EP3603449A1 - Guidage d'extraction pour un tiroir - Google Patents

Guidage d'extraction pour un tiroir Download PDF

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Publication number
EP3603449A1
EP3603449A1 EP19198049.9A EP19198049A EP3603449A1 EP 3603449 A1 EP3603449 A1 EP 3603449A1 EP 19198049 A EP19198049 A EP 19198049A EP 3603449 A1 EP3603449 A1 EP 3603449A1
Authority
EP
European Patent Office
Prior art keywords
pull
drawer
guide
holding element
rail
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.)
Granted
Application number
EP19198049.9A
Other languages
German (de)
English (en)
Other versions
EP3603449B1 (fr
Inventor
Emanuel Netzer
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.)
Julius Blum GmbH
Original Assignee
Julius Blum GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Julius Blum GmbH filed Critical Julius Blum GmbH
Publication of EP3603449A1 publication Critical patent/EP3603449A1/fr
Application granted granted Critical
Publication of EP3603449B1 publication Critical patent/EP3603449B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B88/00Drawers for tables, cabinets or like furniture; Guides for drawers
    • A47B88/40Sliding drawers; Slides or guides therefor
    • A47B88/423Fastening devices for slides or guides
    • A47B88/427Fastening devices for slides or guides at drawer side
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B88/00Drawers for tables, cabinets or like furniture; Guides for drawers
    • A47B88/40Sliding drawers; Slides or guides therefor
    • A47B88/423Fastening devices for slides or guides
    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47BTABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
    • A47B2210/00General construction of drawers, guides and guide devices
    • A47B2210/0002Guide construction for drawers
    • A47B2210/0051Guide position
    • A47B2210/0054Adjustment of position of slides

