EP2913290B1 - Dispositif d'ascenseur d'escalier - Google Patents

Dispositif d'ascenseur d'escalier Download PDF

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Publication number
EP2913290B1
EP2913290B1 EP14156811.3A EP14156811A EP2913290B1 EP 2913290 B1 EP2913290 B1 EP 2913290B1 EP 14156811 A EP14156811 A EP 14156811A EP 2913290 B1 EP2913290 B1 EP 2913290B1
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EP
European Patent Office
Prior art keywords
movable platform
staircase
elevator
modular
movable
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP14156811.3A
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German (de)
English (en)
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EP2913290A1 (fr
Inventor
Aikaterini Vamvaca
Nikolaos Dimitriou
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Analytical Instruments SA
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Analytical Instruments SA
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Publication date
Application filed by Analytical Instruments SA filed Critical Analytical Instruments SA
Priority to PL14156811.3T priority Critical patent/PL2913290T3/pl
Priority to EP14156811.3A priority patent/EP2913290B1/fr
Publication of EP2913290A1 publication Critical patent/EP2913290A1/fr
Application granted granted Critical
Publication of EP2913290B1 publication Critical patent/EP2913290B1/fr
Priority to CY20161100691T priority patent/CY1117789T1/el
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B9/00Kinds or types of lifts in, or associated with, buildings or other structures
    • B66B9/06Kinds or types of lifts in, or associated with, buildings or other structures inclined, e.g. serving blast furnaces
    • B66B9/08Kinds or types of lifts in, or associated with, buildings or other structures inclined, e.g. serving blast furnaces associated with stairways, e.g. for transporting disabled persons
    • B66B9/0869Collapsible stairways, e.g. operable between a lower level and an upper level

