EP3184017B1 - Höhenregulierbarer korb einer geschirrspülmaschine, und geschirrspülmaschine, die einen solchen korb umfasst - Google Patents

Höhenregulierbarer korb einer geschirrspülmaschine, und geschirrspülmaschine, die einen solchen korb umfasst Download PDF

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Publication number
EP3184017B1
EP3184017B1 EP16205842.4A EP16205842A EP3184017B1 EP 3184017 B1 EP3184017 B1 EP 3184017B1 EP 16205842 A EP16205842 A EP 16205842A EP 3184017 B1 EP3184017 B1 EP 3184017B1
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EP
European Patent Office
Prior art keywords
carriage
shuttle
basket
groove
stable position
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EP16205842.4A
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English (en)
French (fr)
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EP3184017A1 (de
Inventor
Marie-Gérard Merlet
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Groupe Brandt SAS
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Groupe Brandt SAS
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Publication of EP3184017A1 publication Critical patent/EP3184017A1/de
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    • AHUMAN NECESSITIES
    • A47FURNITURE; DOMESTIC ARTICLES OR APPLIANCES; COFFEE MILLS; SPICE MILLS; SUCTION CLEANERS IN GENERAL
    • A47LDOMESTIC WASHING OR CLEANING; SUCTION CLEANERS IN GENERAL
    • A47L15/00Washing or rinsing machines for crockery or tableware
    • A47L15/42Details
    • A47L15/50Racks ; Baskets
    • A47L15/504Arrangements for changing the height of racks