Definitions

  • the invention relates to a pull-out guide for a drawer with a body rail to be fastened to the furniture body and at least one pull-out rail which can be moved relative to the body rail, comprising a holding element with a connecting element with which the drawer can be adjustably connected to the pull-out rail, the holding element being connected to the pull-out rail or is connectable and wherein the connecting element is movably mounted relative to the holding element, wherein an adjusting device for horizontal movement of the connecting element is arranged on the holding element
  • the AT 9 114 U1 shows a touch-latch pull-out guide, in which an actuating element with an eccentric adjusting wheel serves to adjust the depth of the drawer in the furniture body along the longitudinal direction of the pull-out rail. An adjustment in the lateral direction is not shown. Due to the temporary connection of the pull-out guide to the locking unit, which is operated by the touch-latch mechanism, a differently designed or differently placed actuating element is not possible.
  • a receiving component is fastened to the drawer rear wall, which has a slot-shaped opening for receiving a plate connected to the drawer pull-out guide.
  • the plate is displaceable within the slot-shaped opening by a predetermined amount, whereby a lateral displacement of the rear end area of the drawer is also possible.
  • Another possibility for laterally displacing the drawer relative to the pull-out rail is in the Austrian patent application A 895/2009 shown, in which a retaining pin can be inserted into a pre-drilled hole in the drawer.
  • the holding part mounted on the pull-out rail can be inserted into the holding pin and can be moved laterally within the holding pin.
  • a similar device for the lateral adjustment of a drawer is in the WO 2007/096156 shown, in which case a holding pin is slidably mounted in a slot-shaped opening in the holding part.
  • Such devices for side and height adjustment of the drawer relative to the pull-out rails are necessary in order to compensate for slight manufacturing tolerances of the drawers or pull-out guides and to produce a homogeneous joint pattern, in particular if several drawers are inserted into a furniture body.
  • the object of the present invention is to avoid the disadvantages of the above-mentioned prior art and to provide a possibility with which the lateral position of the drawer can be actively adjusted relative to a pull-out rail, the desired extent of the lateral adjustment being as possible can be adhered to exactly.
  • the pull-out guide thus comprises a holding element with a connecting element with which the drawer can be connected to the pull-out rail in an adjustable manner.
  • the holding element itself is connected or connectable to a pull-out rail of the pull-out guide.
  • the pull-out rail can also be formed in one piece with an integrally formed holding element.
  • the connecting element is movably mounted relative to the holding element, so that a relative movement between the drawer and the pull-out rail is made possible if the connecting element is connected to the drawer.
  • an adjusting device for the horizontal movement of the connecting element is arranged on the holding element.
  • the movement of the connecting element is transmitted to the drawer by the direct or indirect connection of the connecting element to the drawer.
  • the adjustment device comprises an adjustment mechanism with which the extent of the horizontal movement can be adjusted and thus the drawer can be actively and sensitively adjusted relative to the pull-out rail.
  • the connecting element can be arranged, for example, in the rear wall of the drawer or also in the side wall of the drawer, for example in the end face of the same in the body.
  • the pull-out guide according to the invention enables, in particular, the assembly and adjustment of a drawer made of a wood-based material, which can be detached, fastened, preferably assembled and / or removed without tools as a common structural unit on the pull-out guide.
  • the adjustment device can be designed to be self-locking, so that after an active adjustment of the drawer relative to the pull-out rail in the lateral direction, an automatic further displacement is prevented.
  • This self-locking can for example be based on a frictional engagement of the components of the adjusting device.
  • the holding element is connected to the drawer at the rear area, for example on the drawer rear wall with the drawer.
  • the holding element can be arranged at the rear end of the pull-out guide or the pull-out rail of a pull-out guide.
  • the adjustment device comprises a rotationally movable transmission device with which a rotational movement component can be transmitted to a translatory movement of the connecting element.
  • the rotationally movable transmission device rotates about an axis arranged essentially parallel to the longitudinal axis of the pull-out rail, that is to say about the longitudinal direction of the pull-out rail.
  • the transmission device can be designed, for example, as an adjusting lever or can comprise an adjusting lever. With the adjustment device, a continuous presentation of the drawer relative to the pull-out rail in the lateral direction can be made possible. However, means are also conceivable with which a discrete adjustment can take place.
  • the pull-out guide comprises a central rail which is arranged between the pull-out rail and the body rail and can be moved relative thereto. Such a pull-out guide allows the drawer to be fully extended.
  • the transmission device can be pivotally or rotatably mounted on the holding part or on a fastening part which is mounted on the drawer.
  • a lateral displacement of the drawer relative to the pull-out rail always implies a translatory movement.
  • a transmission device with which a rotary Movement component can be converted into a translational movement component offers the advantage that leverage effects can be exploited, so that a sensitive shift is possible in an active manner.
  • the adjustment device can be designed in such a way that a continuous or step-wise adjustment of the lateral position of the drawer relative to the pull-out rail is made possible.