Definitions

  • the present invention relates to a Staircase Elevator Device universally suitable for ascending/descending from a few steps up to any given number of steps of a staircase according to Claim 1.
  • the present invention relates generally to powered devices for ascending and descending staircases between floors. Persons, especially elderly or disabled, ascending or descending stairs often need powered mechanical asistance. To this end the following kinds of devices are currently in use.
  • Document NL 2 004 022 C discloses a staircase elevator device for ascending/descending any given number of steps of a staircase comprising an equal to the staircase steps number of modular step elevators, each individual modular step elevator being associated with one step of the staircase, each modular step elevator comprising a base arranged on the horizontal surface of the staircase step the modular step elevator is associated with and shaped according to the shape of the horizontal surface of the staircase step and a movable platform having the same shape as the base and beeing able to be moved up or down between the base of the modular step elevator and the level of the lower position of the movable platform of the modular step elevator associated with the next higher staircase step by means of an electric, pneumatic or hydraulic actuator.
  • the movable platform has at least one handhold beeing arranged on one side of the movable platform essentialy verticaly to the riser and to the movable platform, whereby the electric, pneumatic or hydraulic actuator is controllable by a user by means of control means provided on at least one handhold of the movable platform, whereby the first step is an area of the floor level of the lower floor and the last step an area of the floor level of the higher floor, the last step beeing not associated with a modular step elevator, whereby the movable platform of the modular step elevator associated with the second last step is able to be moved up or down between the base and the level of the floor level of the higher floor.
  • a Staircase Elevator Device suitable for ascending/desending any given number of steps of a staircase comprising an equal to the staircase steps number of modular step elevators which according to the invention are firmly combined by one or two long metal profiles in a stable, united and all-integrated Device, each individual modular step elevator beeing associated with one step of the staircase and according to the invention connected with the step in a non-destructive way, e.g.
  • each modular step elevator comprising a base which is firmly arranged on the horizontal surface of the staircase step the modular step elevator is associated with and shaped according to the shape of the horizontal surface of the staircase step and a movable platform having the same shape as the base and being able to be moved up or down between the base of the modular step elevator and the level of the lower position of the movable platform of the modular step elevator associated with the next higher staircase step by means of an electric, pneumatic or hydraulic actuator, the movable platform having at least one handhold beeing arranged on one side of the movable platform preferrably essentialy verticaly to the riser and to the movable platform, whereby the electric, pneumatic or hydraulic actuator is controllable by the user by means of control means provided on at least one handhold of the movable platform.
  • the control means can be control buttons or a control stick and can also comprise an alarm button.
  • the movable platform has two handholds they are arranged at opposite sides of the movable platform verticaly to the riser and to the movable platform.
  • the first step is an area of the floor level of the lower floor and the last step an area of the floor level of the higher floor, the last step beeing not associated with a modular step elevator, whereby the movable platform of the modular step elevator associated with the second last step is able to be moved up or down between the base and the level of the floor level of the higher floor.
  • the bases of the modular step elevators associated with one staircase between two floors are according to the invention firmly connected to each other by means of at least one, preferably one or two stable profiles in a stable, united and all-integrated Device.
  • the profile is running along and parallel to the inclination of the staircase from the lower floor to the higher floor and can serve also as a guide channel for the cables and/or tubing needed for the operation of the actuators of the movable platforms as stated in the characterizing part of claim 1.
  • groups of successive arranged modular step elevators are firmly connected to each other by means of at least one stable profile.
  • the operation of the Staircase Elevator Device according to the present invention for ascending is as follows:
  • the user holds the handholds of the lowest 'first' modular staircase elevator and stands on its movable platform.
  • By pressing an "up" button on the handhold or by suitably operating a control stick the 'first' platform ascents to the level of the next, 'second' movable platform of the modular staircase elevator associated with the next higher staircase step, which is in the lower position, namely on the base thereof.
  • the two movable platforms are at this stage at the same level and the user holds the handholds of the second movable platform and moves from the 'first' on the 'second' movable platform and stands on it.
  • the 'second' movable platform By pressing the "up" push button on the handhold the 'second' movable platform he ascents to the level of the next 'third' movable platform and so on and so forth until the higher floor is reached.
  • the same procedure as for ascenting applies for descending the stairs of the staircase by pressing the "down” button or by suitably operating a control stick of the respective handholds.
  • the process of ascending and descending can also be automated, whereby the movable platforms are moved sequentially up or down according to the operation mode at predefined, adjustable time intervals. In case the time intervals are too short or problems arise the user can operate an alarm button arranged on the handholds stopping the movement.
  • the handholds of each movable platform comprise also a touch sensor, whereby the movement of the movable platform comprising the handhold starts when the touch sensor is dampened for a predefined time.
  • the Staircase Elevator Device according to the invention does not interfere with normal use of the stairs, when it is not in use.
  • the use of the Staircase Elevator Device according to the invention results in a reduction in tooling costs and in the costs of ongoing maintenance, because of its flexibility and simplicity in installation and use.
  • the Staircase Elevator Device can be adapted to enable ascenting and descenting from a few steps, e.g. 2-3 steps up to unlimited number of steps depending on the number of steps of the staircase.
  • a modular step elevator of a Staircase Elevator Device suitable for ascending/descending any given number of steps of a staircase comprises a base 1 firmly arranged in a non-destructive way on the horizontal surface of the staircase step the modular step elevator is associated with and shaped according to the shape of the horizontal surface of the staircase step and a movable platform 2 having the same shape as the base 1 and beeing able to be moved up or down between the base 1 of the modular step elevator and the level of the lower position of the movable platform of the modular step elevator associated with the next higher staircase step by means of an electric, pneumatic or hydraulic actuator.
  • the base can be metallic and/or wooden and has the shape of the horizontal surface of the staircase step, to which it is assigned.
  • the movable platform 2 shown in Figure 1 has two handholds 3 beeing arranged at opposite sides of the movable platform 2 verticaly to the riser and to the movable platform 2, whereby the actuator of the is modular step elevator is controllable by a user by means of control means 4 provided on at least one handhold 3 of the movable platform 2.
  • the movable platform 2 is electrically driven by means of an electric motor 6 and preferably trapezoidal screws 5 fixed vertically near the corners of the base 1 and passing through holes of the movable platform 2.
