EP2353436B1 - Ferrure pour une armoire d'angle et armoire d'angle - Google Patents
Ferrure pour une armoire d'angle et armoire d'angle Download PDFInfo
- Publication number
- EP2353436B1 EP2353436B1 EP10400006A EP10400006A EP2353436B1 EP 2353436 B1 EP2353436 B1 EP 2353436B1 EP 10400006 A EP10400006 A EP 10400006A EP 10400006 A EP10400006 A EP 10400006A EP 2353436 B1 EP2353436 B1 EP 2353436B1
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- EP
- European Patent Office
- Prior art keywords
- shelf
- control
- lever
- support
- fixed
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- A—HUMAN NECESSITIES
- A47—FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
- A47B—TABLES; DESKS; OFFICE FURNITURE; CABINETS; DRAWERS; GENERAL DETAILS OF FURNITURE
- A47B81/00—Cabinets or racks specially adapted for other particular purposes, e.g. for storing guns or skis
- A47B81/002—Corner cabinets; Cabinets designed for being placed in a corner or a niche
Definitions
- the invention relates to a fitting for a corner cabinet, in particular causaleck O, with a cabinet body and accessible via a corner door interior in which at least one tray by means of the fitting between an inner position and an outer position, in which the tray at least partially beyond a plane of a door opening , is movably guided, wherein the fitting on the one hand about a fixed pivot axis storable and on the other hand pivotally mounted on a tablarfore bearing axis on the associated tray support arm for Tablarabstützung and a control device for controlling the Tablarterrorism in a pivot plane between the inner and outer position, wherein the Control device has two control levers, which are on the one hand about a fixed pivot axis and on the other hand about a tablarfeste bearing axis with respect to this rotatably and immovably storable, wherein the two stationary pivot axes b are arranged adjacent to each other or coincide, and wherein the two control levers are connected via a the tablarfesten bearing
- Such a fitting is for example from the EP 2 092 850 A1 known in which the tray supported by a support arm is, which is pivotally mounted stationary and is moved tablar disorder in the Tablarterrorism relative to the bearing axis. Furthermore, two control levers are provided, which are each designed as a flat iron bar and are mounted pivotally fixed. The two tablarfesten bearing axes of the two control levers are connected to each other via a support arm, which in turn is part of a cruciform on the tray underside extending and fixed there anti-tilt device. Overall, the fitting has three levers, of which two control levers are used to control the Tablarterrorism between the inner and outer position and a support arm, which serves to Tablarabstützung of the tray. There is a separation of functions between the tray support on the one hand, which takes place by means of the support arm and the tray control on the other hand, which takes place by means of the two control levers.
- a fitting in which a respective tray of two articulated on its underside of the handlebars is supported, wherein the first link about a pivot axis of a support column and the second link about an axis parallel to the pivot axis of the support column axis of a support bearing is pivotable.
- the tray is controlled by both handlebars together between the inner and the outer position.
- the Tablarterrorism takes place here by superimposition of two each executed around the respective pivot axes orbits. Ultimately, this results in a between the inner and outer position of the tray performed S-shaped tabla movement.
- the object of the invention is to procure a fitting of the type mentioned above, which manages with as few hardware components and at the same time can be easily and quickly installed in the corner cabinet.
- the fitting according to the invention is characterized in that one of the two control lever at the same time forms the support arm and is designed in the form of a combined control / support lever, which has a greater bending stiffness relative to the other control lever perpendicular to the pivot plane.
- the fitting according to the invention thus has a total of only two levers, of which the trained as a control / support lever performs a dual function, namely as a control lever for controlling the Tablarterrorism the tray and serves as a support arm for Tablarabstützung. So there is no separation of functions like the one from EP 2 092 850 A1 known fitting instead.
- the fitting according to the invention differs in that the fixed pivot axes of the control lever and the control / support lever adjacent to each other or coincide and that the two tablarfesten bearing axes of these levers via a connecting member with each other are connected.
- control / support lever and control lever are each formed as between their stationary and tablarfesten pivot and bearing axes length constant individual lever.
- control / support lever and control lever each with its stationary pivot axis at one Bearing element mounted, which in turn is attachable to a support column of the corner cabinet.
- the support column is free, that is attached without contact to the side walls or to the front and back of the cabinet body in the corner cabinet. Since the two stationary pivot axes of the control / support lever and the control lever are preferably provided on the bearing element, which in turn can be fastened to this support column, it follows that none of the fixed pivot axes of the control / support lever and the control lever mounted directly on the cabinet body is.
- control / support lever and the control lever on different lever lengths.
- the control / support lever may have a greater lever length than the control lever.
- the stationary pivot axis of the control / support lever is located closer to a longitudinal axis of the support column than the stationary pivot axis of the control lever.
- the tablet-fixed bearing axles received by the connecting member are in reference to the state of the connecting member attached to the tray a dividing the tray in two Tablarhiern central transverse axis of the tray on the same tray half.
- control / support lever is preferably formed of a metal tube, in particular metal square tube.
- metal tube in particular metal square tube.
- a design as a metal round tube would be conceivable.
- control lever is formed of metal flat material, for example formed as a flat bar.
- the connecting member has a the two most rigid bearing axes receiving axle and a rigidly connected to the axle, next to the control / support lever the tray supporting support arm. If the two tablet-resistant bearing axles are therefore located on one tray half, then this supporting arm can then protrude into the other tray half, as a result of which reliable support of the tray and protection against tipping is achieved.
