EP2081652B1 - Dispositif de sécurisation - Google Patents

Dispositif de sécurisation Download PDF

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Publication number
EP2081652B1
EP2081652B1 EP07821858.3A EP07821858A EP2081652B1 EP 2081652 B1 EP2081652 B1 EP 2081652B1 EP 07821858 A EP07821858 A EP 07821858A EP 2081652 B1 EP2081652 B1 EP 2081652B1
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EP
European Patent Office
Prior art keywords
securing
locking
lever
blocking
lock
Prior art date
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Active
Application number
EP07821858.3A
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German (de)
English (en)
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EP2081652A1 (fr
Inventor
Stefan Gassner
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.)
Edelrid GmbH and Co KG
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Edelrid GmbH and Co KG
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Application filed by Edelrid GmbH and Co KG filed Critical Edelrid GmbH and Co KG
Publication of EP2081652A1 publication Critical patent/EP2081652A1/fr
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Publication of EP2081652B1 publication Critical patent/EP2081652B1/fr
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Classifications

    • AHUMAN NECESSITIES
    • A63SPORTS; GAMES; AMUSEMENTS
    • A63BAPPARATUS FOR PHYSICAL TRAINING, GYMNASTICS, SWIMMING, CLIMBING, OR FENCING; BALL GAMES; TRAINING EQUIPMENT
    • A63B29/00Apparatus for mountaineering
    • A63B29/02Mountain guy-ropes or accessories, e.g. avalanche ropes; Means for indicating the location of accidentally buried, e.g. snow-buried, persons
    • AHUMAN NECESSITIES
    • A62LIFE-SAVING; FIRE-FIGHTING
    • A62BDEVICES, APPARATUS OR METHODS FOR LIFE-SAVING
    • A62B35/00Safety belts or body harnesses; Similar equipment for limiting displacement of the human body, especially in case of sudden changes of motion
    • A62B35/0081Equipment which can travel along the length of a lifeline, e.g. travelers
    • A62B35/0087Arrangements for bypassing lifeline supports without lanyard disconnection

