EP3571368B1 - Schiebefenster für ein gebäude, heimautomatisierungsanlage mit solch einem schiebefenster und verfahren zur steuerung des betriebs einer motorisierten antriebsvorrichtung für solch ein fenster - Google Patents

Schiebefenster für ein gebäude, heimautomatisierungsanlage mit solch einem schiebefenster und verfahren zur steuerung des betriebs einer motorisierten antriebsvorrichtung für solch ein fenster Download PDF

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Publication number
EP3571368B1
EP3571368B1 EP17825814.1A EP17825814A EP3571368B1 EP 3571368 B1 EP3571368 B1 EP 3571368B1 EP 17825814 A EP17825814 A EP 17825814A EP 3571368 B1 EP3571368 B1 EP 3571368B1
Authority
EP
European Patent Office
Prior art keywords
drive
window
control device
flexible element
electromechanical actuator
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
EP17825814.1A
Other languages
English (en)
French (fr)
Other versions
EP3571368A1 (de
Inventor
Pierre-Emmanuel Cavarec
Marc Brechemier
David SERVE
Christophe JACQUIN
Stéphane BEAU
Julien CRON
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.)
Groupe Liebot SAS
Somfy Activites SA
Original Assignee
Groupe Liebot SAS
Somfy Activites SA
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 Groupe Liebot SAS, Somfy Activites SA filed Critical Groupe Liebot SAS
Priority to PL17825814T priority Critical patent/PL3571368T3/pl
Publication of EP3571368A1 publication Critical patent/EP3571368A1/de
Application granted granted Critical
Publication of EP3571368B1 publication Critical patent/EP3571368B1/de
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05FDEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05F15/00Power-operated mechanisms for wings
    • E05F15/60Power-operated mechanisms for wings using electrical actuators
    • E05F15/603Power-operated mechanisms for wings using electrical actuators using rotary electromotors
    • E05F15/632Power-operated mechanisms for wings using electrical actuators using rotary electromotors for horizontally-sliding wings
    • E05F15/643Power-operated mechanisms for wings using electrical actuators using rotary electromotors for horizontally-sliding wings operated by flexible elongated pulling elements, e.g. belts, chains or cables
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D15/00Suspension arrangements for wings
    • E05D15/56Suspension arrangements for wings with successive different movements
    • E05D15/565Suspension arrangements for wings with successive different movements for raising wings before sliding
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2201/00Constructional elements; Accessories therefor
    • E05Y2201/20Brakes; Disengaging means; Holders; Stops; Valves; Accessories therefor
    • E05Y2201/218Holders
    • E05Y2201/22Locks
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2201/00Constructional elements; Accessories therefor
    • E05Y2201/20Brakes; Disengaging means; Holders; Stops; Valves; Accessories therefor
    • E05Y2201/23Actuation thereof
    • E05Y2201/232Actuation thereof by automatically acting means
    • E05Y2201/24Actuation thereof by automatically acting means using lost motion
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2201/00Constructional elements; Accessories therefor
    • E05Y2201/40Motors; Magnets; Springs; Weights; Accessories therefor
    • E05Y2201/43Motors
    • E05Y2201/434Electromotors; Details thereof
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2201/00Constructional elements; Accessories therefor
    • E05Y2201/60Suspension or transmission members; Accessories therefor
    • E05Y2201/604Transmission members
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2201/00Constructional elements; Accessories therefor
    • E05Y2201/60Suspension or transmission members; Accessories therefor
    • E05Y2201/606Accessories therefor
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2201/00Constructional elements; Accessories therefor
    • E05Y2201/60Suspension or transmission members; Accessories therefor
    • E05Y2201/622Suspension or transmission members elements
    • E05Y2201/644Flexible elongated pulling elements
    • E05Y2201/652Belts
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2201/00Constructional elements; Accessories therefor
    • E05Y2201/60Suspension or transmission members; Accessories therefor
    • E05Y2201/622Suspension or transmission members elements
    • E05Y2201/686Rods, links
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2600/00Mounting or coupling arrangements for elements provided for in this subclass
    • E05Y2600/40Mounting location; Visibility of the elements
    • E05Y2600/41Concealed
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2600/00Mounting or coupling arrangements for elements provided for in this subclass
    • E05Y2600/40Mounting location; Visibility of the elements
    • E05Y2600/45Mounting location; Visibility of the elements in or on the fixed frame
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2800/00Details, accessories and auxiliary operations not otherwise provided for
    • E05Y2800/40Physical or chemical protection
    • E05Y2800/424Physical or chemical protection against unintended use, e.g. protection against vandalism or sabotage
    • E05Y2800/426Physical or chemical protection against unintended use, e.g. protection against vandalism or sabotage against unauthorised use, e.g. keys
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/10Application of doors, windows, wings or fittings thereof for buildings or parts thereof
    • E05Y2900/13Type of wing
    • E05Y2900/132Doors
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME ASSOCIATED WITH SUBCLASSES E05D AND E05F, RELATING TO CONSTRUCTION ELEMENTS, ELECTRIC CONTROL, POWER SUPPLY, POWER SIGNAL OR TRANSMISSION, USER INTERFACES, MOUNTING OR COUPLING, DETAILS, ACCESSORIES, AUXILIARY OPERATIONS NOT OTHERWISE PROVIDED FOR, APPLICATION THEREOF
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/10Application of doors, windows, wings or fittings thereof for buildings or parts thereof
    • E05Y2900/13Type of wing
    • E05Y2900/148Windows