  • the transmission device is designed with a handle for the tool-free actuation of the adjusting device.
  • the lateral position of the drawer relative to the pull-out rail can thus be adjusted in a simple manner.
  • the transmission device can additionally or alternatively also be provided to provide the transmission device with a screw, wherein the transmission device can be actuated by rotating the screw.
  • the transmission device is at least partially lever-shaped or eccentric, so that only small forces are required manually to move even heavy and large drawers.
  • the transmission device can also comprise a setting wheel, which has a tooth system, or an additional gear wheel, which is in engagement with a horizontally arranged tooth system, for example a toothed rack for laterally displacing the drawer.
  • the holding element is fixedly connected to the pull-out rail.
  • stop surfaces or support elements can be formed on the holding element, which engage in corresponding recesses in the pull-out rail or are welded to the pull-out rails.
  • a detachable connection of the holding element to the pull-out rail is also possible.
  • a guide device is arranged on the holding element, from which the connecting element is guided displaceably on the holding element.
  • This guide device can have a guide rail mounted in the holding element, wherein a guide sleeve of the guide groove, which at least partially encompasses the guide rail and is displaceably mounted along the guide rail, is arranged on the connecting element or on the transmission device.
  • a guide sleeve of the guide groove which at least partially encompasses the guide rail and is displaceably mounted along the guide rail, is arranged on the connecting element or on the transmission device.
  • the profile shape of the guide rail is arbitrary.
  • the guide rail is designed as a guide pin. Such a guide ensures correct and stable displacement in the lateral direction.
  • the guide device can furthermore have an elongated hole arranged in the holding element or a link guide arranged in the holding element, into which a guide pin or a guide pin of the connecting element engages, the guide pin or the guide pin being slidably mounted in the slot or in the link.
  • the holding element can furthermore have a fastening part to be fastened to the drawer.
  • the above-mentioned guide rail and the above-mentioned elongated hole or the link guide can also be arranged in this fastening part.
  • the fastening part can be designed in the form of a mounting plate.
  • the connecting element comprises a hook-shaped holding lug, which engages in recesses of the drawer in the assembled state in which the holding element is connected to the drawer.
  • the recesses can be pre-drilled holes.
  • the retaining lug In the assembled state, the retaining lug can be held within the recesses with a press fit or with a sliding fit.
  • the retaining lug can be cylindrical or also have additional latching elements for a more stable connection.
  • the displacement element comprises a mounting plate which can be fastened to the drawer and on which the adjusting device is mounted. If the adjusting device includes a rotationally movable transmission device, it can be provided that this transmission device can be rotated or pivoted on the mounting plate is stored. In addition, guide devices for guiding the movement of the displacement element can be arranged in this mounting plate.
  • the pull-out guide can comprise a locking device, by means of which the adjustment device can be detachably locked, so that a further lateral displacement of the drawer relative to the pull-out rail is prevented.
  • a further adjusting device is arranged on the holding element, with which the drawer can be displaced in the vertical direction relative to the pull-out rail. It is provided that the further adjustment device can be actuated independently of the adjustment device for the lateral displacement of the drawer. The side adjustment and the height adjustment are thus decoupled, which gives the greatest possible variety of settings.
  • At least one support bracket is arranged on the holding element, on which the drawer or the drawer base at least partially rests in the assembled state.
  • the at least one support bracket can be moved vertically by the further adjusting device relative to the pull-out rail.
  • the at least one support bracket can be part of the connecting element, so that the connecting element can also be moved in the vertical direction, the vertical movement being able to be carried out independently of the horizontal movement on the holding element.
  • the at least one support bracket can also be arranged on a holding part, the holding part being mounted on the holding element so as to be vertically movable. In this case, actuation of the further adjusting device causes the vertical movement of the holding part.
  • the holding part and the connecting element, with which the drawer can be moved in the lateral direction can be moved independently of one another by actuating the further adjusting device or the adjusting device.
  • the further adjustment device can in principle be constructed similarly to the adjustment device, so that the advantages mentioned above can also result for the further adjustment device. This enables the drawer to be adjusted in both vertical and lateral directions and with high accuracy.
  • the further adjusting device comprises a further transmission device which can be rotated, with which a rotational movement component can be transmitted to a translatory movement of the connecting element or the holding part and thus of the at least one support bracket. A drawer resting on the support bracket can thus be moved vertically.
  • the invention further comprises a pull-out guide set for a drawer with two pull-out guides to be arranged on opposite sides of a drawer.
  • the pull-out guide set comprises a pull-out guide as described above, which is to be arranged on a first side of the drawer.
  • a second pull-out guide to be arranged on the opposite side of the drawer comprises a second holding element with a second connecting element.
  • the second holding element is connected or connectable to the second pull-out rail. With the second connecting element, the drawer can be connected to the pull-out rail of the second pull-out guide.