Definitions

  • the present invention relates to a safety device for the protection of persons from falling, having the features of the preamble of claim 1.
  • the invention also relates to a stop element for such a safety device.
  • Such a security device is from the DE 10 2005 009 946 B3 basically known and comprises two stop elements in the form of karabiners, which are each releasably attachable to a stationary securing element in the form of a supporting cable and which are each connected via a connecting element with the person to be secured.
  • each stop element has a locking device in the form of an opening mechanism which is adjustable between an unlocking in which the respective stop element on the respective fuse element attachable or detachable, and a locking state in which the respective securing element attached to the stop element not from the respective fuse element non-destructively solvable.
  • the known safety device comprises a coupling device in the form of an electronic Circuit, which is coupled to the locking devices of the two stop elements, in such a way that it locks in the unlocked state of the locking device of a stop element, the locking device of the other stop element in its locked state by means of an electromagnetic actuator.
  • the risk of falling for the persons secured with it can be significantly reduced.
  • the coupling device in the known safety device prevents both stop elements are accidentally removed simultaneously from the respective fuse element, whereby the person would be temporarily unsecured.
  • the present invention is concerned with the problem of providing a safety device of the type mentioned above or for the stop elements used therewith an improved embodiment, which is characterized in particular by a low-cost feasibility with relatively high reliability.
  • the invention is based on the general idea to realize the coupling device purely mechanically and equip at least for one of the locking devices with a locking lever which cooperates with the respective locking device so that it blocks the respective locking device in its locking state in a blocking position.
  • a locking lever pivot axis pivotable locking lever is comparatively inexpensive and robust feasible, whereby a relatively high reliability can be achieved.
  • the associated locking device have a bolt which between a the locking state of the locking device associated locking position and a release state of the locking device associated unlocking position is pivotable.
  • the respective locking device have a safety lever which is pivotable between a locking position blocking the latch in its locking position and a pivoting of the bolt between its locking position and its unlocking enabling position. The risk of accidental Entriegelns the bolt is thereby reduced, since this first the locking lever must be pressed. Accidental simultaneous actuation of both the safety lever and the bolt can be almost eliminated. Such a double fuse increases the securing effect of the securing device.
  • the locking lever according to the invention can now cooperate in its blocking position either with the displaced in its locking position bolt or with the adjusted in its securing position locking lever.
  • the respective locking lever in its blocking position block both the bolt in its locking position and the locking lever in its securing position.
  • the coupling device may comprise a force transmission element via which the two locking devices associated locking lever are coupled together in such a way that a pivoting operation of a locking lever pivots the other locking lever in its locked position.
  • suitable power transmission elements are in particular Bowden cables, in each of which the pull cable or the soul is connected to the two locking levers, while the associated pressure shell is supported in the region of the respective locking device.
  • other power transmission elements are conceivable, which operate mechanically, hydraulically or pneumatically.
  • Fig. 1 comprises a securing device 1 according to the invention, which serves to protect a person not shown from falling, two stop elements 2.
  • Each stop element 2 is designed so that it is connected to a fixed fuse element 3 is detachably attachable.
  • Fig. 1 only the stop element 2 shown on the right is struck or attached to the here designed as a rope fuse element 3, while the stop element 2 shown on the left is removed from the fuse element 3.
  • each stop element 2 is in each case connected to a connecting element 4, wherein the respective connecting element 4 can be connected to the respective person to be secured.
  • the connecting element 4 is a cable.
  • the connecting element 4 is formed by a belt.
  • the two connecting elements 4 form a common loop 5, with which they can be attached together to the person to be secured.
  • the two connecting elements 4 thus form here a common connecting component 6.
  • two completely separate connecting elements 4 can be used.
  • the connecting elements 4 and the connecting member 6 via the loop 5 by means of a carabiner or the like can be attached directly to a seat belt of the person to be protected.
  • a fall damper 7 is also provided which may belong to the scope of the safety device 1.
  • the connecting elements 4 and the connecting member 6 are or is attached to the fall damper 7, which in turn can be attached by means of a loop 8 to the respective persons or by means of carabiners on the seat belt.
  • Each stop element 2 has a locking device 9.
  • the respective locking device 9 is adjustable between an unlocking state and a locking state. In the unlocking state, the respective stop element 2 can be attached or detached from the respective securing element 3. In contrast, the respective stop element 2 in the locked state is no longer nondestructive of the respective fuse element 3, to which it is attached, detachable.
