EP3489443B1 - Vorrichtung zum antrieb einer türverriegelungsstange eines schiebe-öffnungselements - Google Patents

Vorrichtung zum antrieb einer türverriegelungsstange eines schiebe-öffnungselements Download PDF

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Publication number
EP3489443B1
EP3489443B1 EP18207058.1A EP18207058A EP3489443B1 EP 3489443 B1 EP3489443 B1 EP 3489443B1 EP 18207058 A EP18207058 A EP 18207058A EP 3489443 B1 EP3489443 B1 EP 3489443B1
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EP
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Prior art keywords
pinion
case
output
opening
input
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EP18207058.1A
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English (en)
French (fr)
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EP3489443A1 (de
Inventor
Cyril Berton
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Sotralu SAS
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Sotralu SAS
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    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05CBOLTS OR FASTENING DEVICES FOR WINGS, SPECIALLY FOR DOORS OR WINDOWS
    • E05C9/00Arrangements of simultaneously actuated bolts or other securing devices at well-separated positions on the same wing
    • E05C9/10Actuating mechanisms for bars
    • E05C9/12Actuating mechanisms for bars with rack and pinion mechanism

Definitions

  • the invention relates to a device, called a drive device, for driving in translation a bolt holder rod mounted to slide relative to a sliding door profile-in particular in a sliding door lock faceplate-, this device being suitable to be connected to an operating leg of such an opening and to define extreme positions of rotation of this operating leg.
  • the invention also relates to a gear for a sliding door, this gear comprising a bolt holder rod and a drive device according to the invention.
  • the invention also relates to a sliding door comprising such a lock.
  • Sliding openings comprising a gear drive device assembled to a leg for operating the opening and adapted to define extreme positions of rotation of said operating leg.
  • the extreme positions of rotation of the stand are generally defined so that the stand can be moved between a closed position in which the stand is oriented vertically and an open position arranged at an angle less than 45 ° by relative to said closed position.
  • Limiting the opening position of the operating handle to an angle of less than 45 ° from the vertical makes it easier to handle a sliding leaf when it is moved between an open position and a closed position of the leaf by relative to an open position in which the operating stand is oriented at an angle equal to 90 ° with respect to the vertical.
  • pinion denotes any part having toothing and which can be integrated into a gear.
  • a pinion may have the shape of a wheel or of a portion of a wheel (angular sector) or else any other shape.
  • a drive device comprising an outer casing which can be attached to a front face of a hollow section defining a longitudinal side of a sliding door frame.
  • the box is assembled with a maneuvering stand.
  • the housing comprises a gear having a first pinion rotatably coupled to said operating leg and a second pinion rotatably coupled to a square of the drive device arranged to pass through a wall of the hollow section to an inner pinion of the device.
  • drive disposed in the hollow of the profile and rotatably coupled to said square.
  • the internal pinion is coupled to a bolt holder rod slidably mounted in a faceplate integrally assembled with said hollow section.
  • the inner pinion is coupled to the bolt holder rod so as to be able to drive it in translation between a locking position in which at least one bolt assembled to the bolt holder rod is held in engagement in a keeper of a dead frame on which is mounted the opening and an unlocking position in which each bolt is not engaged in a striker of the dead frame.
  • the invention aims to overcome these drawbacks.
  • the invention therefore aims to provide a drive device for a sliding door bolt which is simple.
  • the invention also aims to provide such a drive device which is inexpensive.
  • the invention also aims to provide such a drive device which is simple to mount on a sliding door.
  • the invention also aims to provide such a drive device for improving the aesthetics of a sliding door.
  • the invention also aims to provide a sliding door lock and a sliding door having the aforementioned advantages.
  • the invention also extends to a locking mechanism for a sliding door, this locking mechanism comprising a bolt-holder rod and a device according to the invention engaged with this bolt-holder rod.
  • At least one bolt is assembled integral with said bolt holder rod.
  • the housing comprises all the necessary elements (mechanism arranged in said inner enclosure of the housing) making it possible to manipulate a bolt-holder rod from a square leading assembled to a maneuvering handle to the bolt-holder rod of the lock and to define extreme positions of rotation of the driving square and said handle maneuver.
  • said hollow section of the opening is a longitudinal section of the opening arranged vertically when the opening is mounted on the frame so as to define an edge of the opening.
  • the hollow section also has an opening arranged to be crossed by said leading square so that the leading square can be assembled to the housing of the drive device disposed in the hollow of the hollow section and to the operating stand placed on an outer front face. of the hollow profile.
  • the inlet opening of the housing is intended to be placed opposite the opening of the hollow section through which the leading square passes so that the latter reaches the inlet member of said mechanism.
  • the housing is not visible to a user because it is placed in the hollow of the profile of the opening and not on a front face of this profile.
  • said outlet opening is at least substantially orthogonal to said inlet opening.
  • said inlet opening can be parallel to the outer front face of the hollow section and the outlet opening can be parallel to the edge of the hollow section.
  • the mechanism is a gear comprising at least two pinions, a first pinion, called input pinion, forming said input member and a second pinion, called output pinion, forming said output member.