Definitions

  • the present invention relates to a sliding window for a building comprising a motorized drive device for moving an opening relative to a fixed frame following a sliding movement.
  • the present invention also relates to a home automation installation comprising such a sliding window.
  • the present invention finally relates to a method of operating a motorized drive device of such a sliding window for a building.
  • the present invention relates to the field of windows comprising a motorized drive device setting an opening leaf in motion relative to a fixed frame in a sliding movement, between at least a first position and at least a second position.
  • a motorized drive device for such a window comprises an electromechanical actuator.
  • the motorized drive device includes an electromechanical actuator, a flexible member, and a drive arm.
  • the electromechanical actuator includes an electric motor.
  • the flexible element is driven in motion by the electromechanical actuator.
  • the flexible element is configured to drive the opening leaf relative to the fixed frame, when the electromechanical actuator is electrically activated.
  • the drive arm is connected, on the one hand, to a lateral upright of a frame of the opening and, on the other hand, to the flexible element.
  • the window also includes a hardware system and a locking control device.
  • the hardware system includes a lock.
  • the lock control device is configured to cooperate with the lock and to be actuated by means of the flexible member, when the electromechanical actuator is electrically activated.
  • the drive arm is movable in rotation about an axis of rotation belonging to a lateral upright of a frame of the opening.
  • This lateral upright of the opening frame is configured to cooperate with the fixed frame in a closed position of the opening relative to the fixed frame.
  • the mechanism formed by the motorized drive device, the fitting system and the locking control device of the sliding window has the drawback of requiring a large clearance to allow the movement, as well as the locking, of the sliding window. opening compared to fixed frame.
  • the cost of obtaining the sliding window is high, due to the number of parts forming such a mechanism and the complexity of industrialization.
  • Such a mechanism also requires adjusting a locking position of the opening relative to the fixed frame, so that this corresponds to the closed position of the opening relative to the fixed frame.
  • the sliding door comprises a fixed frame, an opening, a motorized drive device for sliding the opening relative to the fixed frame.
  • the motorized drive device includes an electromechanical actuator, a flexible member, and a drive arm.
  • the flexible element is configured to drive the opening leaf relative to the fixed frame, when the electromechanical actuator is electrically activated.
  • the drive arm is connected, on the one hand, to the sash and, on the other hand, to the flexible element.
  • the sliding door includes a lock and a locking control device.
  • the lock control device is configured to cooperate with the lock and be actuated by means of the flexible member, when the electromechanical actuator is electrically activated.
  • the drive arm supports the locking control device.
  • the sliding door includes an anti-mishandling system.
  • the object of the present invention is to resolve the aforementioned drawbacks and to provide a sliding window for a building comprising a motorized drive device for moving an opening relative to a fixed frame following a sliding movement, a fitting system and a device. for controlling the locking of the opening with respect to the fixed frame, a home automation system comprising such a sliding window, as well as a method of operating a motorized drive device for such a sliding window for a building, making it possible to simplify the industrialization of the locking control device, to guarantee the tightness in a closed and locked position of the opening with respect to the fixed frame, while minimizing the costs of obtaining the window.
  • the drive arm supports the locking control device.
  • the lock is associated with the drive arm via the locking control device, so as to secure the opening to the motorized drive device.
  • the drive arm is connected to the flexible member through the locking control device.
  • the lock control device includes a lock actuation mechanism configured to rotate a shaft of the lock while driving the flexible member by the electromechanical actuator.
  • the locking control device includes a drive element.
  • the drive element is connected to the flexible element. At least part of the drive element is mounted so as to be able to rotate relative to the drive arm, about an axis of rotation.
  • the drive element is an integral part of the latch actuation mechanism.
  • the hardware system also includes an anti-mishandling system and a cremone bolt.
  • the anti-mishandling system comprises a retractable pin, the retractable pin being configured to be moved between a rest position, in which the gear is blocked, and an activated position, in which the gear is released.
  • the anti-mishandling system is activated when the retractable pin is pushed inside a housing provided in the frame of the opening.
  • the Lock control device is configured to actuate the lock, following activation of the anti-mishandling system and when the electromechanical actuator is electrically activated.
  • the arrangement formed by the motorized drive device, the fitting system and the locking control device of the sliding window makes it possible to simplify the industrialization of the locking control device, to guarantee the tightness in a position. closed and locked of the sash relative to the fixed frame, while minimizing the costs of obtaining the window.
  • such an arrangement of the window allows the locking and unlocking of the first opening relative to the fixed frame by means of the fitting system, without modifying a seal configured to cooperate with the first. opening and the fixed frame, when reaching the closed position of the first opening relative to the fixed frame, while maintaining traditional techniques for installing windows, in particular for adjusting the hardware systems.
  • this arrangement of the window makes it possible to use a fitting system comprising standard elements, in particular the lock having standard characteristics.
  • the lock can be devoid of any particular reinforcement, so as to minimize the costs of obtaining the window and to guarantee the compatibility of the locking control device with existing components for the fitting systems.
  • the lock is associated with the drive arm via the locking control device, so as to secure the opening to the motorized drive device provided with a flexible element.
  • the mechanism for actuating the lock comprises at least one lever arm.
  • the latch actuation mechanism includes an additional flexible element.
  • the latch actuation mechanism includes a gear.
  • the locking control device comprises a transmission element connected to the shaft of the lock.
  • the drive arm is fixed relative to the frame of the opening.
  • the drive arm and the lock of the fitting system are arranged in the upper part of a lateral upright of the frame of the opening, in the assembled configuration of the window with respect to the building. .
  • the drive element comprises a transmission arm.
  • the transmission arm comprises, at one of its ends, a rack.
  • connection of the flexible element to the drive element is implemented by means of a shuttle.
  • the shuttle comprises a pin configured to cooperate with a slot of the transmission arm.
  • the transmission element forms an integral part of the lock actuation mechanism.
  • the transmission element is a toothed wheel.
  • the toothed wheel is configured to be assembled on the latch shaft.
  • the rack of the transmission arm is configured to cooperate with the toothed wheel, in an assembled configuration of the locking control device.
  • the drive element comprises a first part and a second part.
  • the first portion of the drive member includes a first gear segment configured to cooperate with a second gear segment of the second portion of the drive member, in an assembled configuration of the latch controller.
  • the second part of the drive element comprises at least a first guide element configured to cooperate with a second guide element formed at the level of the drive arm.
  • the electromechanical actuator is of the reversible type.
  • the present invention is aimed at a home automation installation comprising a sliding window according to the invention.
  • This home automation installation has characteristics and advantages similar to those described above, in relation to the sliding window according to the invention.
  • the present invention relates, according to a third aspect, to a method of operating a motorized drive device for a sliding window for a building as mentioned above.
  • the sliding window 2 can also be called a sliding bay.
  • the present invention applies to sliding windows and sliding patio doors, whether or not equipped with transparent glazing.
  • the window 2 comprises at least one sash 3a, 3b and a fixed frame 4.
  • the window 2 comprises a first opening 3a and a second opening 3b.
  • the window 2 also comprises a motorized drive device 5 for slidingly moving an opening 3a relative to the fixed frame 4.
  • the motorized drive device 5 is configured to slide only one of the first and second opening elements 3a, 3b relative to the fixed frame 4, in particular the first opening 3a.
  • the second opening 3b is manually movable, in particular by the action of a user exerting a force on a handle 40 of the second opening 3b.
  • the second opening 3b is fixed.
  • the number of openings in the window is not limiting and may be different, in particular equal to three.
  • Each opening 3a, 3b comprises a frame 15.
  • Each opening 3a, 3b can also include at least one window 16 arranged in the frame 15.
  • the number of panes of the opening is not limiting and may be different, in particular equal to two or more.
  • the frame 15 of each opening 3a, 3b comprises an upper cross member 15a, a lower cross member, not shown, and first and second lateral uprights 15c, in the assembled configuration of window 2 relative to the building, as shown in figures 1 and 2 .
  • the first lateral upright 15c of the frame 15 of the first opening 3a is the lateral upright 15c located to the right of the first opening 3a.
  • the second lateral upright 15c of the frame 15 of the first opening 3a is the lateral upright 15c located on the left of the first opening 3a.
  • the first lateral upright 15c of the frame 15 of the first opening 3a is opposed to the second lateral upright 15c of the frame 15 of the first opening 3a.
  • the fixed frame 4 comprises an upper cross member 4a, a lower cross member, not shown, and first and second lateral uprights 4c, in the assembled configuration of the window 2 with respect to the building, as illustrated in figures 1 and 2 .
  • the first side post 4c of the fixed frame 4 is the side post 4c located on the right of the fixed frame 4.
  • the second side post 4c of the fixed frame 4 is the side post 4c located on the left of the fixed frame 4.
  • the first lateral upright 4c of the fixed frame 4 is opposed to the second lateral upright 4c of the fixed frame 4.
  • the upper cross member 4a, the lower cross member and the two lateral uprights 4c of the fixed frame 4 respectively have an inner face and at least one outer face.
  • the inner faces of the upper cross member 4a, of the lower cross member and of the two side uprights 4c of the fixed frame 4 are oriented towards the inside of the window 2 and, in particular, towards an outer edge of the frame 15 of each leaf 3a, 3b.
  • the outer faces of the upper cross member 4a, of the lower cross member and of the two side uprights 4c of the fixed frame 4 are oriented towards the outside of the window 2.
  • the window 2 also comprises a fitting system 20 formed between the fixed frame 4 and each opening 3a, 3b.
  • the fitting system 20 of the sliding window 2 makes it possible to slide each sash 3a, 3b relative to the fixed frame 4 in a sliding direction D, in the horizontal example, in the assembled configuration of the window 2 relative to the building , as shown in figures 1 and 2 .
  • the upper cross member 4a of the fixed frame 4 comprises a sliding rail 11a of the first leaf 3a and a sliding rail, not shown, of the second leaf 3b.
  • the lower cross member of the fixed frame 4 also comprises two rails of sliding, respectively for the first leaf 3a and the second leaf 3b.
  • each of the upper 4a and lower cross members of the fixed frame 4 comprises a first sliding rail 11a or equivalent of the first opening 3a and a second sliding rail or equivalent of the second opening 3b.
  • first and second openings 3a, 3b are configured to move respectively along the first and second sliding rails 11a and the like.
  • first and second sliding rails 11a and the like are arranged parallel to one another.
  • first and second sliding rails 11a and the like are offset with respect to each other according to the thickness E of the fixed frame 4.
  • the window 2 comprises sliding elements, not shown, allowing the movement of each opening 3a, 3b relative to the fixed frame 4.
  • the sliding elements are arranged inside the first and second sliding rails of the lower cross member.
  • the sliding elements comprise rollers arranged under the first and second opening elements 3a, 3b.
  • the casters are configured to roll inside the first and second slide rails of the lower cross member.
  • An opening position by sliding, partial or maximum, of each opening 3a, 3b relative to the fixed frame 4 corresponds to a ventilation position of the building.
  • the motorized drive device 5 makes it possible to automatically move the first leaf 3a by sliding relative to the fixed frame 4, in particular between the maximum opening position by sliding of the first leaf 3a relative to the fixed frame 4 and the closed position of the first sash 3a in relation to the fixed frame 4.
  • the motorized drive device 5 comprises an electromechanical actuator 6.
  • the electromechanical actuator 6 comprises an electric motor 7 and an output shaft 8.
  • the axis of rotation X of the output shaft 8 is parallel to the sliding direction D of the first leaf 3a with respect to the fixed frame 4 and, in this case, of the second leaf 3b with respect to the fixed frame 4 .