  • the safety device 1 presented here also comprises a coupling device 10. This is coupled to the locking devices 9 of the two stop elements 2. This coupling takes place in such a way that the coupling device 10 in the unlocking state of the locking device 9 of the one stop element 2 blocks the locking device 9 of the other stop element 2 in its locking state. This means that when unlocking the one locking device 9 via the coupling device 10 inevitably the other locking device 9 is blocked in its locked state and then can not be unlocked.
  • the coupling device 10 operates purely mechanically, in particular hydraulically or pneumatically.
  • stop elements 2 shown are designed as rollers, each having two rollers 11 arranged one behind the other, with which the respective stop element 2 can roll on the securing element 3 formed as a rope.
  • the respective stop element 2 also designed as a roller, which, however, is equipped only with a single roller 11.
  • the respective stop element 2 is designed as a snap hook.
  • Fig. 2 to 14 refers to the in Fig. 1
  • the structure of a single stop element 2 is explained in more detail. It is clear that in principle both stop elements 2 of the safety device can be configured identical, but need not.
  • the respective stop element 2 has a housing 12, which is essentially made of sheet metal parts. Visible are two side walls 13, between which a cover 14 is arranged.
  • the roller 11 is rotatably mounted, in particular by means of a ball bearing.
  • this upper area there is also a receptacle 15 for receiving the respective securing element 3.
  • the receptacle 15 is equipped with an insertion opening 16.
  • the housing 12 is configured by the receptacle 15 and the insertion opening 16 like a hook.
  • the receptacle 15 then forms a support, so that the respective stop element 2 a total again a hook, in particular a snap hook forms.
  • the connecting element 4 is fixed.
  • the connecting element 4 consists of two separate straps 17, which are fastened independently of one another on each of the side cheeks 13. Below the housing 12, the two straps 17 are sewn together, whereby they form a tube 18.
  • the coupling device 10 comprises a force transmission element 19, which leads from the locking device 9 of the one stop element 2 to the locking device 9 of the other stop element 2.
  • This power transmission element 19 is laid here within the tube 18, whereby it is sufficiently protected against damage during normal use of the safety device 1.
  • the force transmission element 19 is preferably a Bowden cable, which consists in the usual way of a pressure-stable sleeve 20 and a guided therein tensile stable cable 21, which may also be referred to as the soul 21.
  • Fig. 6 to 9 and in particular according to the 10 to 14 comprises the coupling device 10 for the locking device 9 of the respective stop element 2, a locking lever 22.
  • This locking lever 22 is a locking lever pivot axis 23 which in the 10 to 14 is perpendicular to the plane of the drawing, pivotally mounted on the housing 12.
  • the locking lever 22 is pivotable into a locking position, in which it blocks the respective locking device 9 in its locked state.
  • the cable 21 is fixed to the respective locking lever 22.
  • the sleeve 20 is supported on the housing 12.
  • the locking device 9 here has a latch 24 which is pivotable about a latch pivot axis 25 which in the 10 to 14 perpendicular to the plane of the drawing.
  • the latch 24 is pivotable between a latching state of the locking device 9 associated locking position and a release state of the locking device 9 associated unlocking position.
  • Fig. 6 10 and 11 is the latch 24 in its locked position while in Fig. 12 is in its unlocked position.
  • the locking device 9 here comprises a safety lever 26 which is pivotable about a safety lever pivot axis 27, which in the representations of 10 to 14 perpendicular to the plane of the drawing.
  • the safety lever 26 is between a securing position, in which he blocked the latch 24 in its locking position, and a Entommeswolf or release position pivotally, in which it allows pivoting of the bolt 24 between the locking position and its unlocked position.
  • a control bolt 39 is here exemplarily on the latch 24 is formed, which cooperates with a safety lever 26 formed on the control cam 40.
  • the locking lever 22 now interacts with the securing lever 26. This means that the locking lever 22 blocks the locking lever 26 in its locking position in its locking position. As is locked in the locking position of the safety lever 26 by the locking lever 26 of the latch 24 in its locking position, the associated locking device 9 is in its locked state and can not be removed from the fuse element 3.
  • the power transmission element 19 couples the two locking levers 22 of the two locking devices 9 together so that a pivoting operation of a locking lever 22 pivots the other locking lever 22 in its locking position.
  • the securing lever 26 is provided for actuating the blocking lever 22. Accordingly, here the locking lever 26 cooperates in a suitable manner with the associated locking lever 22. A pivoting of the safety lever 26 in its armed position thus leads to a pivoting operation of the locking lever 22 which pivots the coupled via the power transmission element 19 other locking lever 22 in its locked position.
  • a driving coupling between the latch 24 and the locking lever 22 may be provided.
  • the variant proposed here in which already the actuation of the safety lever 26, the locking lever 22 is actuated.
  • Fig. 13 and 14 illustrate the different pivoting operations of the locking lever 22.
  • the respective locking lever 22 assumes its rest position when both locking device 9 each have their locking state.
  • the safety lever 26 is pivoted into its release position.
  • the safety lever 26 has a control pin 29, which cooperates with a locking lever 22 formed on the control cam 30.
  • the control link 30 and the control pin 29 are coordinated so that the locking lever 22 is pivoted by the pivoting of the safety lever 26 in its release position so that it introduces a tensile force in the power transmission element 19.