  • the input member - in particular the input pinion - is guided relative to the housing in rotation with respect to a theoretical axis of rotation passing through said opening of Entrance.
  • the inlet opening extends in a plane orthogonal to said theoretical axis of rotation of the inlet member.
  • the input member - in particular the input pinion - comprises a housing, said receiving housing, extending along said theoretical axis of rotation of the input member.
  • Said housing for receiving the input member is arranged to receive a first end of the driving square.
  • a second end of the driving square is intended to be assembled to a handle for operating the sliding leaf.
  • said receiving housing and said driving square have conjugate shapes.
  • the housing for receiving the input member is arranged on an axis of rotation of the input member.
  • said receiving housing has a non-circular cross section, in particular a square cross section.
  • a non-circular cross section in particular a square cross section.
  • the housing comprises means for fixing the housing to a sliding door lock faceplate on which said bolt holder rod is slidably mounted.
  • the housing comprises threads for fixing the housing to said faceplate. More particularly, screws passing through said faceplate by openings in the faceplate can be screwed into said threads.
  • Said bolt-holder rod comprises at least one slot - in particular three adjacent slots along a longitudinal axis of the bolt-holder rod - receiving at least one tooth of the teeth of the output pinion in order to be able to be driven in translation when the output pinion is driven in rotation.
  • the translational drive of said bolt holder rod is carried out when a tooth received in a slot of the bolt holder rod exerts a force against an edge of this slot of said bolt holder rod (when the output pinion is driven in rotation).
  • the bolt holder rod can be driven in translation between a locking position in which each bolt is held in engagement with a keeper of a fixed frame on which the opening is mounted and an unlocking position in which each bolt is n is not engaged in a strike of a dormant.
  • said input pinion also comprises a through-thread adapted to receive a screw, called a retaining screw, to hold said square leading into said housing of the input pinion.
  • the housing So as to be able to mount the leading square after the housing is assembled to the faceplate of the gear, the housing has a suitable slot so that a screwdriver can reach said retaining screw arranged in the thread of the input pinion.
  • the bolt holder rod and the faceplate also each have a lumen facing said lumen of the housing so that a screwdriver can reach the housing and said retaining screw.
  • the drive device is designed to be able to be placed in a hollow section of the sliding leaf receiving said lock.
  • said housing has the shape of a rectangular parallelepiped and has main faces of the housing having a width less than 30mm, more particularly less than 20mm, in particular of the order of 16mm and the side faces having a width less than 50mm, more particularly less than 40mm, in particular of the order of 30mm.
  • Said transmission is adapted to increase the transmission ratio between the input pinion and the output pinion.
  • said transmission is adapted to allow, from a rotation over an angle ⁇ 1 of the input pinion, a rotation over an angle ⁇ 2 of the output pinion, ⁇ 2 being greater than ⁇ 1 .
  • Increasing the transmission ratio between the input pinion and the output pinion makes it possible to increase the distance between the extreme translation positions of the bolt holder rod so that the bolt holder rod can reach a locked position and a position unlocking.
  • said transmission can be formed of a toothing of the input member - in particular of the input pinion - and of a toothing of the output member - in particular of the output pinion - in engagement with the teeth of the input member - in particular the input pinion -.
  • Said mechanism then comprises only an input member - in particular the input pinion - and an output member - in particular the output pinion -.
  • said transmission comprises at least one pinion coupling said input member to said output member.
  • said transmission comprises a plurality of pinions.
  • said transmission comprises a single pinion, said intermediate pinion, rotatably coupled to said input pinion and to said output pinion.
  • the pinion has an oblong shape having a first end in engagement with the input pinion and a second end in engagement with the output pinion.
  • the oblong shape of the intermediate pinion makes it possible to have a sufficiently large distance between the two ends to modify a transmission ratio between the input pinion and the output pinion while being able to be contained entirely in said housing.
  • the stops of the drive device are formed in the internal enclosure so that the intermediate gear is in contact with these stops when it reaches its extreme positions of rotation.
  • the stops are formed by the wall of the housing. Nevertheless, nothing prevents the provision of studs serving as stops attached to the wall of the housing in the interior enclosure of the housing.
  • the output pinion has a first series of teeth coupled to said transmission and a second series of teeth adapted to be in engagement with said bolt holder rod. More particularly, the dimensions of the output pinion are adapted so that the first series of teeth is arranged in the interior enclosure of the housing and that the second series of teeth passes at least partly through said housing output opening in order to be able to engage. of said bolt holder rod.
  • the radius of the output pinion at said first series of teeth is smaller than the radius of the output pinion at said second series of teeth.
  • the output pinion has a transmission ratio between said first series of teeth and said second series of teeth greater than 1.
  • the radius of the output pinion at the level of said second series of teeth being greater than that at the level of said first series of teeth
  • said intermediate pinion comprises a groove arranged to allow the passage of said second set of teeth of the output pinion.
  • the intermediate pinion comprises two parallel fingers each having a part of said first series of teeth coupled with said output pinion, the two fingers being spaced from each other so as to form said groove allowing passage of said second. set of teeth of the output pinion.