  • the second connecting element for adaptation to the relative positional displacement of the holding element and the connecting element of the first pull-out guide are mounted so as to be movable relative to one another when the drawer is installed.
  • the second connecting element is floating on the second holding element and can follow the relative displacement of the connecting element on the holding element of the first pull-out guide of the pull-out guide if a drawer is connected to the connecting element and the second connecting element to the pull-out rails of the first and second pull-out guides.
  • the floating mounting is preferably limited to the horizontal movement of the second connecting element, ie the second connecting element is floatingly mounted in the horizontal direction, while the second connecting element can be fixed in the vertical direction. Floating storage in both the horizontal and vertical directions is also conceivable.
  • a second guide device is arranged on the second holding element, from which the second connecting element is displaceably guided for displacement on the second holding element.
  • the second holding element comprises a locking device, by means of which the second displacement element can be detachably locked. It can be provided that a locking device is arranged only on the second holding element, as a result of which the horizontal movement of the connecting element on the holding element of the first pull-out guide is also blocked and therefore overall a lateral displacement of the drawer relative to the pull-out rail is prevented.
  • the floating mounting of the second connecting element on the second holding element that enables the movement of the second connecting element following the displacement of the connecting element on the holding element can be limited to the horizontal mobility.
  • a further embodiment of the invention provides that a further adjusting device for vertical displacement of the drawer is arranged on the second holding element.
  • This further adjusting device can be designed in the same way as the further adjusting device on the holding element of the first pull-out guide. If the floating mounting only relates to the horizontal direction, the vertical position of the second connecting element on the second holding element is not floating but is displaceably mounted, the further adjusting device being provided for displacement.
  • Both for the further adjusting device on the second holding element and for the further adjusting device on the holding element it can be provided that they are designed to be self-locking, so that the set position cannot be adjusted automatically.
  • a further adjustment device on the second holding element means that both side walls of the mounted drawer can be adjusted vertically to the same extent.
  • the invention further relates to a pull-out guide set for a drawer, comprising a first pull-out guide with a first fastening element and a second pull-out guide with a second fastening element.
  • first fastening element With the first fastening element, the first pull-out guide can be connected to the drawer.
  • second fastening element With the second fastening element, the second pull-out guide can be connected to the drawer.
  • the two pull-out guides are arranged on opposite sides of a furniture body.
  • a first fastening element is movably mounted in or on an adjusting element arranged on the first pull-out guide, this adjusting element being used to move the drawer in the lateral direction relative to the first pull-out guide, i.e.
  • a movement of the actuating element is transferred to a relative movement of the drawer with respect to the first pull-out guide in the lateral direction and vice versa.
  • the movement of the actuating element can include a rotary movement or a pivoting movement about a vertical axis. Of course, other forms of movement are also conceivable.
  • Such an adjusting element allows a simple displacement of the drawer relative to the first pull-out guide, for example in order to correct the installation position of a slightly inclined drawer.
  • a one-sided relative displacement can, however, result in the drawer being jammed in the furniture body and a pull-out movement is no longer possible at all.
  • a bearing part is arranged on the second pull-out guide, in which the second fastening element is movably mounted in order to adapt to the displacement of the drawer relative to the first pull-out guide.
  • the drawer can thus be moved laterally not only relative to the first pull-out guide but also to the second pull-out guide.
  • the second fastening element is floatingly supported in the bearing part, so that the drawer can also follow the adjustment movement by means of the adjusting element on the side of the second pull-out guide.
  • the first fastening element is arranged in the front half of the first pull-out guide, in particular the pull-out rail of the first pull-out guide.
  • the second fastening element in the front half of the second pull-out guide, in particular to arrange the pull-out rail of the second pull-out guide.
  • the front half of the pull-out guide refers to the area from the front panel of the drawer towards the drawer rear wall.
  • the first and second pull-out guides each have a carcass rail and a pull-out rail.
  • a central rail can be arranged between the carcass rail and the pull-out rail, with which the drawer can be fully extended.
  • the first and the second fastening element can be arranged on the pull-out rails of the first and second pull-out guides.
  • a holding element and a second holding element can also be provided in the rear area of the drawer, which, as described above, are also designed to laterally shift the drawer relative to the pull-out guides or to follow this movement , it is possible to move the entire drawer as parallel as possible, i.e. laterally in the front and rear area, which further minimizes the risk of jamming due to an oblique drawer.
  • first fastening element and, additionally or alternatively, the second fastening element comprise a plug-in pin which is provided in recesses in the drawer base or in the side walls of the drawer is used.