  • the motor is a 12V motor with a housing vertically fixed on top of the the movable platform 2.
  • At least one suitable, recharchable battery for providing the electric energy for the motor 6 of the modular step elevators of the Staircase Elevator Device is provided (not shown).
  • the motor 6 drives a first motor pulley 7 which is connected by means of a first timing belt 8 with a central reduction pulley 9 which is arranged on a shaft 10 on which a second and a third pulley 11, 12 serving as distribution pulleys are arranged.
  • the first, second and third pulley 9, 11, 12 are rotating with the shaft 10.
  • the second and third pulley 11,12 transfer momentum by means of second and third belts 13, 14 to peripheral pulleys 15, 16, 17, 18, whereby each peripheral pulley 15,16,17,18 drives a nut 19 on each trapezoidal screw 5, screwing or unscrewing them along the trapezoidal screws 5, thus converting the rotational movement into an up or down movement and driving the inner rings of the ball bearings 20 to ascent or descent, whereby the outer rings of the ball bearings 20 are fixed to the movable platform 2.
  • the inner rings of the bearings 20 are revolved by the trapezoidal nuts 19.
  • A can be taken by Figure 1 , the trapezoidal screws 5 are partialy guided (the upper part thereof depending on the movement of the movable platform 2) through the handholds 3, which are configured as hollow bodies. In order to show this feature a part of the left part of the left handhold 3 is not shown so that the upper part of the screw 5 guided through the handhold can bee seen.
  • the modular step elevator comprises a height adjustment screw 21 which is preadjusted to stop the movement of the movable platform 2 at the level of the lower position of the movable platform of the modular step elevator associated with the next higher staircase step.
  • FIG. 1 shows the bases 1 of the modular step elevators associated with one staircase between two floors are firmly connected to each other by means of at least one stable profile 22 in a stable, united and all-integrated Device, whereby the at least one profile 22 is running along and parallel to the inclination of the staircase from the lower floor to the higher floor and can serve also as a guide channel for the cables needed for the operation of the actuators of the movable platforms 2.
  • side vertical plates 23 can be provided which are fixed at one or both sides of the base 1, on which the at least one profile 22 is affixed.
  • the Staircase Elevator Device also comprises limit-switches and relays used to activate the motors of the modular step elevators in order to be controllable by the user for up or down movement either separately for each modular step elevator or sequentially for all modular step elevators on the staircase steps.
  • the embodiment shown in Figure 2 differs from the embodiment shown in Figure 1 in that the the movable platform 2 is electrically driven by means of an electric motor 6 and toothed racks 28 fixed vertically near the corners of the base 1, passing through proper holes of the movable platform 2 and partialy guided (the upper part thereof depending on the movement of the movable platform 2) through the handholds 3, which are configured as hollow bodies.
  • the motor 6 is coupled to a gear box 24 for speed reduction, whereby the momentum is transferred from the gear box 24 by sprockets 25 and chains 26 to peripheral gears 27 arranged on axles 29 according to the principle of a chain drive, which are movable up or down along the racks 28, thus carrying upwards or downwards the movable platform 2, at which the ends of the axles 29 are rotatably fixed.
  • the peripheral gears 27, engaged to the racks 28 provide synchronous and parallel movement of the movable platform 2 by elevating it at the preadjusted height by a height adjustment screw shown in Figure 1 at the level of the lower position of the movable platform of the modular step elevator associated with the next higher staircase step.
  • roller means 30 assigned to each rack 28 arranged on axles can be provided to avoid friction between the racks 28 and to ensure a smooth movement of the movable platform 2.
  • the embodiment shown in Figure 3 differs from the embodiment shown in figure 1 in that the the movable platform 2 is pneumatically or hydraulically driven by means of pneumatic or hydraulic cylinders 31 and toothed racks 32, fixed vertically near the corners of the base 1, passing through proper holes of the movable platform 2 and partialy guided (the upper part thereof depending on the movement of the movable platform 2) through the handholds 3, which are configured as hollow bodies.
  • the cylinders 31 are fixed vertically at both sides on the top of the movable platform 2 and have piston rods 33 fixed on the base 1, initiating the up or down movement of the movable platform 2.
  • the compressed air or oil moves the pistons rods 33 depending on the operation mode up or down, thus changing the distance between the base 1 and the movable platform 2.
  • the compressed air or oil of an air compressor or oil pump moves through a tubing and corresponding air or oil valves the piston rods 33 vertically and in synchronous mode, which are movable the platform 2 at a height preadjusted by a height adjustment screw (not shown).
  • the movement of the movable platform 2 can be supported by peripheral gears 34, engaged to the racks 32, providing synchronous up or down movement of the movable platform 2.
  • a chain 37, sprockets 35 and axles 36 are provided, transferring synchronous rotation to peripheral gears 34 engaged to the racks 32, whereby for each side of the modular step elevator an axle 36 is provided, on which a sprocket 35 and gears 34 assigned to the racks 32 are firmly arranged.
  • the sprockets 35 of both sides are connected to reach other by means of a revolving chain 37 for synchronization.
  • roller means 30 assigned to each rack 32 arranged on axles can be provided to avoid friction between the racks 32 and to ensure a smooth movement of the movable platform 2.
  • the Staircase Elevator Device also comprises flow controls for regulating the upwards or downwards speed of the movable platform 2, either separately for each movable platform 2 or sequentially for all movable platforms 2 on the staircase steps.
  • the bases 1 of the modular step elevators associated with one staircase between two associated with one staircase between two floors are firmly connected to each other by means of at least one stable profilen in a stable, united and all-integrated Device, whereby the profile Is running along and parallel to the inclination of the staircase from the lower floor to the higher floor and can serve as a guide channel for the cables and the tubing needed for the operation of the pneumatic or hydraulic cylinders of the movable platforms 2.
  • FIG. 4 shows a Staircase Elevator Device according to the invention comprising 18 modular step elevators installed on a staircase having 18 steps.
  • the bases of the modular step elevators associated with the staircase are firmly connected to each other by means of a stable profile 22 running along and parallel to the inclination of the staircase from the lower floor to the higher floor.
  • the operation of the Staircase Elevator Device for ascending is as follows:
  • the user holds the handholds of the lowest 'first' modular staircase elevator and stands on its movable platform ( figure 5a ).
  • By pressing an "up" button on the handhold or by suitably operating a control stick the 'first' platform ascents to the level of the next, 'second' movable platform of the modular staircase elevator associated with the next higher staircase step, which is in the lower position ( Figure 5b ).
  • the two movable platforms are at this stage at the same level and the user holds the handholds 3 of the second movable platform and moves from the 'first' on the 'second' movable platform and stands on it ( Figure 5b ).
  • the 'second' movable platform By pressing the "up" push button or by suitably operating a control stick on the handhold the 'second' movable platform he ascents to the level of the next 'third' movable platform ( Figure 5c, Figure 5d ) and so on and so forth until the 17 th step ( Figure 5e ) and the higher floor is reached ( Figure 5f ).
  • the same procedure as for ascenting applies for descending the stairs of the staircase by pressing the "down" button or by suitably operating a control stick of the respective handholds 3.