- the support arm can have fastening means, by means of which it can then likewise be fastened to the tray underside in addition to the axle carrier.
- the support arm is also formed by a metal tube, in particular metal square tube.
- the axle carrier has a plate-like first steering knuckle and a plate-like second steering knuckle extending parallel thereto, which are held by at least one spacer at a distance from each other and record between them the tablarfeste pivot axis of the control / support lever.
- the two tablarfesten bearing axes on the axle are on a connecting line which is obtuse to a longitudinal axis of the support arm.
- the invention further comprises a corner cabinet with the features of independent claim 15.
- the corner cabinet according to the invention is characterized in that one of the two control lever at the same time forms the support arm and in the form of a combined control / support lever is formed, which has a greater bending stiffness relative to the other control lever perpendicular to the pivot plane.
- FIGS. 1 and 2 show a first embodiment of the invention Eck Os 11 and the built-in inventive fitting 12.
- the corner cabinet 11 has a cabinet body 13, which is shown by way of example with a rectangular plan.
- the cabinet body 13 in turn consists of a rear wall 14, two side walls 15, 16 and a front side 17, which in turn is subdivided into a front wall 18 and a corner cabinet door 19 arranged adjacent thereto
- FIGS. 21 to 23 shows the corner cabinet door 19 seen from the front on the right side of the front 17 and the front wall 18 is arranged correspondingly on the left side of the front 17.
- the extension movement of the tray thus takes place in a clockwise direction.
- the corner cabinet door 19 can alternatively also be arranged on the left side of the front side 17 of the corner cabinet 11, so that the extension movement of the shelf from the inside position takes place by pivoting in the counterclockwise direction.
- Front wall 18 and corner door 19 occupy the front 17 in approximately equal parts.
- the rectangular cabinet body 13 defines a correspondingly rectangular interior 21, which is accessible in about half of the corner cabinet door 19.
- the interior of the corner cupboard 11 is at least one tray 22, which is housed by means of the fitting 12 between an inner position in which the tray 22 is completely housed in the interior 21, and an outer position in which the tray 22 at least partially over a plane 23 of a door opening the corner cupboard 11 protrudes, is movably controlled in a pivoting plane.
- a single tray 22 is shown here.
- two or more superimposed shelves 22 are arranged.
- the tray 22 is exemplified in one-piece embodiment.
- the floor plan of the tray 22 is exemplified in the form of a kidney.
- the tray 22 has on its front wall 18 facing the inside of a sidecut 24 to allow a comfortable swinging out of the interior 21 and pivoting into the interior 21 without the tray 22 abuts the front wall 18 and remains hanging.
- the fitting 12 has at least one pivotally mounted on the one hand to a fixed in the installed state of the tray 22 pivot axis 25 and on the other hand on a tablarfesten bearing axis 26 pivotally mounted on the associated tray supporting arm for Tablarabstützung and a control device for controlling the Tablarterrorism in the pivoting plane between the indoor and the external position.
- the control device further has two control levers, one of which also forms the support arm and is designed in the form of a combined control / support lever 27, which has a greater bending stiffness relative to the other control lever 28 at right angles to the pivot plane.
- the control / support lever thus performs a double function, so he controls the tablet movement between the inner and outer position as a control lever and supports the tray 22 as a support arm.
- the control lever 28 is also mounted on the one hand to a fixed pivot axis 29 and on the other hand to a tablarfeste bearing axis 30 with respect to this rotatable and immovable.
- the control / support lever 27 is mounted about its tablarfeste bearing axis 26 with respect to this rotatable and immovable.
- the two stationary pivot axes 25, 29 of the control / support lever 27 and the control lever 28 are adjacent to each other or fall together, wherein in the illustrated embodiments, by way of example, an adjacent arrangement of the stationary pivot axes 25, 29 is shown.
- this is formed by a metal square tube.
- a bearing sleeve 31 is fixed to the stationary end of this square tube, in particular welded.
- a bearing pin for example in the form of a rivet inserted through which in turn is attached to a U-shaped, the bearing sleeve 31 receiving bearing portion 33 on a clamping piece 34 described in more detail below.
- the bearing pin forms the stationary pivot axis 25 about which the control / support lever 27 is pivotally mounted.
- control lever 28 is formed by a flat iron bar.
- the control lever 28 has at both opposite ends in each case a particular circular passage opening 37, in each of which a bearing pin, for example in the form of a rivet, is inserted therethrough.
- the one end of the control lever 28 is in turn mounted on the clamping piece 34, wherein the bearing pin forms the stationary pivot axis 29 of the control lever 28.
- the opposite end is mounted by means of the other bearing pin on the connecting member 36, said bearing pin forms the tablarfeste bearing axis 30 of the control lever 28.
- both stationary pivot axes 25, 29 of the control / support lever 27 and the control lever 28 are arranged on the clamping piece 34, wherein according to the described embodiments, the fixed pivot axis 25 of the control / support lever 27 closer to a longitudinal axis 38 of a support column described in more detail below 39th Further, the lever length of the control / support lever 27 is greater than the lever length of the control lever 28, so that the tablarfeste bearing axis 26 of the control / support lever 27 describes a circular arc with a larger radius than the tablarfeste Bearing axis 30 of the control lever 28. This results in a relative movement of control / support lever 27 and control lever 28 in the Tablarterrorism between the inner and the outer position.