  • the wall of the housing and the pinions of said mechanism have conjugate assembly means. More particularly, these conjugate assembly means form a pivot connection between each pinion and the wall of the housing. These conjugate assembly means thus make it possible to define the axis of rotation of each pinion of said mechanism (in particular the input pinion, the intermediate pinion and the output pinion).
  • said stops are arranged to limit a rotational travel of said input pinion over an angle less than or equal to 45 °, more particularly less than 30 °, more particularly of the order of 20 °.
  • Limiting the rotational travel of the input pinion also makes it possible to limit the rotational travel of the operating stand.
  • the drive device (said stops and said mechanism) is adapted so that the operating leg can be moved between a closed position in which the leg is oriented vertically and an open position arranged at an angle of less than 45 °, more particularly of the order of 20 °, relative to said closed position.
  • Limiting the opening position of the maneuvering stand to an angle of less than 45 °, more particularly of the order of 20 °, with respect to the vertical makes it easier to handle a sliding leaf when it is moved between a open position and a closed position of the sash.
  • said mechanism has a transmission ratio between said input pinion and said output pinion greater than or equal to 2, in particular equal to 2 when the input pinion can be driven in rotation through an angle of 45 ° and equal to 4.5 when the input pinion can be rotated through an angle of 20 °.
  • said intermediate pinion it is advantageous in certain embodiments to provide for said intermediate pinion to have a bearing surface arranged to come into contact with an elastic blade in bending assembled to said wall of the housing in said inner chamber.
  • the mechanical resistance of the elastic blade when the latter is driven in flexion makes it possible to improve the comfort of handling of the operating crutch by a user.
  • the spring is placed between a bottom of the housing of the locking device and one end of said pin facing the bottom of the housing.
  • the pin is then in a release position when the spring is retracted when pressure is exerted on said pin towards the bottom of the housing of the locking device (in particular when the profile carrying the locking mechanism of the opening is placed against the frame).
  • the pin is then in a locking position when the spring is deployed when no pressure is exerted on said pin towards the bottom of the housing of the locking device (in particular when the profile carrying the lock of the opening is not placed. against the frame carrying each strike).
  • the locking device allows manipulation of the bolt holder rod only when the sliding leaf is in a closed position, that is to say when said hollow section of the leaf is placed against the frame.
  • the locking device is integrated into the housing of the drive device.
  • the invention also relates to a drive device, a cremone bolt and a sliding leaf characterized, in combination or not, by all or some of the characteristics mentioned above or below.
  • a drive device a cremone bolt and a sliding leaf characterized, in combination or not, by all or some of the characteristics mentioned above or below.
  • the various characteristics mentioned above or below should not be considered as closely or inextricably linked to each other, the invention being able to relate only to one of these structural characteristics or functional, or only part of these structural or functional characteristics, or only part of one of these structural or functional characteristics, or any grouping, combination or juxtaposition of all or part of these structural or functional characteristics.
  • Profile 20 is a longitudinal profile 20 arranged vertically when the sliding door is installed on a frame.
  • the profile 20 has a side face 21 intended to be placed opposite the frame and a front face 22 on which a crutch 23 can be mounted.
  • the lateral face of the profile 20 has a longitudinal hollow 24 in which a lock 26 of the opening can be placed.
  • the lock 26 comprises a faceplate 27 adapted to be fixed to the profile 20 of the opening.
  • the faceplate 27 defines a slideway facing a bottom 25 of the hollow 24 of the profile 20.
  • the locking gear 26 also comprises a rod 28 bolt holder mounted to slide in the slideway of the faceplate 27.
  • a spacer 31 is placed between the faceplate 27 and the bolt holder rod 28 to prevent friction between the faceplate 27 and the bolt holder rod 28 when the latter slides.
  • Two bolts 29 are assembled to the rod 28 bolt holder and project from the lock 26 towards the frame.
  • the faceplate 27 has two slots 30, each slot 30 being arranged to be crossed by a respective bolt 29.
  • a square, called square 32 leading, is assembled to the crutch 23 of maneuver.
  • the leading square 32 can be integrated into the maneuvering stand 23 so as to form a single piece as in the embodiment shown in FIG. figure 2 .
  • the square drive 32 and the maneuvering stand 23 can constitute two distinct and separable parts, as shown in figures 3 , 8 and 9 .
  • the crutch 23 has a housing 33 adapted to receive the square 32 leading.
  • the housing 33 of the crutch 23 may have a first portion 34 of section adapted to hold the square 32 leading and a second portion 35 of section greater than said first portion 34.
  • the crutch 23 of maneuver has a thread 37 connecting the outside of the lever handle 23 so that a retaining screw 36 can be inserted into this thread to hold the square 32 leading into said first portion 34
  • a spacer 38 is arranged in said second portion 35.
  • the spacer 38 makes it possible to place the operating stand 23 at a distance from a wall of the section 20 forming said front face 22 of the section 20 so as to avoid friction between the lever handle 23 and the profile 20 of the door.
  • the spacer makes it possible to hold the square 32 leading into the crutch 23 for maneuvering.
  • the wall of the section 20 forming the front face 22 of the section 20 comprises an opening 39 arranged to be crossed by the square 32 leading.