  • the plug pin can have locking elements with which the connection to the drawer is improved.
  • the first actuating element comprises a latching device with which the first fastening element engages in a latching manner. This prevents the drawer from automatically resetting after the drawer has been shifted to the side.
  • the actuating element can also have a self-locking mechanism based on a frictional engagement to prevent automatic resetting. Furthermore, a discrete side shift can be made possible.
  • the invention further relates to a drawer with at least one pull-out guide as described above or one pull-out guide set as described above.
  • the invention further relates to a piece of furniture with at least one such drawer.
  • the partially broken perspective view of the Fig. 1 shows a piece of furniture 1 with a plurality of pull-out drawers 2 arranged in a furniture body 4, which are mounted in the furniture body 4 via two pull-out guides 3, 3 ′ arranged on opposite sides of the furniture body 4.
  • the pull-out guides 3, 3 ' are arranged on opposite side walls 2c of the drawer 2.
  • the drawer 2 has a front panel 2a on its front and a drawer rear wall 2d on its rear.
  • the drawer base 2b is arranged in between.
  • Fig. 2a shows a plan view of a drawer 2, each with a pull-out guide 3, 3 'on opposite side walls 2c.
  • the pull-out guides 3, 3 ' are fastened in the furniture body 4, the furniture body 4 not being shown for reasons of clarity.
  • a holding element 5 is arranged at the rear end, which is fastened to the drawer rear wall 2b.
  • a second holding element 6 which is also fastened to the drawer rear wall 2b.
  • Fig. 2b shows the in Fig. 2a A section marked with A in a detailed view.
  • Fig. 2c shows the in Fig. 2a Section marked with B in a detailed view. It can be seen that the holding element 5 is connected to the pull-out rail 3a of the pull-out guide and the second holding element 6 is connected to the pull-out rail 3d of the pull-out guide 3 '.
  • the holding elements 5, 6 are also connected to the drawer rear wall 2b.
  • FIG. 3a to 3c shows the arrangement of the 2a to 2c in a front view, the drawer 2 is not shown for reasons of visibility.
  • Fig. 3a it can be seen that the holding element 5 and the second holding element 6 are each arranged in the lower region of the drawer rear wall 2b.
  • the furniture body 4 is shown, only one pull-out drawer 2 being arranged in the furniture body 4 in the case shown.
  • Fig. 3b shows a front view of a second holding element 6, which is arranged on a pull-out rail 3d of a pull-out guide 3 '.
  • the second holding element 6 can, for example, be welded to the pull-out rail 3d.
  • the pull-out guide 3 ' also has a body rail 3f which is attached to the furniture body 4.
  • a central rail 3e is arranged between the carcass rail 3f and the pull-out rail 3d, which enables the drawer 2 to be fully extended.
  • Another adjustment device 11 which can be operated without tools via a handle, serves for the vertical movement of the drawer 2 relative to the pull-out guide 3 '.
  • the further adjusting device 11 is pivotally mounted in a slot 12 by means of a bolt 13.
  • a second connecting element 8, which is not shown in this figure for reasons of clarity and by means of which the second holding element 6 is connected to the drawer 2, is floatingly supported on the guide pins in the lateral direction and thereby fixed in the vertical direction. The lateral movements of the connecting element 7 mounted on the opposite side can thus be followed.
  • the second connecting element 8 is constructed essentially like the connecting element 7.
  • Fig. 3c shows the holding element 5 in a front view.
  • the connecting element 7 is guided displaceably by the guide pins 14, ie the connecting element 7 can move relative to the guide pins 14 along the guide pins 14 Move holding element 5.
  • the holding element 5 is connected to the drawer 2 via the connecting element 7. This connection cannot be seen in this figure.
  • the position of the connecting element 7 can be actively adjusted in the lateral direction by means of an adjusting wheel 9 of the adjusting device, so that the drawer 2 connected to the connecting element 7 can be displaced in the lateral direction relative to the pull-out rail 3a.
  • the adjusting device can also be operated with an adjusting screw 10, which thus also serves to move the connecting element 7 along the guide pins 14.
  • FIG. 4 A further embodiment of a holding element 5 is shown, which is fastened to a pull-out rail 3a of a pull-out guide 3 which, in addition to the pull-out rail 3a, comprises a central rail 3b and a body rail 3c.
  • a retaining lug 15 arranged on the connecting element 7 can be inserted into prefabricated bores in the drawer rear wall.
  • the connecting element 7 and the retaining lug 15 with the drawer 2 attached thereto are moved in the lateral direction along the guide pins 14.
  • the drawer base 2b rests on support brackets 16a and 16b which are arranged on a holding part 19 which is mounted in the holding element 5 so as to be movable in the vertical direction.
  • the support brackets 16a, 16b arranged in the recesses 20a, 20b of the pull-out rail 3a and the drawer 2 located thereon can be adjusted in the vertical direction relative to the pull-out guide 3.
  • Support elements 17 of the holding element 5 are fixed, for example by welding, connected to the pull-out rail 3a and serve to support, in particular this vertical movement.
  • Fig. 5a shows an exploded view of the holding element 5 of FIG Fig. 4 ,
  • the pull-out rail 3a is only shown in sections.
  • the support element 17th is connected to the pull-out rail 3a.
  • a holding part 19 is mounted so as to be displaceable in the vertical direction perpendicular to the longitudinal direction of the pull-out rail 3a.
  • recesses 20a and 20b are arranged in the pull-out rail 3a, into which the support brackets 16a, 16b can be moved.
  • the further adjusting device 11 which is designed in the form of an adjusting lever, is pivotably mounted by means of a two-part bearing pin 13a, 13b.
  • the locking elements 24 are in engagement with a link 23, so that a pivoting movement of the further adjusting device 11 results in a vertical movement of the holding part 19 relative to the pull-out rail 3a and to the support element 17.
