EP3296246B1 - Procédé d'installation d'un ascenseur dans une cage d'ascenseur - Google Patents

Procédé d'installation d'un ascenseur dans une cage d'ascenseur Download PDF

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Publication number
EP3296246B1
EP3296246B1 EP16189050.4A EP16189050A EP3296246B1 EP 3296246 B1 EP3296246 B1 EP 3296246B1 EP 16189050 A EP16189050 A EP 16189050A EP 3296246 B1 EP3296246 B1 EP 3296246B1
Authority
EP
European Patent Office
Prior art keywords
guide rail
rail sections
bracket
mounting device
along
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
EP16189050.4A
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German (de)
English (en)
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EP3296246A1 (fr
Inventor
Fabio Sbrana
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
TK Home Solutions SRL
Original Assignee
ThyssenKrupp Home Solutions SRL
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by ThyssenKrupp Home Solutions SRL filed Critical ThyssenKrupp Home Solutions SRL
Priority to EP16189050.4A priority Critical patent/EP3296246B1/fr
Priority to ES16189050T priority patent/ES2835858T3/es
Priority to CN201790001220.3U priority patent/CN210366573U/zh
Priority to PCT/EP2017/072688 priority patent/WO2018050579A1/fr
Publication of EP3296246A1 publication Critical patent/EP3296246A1/fr
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Publication of EP3296246B1 publication Critical patent/EP3296246B1/fr
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Classifications

    • BPERFORMING OPERATIONS; TRANSPORTING
    • B66HOISTING; LIFTING; HAULING
    • B66BELEVATORS; ESCALATORS OR MOVING WALKWAYS
    • B66B19/00Mining-hoist operation
    • B66B19/002Mining-hoist operation installing or exchanging guide rails

