EP2488717B1 - Stossdämpfervorrichtung, insbesondere für möbel oder dergleichen - Google Patents

Stossdämpfervorrichtung, insbesondere für möbel oder dergleichen Download PDF

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Publication number
EP2488717B1
EP2488717B1 EP10793041.4A EP10793041A EP2488717B1 EP 2488717 B1 EP2488717 B1 EP 2488717B1 EP 10793041 A EP10793041 A EP 10793041A EP 2488717 B1 EP2488717 B1 EP 2488717B1
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EP
European Patent Office
Prior art keywords
hollow cylindrical
cursor
guide
hollow
seating
Prior art date
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Not-in-force
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EP10793041.4A
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English (en)
French (fr)
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EP2488717A1 (de
Inventor
Adele Caimi
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CAIMI EXPORT SpA
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CAIMI EXPORT SpA
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Publication of EP2488717A1 publication Critical patent/EP2488717A1/de
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Publication of EP2488717B1 publication Critical patent/EP2488717B1/de
Not-in-force legal-status Critical Current
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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05FDEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05F5/00Braking devices, e.g. checks; Stops; Buffers
    • E05F5/003Braking devices, e.g. checks; Stops; Buffers for sliding wings
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2201/00Constructional elements; Accessories therefore
    • E05Y2201/20Brakes; Disengaging means, e.g. clutches; Holders, e.g. locks; Stops; Accessories therefore
    • E05Y2201/21Brakes
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2201/00Constructional elements; Accessories therefore
    • E05Y2201/20Brakes; Disengaging means, e.g. clutches; Holders, e.g. locks; Stops; Accessories therefore
    • E05Y2201/252Brakes; Disengaging means, e.g. clutches; Holders, e.g. locks; Stops; Accessories therefore characterised by type of friction
    • E05Y2201/254Fluid or viscous friction
    • E05Y2201/256Fluid or viscous friction with pistons or vanes
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2201/00Constructional elements; Accessories therefore
    • E05Y2201/20Brakes; Disengaging means, e.g. clutches; Holders, e.g. locks; Stops; Accessories therefore
    • E05Y2201/262Brakes; Disengaging means, e.g. clutches; Holders, e.g. locks; Stops; Accessories therefore characterised by type of motion
    • E05Y2201/264Brakes; Disengaging means, e.g. clutches; Holders, e.g. locks; Stops; Accessories therefore characterised by type of motion linear
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2600/00Mounting or coupling arrangements for elements provided for in this subclass
    • E05Y2600/60Mounting or coupling members; Accessories therefore
    • E05Y2600/626Plates or brackets

Definitions

  • the present invention relates to a shock absorber device for sliding doors of articles of furniture, in particular for sliding doors of wardrobes and the like.
  • the invention is particularly applicable as an accessory located internally of wardrobes having sliding doors or any other article of furniture equipped with sliding doors.
  • wardrobes and other articles of furniture provided with sliding doors which can translate horizontally or vertically on a respective closing plane.
  • shock absorber devices comprise a hollow cylindrical structure internally of which a housing chamber is defined that is open at a side thereof in order to receive and accommodate a respective shock absorber.
  • the hollow cylindrical structure is externally provided with organs or engaging elements for fixing the device to the structure or frame of the respective wardrobe or article of furniture.
  • the shock absorber comprises a cylinder internally of which a piston is operatively arranged, which piston acts on a shock-absorbing fluid present internally of the cylinder (for example oil).
  • the piston is provided with a stem which extends through the cylinder and projects from the open part of the hollow cylindrical structure.
  • the shock-absorber device is further provided with a hollow cylindrical cursor, slidably mobile on the cylindrical structure between a first position, in which it is distanced from the cylinder of the shock-absorber and the stem of the shock-absorber is prevalently arranged externally of the cylinder, and a second position, in which the hollow cylindrical cursor is arranged in proximity of the cylinder of the shock-absorber, the stem of which is prevalently arranged internally of the cylinder.
  • the hollow cylindrical cursor exhibits one or more guide appendages predisposed to cooperate with respective intercept and guide means of the door in order to translate from the first to the second position.
  • the door engages and draws the hollow cylindrical cursor in translation towards the second position during the closing run.
  • the displacement of the hollow cylindrical cursor from the first to the second position determines the movement of the piston stem of the shock-absorber inwardly of the respective cylinder.
  • the shock-absorbing fluid constitutes a resistance to the advancing of the piston, slowing the run of the hollow cylindrical cursor, and, consequently, the run of the door which therefore closes more softly.