  • the rotational movement of the actuating lever of the further adjusting device which is part of a transmission device, is transmitted to the vertical movement of the holding part 19. Since the drawer base 2b lies at least partially on the support bracket 16a, 16b when the drawer is in the assembled state, the vertical movement of the holding part 19 is transmitted to the drawer 2.
  • Guide pins 14 are mounted in the holding part 19.
  • the connecting element 7 is guided displaceably from these guide pins 14 via guide grooves arranged in the connecting element 7 and guide sleeves designed as through holes.
  • the adjusting lever 18 is pivotably mounted in a through hole 22.
  • the connecting element 7 has a holding lug 15, by means of which the drawer 2 is connected to the connecting element 7 and subsequently via the holding element 5 to the pull-out rail 3a.
  • a pivoting movement of the actuating lever 18 is transferred to lateral stop surfaces on the holding element, so that the connecting element 7 is displaced along the guide rods 14.
  • the actuating lever 18 is part of a rotary transmission device, the movement component of which is transmitted to a lateral, translatory movement of the drawer.
  • Fig. 5b shows the arrangement of the Fig. 5a in assembled condition.
  • the 6a to 6c show the same arrangement as in Fig. 5b , The 6a to 6c differ in terms of the position of the connecting element 7 and the actuating lever 18 on the holding element 5. As shown in the front view of FIG Fig. 7a can be seen, there is the connecting element 7 and the actuating lever 18 in Fig. 6a in a position that is slightly to the right of the center of the pull-out rail 3a when viewed from the front.
  • the connecting element 7 moves further to the right, as seen from the front. This is in the 6b and 7b shown. If the adjusting lever 18 is pivoted in the direction of the arrow S, the connecting element 7 moves from the front to the left, that is to say in the opposite direction. This is in the 6c and 7c shown.
  • the in the Figures 2a to 2c and 3a to 3c illustrated embodiment of the holding element 5 is in the perspective view of the Fig. 8a as well as in the associated exploded view of the Fig. 8b to see.
  • the only significant change from the embodiments of the Figures 4 . 5a and 5b , and 6a to 6c and 7a to 7c refers to the adjusting device, of which the connecting element 7 is horizontally movable in the holding element 5.
  • An adjusting wheel 9 is in engagement with a toothed wheel 25.
  • the adjusting wheel 9 is rotatably supported in a through hole 22a.
  • the gear 25 is rotatably mounted in the through hole 22 and has recesses, whereby actuation of the gear 25 is possible with a screwdriver.
  • a strip 26 has latching elements 27 which are in engagement with further recesses on the gear 25, not shown here.
  • a rotation of the adjusting wheel 9 is initially transferred to a rotation of the gear wheel 25.
  • the rotations thereof are transmitted by the latching elements 27, which are arranged in the form of toothing of a toothed rack, to a translational movement of the connecting element 7 along the guide pins 14.
  • the bar 26 is mounted in the holding part 19.
  • Fig. 9a shows in a perspective view the second holding element 6, in which in the Figures 2a to 2c and 3a to 3c illustrated embodiment. Except for the adjustment device for the horizontal movement of the connecting element 7, the second holding element is constructed in the same way as the holding element 5 8a and 8b , The second connecting element 8 is floatingly supported on the guide pins 14 and can therefore follow an adjustment of the lateral position of the connecting element 7. A floating bearing in one vertical direction is not provided. Another adjustment device 11 for vertical adjustment of the drawer 2 is also arranged in the second holding element 6.
  • Fig. 10a shows the perspective view of the holding element 5 of FIG Fig. 8a on a pull-out guide 3, which consists of a pull-out rail 3a, a middle rail 3b and a carcass rail 3c.
  • the section marked with E in Fig. 10a is in a detailed view in Fig. 10b shown.
  • the pull-out guide 3 is to be arranged on a first side of a drawer 2.
  • a second holding element 6 is to be arranged on a second pull-out guide 3 ', which also includes a pull-out rail 3d, a middle rail 3e and a body rail 3f.
  • Fig. 11a shown in a perspective view.
  • the second holding element 6 corresponds to that of Fig. 9a ,
  • Fig. 11b shows the section marked with F of the Fig. 11a in a detailed view.
  • Fig. 12a shows how the retaining lug 15 of the connecting element 7 engages with the drawer rear wall 2d.
  • the holding lug 15 is inserted into the drawer rear wall 2d in such a way that the drawer 2 is firmly connected to the holding element 5.
  • the holding nose 15 is shown in dashed lines and has expedient geometric holding surfaces.
  • Fig. 12b it can be seen how the retaining lug 15 of the second connecting element 8 engages with the drawer rear wall 2d in the region of the opposite side of the drawer 2.
  • FIG. 13a shows a perspective view of a second embodiment of a holding element 5 and a second holding element 6, which are arranged on pull-out rails 3a and 3d of a pull-out guide 3 and 3 'on opposite sides of a drawer 2 on the drawer rear wall 2d thereof.
  • Fig. 13b shows the section marked with G in the 13a in a detailed view.
  • the support element 17 and the further adjusting device 11 and the holding part 19 are essentially designed as in the previous exemplary embodiments, wherein a holding lug 15 'is arranged on the holding part 19 and is fixedly connected to the holding part 19.
  • the connecting element 7 comprises a mounting plate 29 which is mounted on the drawer rear wall 2d. Elongated holes 30 are used for displaceably guiding a sliding element 31 which has a recess for receiving the retaining lug 15 '.
  • the holding element 5 is connected to the connecting element 7 via this recess and to the drawer 2 via the mounting plate 29.
  • a lever 32 which is pivotably mounted on the mounting plate 29 and is part of a rotationally movable transmission device, is in engagement with an elongated hole 33 of the sliding element 31.