  • the electromechanical actuator 6 is arranged on a fixed part relative to the window 2, in particular relative to the fixed frame 4.
  • the electromechanical actuator 6 can also include a gear reduction device, not shown.
  • the electromechanical actuator 6 can also include an end-of-travel and / or obstacle detection device, not shown. This detection device can be mechanical or electronic.
  • the electric motor 7 and, optionally, the gear reduction device are arranged inside a housing 17 of the electromechanical actuator 6.
  • the electromechanical actuator 6 is of the tubular type.
  • the motorized drive device 5 also comprises a flexible element 9.
  • the flexible element 9 is driven in movement by the electromechanical actuator 6.
  • the flexible element 9 is configured to drive the first opening 3a in movement relative to the fixed frame 4, when the electromechanical actuator 6 is electrically activated.
  • the flexible element 9 comprises a first strand 9a and a second strand 9b.
  • the flexible element 9 can be of circular section.
  • the section of the flexible element is not limiting and may be different, in particular square, rectangular or even oval.
  • the flexible element 9 is a cable or a cord.
  • It can be made from a synthetic material, such as for example nylon or polyethylene of very high molar mass.
  • the material of the flexible element is not limiting and may be different. In particular, it can be a steel.
  • the motorized drive device 5 comprises a drive arm 18 illustrated in figures 1 to 3 .
  • the drive arm 18 is, on the one hand, fixed to the first opening 3a and, on the other hand, connected to the flexible element 9.
  • the drive arm 18 is configured to secure the flexible element 9 to the first opening 3a.
  • the drive arm 18 is attached directly to the first opening 3a.
  • the drive arm 18 is fixed to the first opening 3a by means of an intermediate element.
  • the intermediate element is a guide element, in particular a slide, along the sliding direction D.
  • the flexible element 9 is connected to the drive arm 18, whatever either the state of the locking elements of the fitting system 20, that is to say both in the locked state and in the unlocked state of the first leaf 3a with respect to the fixed frame 4.
  • the flexible element 9 is permanently connected to the drive arm 18, in the assembled configuration of the motorized drive device 5 on the window 2.
  • connection between the flexible element 9 and the drive arm 18 is simplified and makes it possible to minimize the costs of obtaining the window 2.
  • the motorized drive device 5 comprises a winding pulley 19 of the flexible element 9.
  • the winding pulley 19 is driven in rotation by the output shaft 8 of the electromechanical actuator 6.
  • a first end of the first strand 9a of the flexible element 9 is connected to a first part of the winding pulley 19.
  • a first end of the second strand 9b of the flexible element 9 is connected to a second part of the pulley d winding 19, as shown in figures 1 and 2 .
  • first end of each of the first and second strands 9a, 9b of the flexible element 9 is hooked respectively to the first part or to the second part of the winding pulley 19 by means of fixing elements, not shown. .
  • each of the first and second strands 9a, 9b of the flexible element 9 is respectively fixed directly to the first part or to the second part of the winding pulley 19.
  • the elements for fixing the end of each of the first and second strands 9a, 9b of the flexible element 9 are elements of the cable clamp type.
  • these fixing elements are screws, in particular of the self-tapping type, screwed into the winding pulley 19, so as to fix the first and second strands 9a, 9b of the flexible element 9 by wedging between the screw head and the winding surface of the flexible element 9 of the winding pulley 19.
  • the direction of winding, respectively of unwinding, of the first strand 9a of the flexible element 9 around the first part of the winding pulley 19 is opposite to the direction of winding, respectively of unwinding, of the second strand 9b of the flexible element 9 around the second part of the winding pulley 19.
  • the first strand 9a of the flexible element 9 wraps around the first part of the winding pulley 19, while the second strand 9b of the flexible element 9 unwinds around the second part of the winding pulley 19.
  • the second sliding direction of the first opening 3a relative to the fixed frame 4 is opposite to the first sliding direction.
  • the direction of sliding of the first leaf 3a relative to the fixed frame 4 is determined as a function of the direction of rotation of the output shaft 8 of the electromechanical actuator 6.
  • the direction of rotation of the drive. Winding pulley 19 is determined by the direction of rotation of the output shaft 8 of the electromechanical actuator 6.
  • the direction of drive in rotation of the first strand 9a and of the second strand 9b of the flexible element 9 around the first and second parts of the winding pulley 19 is a function of the direction of rotation of the output shaft 8. of the electromagnetic actuator 6.
  • the direction of rotation of the winding pulley 19 is identical to the direction of rotation of the output shaft 8 of the electromechanical actuator 6.
  • Control means of the electromechanical actuator 6 allow the movement by sliding of the first leaf 3a relative to the fixed frame 4.
  • These control means comprise at least one electronic control unit 10.
  • the electronic control unit 10 is configured for start the electric motor 7 of the electromechanical actuator 6 and, in particular, allow the supply of electric energy to the electric motor 7.
  • the electronic control unit 10 controls, in particular, the electric motor 7, so as to open or close by sliding the first opening 3a with respect to to the fixed frame 4.
  • the window 2 comprises the electronic control unit 10. More particularly, the electronic control unit 10 is integrated into the motorized drive device 5.
  • the motorized drive device 5 is a sub-assembly pre-assembled before assembly, in the example on the fixed frame 4, which comprises at least the electromechanical actuator 6, the winding pulley 19, the element hose 9 and electronic control unit 10.
  • the motorized drive device 5 is controlled by a control unit.
  • the control unit can be, for example, a local control unit 12.
  • the local control unit 12 can be wired or wirelessly connected to a central control unit 13.
  • the central control unit 13 controls the local control unit 12, as well as other similar local control units. and distributed throughout the building.
  • the electronic control unit 10 also comprises a module for receiving orders, in particular radioelectric orders transmitted by a command transmitter, such as the local control unit 12 or the central control unit 13, these orders being intended to control the motorized drive device 5.
  • the order reception module can also allow the reception of orders transmitted by wired means.
  • the electronic control unit 10, the local control unit 12 and / or the central control unit 13 can be in communication with one or more sensors configured to determine, for example, a temperature, a humidity, a speed of wind, a measurement of an indoor or outdoor air quality parameter or even a presence.
  • the central control unit 13 can also be in communication with a server 14, so as to control the electromechanical actuator 6 according to data made available remotely via a communication network, in particular an Internet network. connectable to server 14.
  • a communication network in particular an Internet network. connectable to server 14.
  • the electronic control unit 10 can be controlled from the local control unit 12.
  • the local control unit 12 is provided with a control keyboard.
  • the control keyboard of the local control unit 12 comprises selection elements and, optionally, display elements.
  • the selection elements can be pushbuttons or sensitive keys
  • the display elements can be light-emitting diodes
  • an LCD display (acronym of the English term “Liquid Crystal Display ”) or TFT (acronym for the English term“ Thin Film Transistor ”).
  • the selection and display elements can also be achieved by means of a touch screen.
  • the local control unit 12 can be a fixed or nomadic control point.
  • a fixed control point corresponds to a control box intended to be fixed on a facade of a building wall, on one face of the frame 15 of the first sash 3a of the window 2 or else on one face of the fixed frame 4 of the window 2.
  • a nomadic control point corresponds to a remote control.
  • the local control unit 12 makes it possible to directly control the electronic control unit 10 according to a selection made by the user.
  • the local control unit 12 allows the user to intervene directly on the electromechanical actuator 6 of the motorized drive device 5 via the electronic control unit 10 associated with this motorized drive device 5 , or to intervene indirectly on the electromechanical actuator 6 of the motorized drive device 5 via the central control unit 13.
  • the motorized drive device 5 in particular the electronic control unit 10, is preferably configured to execute control commands for closing by sliding as well as opening by sliding of the first leaf 3a with respect to the fixed frame. 4, these control orders being able to be issued, in particular, by the local control unit 12 or by the central control unit 13.
  • the electronic control unit 10 is thus able to put into operation the electromechanical actuator 6 of the motorized drive device 5 and, in particular, allow the supply of electrical energy to the electromechanical actuator 6.
  • the electronic control unit 10 is placed inside the casing 17 of the electromechanical actuator 6.
  • the control means of the electromechanical actuator 6 comprise hardware and / or software means.
  • the hardware means can comprise at least one microcontroller.
  • the local control unit 12 comprises a sensor measuring at least one parameter of the environment inside the building and integrated into this unit.
  • the local control unit 12 can communicate with the central control unit 13, and the central control unit 13 can control the electronic control unit 10 associated with the motorized drive device 5 according to data coming from of the sensor measuring the parameter of the environment inside the building.
  • the local control unit 12 can directly control the electronic control unit 10 associated with the motorized drive device 5 as a function of data coming from the sensor measuring the parameter of the environment inside the building.
  • a parameter of the environment inside the building measured by the sensor integrated into the local control unit 12 is the humidity, the temperature, the carbon dioxide level or the rate. of a volatile organic compound in the air.
  • the activation of the local control unit 12 by the user has priority over the activation of the central control unit 13, so as to control the closing and opening by sliding of the first leaf 3a. in relation to the fixed frame 4.
  • the activation of the local control unit 12 directly controls the electronic control unit 10 associated with the motorized drive device 5 according to a selection made by the user, possibly by inhibiting a control command that can be emitted by the central control unit 13 or by ignoring a value measured by a sensor measuring at least one parameter of the environment inside the building or outside the building, or a presence detection signal at inside the building.
  • the motorized drive device 5 can be controlled by the user, for example by receiving a control command corresponding to pressing a selection element of the local control unit 12, such as a remote control or a fixed control point.
  • the motorized drive device 5 can also be controlled automatically, for example by receiving a control command corresponding to at least one signal originating from at least one sensor and / or to a signal originating from a clock.
  • the sensor and / or the clock can be integrated into the local control unit 12 or into the central control unit 13.
  • the motorized drive device 5 makes it possible to automatically move the first leaf 3a by sliding relative to the fixed frame 4 to a predetermined position, between the closed position and the maximum open position.
  • the sliding movement of the first leaf 3a relative to the fixed frame 4 to the predetermined position, in particular partial opening or closing, is implemented following receipt of a control command issued by the unit. local control unit 12, the central control unit 13 or a sensor.
  • a sliding movement of the first leaf 3 relative to the fixed frame 4 in the sliding direction D is implemented by supplying electrical energy to the electromechanical actuator 6, so as to unwind or wind the first and second strands 9a, 9b of the flexible element 9 around the first and second parts of the winding pulley 19.
  • the unwinding or winding of the first and second strands 9a, 9b of the flexible element 9 around the first and second parts of the winding pulley 19 is controlled by the supply of electrical energy to the electromechanical actuator 6. .
  • the electrical energy supply to the electromechanical actuator 6 is controlled by a control command received by the electronic control unit 10 from the local control unit 12, from the central control unit 13 or of a sensor.
  • the motorized drive device 5, in particular the electromechanical actuator 6, is supplied with electrical energy from an electrical supply network.
  • the electromechanical actuator 6 comprises an electrical supply cable, not shown, allowing it to be supplied with electrical energy from the mains electrical supply network.
  • the motorized drive device 5, in particular the electromechanical actuator 6, is supplied with electrical energy by means of a battery, not shown.
  • the battery can be recharged, for example, by a photovoltaic panel or any other energy recovery system, in particular of the thermal type.
  • the winding pulley 19 and the output shaft 8 of the electromechanical actuator 6 have the same axis of rotation X.
  • the axis of rotation of the winding pulley 19 coincides with the axis of rotation X of the output shaft 8 of the electromechanical actuator 6.
  • the winding pulley 19 is arranged in the extension of the output shaft 8 of the electromechanical actuator 6 and is driven in rotation about the same axis of rotation X as the output shaft 8 of the electromechanical actuator 6.
