WO2015173217A1 - Ensemble porte-outil pour plaque à matrice de trous - Google Patents

Ensemble porte-outil pour plaque à matrice de trous Download PDF

Info

Publication number
WO2015173217A1
WO2015173217A1 PCT/EP2015/060431 EP2015060431W WO2015173217A1 WO 2015173217 A1 WO2015173217 A1 WO 2015173217A1 EP 2015060431 W EP2015060431 W EP 2015060431W WO 2015173217 A1 WO2015173217 A1 WO 2015173217A1
Authority
WO
WIPO (PCT)
Prior art keywords
tool holder
base insert
holder base
tool
hook
Prior art date
Application number
PCT/EP2015/060431
Other languages
German (de)
English (en)
Inventor
Christoph BÖHLER
Original Assignee
Böhler Christoph
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 Böhler Christoph filed Critical Böhler Christoph
Priority to EP15725526.6A priority Critical patent/EP3142831B1/fr
Priority to PL15725526T priority patent/PL3142831T3/pl
Publication of WO2015173217A1 publication Critical patent/WO2015173217A1/fr

Links

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
    • B25H3/04Racks
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47FSPECIAL FURNITURE, FITTINGS, OR ACCESSORIES FOR SHOPS, STOREHOUSES, BARS, RESTAURANTS OR THE LIKE; PAYING COUNTERS
    • A47F5/00Show stands, hangers, or shelves characterised by their constructional features
    • A47F5/08Show stands, hangers, or shelves characterised by their constructional features secured to the wall, ceiling, or the like; Wall-bracket display devices
    • A47F5/0807Display panels, grids or rods used for suspending merchandise or cards supporting articles; Movable brackets therefor
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47FSPECIAL FURNITURE, FITTINGS, OR ACCESSORIES FOR SHOPS, STOREHOUSES, BARS, RESTAURANTS OR THE LIKE; PAYING COUNTERS
    • A47F5/00Show stands, hangers, or shelves characterised by their constructional features
    • A47F5/08Show stands, hangers, or shelves characterised by their constructional features secured to the wall, ceiling, or the like; Wall-bracket display devices
    • A47F5/0807Display panels, grids or rods used for suspending merchandise or cards supporting articles; Movable brackets therefor
    • A47F5/0815Panel constructions with apertures for article supports, e.g. hooks
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H85/00Protective devices in which the current flows through a part of fusible material and this current is interrupted by displacement of the fusible material when this current becomes excessive
    • H01H85/02Details
    • H01H85/04Fuses, i.e. expendable parts of the protective device, e.g. cartridges
    • H01H85/041Fuses, i.e. expendable parts of the protective device, e.g. cartridges characterised by the type
    • H01H85/046Fuses formed as printed circuits
    • HELECTRICITY
    • H01ELECTRIC ELEMENTS
    • H01HELECTRIC SWITCHES; RELAYS; SELECTORS; EMERGENCY PROTECTIVE DEVICES
    • H01H85/00Protective devices in which the current flows through a part of fusible material and this current is interrupted by displacement of the fusible material when this current becomes excessive
    • H01H85/02Details
    • H01H85/04Fuses, i.e. expendable parts of the protective device, e.g. cartridges
    • H01H85/05Component parts thereof
    • H01H85/055Fusible members
    • H01H85/06Fusible members characterised by the fusible material