  • the holding lug 15 ′ and thus also the sliding element 31 move in the vertical direction. Since the holes 30 do not allow a relative movement of the sliding element 31 in the vertical direction, the vertical movement is transmitted to the drawer 2.
  • 13c shows the section marked with H in the 13a in a detailed view.
  • the further embodiment of the second holding element 6 shown here is constructed essentially the same as the holding element 5. Only the lever 32 for adjusting the lateral position of the drawer 2 is missing. Due to the lack of the lever 32, the sliding element 31 is floatingly supported in the elongated holes 30 , so that when the lever 32 on the holding element 5 is actuated, the sliding element 31 is displaced in the elongated holes 30 of the holding element 6 if the drawer is connected to both holding elements 5, 6.
  • the 14a to 14d show the holding element 5 in the embodiment of the Fig. 13b in different views.
  • the mounting plate 29, the sliding element 31 and the lever 32 are shown.
  • 15a to 15d 14 are different views of the second holding member 6 in the embodiment of FIG 13c shown.
  • the exploded view of the 15e shows the mounting plate 29 and the sliding element 31.
  • the remaining components of the holding element 5 and the second holding element 6, which, apart from the displaceable position of the holding lugs 15, 15 'of the connecting element 7 or the second connecting element 8 on the holding element 5 or on the second Holding element 6, which are essentially the same as in the previously described exemplary embodiments, are shown in FIGS 14a to 14e and 15a to 15e not shown.
  • Fig. 16a shows a view of a first pull-out guide 3 of a further pull-out guide 3 according to the invention with a body rail 3c and a pull-out rail 3a.
  • a fastening element 34 is arranged in the front region of the pull-out rail 3 a and can be displaced in the lateral direction relative to the pull-out guide 3 via an adjusting element 35 which is rotatably mounted on the first pull-out guide 3.
  • the adjusting element 35 can also be actuated by a screw 36.
  • Fig. 16b shows the in Fig. 16a detail marked with I in a detailed view.
  • Fig. 17a shows a front view of the first pull-out guide 3. It can be seen that a holding element 5 with a connecting element 7, which can be moved in the lateral direction on the holding element 5, is arranged on the rear region of the pull-out rail 3a.
  • a first fastening element which comprises a fastening pin 34, is arranged in the front region of the pull-out rail 3a. This fastening pin 34 is inserted into recesses in the drawer base 2b or in a first side wall 2c of a drawer 2.
  • the drawer 2 is with the Pull-out rail 3a connected.
  • the fastening pin 34 is connected to the actuating element 35 or is movably mounted on the latter, a movement of the actuating element 35 causing the fastening pin 34 to move laterally relative to the first pull-out guide 3 and vice versa.
  • the movements of the first fastening element and the actuating element 35 are therefore coupled.
  • the coupling between the first fastening element and the adjusting element 35 can be realized in the form of an eccentric screw, a spiral disk with associated toothing or with articulated levers.
  • Fig. 17b shows the first pull-out guide 3 of the Fig. 17a , wherein both the first fastening element and the connecting element 7 of the holding element 5 have been moved laterally in the direction of the arrow T. Because the first fastening element is provided in the front region of the pull-out rail 3a and the connecting element 7 with the holding element 5 in the rear region of the pull-out rail 3a, the side wall 2c of the drawer 2 can be laterally displaced parallel to the pull-out rail 3a.
  • Fig. 18a shows a view of a pull-out guide set according to the invention with connected drawer from below.
  • a first and a second holding element 5, 6 with a first and a second connecting element 7, 8 are arranged in the rear area of the first and second pull-out guides 3, 3 '. Since these are arranged on the top of the pull-out guides 3, 3 ', they cannot be seen in this figure.
  • a first fastening element is connected to an actuating element 35 or is movably mounted thereon.
  • a second fastening element which likewise comprises a fastening pin 37, is connected to a bearing part 39 or is movably mounted on the latter.
  • the bearing part 39 is designed such that an active adjustment of the relative position of the drawer 2 to the second pull-out guide 3 'is not possible. However, an adjustment of the relative position of the drawer 2 to the first pull-out guide 3 by means of the adjusting element 35 can be followed, so that the drawer 2 cannot be tilted.
  • Fig. 18b shows the one with J in Fig. 18a marked section of the second pull-out guide 3 'in a detailed view.
  • Fig. 18c shows the section marked with K in the Fig. 18a the first pull-out guide 3 in a detailed view.
  • Fig. 19a shows a top view of a second pull-out guide 3 '.
  • no second holding element 6 is arranged in the rear region of the pull-out rail 3d.
  • a bearing part 39 in the form of a shaft is arranged in the front part of the pull-out rail 3d.
  • An articulated lever 38 which is part of the second fastening element, is rotatably mounted on this shaft.
  • the articulated lever 38 is moreover preferably rotatably mounted on the fastening pin 37, which is inserted into recesses in the drawer 2 provided for this purpose.
  • the mounting of the articulated lever 38 on the bearing part 39 is not self-locking, so that an adjustment of the lateral position of the drawer 2 relative to the first pull-out guide 3 can be followed.
  • the section marked with L is the Fig. 19a shown, wherein the position of the articulated lever 38 and thus of the second fastening element 37 differs relative to the second pull-out guide 3 '.
  • the top of the opposite first pull-out guide 3 can be constructed similarly in this area, i.e. the first fastening element comprises a fastening pin 34 and an articulated lever 38.
  • the mounting of the articulated lever on the pull-out rail 3a is not loose, but is self-locking and optionally provided with latching elements, so that a lateral adjustment of the drawer 2 relative to the first pull-out guide 3 is achieved by rotating the articulated lever not automatically reset.