Definitions

  • the present application relates to a dishwasher.
  • It relates more particularly to a dishwasher basket.
  • It relates even more particularly to a dishwasher basket adjustable in height.
  • a positioning of a basket in a dishwasher generally an upper basket, so as to provide a more or less high space in the lower basket and / or the upper basket depending on the dishes to be placed there.
  • Licences EP1166708 and FR2722386 disclose, for example, systems for adjusting the height of a dishwasher basket using positioning pins moving in a groove with two locking positions.
  • the adjustment system comprises several independent positioning pins, as described in the document EP1166708 if the basket is not handled so as to be held in a horizontal position when set in the vertical position, the positioning pins do not move simultaneously, which may cause the basket to be locked in an unwanted position and / or a deterioration of the positioning pins or their routing groove.
  • One of the objectives of the present application is thus to propose a device for adjusting the position of a dishwasher basket, intended to receive dishwashing, including an improved basket height adjustment system.
  • the present application also aims to provide a device for easily adjusting a height of the basket in at least two positions.
  • the present application also relates to a device for adjusting the position of a dishwasher basket at least adjustable in height via a compact height adjustment system and having a minimum of games.
  • the height adjustment system is in the form of two positioning modules arranged on either side of the basket and providing a connection between the basket and a dishwasher chamber allowing a horizontal movement of the basket, typically to advance the basket to introduce dishes more easily.
  • Each positioning module uses positioning pins which are integral with each other and move in a path having two holding positions.
  • Using a shuttle allows in particular to ensure a simultaneous movement of positioning pins.
  • the two modules are preferably identical. Thus, only one is described in more detail here.
  • the support comprises a high window formed next to the low stable position point of at least one of the channeling grooves and a bottom window formed next to the high position point of the upper position. minus one of the tracking grooves, the shuttle being vis-à-vis the upper window when each of the positioning pins is positioned in the low stable position point of the corresponding routing groove and the shuttle being in contact with the to the lower window when each of the positioning pins is positioned in the high stable position point of the corresponding routing groove.
  • the windows made on the support thus make it possible to visualize the vertical position of the shuttle and to easily associate the position of the basket.
  • the support comprises an insertion strap associated with each routing groove, the insertion strap being configured to guide a positioning pin to enter the corresponding routing groove.
  • Such an insertion strap thus forms an access ramp for introducing a pin into the corresponding routing groove, in particular during assembly of the module.
  • the insertion strap opens on the one hand to a lower edge of the support into a mouth and on the other hand into the corresponding routing groove.
  • the insertion strap has a smaller depth than the tracking groove, creating a difference in depth which forms a demarcation configured to lock the positioning pin in the corresponding routing groove once there is been introduced.
  • the insertion strap thus forms a hard point preventing inadvertent extraction of the pin from the tracking groove.
  • the carriage comprises a groove extending in the horizontal direction and in that the shuttle is disposed in said groove, a width of the groove being equal to a width of the shuttle blocking the shuttle vertically relative to to the carriage and a length of the groove being greater than a length of the shuttle so that the shuttle is movable in translation horizontally relative to the carriage.
  • Such an embodiment makes it easy to keep the shuttle locked vertically relative to the carriage and movable horizontally with respect to the carriage and the support.
  • the carriage comprises at least two opposite rails surrounding two distinct and parallel edges of the support thus forming a slide connection slidably connecting the support to the carriage.
  • Such an embodiment allows for example an assembly of the carrier to the carriage with a minimum of tool or without tools. Such an embodiment also allows a particularly simple and fast assembly.
  • the three elements forming a module namely the support the carriage and the shuttle, can for example be assembled to each other simply by mechanical interlocking.
  • the two identical routing grooves comprise at least one inverted heart-shaped portion and the inverted heart-shaped portion comprises the two points of stable position: the low stable position point being defined at a point upper heart and the high stable position point being defined at a lower tip of the heart formed between two lobes of the heart.
  • At least one of the lobes of the inverted core-shaped portion of each routing groove comprises an outer contour wall which comprises a stop forming a stop defining a stop position of the positioning representing a maximum high position of the support relative to the carriage.
  • a user is thus easily informed of the operations to be performed to move the basket from a high position to a low position or vice versa.
  • the shuttle of at least one of the modules has a color different from that of the support of the same module.
  • It is preferably a bright color, for example red, so as to make visualization easy even in the dim light of a dishwasher enclosure.
  • a dishwasher comprising a device comprising all or some of the features described above.