  • the flexible element 9 forms a so-called open loop between the first end of the first strand 9a connected to the first part of the winding pulley 19 and the first end of the second strand 9b connected to the second part of the winding pulley 19.
  • first and second strands 9a, 9b of the flexible element 9 are connected to the winding pulley 19 and separated at the first and second parts thereof.
  • the electromechanical actuator 6 is fixed to the upper cross member 4a of the fixed frame 4 by means of fixing elements 28.
  • winding pulley 19 is held on the upper cross member 4a by means of these same fixing elements 28.
  • the fixing elements 28 of the electromechanical actuator 6 on the upper cross member 4a of the fixed frame 4 comprise supports, in particular fixing brackets.
  • these supports 28 are fixed to the upper cross member 4a of the fixed frame 4 by screwing.
  • each support 28 comprises at least one passage hole 29 for a fixing screw, as illustrated on figure 2 .
  • each support 28 may include two through holes 29 for a fixing screw.
  • a fixing screw passing through a passage hole 29 is screwed into the upper cross member 4a of the fixed frame 4, in particular in a screwing opening made in the upper cross member 4 a of the fixed frame 4.
  • this fixing screw is of the self-tapping type.
  • the fixing elements 28 of the electromechanical actuator 6 on the upper cross member 4a of the fixed frame 4 comprise two supports.
  • a first support 28 is assembled at a first end 6a of the electromechanical actuator 6, as illustrated in figure 2 .
  • a second support 28 is assembled at a second end 6b of the electromechanical actuator 6, as illustrated in figures 1 and 2 .
  • the first end 6a of the electromechanical actuator 6 is opposite the second end 6b of the electromechanical actuator 6.
  • each support 28 comprises at least one pin 44 cooperating with a groove 43 formed in the upper cross member 4a of the fixed frame 4.
  • each support 28 comprises two pawns 44. These pawns 44 are marked on the figure 2 by their trace on the second support 28 connected to the winding pulley 19.
  • each support 28 is oriented and positioned relative to the upper cross member 4a of the fixed frame 4.
  • the fixing of the electromechanical actuator 6, as well as of the winding pulley 19, on the supports 28 is implemented by fixing elements 41, in particular by screwing, as illustrated in figures 1 and 2 .
  • the fixing elements of the electromechanical actuator 6, as well as of the winding pulley 19, on the supports 28 are elastic snap elements.
  • the flexible element 9 of the motorized drive device 5 extends along the upper cross member 4a of the fixed frame 4 from the first part of the winding pulley 19 to the second part of the pulley d winding 19.
  • the flexible element 9 extends only on the side of the upper face of the upper cross member 4a, along at least part of the length L of the upper cross member 4a of the fixed frame 4.
  • the motorized drive device 5 comprises at least two angle transmission pulleys 35 spaced apart by a determined spacing S along the length L of the upper cross member 4a.
  • At least a first angle transmission pulley 35 is arranged on a first side of the electromechanical actuator 6, that is to say on the side of the first end 6a of the electromechanical actuator 6.
  • At least a second Angle pulley 35 is arranged on a second side of the electromechanical actuator 6, that is to say on the side of the second end 6b of the electromechanical actuator 6.
  • the motorized drive device 5 comprises an angle transmission pulley 35 arranged on the first side of the electromechanical actuator 6 distant from the determined spacing S with respect to a pair of angle transmission pulleys 35 arranged on the side. second side of the electromechanical actuator 6, one of these angle transmission pulleys 35 being hidden on the figures 1 and 2 by a support 55 of these pulleys.
  • the number of angle transmission pulleys is not limitative and may be different.
  • Each angular transmission pulley 35 can be produced, for example, by an idler pulley, in other words mounted freely in rotation, in particular on the upper cross member 4a of the fixed frame 4, or by a fixed pulley, in other words integral with its axis, in particular fixed to the upper cross member 4a of the fixed frame 4.
  • Each bevel pulley 35 may be a pulley with a grooved wheel, generally called a sheave.
  • the electromechanical actuator 6 and the flexible element 9 are arranged in a box 30 formed above the window 2, in particular extending above the upper cross member 4a of the fixed frame 4.
  • the electromechanical actuator 6 and the flexible element 9 are concealed in the box 30, so as to guarantee the aesthetic appearance of the sliding window 2.
  • winding pulley 19 is placed in the box 30 provided above the window 2.
  • the box 30 extends partially or completely in front of the fixed frame 4, in the assembled configuration of the window 2 with respect to the building. In this case, the box 30 extends at least in part projecting from the fixed frame 4.
  • the box 30 can be either arranged above the upper cross member 4a of the fixed frame 4 or placed opposite the upper cross member 4 a of the fixed frame 4, that is to say in prominence towards the interior of the building, in the assembled configuration of window 2 in relation to the building.
  • the window 2 comprises an access hatch 31 to the motorized drive device 5 and, more particularly, to the electromechanical actuator 6 and the flexible element 9, as well as to the winding pulley 19.
  • the access hatch 31 makes it possible to carry out a maintenance operation on the motorized drive device 5 and / or a repair operation thereof.
  • the access hatch 31 extends along the entire length L of the upper cross member 4a of the fixed frame 4.
  • the access hatch 31 extends only along part of the length L of the upper cross member 4a of the fixed frame 4.
  • the access hatch 31 is provided in the trunk 30.
  • the access hatch 31 is provided in the upper cross member 4a of the fixed frame 4, in particular through the first sliding rail 11a of the upper cross member 4a or between the first and second sliding rails 11a of the upper cross member 4a. .
  • the latter can be moved by the user independently of the first leaf 3a, in particular in the event of an absence of electrical energy supply to the motorized drive device 5. or failure of the motorized drive device 5.
  • the motorized drive device 5 makes it possible to automatically slide the first leaf 3a relative to the fixed frame 4 in the sliding direction D, by winding, respectively unwinding, the first strand 9a of the flexible element 9 around the first part of the winding pulley 19 and unwinding, respectively winding, the second strand 9b of the flexible element 9 around the second part of the winding pulley 19.
  • the motorized drive device 5 makes it possible to close and open in a motorized manner the first leaf 3a relative to the fixed frame 4, by sliding in the sliding direction D.
  • the use of the flexible element 9 to move the first opening 3a relative to the fixed frame 4 makes it possible to minimize the costs of obtaining the motorized drive device 5, as well as to minimize the bulk of the device d. motorized drive 5, in particular with respect to a belt.
  • Window 2 also includes a locking control device 26.
  • the drive arm 18 is connected, on the one hand, to the frame 15 of the first opening 3a and, more particularly, to the first lateral upright 15c of the frame 15 of the first opening 3a and, on the other hand, to the flexible element 9.
  • the fitting system 20 includes a lock 21.
  • the locking control device 26 is configured, on the one hand, to cooperate with the latch 21 and, on the other hand, to be actuated by means of the flexible element 9, when the electromechanical actuator 6 is electrically activated.
  • the drive arm 18 supports the locking control device 26.
  • the drive arm 18 and the locking control device 26 form an integral mechanical sub-assembly.
  • the fitting system 20 also includes an anti-mishandling system 27.
  • the locking control device 26 actuates the lock 21.
  • the arrangement formed by the motorized drive device 5, the fitting system 20 and the locking control device 26 of the window 2 makes it possible to to simplify the industrialization of the locking control device 26, to guarantee the tightness in a closed and locked position of the first leaf 3a with respect to the fixed frame 4, while minimizing the costs of obtaining the window 2.
  • such an arrangement of the window 2 makes it possible to lock and unlock the first leaf 3a with respect to the fixed frame 4 by means of the fitting system 20, without modifying a seal configured to cooperate with the first sash 3a and the fixed frame 4, when reaching the closed position of the first sash 3a with respect to the fixed frame 4, while maintaining the traditional techniques for installing windows, in particular for adjusting the systems fitting.
  • this arrangement of the window 2 makes it possible to use a fitting system comprising standard elements, in particular the lock 21 having standard characteristics.
  • the lock 21 can be devoid of any particular reinforcement, so as to minimize the costs of obtaining the window 2 and to guarantee the compatibility of the locking control device 26 with existing components for the fitting systems.
  • lock 21 is associated with the drive arm 18 via the locking control device 26, so as to secure the first opening 3a to the motorized drive device 5 provided with the flexible element 9.
  • the first strand 9a of the flexible element 9 comprises a second end connected to the locking control device 26.
  • the second strand 9b of the flexible element 9 comprises a second end connected to the locking control device 26. .
  • the second end of the first strand 9a of the flexible element 9 is opposite the first end of the first strand 9a of the flexible element 9 connected to the first part of the winding pulley 19. Furthermore, the second end of the second strand 9b of the flexible element 9 is opposite the first end of the second strand 9b of the flexible element 9 connected to the second part of the winding pulley 19.
  • the flexible element 9 is made in two parts.
  • the first part of the flexible member 9 is formed by the first strand 9a extending between the first part of the winding pulley 19 and the locking control device 26.
  • the second part of the flexible member 9 is formed by the second strand 9b extending between the second part of the winding pulley 19 and the locking control device 26.
  • the drive arm 18 is connected to the flexible element 9 via the locking control device 26.
  • the locking control device 26 comprises a drive element 47, on the one hand, connected to the flexible element 9 and, on the other hand, mounted in rotation with respect to the drive arm 18, around a axis of rotation Y.
  • the drive element 47 is rotatably mounted relative to the drive arm 18 by means of a bearing 51.
  • the box 30 comprises a slot, not shown and configured to allow the passage of an upper part of the drive arm 18 and at least of the bearing 51, during a movement of the drive arm 18 relative to the frame. frame 4 according to the sliding direction D.
  • the drive arm 18 can be driven in movement along the box 30, in particular at least partially facing an outer face of the box 30 oriented towards the interior of the building, in the configuration assembly of the window 2 with respect to the building, while being connected to the drive element 47 via the bearing 51.
  • the upper part of the drive arm 18, in particular at least the bearing 51, is configured to move inside the slot made in the trunk 30.
  • the slot in the box 30 is made between the access hatch 31, in the closed position relative to the box 30, and the fixed frame 4.
  • the drive element 47 is arranged above the upper cross member 15a of the frame 15 of the first leaf 3a and, more particularly, at or above the upper cross member 4a of the fixed frame 4, in the configuration assembly of window 2 in relation to the building.
  • connection of the drive element 47 with the flexible element 9 is simplified, since the flexible element 9 extends along the upper cross member 4a of the fixed frame 4.
  • the drive element 47 comprises a turntable 48 and a transmission arm 49.
  • the fixing of the flexible element 9, in particular of the first and second strands 9a, 9b of the flexible element 9, on the transmission arm 49 is implemented by means of a node.
  • the fixing of the flexible element on the transmission arm is not limiting and may be different.
  • it may be a fixing by screwing a fixing screw through an eyelet of the flexible element and a hole in the transmission arm.
  • the locking control device 26 comprises two stops, not shown, configured to cooperate with the transmission arm 49.
  • the stops of the locking control device 26 are adjustable, for example by sliding each stop through a respective groove made in the drive arm 18.
  • the fitting system 20 also comprises a cremone bolt 22 and advantageously locking elements 23a of the first leaf 3a with respect to the fixed frame 4.
  • the fitting system 20 is mounted along the first lateral upright 15c of the frame 15 of the first opening 3a.
  • the drive arm 18 and the lock 21 of the fitting system 20 are arranged in the upper part of the first lateral upright 15c of the frame 15 of the first opening 3a, in the assembled configuration of the window 2 with respect to the building.
  • the cremone bolt 22 is arranged inside the first lateral upright 15c of the frame 15 of the first opening 3a.
  • the locking mechanism 22 can also be placed in part inside the upper cross member 15a or the lower cross member of the frame 15 of the first opening 3a.
  • the lock 22 comprises at least one rod 24.
  • the lock 22 also comprises a body, not shown.
  • the body of the lock 22 is fixed relative to the first lateral upright 15c of the frame 15 of the first opening 3a.
  • the rod 24 is configured to move relative to the body of the lock 22.
  • the rod 24 is made in several parts interconnected, in particular by means of retaining elements.
  • the movement of the rod 24 of the lock 22 is implemented along the first lateral upright 15c of the frame 15 of the first opening 3a, in particular in a vertical direction, in the assembled configuration of the window 2 with respect to the building .
  • the rod 24 of the lock 22 comprises at least one hook 23a forming a locking element.
  • the fixed frame 4, in particular the first lateral upright 4c of the fixed frame 4, comprises at least one keeper, not shown.