  • the pivoting movement is counterclockwise in a direction of rotation 31, which is indicated by an arrow.
  • This rotational movement of the locking lever 22 may be supported by a compression spring 32.
  • the introduced by means of the pivot-operated locking lever 22 in the power transmission element 19 tensile force is indicated here by an arrow oriented upward and designated 33.
  • Fig. 14 shows virtually the other end of the power transmission element 19, which transmits the pulling force 33 to the locking lever 22 of the other locking device 9. Accordingly, this tensile force is 33 in Fig. 14 oriented downwards. As a result, the locking lever 22 pivots in the opposite direction of rotation, which is symbolized here by an arrow and is designated 34. This other direction of rotation 34 is oriented here in a clockwise direction. If the securing lever 26 assumes its securing position, the control bolt 29 and the control contour 30 also act together here. The control contour 30 is in this case moved in the adjustment of the control pin 29, whereby this on the control contour 30 as on abuts a stop.
  • the respective locking device 9 also includes a trigger lever 35 which is mounted pivotally adjustable about a trigger lever pivot axis 36 on the housing 12, in the Fig. 6 and 10 to 12 is perpendicular to the drawing plane.
  • Said release lever 35 is pivotable between an active position and a passive position. In the active position, the in Fig. 12 is reproduced, the release lever 35 blocks the latch 24 in its unlocked position.
  • a control bolt 37 formed on the latch 24 cooperates with a control cam 38 formed on the release lever 35.
  • the latch 24 on the above-mentioned further control pin 39, which cooperates with the locking lever 26 formed on the other control link 40.
  • control pin 39 Blocks the safety lever 26 in its unlocked position in its unlocked position.
  • the pivoted to its active position release lever 35 blocked directly the latch 24 in its unlocked position and indirectly via the unlocked latch 24, the safety lever 26 in its armed position. This condition is in Fig. 12 played.
  • the release lever 35 is positioned in its active position 35 so that it is inevitably transferred by the attachment of the respective stop element 2 on the respective fuse element 3 in its passive position.
  • the trigger lever 35 protrudes in accordance Fig. 12 in its active position far into the insertion opening 16 that the fuse element 3 when inserting the trigger lever 35 is forcibly actuated and thus pivots out of its active position to reach the receptacle 15 can.
  • the securing element 3 must therefore displace the release lever 35 in order to be able to pass through the insertion opening 16 for receiving 15.
  • This construction has the consequence that with the attachment of the stop element 2 on the fuse element 3 inevitably the latch 24 is transferred to its locking position, while at the same time the locking lever 26 is transferred to its securing position. As a result, an effective personal safety can be ensured immediately after the attachment of the stop element 2 on the fuse element 3.
  • the release lever 35 is biased by means of a compression spring drive 41 in its respective end position, ie either in the active position or in the passive position.
  • Said compression spring drive 41 has an over-center position both for the active position and for the passive position.
  • the compression spring drive 41 is supported on the one hand at a designated bearing point on the locking lever 26.
  • the compression spring drive 41 is supported at a designated bearing point 43 on the release lever 35.
  • the compression spring drive 41 could also have its bearing point 42 on the housing 12 instead of the safety lever 26.
  • the latch 24 is designed as a directly manually operable latch 24 which can be actuated, for example by means of index and middle finger.
  • the locking lever 26 configured here as a directly manually operable locking lever 26 which is operable, for example, with a thumb.
  • Safety lever 26 and latch 24 are arranged here on opposite sides of the respective stop element 2, whereby a one-hand operation is possible.
  • Fig. 10 If the locking state of the locking device 9 is present.
  • the latch 24 has its locking position. Recognizable closes while the latch 24 in its locking position, the insertion opening 16, so that it is not possible to remove the stop element 2 non-destructive of the fuse element 3.
  • the safety lever 26 assumes its securing position.
  • the trigger lever 35 is in its passive position.
  • Of the Lock lever 22 is in its rest position.
  • the securing element 3 is located in the receptacle 15. In particular, the roller 11 rests on the securing element 3.
  • the safety lever 26 For unlocking the user operates according to Fig. 11 First, the safety lever 26 to pivot this in the armed position. Inevitably, the locking lever 22 is actuated, whereby this pivots in the locked position. Then the user operates according to Fig. 12 the latch 24 and pivots this in the unlocked position. In this pivoting operation, the release lever 35 is necessarily adjusted with, since the latch 24 is provided here for driving the release lever 35.
  • the trigger lever 35 in this case pivots through the receptacle 15 so that it drives the securing element 3 arranged therein out of the receptacle 15. As a result, the release lever 35 supports the removal of the stop element 2 from the securing element 3.
  • the trigger lever 35 which automatically snaps after overcoming the dead center position in its passive position.
  • the latch 24 is necessarily driven in its locking position.
  • this also the locking lever 26 is released again, causing it to pivot in the securing position.
  • the safety lever 26 may be spring loaded.
  • the safety lever 26 is driven by the compression spring drive 41.