  • Such a device thus makes it possible to improve a dishwasher without noticeable modification of the baskets, allowing a more gentle and pleasant handling.
  • a system for adjusting the height of a basket according to an exemplary embodiment of the invention comprises two positioning modules.
  • a positioning module is for example represented on the Figures 5 to 7 .
  • Each module advantageously comprises three elements, namely a support 100, a shuttle 200 and a carriage 300.
  • each of the three elements is a monobloc element.
  • Each element is then for example easily achievable by molding a plastic material. This is for example a polyformaldehyde for the support 100.
  • the Figures 1 to 4 in particular, show an embodiment of a support 100 of a module of a system for adjusting the height of a dishwasher basket.
  • the support 100 is mainly formed of a rectangular plate 101.
  • the support has two parallel lateral flanges 102a, 102b, intended to be mounted vertically in a dishwasher.
  • the figures 1 and 3 have a back 103 of the support 100.
  • the back 103 of the support 100 here designates a rear face of the support 100, that is to say a face of the support opposite to a front face, a front 104 (shown figures 2 and 4 ), by which the support 100 is attached to a dishwasher basket.
  • the back 103 of the support 100 comprises two routing grooves 105a, 105b. However, it could include more.
  • the two routing grooves are identical, as shown by the figures 1 and 3 .
  • the routing groove 105a has a high stable position point 106a and a low stable position point 107a positioned one above the other.
  • the low stable position point 107a is here disposed above the high stable position point 106a.
  • a segment connecting the high stable position point 106a to the low stable position point 107a of one of the grooves is parallel to a segment connecting the high stable position point 106b to the low stable position point 107b of the other grooves.
  • each groove comprises an inverted heart-shaped portion 108a, that is to say in the shape of a heart, a tip 109a is oriented above, above the two lobes 110a, 110a '.
  • Each inverted heart-shaped portion 108a thus has two lobes 110a, 110a ', defining between them a lower point 111a, and an upper point 109a, above the lower point 111a.
  • the upper tip 109a of the inverted heart-shaped portion of each groove defines the low stable position point 107a and the lower point 111a defines the high stable position point 106a.
  • each heart-shaped portion here is directed and a width of said portion is constant and equal to a diameter of a positioning pin 201a of a shuttle 200 (described later) configured to circulate there when user moves the support 100 relative to the shuttle 200, the shuttle being considered fixed altitude.
  • each heart-shaped portion has a first vertical portion 112a having an upper end and a lower end, the upper end having the upper tip 109a.
  • the lower end has a first angled wall 113a formed by an inner contour wall 114a of the tracking groove 105a and positioned vertically above the top end so that a locating pin traverses the first vertical section 112a. from the upper end (i.e. from the low stable position point 107a) terminates, at the lower end, on the first biased wall 113a which deflects it to a first branch 115a.
  • the inverted heart-shaped portion therefore then comprises the first branch 115a which here comprises a first portion 116a and a second part 117a.
  • the first portion 116a is rectilinear and close to the vertical but substantially inclined relative to the vertical.
  • the first portion 116a is extended by the second portion 117a which is inclined relative to the first portion 116a in a direction tending to return below the first vertical portion 112a thereby forming a portion of a first lobe 110a of the inverted heart portion.
  • the first branch 115a could however be formed by a single curved portion for example.
  • the first branch 115a and in particular the second portion 117a, comprises a first abutment 118a formed by a first rectification of an outer contour wall 119a of the groove.
  • the positioning pin 201a deflected by the first inclined wall 113a engages in the first branch 115a and stops on the first stop 118a while the user raises the support 100, which defines a first position of stopping 120a of the positioning pin.
  • the inner contour wall 114a of the groove then comprises a second biased wall 121a, at least a portion of which is positioned above the first stop position 120a of the positioning pin and an upper end of which forms the lower point 111a.
  • the second bias wall 121a therefore has a second stop 122a formed at its upper end to define the lower point 111a of the inverted core-shaped portion, that is, the high stable position point 106a.
  • the positioning pin 201a in the first stop position 120a, the user is made to release the support 100; the positioning pin 201a then bears against the second biased wall 121a and slips into it until it comes into position at the lower point 111a, that is to say at the high stable position point 106a.
  • the positioning pin 201a thus passed from the low stable position point 107a to the high stable position point 106a, as shown figure 3 .
  • the positioning pin is made to take a different path from the previous one.
  • the outer contour wall 119a has a third biased wall 123a, at least a portion of which is positioned vertically above the lower point 111a.
  • the third bias wall 123a has a third stop 124a, formed by a second rectification of the outer contour wall 119a of the groove.
  • the positioning pin 201a deflected by the third biased wall 123a engages in a second branch 125a, in particular a first portion 126a of the second branch 125a, and comes to rest on the third stop 124a while the user raises the support 100 relative to the shuttle 200, which defines a second stop position 128a of the positioning pin.
  • At least the first portion 126a of the second branch 125a thus forms at least a portion of a second lobe 110a 'of the inverted core.