  • the rod 24 of the lock 22 comprises two hooks 23a and the fixed frame 4 comprises two keeps.
  • Each hook 23a of the rod 24 is configured to cooperate with a keeper of the fixed frame 4.
  • the first leaf 3a is in a closed and locked position with respect to the fixed frame 4.
  • the first leaf 3a is in an unlocked position with respect to the fixed frame 4, which can also be closed or opened.
  • the lock 21 is placed inside the first lateral upright 15c of the frame 15 of the first opening 3a.
  • the lock 21 comprises at least one housing 37, a shaft 33, commonly called a square, a drive bell 38 and a bolt 25.
  • the drive bell 38 comprises a housing 45.
  • a first end of the shaft 33 is disposed inside the housing 45 of the drive bell 38.
  • the bolt 25 is configured to cooperate with a hole 46 formed in the rod 24.
  • the drive bell 38 is rotated inside the housing 37 of the latch 21, then the bolt 25 of the latch 21 is driven in translation, so as to move the rod 24 along the lateral upright 15 of the frame 15 of the first opening 3a, in particular in a vertical direction, in the assembled configuration of the window 2 with respect to the building.
  • the mechanical connection between the drive element 47 and the drive arm 18, in particular at the level of the bearing 51 may include notches.
  • the notches formed at the level of the mechanical connection between the drive element 47 and the drive arm 18 make it possible to limit the torque transmitted by the shaft 33 to the latch 21, during the closing movement of the first. opening 3a in relation to the fixed frame 4.
  • the drive arm 18 is fixed, and therefore immobile, relative to the frame 15 of the first opening 3a.
  • connection between the drive arm 18 and the frame 15 of the first leaf 3a is simplified and makes it possible to minimize the costs of obtaining the window 2.
  • the drive arm 18 is arranged in the upper part of the first lateral upright 15c of the frame 15 of the first opening 3a.
  • the drive arm 18 is configured to hook onto the flexible element 9 arranged above the fixed frame 4, in particular the upper cross member 4a of the fixed frame 4.
  • the drive arm 18 is fixed on the first lateral upright 15c of the frame 15 of the first opening 3a comprising the fitting system 20.
  • the drive arm 18 is fixed on the first lateral upright 15c of the frame 15 of the first opening 3a configured to cooperate with the first lateral upright 4c of the fixed frame 4, when reaching the closed position of the first. opening 3a in relation to the fixed frame 4.
  • the drive arm 18 is fixed on the first lateral upright 15c of the frame 15 of the first opening 3a by means of fixing elements 39, in particular removable by means of a tool.
  • the elements for fixing the drive arm 18 on the first opening 3a are elements for fixing by screwing, in the example of the screws 39.
  • the type of elements for fixing the drive arm to the first opening is not limiting and may be different. They may in particular be elastic snap fasteners.
  • the fixing elements 39 of the drive arm 18 on the first opening 3a are two in number.
  • the number of elements for fixing the drive arm to the first opening is not limiting and may be different, in particular three or more.
  • the drive arm 18 is fixed to the frame 15 of the first leaf 3a, following the installation of the first leaf 3a inside the fixed frame 4 and, in this case, also of the second leaf 3b to the 'inside the fixed frame 4, installation during which the adjustments of the fitting system 20 and of the sliding elements are implemented.
  • the adjustments of the fitting system 20, in particular of the hooks 23a of the rod 24 relative to the strikes of the fixed frame 4, and of the sliding elements can be implemented manually and conventionally, as for a window without the device of 'motorized drive 5.
  • the drive arm 18 is fixed to the frame 15 of the first opening 3a, following the electrical connection of the electromechanical actuator 6, either to the mains electricity supply network or to a battery.
  • the drive arm 18 is fixed to the first lateral upright 15c of the frame 15 of the first opening 3a by means of the lock 21.
  • the lock 21 comprises screw holes 50 configured to cooperate with the fixing elements 39 by screwing, so as to fix the drive arm 18 on the first lateral upright 15c of the frame 15 of the first opening 3a.
  • each fixing element 39 is configured to cooperate with a passage hole 42 formed in the drive arm 18 and with a screw hole 50 formed in the latch 21.
  • the latch 21 comprises at least a first screw hole 50 above the drive bell 38 and at least a second screw hole 50 below the drive bell 38, in the assembled configuration of window 2 in relation to the building.
  • the first and second screw holes 50 of the lock 21 are configured to cooperate respectively with one of the fixing elements 39.
  • the lock 21 has screw holes 50 and a housing 45 configured to receive the drive bell 38 as well as the shaft 33 similar to those of a lock of a standard manual handle, in particular at their level. location and sizing.
  • a standard manual handle for example a handle similar to the handle 40 of the second leaf 3b, can be arranged as a replacement for the drive arm 18, so as to manually close and lock the first leaf 3a with respect to the fixed frame 4. .
  • the drive arm 18 can be replaced by a standard manual handle, so as to move manually the first leaf 3a relative to the fixed frame 4 and to manually lock the first leaf 3a relative to the fixed frame 4 by actuating the lock 21.
  • the drive arm 18 is fixed to an outer face of the first lateral upright 15c of the frame 15 of the first opening 3a.
  • the drive arm 18 is fixed on a face of the first lateral upright 15c of the frame 15 of the first opening 3a oriented towards the outside of the window 2, in other words visible to the user.
  • the drive arm 18 is assembled with the first opening 3a on the inside of the frame 15 of the first opening 3a, in the assembled configuration of the window 2 with respect to the building.
  • the interior side of the frame 15 of the first opening 3a is oriented towards the interior of the building, in the assembled configuration of the window 2 with respect to the building.
  • the locking control device 26 is arranged on the drive arm 18 and, in particular, outside the frame 15 of the first opening 3a.
  • the locking control device 26 is concealed behind the drive arm 18, so as to improve the aesthetic appearance of the window 2.
  • the drive arm 18 covers the locking control device 26, like a cover, so as to hide the various elements making up the latter and to improve the aesthetics of the window 2.
  • the window 2 comprises a covering element, not shown.
  • the covering element is configured to cover at least the drive arm 18.
  • the covering element makes it possible to hide the drive arm 18, in the assembled configuration of the window 2.
  • the covering element is the same color as the frame 15 of the first leaf 3a, so as to improve the aesthetic appearance of the window 2.
  • the covering element is assembled on the drive arm 18 and / or on the frame 15 of the first opening 3a, following the assembly of the drive arm 18 on the first lateral upright 15c of the frame 15 of the first sash 3a.
  • the covering element is configured to cover only the drive arm 18.
  • the covering element is configured to cover the drive arm 18 as well as part or all of the first lateral upright 15c of the frame 15 of the first opening 3a, in particular according to the height of the frame 15, in the assembled configuration of window 2 with respect to the building.
  • the covering element is fixed relative to the first leaf 3a by means of fixing elements, following the assembly of the drive arm 18 on the frame 15 of the first leaf 3a.
  • the fixing elements of the covering element are configured to cooperate with the drive arm 18 and / or with the first lateral upright 15c of the frame 15 of the first opening 3a.
  • the elements for fixing the covering element relative to the first leaf 3a can be, in particular, elements for fixing by elastic snap-fastening or by screwing.
  • the covering element can be produced in a single part or else in several parts.
  • each part may be made of the same material or of a different material, which may be, for example, a plastic material or a metallic material, such as aluminum.
  • the anti-mishandling system 27 comprises a retractable pin 34.
  • the retractable pin 34 is configured to be moved between a rest position, in which the locking mechanism 22 is blocked, and an activated position, in which the locking mechanism 22 is released.
  • the anti-false maneuver system 27 is activated when the retractable pin 34 is driven inside a housing, not shown, provided in the frame 15.
  • the insertion of the retractable pin 34 in the aforementioned housing is implemented by the resting of the retractable pin 34 against the fixed frame 4, in in particular the first lateral upright 4c of the fixed frame 4, that is to say when the first leaf 3a is in the closed position relative to the fixed frame 4.
  • the rod 24 of the locking mechanism 22 is configured to move relative to the body of the locking mechanism 22 between a first position, called the unlocking position of the first opening 3a. relative to the fixed frame 4, and a second position, called the locking position of the first leaf 3a with respect to the fixed frame 4, and vice versa.
  • the anti-mishandling system 27 is configured to prevent a movement of the rod 24 of the locking mechanism 22 relative to the body of the locking mechanism 22, between its unlocking position and its locking position, as long as the retractable pin 34 is maintained in its rest position.
  • the retractable pin 34 extends in a direction perpendicular to the lock 22.
  • the locking control device 26 comprises a mechanism 32 for actuating the latch 21 configured to drive the shaft 33 of the latch 21 in rotation, during the drive of the flexible element 9 by the electromechanical actuator 6.
  • the mechanism 32 for actuating the locking control device 26 is configured to transform the translational movement of the flexible element 9 applied to the drive arm 18, in particular by the drive element 47, when the electrical activation of the electromechanical actuator 6, in a rotational movement of the shaft 33 of the latch 21 of the fitting system 20, when locking or unlocking the first leaf 3a with respect to the fixed frame 4.
  • the locking control device 26 also comprises a transmission element 52 connected, on the one hand, to the mechanism 32 and, on the other hand, to the shaft 33 of the lock 21.
  • the transmission element 52 is a turntable.
  • the mechanism 32 for actuating the lock 21 comprises lever arms 36.
  • lever arms 36 are made in the form of rods and two in number.
  • each lever arm 36 is connected, on the one hand, to the drive element 47 and, in particular to the rotary plate 48, and, on the other hand, to the transmission element 52.
  • the lever arms 36 are configured to transmit the rotational movement of the drive member 47 to the transmission member 52. Further, the transmission member 52 is configured to rotate the shaft 33 of the lock. 21.
  • connection of each of the lever arms 36, on the one hand, to the drive element 47, in particular to the turntable 48, and, on the other hand, to the transmission element 52 is implemented at means of a bearing.
  • the transmission element 52 comprises a housing 53.
  • a second end of the shaft 33 of the latch 21 is disposed inside the housing 53 of the transmission element 52.
  • the arrangement formed by the motorized drive device 5, the fitting system 20 and the locking control device 26 of the window 2 makes it possible to dispense with a handle for operating the first leaf 3a, generally arranged halfway up the window 2.
  • the first opening 3a can be moved only by means of the motorized drive device 5 following receipt of a control command by the electronic control unit 10 coming from one of the control units 12, 13.
  • the mechanism 32 for actuating the latch 21 may comprise a single lever arm 36, produced in the form of a rod.
  • the mechanism 32 for actuating the lock 21 may comprise two lever arms 36, produced by means of flexible elements placed in tension between the drive element 47 and the transmission element 52.
  • the mechanism 32 for actuating the lock 21 comprises an additional flexible element 54.
  • the drive element 47 and the transmission element 52 are pulleys.
  • the additional flexible member 54 is configured to transmit the rotational movement of the pulley of the drive member 47 to the pulley of the transmission member 52. Further, the pulley of the transmission member 52 is configured. to drive the shaft 33 of the lock 21 in rotation.
  • the additional flexible element 54 is a cable or a cord.
  • It can be made from a synthetic material, such as for example nylon or polyethylene of very high molar mass.
  • an additional flexible element 54 made of synthetic material makes it possible to minimize the diameter of the pulleys 47, 52 of the locking control device 26.
  • the material of the additional flexible element is not limiting and may be different. In particular, it can be a steel.
  • the pulley of the transmission element 52 also comprises the housing 53 configured to receive the shaft 33 of the lock 21.
  • the pulley of the drive element 47 comprises a first winding surface of the flexible element 9 and a second winding surface of the additional flexible element 54.
  • each of the first and second winding surfaces of the pulley of the drive member 47 may be made in the form of a groove.
  • the additional flexible element 54 is produced in the form of a so-called closed loop.
  • the additional flexible element 54 is driven around the pulley of the drive element 47 and the pulley of the transmission element 52.
  • the additional flexible element 54 is produced in the form of a so-called open loop.
  • the additional flexible element 54 comprises a first strand and a second strand.
  • One end of the first strand of the additional flexible element 54 is connected to a first part of the pulley of the driving element 47.
  • One end of the second strand of the additional flexible element 54 is connected to a second part of the pulley of the drive element 47.
  • each of the first and second strands of the additional flexible element 54 is hooked respectively to the first part or to the second part of the pulley of the drive element 47 by means of fixing elements.