  • the shock-absorber device is further provided with a reset spring operatively located internally of the hollow cylindrical cursor.
  • the reset spring is compressed and thus reloads when the hollow cylindrical cursor is in the second position.
  • the reset spring pushes the hollow cylindrical surface towards the first position in order to prepare the shock-absorber device for a next closing of the door.
  • EP 1700985 describes, in figures 17 to 20, a shock-absorber device in which a piston inserted in a jacket exhibits a respective stem coupled to a cursor destined to slide above the jacket.
  • the jacket is externally provided with a T-shaped tab destined to enable fixture of the shock-absorber to a member mounted on the article of furniture.
  • the tab exhibits a central core which projects such as to enable sliding of the cursor on the jacket; the jacket is provided with a longitudinal undercut open at an entry side up to in proximity of a further coupling guide to the member of an article of furniture.
  • US 2004/0205935 discloses a shock-absorber device in which an end of the shock-absorbing piston is guided in a terminal end of the device for absorbing the initial closing shock of the door.
  • shock-absorber devices are able to slow the run of the door to which they are associated, the applicant has found that they are however not without drawbacks and are liable to improvement in certain aspects thereof, mainly in relation to the structural integrity thereof and of the doors, as well as correct functioning thereof.
  • the aim of the present invention is to obviate the drawbacks encountered in the prior art.
  • An aim of the present invention is to strengthen the shock-absorber device in order to prevent the intercepting of the guide appendages by the intercept and guide means of the respective door from damaging the guide appendages or the device itself.
  • a further aim of the present invention is to guarantee linear sliding of the hollow cylindrical cursor with respect to the hollow cylindrical structure, preventing any snagging of a component of the shock-absorber device with respect to the others.
  • An objective of the invention is to precisely guide the components of the device while avoiding misalignments or snagging of the parts, without however increasing the structural complexity of the invention.
  • shock-absorber device for sliding doors of articles of furniture, in particular for sliding doors of wardrobes, which is provided in a preferred but not exclusive embodiment illustrated in the figures of the drawings, in which:
  • 1 denotes in its entirety a shock-absorber device for sliding doors of articles of furniture, in particular for sliding doors of wardrobes, according to the present invention.
  • the device 1 comprises a hollow cylindrical structure 2 exhibiting at least a bottom wall 2a ( figures 3 and 5 ), substantially circular, from which at least a substantially cylindrical lateral wall 2b substantially perpendicularly extends.
  • the bottom wall 2a and lateral wall 2b delimit at least a housing chamber 2c ( figures 3 and 4 ) open on an opposite side of the bottom wall 2a.
  • the hollow cylindrical structure 2 is externally provided with at least an engaging organ 3 for fastening the device 1 to at least a frame (not illustrated in the figures) of an article of furniture or a wardrobe (also not illustrated).
  • the engaging organ 3 comprises a support portion 3a solidly joined to the bottom wall 2a of the hollow cylindrical structure 2.
  • the support portion 3a exhibits a substantially cylindrical conformation, which develops substantially perpendicularly to the longitudinal development of the hollow cylindrical structure 2.
  • the support portion 3a exhibits an axial through-opening 3b, engageable on one side by a threaded connecting element 3a, preferably a screw, and on the other side by a gripping cylinder 3d.
  • the gripping cylinder 3d terminates, on an opposite side with respect to the support portion 3a, with a small plate 3e that is substantially flattened.
  • a through-opening 3f crosses the cylinder 3d and the plate 3e and enables engagement of the threaded connection element 3c.
  • the plate 3e exhibits, at the through-opening 3f, a conical coupling countersink 3g for engaging a conical projection 3h of a counter-plate 3i also provided with a respective through-opening 31.
  • the components 3a, 3c, 3d, 3e and 3i cooperate in a known way such as to maintain the hollow cylindrical structure 2 fixed on the structure or the frame of an article of furniture or a wardrobe.
  • the hollow cylindrical structure 2 further comprises a tab 4 destined during the closing stage of the door to striking receive a terminal portion thereof, guaranteeing damped and softer engagement (with elasticity given by the inclined geometry of the tab).
  • the tab 4 exhibits a connecting portion 4a ( figures 1 , 3 and 5 ), which extends substantially perpendicularly to the lateral wall 2b in a lie plane coinciding with a diametric lie plane of the cylindrical structure.
  • the connecting portion 4a is joined in a single piece to a substantially plate-shaped intermediate portion 4b ( figures 1 , 2 and 4 ) which lies on a substantially perpendicular plane to the lie plane of the connecting portion 4a.