  • first stop position and the second stop position can, however, be formed at two different heights.
  • the second branch 125a then comprises a second portion 127a formed on the one hand in the extension of the first portion 126a and secondly connected to the first vertical portion 112a.
  • the second portion 127a of the second branch 125a is mostly rectilinear and inclined relative to the vertical inclination greater than the inclination of the first portion 116a of the first branch 115a.
  • the outer contour wall 119a of the routing groove 105a then comprises a fourth biased wall 129a, which at at least one part is positioned above the second stop position 128a of the positioning pin.
  • the positioning pin 201a then bears against the fourth biased wall 129a and slides therethrough and thus traverses the second portion 127a of the second branch 125a until it opens into the first vertical section 112a and stops at the upper point 109a. i.e. at the low stable position point 107a.
  • the positioning pin has thus passed from the high stable position point 106a to the low stable position point 107a illustrated. figure 1 .
  • the support 100 comprises different windows, and in particular at least one upper window 130 and at least one lower window 131.
  • the windows to see the shuttle and thus perform a visualization of the position of the height adjustment, in particular to verify that the positioning is identical to the left and right of the basket.
  • the upper window 130 is formed next to the low stable position point 107b between the two grooves and the lower window 131 formed adjacent the high stable position point 106b of the path groove 105b, between the two grooves, but it may well understood to be otherwise, for example the windows 130 and 131 could be arranged in the middle of the two channel grooves or next to the other groove or between one of the lateral flanges 102a, 102b and one of the grooves 105a, 105b .
  • the support 100 also comprises here several upper windows arranged between the two low stable position points 107a, 107b of the two routing grooves 105a, 105b and likewise, the support 100 has even several low windows arranged between the two points of stable position high 106a, 106b of the two routing grooves 105a, 105b.
  • the shuttle 200 is thus vis-à-vis the upper window 130 when each of the positioning pins 201a, 201b is positioned in the low stable position point 107a, 107b of the corresponding routing groove 105a, 105b and the shuttle 200 is thus vis-à-vis the lower window 131 when each of the positioning pins 201a, 201b is positioned in the high stable position point 106a, 106b of the corresponding channel groove 105a, 105b.
  • the front 104 of the support comprises a first indication 132 next to the upper window 130 and a second indication 133 next to the lower window 131 representing the position of the support relative to the shuttle, that is to say the position of the basket in a dishwasher, namely a high position, as shown figure 3 , or a low position, as shown figure 2 .
  • the first indication 132 here is the number "1” and the second indication 133 is here the number "2".
  • the shuttle 200 comprises a bar 202 and two positioning pins 201a, 201b configured to cooperate with each of the positioning grooves 105a, 105b.
  • the positioning pins 201a, 201b are formed at each end of the bar 202.
  • the bar 202 could of course extend beyond at least one of the positioning pins.
  • the shuttle In order to be able to raise or lower the support 100 with respect to the shuttle 200, thus to raise or lower a dishwasher basket in a dishwasher enclosure, the shuttle is fixed at an altitude relative to a dishwasher enclosure when a whole device is installed in the dishwasher enclosure, but the shuttle retains a freedom of translation in a horizontal direction that is to say here in a longitudinal direction passing through a center of the two positioning pins 201a, 201b .
  • the shuttle 200 is here slidably mounted in the horizontal direction relative to the carriage 300 and blocked in the vertical direction relative to said carriage 300.
  • the carriage 300 comprises a groove 301 in which the shuttle 200 is installed.
  • the shuttle 200 is then held in position between the support 100 and the carriage 300 as described later.
  • the shuttle 200 is made of a material having a different color of the support 100, such as for example red or a bright color differing from the color of the support 100.
  • the Figures 5 and 6 allow to illustrate more particularly the carriage 300 according to an exemplary embodiment.
  • the carriage 300 mainly comprises a strip 302.
  • the strip 302 is here rectangular in shape and is configured to cooperate with a rail of the dishwasher chamber and slide relative to the rail in a longitudinal direction of the rail, here considered as the horizontal direction.
  • wheels 401 can be mounted on hubs 305 of the carriage.
  • Such a coupling between a trolley and a dishwasher speaker rail for taking out or retracting a basket relative to the enclosure of the dishwasher is for example standard and is therefore not described in detail here.
  • the figure 5 more particularly presents a front 303 of the carriage, configured to be partly hidden behind the support 100, that is to say vis-à-vis the back 103 of the support 100, while the figure 6 has a back 304 of the carriage.
  • the back 304 here comprises the hubs 305 for receiving a wheel 401 for the carriage 300 to slide relative to a rail of the dishwasher enclosure.
  • the front 303 of the carriage 300 includes the groove 301 in which the shuttle is positioned.
  • the groove 301 has a width at least equal to a width of the shuttle 200 and preferably equal to the width of the shuttle so as to minimize any movement or even clearance between the shuttle and the groove in the vertical direction.
  • the groove 301 has a length greater than a length of the shuttle 200 so that the shuttle 200 has a sufficient distance for the positioning pins to traverse the routing grooves in the horizontal direction.