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  • Health & Medical Sciences (AREA)
  • General Health & Medical Sciences (AREA)
  • Pulmonology (AREA)
  • Physical Education & Sports Medicine (AREA)
  • Business, Economics & Management (AREA)
  • Emergency Management (AREA)
  • Lock And Its Accessories (AREA)
  • Component Parts Of Construction Machinery (AREA)

Claims (16)

  1. Système de protection anti-chute pour des personnes,
    - comprenant deux éléments de butée (2), qui peuvent être installés de manière amovible respectivement au niveau d'un élément de protection (3) stationnaire et qui peuvent être reliés à la personne à protéger respectivement par l'intermédiaire d'un élément de liaison (4),
    - dans lequel chaque élément de butée (2) présente un système à verrou (9), qui peut être déplacé entre un état de déverrouillage, dans lequel l'élément de butée (2) respectif peut être installé au niveau de l'élément de protection (3) respectif ou en être détaché, et un état de verrouillage, dans lequel l'élément de butée (2) respectif installé au niveau de l'élément de protection (3) respectif ne peut être détaché sans dégradation de l'élément de protection (3) respectif,
    - dans lequel un système de couplage (10) est prévu, lequel est couplé aux systèmes à verrou (9) des deux éléments de butée (2) de telle manière qu'il bloque, dans l'état de déverrouillage du système à verrou (9) de l'un des éléments de butée (2), le système à verrou (9) de l'autre élément de butée (2) dans son état de verrouillage,
    caractérisé en ce
    - que le système de couplage (10) fonctionne de manière purement mécanique et présente, pour chaque système à verrou (9), respectivement un levier de fermeture (22) pouvant pivoter autour d'un axe de pivotement de levier de fermeture (23), lequel peut pivoter dans une position de fermeture afin de bloquer le système à verrou (9) respectif dans son état de verrouillage.
  2. Système de protection selon la revendication 1,
    caractérisé en ce
    que dans une situation de départ, les systèmes à verrou (9) des deux éléments de butée (2) sont déplacés respectivement dans leur état de verrouillage.
  3. Système de protection selon la revendication 2,
    caractérisé en ce
    que dans la situation de départ, les leviers de fermeture (22) des deux systèmes à verrou (9) ne sont pas pivotés dans leur position de fermeture de sorte qu'ils ne bloquent pas les systèmes à verrou (9).
  4. Système de protection selon l'une quelconque des revendications 1 à 3, caractérisé en ce
    que le système à verrou (9) respectif présente un verrou (24) pouvant pivoter entre une position de verrouillage associée à l'état de verrouillage du système à verrou (9) et une position de déverrouillage associée à l'état de déverrouillage du système à verrou (9).
  5. Système de protection selon la revendication 4,
    caractérisé en ce
    que le système à verrou (9) respectif présente un levier de protection (26) pouvant pivoter entre une position de protection bloquant le verrou (24) dans sa position de verrouillage et une position de désarmement de protection permettant un pivotement du verrou (24) entre sa position de verrouillage et sa position de déverrouillage.
  6. Système de protection selon la revendication 4 ou 5,
    caractérisé en ce
    que le levier de fermeture (22) respectif dans sa position de fermeture bloque le verrou (24) dans sa position de verrouillage et/ou le levier de protection (26) dans sa position de protection.
  7. Système de protection selon l'une quelconque des revendications 1 à 6, caractérisé en ce
    que le système de couplage (10) présente un élément de transmission de force (19), par l'intermédiaire duquel les leviers de fermeture (22) associés aux deux systèmes à verrou (9) sont couplés entre eux de telle manière qu'un actionnement par pivotement de l'un des leviers de fermeture (22) fait pivoter l'autre levier de fermeture (22) dans sa position de fermeture.
  8. Système de protection selon la revendication 7,
    caractérisé en ce
    - que le verrou (24) et/ou le levier de protection (26) coopèrent, à l'intérieur du système à verrou (9) respectif, avec le levier de fermeture (22) aux fins de son actionnement, et/ou
    - que le levier de fermeture (22) respectif pivote afin de bloquer le système à verrou (9) respectif dans une direction de rotation (34) hors d'une position de repos dans sa position de fermeture, tandis qu'il pivote, lors de son actionnement dans une autre direction de rotation (31) opposée, hors de la position de repos.
  9. Système de protection selon la revendication 7 ou 8,
    caractérisé en ce
    que l'élément de transmission de force (19) est configuré sous la forme d'un élément de transmission de force de traction, en particulier sous la forme d'un câble Bowden.
  10. Système de protection au moins selon la revendication 4 ou 5, caractérisé en ce
    que le système à verrou (9) respectif présente un levier de déclenchement (35) pouvant pivoter entre une position active et une position passive, lequel bloque, dans sa position active, le verrou (24) dans sa position de déverrouillage et/ou le levier de protection (26) dans sa position de désarmement de protection et qui peut être transféré obligatoirement dans sa position passive en installant l'élément de butée (2) respectif au niveau de l'élément de protection (3) respectif, position passive dans laquelle il permet un pivotement du verrou (24) dans sa position de verrouillage et/ou un pivotement du levier de protection (26) dans sa position de protection.
  11. Système de protection selon la revendication 10,
    caractérisé en ce
    - que l'élément de butée (2) respectif présente un logement (15) avec une ouverture d'introduction (16),
    - que lors de l'installation de l'élément de butée (2) au niveau de l'élément de protection (3), l'élément de protection (3) est introduit à travers l'ouverture d'introduction (16) et parvient jusqu'au logement (15).
    - que le levier de déclenchement (35) dans sa position active dépasse dans l'ouverture d'introduction (16) de telle sorte que l'élément de protection (3) actionne obligatoirement lors de l'introduction le levier de déclenchement (35) et le fait pivoter hors de sa position active afin de pouvoir parvenir jusqu'au logement (15).
  12. Système de protection selon la revendication 10 ou 11,
    caractérisé en ce
    que le levier de déclenchement (35) est précontraint dans sa position respective par un entraînement à ressort de pression (41), qui présente, aussi bien dans la position active que dans la position passive, une position de point mort, de sorte qu'il pivote de manière autonome dans son autre position respective en particulier en surmontant la position de point mort à l'encontre de la force de rappel de l'entraînement à ressort de pression (41).
  13. Système de protection selon l'une quelconque des revendications 10 à 12, caractérisé en ce
    que le levier de déclenchement (35) pivote, lors du pivotement de sa position passive dans sa position active, à travers le logement (15) de telle sorte qu'il entraîne, ce faisant, un élément de protection (3), disposé éventuellement dans le logement (15), hors du logement (15).
  14. Système de protection au moins selon la revendication 4,
    caractérisé en ce
    que le verrou (24) respectif ferme, dans sa position de verrouillage, une ouverture d'introduction (16), par laquelle l'élément de protection (3) doit être sorti quand l'élément de butée (2) respectif doit être retiré de l'élément de protection (3).
  15. Système de protection au moins selon la revendication 4 ou 5, caractérisé en ce
    - que le verrou (24) est configuré sous la forme d'un verrou (24) pouvant être actionné directement manuellement, et/ou
    - que le levier de protection (26) est configuré sous la forme d'un levier de protection (26) pouvant être actionné directement manuellement, et/ou
    - que le levier de protection (26) et le verrou (24) sont disposés au niveau de côtés se faisant face de l'élément de butée (2).
  16. Système de protection selon l'une quelconque des revendications 1 à 15, caractérisé en ce
    que l'élément de butée (2) respectif présente seulement un unique galet (11).
EP07821858.3A 2006-10-27 2007-10-25 Dispositif de sécurisation Active EP2081652B1 (fr)