Definitions

  • the invention relates to a tool holder assembly for a breadboard with the features of the preamble of claim 1 and the use of a tool holding device in the tool holder assembly.
  • the invention has for its object to provide a tool holder assembly for a breadboard, which allows a reliable attachment to the breadboard.
  • This object is achieved by a tool holder assembly with the features of claim 1 and with a use having the features of claim 15.
  • Preferred or advantageous embodiments of the invention will become apparent from the dependent claims, the following description and the accompanying drawings.
  • a tool holder assembly which is suitable and / or designed for a breadboard.
  • the toolholder assembly is configured to hold at least one tool.
  • the tool may be, for example, a screwdriver, ring spanner, open-end wrench, drill, pliers, cordless screwdriver, etc.
  • the tool holder assembly can also be designed for holding workpieces, such as screws, nuts, etc.
  • the tool holder assembly has at least one mechanical interface which is suitable and / or designed for holding a tool and / or for holding a tool holding device.
  • the breadboard is formed as a plate body, for example, as a plate having a plurality of receiving holes.
  • the receiving holes define a plate-hole pattern. Particularly preferably, it is a regular plate-hole grid, wherein in particular the grid spacing of the receiving holes in a transverse direction and a longitudinal direction perpendicular thereto are equal.
  • the perforated grid plate is particularly preferably a sheet metal, wherein the receiving holes have a size of 9.2 millimeters x 9.2 millimeters and a spacing of 38.1 millimeters. This panel perforation has established itself - at least in Germany - as a well-known measure.
  • the tool holder assembly comprises at least one
  • Tool holder base insert wherein the tool holder base insert is fastened and / or fastened directly and / or contacting to the hole grid plate.
  • the tool holder base insert on a disk interface, which allows the mechanical coupling with the breadboard.
  • the tool holder assembly includes one or more tool holding devices that are suitable and / or designed to hold at least one tool or tool accessory.
  • the tool holding device can be coupled or coupled to the tool holder base insert, so that the tool holding device is in particular indirectly above the at least one Tool holder base insert is attached to the grid plate.
  • the tool holder base insert forms an adapter plate for attaching the tool holding device to the perforated grid plate.
  • the tool holder device has a slide holder and the tool holder base insert has a slide portion. Slide holder and slide portion together form a slide interface for coupling the tool holder device with the tool holder base insert.
  • the tool holder device can be pushed onto the at least one tool holder base insert.
  • the mounting direction is rectified or parallel to a mounting plane or is in the mounting plane.
  • the mounting plane is preferably rectified or parallel to a front side of the breadboard.
  • the tool holding device has a bottom surface, which rests on the front side during assembly or is supported thereon, so that the bottom surface is rectified to the mounting plane or forms this.
  • the tool holder device and the tool holder base insert are in a connected state.
  • the slider portion has at least one rail portion and the slider receiving at least one rail wing portion.
  • the rail section and the rail wing section come into direct contact and / or operative connection, wherein the at least one rail wing section is guided by the at least one rail section.
  • the at least one rail section secures the at least one rail wing section in a direction perpendicular to the mounting plane in a form-fitting manner.
  • the rail wing section engages behind the at least one rail section and thereby secures positively against the rail section. Due to the positive locking ensures that a movement of the tool holder device is positively locked in a direction perpendicular to the mounting plane and thus perpendicular, substantially perpendicular or angled to the surface extension of the hole grid plate.
  • the rail wing portion is disposed between the breadboard plate and the tool holder base insert.
  • the rail section has a sliding surface and the rail wing section has a mating sliding surface, these two surfaces being rectified.
  • the mating sliding surface and / or the sliding surface or portions thereof define the mounting plane.
  • the slide portion has a support area and the slider receiving a support area, wherein the support area rests positively in the connection state in the mounting direction on the support area.
  • the support region forms an end stop for the support region of the slide holder of the tool holder device.
  • the tool holder device is held positively in the mounting direction and preferably in a loading direction. Together with the positive locking perpendicular to the mounting plane, the tool holder device can be fastened in a form-fitting manner to the tool holder base insert.
  • the tool holding device in particular the slide holder, a latching device and the tool holder base insert, in particular the slide portion, a locking receptacle.
  • the tool holder device may comprise the latching receptacle and the toolholder base insert may comprise the latching device.
  • Locking device and latching receptacle together form a latching interface, wherein in the connection state of the slide portion in the slide holder against an opening of the tool holding device, ie a method against the mounting direction, is latched by the latching interface.
  • the latching interface is achieved that the tool holder device can not be accidentally dismantled by a slight movement against the mounting direction.
  • Tool holding device in particular the slide holder, a guide wing, which extends in a transverse direction to the mounting direction and at the same time rectified, in particular parallel to the mounting plane.
  • the guide wing is used for centering and / or guiding of the free end of the tool holder base insert, in particular of the slide portion, in the
  • the guide vanes are arranged between the perforated grid plate and the free end of the tool holder base insert, in particular the slide section.
  • the tool holder base insert has a guide surface and the tool holder device has a counter guide surface.
  • the guide surface or the counter guide surface are aligned rectified to the mounting plane and / or define the mounting plane.
  • the guide surface is located on a front side of the tool holder base insert facing away from the perforated grid plate or the plate interface.
  • the counter guide surface is located on a rear side or inside of the tool holder device facing the tool holder base insert in the connection state.
  • the tool holding device When the tool holding device is slid on, it is guided by an operative connection, in particular a sliding against one another by the guide surface and the counter guide surface during the sliding movement.
  • the tool holder base insert is guided from the rear side through the mating sliding surface and on the front side through the mating guide surface relative to the tool holding device. Due to the two-sided relative guidance a tilt-free and easy mounting of the tool holder device on the tool holder base insert is possible.