  • the profile 20 also comprises a drive device 40 shown in figures 4 to 6 according to one embodiment of the invention for driving in translation, from a rotation of the operating crutch 23, the rod 28 bolt holder along the faceplate 27 between a locking position in which each bolt 29 is engaged in a keeper of the frame on which is mounted the opening and an unlocking position in which each bolt 29 is not engaged in a keeper of the frame.
  • the frame includes a keeper for each bolt 29.
  • the drive device 40 is disposed between the bottom 25 of the hollow 24 of the section 20 and the rod 28 bolt holder. As a variant, if the drive device 40 has dimensions greater than the hollow 24 of the profile, it is possible to make an opening on the bottom 25 of the profile so that the drive device 40 can be placed in the profile.
  • the drive device 40 comprises a housing 41 having at least substantially the shape of a rectangular parallelepiped.
  • the housing 41 has two faces, called main faces 42, opposite to each other and parallel to said front face 22 of the profile 20.
  • a main face, called the main coupling face 43 is opposite the wall. of the section 20 forming the front face 22 of the section 20.
  • the housing 41 has two faces, called lateral faces 45, orthogonal to the main faces 42.
  • a lateral face, called the lateral coupling face 45 faces the rod 28 bolt holder.
  • the main faces 42 of the housing 41 have a length of between 50mm and 200mm, more particularly of the order of 125mm.
  • the main faces 42 of the housing 41 also have a width suitable for the housing 41 to be placed between the bottom 25 of the profile 20 and the rod 28 of the bolt 26.
  • the width of the main faces 42 of the housing 41 is between 15mm and 50mm, more particularly of the order of 30mm.
  • the side faces 45 of the box 41 have a width adapted so that the box 41 can be placed between the side walls of the section 20 delimiting with the bottom 25 of the section 20 the hollow 24 of the section 20. More particularly, the width of the sections. side faces 45 is between 10mm and 30mm, more particularly of the order of 16mm.
  • the housing 41 has a wall 46 defining an interior enclosure 47 of the housing 41.
  • the housing 41 comprises on its main coupling face 43 an opening, called the inlet opening 48, arranged opposite the opening in the wall of the profile 20. forming said front face 22 of the section 20.
  • the housing 41 comprises, on its lateral coupling face 45, an opening, called the outlet opening 49, arranged opposite the rod 28 bolt holder.
  • the housing 41 comprises a cover 53 removable from the rest of the housing 41, the cover 53 being formed by a portion of the wall 46 of the housing 41 defining the main face 43 of the coupling of the housing.
  • the cover comprises a first longitudinal end comprising two fixing projections 54 adapted to be housed in two fixing housings of the housing 41.
  • the cover also comprises a second longitudinal end comprising two openings 55 to allow screwing of the cover to the rest of the housing.
  • housing 41 which comprises two threads 56 to receive two screws.
  • the housing 41 and the gear 26 comprise mating assembly means so as to securely assemble the housing 41 to the faceplate 27.
  • the lateral coupling face 45 of the housing 41 comprises two threads 50, each thread 50. being adapted to receive a screw 51, each screw 51 passing through slots 52 of the faceplate 27 and the bolt holder rod 28 to reach the internal thread 50 of the housing 41 associated with this screw 51 and to fix the housing 41 to the faceplate 27.
  • the drive device 40 also comprises a gear mechanism 57 disposed in the interior enclosure 47 of the housing 41.
  • the mechanism 57 comprises three pinions 58, 69, 77.
  • a first pinion called the input pinion 58, is disposed opposite said input opening 48 and rotatably coupled to the square 32 leading assembled to the operating stand 23 and passing through said opening in the wall of the profile 20.
  • said input pinion 58 comprises a housing, said receiving housing 59, of square cross section facing the inlet opening 48 of the housing 41 and arranged to receive said square 32 leading.
  • the input pinion 58 and the housing 41 have mating assembly means forming a pivot connection about an axis 60 of rotation of said input pinion 58 centered on the housing 59 for receiving the input pinion 58. arranged to receive the square 32 leading.
  • the axis 60 of rotation of the input pinion 58 is therefore orthogonal to the main faces 42 of the housing 41.
  • the input pinion 58 has a cylindrical portion 61 of revolution comprising the housing 59 for receiving the pinion 58 of input and being centered on said axis 60 of rotation.
  • the interior enclosure 47 has a portion 62 delimited in a cylindrical shape of revolution centered on the axis of rotation by the wall 46 of the housing 41 so as to define a housing 59 for receiving the input pinion 58.
  • This portion 62 of the interior enclosure 47 enables the input pinion 58 to be held radially.
  • the cylindrical portion 61 of revolution of the input pinion 58 has a cylindrical projection 63 of revolution centered on the axis 60 of rotation of the input pinion 58 and being adapted to be housed in the inlet opening 48. of the housing 41 forming a bearing for this projection 63.
  • This projection 63 has a diameter smaller than said cylindrical portion 61 of revolution of the input pinion 58 and greater than the length a diagonal of the square section of the housing 59 for receiving the input pinion 58.
  • the input pinion 58 is held axially by the wall portions 46 of the housing 41 forming said main faces 42.
  • the cylindrical portion 61 of revolution of the input pinion 58 also comprises a through thread 64 adapted to receive a screw, called a retaining screw 65, to hold said square 32 leading into said housing.
