EP3394367B1 - Teleskopische einheit zur lagerung eines abdeckelements in einem lagerraum - Google Patents
Teleskopische einheit zur lagerung eines abdeckelements in einem lagerraum Download PDFInfo
- Publication number
- EP3394367B1 EP3394367B1 EP16826408.3A EP16826408A EP3394367B1 EP 3394367 B1 EP3394367 B1 EP 3394367B1 EP 16826408 A EP16826408 A EP 16826408A EP 3394367 B1 EP3394367 B1 EP 3394367B1
- Authority
- EP
- European Patent Office
- Prior art keywords
- stowing
- telescopic equipment
- chamber
- telescopic
- installation
- 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.)
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Classifications
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04H—BUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
- E04H4/00—Swimming or splash baths or pools
- E04H4/06—Safety devices; Coverings for baths
- E04H4/08—Coverings consisting of rigid elements, e.g. coverings composed of separate or connected elements
- E04H4/082—Coverings consisting of rigid elements, e.g. coverings composed of separate or connected elements composed of flexibly or hingedly-connected slat-like elements, which may or may not be wound-up on a fixed axis
-
- E—FIXED CONSTRUCTIONS
- E04—BUILDING
- E04H—BUILDINGS OR LIKE STRUCTURES FOR PARTICULAR PURPOSES; SWIMMING OR SPLASH BATHS OR POOLS; MASTS; FENCING; TENTS OR CANOPIES, IN GENERAL
- E04H5/00—Buildings or groups of buildings for industrial or agricultural purposes
- E04H5/02—Buildings or groups of buildings for industrial purposes, e.g. for power-plants or factories
- E04H5/06—Pits or building structures for inspection or services
Definitions
- the present invention relates to the technical field of covering and uncovering of a surface in the general sense using a covering element.
- the object of the invention finds application in all fields where a surface delimiting a two or three-dimensional space must be covered by a covering or protection element of a rollable or stackable nature such as, for example, a tarpaulin, a curtain or a shutter with stackable slats or rigid panels.
- a covering or protection element of a rollable or stackable nature such as, for example, a tarpaulin, a curtain or a shutter with stackable slats or rigid panels.
- the object of the invention finds applications to make it possible to cover, for example, a swimming pool or a surface delimiting the volume of a vehicle, of a container or of a room in particular.
- the patent EP 0 634 981 describes a device for covering and uncovering a surface using a covering element moved with the aid of a deployment / storage system comprising a drive mechanism in translation of at least one or more rigid chains in horizontal thrust.
- One end of the chain or chains is connected to a head beam to which is fixed one end of the cover element, the other end of which is fixed.
- the deployment / storage system also includes carts connected to the cover element and providing a temporary connection between the chain and the cover element. During their movements, a system acts on the carriages to secure them to the chain during deployment and to separate them from the chain when the cover element is stored. The chain is thus stored independently of the cover element and a complete retraction of the device relative to the surface is obtained.
- such a device for covering and uncovering a surface extends in the stored position, mainly inside a fitted pit. at one end of the surface to be covered. Overhanging the pit is a protective casing on the front of which is fitted a passage window for the head beam of the roofing element.
- a storage installation inside a pit a device for covering and uncovering a surface using a covering element made up of panels. rigid.
- Such a storage installation comprises a telescopic crew guided in vertical movement inside the pit.
- This telescopic assembly supports the system which makes it possible to store the panels in a superimposed position and to deploy them horizontally one after the other.
- This telescopic crew which is provided with a closing roof of the pit, is movable to occupy on the one hand, an extended position in which the roof delimits above the pit, a passage window for the element of cover with a view to covering and uncovering the surface and, on the other hand, a retracted position in which the roof extends at the level of the peripheral range of the surface to be covered.
- the telescopic assembly is moved between its retracted position and its extended position, using a motorized vertical displacement system of the hydraulic jack type.
- a covering element comprising a series of rigid panels interconnected by chains and equipped with rollers.