  • the intermediate portion 4b develops in its lie plane prevalently substantially perpendicular to the development plane of the hollow cylindrical structure 2 and in a substantially rectangular shape.
  • a substantially plate-shaped terminal portion 4c develops from the intermediate portion 4b distancingly from the bottom wall 2a of the hollow cylindrical structure 2.
  • the terminal portion 4c lies on an inclined lie plane with respect to the lie plane of the intermediate portion 4b such as to distance from the hollow cylindrical structure 2 as it distances from the intermediate portion 4b.
  • the terminal portion 4c too exhibits a substantially rectangular shape which develops prevalently substantially parallel to the longitudinal development of the hollow cylindrical structure 2.
  • the terminal portion 4c exhibits a free end provided with a rounded relief 4d, for receiving the door as it closes, and absorbing the impact by means of elasticity.
  • tab 4 can alternatively or in combination be provided on the opposite side of the structure with respect to what is illustrated in the drawings.
  • the device further comprises at least a shock-absorber 5, operatively arranged internally of the housing chamber 2c of the hollow cylindrical structure 2.
  • the shock-absorber 5 comprises at least a cylinder 5a containing a shock-absorbing fluid (for example, though not limitingly, oil - not visible in the accompanying figures) and at least a piston (not illustrated in the accompanying figures) operatively arranged internally of the cylinder 5a and acting on the shock-absorbing fluid when it is activated during the closure of the respective door.
  • the piston is provided with a stem 5b which projects longitudinally from the cylinder 5, on an opposite side to the bottom wall 2a of the hollow structure 2 and terminates with a smaller-section end 5c.
  • the device 1 comprises at least a hollow cylindrical cursor 6 provided with a substantially-circular bottom wall 6a, from which at least a substantially cylindrical lateral wall 6b substantially perpendicularly extends.
  • the bottom wall 6a and lateral wall 6b delimit a respective housing chamber 6c ( figures 3 and 5 ) which is open on the opposite side to the bottom wall 6a.
  • the hollow cylindrical cursor 6 is slidably engaged on the hollow cylindrical structure 2 and is mobile along the structure 2 between a first position ( figures 4 and 5 ) in which the bottom wall 6a of the hollow cylindrical cursor 6 is distanced from the cylinder 5a of the shock-absorber 5, and a second position ( figures 2 and 3 ) in which the bottom wall 6a of the hollow cylindrical cursor 6 is arranged in proximity of the cylinder 5a of the shock absorber 5.
  • the stem 5b of the piston 5 is prevalently arranged externally of the cylinder 5 with the free end 5c thereof engaged in a respective engaging seating 6c ( figures 1 , 3 and 5 ) afforded internally on the bottom wall 6a of the hollow cylindrical cursor 6.
  • the stem 5b is prevalently arranged internally of the cylinder 5 by effect of the push the hollow cylindrical cursor 6 has exerted thereon.
  • the lateral wall 6b of the hollow cylindrical cursor 6 exhibits a longitudinal undercut 6d (figures from 2 to 5) predisposed to receive the connecting portion 4a of the tab 4 of the hollow cylindrical structure 2.
  • the hollow cylindrical cursor 2 is externally provided with at least a guide appendage 6e, cooperating with a respective intercept and guide organ (not represented) of the respective door of the article of furniture or wardrobe on which the device 1 is mounted such as to be displaced from the first position to the second position along a substantially parallel direction to a longitudinal axis X of the hollow cylindrical cursor 6 and the hollow cylindrical structure 2 during the closing of the door.
  • a guide appendage 6e cooperating with a respective intercept and guide organ (not represented) of the respective door of the article of furniture or wardrobe on which the device 1 is mounted such as to be displaced from the first position to the second position along a substantially parallel direction to a longitudinal axis X of the hollow cylindrical cursor 6 and the hollow cylindrical structure 2 during the closing of the door.
  • the hollow cylindrical cursor 6 comprises two guide appendages 6e, substantially identical and cooperating with one or more intercept and guide means of the respective door of the article of furniture or the wardrobe such as to be displaced from the first to the second position during the closing of the door.
  • the guide appendages 6e preferably lie substantially on a same transversal plane as the hollow cylindrical cursor 6 and extend substantially parallel to one another.
  • the device 1 advantageously further comprises auxiliary guide means 7 ( figures 1 , 2 and 4 ) operatively interposed between the hollow cylindrical structure 2 and the hollow cylindrical cursor 6 for guiding the cursor 6 between the first and the second positions along a substantially parallel direction to the longitudinal axis X.