  • the housing 41 So as to be able to mount the square 32 leading after the housing 41 is assembled to the faceplate 27 of the gear 26, the housing 41 has a slot 66 adapted so that a screwdriver can reach said retaining screw 65 disposed in the thread 64 of the input pinion 58.
  • the rod 28 bolt holder and the faceplate 27 also each has a slot facing said slot of the housing 41 so that a screwdriver can reach the housing 41 and said retaining screw 65.
  • the input pinion 58 also comprises an arm 67 projecting from said cylindrical portion 61 of revolution of the input pinion 58 and of the housing 59 for receiving the input pinion 58.
  • the arm 67 includes a distal end having two teeth 68.
  • the drive device 40 comprises another pinion, called the intermediate pinion 69.
  • the intermediate gear 69 is coupled to the input gear 58.
  • the intermediate pinion 69 and the housing 41 have conjugate assembly means forming a pivot connection about an axis 70 of rotation of said intermediate pinion 69. More particularly, the axis 70 of rotation of the intermediate pinion 69 is orthogonal to the main faces 42 of the housing 41.
  • the housing 41 comprises a pivot, called the intermediate pivot 71, extending into the interior enclosure along said axis 70.
  • rotation of said intermediate pinion 69 and the intermediate pinion 69 comprises a bore 72 in which is introduced said intermediate pivot 71 of the housing 41 so as to form said pivot connection.
  • Said intermediate pinion 69 has an oblong shape.
  • the intermediate gear 69 comprises two arms 73a, 73b extending from of said bore 72 of intermediate gear 69 in a direction opposite to each other.
  • a first arm 73a of the intermediate pinion 69 is coupled to said arm 67 of the input pinion 58.
  • the first arm 73a of the intermediate pinion 69 comprises a distal end comprising three teeth 74 between which the two teeth 68 of the input pinion 58 are interposed.
  • the transmission ratio between the input pinion 58 and the intermediate pinion 69 is greater than 1.
  • a second arm 73b of the intermediate pinion 69 is coupled to another pinion, called the output pinion 77, of the drive device 40.
  • the intermediate pinion 69 thus forms a transmission between the input pinion 58 and the output pinion 77.
  • the second arm of the intermediate pinion 69 comprises a distal end having two fingers, called upper finger 75a and lower finger 75b, parallel to each other and spaced from each other by a groove 96.
  • Each finger 75a, 75b of the distal end of the second arm of the intermediate pinion 69 has three teeth 76a, 76b.
  • the intermediate pinion 69 is held axially by the wall portions of the housing 41 forming said main faces 42.
  • the output pinion 77 and the housing 41 have mating assembly means forming a pivot connection about an axis 78 of rotation of said output pinion 77, the axis 78 of rotation of the output pinion 77 being orthogonal to the main faces 42 of the housing 41.
  • the output pinion 77 comprises a toothed main portion 79 and two pivots, called output pivots 80, extending along the axis 78 of rotation of the output pinion 77 projecting from said main portion 79 toothed in a direction opposite to each other.
  • each main face of the housing 41 comprises an orifice 81a, 81b forming a bearing for receiving a respective output pivot 80.
  • the main toothed portion of the output pinion 77 comprises two series 82, 83 of teeth.
  • a first series 82 of teeth is coupled to the second arm of said intermediate pinion 69 and a second series 83 of teeth is coupled to the rod 28 bolt holder.
  • the distance between the second series 83 of teeth and the axis 78 of rotation of the output pinion 77 (that is to say the radius of the second series 83 of teeth) is greater than the distance between the first series 82 of teeth and the axis 78 of rotation of the output pinion 77 (i.e. the radius of the first series 82 of teeth).
  • the transmission ratio between the first series 82 of teeth and the second series 83 of teeth of the output pinion 77 is greater than 1.
  • the transmission ratio between said input pinion 58 and said output pinion 77 is greater than or equal to 2.
  • the output pinion 77 is held axially by the wall portions of the housing 41 forming said main faces 42.
  • the first series 82 of teeth includes four teeth 84 and is arranged on either side of the second series of teeth.
  • two teeth, called upper teeth 84a, of the first series 82 of teeth are arranged on a first side of the second series 83 of teeth and are in engagement with the teeth 76a of the upper finger 75a of the second arm 73b of the pinion. 69 intermediate.
  • Two other teeth, called lower teeth are arranged on a second side of the second series 83 of teeth opposite the first side. These two lower teeth are in engagement with the teeth 76b of the lower finger 75b of the second arm 73b of the intermediate pinion 69.
  • Said second series 83 of teeth comprises three teeth 85a, 85b, 85c.
  • the output opening 49 of the housing 41 is crossed by at least one tooth 85a, 85b, 85c of said second series 83 of teeth so that said second series 83 of teeth is in position. taken with the rod 28 bolt holder.
  • the groove 96 of the second arm 73b of the intermediate pinion 69 allows rotation of the output pinion 77 by allowing the passage of at least part of the teeth 85a, 85b, 85c of the second series 83 of teeth of the pinion 77 of exit.