- This covering element is intended to be stored inside a pit fitted out at one end of the space to be covered.
- This pit is equipped with a guide structure for the track rollers allowing storage of the panels, the chains of which cooperate with the pinions driven in rotation by a motor.
- the pit closure panel protrudes from the peripheral range of the surface to be covered.
- This installation comprises a telescopic crew guided in vertical movement inside a pit, supporting a deployment / storage system and provided with a closing roof of the pit.
- This telescopic unit can be moved to occupy, on the one hand, a retracted position in which the roof extends substantially at the level of the peripheral range of the surface to be covered and, on the other hand, an extended position in which the roof delimits at the- above the pit, a passage window for the cover element in order to cover or uncover the surface.
- This installation also includes a motorized system for vertical displacement of the telescopic assembly between its retracted position and its extended position.
- This motorized system comprises two rigid chains at least in vertical thrust cooperating with a pinion of a geared motor having an axis extending horizontally. Each chain has one end attached to a slide cooperating with a vertical guide system.
- the patent application WO 2012/156622 describes an installation for storing in a housing, a blanking cover formed of panels able to pass from a configuration deployed one beside the other, to a configuration stacked on top of each other and compressing elastically deformable means mounted in the housing.
- the patent application EP 0 462 609 describes a system for moving a cover formed by a series of boxes equipped at their ends with two side chains cooperating with a motorized shaft ensuring the passage of the cover from a deployed configuration to a stored configuration.
- the chains are provided with rollers adapted to cooperate in storage rails arranged in a storage chamber for the cover.
- the present invention according to claim 1 therefore aims to remedy the drawbacks of the prior art by proposing an installation making it possible to store completely inside a chamber, a device for covering and uncovering a surface using a cover element, when the latter occupies its stowed position, such a storage installation being easy to implement and having a reduced cost.
- the object of the invention relates to an installation 1 adapted to store inside a room 2 , a device 3 for covering and uncovering a surface 4 in the general sense, such as a swimming pool, a spa, a playground or a container for example.
- the chamber 2 is arranged along a side edge 4 1 of the surface 4 , near or at a relatively close distance from the side edge 4 1 of the surface 4 .
- the surface 4 to be covered comprises two opposite side edges 4 1 and two opposite longitudinal edges 4 2 , delimited by a peripheral area 5 made of any suitable materials.
- Bedroom 2 is delimited by a buried pit or by a safe made above ground.
- the device 3 comprises a cover element 6 simply shown diagrammatically on Fig. 3 and able to be moved using a deployment / storage system 8 which will be described in more detail in the remainder of the description.
- the cover element 6 is intended to be moved by the system 8 in a direction of deployment f 1 so that it occupies the position of total covering of the surface 4 and in a contrary direction of storage f 2 so that the cover element 6 can be stored inside the chamber 2 so as to uncover the surface 4.
- the cover element 6 can be produced by a flexible tarpaulin or by hinged rigid panels.
- the movement and storage system 8 corresponds to the system described by the patent. EP 0 634 981 .
- the deployment / storage system 8 comprises a translation drive mechanism 10 for at least one and in the example illustrated, two chains 12 having the property of becoming rigid at least in thrust in a horizontal direction.
- Each chain 12 is constituted by a series of links articulated between them around axes 13 and provided with shoulders 14 intended to come to rest against each other as and when the chains 12 come out of the chamber. 2 .
- the shoulders 14 are adapted to allow relative pivoting of the links in a given direction and to prevent such pivoting in the opposite direction.
- the channels 12 are adapted to move on the travel routes is laying on parts of the peripheral flange 5 located along the longitudinal edges 4 2 of the surface 4. These chains 12 are preferably equipped with rolling members to facilitate their translational movements on the peripheral range of the surface 4 .
- the drive mechanism 10 also comprises for each chain 12 , a pinion 15 driven in rotation ( Fig. 4 ).