- both tablarfesten bearing shafts 26, 30 of the control / support lever 27 and the control lever 28 are arranged on a connecting member 36 which thus connects these two tablarfesten bearing shafts 26, 30 together.
- the connecting member 36 has an axle carrier 40, on which the two tablarfesten bearing shafts 26, 30 are mounted in the previously described manner.
- the axle carrier 40 is designed yoke-like and has a plate-like first stub axle 41a and a plate-like second stub axle 41b extending parallel thereto, which are held at a distance from each other via two spacers 42 in the form of material webs. Between the two stub axles 41a, 41b is located on the control / support lever 27 end side bearing sleeve 31. In contrast, the control lever 28 is mounted only on one of the two stub axles 41a, 41b by means of the tablarfeste bearing axis 30 forming the bearing pin.
- the connecting member 36 also has an elongated support arm 43, which is also designed as a square tube.
- Support arm 43 and axle carrier 40 are rigidly connected to each other, for example, can be welded together.
- the most rigid bearing axes 26, 30 on the axle support 40 form a connecting line 44, which runs at an obtuse angle to a longitudinal axis 45 of the support arm 43 (FIG. FIG. 8 ).
- the axle 40 In the fastened state of the fitting 12 on the shelf bottom 46 of the tray 22 is the axle 40 with the two tablarfesten bearing axes 26, 30 in one, formed by a central transverse axis 47 tray half 48, while the support arm 43 in the other of the two tray halves 48 protrudes.
- the support arm 43 exercises next to the control / support lever 27 a support function for supporting the tray 22. He prevents the tray 22 only on a tray half 48 is supported, which could result in instabilities, especially when standing on the tray items. In this case, a large moment would be exerted on the attachment between the axle 40 and the tray, which could lead to a release of the axle carrier 40 from the tray 22.
- the support arm 43 On the support arm 43 at least one fastening tab 49 is provided, via which the support arm 43 can be attached to the tray bottom 46.
- the mounting tab 49 is located on the support arm end, which is opposite to the axle support 40.
- the corner cupboard 11 further has the already mentioned supporting column 39 with a longitudinal axis 38.
- the support column 39 is fastened to the cabinet bottom 20 via a bearing plate 50 and is free in the cabinet body 13, that is not with the side walls 15, 16 and front wall 18 and rear wall 14 connected.
- a further bearing plate 51 is attached, via which the support column 39 is mounted on a cabinet cover (not shown).
- the support column 39 is designed as a telescopic column and has for this purpose a column base 52 and a linearly displaceable in the column base 52 mounted telescope part 53. The telescoping of the support column 39 allows their adaptation to different Eck O cannot be used.
- the fitting 12 is fixed by means of a fastening device to the support column 39.
- a fastening device includes the aforementioned clamping piece 34 or bearing element has the clamping means which between a fitting 12 to the support column 39 at a desired altitude relative to the support column 39 immovably clamped clamping position 54 and a continuous height adjustment of the fitting along the support column 39 enabling release position 55 are adjustable.
- the base body 56 has a base body 56 and two relatively movable jaws 57, 58, with which the associated support column 39 can at least partially surround.
- the U-shaped bearing portion 33 On the base body 56 is the U-shaped bearing portion 33, in which the bearing sleeve 31 of the control / support lever 27 is received, and by means of the stationary pivot axis 25 forming the bearing pin is pivotally mounted.
- One of the legs of the bearing part 33 is designed plate-like and has the passage opening 37, on which by means of the stationary pivot axis 29 forming bearing pin of the control lever 28 is pivotally mounted. It is possible that this plate-like leg has a plurality of such passage openings, so that the stationary pivot axis 29 can be implemented, whereby the pivot radius of the control lever 28 and its position to the control / support lever 27 can be changed.
- one of the two clamping jaws 57 is thus arranged so as to be immovable on the main body 56.
- FIGS. 13 to 16 show a first embodiment of the clamping piece 34 according to which the rigid clamping jaw 57 is configured like a hook.
- the second jaw 58 is movably arranged relative to the rigid jaw 57, with the two jaws in the in FIG. 15 or 16 shown release position 55 define an insertion opening 59, with which the clamping piece 34 can be attached laterally to the support sleeve 39, so that the two jaws 57, 58 surround the circumference of the support column 39 partially.
- the movable second jaw 58 is mounted according to the first embodiment by means of guide means in the axial direction to the longitudinal axis 38 of the support column 39 linearly displaceable, wherein at the same time an axially aligned clamping surface of the jaw 58 in the radial direction inwardly to the rigid first jaw is to be displaced.
- the movable jaw 58 has two jaw members 61a, 61b, which are mounted relative to each other in the axial direction to the longitudinal axis 38 of the support column 39 movable relative to each other on the base body 56 of the clamping piece 34, wherein in a Auffactzu movement a displacement of the clamping surfaces on the jaw members 61a, 61b takes place radially inward.
- guide bevels 62a, 62b are formed, which are part of the guide means.
- the guide slopes 62a, 62b cooperate with a sliding surface 63 which is formed by a substantially parallel to the longitudinal axis of the support column 39 aligned wall on the base body 56.