  • the tool holder base insert is designed as a plate section or as a plate, in particular as a mounting plate or adapter plate, wherein the latter has a rail section on two sides, in particular longitudinal sides.
  • the rail sections are spaced from each other by at least 2 centimeters, preferably at least 4
  • the tool holder device comprises a hood section which is pushed over the tool holder base insert, wherein the hood section has a rail wing section on two sides, preferably in each case on a longitudinal side of the hood section.
  • the rail wing sections are spaced apart by at least 2 centimeters, preferably at least 4 centimeters.
  • the support region and / or the at least one latching device and / or the guide vanes are located between the wing sections.
  • the wing sections, the at least one latching device and the guide wing are lined up in the transverse direction. For example, in the transverse direction outside first two wing sections, followed by two locking devices and arranged between the locking devices of the guide vanes.
  • the tool holding device is connected in the connecting state with exactly one tool holder base insert.
  • the two rail wing sections of the tool holder device engage in the two rail sections of the tool holder base insert. Due to the plate-shaped design of the tool holder base insert a secure, tilt-proof and comfortable attachment of the tool holder device is achieved.
  • the tool holding device is connected in the connecting state with two, in particular exactly two, tool holder base inserts.
  • the tool holding device with a rail wing portion of the tool holder means is given a connection with one of the tool holder base inserts and at the other end portion with the other rail blade portion a further connection with the other tool holder base insert.
  • the tool holder assembly comprises a plurality of structurally and / or functionally different tool holder devices and a plurality of tool holder base inserts, which are each identical in construction.
  • the tool holder assembly comprises the breadboard.
  • the tool holder assembly may be formed, for example, as a tool cart, wherein the hole grid plate is arranged on a front side of the tool carriage and secured thereto.
  • the tool holder inserts can be optionally placed on the breadboard.
  • the tool holder inserts make it possible to form rows and columns and to arrange the tool in any desired manner, in particular in a more visually ordered manner.
  • the tool holder device and / or the tool holder base insert are designed as a plastic part, in particular in each case as a one-piece plastic part, in particular a plastic injection-molded part.
  • a plastic injection molded parts results in addition to or as an alternative to the division of functions of the two parts and the ability to set the Entformungscardien for the plastic injection molded parts such that the tools for the plastic injection molded parts can be easily designed.
  • the Entformungscardi for the tool holder base insert is aligned perpendicular or substantially perpendicular to the mounting plane and / or the surface extension of the breadboard.
  • the Entformungscardi is rectified rasterwand with a plug of the tool holder base insert in the hole.
  • the tool holder means is oriented perpendicular or substantially perpendicular to the Entformungscardi for the tool holder base insert and / or rectified to the mounting direction.
  • the Entformungscardi is oriented to the mounting direction and on the other hand in many cases rectified to a loading direction for equipping the tool holding device with tools.
  • the or one of the tool holder devices is designed as a forceps holding device, wherein the forceps holder means one or more receptacles for a first pliers leg of a pair of pliers and cheek sections, which for guiding a second pliers leg of the same pliers in the transverse direction offset from each other on the pliers holding device are arranged.
  • the cheek sections is achieved that the pliers, in particular the second pliers limb, can not swing freely and can penetrate into the gripping area of an adjacent tool holder.
  • the tool holder base insert has a support surface, wherein the tool holder base insert in the assembled state rests with the support surface on the perforated grid plate, in particular on a front side of the perforated grid plate.
  • the disk interface has at least one hook device, wherein the hook device projects beyond the bearing surface in a plug-in direction of the tool holder base insert into the perforated grid plate, in particular perpendicular to the bearing surface.
  • the at least one hook means, some or all of the hook means is arranged relative to the support surface so that the hook means in the assembled state of the tool holder base insert can each pass through one of the receiving holes and project on the opposite side. If one looks more closely at the hook device, then it has one
  • Hook legs and a hook head wherein the hook head is arranged on the hook leg.
  • the longitudinal extension of the hook head is aligned perpendicular to the longitudinal extent of the hook leg.
  • these form a reversed L-shaped hook in a side view.
  • the hook leg and hook head form a plate receiving portion for receiving a portion of the plate body, namely a plate edge portion facing the receiving hole into which the hook means is inserted.
  • the hook device thus surrounds the Recording hole forming edge plate area.
  • the hook leg forms a positive contact surface for the plate edge region and extends in particular perpendicular to the support surface. Over the contact surface, the tool holder base insert can be supported on the perforated grid plate, in particular on the facing plate edge region, in a loading direction.
  • the loading direction is directed from top to bottom so that the hook means is opened downwardly and / or in the loading direction.
  • the hook device lies with the contact surface on the plate edge area.
  • the hook head engages over the plate edge region in the loading direction, so that the plate edge region is arranged between the hook head and the bearing surface.
  • the tool holder base insert comprises at least one securing device, which is arranged in the assembled state of the tool holder base insert in one of the receiving holes, in particular such that the securing device engages in or engages through the receiving hole.
  • the securing device serves to secure the tool holder base insert in a form-locking manner against displacement relative to the perforated grid plate counter to the loading direction.
  • the tool holder base insert is positively secured in the loading direction by the positive contact surface of the hook leg and against the loading direction by the securing device.
  • the tool holder base insert has a main body section and a securing section.
  • Basic body section defines the support surface and carries the at least one hook device.
  • the securing section in contrast, carries the securing device.
  • the main body portion and the securing portion are arranged to be movable relative to one another, wherein the securing means is elastically deflectable relative to the hook means against the insertion direction, in particular in a straight line or in a pivoting movement.
  • the securing means is elastically deflectable relative to the hook means against the insertion direction, in particular in a straight line or in a pivoting movement.
  • this is deflected relative to the at least one hook device against the insertion in a Enttechnischsposition.