- the two pinions 15 are interconnected by a connecting shaft 16 driven in rotation by a motor, not shown, the operation of which is controlled to allow the rotation of the pinions 15 in one or the other direction of rotation in order to ensure the movement of the chains 12 according to the deployment direction f 1 or the storage direction f 2 .
- One end of the chains 12 is connected to a head beam 18 to which the cover element 6 is fixed by one of its ends, the opposite end of the cover element 6 being fixed to the interior of bedroom 2 .
- the head beam 18 is therefore able to move between the chamber 2 and the side edge without the chamber 2 .
- the head beam 18 is equipped at each end with a rolling member intended to roll on the travel tracks being established on the parts of the peripheral range 5 located along the longitudinal edges 4 2 of the surface 4 .
- the other ends of the chains which are not connected to the head beam 18 are intended to be recovered by a recovery device arranged from the chamber 2 and of all types known per se.
- the deployment and storage system 8 also comprises a series of carriages 22 providing a temporary connection between the cover element 6 and each chain 12 .
- the covering element 6 is fixed to crossbars or hoops 24 intended to hold the covering element 6 in place above the surface 4 .
- Each hoop 24 is fixed by its ends to two carriages 22 , one of which cooperates with a chain 12 and the other cooperates with the other chain 12 .
- the deployment / storage system 8 also comprises a system 26 acting on the carriages 22 to secure them with the chain 12 during the deployment of the cover element 6 and to separate them from the chain 12 when the storage element is stored. cover 6 . It should be noted that the cover element 6 cooperates during its deployment and storage with a drum 27 carried by the connecting shaft 15 .
- the system 26 behaves as explained in the patent EP 0 634 981 , a finger carried by each carriage 22 and adapted to engage between two articulation pins 13 so as to constitute a temporary connection means between the chain 12 and the cross members 24 .
- the system 26 also comprises for each chain 12 , a rail 29 extending at the level of the chamber 2 and ensuring the separation of the chain 12 from the carriages 22 during the movement of the chain 12 in the direction of storage. During this phase, the carriages 22 which are disconnected from the chain 12 are stored on the rear part of the rail 29 while the chains 12 enter the storage system provided for this purpose.
- the above description relates to a deployment / storage system 8 implementing a flexible tarpaulin 6 driven in movement by means of rigid chains 12 , but it is clear that the storage installation 1 according to the invention can be used. implemented for a different deployment / storage device 8 of which the cover element and / or the movement system are different from those described.
- the storage installation 1 also comprises a telescopic unit 30 guided in vertical movement inside the chamber 2 , using a guide system 31 . It should be understood that the telescopic crew 30 partly supports the deployment / storage system 8 and in particular the connecting shaft 16 and the chain drive sprockets 15 .
- This telescopic crew 30 which is equipped with a roof 33 for closing the chamber 2 , can be moved vertically to occupy, on the one hand, a retracted position in which the roof 33 extends substantially at the level of the peripheral range of the surface 4 ( Fig. 1 ) and on the other hand, an extended position in which the roof 33 defines above the chamber 2 , a passage window 35 for the cover element 6 ( Fig. 2 and 3 ).
- the roof 33 (which is shown partially in the Fig. 1 ) protrudes from the peripheral range 5 of the surface 4 , as shown in Fig. 7 .
- the roof 33 closes the chamber 2 in the continuity of the peripheral range 5 of the surface 4 .
- the closing roof 33 is coated with a material preferably, but not exclusively, identical to that used as the coating of the peripheral range of the surface 4 .
- the roof 33 is in the form of a one-piece horizontal part.
- the roof 33 comprises a front part extending substantially horizontally and a rear part articulated to the front part on the opposite side from that delimiting the passage window 35 .
- the storage installation 1 also comprises a motorized system 50 for vertical displacement of the telescopic assembly 30 between its retracted position and its extended position.
- the motorized system 50 comprises a mechanism 51 for automatically lifting the telescopic assembly 30 , continuously exerting on the telescopic assembly, a lifting force to ensure the movement of this telescopic assembly between its retracted position and its extended position.