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  • Engineering & Computer Science (AREA)
  • Transportation (AREA)
  • Automation & Control Theory (AREA)
  • Structural Engineering (AREA)
  • Types And Forms Of Lifts (AREA)
  • Handcart (AREA)

Claims (10)

  1. Dispositif d'élévateur de marches d'escalier pour monter/descendre tout nombre donné de marches d'escalier, comprenant un nombre d'élévateurs de marche modulaires équivalent au nombre de marches de l'escalier, chaque marche modulaire étant associée à une marche d'escalier, chaque élévateur de marche modulaire comprenant une base (1) fixée fermement sur la surface horizontale de la marche d'escalier avec laquelle l'élévateur de marche modulaire est associé et suit la forme de la surface horizontale de la marche d'escalier, et une plateforme mobile (2) ayant la même forme que la base et pouvant être déplacée vers le haut ou vers le bas entre la base (1) de l'élévateur de marche modulaire et le niveau de la position la plus basse de la plateforme mobile (2) de l'élévateur de marche modulaire associé à la marche suivante supérieure de l'escalier au moyen d'un actionneur électrique, pneumatique ou hydraulique, la plateforme mobile (2) disposant d'au moins une poignée (3) agencée sur un côté de la plateforme mobile (2) essentiellement à la verticale de l'élévateur et de la plateforme mobile (2), tandis que l'actionneur électrique, pneumatique ou hydraulique peut être commandé par l'utilisateur au moyen de dispositifs de commande (4) prévus sur une poignée au moins (3) de la plateforme mobile, tandis que la première marche est au niveau du sol de l'étage inférieur et la dernière marche est au niveau du sol de l'étage supérieur, la dernière marche n'étant pas associée à un élévateur de marche modulaire, tandis que la plateforme mobile (2) de l'élévateur de marche modulaire associé à la deuxième dernière marche peut se déplacer vers le haut ou vers le bas entre la base (1) et le niveau du sol de l'étage supérieur, caractérisé en ce que chaque élévateur de marche modulaire associé à une marche de l'escalier est relié à la marche d'une façon non destructive, les élévateurs de marche modulaires étant fermement reliés par un ou deux longs profilés en métal dans un dispositif stable, assemblé et totalement intégré et que les bases (1) des élévateurs de marche modulaires associées à un escalier entre deux étages sont fermement reliées les unes aux autres au moyen d'au moins un profilé stable (22) courant le long de, et parallèlement à, l'inclinaison de l'escalier à partir de l'étage inférieur à l'étage supérieur et servant également de canal de guidage pour les câbles et/ou les tubes nécessaires au fonctionnement des actionneurs des plateformes mobiles (2).
  2. Dispositif d'élévateur de marches d'escalier, selon la revendication 1, caractérisé en ce que la plateforme mobile (2) est actionnée électriquement au moyen d'un moteur électrique (6) et de vis trapézoïdales (5) fixées à la verticale près de chaque coin de la base (1) et passant dans des trous de la plateforme mobile (2), le moteur (6) actionnant une première poulie à moteur (7) qui est reliée au moyen d'une première courroie de distribution (8) à une poulie de réduction centrale (9) fixée sur un arbre (10) sur lequel sont fixées une deuxième et une troisième poulie (11, 12), tandis que la première, la deuxième et la troisième poulie tournent avec l'arbre (10) et la deuxième et troisième poulie (11, 12) exercent une impulsion au moyen de deuxième et de troisième courroies (13, 14) vers des poulies périphériques (15, 16, 17, 18), chaque poulie périphérique (15, 16, 17, 18) actionnant un écrou (19) sur chaque vis trapézoïdale (5), vissant ou dévissant ceux-ci le long des vis trapézoïdales (5), convertissant ainsi le mouvement rotatif en un mouvement vers le haut ou vers le bas et actionnant les bagues intérieures de roulements à billes (20) pour monter ou descendre, tandis que les bagues extérieures des roulements à billes (20) sont fixées à la plateforme mobile (2) et les bagues intérieures des roulements à billes (20) sont tournées par les écrous trapézoïdaux (19).
  3. Dispositif d'élévateur de marches d'escalier selon la revendication 1, caractérisé en ce que la plateforme mobile (2) est actionnée électriquement au moyen d'un moteur électrique (6) et de crémaillères (28) fixées à la verticale près de chaque coin de la base (1) et passant dans les trous de la plateforme mobile (2), le moteur (6) étant couplé à une boite de vitesses (24) pour réduire la vitesse, tandis que l'impulsion est transférée par des pignons de chaîne (25) et des chaînes (26) de la boîte de vitesses (24) à des roues dentées périphériques (27) disposées sur des axes (29), qui se déplacent vers le haut ou vers le bas le long des crémaillères (28), déplaçant ainsi vers le haut ou vers le bas la plateforme mobile (2) à laquelle sont fixées les extrémités des axes (29), tandis que les roues périphériques (27) enclenchées dans les crémaillères (28) assurent un mouvement synchrone et parallèle de la plateforme mobile (2).