- the guide bevels 62a, 62b of the jaw members 61a, 61b are inclined towards each other, ie when the jaw members 61a, 61b move toward each other, an ever-increasing cross-section of the jaw members 61a, 61b slides on the sliding face 63, thereby the clamping surfaces 60a, 60b are moved radially inward towards the first jaw 57.
- adjusting means in the form of an adjusting screw 64 passing through the two jaw members 61a, 61b are used FIG. 15 shown, the adjusting screw 64 is additionally stored in a bearing web 65 of the body.
- the two jaws 57, 58 are first brought into the release position 55, wherein the two jaw members 61a, 61b are moved away from each other. This can be done by unscrewing the screw 34. This results in an insertion opening 59, whose cross section is larger than the cross section of the support column 39, so that the clamping piece 34 can be attached laterally to the support column 39. After setting the screw 64 is screwed again, whereby the two jaw members 61a, 61b are moved towards each other.
- FIGS. 17 to 20 show a second embodiment of the clamping piece 34.
- a rigid, fixed first jaw 57 and a relatively movable second jaw 58 is provided for this purpose.
- the rigid jaw 57 has a larger jaw height than the movable jaw 58.
- the movable second jaw 58 is pivotable about a jaw pivot axis 67 by means of pivot means 66 on the main body 56 of the clamping piece 34 stored.
- the pivot means are configured in a similar manner as in the pivotable mounting of the control / support lever 27 or the control lever 28.
- the pivoting jaw 58 is mounted for this purpose in a U-shaped bearing mount, wherein a pivot bearing pin through both the bearing receiving limiting bearing leg 68a, 68b and the jaw 58 is passed.
- locking means are provided in the form of a locking screw, which is preferably in the transverse direction to the jaw pivot axis 67 aligned both jaws 57, 58 passes and mounted on the rigid jaw 58.
- the two clamping jaws 57, 58 are first brought into the release position 55 by unscrewing the locking screw 69. This creates an in FIG. 19 or 20 shown insertion opening 59 whose cross section is greater than the cross section or diameter of the support column 39, so that the clamping piece 34 can be attached laterally to the support column. If the desired altitude of the clamping piece 34 is reached on the support column 39, the locking screw 69 is screwed, whereby the pivoting jaw 58 is pivoted to the rigid clamping jaw 57, until it finally presses with clamping force on the outside of the support column 39, whereby a clamping of the Clamping on the support column 39 is formed.
- the clamping piece 34 can be infinitely adjustable in height at any point along the support column, in principle also be clamped to the telescope part 53.
- the fitting 12 is to be attached to the shelf bottom 46 of the tray 22.
- mounting interfaces 70 are formed on the tray bottom 46, which serve for fastening of the fitting 12 by means of the fastening interfaces 70 corresponding fitting-side interface means 71.
- a plurality of fastening interfaces 70 form an interface pattern 72, which is designed such that the fitting 12 can be fastened in two different fastening positions on the shelf 22, so that depending on the predetermined fastening position clockwise or alternatively counterclockwise from the inner to the outer position is pivotable.
- the attachment interfaces 70 are configured as attachment holes in which interface means in the form of fasteners, such as screws, rivets or the like, which are previously passed through corresponding through holes in the fitting 12, can be fixed.
- the interface means 71 are formed by the attached to the support arm 43 mounting tab 49, which has two through holes for the implementation of fasteners in the form of mounting screws, which in turn are fixed in the corresponding mounting interfaces 70 on the tray bottom 46. Further, the interface means 71 still include the bearing pin, which forms the most rigid bearing axis 26 of the control / support lever 27. This protrudes through the two stub axles 41a, 41b of the axle carrier 40 and projects upwards so that it can be fixed in the corresponding attachment interface 70. Finally counts It is guided through a through hole formed in both stub axles 41a, 41b and protrudes from the upper side of the axle carrier 40 so that it slides into its corresponding mounting interface 70 on the shelf underside 46 can be introduced and fixed there.
- FIG. 2 shows the interface pattern 72 according to the first embodiment distributed over a large area on the tray bottom 46.
- the half of the mounting interfaces 70 of this interface pattern is located on one tray half 48, while the other half is located on the other tray half.
- a center longitudinal axis 73 is defined, the center longitudinal axis being the X axis and the center transverse axis being the Y axis, the tray 22 is divided into four quadrants the attachment interfaces of this interface pattern 72 are then distributed over all four quadrants.
- four different interface groups 74a, 74b, 74c, 74d, each with two attachment interfaces 70, are provided here.
- the interface groups 74a-d are here mirror-symmetrical to the Y-axis in an exemplary manner.
- Two of the interface groups 74a, 74c are located in the region of the rear edge of the tray, wherein the two attachment interfaces 70 of these interface groups 74a, 74c are arranged one behind the other in the X direction.
- the two other interface groups 74b, 74d are approximately at half height between the outer side edge of the tray 22 and the Y-axis, wherein the attachment interfaces 70 of these interface groups 74b, 74d are arranged one behind the other in the Y direction.
- the support arm 43 When mounting the fitting 12 according to the first embodiment, the support arm 43 is attached with its fastening tab on the aligned in the Y direction interface group 74b on one tray half 48 and fastened by means of the fastening screws.
- the axle carrier 40 with its bearing pin or bearing pin is attached to the aligned in the X direction interface group 74c on the other tray half and fastened there. This attachment results in a tabla movement according to the FIGS. 21 to 23 , The corner cabinet door 19 is thus seen from the front on the right side and the tray 22 pivots clockwise out of the corner cabinet 11 out.