Definitions

  • the present invention relates to a method of installing an elevator, especially an elevator of the cantilever type, in an elevator shaft, a mounting device and a bracket for engaging two elevator guide rail sections.
  • US 8,186,130 B2 discloses such a method for installing an elevator.
  • at least one working platform is built between the guide rails of the lowermost guide rail section.
  • the guide rails of a second guide rail section are then fixed as an extension of the guide rails of the lowermost guide rail section using the working platform as an aid.
  • diverting pulleys are fixed to the top ends of the guide rails of the second guide rail section, a hoist and the rope suspension of the working platform are fitted to the working platform, in which rope suspension the hoisting rope is led at its first end from the hoist over the diverting pulleys and under the diverting pulleys that are in connection with the working platform to its fixing point of the second and of the working platform, and the working platform is lifted to the next working height by means of the hoist and is locked into position.
  • This method comprises a relatively complex mechanism for lifting the working platform between working positions. Furthermore, it is not suitable for guide rails provided for cantilever type elevators.
  • JP H11 209026A discloses a method of installing an elevator comprising connecting an upper stage with the upper part of a lower stage of the guide rail; providing a car frame with a basket floor; providing upper position beams and providing a lifting equipment which lifts the car via a wire rope in the upper position.
  • the object of the invention is therefore to further optimize installation methods for cantilever type elevators in a shaft, especially in shafts of high rise buildings.
  • the invention provides a method of installing an elevator of the cantilever type in an elevator shaft according to claim 1.
  • the method comprises the following steps: mounting two first guide rail sections, which extend parallelly to one another in the vertical direction defining a constant horizontal distance therebetween, in a first section of the elevator shaft, providing a mounting device comprising a working platform adapted to engage the two first guide rail sections for guided movement along the first two guide rail sections, providing a first horizontally extending bracket adapted to engage the two first guide rail sections above the mounting device, providing a winch mechanism adapted to engage the bracket and the mounting device, and actuating the winch mechanism for lifting the mounting device along the first guide rail sections in an upward direction towards the bracket, wherein the first bracket is provided as a bracket which is moveable along the first and the further guide rail sections, and adapted to be immovable in a downward direction in case of a torque exerted thereon generated by a downwardly acting force, especially a force generated by winch mechanism and/or mounting device, the bracket comprising two openings, each one
  • the description gives an example of a mounting device for mounting between two parallelly extending guide rail sections of an elevator, especially an elevator of the cantilever type, comprising a working platform adapted to engage with the guide rail sections and a winch mechanism adapted to interact with a bracket extending horizontally between the two guide rail sections vertically above the working platform, and to lift the working platform along the guide rail sections, the winch mechanism comprising a rope or chain extending between the bracket and the working platform.
  • the rope or chain is provided as a single rope or chain.
  • the invention also provides a bracket adapted to engage and to be moved along two parallelly extending guiderail sections of an elevator, especially an elevator of the cantilever type, adapted to temporarily prevent downward movement along the guide rail sections.
  • the bracket is adapted to prevent downward movement in case of a torque acting on the bracket generated by a downwardly acting force, the bracket comprising two openings, each one of which engages one of the two guide rail sections the shape of which essentially corresponds to the profile of a guide rail section it engages, and a further opening adapted for engagement by a winch mechanism.
  • the bracket is adapted to engage two parallely extending guide rail sections. Such a bracket can be moved upwardly along a first and then successive subsequent quide rail sections. Especially by means of exerting a downwardly acting force on this bracket, a torque is generated by means of which the bracket is, as long as this torque is generated, fixed in a downwardly immovable position.
  • bracket with a safety gear adapted to allow downward motion along the guide rail sections only in case of actuation of the safety gear by a user.
  • guide rail section is used for a constituent of a guide rail. I.e., a number of vertically extending and aligned guide rail sections constitute a guide rail as a whole. Two parallel guide rails are provided.
  • the term "first guide rail section” especially shall mean the lowermost guide rail section of a guide rail.
  • the “two first guide rails sections” are especially the respective lowermost sections of two parallel extending guide rails.
  • two further guide rail sections are provided, respectively aligned with one of the first two guide rail sections and mounted in a further section of the elevator shaft immediately above the first section of the elevator shaft, whereafter either
  • the method of the invention can be utilised for any desired guide rail length, by providing further guide rail sections, mounting these in alignment with previously mounted guide rail sections, and repeating above steps.
  • the exemplified mounting device can be moved vertically downwards along guide rail sections or the guide rails as a whole only if a safety gear is specifically activated by a user. Providing such a safety gear assures safe handling of the mounting device. For example, even if the winch mechanism fails, the safety gear can ensure that the mounting device safely stays in place at its current position in the elevator shaft, and does not inadvertently move downwards.
  • the safety gear is provided on or at the working platform and is adapted to engage the guide rail sections or guide rails such that in a first operating state, in which the safety gear is not actuated by a user, the working platform can only be moved in upward direction along the guide rails by means of the winch mechanism, and in a second operating state, in which the safety gear is actuated by a user, the working platform can be moved in downward direction along the guide rails.
  • a downward movement of the working platform is only possible in case of simultaneously unwinding the rope of the winch mechanism and actuating the safety gear.
  • this safety gear comprises a blocking means, allowing motion of the working platform only in case of actuation of the positive blocking means.
  • the blocking means advantageously comprise a compressed spring, which, unless it is decompressed by positive actuation by a user, interacts with a roll provided in a tapered opening of the safety gear.