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE102006051426 2006-10-27
DE102007043422 2007-09-12
PCT/EP2007/061495 WO2008049899A1 (fr) 2006-10-27 2007-10-25 Dispositif de sécurisation

Publications (2)

Publication Number Publication Date
EP2081652A1 EP2081652A1 (fr) 2009-07-29
EP2081652B1 true EP2081652B1 (fr) 2016-12-14

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EP07821858.3A Active EP2081652B1 (fr) 2006-10-27 2007-10-25 Dispositif de sécurisation

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US (1) US8657068B2 (fr)
EP (1) EP2081652B1 (fr)
DE (1) DE202007019498U1 (fr)
WO (1) WO2008049899A1 (fr)

Families Citing this family (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102008033431B4 (de) 2008-07-16 2010-03-04 Faszinatour Touristik - Training - Event Gmbh Anschlagelement für eine Sicherungseinrichtung
IT1397742B1 (it) * 2010-01-20 2013-01-24 4Geco S R L Sistema di sicurezza a due moschettoni da agganciare ciascuno ad un elemento fisso di ancoraggio per impieghi alpinistici, parchi avventura, per lavori relativi a strutture civili o lavori in fune in genere
FR2967076B1 (fr) * 2010-11-08 2012-11-30 Thierry Jean Alain Cornil Dehondt Dispositif d'arrimage de securite et ensemble d'arrimage pourvu d'un tel dispositif
FR2972361B1 (fr) * 2011-03-09 2013-07-05 Soream Mousqueton de securite
JP2014520708A (ja) * 2011-07-08 2014-08-25 カールトン ライフ サポート システムズ インコーポレーテッド 二重解除機構を備えた拘束システム
FR2995216B1 (fr) 2012-09-12 2015-05-01 Soream Longe de securite
FR3063017B1 (fr) * 2017-02-20 2021-07-16 Thierry Dehondt Systeme d'arrimage d'une personne en hauteur.

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FR2694044A1 (fr) * 1992-07-27 1994-01-28 Fameca Sa Dispositif de sécurité pour usager destiné à être utilisé sur une échelle.
EP2397191A1 (fr) * 2006-10-23 2011-12-21 Philipp Strasser Kit autobloquant et système avec emplacements de sécurité

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WO2008049899A1 (fr) 2008-05-02
US8657068B2 (en) 2014-02-25
EP2081652A1 (fr) 2009-07-29
DE202007019498U1 (de) 2013-01-11
US20090200107A1 (en) 2009-08-13

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