- the fitting 12 and thus the tray 22 in opposite directions, ie swing out of the interior 21 in the counterclockwise direction.
- the corner cabinet door 11 would then be arranged on the left side.
- the fitting 12 is this folded over by 180 ° and the fastening tab 49 on the support arm 43 is attached to the other opposite sides of the support arm 43.
- the support arm 43 with its fastening tab 49 then protrudes into the tray half 48, in which the axle carrier 40 was placed in the other fastening position, while the axle carrier 40 now projects into the tray half 48 in which the support arm 43 with its fastening tab 49 was previously positioned ,
- the fastening tab 49 with the help of the mounting screws then back to the oriented in the Y direction interface group 74d, while the axle support 40 is then fastened to the other tray half 48 with the bearing pins or pins on the X-directional interface group 74a.
- the tray 22 can thus swing out of the interior 21 either left or right as needed.
- FIGS. 4 and 5 show a second embodiment of the fitting 12 according to the invention, which differs from the first embodiment described above in that the interface pattern 72 is configured differently and also other interface means 71 are used.
- the mounting interfaces 70 are in all four defined by the X and Y axis quadrants on the tray bottom 46. In contrast to the aforementioned embodiment, however, all mounting interfaces 70 are used here in two different mounting positions of the fitting 12 through the associated interface means. By way of example, four fastening interfaces 70 are provided here.
- the interface means 71 comprise an adapter plate 75 which is releasably secured to the top of the square tube-like support arm 43.
- the adapter plate 75 has through holes 76, for example, corresponding to the number of mounting interfaces 70 four in number. Fastening elements, for example fixing screws, are inserted through the through-holes 76 and fixed in the corresponding fastening interfaces 70 on the tray underside 46.
- On the adapter plate 75 are expediently in the longitudinal direction between two through-holes 76 centering in the form of upwardly over the top of the adapter plate 75 projecting centering 77, which are arranged in corresponding centering holes 78 on the tray bottom side 46, which are expediently also arranged in the X direction between two mounting interfaces 70 can be introduced.
- the adapter plate can position accurately positioned, whereby the aligned position between the through holes 76 on the adapter plate 75 and the mounting interfaces 70 is reached automatically.
- the second embodiment is suitable in a simple manner for an opposing pivoting out of the tray 22 from the interior 21.
- the fitting 12 is again folded over by 180 ° and the adapter plate 75 attached to the opposite side of the support arm 43.
- again all mounting interfaces 70 are used and the adapter plate 75 is attached to the tray bottom 46 at the same location as before.
- the tray 22 can be swung out to the left or right as needed, with the corner cabinet door then being located either on the left or right side.
- FIGS. 5 to 7 show further embodiments of interface patterns 72 that differ from the interface patterns described above.
- Tabla shown are arranged on the tray bottom mounting interfaces 70, for example, ten in number, which are arranged mirror-symmetrically to the X-axis.
- FIG. 6 shows a variant of the interface pattern 72 of FIG. 5
- the mounting interfaces 70 are aligned both mirror-symmetrical to the X-axis and mirror-symmetrical to the Y-axis.
- FIG. 7 shows FIG. 7 a further variant in which the attachment interfaces, for example, also ten in number, are aligned mirror-symmetrically to the Y-axis.
- the fitting 12 also has an entry and exit device 79 to support the retraction and extension of the tray in the indoor and outdoor position.
- the entry and exit device 79 has a spring unit 80, which is mounted on the one hand at a stationary spring bearing 81 and the other on a movable in the Tablarterrorism movable bearing 82 such that on the fitting 12, a retraction assisting torque in the direction of the inner position and after exceeding a dead center, the outward movement supporting torque is exerted in the direction of the outer position.
- the spring unit 18 is formed by a tension spring in the form of a helical tension spring.
- the stationary spring-bearing 81 is located on the clamping piece 34 and that on the elongated plate-like leg on which the stationary pivot axis 29 of the control lever 28 is seated.
- the moving in the Tablarterrorism bearing 82 is located on the control lever 28, in particular approximately in the middle between the fixed pivot axis 29 and the tablarfesten bearing axis 30th
- the fixed pivot axis and the movable bearing 82 of the spring on the control lever 28 define a straight line with respect to which the fixed spring bearing 81 in the support of the retraction on one side and in supporting the extension movement on the other side.
- FIG. 21 is the tray initially in its interior position in the interior 21 of the corner cupboard 11.
- the fixed pivot axis 28 and the stationary spring bearing 81 spaced from each other and that on one side of the line formed by the fixed pivot axis of the control lever 28 and the movable bearing point of the spring unit 80 lines.
- a torque is applied counterclockwise to the control lever 28 and thereby to the tray 22, so that the tray 22 is held by the spring unit 80 defined in the inner position. If the tray 22 is now pivoted out of the interior 21 in a clockwise direction, this force must first be overcome in the retraction direction in order to pivot the tray 22.
- the force of the spring unit 80 which pushes the tray 22 in the direction of the external position, must be overcome until finally the dead center is reached again. After exceeding the dead center, a torque in the retraction direction is exerted by means of the spring unit 80, so that the retraction of the tray 22 is supported.