  • groove 301 is here closed at each end but it could be open, for example extend along an entire length of the carriage in the horizontal direction.
  • the positioning pins 201a, 201b of the shuttle 200 are positioned projecting relative to the recto 303 of the carriage so as to be able to be introduced into each of the routing grooves 105a, 105b of the support when the support 100 and the carriage 300 are assembled. , that is to say with the front 303 of the carriage vis-à-vis the back 103 of the support.
  • the carrier and the carriage are slidably mounted relative to each other.
  • the support is configured to be translated relative to the carriage in the vertical direction.
  • the carriage 300 here comprises a first pair of rails 306a, 306b opposite one another.
  • each of the rails 306a, 306b is formed by a straight groove cut in a wall projecting from the front 303 of the carriage 300.
  • the groove of one of the rails 306a is thus parallel to the groove of the other of the rails 306b and extend in the vertical direction, that is to say in a direction orthogonal to a longitudinal direction of the carriage 300.
  • Each of the two rails 306a, 306b thus surrounds one of the two lateral flanges 102a, 102b of the support 100.
  • each of the two lateral flanges 102a, 102b of the support is inserted into the groove of one of the rails 306a, 306b.
  • the carriage 300 also comprises a second pair of rails 306c, 306d opposite one another and surrounding two rails 102c, 102d of the support which are formed by two slots pierced substantially at the center of the support 100.
  • the rails 306c, 306d are also formed by a straight groove cut in a wall projecting from the front 303 of the carriage 300 and extend in the vertical direction, that is to say in a direction orthogonal to a longitudinal direction of the trolley 300.
  • Each of the two central runners 102c, 102d of the support is thus inserted into the groove of one of the rails 306c, 306d of the second pair of rails.
  • the carrier further includes an insertion strap 134a, 134b configured to guide a locating pin 201a, 201b to enter the inverted heart shaped portion 108a, 108b of the corresponding path groove 105a, 105b.
  • the insertion strap 134a, 134b is a groove opening on the one hand to a lower edge 135 of the support 100 in a mouth 137a, 137b, and on the other hand in the inverted heart-shaped portion 108a, 108b of the groove path 105a, 105b corresponding.
  • the groove forming the insertion strap 134a, 134b has a smaller depth than the inverted heart-shaped portion 108a, 108b of the tracking groove 105a, 105b.
  • This difference in depth forms a demarcation 136a, 136b configured to lock the locating pin 201a, 201b in the inverted heart-shaped portion 108a, 108b of the corresponding path groove 105a, 105b once it has been inserted therein.
  • the support 100 is therefore positioned relative to the carriage 300 with its lateral flanges 102a, 102b engaged in the rails 306a, 306b.
  • the shuttle 200 is positioned in the groove 301 of the carriage with its positioning pins 201a, 201b in front of the mouth 137a, 137b of the insertion ramp 134a, 134b corresponding.
  • the support 100 and the carriage 300 are then slid relative to each other in a direction such that the positioning pins 201a, 201b engage in the corresponding insertion strap 134a, 134b and then enter the inverted heart-shaped portion 108a, 108b of the corresponding routing groove 105a, 105b.
  • the insertion strap 134a, 134b allows easy assembly of the assembly with a force passage (hard point) avoiding the return of the corresponding pin in the insertion strap 134a, 134b, and avoids inadvertent disassembly. Despite all the disassembly is possible by inserting a small flat screwdriver between the support 100 and the cart 300 to force the passage of the hard point upside down, that is to overcome the demarcation 136a, 136b.
  • the positioning pins 201a, 201b are caused to circulate therein as previously described.
  • the support 100 is maintained relative to the carriage 300 and can take either a high stable position or a low stable position relative to the carriage according to that the positioning pins 201a, 201b are at the point of high stable position 106a, 106b is at the low stable position point 107a, 107b of each of the path grooves 105a, 105b.
  • figure 7 presents a setting device in the position of a dishwasher basket in a dishwasher according to an embodiment of the present invention.
  • the device comprises for example a basket 500.
  • the basket 500 typically has a bottom 501 and at least two side walls 502 opposite to each other extending from the bottom 501.
  • the device further comprises a system for adjusting the height of the basket as defined previously for example.
  • each side wall 502 of the basket 500 is thus provided with a positioning module as described above.
  • Each side wall 502 is thus carried by a support 100.
  • each support 100 comprises for example here fastening hooks 138 configured to grip vertical son of the corresponding side wall 502.
  • the hooks are for example configured to deform to allow insertion of the basket son and then return to their original position, thus ensuring the maintenance position of the support on the basket.
  • each support 100 also possibly includes arms 139 configured to fit between horizontal wires of the corresponding side wall 502 and thereby support the basket.
  • the basket 500 is thus stationary relative to the supports 100 of each module disposed on either side of the basket.
  • Each support is thus configured to take a high stable position and a stable low position relative to the corresponding carriage.
  • Which trolley is configured to be translated back and forth relative to a dishwasher enclosure.
  • the shuttle is here held vertically and movable horizontally in a direction parallel to the direction of movement of the carriage relative to the enclosure.