  4. Dispositif d'élévateur de marches d'escalier, selon la revendication 1, caractérisé en ce que la plateforme mobile (2) est actionnée de manière pneumatique ou hydraulique au moyen de cylindres pneumatiques ou hydrauliques (31) et de crémaillères (32), fixées à la verticale près de chaque coin de la base (1) et passant dans les trous de la plateforme mobile (2), les cylindres (31) étant fixés à la verticale de chaque côté en haut de la plateforme mobile (2) et ayant des tiges de piston (33) fixées sur la base (1), déclenchant le mouvement vers le haut ou vers le bas de la plateforme mobile (2), tandis que de l'air comprimé ou de l'huile active les tiges de piston (33) à la verticale et en mode synchrone vers le haut ou vers le bas, modifiant ainsi la distance entre la base (1) et la plateforme mobile (2).
  5. Dispositif d'élévateur de marches d'escalier, selon la revendication 4, caractérisé en ce que le mouvement de la plateforme mobile (2) est assuré par des roues dentées périphériques (34) enclenchées dans les crémaillères (32), assurant un mouvement synchrone vers le haut ou vers le bas de la plateforme mobile (2), tandis qu'une chaîne (37), des axes (36) et des pignons de chaîne (35) sont prévus, transférant un mouvement de rotation synchrone vers les roues dentées périphériques (34), tandis que pour chaque côté de l'élévateur de marche modulaire est prévu un axe (36), sur lequel un pignon de chaîne (35) et des roues (34) associées aux crémaillères (32) sont fermement fixés, les pignons de chaîne (35) sur les deux côtés étant reliés les uns aux autres au moyen d'une chaîne pivotante (37) assurant la synchronisation.
  6. Dispositif d'élévateur de marches d'escalier, selon la revendication 2, 3, 4 ou 5 caractérisé en ce que chaque élévateur de marche modulaire comprend une vis de réglage de la hauteur (21) qui est préalablement réglée pour bloquer le mouvement de la plateforme mobile (2) au niveau de la position inférieure de la plateforme mobile (2) de l'élévateur de marche modulaire associé à la marche d'escalier supérieure suivante.
  7. Dispositif d'élévateur de marches d'escalier, selon la revendication 1, 2, 3, 4, 5 ou 6 caractérisé en ce que les dispositifs de commande (4) sont des touches de commande ou un manche de commande.
  8. Procédé pour faire fonctionner un élévateur de marche modulaire selon l'une quelconque des revendications précédentes, caractérisé en ce que l'utilisateur saisit la poignée (3) du « premier » élévateur de marche modulaire le plus bas et se place sur la plateforme mobile de celui-ci, tandis qu'en pressant la touche « up » sur la poignée ou en activant comme prévu un manche de commande, la « première » plateforme mobile (2) s'élève au niveau de la plateforme mobile suivante, à savoir la « deuxième » plateforme mobile (2) de l'élévateur de marche modulaire associée à la marche suivante supérieure, qui se trouve dans la position la plus basse, ainsi les deux plateformes mobiles (2) sont au même niveau, tandis que sur la marche suivante, l'utilisateur saisit la poignée de la « deuxième » plateforme mobile et se déplace de la « première » à la « deuxième » plateforme mobile (2) en se plaçant sur celle-ci, tandis qu'en pressant la touche « up » ou en actionnant comme prévu un manche de commande sur la poignée (3), la « deuxième » plateforme mobile (2) s'élève au niveau de la plateforme mobile suivante, à savoir la « troisième » plateforme (2) et ainsi de suite jusqu'à ce que l'étage supérieur ait été atteint, tandis que pour descendre les marches de l'escalier, le même processus que la montée est utilisé, à savoir en pressant la touche « down » ou en actionnant comme prévu un manche de commande sur les poignées respectives (3).
  9. Procédé pour faire fonctionner un élévateur de marche modulaire selon la revendication 8, caractérisé en ce que les poignées (3) de chaque plateforme mobile (2) comprennent un capteur tactile, tandis que le mouvement d'une plateforme mobile (2) commence lorsque le capteur tactile est sollicité pour une période prédéfinie.
  10. Procédé pour faire fonctionner un élévateur de marche modulaire selon l'une quelconque des revendications précédentes 1 - 7, caractérisé en ce que le processus de montée et de descente est automatique, tandis que les plateformes mobiles (2) se déplacent séquentiellement vers le haut ou vers le bas selon le mode d'opération à intervalles prédéfinis et réglables, tandis qu'au cas où les intervalles seraient trop courts ou en cas de problème, l'utilisateur peut presser un bouton d'alarme prévu à cet effet sur les poignées (3) et bloquer ainsi le mouvement.
EP14156811.3A 2014-02-26 2014-02-26 Dispositif d'ascenseur d'escalier Active EP2913290B1 (fr)