  • each of the first and second strands of the additional flexible element 54 is respectively fixed directly to the first part or to the second part of the pulley of the drive element 47.
  • the elements for fixing the end of each of the first and second strands of the additional flexible element 54 are elements of the cable tie type.
  • These fixing elements can be screws, in particular of the self-tapping type, screwed into the pulley of the drive element 47, so as to fix the first and second strands of the additional flexible element 54 by wedging between the head of the screws and the winding surface of the additional flexible element 54 of the pulley of the driving element 47.
  • each of the first and second strands of the additional flexible element 54 can be wound around the pulley of the drive element 47.
  • the winding of the additional flexible element 54 around the pulley of the drive element 47 makes it possible to increase the angle of rotation of the shaft 33 of the lock 21, in particular beyond 90 °. and, for example, of the order of 180 °, so as to activate a lock 21 requiring a half-turn of the shaft 33 to reach the locked position of the first leaf 3a relative to the fixed frame 4.
  • the winding of the additional flexible element 54 around the pulley of the drive element 47 makes it possible to adjust the ratio between the force on the flexible element 9 and the force on the shaft 33. of the lock 21, when locking the first leaf 3a relative to the fixed frame 4, without the need for a large lever arm, so as to maintain the compactness of the locking control device 26.
  • the mechanism 32 for actuating the lock 21 comprises a gear.
  • the drive member 47 and the transmission member 52 are sprockets.
  • the pinion of the drive element 47 is meshed with the pinion of the transmission element 52 via one or more other pinions.
  • the pinion of the drive element 47 is directly meshed with the pinion of the transmission element 52.
  • the pinions of the elements 47 and 52 belong to a torque transmission gear, from the drive element 47 to the shaft 33, via the transmission element 52.
  • the gear of the mechanism 32 for actuating the lock 21 is configured to drive the shaft 33 of the lock 21 in rotation.
  • the pinion 52 also comprises the housing 53 configured to receive the shaft 33 of the lock 21.
  • the drive element 47 is connected to the flexible element 9.
  • the drive element 47 is mounted to be movable in rotation with respect to the drive arm 18, around it. an axis of rotation Y '.
  • the drive element 47 is a single part and the latter is mounted to be movable in rotation relative to the drive arm 18, about an axis of rotation Y '.
  • the drive element 47 is mounted to be movable in rotation relative to the drive arm 18 by means of a shaft 56.
  • the shaft 56 is configured to cooperate with an opening, not shown, made in the drive element 47.
  • the drive element 47 is an integral part of the mechanism 32 for actuating the latch 21.
  • the drive element 47 is disposed at least in part inside the drive arm 18.
  • the drive element 47 is concealed by the drive arm 18.
  • the drive element 47 is disposed, on the one hand, partly below the upper cross member 15a of the frame 15 of the first opening 3a and, more particularly, below the upper cross member 4a of the fixed frame 4 , in the assembled configuration of the window 2 relative to the building, and, on the other hand, partly above the upper cross member 15a of the frame 15 of the first sash 3a, in the assembled configuration of the window 2 relative to the building.
  • the drive element 47 comprises a transmission arm 57.
  • connection of the flexible element 9 to the drive element 47 is implemented by means of a shuttle 58.
  • the shuttle 58 is fixed on the flexible element 9, in particular on the second strand 9b of the flexible element 9, by means of fixing elements not shown.
  • the elements for fixing the flexible element 9, in particular the second strand 9b of the flexible element 9, on the shuttle 58 may be of the cable clamp type.
  • these fixing elements are screws, for example two in number, configured to be screwed respectively into a screw hole of the shuttle 58, so as to fix the flexible element 9, in particular the second strand 9b of the flexible element 9, by wedging between the head of the screws and a surface of the shuttle 58.
  • the fixed frame 4 in particular the upper cross member 4a of the fixed frame 4, comprises a slide 62.
  • the shuttle 58 is configured to slide inside the slide 62 of the fixed frame 4.
  • the shuttle 58 comprises a pin 59 configured to cooperate with a slot 60 of the transmission arm 57.
  • the slot 60 of the transmission arm 57 is U-shaped.
  • the slot 60 of the transmission arm 57 has the shape of an oblong hole.
  • the pin 59 of the shuttle 58 is engaged in the slot 60 of the transmission arm 57, both during a movement of the first leaf 3a relative to the fixed frame 4, regardless of the direction of movement of the first leaf 3a. relative to the fixed frame 4, that is to say towards the closed position or towards an open position, only to the stop of the first leaf 3a relative to the fixed frame 4.
  • the electromechanical actuator 6 is of the reversible type.
  • the electromechanical actuator 6 does not have a brake, in particular to allow the electromechanical actuator 6 to be reversible.
  • the length of the slot 60 formed in the transmission arm 57 makes it possible to compensate for assembly tolerances of the locking control device 26, so as to guarantee the cooperation of the pin 59 of the shuttle 58 with the slot 60 of the transmission arm. 57.
  • the transmission arm 57 comprises, at one of its ends 57a, a rack 61.
  • the transmission element 52 is a toothed wheel.
  • the toothed wheel is configured to be assembled on the shaft 33 of the latch 21.
  • the rack 61 of the transmission arm 57 is configured to cooperate with the toothed wheel 52, in the assembled configuration of the latch controller 26.
  • the rack 61 of the transmission arm 57 is configured to drive in rotation the toothed wheel 52 and, consequently, the shaft 33 of the lock 21, during the electrical activation of the electromechanical actuator 6.
  • toothed wheel 52 and shaft 33 of latch 21 are configured to be rotated by means of transmission arm 57 relative to drive arm 18.
  • the toothed wheel 52 forms an integral part of the mechanism 32 for actuating the lock 21.
  • the locking control device 26 thus makes it possible to control the locking and unlocking of the first leaf 3a with respect to the fixed frame 4.
  • the locking control device 26 comprises two stops 63 configured to cooperate with the transmission arm 57.
  • the locking control device 26 can also include an elastic return element, not shown.
  • the elastic return element is connected, on the one hand, to the frame 15 of the first leaf 3a and, on the other hand, to the transmission arm 57.
  • the elastic return element is configured to hold the transmission arm 57 in a resting position.
  • the elastic return element is a spring, which may be, for example, of the spiral type.
  • the slot 60 of the transmission arm 57 is configured so that the pin 59 of the shuttle 58 engages therein during the assembly of the drive arm 18 relative to the first opening 3a.
  • the assembly of the drive arm 18 relative to the first leaf 3a is implemented after the installation of the first leaf 3a relative to the fixed frame 4 or even after a maintenance operation requiring the disassembly of the drive arm. 18 with respect to the first sash 3a.
  • This fifth embodiment is a variant of the fourth embodiment illustrated in figure 8 . Elements similar to those of the fourth embodiment bear the same references and operate as explained above. In what follows, it is mainly described that what distinguishes this fifth embodiment from the fourth embodiment.
  • the drive arm 18 comprises a cover 18a and a body 18b.
  • the cover 18a is configured to cover the body 18b of the drive arm 18.
  • the cover 18a is fixed on the body 18b of the drive arm 18 by means of fixing elements, in the assembled configuration of the drive arm 18.
  • the fixing of the cover 18a on the body 18b of the drive arm 18 is implemented by screwing.
  • the cover 18a comprises passage holes 18c, visible at the figure 9 , configured to cooperate with fixing screws, not shown.
  • the body 18b of the drive arm 18 includes mounting holes 18d, visible from the side. figure 10 , configured to cooperate with the fixing screws.
  • Such a construction of the drive arm 18 comprising the cover 18a and the body 18b can be implemented similarly in the fourth embodiment. realization described above, with reference to the figure 8 , as in the first, second and third embodiments.
  • the drive element 47 and, more particularly, the transmission arm 57 comprises a first part 572 and a second part 574.
  • the first part 572 of the transmission arm 57 comprises a first gear segment 64 configured to cooperate with a second gear segment 65 of the second part 574 of the transmission arm 57, in the assembled configuration of the locking control device 26.
  • the second part 574 of the transmission arm 57 comprises at least a first control member. guide 66 configured to cooperate with a second guide element 67 provided at the level of the drive arm 18.
  • the first guide element 66 of the second part 574 of the transmission arm 57 is at least one pin.
  • the second guide member 67 of the drive arm 18 is a groove made in the drive arm 18.
  • the or each guide element 66 is formed by a pin fixed on the second part 574 of the transmission arm 57.
  • the second part 574 of the transmission arm 57 comprises two pins 66.
  • the second guide element 67 is formed by a groove formed in the drive arm 18, preferably in the body 18b of the drive arm 18.
  • the two pins 66 are configured to cooperate with the groove 67.
  • the second part 574 of the transmission arm 57 is moved in a translational movement relative to the drive arm 18 by means of the decoupling of the first and second parts 572, 574 of the transmission arm 57 by the first and second segments d 'gear 64, 65 and the positioning of the or each pin 66 of the second part 574 of the transmission arm 57 inside the groove 67 of the drive arm 18.
  • the second part 574 of the transmission arm 57 is maintained at a constant height relative to the drive arm 18 and to the pin 59 of the shuttle 58, during the movement of the shuttle 58 and, more particularly, during electrical activation of the electromechanical actuator 6.
  • such a construction of the locking control device 26 allows to guarantee a positioning tolerance of the pin 59 of the shuttle 58 with respect to the slot 60 of the wider transmission arm 57, so as to facilitate the installation of the motorized drive device 5.
  • connection between the first and second parts 572, 574 of the transmission arm 57 by means of the first and second gear segments 64, 65 makes it possible to ensure the rotational drive of the first part 572 of the transmission arm 57 , around the axis of rotation Y ', of the input wheel 52 by means of the rack 61 of the transmission arm 57, then of the shaft 33 of the lock 21.
  • the groove 67 is formed in the cover 18a of the drive arm 18.
  • a first pin 66 is configured to cooperate with a first groove 67 formed in the body 18b of the drive arm 18.
  • a second pin 66 is configured to cooperate with a second groove 67 formed in the cover 18a drive arm 18.
  • the number of pins in the second part of the transmission arm is not limiting and may be different, in particular one or more than two.
  • the first part 572 of the transmission arm 57 comprises the opening configured to cooperate with the shaft 56, so as to allow the rotation of the transmission arm 57 relative to the drive arm 18 about the axis of rotation. Y ', as well as the rotation of the rack 61 configured to cooperate with the toothed wheel 52.
  • the second part 574 of the transmission arm 57 comprises the slot 60 configured to cooperate with the pin 59 of the shuttle 58.
  • the drive element 47 is made in two parts 572, 574, the first part 572 of which is mounted so as to be able to rotate relative to the drive arm 18, about an axis of rotation Y '.
  • the first part 572 of the transmission arm 57 comprises at least one recess 68 configured to cooperate with the body 18b of the drive arm 18 and, more particularly, the attachment zones 18d, 63 formed in the body 18b of the arm d. drive 18, in the assembled configuration of the interlock controller 26.
  • the first part 572 of the transmission arm 57 comprises two recesses 68.
  • the toothed wheel 52 comprises an imprint, not shown, such as, for example, a slot.
  • the footprint of the toothed wheel 52 is accessible from the outside of the drive arm 18 and, in particular, following the removal of the cover 18a from the drive arm 18 and, optionally, from the trim element.
  • the imprint of the toothed wheel 52 allows the user to control the locking control device 26 manually, in particular during a power supply failure of the motorized drive device 5.
  • the toothed wheel 52 can be rotated by means of a tool, such as, for example, a screwdriver, configured to cooperate with the cavity.
  • a tool such as, for example, a screwdriver
  • the imprint formed in the toothed wheel 52 can be configured to receive an element for displaying a state of the lock 21, in particular a locked state or an unlocked state, in the assembled configuration of the control device. lock 26.
  • the display element of a state of the lock 21 can be removed from the imprint of the toothed wheel 52, so as to access the imprint of the toothed wheel 52 to allow the control device to be controlled. lock 26 manually.
  • the operating control method of the motorized drive device 5 comprises, when the electromechanical actuator 6 is electrically activated, a step of activating the anti-mishandling system 27, then a step of activating the lock 21 by means of the locking control device 26.
  • the arrangement formed by the motorized drive device, the fitting system and the locking control device of the sliding window makes it possible to simplify the industrialization of the locking control device, to guarantee the sealing in a closed and locked position of the sash relative to the fixed frame, while minimizing the costs of obtaining the window.
  • the motorized drive device 5 can be configured to slide several openings 3a, 3b by means of the flexible element 9, in the same direction of movement or in an opposite direction of movement.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Power-Operated Mechanisms For Wings (AREA)