  • the mounting device comprises an equalizer mechanism adjusted to simultaneously release two safety gears, each interacting with one of the two guide rail sections.
  • each safety gear can comprise a compressed spring and a Bowden cable.
  • the equalizer mechanism connects the two Bowden cables in such a way, that pulling the equalizer mechanism by means of a pulling motion acting on the two Bowden cables, causes simultaneous decompression of the two compressed springs.
  • the mounting device is generally designated 100. It comprises a working platform 110, on which at least one person can stand.
  • the mounting device is further provided with a railing 120, which is only partly shown. This railing 120 serves to protect people working on the mounting device from falling off.
  • each safety gear 140 comprises a U-shaped profile, which is adapted and arranged to interact with T-shaped guide rail sections 200 of an elevator system of the cantilever type.
  • the U-shaped profile comprises a central passage 144, which is tapered in the upward direction, as can be seen especially in figure 3 .
  • the mounting device 100 is arranged between two parallel guide rail sections 200, as can especially be seen from figure 2 , and can be displaced along these guide rail sections 200, as will be explained below.
  • safety gear 140 is provided with a blocking means, especially a positive blocking means 150.
  • This positive blocking means 150 ensures that the mounting device, without a specific unblocking action by a user, can only move in upward direction along guide rail sections 200, the upward direction being indicated by arrow U in figure 2 .
  • the positive blocking means comprises a roll 142 arranged in tapered passage 144 provided on the safety gear 140. As can be seen from figure 3 , roll 142 is positioned between one side 201a of the web 201 of guide rail 200 and the tapering wall 144a of tapered passage 144.
  • a Bowden cable 160 attached to spring 146.
  • spring 146 decompresses, so that roll 142 will move downwards within tapered passage 144.
  • a pull on Bowden cable 160 in direction of arrow P is maintained, a downward movement of the safety gear and thus the mounting device along guide rail 200 is possible.
  • the positive blocking means greatly enhances safety of a person on platform 110. If, for example, a Bowden cable 160 tears or breaks, spring 146 automatically takes its blocking position, i. e. blocking roll 142 in tapered passage 144.
  • phase a) at least one horizontally extending bracket 410 is mounted to a shaft wall 400.
  • two horizontally extending brackets 410 are mounted with an expedient vertical spacing to one another.
  • two vertically extending guide rail sections 200 are mounted to brackets 410. These two first guide rail sections 200, mounted to the same shaft wall 400, thus serve as guide rail sections for an elevator of the cantilever type.
  • a mounting device 100 is mounted between the two first guide rail sectons 200, as explained above especially with a view to figures 1 and 2 .
  • Bracket 470 is then brought into engagement with the two first guide rail sections 200.
  • This bracket 470 is shown in detail in figure 5 . It is provided with two openings 470a, the distance between which corresponds to the horizontal distance of the first guide rail sections 200. Also, the shape of openings 470a corresponds to the profile of the first guide rail sections 200.
  • bracket 470 can be brought into engagement with the guide rail sections 200 wherein the guide rail sections extend through the openings 470a, and moved along the guide rail sections in the vertical direction.
  • the area of openings 470a extends in a plane perpendicular to the vertical extension direction of the guide rail sections.
  • Bracket 470 is also provided with a second opening 470b for engagement with a winch mechanism, as will be explained in the following.
  • winch mechanism 430 is brought into engagement with bracket 470 and mounting device 100.
  • the winch mechanism 430 is provided with a single rope or chain 440, and adapted to engage bracket 470 as well as mounting device 100, for example utilizing a suitable attachment component on platform 110.
  • bracket 470 The force acting on bracket 470 by means of the winch mechanism 430 engaging opening 470b leads to a forward pivotal movement of bracket 470 relative to the first guide rail sections 200, as indicted by arrows P shown in figures 4a and 5 . This leads to a blocking of any vertical movement of bracket 470 relative to the guide rail sections 200. In other words, as soon as a force is exerted in the downward direction in the vicinity of opening 470b, a torque is generated and bracket 470 is rendered temporarily immoveable along first guide rail sections 200.
  • the mounting device By activating winch mechanism 430, the mounting device can then be pulled upwardly along the first two guide rail sections 200. This situation is depicted as phase b). In this situation, mounting device 100 arrives at the uppermost position on the two first guide rail sections 200. As explained above, without specific activation of safety gears 140 (i. e. by means of pulling equalizer device 170), only an upward movement of mounting device 100 along guide rail sections 200 by activation of winch 430 is possible.
  • Phase c) shows the situation in which further guide rail sections have been vertically aligned with the first guide rail sections, and mounted to the elevator shaft wall, again using brackets 410.
  • Bracket 470 can now be moved upwardly along first guide rail sections 200 and further guide rail sections 200 mounted in alignment therewith, to reach a new position as shown in phase d). During this displacement of bracket 470, mounting device 100 is secured in its position (uppermost position on first guide rail sections 200) by means of safety gear 140, and the winch mechanism 430 is deactivated, so that no pivotal force acts on bracket 470.
  • the mounting device By pulling or actuating equalizer device 170 and simultaneously unwinding rope 440 of winch 430, the mounting device can be moved along the guide rail sections 200 in downward direction.
  • bracket 480 is provided with two safety gears 490.
  • Each safety gear 490 comprises a U-shaped profile, which is adapted and arranged to interact with T-shaped guide rail sections 200 of the elevator system.
  • This U-shaped profile comprises a central passage, which, as described above in relation to the safety gear 140 of the working platform 110, is tapered in the upward direction. The functionality of this safety gear thus corresponds to that as already described above regarding safety gear 140.
  • Bracket 480 also comprises an opening 480d, which is adapted for engagement by winch mechanism 430.
  • the winch mechanism can be adapted to engage the mounting brackets 410.
  • the winch mechanism can be adapted to engage the mounting brackets 410.
  • mounting device 100 arrives at an uppermost position relative to a guide rail section 200, it is necessary to disengage the winch from an initial mounting bracket 410, to which it is attached, and engage it with a further mounting bracket 410 arranged vertically above the previous mounting bracket.