- this lifting mechanism 51 constantly exerts a vertical force to lift the telescopic assembly 30 .
- the lifting mechanism 51 comprises at least one and in the example illustrated in Fig. 1 to 6 , two compression springs 52 mounted between the chamber 2 and the telescopic assembly 30 .
- each compression spring 52 is mounted inside a cylinder 53 provided with a bottom 54 mounted integral with the telescopic assembly 30.
- the compression spring 52 is supported, on one side, on the bottom 54 and on its opposite side, on a sole 55 fixed to the upper end of a tube 58 rising vertically inside the chamber 2 .
- Each tube 58 is fixed by any suitable means on the bottom of the chamber 2 .
- Each bottom 54 of cylinder 52 is fixed to a support beam 60 forming part of the telescopic assembly 30 .
- the bottoms 54 of the cylinders 53 are fixed in the end regions of the support beam 60.
- Each compression spring 52 is thus able to occupy, on the one hand, a compressed position ( Fig. 6A ) for which the telescopic assembly 30 occupies a retracted position and on the other hand, a so-called relaxed position ( Fig. 6 ) for which the telescopic assembly 30 occupies its extended position.
- the compression springs 52 are dimensioned so as to be able to lift the telescopic assembly to make it pass from its retracted position to its extended position and to support the load of the telescopic assembly 30. occupying its extended position.
- the lifting mechanism 51 comprises two compression springs 52 .
- the lifting mechanism 51 comprises four compression springs 52 making it possible to lift a roof 33 heavier than that raised in the example illustrated in Fig. 1 to 6 .
- the motorized system 50 comprises a controlled system 61 making it possible to control the lifting mechanism 51 .
- This controlled system 61 makes it possible to control the lifting force applied to the telescopic assembly, by the lifting mechanism. lifting 51 so as to allow the telescopic assembly to be positioned either in its retracted position or in its extended position.
- the controlled system 61 for controlling the lifting mechanism 51 comprises at least one, and in the example illustrated, a motorized winch 63 driving in rotation a drum 64 supported according to a preferred example of embodiment by the support beam 60 .
- the winch 63 thus comprises a motor member 65 , preferably electric, supported by the telescopic assembly and in particular by the support beam 60 .
- the motor member 65 is mounted to cause the rotation of the drum 64 in one and / or the other of these directions of rotation.
- the drum 64 ensures the winding and unwinding of at least one and in the example illustrated, of two slings 66 acting on the telescopic assembly 30 in order to control the lifting force applied by said lifting mechanism 51 .
- the slings 66 are mounted between the telescopic crew 30 and an anchor 67 .
- Each sling 66 thus has one end fixed to the drum 64 while its opposite end is fixed to the anchor 67 which is made of any suitable material and in all places suitable for controlling the lifting force applied by the lifting mechanism 51 .
- Each sling 66 is a rope or chain.
- the two slings 66 are wound near each of the ends of the drum 64 .
- each sling 66 cooperates with at least one deflection pulley 69 making it possible to multiply the force antagonistic to the lifting force exerted by the lifting mechanism 51 .
- the deflection pulleys 69 are fixed to the bottom of the chamber 2 , so that each sling 66 has a first strand extending substantially vertically between the drum and the neighboring deflection pulley and a second strand extending substantially vertically between the return pulley adjacent to the anchor 67 .
- the anchor 67 is located on the support beam 60 while the slings pass around a return pulley while being moved by the winch 63 mounted on the support beam 60 .
- the anchor 67 can be arranged at a wall of the chamber 2 such as for example on a vertical wall delimiting the chamber 2 as in the example illustrated in figure 7 .
- the motorized winch 63 is mounted on the telescopic assembly 30 . It is clear that it can be envisaged to mount the motorized winch 63 inside the chamber 2 while the anchoring 67 of the sling 66 is made on the telescopic assembly 30 and in particular, on the support beam. 60 .