- the damping device 83 for damping the Tablarterrorism when retracting to the inner position and / or extending into the outer position.
- the damping device 83 has a shock absorber 84 which is arranged such that it dampens both when approaching the inner position and when approaching the outer position and is ineffective in at least one intermediate position lying between the inner and the outer position.
- the shock absorber 84 is in accordance with FIGS. 8 to 10 shown in exemplary arrangement on the control / support lever 27. There it sits approximately in the middle between the stationary pivot axis 25 and the tablarfesten pivot axis 26 of the control / support lever 27.
- the shock absorber 84 is formed by a damping cylinder, with a cylinder housing 85 in which a damping piston 86 is guided linearly displaceable.
- On the control lever 28 are two arranged at different positions stop surfaces 87a, 87b, which cooperate with the damping piston 86 such that when approaching the inner position of a damping stop of shock absorber 84 and a stop surface 87a and when approaching the outer position of a damping stop of shock absorbers 84th and the other abutment surface 87b is present.
- the one and the same shock absorber 84 thus dampens both when approaching the inner position and when approaching the outer position.
- the two end positions of the tray 22, ie the inner and the outer position, are damped.
- the fitting 12 and the tray 22 are thus initially in the in FIG. 8
- the stop surface 87a which is formed by the outer contour of the control lever 28, presses on the damping piston 86 of the shock absorber 84. If the tray then, for example, as in FIG. 9 shown pivoted out of the corner cabinet 11 in the clockwise direction, so move control / support lever 27 and control lever 28 relative to each other, whereby the damping piston 86 out of contact with the stop surface 87a, whereby the shock absorber 84 is ineffective. If the tray is now pivoted further into the outward position, the damping piston 86 comes into contact with the other stop surface 87b formed on the stop member 88 as it approaches this outward position, thus damping the retraction into the outward position.
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Claims (16)
- Ferrure pour une armoire d'angle (11), en particulier armoire d'angle de cuisine, avec un corps d'armoire (12) et un espace intérieur (21) accessible par une porte d'armoire d'angle (19), dans laquelle au moins une tablette (22) est guidée de manière mobile à l'aide de la ferrure (12) entre une position intérieure et une position extérieure, dans laquelle la tablette (22) dépasse au moins en partie d'un plan (23) d'une ouverture de porte, sachant que la ferrure (12) présente un bras porteur pouvant être logé d'une part de manière pivotante autour d'un axe de pivotement fixe (25) et d'autre part de manière pivotante sur un axe de palier fixé à la tablette (26) sur la tablette (22) associée pour l'appui de la tablette et un dispositif de commande pour la commande du mouvement de tablette dans un plan de pivotement entre la position intérieure et la position extérieure, sachant que le dispositif de commande possède deux leviers de commande qui peuvent être logés de manière immobile et rotative respectivement autour d'un axe de pivotement (25, 29) fixe et d'autre part autour d'un axe de palier (26, 30) fixé à la tablette relatif à ceux-ci, sachant que les deux axes de pivotement (25, 29) fixes sont disposés de manière contiguë ou coïncident, et sachant que les deux leviers de commande sont reliés par un organe de liaison (36) recevant les axes de palier (26, 30) fixés à la tablette des leviers de commande, qui peut être fixé de son côté à la tablette (22), caractérisée en ce que l'un des deux leviers de commande forme à la fois le bras porteur et est réalisé sous la forme d'un levier de commande et de support combiné (27) qui présente une plus grande rigidité à la flexion que l'autre levier de commande (28) perpendiculairement au plan de pivotement.
- Ferrure selon la revendication 1, caractérisée en ce que le levier de commande et de support combiné (27) et le levier de commande (28) sont réalisés respectivement comme des leviers individuels de longueur constante entre les axes de pivotement et de palier (25, 26, 29, 30) fixes et fixés à la tablette.
- Ferrure selon la revendication 1 ou 2, caractérisée en ce que le levier de commande et de support combiné (27) et le levier de commande (28) sont respectivement logés avec leur axe de pivotement fixe (25, 29) sur un élément de palier qui peut être fixé de son côté sur une colonne porteuse (39) de l'armoire d'angle (11).
- Ferrure selon l'une quelconque des revendications précédentes, caractérisée en ce que le levier de commande et de support combiné (27) et le levier de commande (28) présentent différentes longueurs de levier.
- Ferrure selon la revendication 4, caractérisée en ce que le levier de commande et de support combiné (27) possède une longueur de levier supérieure au levier de commande (28).
- Ferrure selon l'une quelconque des revendications 3 à 5, caractérisée en ce que l'axe de pivotement (25) fixe du levier de commande et de support combiné (27) et l'axe de pivotement (29) fixe du levier de commande (28) sont disposés de manière espacée l'un de l'autre sur l'élément de palier, sachant que l'axe de pivotement fixe (25) du levier de commande et de support combiné (27) est plus près d'un axe longitudinal (38) de la colonne porteur (39) que l'axe de pivotement fixe (29) du levier de commande (28).
- Ferrure selon l'une quelconque des revendications précédentes, caractérisée en ce que les axes de palier (26, 30) fixés à la tablette reçus par l'organe de liaison (36) se situent dans l'état fixé sur la tablette (22) de l'organe de liaison (36) par rapport à un axe médian transversal (47) de la tablette (22) divisant la tablette (22) en deux moitiés (48) sur la même moitié de tablette (48).