  • auxiliary guide means 7 figures 1 , 2 and 4
  • the auxiliary guide means 7 comprise at least a guide projection 8 projecting from the hollow cylindrical structure 2 and at least a guide seating 9 afforded in the hollow cylindrical cursor 6.
  • the guide projection 8 is predisposed to operatively engage the respective guide seating 9 in order to conduct the hollow cylindrical cursor 6 along a substantially parallel direction to the longitudinal axis X thereof and the hollow cylindrical structure 2 between the first and the second position during the closing of the respective door.
  • guide projection 8 can alternatively be afforded in the hollow cylindrical cursor 6 and be projecting towards the inside of the cavity defined thereby, while the corresponding guide seating 9 can be afforded in the hollow cylindrical structure 2.
  • the guide projection 8 extends transversally, preferably substantially perpendicularly to the lateral wall 2b of the hollow cylindrical structure 2.
  • the guide projection 8 exhibits, along a substantially parallel dimension to the longitudinal axis X of the hollow cylindrical structure 2, a substantially elongate shape.
  • the guide projection 8 is defined by a surface relief of the hollow cylindrical structure 2 which exhibits oblique opposite ends 8a ( figures 1 , 2 and 4 ).
  • the guide projection 8 further exhibits two opposite surfaces 14 configured such as to enable longitudinal sliding of the projection in the corresponding guide seating 9.
  • the two opposite surfaces 14 are in particular defined by respective substantially flat surfaces which exhibit a development dimension which is substantially parallel to the dimension of the longitudinal axis X.
  • the two surfaces 14 face one another and are substantially in contact with the walls which delimit the guide seating 9 and can slide relatively to the walls.
  • the opposite ends 8a of the guide projection 8 interact with the ends of the guide seating such as to define minimum and maximum extraction positions of the hollow cylindrical structure 2 with respect to the hollow and cylindrical cursor 6.
  • each opposite end 8a is destined to abut against a respective terminal zone 13 of the guide seating 9 such as to prevent any further sliding of the hollow cylindrical structure 2 with respect to the hollow cylindrical cursor 6 following the nearing motion relative thereto.
  • the specific embodiment (clearly visible in figure 1 ) illustrates guide projections 8 having a trapezoid longitudinal section and a moderate thickness.
  • the opposite ends 8a with the inclined surfaces serve to enable easier insertion of the guide projection into the corresponding guide seating 9, functioning as an entry portion, but maintaining the ability to block the guide projection 8 in the respective seating 9 in the presence of axial forces which are lower than a certain extraction value.
  • the guide seating 9 is defined by a through-opening afforded towards the lateral wall 6b of the hollow cylindrical cursor 6.
  • the guide seating 9 develops substantially parallel to the longitudinal axis X of the hollow cylindrical cursor 6, preferably in a measure which is not below two thirds of the longitudinal dimension of the hollow cylindrical cursor 6.
  • the guide seating 9 is constituted by a through-opening defined by a closed profile which develops substantially parallel to the longitudinal axis X between a first and a second terminal end such as to define, in cooperation with the guide projection 8, positions of minimum and maximum extraction of the hollow cylinder structure 2 with respect to the hollow cylindrical cursor 6.
  • the closed profile of the guide seating 9 is constituted by two main longitudinal tracts 12 which are parallel to one another and connected at ends thereof by two transversal tracts 13, for example arched, as shown in the figures.
  • the two opposite surfaces 14 of the guide projection are facing and substantially in contact with the main longitudinal tracts 12 of the closed profile, such as to be guided thereby.
  • the opposite ends 8a interact with the transversal tracts 13 of the closed profile in the endrun conditions, left and right.
  • the closed-profile through-hole of the guide seating 9 develops substantially parallel to the longitudinal axis X and is afforded starting from a predetermined distance 15, not zero, from an entry end 16 of the hollow cylindrical cursor.
  • the body 4 provided with connecting portion 4a can be seen to emerge transversally from the lateral wall 2b of the hollow cylindrical structure and can slide in the open-profile longitudinal undercut 6d from the entry end 16 towards the terminal portion of the cursor 6 itself, such as to crossingly accommodate the connecting portion 4a in the relative motion between the first position and the second position of the hollow cylindrical cursor 6.
  • the longitudinal undercut 6d exhibits a transversal dimension which is greater than the transversal direction of the guide seating 9; further, the longitudinal undercut 6d does not have the main function of longitudinally guiding the two components 2, 6 in the relative motion thereof.
  • the longitudinal undercut 6d is arranged in a radial plane (passing through the axis X of the device) which is offset by about 90° with respect to the radial plane containing the guide seating 9.