Priority Applications (3)

Application Number Priority Date Filing Date Title
PL14156811.3T PL2913290T3 (pl) 2014-02-26 2014-02-26 Schodowe urządzenie dźwigowe
EP14156811.3A EP2913290B1 (fr) 2014-02-26 2014-02-26 Dispositif d'ascenseur d'escalier
CY20161100691T CY1117789T1 (el) 2014-02-26 2016-07-15 Μηχανισμος αναβατοριου κλιμακοστασιου

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Application Number Priority Date Filing Date Title
EP14156811.3A EP2913290B1 (fr) 2014-02-26 2014-02-26 Dispositif d'ascenseur d'escalier

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EP2913290A1 EP2913290A1 (fr) 2015-09-02
EP2913290B1 true EP2913290B1 (fr) 2016-04-27

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PL (1) PL2913290T3 (fr)

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IT201600071622A1 (it) * 2016-07-08 2018-01-08 Giovanni Teglia Dispositivo di ausilio per salire/scendere scale

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NL2004022C2 (nl) * 2009-12-24 2011-09-09 Univ Twente Tredeliftsamenstel, tredelift en werkwijze.

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EP2913290A1 (fr) 2015-09-02
PL2913290T3 (pl) 2016-11-30
CY1117789T1 (el) 2017-05-17

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