Claims (14)

  1. Schiebefenster (2) für ein Gebäude, wobei das Schiebefenster (2) umfasst:
    • einen Blendrahmen (4),
    • mindestens einen Flügel (3a, 3b),
    • eine motorisierte Antriebsvorrichtung (5), um den Flügel (3a) in Bezug auf den Blendrahmen (4) durch Schieben zu verlagern,
    ∘ wobei die motorisierte Antriebsvorrichtung (5) umfasst:
    ▪ eine elektromechanische Betätigungsvorrichtung (6), wobei die elektromechanische Betätigungsvorrichtung (6) einen Elektromotor (7) umfasst,
    ▪ ein biegsames Element (9), wobei das biegsame Element (9) dazu konfiguriert ist, den Flügel (3a) in Bezug auf den Blendrahmen (4) in Verlagerung anzutreiben, wenn die elektromechanische Betätigungsvorrichtung (6) elektrisch aktiviert wird,
    ▪ einen Antriebsarm (18), wobei der Antriebsarm (18) einerseits mit einem Rahmen (15) des Flügels (3a) und andererseits mit dem biegsamen Element (9) verbunden ist,
    • ein Beschlagsystem (20), wobei das Beschlagsystem (20) einen Riegel (21) umfasst,
    • eine Verriegelungssteuervorrichtung (26),
    ∘ wobei die Verriegelungssteuervorrichtung (26) konfiguriert ist zum:
    ▪ Zusammenwirken mit dem Riegel (21), und
    ▪ Betätigtwerden mittels des biegsamen Elements (9), wenn die elektromechanische Betätigungsvorrichtung (6) elektrisch aktiviert wird,
    wobei das Fenster derart ist, dass der Antriebsarm (18) die Verriegelungssteuervorrichtung (26) stützt,
    der Riegel (21) mit dem Antriebsarm (18) über
    die Verriegelungssteuervorrichtung (26) derart assoziiert ist, dass der Flügel (3a) mit der motorisierten Antriebsvorrichtung (5) fest verbunden ist,
    der Antriebsarm (18) mit dem biegsamen Element (9) über die Verriegelungssteuervorrichtung (26) verbunden ist,
    die Verriegelungssteuervorrichtung (26) einen Betätigungsmechanismus (32) des Riegels (21) umfasst, der dazu konfiguriert ist, eine Welle (33) des Riegels (21) in Drehung bei dem Antreiben des biegsamen Elements (9) durch die elektromechanische Betätigungsvorrichtung (6) anzutreiben,
    die Verriegelungssteuervorrichtung (26) ein Antriebselement (47) umfasst, das Antriebselement (47) mit dem biegsamen Element (9) verbunden ist, mindestens ein Teil des Antriebselements (47) drehbeweglich in Bezug auf den Antriebsarm (18) um eine Drehachse (Y; Y') montiert ist, das Antriebselement (47) fester Bestandteil des Betätigungsmechanismus (32) des Riegels (21) ist,
    das Beschlagsystem (20) auch ein Fehlbedienungsschutzsystem (27) und einen Treibriegelverschluss (22) umfasst,
    wobei das Fehlbedienungsschutzsystem (27) einen rückziehbaren Zapfen (34) umfasst,
    wobei der rückziehbare Zapfen (34) dazu konfiguriert ist, zwischen einer Ruheposition, in der der Treibriegelverschluss (22) blockiert ist, und einer aktivierten Position, in der der Treibriegelverschluss (22) freigegeben ist, verlagert zu werden,
    das Fehlbedienungsschutzsystem (27) bei dem Hineindrücken des rückziehbaren Zapfens (34) in das Innere einer Aufnahme, die in dem Rahmen (15) des Flügels (3a) eingerichtet ist, aktiviert wird,
    und die Verriegelungssteuervorrichtung (26) dazu konfiguriert ist, den Riegel (21) im Anschluss an das Aktivieren des Fehlbedienungsschutzsystems (27), und wenn die elektromechanische Betätigungsvorrichtung (6) elektrisch aktiviert wird, zu betätigen.
  2. Schiebefenster (2) für ein Gebäude nach Anspruch 1, dadurch gekennzeichnet, dass der Betätigungsmechanismus (32) des Riegels (21) mindestens einen Hebelarm (36) umfasst.
  3. Schiebefenster (2) für ein Gebäude nach Anspruch 1, dadurch gekennzeichnet, dass der Betätigungsmechanismus (32) des Riegels (21) ein zusätzliches biegsames Element (54) umfasst.
  4. Schiebefenster (2) für ein Gebäude nach Anspruch 1, dadurch gekennzeichnet, dass der Betätigungsmechanismus (32) des Riegels (21) ein Radgetriebe umfasst.
  5. Schiebefenster (2) für ein Gebäude nach einem der Ansprüche 1 bis 4, dadurch gekennzeichnet, dass die Verriegelungssteuervorrichtung (26) ein Übertragungselement (52), das mit der Welle (33) des Riegels (21) verbunden ist, umfasst.
  6. Schiebefenster (2) für ein Gebäude nach einem der Ansprüche 1 bis 5, dadurch gekennzeichnet, dass der Antriebsarm (18) in Bezug auf den Rahmen (15) des Flügels (3a) feststeht.
  7. Schiebefenster (2) für ein Gebäude nach einem der Ansprüche 1 bis 6, dadurch gekennzeichnet, dass der Antriebsarm (18) und der Riegel (21) des Beschlagsystems (20) in der zusammengefügten Konfiguration des Fensters (2) in Bezug auf das Gebäude im oberen Teil eines seitlichen Ständers (15c) des Rahmens (15) des Flügels (3a) angeordnet sind.
  8. Schiebefenster (2) für ein Gebäude nach einem der Ansprüche 1 bis 7, dadurch gekennzeichnet, dass das Antriebselement (47) einen Übertragungsarm (57) umfasst, und dass der Übertragungsarm (57) im Bereich eines seiner Enden (57a) eine Zahnstange (61) umfasst.
  9. Schiebefenster (2) für ein Gebäude nach Anspruch 8, dadurch gekennzeichnet, dass die Verbindung des biegsamen Elements (9) mit dem Antriebselement (47) mittels eines Pendelelements (58) umgesetzt wird, und dass das Pendelelement (58) einen Zapfen (59) umfasst, der dazu konfiguriert ist, mit einem Schlitz (60) des Übertragungsarms (57) zusammenzuwirken.
  10. Schiebefenster (2) für ein Gebäude nach Anspruch 8 oder Anspruch 9 und nach Anspruch 5, dadurch gekennzeichnet, dass das Übertragungselement (52) fester Bestandteil des Betätigungsmechanismus (32) des Riegels (21) ist, dass das Übertragungselement (52) ein Zahnrad ist, dass das Zahnrad (52) dazu konfiguriert ist, auf der Welle (33) des Riegels (21) angefügt zu werden, und dass die Zahnstange (61) des Übertragungsarms (57) dazu konfiguriert ist, mit dem Zahnrad (52) in einer zusammengefügten Konfiguration der Verriegelungssteuervorrichtung (26) zusammenzuwirken.
  11. Schiebefenster (2) für ein Gebäude nach einem der Ansprüche 1 bis 10, dadurch gekennzeichnet, dass das Antriebselement (47) einen ersten Teil (572) und einen zweiten Teil (574) umfasst, und dass der erste Teil (572) des Antriebselements (47) ein erstes Radgetriebesegment (64) umfasst, das dazu konfiguriert ist, mit einem zweiten Radgetriebesegment (65) des zweiten Teils (574) des Antriebselements (47) in einer zusammengefügten Konfiguration der Verriegelungssteuervorrichtung (26) zusammenzuwirken, und dass der zweite Teil (574) des Antriebselements (47) mindestens ein erstes Führungselement (66) umfasst, das dazu konfiguriert ist, mit einem zweiten Führungselement (67), das im Bereich des Antriebsarms (18) eingerichtet ist, zusammenzuwirken.
  12. Schiebefenster (2) nach einem der Ansprüche 1 bis 11, dadurch gekennzeichnet, dass die elektromechanische Betätigungsvorrichtung (6) vom umkehrbaren Typ ist.
  13. Hausanlage, dadurch gekennzeichnet, dass die Anlage ein Schiebefenster (2) nach einem der Ansprüche 1 bis 12 umfasst.
  14. Steuerverfahren bei Betrieb einer motorisierten Antriebsvorrichtung (5) eines Schiebefensters (2) nach Anspruch 1 für ein Gebäude, wobei das Schiebefenster (2) umfasst:
    • einen Blendrahmen (4),
    • mindestens einen Flügel (3a, 3b),
    • eine motorisierte Antriebsvorrichtung (5), um den Flügel (3a) in Bezug auf den Blendrahmen (4) durch Schieben zu verlagern,
    ∘ wobei die motorisierte Antriebsvorrichtung (5) umfasst:
    ▪ eine elektromechanische Betätigungsvorrichtung (6), wobei die elektromechanische Betätigungsvorrichtung (6) einen Elektromotor (7) umfasst,
    ▪ ein biegsames Element (9), wobei das biegsame Element (9) in Verlagerung von der elektromechanischen Betätigungsvorrichtung (6) angetrieben wird, wobei das biegsame Element (9) dazu konfiguriert ist, den Flügel (3a) in Bezug auf den Blendrahmen (4) in Verlagerung anzutreiben, wenn die elektromechanische Betätigungsvorrichtung (6) elektrisch aktiviert wird,
    ▪ einen Antriebsarm (18), wobei der Antriebsarm (18) einerseits mit einem Rahmen (15) des Flügels (3a) und andererseits mit dem biegsamen Element (9) verbunden ist,
    • ein Beschlagsystem (20), wobei das Beschlagsystem (20) einen Riegel (21) umfasst,
    • eine Verriegelungssteuervorrichtung (26),
    ∘ wobei die Verriegelungssteuervorrichtung (26) konfiguriert ist zum:
    ▪ Zusammenwirken mit dem Riegel (21), und
    ▪ Betätigtwerden mittels des biegsamen Elements (9), wenn die elektromechanische Betätigungsvorrichtung (6) elektrisch aktiviert wird,
    wobei das Fenster derart ist, dass:
    • der Antriebsarm (18) die Verriegelungssteuervorrichtung (26) stützt,
    • das Beschlagsystem (20) auch ein Fehlbedienungsschutzsystem (27) und einen Treibriegelverschluss (22) umfasst,
    • das Fehlbedienungsschutzsystem (27) einen rückziehbaren Zapfen (34) umfasst, wobei der rückziehbare Zapfen (34) dazu konfiguriert ist, zwischen einer Ruheposition, in der der Treibriegelverschluss (22) blockiert ist, und einer aktivierten Position, in der der Treibriegelverschluss (22) freigegeben ist, verlagert zu werden,
    • das Fehlbedienungsschutzsystem (27) beim Hineindrücken des rückziehbaren Zapfens (34) in das Innere einer Aufnahme, die in dem Rahmen (15) des Flügels (3a) eingerichtet ist, aktiviert wird,
    und das Verfahren mindestens die folgenden Schritte umfasst, die bei der elektrischen Aktivierung der elektromechanischen Betätigungsvorrichtung (6) umgesetzt werden:
    • Aktivierung des Fehlbedienungsschutzsystems (27), dann
    • Aktivierung des Riegels (21) mittels der Verriegelungssteuervorrichtung (26).
EP17825814.1A 2017-01-23 2017-12-15 Schiebefenster für ein gebäude, heimautomatisierungsanlage mit solch einem schiebefenster und verfahren zur steuerung des betriebs einer motorisierten antriebsvorrichtung für solch ein fenster Active EP3571368B1 (de)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL17825814T PL3571368T3 (pl) 2017-01-23 2017-12-15 Okno przesuwne do budynku, instalacja automatyki domowej zawierająca takie okno przesuwne i sposób sterowania działaniem urządzenia z napędem silnikowym do takiego okna