  • the safety device is preferably provided that this automatically and / or elastically returns to the securing position.
  • a tool holder base insert can be created by the use of a security device which is deflectable in a direction opposite to the insertion direction and thus deactivated, which is very insensitive to lateral loads.
  • the main body portion and the securing portion are connected to each other via a pivot joint.
  • the pivot axis is particularly preferably arranged parallel to the support surface.
  • the pivot joint allows the pivoting of the securing device relative to the hook device. Characterized in that the pivot axis is arranged parallel to the support surface, the movement of the securing device against the insertion direction is made possible as a pivoting movement.
  • the securing portion is formed as a U-shaped securing bracket, which surrounds the body portion at least in sections and is connected at the free ends via the pivot joint with the base body portion.
  • the pivot joint forms two pivot sections.
  • the securing portion can be operated particularly easily by a user, since the connecting leg of the two free legs is easy to grip. For example, it is possible to disassemble the
  • the base body portion is T-shaped, wherein the standing leg of the "T” between the legs of the "U” of the securing bracket is arranged.
  • the end region of the upright leg of the "T” is designed as a first operating region, wherein the assembly can be effected by pressure loading on the first operating region.
  • the tool holder base insert presents itself as an easy-to-use, shapely and / or compactly designed workshop component.
  • the tool holder base insert has at least two of the hook devices.
  • the hook heads of the at least two hook devices are arranged to be compatible with an imaginary positioning hole grid.
  • the Positionierlochraster corresponds in the pitch of the plate hole grid and is used in the present description as a first auxiliary construction.
  • the hook legs of the at least two hook devices are arranged to be compatible with an imaginary fixing hole grid.
  • the grid dimension of Fixierlochrasters corresponds to the grid dimension of the plate hole grid, wherein the Fixierlochraster represents a second auxiliary construction.
  • the hook heads may be arranged in the positioning hole grid and / or the abutment surfaces of the hook legs in the Fixierlochraster.
  • the Positionierlochraster is offset from the Fixierlochraster in a mounting direction of the tool holder base insert. When mounting the tool holder base insert in the perforated grid plate, it is initially positioned in a positioning position such that the hook heads of the at least two hook devices are arranged in the receiving holes. In the positioning position, the plate-hole grid forms the positioning-hole grid.
  • the tool holder base insert is moved in the mounting direction to achieve a fixing position, wherein the hook legs are arranged in the plate hole grid and these bear against the bearing surfaces in the loading direction at the plate edge regions.
  • the plate-hole grid forms the fixing-hole grid. Due to the sliding movement in the assembly direction, the tool holder base insert is transferred from the positioning position into the fixing position.
  • Hook means preferably all hook means, the same orientation, so that the tool holder base insert in the insertion direction in the hole grid plate can be inserted and subsequently moved in the mounting direction, wherein the hook means engage over the plate edge regions.
  • the at least one securing device is arranged to be compatible with the fixing hole grid and / or incompatible with the positioning hole grid.
  • Compatible means in particular that the securing device etc. fits into the corresponding grid and / or is arranged in the receiving holes.
  • Incompatible means, in particular, that the securing device etc. does not fit into the corresponding grid and / or is arranged outside, in particular shifted, to the receiving holes.
  • the tool holder base insert is designed so that in the arrangement of the tool holder base insert in the positioning position, the securing device is elastically deflected relative to the hook device against the insertion direction and is in particular inevitably in the armed position. Only after the transfer of the tool holder base insert into the fixing position can the transition of the securing device into the securing position take place.
  • the securing device is particularly preferably designed such that it rests in the positioning position of the tool holder base insert on the perforated grid plate, in particular on a front side of the perforated grid plate and is inserted into the corresponding receiving hole only after transfer of the tool holder base insert into the fixing position or elastically snaps.
  • a control slope on the securing device is proposed to introduce a control slope on the securing device.
  • the control slope is arranged on the securing device such that the edge region of the perforated grid plate can slide in the receiving hole during insertion of the securing device. Due to the control slope is at a pressure load perpendicular to the breadboard on the tool holder base insert the safety device and thus the
  • the control slope thus forms an auxiliary gear section for mounting the tool holder base insert.
  • the securing device is designed as a web section, wherein the web section can be positively supported with a web end counter to the loading direction on the plate edge region.
  • the fixing position of the tool holder base insert is fixed to the web end opposite to the loading direction and on the other by the contact surface of the hook leg in the loading direction.
  • the web portion can also be supported with the other web end in the loading direction on the plate edge region.
  • the web end is set back slightly relative to the contact surface.
  • the securing device and one of the hook devices are arranged in the assembled state of the tool holder base insert and / or in the fixing position in a common receiving hole.
  • the securing device and the hook device are positioned in the Justierlochraster in a common receiving hole. This positioning has the advantage that the bilateral positive support of the securing device, in particular the web end, and the hook leg, in particular the contact surface, takes place within a very small area, so that no tilting or other disturbances can occur.
  • One aspect relates to a method for assembling the at least one
  • Tool holder base insert on the breadboard of the toolholder assembly.
  • the method comprises placing the tool holder base insert on the perforated grid plate in the positioning position, the at least one hook device with the hook head each being inserted into a receiving hole of the perforated grid plate.
  • the at least one securing device stands on the breadboard.
  • the securing device is deflected into the releasing position, which can be implemented, for example, by a pressure load on the basic body section, in particular on the first operating area, the hook heads dipping further into the receiving holes, but the securing device on the front side of the perforated grid plate positive fit.
  • the tool holder base insert is displaced relative to the hole grid plate in the mounting direction, so that the plate edge portions of the plate body of the grid plate can enter into the plate receiving portions of the hook means.