  • the bolt holder rod 28 comprises three adjacent lights 86a, 86b, 86c making it possible to couple the bolt holder rod 28 to the output pinion 77.
  • a first lumen called the lower lumen 86a, has a bearing surface 87a, defined by an edge of an upper longitudinal end of the lower lumen 86a, against which a first tooth 85a of said second series 83 of teeth of the output pinion 77 can be willing.
  • This bearing 87a allows the output pinion 77 to drive the rod 28 upwards from a low position of the rod 28 bolt holder when the operating stand 23 is rotated in a clockwise direction of rotation so as to place the bolt 29 in a locked position.
  • a second lumen, called central lumen 86b, of the rod 28 bolt holder has two spans 87b, 87c, defined by edges of the central lumen 86b at the longitudinal ends of the central lumen 86b, against which a central tooth 85b of said second 83 series of teeth of the output pinion 77 can be arranged.
  • These bearing surfaces 87b, 87c allow the output pinion 77 to drive the bolt carrier rod 28 upwards or downwards from a central position of the bolt carrier rod 28, when the operating crutch 23 is rotated. according to a clockwise direction of rotation (to move the rod 28 bolt holder upwards) or according to a trigonometric direction of rotation (to move the rod 28 bolt holder downwards).
  • a third lumen, called the upper lumen 86c, of the bolt holder rod 28 has a bearing surface 87d, defined by a border of a lower longitudinal end of the upper lumen 86c, against which a third tooth 85c of said second series 83 of teeth of the output pinion 77 can be arranged.
  • This bearing 87d allows the output pinion 77 to drive the rod 28 down from a high position of the rod 28 bolt holder when the operating stand 23 is rotated in a trigonometric direction of rotation so as to place the bolt 29 in an unlocked position.
  • the drive device 40 comprises a locking device 88 integrated into the housing 41.
  • This locking device 88 comprises a housing 89 and a pin 90 assembled to slide at least in part in this housing 89.
  • the pin 90 can be moved between a locking position in which the pin 90 is adapted to be able to pass through a slot 91 of the faceplate 27 so as to prevent sliding of the rod 28 bolt holder in the faceplate 27 and a release position wherein the pin 90 no longer passes through said slot 91 of the faceplate 27 so as to allow sliding of the rod 28 bolt holder.
  • the pin also passes through the slot 86c of the rod 28 bolt holder to access the slot 91 of the faceplate 27.
  • the locking device also comprises a spring 92 disposed in said housing 89 between a bottom of the housing 89 of the locking device and one end of said pin 90 facing the bottom of the housing 89.
  • the spring 92 is adapted to return the pin 90 in said locking position from said release position.
  • the pin 90 is in a release position when the spring 92 is retracted when pressure is exerted on said pin 90 towards the bottom of the housing 89 of the locking device (in particular when the profile 20 carrying the locking lever 26 of the opening is placed against the frame) allowing the spring 92 to be retracted.
  • the pin 90 is then in a locking position when the spring 92 is deployed when no pressure is exerted on said pin 90 towards the bottom of the housing 89 of the locking device (in particular when the profile 20 carrying the lock 26 of the opening is not placed against the frame carrying the keeps).
  • the locking device allows a displacement of the rod 28 bolt holder only when the sliding leaf is in a closed position, that is to say when said hollow section 20 of the leaf is placed against the frame.
  • the drive device 40 comprises a bending elastic blade 93 arranged in the interior enclosure 47 of the housing 41 and said intermediate pinion 69 has a bearing surface 94 arranged to come into contact with this blade 93.
  • the mechanical resistance of the blade 93 when the latter is driven in flexion by said bearing surface 94 of the intermediate pinion 69 makes it possible to improve the comfort of handling of the operating stand 23 by a user.
  • the drive device 40 comprises stops 95a, 95b defined in the interior enclosure 47 of the housing 41 and being adapted to define the extreme positions of the pinions 58, 69, 77 of the mechanism 57.
  • the stops 95a, 95b are formed by the wall 46 of the housing 41, in particular by the wall portions defining the side faces 45 of the housing 41. More particularly, the stops 95a, 95b are arranged so that the intermediate pinion 69 can abut against them to define its extreme positions of rotation.
  • the extreme positions of rotation of the intermediate pinion 69 make it possible to define the extreme positions of rotation of the input pinion 58 and of the output pinion 77.
  • the extreme positions of rotation of the input pinion 58 make it possible to define extreme positions of rotation of the operating stand 23.
  • the stops 95a, 95b of the drive device 40 are arranged so that the operating leg 23 can be moved between a closed position in which the leg 23 is oriented vertically and an open position arranged at a lower angle. at 45 °, more particularly of the order of 20 °, relative to said closed position. Limiting the opening position of the maneuvering leg 23 to an angle of less than 45 °, more particularly of the order of 20 °, with respect to the vertical makes it possible to facilitate the handling of a sliding leaf when it is moved between an open position and a closed position of the leaf.
  • the transmission ratio between said input pinion 58 and said output pinion 77 is chosen to be equal to 2 when the input pinion can be rotated through an angle of 45 ° and equal to 4.5. when the input pinion can be rotated through an angle of 20 °
  • the invention can be the subject of numerous variants and applications other than those described above.