- each sling 66 cooperates with a single return pulley 69 while in the embodiment illustrated in Fig. 7 , each sling 66 is guided by two return pulleys 69 fixed to the bottom of the chamber, being spaced apart to be positioned substantially directly above the drum 64 and the vertical wall of the chamber 2, respectively .
- the operation of the motorized winch 63 is controlled by a control unit not shown but known per se.
- This control unit makes it possible to control the system 61 for controlling the lifting mechanism 51 making it possible to control the operation of the motorized winch 63 in order to automatically switch the telescopic assembly 30 from its retracted position to its extended position, and vice versa.
- this control unit makes it possible to control the rotation of the winch causing the winding or unwinding of the slings 66 around the drum 64 having the effect of adjusting the vertical position of the mobile assembly 30 .
- the winding of the slings 66 around the drum 64 causes the telescopic assembly 30 to be lowered while the unwinding of the slings leads to the lifting of the telescopic assembly 30 .
- the installation comprises a device for detecting the retracted and exit positions of the moving assembly 30 .
- This detection device is connected to the control unit to enable the operation or stopping of the motorized winch 63 to be controlled. when the mobile unit 30 occupies either its retracted position or its exit position.
- a detection device can be produced in any suitable manner such as for example by position sensors.
- the installation comprises at least one system 31 for vertical guidance of the telescopic assembly 30 .
- the installation comprises two systems 31 for vertical guidance of the telescopic assembly 30 , installed at the ends of the support beam 60 .
- Each guide system 71 comprises at least one and in the example illustrated two slides 72 supported by a profile 73 in the shape of a "U" which is fixed to the support beam 60.
- the two slides 72 of a guide system cooperate with a slide 75 fixed to a wall of the chamber 2 .
- the installation according to the invention is simple and inexpensive to implement. Its operation is simplified since it suffices to control the rotation of the winch 63 to control the lifting force permanently exerted by the springs 52 on the mobile assembly 30 .
- the compression springs 52 in the compressed position constitute a progressive reserve of energy, this compression of the springs being ensured by the winding of the slings by the electric winch.
- the stored energy is recovered by the reverse operation aimed at unwinding the slings making it possible to release in a controlled manner the movement of the telescopic crew 30 . It should be noted that the total weight of the telescopic assembly 30 varies depending on the state of winding of the cover element 6 .
- this weight decreases as the energy reserve of the springs decreases so that the dimensioning of the lifting mechanism is limited.
- the installation according to the invention turns out to be very simple to manufacture and to install while having a low cost. Finally, this installation does not include a mechanism using fatty fluids which are always a source of pollution.
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- Engineering & Computer Science (AREA)
- Architecture (AREA)
- Civil Engineering (AREA)
- Structural Engineering (AREA)
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Claims (10)