  • the auxiliary guide means 7 advantageously comprise two preferably-identical guide projections 8, projecting from opposite sides of the hollow cylindrical structure 2 and two guide seatings 9, preferably identical, afforded at opposite sides of the hollow cylindrical cursor 6.
  • Each guide projection 8 operatively engages a respective guide seating 9 in order to conduct the hollow cylindrical cursor 6 along a substantially parallel direction to the longitudinal axis X thereof and of the hollow cylindrical structure 2 between the first position and the second position.
  • the guide projections 8 advantageously lie substantially on a same lie plane, preferably coinciding with a horizontal diameter plane of the hollow cylindrical structure 2.
  • the guide seatings 9 lie on a same lie plane, preferably coinciding with a horizontal diameter plane of the hollow cylindrical cursor 6.
  • the guide projections 8 might not emerge from the respective guide seatings 9, but be housed therein, and being flush there-with.
  • the elastic movement means 10 are predisposed to distance the bottom wall 6a of the hollow cylindrical cursor 6 when the weight force exerted by the respective door is removed.
  • the elastic movement means 10 advantageously comprise at least a helix spring 10a operatively arranged internally of the hollow cylindrical cursor 6.
  • the helix spring 10a exhibits a first end 10b engaging a respective annular seating 6f afforded internally on the bottom wall 6a of the hollow cylindrical cursor 6 and a second end 10c engaging an annular abutment 11a of a bushing 11 keyed on the shock absorber 5.
  • the present invention solves the problems encountered in the prior art and attains important advantages.
  • auxiliary guide means of the hollow cylindrical cursor leads to a strengthening of the whole structure of the shock-absorber device, especially when the intercept and guide means of the respective door intercept the guide appendages of the cursor.
  • the guide means prevent any possible misalignment between the parts of the shock-absorber device, especially when the doors are open, and the device is disengaged from the mobile parts during closing.
  • the auxiliary guide means ensure a straight movement of the hollow cylindrical cursor even when the forces exerted by the respective door would be such as to induce an incorrect relative movement of the components of the device.

Claims (14)

  1. Stoßdämpfervorrichtung (1) für Schiebetüren von Möbelartikeln, insbesondere für Schiebetüren von Kleiderschränken und dergleichen, umfassend:
    eine hohle Struktur (2), beispielsweise zylindrisch, aufweisend mindestens eine Bodenwand (2a), von der aus sich mindestens eine Seitenwand (2b) im Wesentlichen rechtwinklig erstreckt, wobei die Bodenwand (2a) und die Seitenwand (2b) mindestens eine Gehäusekammer (2c) begrenzen, die auf einer der Bodenwand (2a) gegenüberliegenden Seite offen ist, wobei die hohle Struktur (2) außen mit mindestens einem Eingriffselement (3) zum Befestigen der Stoßdämpfervorrichtung (1) an mindestens einem Rahmen eines Möbelartikels oder Kleiderschranks versehen ist;
    mindestens einen Stoßdämpfer (5), betriebsbereit innerhalb der Gehäusekammer (2c) der hohlen Struktur (2) angeordnet, wobei der Stoßdämpfer mindestens einen Zylinder (5a), der ein Stoßdämpferfluid enthält, und mindestens einen Kolben, betriebsbereit innerhalb des Zylinders (5a) angeordnet und auf das Stoßdämpferfluid wirkend, umfasst, wobei der Kolben mit einem Schaft (5b) versehen ist, der längs aus dem Zylinder (5a) in einer sich von der Bodenwand (2a) der hohlen Struktur (2) entfernenden Richtung herausragt;
    mindestens einen hohlen Schieber (6), beispielsweise zylindrisch, der eine Bodenwand (6a) aufweist, von der aus sich mindestens eine Seitenwand (6b) im Wesentlichen rechtwinklig erstreckt, wobei der hohle Schieber (6) verschiebbar im Eingriff auf der hohlen Struktur (2) angeordnet und entlang der hohlen Struktur (2) zwischen einer ersten Position, in der die Bodenwand (6a) des hohlen Schiebers (6) vom Zylinder (5a) des Stoßdämpfers (5) beabstandet und der Schaft (5b) vorwiegend außerhalb des Zylinders (5) angeordnet ist, und einer zweiten Position, in der die Bodenwand (6a) des hohlen Schiebers (6) in der Nähe des Zylinders (5a) des Stoßdämpfers (5) und der Schaft (5b) vorwiegend innerhalb des Zylinders (5a) angeordnet sind, beweglich ist, sodass der entsprechende Kolben auf das Stoßdämpferfluid wirkt, wobei der hohle Schieber (6) außen mit mindestens einem Führungsfortsatz (6e) versehen ist, der mit einem entsprechenden Abfang- und Führungselement einer entsprechenden Tür des Möbelartikels oder Kleiderschranks zusammenwirkt, um geführt zu werden oder die Tür in einer schließenden Bewegung derer zu führen und während des Schließens der Tür von der ersten Position in die zweite Position verschoben zu werden, entlang einer Richtung, die im Wesentlichen parallel zur Längsachse (X) des hohlen Schiebers (6) und der hohlen Struktur (2) ist;
    Hilfsführungsmittel (7), betriebsbereit zwischen der hohlen Struktur (2) und dem hohlen Schieber (6) zwischengeschaltet, um den Schieber (6) zwischen den ersten und zweiten Positionen entlang der parallelen Richtung zur Längsachse (X) der hohlen Struktur (2) und des hohlen Schiebers (6) zu führen, wobei die Hilfsführungsmittel (7) mindestens einen Führungsansatz (8), betriebsbereit zwischen die hohle Struktur (2) und den hohlen Schieber (6) zwischengeschaltet, und mindestens einen Führungssitz (9), betriebsbereit zwischen die hohle Struktur (2) und den hohlen Schieber (6) zwischengeschaltet, umfasst, wobei der Führungsansatz (8) betriebsbereit in den Führungssitz (9) eingreift, um den hohlen zylindrischen Schieber (6) und die hohle zylindrische Struktur (2) zwischen den ersten und zweiten Positionen entlang einer Richtung zu leiten, die im Wesentlichen parallel zur Längsachse (X) des hohlen zylindrischen Schiebers (6) und der hohlen zylindrischen Struktur (2) ist, dadurch gekennzeichnet, dass der Führungssitz (9) eine Durchgangsöffnung aufweist, die durch ein geschlossenes Profil definiert wird, das im Wesentlichen parallel zur Längsachse (X) zwischen einer ersten und einer zweiten Endbegrenzung herausgebildet ist, die vorgesehen sind, um in Zusammenarbeit mit dem Führungsansatz (8) Positionen minimalen und maximalen Auszugs der hohlen zylindrischen Struktur (2) in Bezug auf den hohlen zylindrischen Schieber (6) zu definieren, wobei das geschlossene Profil des Führungssitzes (9) zwei Hauptlängstrakte (12) aufweist, die an den Enden mit zwei Transversaltrakten (13) verbunden sind, wobei der Führungsansatz (8) zwei gegenüberliegende Oberflächen (14) aufweist, die konfiguriert sind, um ein Längsverschieben des Ansatzes (8) im Führungssitz (9) zu ermöglichen, wobei die gegenüberliegenden Oberflächen (14) den Hauptlängstrakten (12) des geschlossenen Profils des Führungssitzes (9) zugewandt und mit diesen im Wesentlichen in Kontakt sind, und wobei die gegenüberliegenden Oberflächen vorwiegend eine Herausbildung entlang der Längsachse (X) aufweisen, um die Kopplungs- und Führungsoberfläche mit den Hauptlängstrakten (12) des Führungssitzes (9) zu vergrößern.
  2. Vorrichtung nach Anspruch 1, wobei die gegenüberliegenden Oberflächen (14) im Wesentlichen ebene Oberflächen sind.
  3. Vorrichtung nach Anspruch 1 oder 2, wobei der Führungsansatz (8) gegenüberliegende Enden (8a) aufweist, die konfiguriert sind, um mit den Transversaltrakten (13) des geschlossenen Profils des Führungssitzes (9) zu interagieren, um Positionen minimalen und maximalen Auszugs der hohlen zylindrischen Struktur (2) in Bezug auf den hohlen zylindrischen Schieber (6) zu definieren, wobei jedes gegenüberliegende Ende (8a) dazu vorgesehen ist, an einen entsprechenden Transversaltrakt (13) zu stoßen, um weitere Verschiebungen der hohlen zylindrischen Struktur (2) in Bezug auf den hohlen zylindrischen Schieber (6) in der relativen Bewegungsrichtung zu verhindern.
  4. Vorrichtung nach Anspruch 3, wobei der Führungssitz (9) durch eine Durchgangsöffnung mit geschlossenes Profil, die in der Seitenwand (6b) des hohlen zylindrischen Schiebers (6) vorhanden ist und im Wesentlichen parallel zur Längsachse (X) des hohlen zylindrischen Schiebers (6) herausgebildet ist, wobei die Durchgangsöffnung in einer vorbestimmten Entfernung (15) von einem Eintrittsende (16) des hohlen zylindrischen Schiebers (6) oder der hohlen zylindrischen Struktur (2), insbesondere um eine strukturelle Kontinuität und eine Torsionsfestigkeit des hohlen zylindrischen Schiebers (6) der hohlen zylindrischen Struktur (2) nicht zu kompromittieren.