  • This sliding movement can be supported by the control slope or bevels of the fuse elements, as they slide during insertion or immersion along the edge regions of the perforated plate grid along, while moving the tool holder base insert in the mounting direction.
  • the securing devices snap into the receiving holes and move into the securing position, so that the tool holder base insert is in the fixing position in the perforated grid plate in the mounted state.
  • the securing portion Upon release of the tool holder base insert, the securing portion is raised manually, so that the securing device is transferred from the securing position to the releasing position. Subsequently, the tool holder base insert is transferred from the fixing position into the positioning position and can be removed from the perforated grid plate.
  • the securing portion has a second operating area for manual lifting, wherein the second operating area is arranged so that the tool holder base insert is pushed in the disassembly direction or at least loaded. Both the mounting and the demounting of the tool holder base insert can each be done with a simple hand movement.
  • the tool holder base insert is designed as a base tool holder base insert, which has at least or exactly four hook devices and has at least or exactly two securing devices. It is preferably provided that the hook devices are arranged in a square pattern and / or in a 2x2 matrix. Particularly preferably, the two securing devices are arranged in the manner of a clip around two of the hook devices within a row, preferably around the two hook devices which are down in the loading direction. It is further preferred that the pivot axis is arranged between, in particular centrally between the two rows of the 2x2 matrix.
  • the tool holder base insert is designed as a supplementary tool holder base insert which has at least or exactly two hook devices and comprises at least or exactly one securing device. It is particularly preferably provided that the hook devices are arranged one above the other in the loading direction and the securing device is positioned next to the lower hook device in the loading direction. It is particularly preferably provided that the mounting direction for the rectified for the tool holder base insert and for the tool holder device, parallel or identical and optionally complementary rectified, is parallel or identical to the loading direction in an advantageous embodiment of the invention, the
  • Tool holder base insert at least one mechanical plug-in interface for a further tool holding device, wherein the plug-in interface, e.g. is formed as a passage opening.
  • the passage opening may have a circular cross-section, so that a round material, such as a rod, can be introduced.
  • Another object relates to the use of the tool holder assembly as previously described in the tool holder assembly as previously described has been described, in particular for sliding on at least one of the tool holder base inserts and / or for holding at least one tool. Further features, advantages and effects of the invention will become apparent from the following description of preferred embodiments of the invention and the accompanying figures. Showing:
  • Figure 1 is a schematic three-dimensional view of a tool holder base insert of a tool holder assembly as a first embodiment of the invention
  • Figure 2 is a schematic side view of the tool holder base insert in the tool holder assembly in Figure 1;
  • Figure 3 is a schematic rear view of the tool holder base insert in Figure 2;
  • Figure 4 a, b, c, d is a schematic sectional view of the tool holder base insert with a hole grid plate for the description of
  • Figure 5 is a first rear view of the toolholder assembly of Figure 1 with the toolholder base insert in a positioning position;
  • Figure 6 in the same representation as Figure 5, wherein the tool holder base insert is in a fixing position
  • Figure 7 is a front view of a tool holder base insert as a second embodiment of the invention.
  • Figure 8 is a rear view of the tool holder base insert in Figure 7;
  • Figure 9a, b is a schematic three-dimensional representation of a tool holder assembly having a plurality of tool holder inserts in different embodiments;
  • Figure 10 a, b a forceps holder device as one of the tool holder inserts in a rear view and an oblique rear view;
  • Figure 1 1 a, b, c the tool holder assembly with the forceps holding device of Figures 10 a, b when mounted on one of the tool holder base inserts;
  • FIG. 12 shows the forceps holding device of Figures 10 a, b in a schematic three-dimensional oblique view from the front.
  • the tool holder assembly 1 shows a schematic three-dimensional representation of a tool holder assembly 1 as a first embodiment of the invention.
  • the tool holder assembly 1 may be formed, for example, as a workshop car, with other components of the workshop car in the figure 1 are suppressed drawing.
  • the tool holder assembly 1 comprises a perforated grid plate 2 and a tool holder base insert 3, which is arranged on or in the perforated grid plate 2 and fixedly connected thereto.
  • the breadboard 2 is formed as a plate body, particularly as a plate, specifically as a metal plate, and has a plurality of receiving holes 4.
  • the receiving holes 4 are square in plan view and have for example a size of 9.2 millimeters x 9.2 millimeters.
  • the receiving holes 4 are distributed in a grid having a transverse direction Q and a longitudinal direction L, wherein the distance between the individual receiving holes 4 in the transverse direction Q or in the longitudinal direction L in each case 38.1 millimeters is.
  • the plate body has, for example, a thickness of less than 2 millimeters.
  • the tool holder base insert 3 is formed as a one-piece plastic injection molded part and can be divided into two different sections as part of its function.
  • a main body portion 5 is T-shaped in plan view from the front, wherein the transverse or Q extending leg of the "T" extends in the extension in the longitudinal direction L to about 50 percent of the total length of the tool holder base insert 3.
  • the Tool holder base insert 3 has a securing portion 6 which is U-shaped The U-shaped securing portion 6 is opened to the main body portion 5 and surrounds the standing leg of the T-shaped main body portion 5.
  • the securing portion 6 forms a securing bracket U-shaped securing portion 6 are integrally formed on the transverse leg of the T-shaped main body portion 5, wherein the transition between the securing portion 6 and the base body portion 5 forms a pivot joint 7, which defines a pivot axis S.
  • the pivot axis S is aligned parallel to the breadboard 2 t and is also located approximately in the middle in the direction of the longitudinal extension L of the tool holder base insert 3.
  • the encompassed by the U-shaped securing portion 6 portion of the base body portion 5 forms a first operating area 19, which for easy identification by a user a corrugation or other friction-increasing Structure has. During assembly of the tool holder base insert, the user presses on the first operating area 19.
  • the securing portion 6 By engaging on the lying leg of the U-shaped securing portion 6, the securing portion 6 can be pivoted about the pivot axis S and deflected relative to the base body portion 5. To facilitate engagement, the securing portion 6 may have a recess as a second operating area 20.
  • the tool holder base insert 3 is in
  • Top view rectangular to square.