- Anlage zur Verstauung (1), im Inneren einer Kammer (2), einer Vorrichtung (3) zum Abdecken und Aufdecken einer Oberfläche (4) mithilfe eines Abdeckelements (6), das mithilfe eines Systems zum Ausfahren/Verstauen (8) bewegt wird, wobei die Anlage beinhaltet:- ein teleskopisch bewegliches Organ (30), das zur vertikalen Bewegung innerhalb der Kammer geführt ist, und zumindest zum Teil das System zum Verstauen/Ausfahren (8) trägt und mit einem Dach (33) zum Abschließen der Kammer (2) versehen ist, wobei dieses teleskopisch bewegliche Organ (30) beweglich ist, um einerseits eine verborgene Position einzunehmen, in welcher das Dach (33) sich im Wesentlichen auf der Höhe des umliegenden Bereichs (5) der Oberfläche (4) erstreckt, und andererseits eine ausgerückte Position, in welcher das Dach (33) über der Vertiefung einen Durchgangseinlass (35) für das Abdeckelement (6) zum Zweck des Abdeckens oder Aufdeckens der Oberfläche begrenzt,- ein Motorsystem (50) zur vertikalen Bewegung des teleskopisch beweglichen Organs (30) zwischen seiner verborgenen Position und seiner ausgerückten Position,wobei das Motorsystem (50) beinhaltet:- einen Mechanismus (51) zum automatischen Anheben des teleskopisch beweglichen Organs (30), der permanent auf das teleskopisch bewegliche Organ eine Hubkraft ausübt, um dessen Bewegung zwischen seiner verborgenen Position und seiner ausgerückten Position sicherzustellen, wobei die Anlage zur Verstauung (1) dadurch gekennzeichnet ist, dass das Motorsystem (50) ferner beinhaltet:- ein gesteuertes System (61) zur Steuerung des Mechanismus zum Anheben (51), das zumindest eine Motorwinde (63) beinhaltet, die eine Trommel (64) zur Drehung antreibt, die das Aufrollen und das Abrollen zumindest eines Riemens (66) sicherstellt, der auf das teleskopisch bewegliche Organ (30) wirkt, um die Hubkraft, die von dem Mechanismus zum Anheben ausgeübt wird, zu steuern,- und eine Steuereinheit des Systems (61) zur Steuerung des Mechanismus zum Anheben (51), die es erlaubt, die Funktion der Motorwinde (63) anzusteuern, um das teleskopisch bewegliche Organ (30) automatisch aus seiner verborgenen Position in seine ausgerückte Position und umgekehrt zu überführen.
- Anlage zur Verstauung nach Anspruch 1, dadurch gekennzeichnet, dass die Aufrolltrommel (64) der Winde (63) fest an dem teleskopisch beweglichen Organ montiert ist, wobei diese Trommel durch ein Motororgan (65) zur Drehung angetrieben wird, das von dem teleskopisch beweglichen Organ getragen wird.
- Anlage zur Verstauung nach einem der Ansprüche 1 oder 2, dadurch gekennzeichnet, dass die Trommel (64) das Aufrollen von zwei Riemen (66) sicherstellt, die jeweils in der Nähe jedes der Enden der Trommel laufen.
- Anlage zur Verstauung nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass jeder Riemen (66) mit zumindest einer Umlenkrolle (69) zusammenwirkt, um eine Untersetzung der Gegenkraft zu der Hubkraft, die von dem Mechanismus zum Anheben (51) ausgeübt wird, vorzusehen.
- Anlage zur Verstauung nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass der Mechanismus zum Anheben (51) zumindest eine Druckfeder (52) beinhaltet, die zwischen der Kammer (2) und dem teleskopisch beweglichen Organ (30) montiert ist.
- Anlage zur Verstauung nach Anspruch 5, dadurch gekennzeichnet, dass der Mechanismus zum Anheben (51) zumindest zwei Druckfedern (52) beinhaltet, die zwischen der Kammer (2) und einem Träger (60) des teleskopisch beweglichen Organs montiert sind.
- Anlage zur Verstauung nach Anspruch 6, dadurch gekennzeichnet, dass der Träger (60) des teleskopisch beweglichen Organs mit einem Dach (33) zum Abschließen der Kammer (2) versehen ist.
- Anlage zur Verstauung nach einem der Ansprüche 1 bis 7, dadurch gekennzeichnet, dass sie zumindest ein System (31) zur vertikalen Führung des teleskopisch beweglichen Organs (30) beinhaltet, das zumindest ein Gleitstück (72) beinhaltet, das von dem teleskopisch beweglichen Organ getragen wird und mit einer Gleitschiene (75) zusammenwirkt, die auf der Kammer (2) fixiert ist.
- Anlage zur Verstauung nach einem der Ansprüche 1 bis 8, dadurch gekennzeichnet, dass sie eine Vorrichtung zur Erfassung zumindest der verborgenen und der ausgerückten Position des teleskopisch beweglichen Organs (30) beinhaltet, wobei diese Vorrichtung zur Erfassung mit der Steuereinheit verbunden ist, um zu erlauben, die Funktion oder den Stopp der Motorwinde anzusteuern.