- Ferrure selon l'une quelconque des revendications précédentes, caractérisée en ce que le levier de commande et de support combiné (27) est constitué d'un tube métallique, en particulier d'un tube métallique carré.
- Ferrure selon l'une quelconque des revendications précédentes, caractérisée en ce que le levier de commande est constitué de matériau plat métallique, en particulier comme une barre de fer plate.
- Ferrure selon l'une quelconque des revendications précédentes, caractérisée en ce que l'organe de liaison (36) présente un support d'axe (40) recevant les deux axes de palier (26, 30) fixés à la tablette et un bras d'appui (43) relié rigidement au support d'axe (40), soutenant la tablette (22), outre le levier de commande et de support combiné (27).
- Ferrure selon la revendication 10, caractérisée en ce que le bras d'appui (43) s'étend dans un état fixé sur l'une des moitiés de tablette (48) de l'organe de liaison (36) dans l'autre moitié de tablette et présente de préférence des moyens de fixation pour sa fixation sur la tablette (22).
- Ferrure selon la revendication 10 ou 11, caractérisée en ce que le bras d'appui (43) est constitué d'un tube métallique, en particulier d'un tube métallique carré.
- Ferrure selon l'une quelconque des revendications 10 à 12, caractérisée en ce que le support d'axe (40) présente une première branche d'axe (41 a) de type plaque et une seconde branche d'axe (41b) de type plaque s'étendant parallèlement à celle-ci, qui sont maintenues par au moins un écarteur (42) à distance l'une de l'autre et reçoivent entre elles l'axe de palier (26) fixé à la tablette du levier de commande et de support combiné (27).
- Ferrure selon l'une quelconque des revendications 10 à 13, caractérisée en ce que les deux axes de palier (26, 30) fixés à la tablette se situent sur le support d'axe (40) sur une ligne de liaison (44) qui s'étend à angle obtus par rapport à un axe longitudinal (45) du bras d'appui (43).
- Armoire d'angle, en particulier armoire d'angle de cuisine, avec un corps d'armoire (13) et un espace intérieur (21) accessible par une porte d'armoire d'angle (19), dans laquelle au moins une tablette (22) est guidée de manière mobile à l'aide d'une ferrure (12) entre une position intérieure et une position extérieure, dans laquelle la tablette (22) dépasse au moins en partie d'un plan (23) d'une ouverture de porte, sachant que la ferrure (12) présente un bras porteur pouvant être logé d'une part de manière pivotante autour d'un axe de pivotement fixe (25) et d'autre part de manière pivotante sur un axe de palier fixé à la tablette (26) sur la tablette (22) associée pour l'appui de la tablette et un dispositif de commande pour la commande du mouvement de tablette dans un plan de pivotement entre la position intérieure et la position extérieure, sachant que le dispositif de commande possède deux leviers de commande qui sont logés de manière immobile et rotative respectivement d'une part autour d'un axe de pivotement (25, 29) fixe et d'autre part autour d'un axe de palier (26, 30) fixé à la tablette relatif à ceux-ci, sachant que les deux leviers de commande (25, 29) fixes sont disposés de manière contiguë ou coïncident, et sachant que les deux leviers de commande sont reliés par un organe de liaison (36) recevant les axes de palier (26, 30) fixés à la tablette des leviers de commande, qui peut être fixé de son côté à la tablette (22), caractérisée en ce que l'un des deux leviers de commande forme à la fois le bras porteur et est réalisé sous la forme d'un levier de commande et de support combiné (27) qui présente une plus grande rigidité à la flexion que l'autre levier de commande (28) perpendiculairement au plan de pivotement.
- Armoire d'angle selon la revendication 15, caractérisée par une ferrure selon l'une quelconque des revendications 2 à 14.