  • the surface extension is dimensioned so that immediately adjacent to the tool holder base insert 3 in the adjacent tooling holes 4, a tool holder base insert 3 can be mounted without line or gap between them.
  • FIG. 2 shows a schematic side view of the tool holder base insert 3, wherein it can be seen that it has hook devices 8 which are arranged offset in height in an assembly direction M.
  • the tool holder base insert 3 in the embodiment shown in FIG. 1 has four hook devices 8 which are arranged in a 2x2 matrix, matching the grid dimension of the breadboard 2.
  • the hook devices 8 each have a plate receiving region 9, into which a plate edge region of the perforated grid plate 2 can be introduced, the plate edge region coming against a load direction B in a form-locking manner on a contact surface 10 for positive engagement.
  • the tool holder base insert 3 is held positively in the loading direction B via the hook device 8.
  • the hook means 8 extend perpendicularly or approximately perpendicular to the support surface 11.
  • the contact surfaces 10 are perpendicular or substantially perpendicular to the support surface 1 1 aligned.
  • the hook devices 8 can each be subdivided into a hook leg 12 and into a hook head 13, their longitudinal extensions being arranged perpendicular to one another.
  • the hook leg 12 extends perpendicular or approximately perpendicular to the support surface 1
  • the hook head 13 extends perpendicular or substantially perpendicular to the hook leg 12 and / or parallel or substantially parallel to the support surface 1 first Hook legs 12 and hook head 13 form in the side view shown an L-shaped form and form the
  • a securing device 14 can be seen in the side view in FIG. 2, which is designed as a web section which is integrally formed on the securing section 6.
  • the securing device 14, in particular the web section extends in the mounting direction M and / or load direction B and / or in the longitudinal direction L of the breadboard 2.
  • the one end of the web section is formed as a control slope 21 whose function in connection with the figures 4 a - d is explained.
  • the hook devices 8 and the securing devices 14 together form a plate interface for fastening the tool holder base insert 3 to the perforated grid plate 2.
  • FIG. 3 shows a schematic three-dimensional representation of the rear side of the tool holder base insert 3.
  • the hook devices 8 are integrally formed on the main body section 5.
  • the support surface 1 1 is formed by various structures, such as webs, etc. on the base body portion 5, so that the base body portion 5, the support surface 1 1 defines.
  • the two securing devices 14 are integrally formed on the securing section 6 so that they pivot about the pivoting section 6 about the pivoting joint 7 about the pivot axis S relative to the adjacent hook means 8 in a direction perpendicular to the surface extension of the perforated grid plate 2 and / or the support surface. 1 1 can be deflected. It can also be seen in the illustration that the securing devices 14 are arranged adjacent to the hook devices 8 in the lower row, but are displaced or offset in the longitudinal direction L relative thereto.
  • FIG. 4 a shows a schematic sectional illustration in order to describe the mounting of the tool holder base insert 3 on or in the perforated grid plate 2.
  • the perforated grid plate 2 is shown in triplicate in FIG. 4a, wherein the perforated grid plate 2 is designated here as 2a, b, c.
  • the perforated grid plate 2a is oriented in an insertion direction E, which is oriented perpendicular to the surface extension of the perforated grid plate 2a, b, c and / or perpendicular to the support surface 11, spaced apart from the tool holder base insert 3. This relative positioning is also shown in FIG. 4b.
  • the breadboard 2b is positioned so that the tool holder base 3 is in a positioning position. In the positioning position, the hook heads 13 of the hook devices 8 are already immersed in the receiving holes 4 of the breadboard 2. In the adjustment position of the tool holder base insert 3, however, the securing devices 14 are supported on the front side of the perforated grid plate 2b. This relative position is shown in FIG. 4c.
  • the fixing position of the tool holder base insert 3 is shown relative to the perforated grid plate 2c or in the figure 4d.
  • the hook devices 13 are supported in the loading direction B via the contact surfaces 10 of the hook legs 12 in a form-fitting manner against the edge regions of the perforated grid plate 2c. Due to the offset of the tool holder base insert 3 relative to the perforated grid plate 2b, the securing devices 14 are now brought congruently to the receiving holes 4, so that they can be inserted in the insertion direction E in the receiving holes 4. In contrast, the hook heads 13 engage over the edge areas of the plate.
  • the tool holder base insert 3 is positively secured in each direction of movement.
  • the securing section 6 is opposite the main body section 5 around the
  • Swivel joint 7 is pivoted by a train on the second operating area 20, so that the securing device 14 is pulled out of the receiving hole 4. Due to the pulling movement on the second operating area 20 of the Tool holder base insert 3 against the mounting direction, that is pressure-loaded in a disassembly direction, so that the tool holder base insert 3 in an overall movement of the breadboard 2 is removable. This is achieved in that the pulling movement is oriented counter to the extension direction of the hook heads 13 on the hook means 8.
  • the position of the hole grid plate 2c relative to the tool holder base insert 3 defines a fixing hole pattern, the fixing hole pattern being disposed offset to the positioning hole pattern with respect to the tool holder base insert 3 in the mounting direction M.
  • the hook devices 8 of the upper row are formed as wide hook means 8, which are also supported in the transverse direction Q at the plate edge portions of the receiving holes 4.
  • the hook means 8 are formed in the lower row as narrow hook means 8, which are supported on one side only of the transverse direction Q form fit to the edge areas of the plate.
  • one of the securing devices 14 is arranged in each case in the same receiving hole 4.
  • FIG. 3 a plurality of tubular support sections 15, which are closed in the embodiment shown in Figure 1 at the front. However, these can be opened by a separating machining, for example a hole, and thereby form plug-in interfaces for insertion of a round material, which can be designed as a tool holding device.
  • the tool holder base insert 3 shown in Figures 1 to 6 is square or nearly square in shape and exhibits a 2x2 matrix of hook means 8. This may be referred to as a base tool holder base insert.
  • a tool holder base insert 3 is shown as a supplementary tool holder base insert in front view and rear view, having only two hook means 8 superimposed in a 2x1 matrix.
  • the tool holder base insert 3 has exactly one securing device 14, which, however, can again be introduced together with the lower hook device 8 into a common receiving hole 4.
  • the tool holder base insert 3, which is designed as a supplementary tool holder base insert, also has a base body section 5 formed in the shape of a T and a securing section 6 formed in a U-shaped manner, so that the function is referred to the preceding description.
  • FIGS. 9a and 9b illustrate a tool holding assembly 1 with the breadboard 2 and a plurality of tool holding inserts 3 with different tool holders 18 to illustrate the versatility and modularity of the tool holder assembly 1.
