispositif de rangement d'outils selon l'une des revendications précédentes, caractérisé en ce que la région de réception (17) comprend un dispositif de guidage (41) qui est destiné à exercer une force de contrainte sur le moyen d'emboîtement (13), en particulier la géométrie de butée du moyen d'emboîtement (13), lors du passage du moyen d'emboîtement (13) d'un état de libération à un état de fixation, afin de prédéfinir un mouvement du moyen d'emboîtement (13) dans au moins la deuxième direction (Y).
  7. Dispositif de rangement d'outils selon l'une des revendications précédentes, caractérisé en ce que le dispositif de guidage (41) entoure la première géométrie d'encliquetage (31) dans un plan sur au moins 30°, en particulier sur au moins 90°, de préférence sur au moins 180°, afin de protéger le dispositif d'encliquetage.
  8. Dispositif de rangement d'outils selon l'une des revendications précédentes 6 et 7, caractérisé en ce que le dispositif de guidage (41) comprend au moins une nervure de guidage (43), en particulier comportant au moins une surface de nervure de guidage oblique (43a) ou au moins une arête de nervure de guidage oblique (43b), qui limite un mouvement du moyen d'emboîtement (13) dans au moins la deuxième direction (Y).
  9. Dispositif de rangement d'outils selon l'une des revendications précédentes, caractérisé en ce que la deuxième extrémité de retenue (23) du moyen d'emboîtement (13) est disposée sur un côté du moyen d'emboîtement (13) opposé à la première extrémité de retenue (21) et comprend une géométrie d'encliquetage (51), en particulier au moins une nervure d'encliquetage (53), s'étendant dans la deuxième direction (Y), laquelle est destinée à encliqueter le moyen d'emboîtement (13), en particulier la deuxième extrémité de retenue (23) du moyen d'emboîtement (13), par rapport à la première géométrie d'encliquetage (31) du boîtier de rangement (15) dans au moins la première direction.
  10. Dispositif de rangement d'outils selon l'une des revendications précédentes, caractérisé en ce que la deuxième extrémité de retenue (23) du moyen d'emboîtement (13) comprend une géométrie directrice (55), en particulier au moins une nervure directrice (57), s'étendant dans la deuxième direction (Y), laquelle sert à positionner le moyen d'emboîtement (13) le long du dispositif de guidage (43).
  11. Dispositif de rangement d'outils selon la revendication 10, caractérisé en ce que la nervure directrice (57) comprend une élévation directrice (59), en particulier une élévation de précontrainte élastique, faisant saillie dans la troisième direction (Z), laquelle est destinée à supporter, en particulier à serrer, le moyen d'emboîtement fixement, en particulier sans jeu, dans la région de réception (17) dans au moins la troisième direction (Z).
  12. Dispositif de rangement d'outils selon l'une des revendications précédentes, caractérisé en ce que la languette de retenue (61) est, en particulier à l'aide d'un ajustement forcé, adaptée à l'évidement (71) dans la région de réception (17) de sorte qu'une force, en particulier une force de précontrainte, agissant au moins dans la première direction (X) soit appliquée sur le moyen d'emboîtement (13), en particulier sur la languette de retenue.
  13. Dispositif de rangement d'outils selon l'une des revendications précédentes, caractérisé en ce que le moyen d'emboîtement (13) comprend une élévation de précontrainte (63) qui sert à exercer sur la languette de retenue (61) une force de précontrainte agissant dans la première direction (X) lors du passage du moyen d'emboîtement (13) d'un état de libération à un état de fixation.
EP17716156.9A 2016-05-31 2017-04-04 Dispositif de rangement d'outils Active EP3463762B1 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102016209490.4A DE102016209490A1 (de) 2016-05-31 2016-05-31 Werkzeugaufbewahrungsvorrichtung
PCT/EP2017/057919 WO2017207136A1 (fr) 2016-05-31 2017-04-04 Dispositif de rangement d'outils

Publications (2)

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EP3463762A1 EP3463762A1 (fr) 2019-04-10
EP3463762B1 true EP3463762B1 (fr) 2021-09-01

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EP17716156.9A Active EP3463762B1 (fr) 2016-05-31 2017-04-04 Dispositif de rangement d'outils

Country Status (5)

Country Link
US (1) US11077545B2 (fr)
EP (1) EP3463762B1 (fr)
CN (1) CN109311148B (fr)
DE (1) DE102016209490A1 (fr)
WO (1) WO2017207136A1 (fr)

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Also Published As

Publication number Publication date
CN109311148A (zh) 2019-02-05
CN109311148B (zh) 2022-12-27
US11077545B2 (en) 2021-08-03
EP3463762A1 (fr) 2019-04-10
DE102016209490A1 (de) 2017-11-30
US20200324399A1 (en) 2020-10-15
WO2017207136A1 (fr) 2017-12-07

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