  • the different structural and functional characteristics of each of the embodiments described above should not be considered as combined and / or closely and / or inextricably linked to each other, but on the contrary as simple juxtapositions.
  • the structural and / or functional characteristics of the various embodiments described above may be the subject, in whole or in part, of any different juxtaposition or of any different combination.
  • the stops 95a, 95b defining the extreme positions of rotation of the pinions 58, 69, 77 of the mechanism 57 may be formed from studs arranged in the interior enclosure 47 of the housing 41.
  • the mechanism 57 may comprise several pinions. 69 intermediate between the input pinion 58 and the output pinion 77.
  • the input pinion 58 may be directly coupled to the output pinion 77.
  • a drive device 40 according to the invention can be used to manipulate a rod 28 for a locking bolt 26 for a sliding leaf.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Transmission Devices (AREA)
  • Seats For Vehicles (AREA)
  • Power-Operated Mechanisms For Wings (AREA)
  • Branching, Merging, And Special Transfer Between Conveyors (AREA)
  • Lock And Its Accessories (AREA)

Claims (17)

  1. Vorrichtung zum translatorischen Antreiben einer Türverriegelungsstange (28) in Bezug auf ein Schiebeöffnungselement, wobei diese Vorrichtung Folgendes umfasst:
    - ein Gehäuse (41) das eine Wand aufweist, die eine innere Einschließung (47) des Gehäuses (41) eingrenzt,
    - einen Mechanismus (57), der in der inneren Einschließung (47) abgeordnet ist und Folgendes umfasst:
    ∘ ein Eintrittsorgan (58), das in dem Gehäuse (41) montiert ist, um in Bezug auf das Gehäuse (41) in Bewegung angetrieben werden zu können, und gegenüber einer ersten Öffnung, Eintrittsöffnung (48) genannt, angeordnet, die in der Wand (46) des Gehäuses (41) gebildet ist,
    ∘ ein Austrittsorgan (77), das in dem Gehäuse (41) montiert ist, um in Bezug auf das Gehäuse (41) in Bewegung angetrieben werden zu können, wobei das Austrittsorgan (77) eine Verzahnung aufweist,
    ∘ eine Betätigung, die angepasst ist, um das Austrittsorgan (77) in Bezug auf das Gehäuse (41) ausgehend von einer Bewegung des Eintrittsorgans (58) in Bezug auf das Gehäuse (41) in Bewegung anzutreiben,
    wobei die innere Einschließung (47) des Gehäuses (41) Anschläge bildet, die angepasst sind, um extreme Verschiebepositionen des Eintrittsorgans (58) und des Austrittsorgans (77) des Mechanismus (57) zu definieren,
    dadurch gekennzeichnet, dass die Wand mindestens eine zweite Öffnung, Austrittsöffnung (49) genannt, aufweist, und dadurch, dass mindestens ein Teil der Verzahnung des Austrittsorgans (77) die Austrittsöffnung (49) durchquert.
  2. Vorrichtung nach Anspruch 1, dadurch gekennzeichnet, dass die Austrittsöffnung (49) mindestens im Wesentlichen orthogonal zu der Eintrittsöffnung (48) ist.
  3. Vorrichtung nach einem der Ansprüche 1 oder 2, dadurch gekennzeichnet, dass der Mechanismus (57) ein Räderwerk ist, das mindestens zwei Ritzel (58, 69, 77) umfasst, wobei ein erstes Ritzel, Eintrittsritzel (58) genannt, das Eintrittsorgan bildet, und ein zweites Ritzel, Austrittsritzel (77) genannt, das Austrittsorgan bildet.
  4. Vorrichtung nach einem der Ansprüche 1 bis 3, dadurch gekennzeichnet, dass das Eintrittsorgan in Bezug auf das Gehäuse (41) in Bezug auf eine theoretische Drehachse, die die Eintrittsöffnung (48) durchquert, in Drehung geführt wird.
  5. Vorrichtung nach Anspruch 4, dadurch gekennzeichnet, dass das Eintrittsorgan (58) eine Ablage, Aufnahmeablage (33) genannt, umfasst, die sich entlang der theoretischen Achse des Eintrittsorgans erstreckt.
  6. Vorrichtung nach Anspruch 1 bis 4, dadurch gekennzeichnet, dass das Gehäuse (41) Mittel zum Fixieren des Gehäuses (41) an einem Kopfstück (27) eines Treibriegelverschlusses (26) eines Schiebeöffnungselements umfasst, auf dem die Türverriegelungsstange (28) gleitend montiert ist.
  7. Vorrichtung nach einem der Ansprüche 3 bis 6, dadurch gekennzeichnet, dass die Wand (46) des Gehäuses (41) und die Ritzel (58, 69, 77) des Mechanismus (57) gemeinsame Mittel zum Zusammensetzen aufweisen.
  8. Vorrichtung nach einem der Ansprüche 3 bis 7, dadurch gekennzeichnet, dass der Mechanismus (57) eine Betätigungsübersetzung zwischen dem Eintrittszritzel (58) und dem Austrittsritzel (77) von größer oder gleich 2 aufweist.