  • the further figures are exemplary embodiments of different tool holder devices 18 shown.
  • the tool holding inserts 3 are arranged substantially in a row, but could also be arranged in any distribution selected by the user himself.
  • the tool holder inserts 3 are made as follows:
  • V supplementary tool holder base insert with a single holding rod formed from a round material as a tool holding device 18;
  • IX basic tool holder base insert with a bracket formed from a round material as tool holding device 18;
  • X basic tool holder base insert with a single holding rod formed from a round material as a tool holding device 18;
  • the round material is e.g. made of metal, in particular of an aluminum alloy.
  • XIII-XV supplementary tool holder base insert with a plastic clamping device as a tool holding device 18, wherein the clamping device has a plurality of plastic bolts which engage in the through holes 17.
  • FIG. 9b different tool holder inserts 3 in the use of the rail sections 16 a, b for pushing tool holder devices 18 are shown.
  • Figures 10a, b show the tool holder device 18 and the tool holder base insert 3 with the tool holder 18 in detail.
  • the tool holder device 18 is designed as a sliding cap, which can be pushed onto the trained as rail sections 16 a, b rail interface of the tool holder base insert 3 from above in the loading direction B and the tool holder base insert 3 engages positively.
  • the tool holder device 18 may have different holding members, wherein in the examples XVI and XVII hook elements are shown. In Examples XVIII-XXI, sorting boxes for tool inserts or other small parts are shown as tool holding means 18.
  • FIGS. 10a, b show the tool holder device 18 in a schematic rear view and in an oblique view from the rear.
  • the tool holder device 18 has a slide receptacle 22 into which a slide portion 23 (FIG. 3) can be inserted in the mounting direction.
  • the slider portion 23 is formed as a free end or as a free end portion of the tool holder base insert 3.
  • the tool holder device 18, more precisely the slide holder 22, has two rail wing sections 24a, b, which extend in the mounting direction M or in the loading direction B.
  • the rail sections 16 a, b (FIG. 3) each have a sliding surface 25 a, b, whereas the rail wing sections 24 a, b each have a mating sliding surface 26 a, b.
  • the sliding surfaces 25a, b face the perforated grid plate 2 in the assembled state, whereas the counter-sliding surfaces 26a, b face away from the perforated grid plate 2.
  • engage the rail wing sections 24a, b engage the rail wing sections 24a, b the
  • Rail sections 16 a, b in the insertion direction E, so that the rail wing sections 24 a, b and in particular the Jacobgleit vom 26 a, b between the perforated grid plate 2 and the rail sections 16a, b or the sliding surfaces 25a, b is located.
  • the tool holder base insert 3 further has a guide surface 27 which is formed by the front side of the tool holder base insert 3.
  • the tool holder device 18 comprises a counter guide surface 28, which is arranged in the slide holder 22 and the tool holder base insert 3 faces so that when mounting the tool holder 18 on the tool holder base insert 3, the counter guide surface 28 can slide on the guide surface 27 along.
  • the counter-guide surface 28 may be formed continuously, or - as shown in Figures 10a, b - be realized only as running in the mounting direction M ribs.
  • the slide receptacle 22 forms a hood, wherein the end of the hood is formed by a support region 29 to which the free end of the tool holder base insert 3, in particular of the slide portion 23, with a support portion 30 ( Figure 3) rests positively.
  • the support region 30 forms an end stop for the support region 29 in the mounting direction M and / or in the loading direction B.
  • a guide wing 31 which engages behind the free end of the tool holder base insert 3 in a connecting state, extends in the transverse direction Q.
  • the guide wing 31 is integrally formed on the tool holder device 18.
  • the tool holder 18 has two locking device 32a, b, which are designed as latching hooks and which engage latching recesses 33a, b of the tool holder base insert 3 detent.
  • the latching devices 32a, b each form a latching interface with the latching receivers 33a, b, which secures the tool holder device 18 with the toolholder base insert 3 detachably against the mounting direction.
  • Figures 1 1 a, b, c show three states during the sliding of the tool holder device 18 on the tool holder base insert 3 along or rectified to the mounting direction M. By pushing a mounting plane ME is defined at the same time, which is rectified or parallel to the mounting direction M.
  • the mounting plane ME is rectified or aligned parallel to the front of the breadboard 2, In the figure 11a, the tool holder base insert 3 between the mating surface 28 and the mating surfaces 26a, b positively caught and thereby centered in the sliding movement.
  • the game in the direction perpendicular to the mounting plane is large, so that the tool holder device 18 can be easily placed on the tool holder base insert 3.
  • the tool holder device 18 is slid so far onto the tool holder base insert 3 that the free end of the tool holder base insert 3 is already engaged behind by the guide blade 31, thereby further centering the movement.
  • the latching devices 32a, b Upon further pushing the tool holder device 18 onto the tool holder base insert 3, the latching devices 32a, b are latched into the latching receptacles 33a, b and the connection state is reached.
  • the mating guide surface 28 and the mating sliding surfaces 26a, b hold the tool holder base insert 3 over the guide surface 27 and the sliding surfaces 25a, b without play, almost free of play or even with a certain prestress.
  • the sliding surfaces 25a, b, Jacobgleit vom 26a, b, guide surface 27 and mating surface 28 may be sized so that in the in FIGS
  • the tool holding device 18 in this case is designed as a forceps holder device in a three-dimensional representation obliquely from the front in a detailed view. Trained as a forceps holder device tool holding device 18 has two receptacles 34a, b, the receiving direction is vertically aligned and forms a receiving channel for a first leg of a pair of pliers. In the tool holder device 18 thus shown, two pliers can thus be inserted in parallel.
  • two cheek sections 35a, b are arranged at the edge of the tool holder device 18, which extend in the plane extension approximately perpendicular to the Lochrasterpaltte 2 and / or to the mounting plane and form a lateral boundary for each second leg of the forceps. Together with the boundaries of the receptacles 34 a, b, the cheek portions 35 a, b form a U-shaped area for the second leg of the pliers.
  • the first leg of the forceps is thus caught by the receptacle 34a, b, and the second leg of the forceps is laterally guided by the cheek portions 35a, b, so that the forceps can not oscillate or oscillate uncontrollably.
  • this ensures that the installation space for receiving the pliers is limited to the extension in the transverse direction Q of the tool holder device 18.
  • tool holding inserts 3 in the embodiment as a base tool holder base insert or supplementary tool holder base insert for the tool holding devices 18 in Figures 9a and 9b are each designed to be identical. In particular, these can each be made in a tool and thereby form a highly functional module mounting plate for the