  5. Vorrichtung nach einem der Ansprüche 1 bis 4, wobei die Hilfsführungsmittel (7) umfassen:
    mindestens einen Führungsansatz (8), aus einer äußeren Oberfläche der hohlen zylindrischen Struktur (2) herausragend;
    mindestens einen Führungssitz (9), vorhanden im hohlen zylindrischen Schieber (6), wobei der Führungsansatz (8) betriebsbereit in den Führungssitz (9) eingreift, um den hohlen zylindrischen Schieber (6) und die hohle zylindrische Struktur (2) entlang einer zur Längsachse (X) des hohlen zylindrischen Schiebers (65) und der hohlen zylindrischen Struktur (2) im Wesentlichen parallelen Richtung zwischen den ersten und zweiten Positionen zu leiten, wobei sich der Führungsansatz (8) insbesondere transversal, insbesondere im Wesentlichen rechtwinklig, zur Seitenwand (2b) der hohlen zylindrischen Struktur erstreckt und eine im Wesentlichen längliche Form entlang einer zur Längsachse (X) der hohlen zylindrischen Struktur (2) im Wesentlichen parallelen Dimension aufweist.
  6. Vorrichtung nach einem der Ansprüche 1 bis 5, wobei die Hilfsführungsmittel (7) umfassen:
    zwei Führungsansätze (8), optional identisch, die aus gegenüberliegenden Seiten der hohlen zylindrischen Struktur (2) herausragen;
    zwei Führungssitze (9), optional identisch, die in gegenüberliegenden Seiten des hohlen zylindrischen Schiebers (6) vorhanden sind, wobei jeder Führungsansatz (8) betriebsbereit in einen entsprechenden Führungssitz (9) eingreift, um den hohlen zylindrischen Schieber (6) entlang einer im Wesentlichen parallelen Richtung zur Längsachse (X) dessen und die hohle zylindrische Struktur (2) zwischen der ersten und der zweiten Position zu leiten.
  7. Vorrichtung nach Anspruch 6, wobei die Führungsansätze (8) im Wesentlichen auf derselben Lageebene liegen, die mit einer Durchmesserebene der hohlen zylindrischen Struktur (2) zusammenfällt, und wobei die Führungssitze (9) auf derselben Lageebene liegen, die mit einer Durchmesserebene des hohlen zylindrischen Schiebers (6) zusammenfällt.
  8. Vorrichtung nach einem der vorhergehenden Ansprüche, weiter umfassend elastische Bewegungsmittel (10), betriebsbereit zwischen dem hohlen zylindrischen Schieber (6) und dem Stoßdämpfer (5) zwischengeschaltet, um den hohlen zylindrischen Schieber (6) in Richtung der ersten Position zu verschieben, wenn die entsprechende Tür des Möbelartikels von einem geschlossenen in einen offenen Zustand verschoben wird, wobei die elastischen Bewegungsmittel (10) die Bodenwand (6a) des hohlen zylindrischen Schiebers (6) in Abwesenheit von Kräften, die in Richtung des Stoßdämpfers (5) gerichtet sind, distanzieren, wobei insbesondere die elastischen Bewegungsmittel (10) mindestens eine Schraubenfeder (10a) umfassen, betriebsbereit innerhalb des hohlen zylindrischen Schiebers (6) angeordnet, wobei die Schraubenfeder ein erstes Ende (10b), das im Innern mit der Bodenwand (6a) des hohlen zylindrischen Schiebers (6) eingreift, und ein zweites Ende (10d), das mit einem ringförmigen Anschlag (11a) einer Buchse (11) eingreift, die auf den Stoßdämpfer (5) aufgekeilt ist, aufweist.
  9. Vorrichtung nach einem der vorhergehenden Ansprüche, wobei die Bodenwand (6a) des hohlen zylindrischen Schiebers (6) im Innern einen Eingriffssitz (6c) für den Schaft (5b) des Stoßdämpfers (5) aufweist, wobei der Eingriffssitz (6c) komplementär zum Schaft (5b) geformt ist, sodass, wenn der hohle zylindrische Schieber (6) von der ersten in die zweite Position versetzt, der Eingriffssitz (6c) im Anschlag an den Schaft (5b) des Stoßdämpfers (5) verbleibt.