Landscapes

  • Types And Forms Of Lifts (AREA)
  • Lift-Guide Devices, And Elevator Ropes And Cables (AREA)

Claims (6)

  1. Un procédé d'installation d'un ascenseur, en particulier d'un ascenseur de type cantilever, dans une cage d'ascenseur, comprenant les étapes suivantes:
    - monter de deux premières sections de rail de guidage (200), s'étendant parallèlement l'une à l'autre dans le sens vertical et définissant une distance horizontale constante entre elles, dans une première section de la cage d'ascenseur,
    - fournir un dispositif de montage (100) comprenant une plate-forme de travail (110) adaptée pour engager les deux premières sections de rail de guidage (200) pour un mouvement guidé le long des deux premières sections de rail de guidage (200),
    - fournir un premier support s'étendant horizontalement (410 ; 470) adapté pour engager les deux premières sections de rail de guidage (200) au-dessus du dispositif de montage (100),
    - fournir un mécanisme de treuil (430 ; 440) adapté pour engager le support (410 ; 470) et le dispositif de montage (100)
    - actionner le mécanisme de treuil (430 ; 440) pour soulever le dispositif de montage le long des premières sections du rail de guidage dans une direction ascendante vers le support (410 ; 470); dans lequel
    le premier support (470) est prévu comme un dispositif de montage qui est mobile le long du premier et des autres sections de rail de guidage (200) et qui est conçu pour être immobile vers le bas en cas de couple appliqué sur celui-ci par une force agissant vers le bas, en particulier une force générée par le mécanisme de treuil (430 ; 440) et/ou le dispositif de montage (100) ; caractérisé en ce que
    le support présente deux ouvertures (470a) dont chacune engage l'une des deux parties de rail de guidage (200) dont la forme correspond sensiblement au profil de la partie de rail de guidage (200) ce que laquelle elle engage, et une autre ouverture (470b) adaptée à l'engagement du mécanisme de treuil (430;440).
  2. Le procédé selon la revendication 1, dans lequel, lorsque la distance verticale entre le dispositif de montage (100) et le support (410 ; 470) atteint une valeur prédéterminée, en particulier une valeur minimale, deux autres sections de rail de guidage (200) sont prévues, chacune étant montée en alignement avec l'une des deux premières sections de rail de guidage (200) et dans une autre section de la cage d'ascenseur immédiatement au-dessus de la première section de la cage d'ascenseur, après quoi
    soit
    - un autre support (410) s'étendant horizontalement est prévu, qui peut s'engager avec les autres sections de rail de guidage (200) verticalement au-dessus du dispositif de montage (100),
    - après quoi le mécanisme de treuil (430 ; 440) est prévu pour engager le support supplémentaire (410) et le dispositif de montage (100), et le mécanisme de treuil est actionné pour soulever d'avantage le dispositif de montage dans une direction ascendante le long des autres parties du rail de guidage,
    - ou
    - après quoi le premier support (470) est déplacé vers le haut le long des premières parties de rail de guidage pour engager les autres parties de rail de guidage (200), après quoi le premier support (470) est déplacé plus loin vers le haut le long des autres parties de rail de guidage (200), et dans lequel le premier support (470) est amené en engagement immobile vers le bas avec les autres parties de rail de guidage (200), et le mécanisme de treuil (430 ; 440) engagé avec le premier support (470) et le dispositif de montage (100) est actionné pour soulever d'avantage le dispositif de montage (100) vers le haut le long des autres parties du rail de guidage.
  3. Le procédé selon l'une des revendications ci-dessus, dans lequel le dispositif de montage (100) peut être déplacé vers le bas le long de la première et/ou des autres sections de rail de guidage (200) en actionnant un dispositif de blocage (140).
  4. Le procédé selon l'une des revendications 2 ou 3 ci-dessus, dans lequel le premier et l'autre support (410) sont prévus comme supports de montage pour monter des sections de rail de guidage sur la paroi de la cage d'ascenseur.
  5. Un support (470) adaptée pour s'engager et être déplacée le long de deux sections de rail de guidage parallèles (200) d'un ascenseur, en particulier un ascenseur du type cantilever, et adaptée pour empêcher temporairement le mouvement vers le bas le long des sections de rail de guidage (200), dans laquelle le support est conçu pour empêcher tout mouvement vers le bas si une force descendante génère un couple agissant sur le support ;
    caractérisé en ce que
    le support présente deux ouvertures (470a), dont chacune s'engage dans l'une des deux parties de rail de guidage (200), dont la forme correspond sensiblement au profil d'une partie de rail de guidage (200) avec laquelle elle s'engage, et une autre ouverture (470b) adaptée à l'engagement avec un mécanisme de treuil (430 ; 440)
  6. Le support selon la revendication 5, muni d'un dispositif de blocage adapté pour permettre un mouvement descendant le long des parties du rail de guidage (200) uniquement en cas d'actionnement du dispositif de blocage.
EP16189050.4A 2016-09-15 2016-09-15 Procédé d'installation d'un ascenseur dans une cage d'ascenseur Active EP3296246B1 (fr)