Priority Applications (2)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP10400006A EP2353436B1 (fr) | 2010-02-05 | 2010-02-05 | Ferrure pour une armoire d'angle et armoire d'angle |
| US13/021,263 US8911035B2 (en) | 2010-02-05 | 2011-02-04 | Fitting for a corner cupboard and a corner cupboard |
Applications Claiming Priority (1)
| Application Number | Priority Date | Filing Date | Title |
|---|---|---|---|
| EP10400006A EP2353436B1 (fr) | 2010-02-05 | 2010-02-05 | Ferrure pour une armoire d'angle et armoire d'angle |
Publications (2)
| Publication Number | Publication Date |
|---|---|
| EP2353436A1 EP2353436A1 (fr) | 2011-08-10 |
| EP2353436B1 true EP2353436B1 (fr) | 2012-11-14 |
Family
ID=42269508
Family Applications (1)
| Application Number | Title | Priority Date | Filing Date |
|---|---|---|---|
| EP10400006A Active EP2353436B1 (fr) | 2010-02-05 | 2010-02-05 | Ferrure pour une armoire d'angle et armoire d'angle |
Country Status (2)
| Country | Link |
|---|---|
| US (1) | US8911035B2 (fr) |
| EP (1) | EP2353436B1 (fr) |
Cited By (3)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP3326491A1 (fr) | 2016-11-29 | 2018-05-30 | Vauth-Sagel Holding GmbH & Co. KG | Ferrure destinée au logement mobile commandé par engrenage d'une étagère dans un élément d'angle |
| CN110236303A (zh) * | 2019-04-25 | 2019-09-17 | 烟台工程职业技术学院(烟台市技师学院) | 一种教育用文件夹存放设备 |
| US11605928B2 (en) | 2018-05-23 | 2023-03-14 | Wezag Gmbh & Co. Kg | Manual pliers tool |
Families Citing this family (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| US9119470B2 (en) * | 2011-05-23 | 2015-09-01 | Kesseböhmer Holding e.K. | Fitting for corner cabinets and pull-in device for said type of fitting |
| ES2686193T3 (es) * | 2014-01-13 | 2018-10-16 | Vibo S.P.A. | Dispositivo para el movimiento asistido de medios de impulsión de tipo rotatorio o roto-trasladable |
| EP3087866B1 (fr) * | 2015-04-30 | 2017-05-31 | Vauth-Sagel Holding GmbH & Co. KG | Armature pour une armoire angulaire et armoire angulaire dotée d'une armature |
| DE102017104336A1 (de) * | 2017-03-02 | 2018-09-06 | Hettich Holding Gmbh & Co. Ohg | Schrankmöbel oder Haushaltsgerät und Verfahren zum Öffnen und Schließen eines Schrankmöbels oder Haushaltsgerätes |
| IT201700069780A1 (it) * | 2017-06-22 | 2018-12-22 | Inoxa Srl | Armadio con ripiani estraibili e relativo meccanismo estrattore perfezionato |
Family Cites Families (12)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| IT1216642B (it) * | 1988-03-29 | 1990-03-08 | Mariani Enrico | Sistema per spostare un'anta di un mobile da una posizione aperta ad una chiusa. |
| DE202004011200U1 (de) | 2004-07-16 | 2005-12-01 | Heinrich J. Kesseböhmer KG | Eckschrank, insbesondere Kücheneckschrank |
| DE102005018552A1 (de) * | 2005-04-20 | 2006-11-02 | Huwil-Werke Gmbh Möbelschloss- Und Beschlagfabriken | Halteelement |
| DE102006035157A1 (de) * | 2005-10-20 | 2007-04-26 | Vauth-Sagel Holding Gmbh & Co. Kg | Schwenkauszug aus einem Eckschrank |
| DE102006055805A1 (de) * | 2006-11-27 | 2008-05-29 | Hetal-Werke Franz Hettich Gmbh & Co. Kg | Beschlag für einen Eckschrank und Eckschrank |
| DE102006055806A1 (de) * | 2006-11-27 | 2008-05-29 | Hetal-Werke Franz Hettich Gmbh & Co. Kg | Beschlag für einen Eckschrank und Eckschrank |
| DE102006055807A1 (de) * | 2006-11-27 | 2008-05-29 | Hetal-Werke Franz Hettich Gmbh & Co. Kg | Beschlag für einen Eckschrank und Eckschrank |
| RU2424753C1 (ru) * | 2007-05-08 | 2011-07-27 | Фаут-Загель Холдинг Гмбх Унд Ко. Кг | Фурнитура для углового шкафа с выдвижной цельной полкой |
| EP2064971A1 (fr) * | 2007-11-27 | 2009-06-03 | Hetal-Werke Franz Hettich GmbH & Co. KG | Armature pour armoire angulaire |
| EP2092850B1 (fr) | 2008-02-23 | 2010-09-22 | Hetal-Werke Franz Hettich GmbH & Co. KG | Armature pour une armoire de coin |
| ES2366984T3 (es) * | 2008-11-28 | 2011-10-27 | HETAL-WERKE FRANZ HETTICH GMBH & CO. KG | Herraje para un armario rinconera. |
| DE202010017933U1 (de) * | 2010-02-05 | 2013-03-26 | Kesseböhmer Holding e.K. | Beschlag für Eckschränke |
-
2010
- 2010-02-05 EP EP10400006A patent/EP2353436B1/fr active Active
-
2011
- 2011-02-04 US US13/021,263 patent/US8911035B2/en active Active
Cited By (5)
| Publication number | Priority date | Publication date | Assignee | Title |
|---|---|---|---|---|
| EP3326491A1 (fr) | 2016-11-29 | 2018-05-30 | Vauth-Sagel Holding GmbH & Co. KG | Ferrure destinée au logement mobile commandé par engrenage d'une étagère dans un élément d'angle |
| WO2018099941A1 (fr) | 2016-11-29 | 2018-06-07 | Vauth-Sagel Holding Gmbh & Co. Kg | Ferrure d'armoire d'angle destinée au logement mobile à commande par roue dentée d'une tablette dans une armoire d'angle |
| US10750856B2 (en) | 2016-11-29 | 2020-08-25 | Vauth-Sagel Holding Gmbh & Co. Kg | Corner cabinet fitting for the gearwheel- controlled movable mounting of a shelf in a corner cabinet |
| US11605928B2 (en) | 2018-05-23 | 2023-03-14 | Wezag Gmbh & Co. Kg | Manual pliers tool |
| CN110236303A (zh) * | 2019-04-25 | 2019-09-17 | 烟台工程职业技术学院(烟台市技师学院) | 一种教育用文件夹存放设备 |
Also Published As
| Publication number | Publication date |
|---|---|
| US20120049708A1 (en) | 2012-03-01 |
| EP2353436A1 (fr) | 2011-08-10 |
| US8911035B2 (en) | 2014-12-16 |
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