- Anlage zur Verstauung nach einem der Ansprüche 1 bis 9, dadurch gekennzeichnet, dass das teleskopisch bewegliche Organ (30) mit einem von:• einem Mechanismus (10) für den Antrieb zur Verschiebung für zumindest eine zumindest unter horizontalem Schub starre Kette (12), die ein mit einem Kopfträger (18) verbundenes Ende beinhaltet, an welchem das Abdeckelement (6) befestigt ist,• Schlitten (22), die eine temporäre Verbindung zwischen der Horizontal-Schubkette und dem Abdeckelement (6) sicherstellen, wobei ein System auf die Schlitten (22) wirkt, um diese mit der Kette bei einem Ausfahren zu verbinden und beim Verstauen von der Kette zu lösen,• einer Führung (20) zum Wiedereinholen der Horizontal-Schubkette als System zum Verstauen/Ausfahren (8) versehen ist.
Applications Claiming Priority (2)
Application Number | Priority Date | Filing Date | Title |
---|---|---|---|
FR1562977A FR3045694B1 (fr) | 2015-12-21 | 2015-12-21 | Installation telescospique de rangement a l'interieur d'une chambre de stockage d'un element de couverture |
PCT/FR2016/053571 WO2017109380A1 (fr) | 2015-12-21 | 2016-12-20 | Installation télescospique de rangement a l'intérieur d'une chambre de stockage d'un élément de couverture |
Publications (2)
Publication Number | Publication Date |
---|---|
EP3394367A1 EP3394367A1 (de) | 2018-10-31 |
EP3394367B1 true EP3394367B1 (de) | 2020-09-09 |
Family
ID=55646770
Family Applications (1)
Application Number | Title | Priority Date | Filing Date |
---|---|---|---|
EP16826408.3A Active EP3394367B1 (de) | 2015-12-21 | 2016-12-20 | Teleskopische einheit zur lagerung eines abdeckelements in einem lagerraum |
Country Status (3)
Country | Link |
---|---|
EP (1) | EP3394367B1 (de) |
FR (1) | FR3045694B1 (de) |
WO (1) | WO2017109380A1 (de) |
Families Citing this family (1)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
BE1027125B1 (nl) * | 2019-03-18 | 2020-10-19 | Technics & Applications Afgekort T&A Bvpa | Opbergsysteem voor het opbergen van een oprolbaar afdekscherm voor een bad en bad daarmee uitgerust |
Family Cites Families (4)
Publication number | Priority date | Publication date | Assignee | Title |
---|---|---|---|---|
DE4019779C2 (de) * | 1990-06-21 | 1997-06-19 | Wilfried Werner | Abdeckung für längliche Montagegruben |
FR2689466B1 (fr) * | 1992-04-01 | 1994-07-01 | Mahaut Michel | Dispositif escamotable de bachage et de debachage d'un espace bi ou tridimensionnel. |
FR2975420B1 (fr) * | 2011-05-17 | 2014-07-18 | R Pi | Dispositif d'obturation au moins partielle d'une cavite ouverte par le dessus |
FR2997976B1 (fr) * | 2012-11-12 | 2015-05-15 | Ec2M | Installation telescopique de rangement a l'interieur d'une fosse d'un element de couverture |
-
2015
- 2015-12-21 FR FR1562977A patent/FR3045694B1/fr not_active Expired - Fee Related
-
2016
- 2016-12-20 EP EP16826408.3A patent/EP3394367B1/de active Active
- 2016-12-20 WO PCT/FR2016/053571 patent/WO2017109380A1/fr active Application Filing
Non-Patent Citations (1)
Title |
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None * |
Also Published As
Publication number | Publication date |
---|---|
FR3045694B1 (fr) | 2018-01-26 |
WO2017109380A1 (fr) | 2017-06-29 |
FR3045694A1 (fr) | 2017-06-23 |
EP3394367A1 (de) | 2018-10-31 |
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