  10. Vorrichtung nach einem der vorhergehenden Ansprüche, wobei der hohle zylindrische Schieber (6) zwei Führungsfortsätze (6e) aufweist, die mit einem oder mehreren Abfang- und Führungselementen der entsprechenden Tür des Möbelartikels oder Kleiderschranks zusammenarbeiten, um von der ersten Position zur zweiten Position während des Schließens der Tür verschoben zu werden, wobei die Führungsfortsätze (6e) im Wesentlichen auf derselben transversalen Ebene des hohlen zylindrischen Schiebers (6) liegen und sich im Wesentlichen parallel zueinander erstrecken.
  11. Vorrichtung nach einem der vorhergehenden Ansprüche, wobei die hohle zylindrische Struktur (2) einen Körper (4) umfasst, der mit einem Verbindungsteil (4a) versehen ist, der transversal aus der Seitenwand (2b) der hohlen zylindrischen Struktur (2) herausragt, wobei der hohle zylindrische Schieber (6) eine Längshinterschneidung (6d) aufweist, die ein von einem Eintrittsende (16) offenes Profil hat, um mindestens den Verbindungsteil (4a) in relativer Bewegung zwischen der ersten Position und der zweiten Position des hohlen zylindrischen Schiebers (6) verschränkt aufzunehmen.
  12. Vorrichtung nach Anspruch 11, wobei die Längshinterschneidung (6d) sich im Wesentlichen parallel zur Längsachse (X) erstreckt und in einer versetzten Radialebene, beispielsweise um 90°, in Bezug auf eine Radialebene, die den Führungssitz (9) enthält, angeordnet ist, wobei die Längshinterschneidung (6d) optional eine Transversaldimension aufweist, die größer als eine Transversaldimension des Führungssitzes (9) ist.
  13. Vorrichtung nach einem der vorhergehenden Ansprüche, wobei der Führungsansatz (8) bündig und ohne wesentlich aus dem Führungssitz (9) herauszuragen aufgenommen wird.
  14. Möbelartikel, beispielsweise ein Kleiderschrank, ein Ankleideraum oder dergleichen, umfassend:
    einen Tragrahmen, der in seinem Innern eine Gehäusekammer definiert;
    mindestens eine Schiebetür, die zwischen einer offenen Position, in der ein Zugang zur Kammer vorhanden ist, und einer geschlossenen Position, in der der Zugang zur Gehäusekammer des Tragrahmens versperrt ist, verschoben werden kann;
    mindestens eine Stoßdämpfervorrichtung (1) nach einem der vorhergehenden Ansprüche, in Eingriff mit dem Tragrahmen und angeordnet, um die Schiebetür beim Schließen aufzufangen, um eine finale Schließphase derer zu dämpfen.
EP10793041.4A 2009-10-14 2010-10-13 Stossdämpfervorrichtung, insbesondere für möbel oder dergleichen Not-in-force EP2488717B1 (de)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
ITMI2009A001760A IT1396427B1 (it) 2009-10-14 2009-10-14 Dispositivo ammortizzatore particolarmente per articoli di mobilio.
PCT/IB2010/054636 WO2011045756A1 (en) 2009-10-14 2010-10-13 Shock absorber device, particularly for furniture or similar

Publications (2)

Publication Number Publication Date
EP2488717A1 EP2488717A1 (de) 2012-08-22
EP2488717B1 true EP2488717B1 (de) 2013-12-11

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EP (1) EP2488717B1 (de)
IT (1) IT1396427B1 (de)
WO (1) WO2011045756A1 (de)

Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
ITMI20110915A1 (it) * 2011-05-23 2012-11-24 Terno Scorrevoli Srl Dispositivo ammortizzatore antirumore per pistoncini frenanti di porte e ante scorrevoli

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE10008350C2 (de) * 2000-02-23 2003-01-30 Bulthaup Gmbh & Co Vorrichtung zum Öffnen einer Möbelabdeckung, wie z. B. einer Schublade, Tür oder Klappe
DE20115250U1 (de) * 2001-07-06 2002-11-14 Lautenschlaeger Mepla Werke Dämpfungsvorrichtung
EP1700985B1 (de) * 2005-02-25 2008-04-23 Miguel Angel Rioja Calvo Lagervorrichtung und Verriegelungseinrichtung für Schiebetüre eines Kleiderschrankes

Also Published As

Publication number Publication date
EP2488717A1 (de) 2012-08-22
IT1396427B1 (it) 2012-11-23
ITMI20091760A1 (it) 2011-04-15
WO2011045756A1 (en) 2011-04-21

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