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  • Washing And Drying Of Tableware (AREA)

Claims (11)

  1. Vorrichtung zum Einstellen der Stellung eines Korbs einer Geschirrspülmaschine, wobei die Vorrichtung einen Korb (500) und ein System zur Höheneinstellung des Korbs enthält, wobei der Korb einen Boden (501) und zumindest zwei einander entgegengesetzte, sich vom Boden aus erstreckende Seitenwände (502) enthält, dadurch gekennzeichnet, dass das Höheneinstellsystem zwei Positionierungsmodule enthält, wobei jedes der Module mit einer der beiden Seitenwände (502) verhakt ist, wobei jedes Modul enthält:
    • einen Schlitten (300), der dazu ausgelegt ist, in einer zu einem Geschirrspülmaschinengehäuse horizontal verlaufenden Richtung zu gleiten, um den Korb (500) bezüglich des Geschirrspülmaschinengehäuses vorzuschieben bzw. zurückzuschieben,
    • einen Träger (100), der einerseits an eine der Seitenwände (502) des Korbs befestigt ist und andererseits in einer vertikalen Richtung am Schlitten (300) gleitbeweglich gelagert ist, um den Korb bezüglich des Schlittens anzuheben bzw. abzusenken, wobei der Träger zwei identische Verlagerungsrillen (105a, 105b) enthält, wobei jede Verlagerungsrille zumindest zwei stabile Stellungspunkte aufweist:
    einen unteren stabilen Stellungspunkt (107a, 107b) an einem oberen Abschnitt (109a, 109b) der Verlagerungsrille, und einen oberen stabilen Stellungspunkt (106a, 106b) an einem unteren Abschnitt (111a, 111b) der Verlagerungsrille, und
    dadurch gekennzeichnet, dass jedes Modul enthält:
    • eine Pendeleinrichtung (200), die in bezüglich des Schlittens (300) horizontaler Richtung gleitbeweglich gelagert und in bezüglich des Schlittens (300) vertikaler Richtung gesichert ist, wobei die Pendeleinrichtung zwei Positionierzapfen (201a, 201b) enthält, wobei jeder Positionierzapfen in eine der beiden Verlagerungsrillen (105a, 105b) des Trägers (100) eingesetzt ist,
    wobei der Träger (100) dann in der unteren Stellung bezüglich des Schlittens (300) ist, wenn die Positionierzapfen (201a, 201b) in dem unteren stabilen Stellungspunkt (107a, 107b) der entsprechenden Verlagerungsrille (105a, 105b) positioniert ist, und der Träger (100) dann in der oberen Stellung bezüglich des Schlittens (300) ist, wenn jeder der Positionierzapfen (201a, 201b) in dem oberen stabilen Stellungspunkt (106a, 106b) der entsprechenden Verlagerungsrille (105a, 105b) positioniert ist.
  2. Vorrichtung nach Anspruch 1, dadurch gekennzeichnet, dass der Träger (100) ein oberes Fenster (130) enthält, das neben dem unteren stabilen Stellungspunkt (107a, 107b) zumindest einer der Verlagerungsrillen ausgebildet ist, sowie ein unteres Fenster (131), das neben dem oberen stabilen Stellungspunkt (106a, 106b) zumindest einer der Verlagerungsrillen (105a, 105b) ausgebildet ist, wobei die Pendeleinrichtung (200) dem oberen Fenster (130) dann gegenüberliegt, wenn jeder der Positionierzapfen (201a, 201b) in dem unteren stabilen Stellungspunkt (107a, 107b) der entsprechenden Verlagerungsrille (105a, 105b) positioniert ist, und wobei die Pendeleinrichtung (200) dem unteren Fenster (131) dann gegenüberliegt, wenn jeder der Positionierzapfen (201a, 201b) in dem oberen stabilen Stellungspunkt (106a, 106b) der entsprechenden Verlagerungsrille (105a, 105b) positioniert ist.
  3. Vorrichtung nach einem der Ansprüche 1 oder 2, dadurch gekennzeichnet, dass der Träger einen Einführsteg enthält, der jeder Verlagerungsrille (105a, 105) zugeordnet ist, wobei der Einführsteg (134a, 134b) dazu ausgelegt ist, einen Positionierzapfen (201a, 201b) zu führen, um ihn in die entsprechende Verlagerungsrille (105a, 105b) einzuschieben.
  4. Vorrichtung nach Anspruch 3, dadurch gekennzeichnet, dass der Einführsteg (134a, 134b) einerseits an einem unteren Rand (135) des Trägers (100) in einer Mündung (137a, 137b) und andererseits in der entsprechenden Verlagerungsrille (105, 105b) einmündet.