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  • Drawers Of Furniture (AREA)
EP19198049.9A 2010-02-03 2011-02-01 Glissière pour tiroir Active EP3603449B1 (fr)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
ATA148/2010A AT509416B1 (de) 2010-02-03 2010-02-03 Ausziehführung für eine schublade
EP11707546.5A EP2531070B1 (fr) 2010-02-03 2011-02-01 Glissière pour tiroir
PCT/AT2011/000053 WO2011094780A1 (fr) 2010-02-03 2011-02-01 Glissière pour tiroir

Related Parent Applications (2)

Application Number Title Priority Date Filing Date
EP11707546.5A Division EP2531070B1 (fr) 2010-02-03 2011-02-01 Glissière pour tiroir
EP11707546.5A Division-Into EP2531070B1 (fr) 2010-02-03 2011-02-01 Glissière pour tiroir

Publications (2)

Publication Number Publication Date
EP3603449A1 true EP3603449A1 (fr) 2020-02-05
EP3603449B1 EP3603449B1 (fr) 2021-03-31

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EP19198049.9A Active EP3603449B1 (fr) 2010-02-03 2011-02-01 Glissière pour tiroir
EP11707546.5A Active EP2531070B1 (fr) 2010-02-03 2011-02-01 Glissière pour tiroir

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Country Status (8)

Country Link
US (1) US8857929B2 (fr)
EP (2) EP3603449B1 (fr)
JP (1) JP5902099B2 (fr)
CN (1) CN102740734B (fr)
AT (1) AT509416B1 (fr)
ES (2) ES2776984T3 (fr)
MY (1) MY159163A (fr)
WO (1) WO2011094780A1 (fr)

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ES2587433B1 (es) * 2015-04-21 2017-08-01 Industrias Auxiliares, S.A. Dispositivo de regulación vertical y horizontal para cajones
DE102015106789A1 (de) * 2015-04-30 2016-11-03 Paul Hettich Gmbh & Co. Kg Ausziehführung für einen Schubkasten
DE202015105679U1 (de) * 2015-10-26 2017-01-27 Grass Gmbh Einstellmittel für eine Rastanordnung zur Einstellung eines an einem Möbelkorpus aufgenommenen bewegbaren Möbelteils
TWI605777B (zh) * 2016-12-12 2017-11-21 川湖科技股份有限公司 滑軌機構及可用於滑軌的調整總成
TWI646922B (zh) * 2017-08-31 2019-01-11 川湖科技股份有限公司 滑軌機構及可用於滑軌的調整總成
TW201932049A (zh) * 2018-01-18 2019-08-16 川湖科技股份有限公司 傢俱及其滑軌總成
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Also Published As

Publication number Publication date
EP3603449B1 (fr) 2021-03-31
ES2776984T3 (es) 2020-08-03
AT509416B1 (de) 2012-05-15
ES2877498T3 (es) 2021-11-17
EP2531070B1 (fr) 2019-12-11
EP2531070A1 (fr) 2012-12-12
US8857929B2 (en) 2014-10-14
WO2011094780A1 (fr) 2011-08-11
JP5902099B2 (ja) 2016-04-13
CN102740734A (zh) 2012-10-17
CN102740734B (zh) 2015-06-24
US20120319548A1 (en) 2012-12-20
AT509416A1 (de) 2011-08-15
JP2013518624A (ja) 2013-05-23
MY159163A (en) 2016-12-30

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