Priority Applications (4)

Application Number Priority Date Filing Date Title
EP16189050.4A EP3296246B1 (fr) 2016-09-15 2016-09-15 Procédé d'installation d'un ascenseur dans une cage d'ascenseur
ES16189050T ES2835858T3 (es) 2016-09-15 2016-09-15 Método de instalación de un ascensor en un hueco de ascensor
CN201790001220.3U CN210366573U (zh) 2016-09-15 2017-09-11 在电梯井中安装电梯的设备
PCT/EP2017/072688 WO2018050579A1 (fr) 2016-09-15 2017-09-11 Procédé d'installation d'un ascenseur dans une gaine d'ascenseur

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP16189050.4A EP3296246B1 (fr) 2016-09-15 2016-09-15 Procédé d'installation d'un ascenseur dans une cage d'ascenseur

Publications (2)

Publication Number Publication Date
EP3296246A1 EP3296246A1 (fr) 2018-03-21
EP3296246B1 true EP3296246B1 (fr) 2020-11-04

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EP16189050.4A Active EP3296246B1 (fr) 2016-09-15 2016-09-15 Procédé d'installation d'un ascenseur dans une cage d'ascenseur

Country Status (4)

Country Link
EP (1) EP3296246B1 (fr)
CN (1) CN210366573U (fr)
ES (1) ES2835858T3 (fr)
WO (1) WO2018050579A1 (fr)

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE19536994C2 (de) * 1995-10-04 2001-07-05 Wittur Ag Aufzugsystem und Verfahren zur Montage des Aufzugsystems
JPH11209026A (ja) * 1998-01-19 1999-08-03 Hitachi Building Systems Co Ltd エレベータの据付方法
TW593117B (en) * 2000-12-07 2004-06-21 Inventio Ag Safety brake and method for unlocking a safety brake
US20040154870A1 (en) * 2003-01-28 2004-08-12 Patrick Bass Self-climbing elevator machine comprising a punched rail assembly
FI120089B (fi) 2008-01-23 2009-06-30 Kone Corp Menetelmä hissin asentamiseksi
FI20080444L (fi) * 2008-07-24 2010-01-25 Kone Corp Hissijärjestely, menetelmä ja turvarakenne

Non-Patent Citations (1)

* Cited by examiner, † Cited by third party
Title
None *

Also Published As

Publication number Publication date
WO2018050579A1 (fr) 2018-03-22
EP3296246A1 (fr) 2018-03-21
ES2835858T3 (es) 2021-06-23
CN210366573U (zh) 2020-04-21

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