  5. Vorrichtung nach einem der Ansprüche 3 oder 4, dadurch gekennzeichnet, dass der Einführsteg (134a, 134b) eine geringere Tiefe als die Verlagerungsrille (105a, 105b) aufweist, wodurch ein Tiefenunterschied geschaffen wird, der eine Abgrenzung (136a, 136b) bildet, die dazu ausgelegt ist, den Positionierzapfen (201a, 201b) in der entsprechenden Verlagerungsrille (105a, 105b) zu verriegeln, nachdem er darin eingeführt worden ist.
  6. Vorrichtung nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass der Schlitten (300) eine Rille (301) aufweist, die sich in horizontaler Richtung erstreckt, und dass die Pendeleinrichtung (200) in der Rille (301) angeordnet ist, wobei eine Breite der Rille gleich einer Breite der Pendeleinrichtung ist, wodurch die Pendeleinrichtung vertikal bezüglich des Schlittens gesichert wird, und wobei eine Länge der Rille größer ist als eine Länge der Pendeleinrichtung, so dass die Pendeleinrichtung bezüglich des Schlittens horizontal verschiebbar ist.
  7. Vorrichtung nach einem der Ansprüche 1 bis 6, dadurch gekennzeichnet, dass die beiden identischen Verlagerungsrillen (105a, 105b) zumindest einen Abschnitt in umgekehrter Herzform (108a, 108b) aufweisen und dass der untere stabile Stellungspunkt (107a, 107b) an einer oberen Spitze (109a, 109b) der Herzform definiert ist und der obere stabile Stellungpunkt (106a, 106b) an einer unteren Spitze (111a, 111b) der Herzform definiert ist, die zwischen zwei Herzformlappen (110a, 110a', 110b, 110b') definiert ist.
  8. Vorrichtung nach Anspruch 7, dadurch gekennzeichnet, dass zumindest einer der Lappen (110a, 110a', 110b, 110b') des Abschnitts in umgekehrter Herzform (108a, 108b) einer jeden Verlagerungsrille (105a, 105b) eine Außenkonturwand (119a, 119b) enthält, die eine Erhebung aufweist, welche einen Anschlag (118a, 118b, 124a, 124b) bildet, der eine Arretierstellung (120a, 120b, 128a, 128b) des Positionierzapfens (201a, 201b) definiert, welche eine oberste Stellung des Trägers (100) bezüglich des Schlittens (300) darstellt.
  9. Vorrichtung nach einem der Ansprüche 1 bis 8, dadurch gekennzeichnet, dass die Pendeleinrichtung (200) zumindest eines der Module eine andere Farbe aufweist als der Träger (100) des gleichen Moduls.
  10. Vorrichtung nach einem der Ansprüche 1 bis 9, dadurch gekennzeichnet, dass der Schlitten (300) zumindest zwei entgegengesetzte Schienen (306a, 306b) enthält, die zwei separate, parallel verlaufende Randleisten (102a, 102b) des Trägers (100) umgeben, wodurch eine Gleitschienenverbindung gebildet wird, welche den Träger (100) gleitbeweglich mit dem Schlitten (300) verbindet.
  11. Geschirrspülmaschine mit einer Vorrichtung nach einem der Ansprüche 1 bis 10.
EP16205842.4A 2015-12-24 2016-12-21 Höhenregulierbarer korb einer geschirrspülmaschine, und geschirrspülmaschine, die einen solchen korb umfasst Active EP3184017B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR1563332A FR3046047B1 (fr) 2015-12-24 2015-12-24 Panier de lave-vaisselle reglable en hauteur et lave-vaisselle comportant un tel panier

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EP3184017A1 EP3184017A1 (de) 2017-06-28
EP3184017B1 true EP3184017B1 (de) 2018-12-12

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EP16205842.4A Active EP3184017B1 (de) 2015-12-24 2016-12-21 Höhenregulierbarer korb einer geschirrspülmaschine, und geschirrspülmaschine, die einen solchen korb umfasst

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EP (1) EP3184017B1 (de)
FR (1) FR3046047B1 (de)

Family Cites Families (3)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
IT234818Y1 (it) * 1994-07-15 2000-03-16 Francesco Fratantuono Dispositivo per la sospensione mobile di biciclette al soffitto
IT1318003B1 (it) * 2000-06-15 2003-07-21 Candy Spa Macchina lavastoviglie con cestello regolabile in altezza
DE20019706U1 (de) * 2000-11-20 2001-01-18 Hachtel Steffen Vorrichtung zur Höhenverstellung der oberen Geschirrkörbe von Spülmaschinen

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* Cited by examiner, † Cited by third party
Title
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FR3046047A1 (fr) 2017-06-30
FR3046047B1 (fr) 2018-02-16
EP3184017A1 (de) 2017-06-28

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