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
FR1750522A FR3062152B1 (fr) 2017-01-23 2017-01-23 Fenetre coulissante pour un batiment, installation domotique comprenant une telle fenetre coulissante et procede de commande en fonctionnement d'un dispositif d'entrainement motorise d'une telle fenetre
PCT/EP2017/083152 WO2018134008A1 (fr) 2017-01-23 2017-12-15 Fenêtre coulissante pour un bâtiment, installation domotique comprenant une telle fenêtre coulissante et procédé de commande en fonctionnement d'un dispositif d'entraînement motorisé d'une telle fenêtre

Publications (2)

Publication Number Publication Date
EP3571368A1 EP3571368A1 (de) 2019-11-27
EP3571368B1 true EP3571368B1 (de) 2021-06-09

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EP17825814.1A Active EP3571368B1 (de) 2017-01-23 2017-12-15 Schiebefenster für ein gebäude, heimautomatisierungsanlage mit solch einem schiebefenster und verfahren zur steuerung des betriebs einer motorisierten antriebsvorrichtung für solch ein fenster

Country Status (7)

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US (1) US10934761B2 (de)
EP (1) EP3571368B1 (de)
JP (1) JP6725768B2 (de)
BR (1) BR112019015033A2 (de)
FR (1) FR3062152B1 (de)
PL (1) PL3571368T3 (de)
WO (1) WO2018134008A1 (de)

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FR3062152B1 (fr) * 2017-01-23 2020-03-13 Somfy Activites Sa Fenetre coulissante pour un batiment, installation domotique comprenant une telle fenetre coulissante et procede de commande en fonctionnement d'un dispositif d'entrainement motorise d'une telle fenetre
US10968678B2 (en) * 2017-07-03 2021-04-06 Hall Labs Llc Automated sliding panel mechanism with manual release mechanism
FR3094999B1 (fr) 2019-04-10 2021-06-25 Somfy Activites Sa Dispositif d’entraînement motorisé, fenêtre coulissante pour un bâtiment et installation domotique associées

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Also Published As

Publication number Publication date
US10934761B2 (en) 2021-03-02
FR3062152A1 (fr) 2018-07-27
JP6725768B2 (ja) 2020-07-22
WO2018134008A1 (fr) 2018-07-26
PL3571368T3 (pl) 2021-12-13
FR3062152B1 (fr) 2020-03-13
JP2020505539A (ja) 2020-02-20
EP3571368A1 (de) 2019-11-27
BR112019015033A2 (pt) 2020-03-10
US20190360254A1 (en) 2019-11-28

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