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Automatic Tool Replacement In Machine Tools (AREA)
  • Workshop Equipment, Work Benches, Supports, Or Storage Means (AREA)

Abstract

L'invention concerne un ensemble porte-outil pour plaque à matrice de trous. L'invention vise à fournir un ensemble porte-outil pour une plaque à matrice de trous permettant une fixation fiable sur la plaque à matrice de trous. A cet effet, l'invention propose un ensemble porte-outil (1) pour une plaque à matrice de trous (2), comprenant au moins un insert de base (3) de porte-outil, l'insert de base (3) de porte-outil comprenant une interface de plaque (8, 14) permettant la fixation de l'insert de base de porte-outil (3) sur la plaque à matrice de trous (2), un dispositif porte-outil (18) permettant de retenir au moins un outil ou un accessoire d'outil. Le dispositif porte-outil (18) comprend un logement de coulisseau (22) et l'insert de base (3) de porte-outil comprend une partie (23) de coulisseau. Le dispositif porte-outil (18) peut être enfoncé sur l'insert ou les inserts de base (3) de porte-outil en effectuant un mouvement coulissant dans une direction de montage (M), laquelle est orientée dans le même sens qu'un plan de montage (ME), afin d'amener le dispositif porte-outil (18) et l'insert de base (3) de porte-outil dans un état de liaison. La partie (23) du coulisseau comprend au moins une partie rail (16a, b) et le logement de coulisseau (22) comprend au moins une partie aile de rail (24a, b). La ou les parties aile de rail (24a, b), lors du mouvement coulissant, sont guidées par la ou les parties rail (16a, b). Dans l'état de liaison, la ou les parties rail (16a, b) bloquent la ou les sections aile de rail (24 a, b) par coopération de formes dans une direction perpendiculaire au plan de montage (ME).
PCT/EP2015/060431 2014-05-13 2015-05-12 Ensemble porte-outil pour plaque à matrice de trous WO2015173217A1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP15725526.6A EP3142831B1 (fr) 2014-05-13 2015-05-12 Ensemble porte-outil pour plaque à matrice de trous
PL15725526T PL3142831T3 (pl) 2014-05-13 2015-05-12 Układ uchwytu narzędziowego dla perforowanej płyty

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102014106730.4 2014-05-13
DE102014106730.4A DE102014106730B4 (de) 2014-05-13 2014-05-13 Werkzeughalteranordnung für eine Lochrasterplatte

Publications (1)

Publication Number Publication Date
WO2015173217A1 true WO2015173217A1 (fr) 2015-11-19

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PCT/EP2015/060431 WO2015173217A1 (fr) 2014-05-13 2015-05-12 Ensemble porte-outil pour plaque à matrice de trous

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Country Link
EP (1) EP3142831B1 (fr)
DE (2) DE202014011041U1 (fr)
PL (1) PL3142831T3 (fr)
WO (1) WO2015173217A1 (fr)

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US10869561B2 (en) 2018-12-28 2020-12-22 Target Brands, Inc. Reconfigurable magnetic display fixture and system

Families Citing this family (2)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE202019101473U1 (de) 2019-03-15 2019-05-15 Christoph Böhler Werkzeughaltereinrichtung zur Aufnahme mindestens eines Halteelements, Vorrichtung mit mindestens einer Werkzeughaltereinrichtung und mit mindestens einem Halteelement und Werkzeughalteranordnung mit der Vorrichtung
DE102020124167A1 (de) 2020-09-16 2022-03-17 Böhler GmbH Halteranordnung für eine Montagestruktur sowie Ordnungssystem mit der Halteranordnung

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DE8803408U1 (de) * 1987-09-14 1989-01-12 Kirch, Bernd, 4000 Düsseldorf Halter für Werkzeuge und dgl. an Lochtafeln
US6481583B1 (en) 2000-06-13 2002-11-19 Stringliner Company Tool holder system
US20060228087A1 (en) * 2005-04-07 2006-10-12 Yilmaz Bayazit Cable management assembly, system and method
US20080050085A1 (en) * 2006-08-25 2008-02-28 Tinucci Thomas C Cable management system with spring latch
US20080169255A1 (en) * 2007-01-11 2008-07-17 John Kokenge Storage systems having storage accessory with locking tab
DE202010016696U1 (de) * 2010-12-17 2011-03-17 KARNER, Jürgen Halter für Arbeitsmittel
US20130125495A1 (en) * 2011-11-23 2013-05-23 Parallax Group International, Llc Wall Mounting Devices

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DE102008047470A1 (de) 2008-09-17 2010-04-15 J. Eberspächer GmbH & Co. KG Befestigungseinrichtung, insbesondere bei Kraftfahrzeugen
DE202009002421U1 (de) 2009-02-11 2009-04-23 Robert Bosch Gmbh Werkzeughalter
DE202011107089U1 (de) 2011-10-22 2011-11-08 Jürgen Karner Halter für Arbeitsmittel

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Publication number Priority date Publication date Assignee Title
DE8803408U1 (de) * 1987-09-14 1989-01-12 Kirch, Bernd, 4000 Düsseldorf Halter für Werkzeuge und dgl. an Lochtafeln
US6481583B1 (en) 2000-06-13 2002-11-19 Stringliner Company Tool holder system
US20060228087A1 (en) * 2005-04-07 2006-10-12 Yilmaz Bayazit Cable management assembly, system and method
US20080050085A1 (en) * 2006-08-25 2008-02-28 Tinucci Thomas C Cable management system with spring latch
US20080169255A1 (en) * 2007-01-11 2008-07-17 John Kokenge Storage systems having storage accessory with locking tab
DE202010016696U1 (de) * 2010-12-17 2011-03-17 KARNER, Jürgen Halter für Arbeitsmittel
US20130125495A1 (en) * 2011-11-23 2013-05-23 Parallax Group International, Llc Wall Mounting Devices

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
US10869561B2 (en) 2018-12-28 2020-12-22 Target Brands, Inc. Reconfigurable magnetic display fixture and system

Also Published As

Publication number Publication date
DE102014106730B4 (de) 2024-06-13
DE102014106730A1 (de) 2015-11-19
DE202014011041U1 (de) 2017-07-05
PL3142831T3 (pl) 2020-11-02
EP3142831B1 (fr) 2020-04-08
EP3142831A1 (fr) 2017-03-22

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