  9. Vorrichtung nach einem der Ansprüche 3 bis 8, dadurch gekennzeichnet, dass die Anschläge angeordnet sind, um einen Drehweg des Eintrittsritzels (58) auf einen Winkel von kleiner oder gleich 45° zu begrenzen.
  10. Vorrichtung nach einem der Ansprüche 3 bis 9, dadurch gekennzeichnet, dass das Austrittsritzel (77) eine erste Reihe (82) von Zähnen aufweist, die mit der Betätigung gekoppelt sind, und eine zweite Reihe (83) von Zähnen, die angepasst sind, um mit der Türverriegelungsstange (28) in Eingriff zu stehen.
  11. Vorrichtung nach Anspruch 10, dadurch gekennzeichnet, dass das Austrittsritzel (77) eine Betätigungsübersetzung zwischen der ersten Reihe (82) von Zähnen und der zweiten Reihe (83) von Zähnen von größer als 1 aufweist.
  12. Vorrichtung nach einem der Ansprüche 3 bis 11, dadurch gekennzeichnet, dass die Betätigung ein einmaliges Ritzel, Zwischenritzel (69) genannt, umfasst, das in Drehung an das Eintrittsritzel (58) und an das Austrittsritzel (77) gekoppelt ist.
  13. Vorrichtung nach Anspruch 12, dadurch gekennzeichnet, dass das Zwischenritzel (69) eine Nut (96) umfasst, die angeordnet ist, um den Durchgang der zweiten Reihe an Zähnen des Austrittsritzels (77) zu ermöglichen.
  14. Vorrichtung nach einem der Ansprüche 1 bis 13, dadurch gekennzeichnet, dass das Gehäuse (41) eine Form eines rechteckigen Quaders aufweist und Hauptseiten (42) des Gehäuses (41) aufweist, die eine Breite kleiner als 30 mm aufweisen und laterale Seiten (44), die eine Breite kleiner als 50 mm aufweisen.
  15. Treibriegelverschluss für ein Schiebeöffnungselement, wobei dieser Treibriegelverschluss eine Türverriegelungsstange (28) und eine Vorrichtung nach einem der Ansprüche 1 bis 14 in Eingriff mit dieser Türverriegelungsstange (28) umfasst.
  16. Schiebeöffnungselement, Folgendes umfassend:
    - ein Hohlprofil (20),
    - einen Treibriegelverschluss (26), umfassend eine Türverriegelungsstange (28), die in dem Hohlprofil (20) angeordnet sind, wobei die Türverriegelungsstange (28) in Bezug auf das Hohlprofil (20) verschiebbar montiert ist,
    - eine Manövrierstütze (23), die mit einem Vierkant, führender Vierkant (32) genannt, zusammengesetzt ist,
    - eine Vorrichtung, Antriebsvorrichtung (40) genannt, um die Türverriegelungsstange (28) in Bezug auf das Hohlprofil (20) translatorisch anzutreiben, wobei diese Vorrichtung Folgendes umfasst:
    ° ein Gehäuse (41) das eine Wand aufweist, die eine innere Einschließung (47) des Gehäuses (41) eingrenzt,
    ° einen Mechanismus (57), der in der inneren Einschließung (47) abgeordnet ist und Folgendes umfasst:
    • ein Eintrittsorgan (58), das in dem Gehäuse (41) montiert ist, um durch den führenden Vierkant (32) in Bezug auf das Gehäuse (41) in Bewegung angetrieben werden zu können, und gegenüber einer ersten Öffnung, Eintrittsöffnung (48) genannt, angeordnet, die in der Wand (46) des Gehäuses (41) gebildet ist,
    • ein Austrittsorgan (77), das in dem Gehäuse (41) montiert ist, um in Bezug auf das Gehäuse (41) in Bewegung angetrieben werden zu können,
    • eine Betätigung, die angepasst ist, um das Austrittsorgan (77) in Bezug auf das Gehäuse (41) ausgehend von einer Bewegung des Eintrittsorgans (58) in Bezug auf das Gehäuse (41) in Bewegung anzutreiben,
    wobei die innere Einschließung (47) des Gehäuses (41) Anschläge bildet, die angepasst sind, um extreme Verschiebepositionen des Eintrittsorgans (58) und des Austrittsorgans (77) des Mechanismus (57) zu definieren,
    dadurch gekennzeichnet, dass:
    - das Gehäuse (41) der Antriebsvorrichtung (40) in dem Hohlprofil (20) des Schiebeöffnungselements platziert ist, das den Treibriegelverschluss (26) aufnimmt,
    - die Wand (46) des Gehäuses (41) der Antriebsvorrichtung (40) eine zweite Öffnung, Austrittsöffnung (49) genannt, aufweist,
    - das Austrittsorgan des Mechanismus (57) eine Verzahnung aufweist, wobei mindestens ein Teil dieser Verzahnung die Austrittsöffnung (49) durchquert.
  17. Öffnungselement nach Anspruch 16, dadurch gekennzeichnet, dass es eine Vorrichtung nach einem der Ansprüche 1 bis 14 umfasst.
EP18207058.1A 2017-11-28 2018-11-19 Vorrichtung zum antrieb einer türverriegelungsstange eines schiebe-öffnungselements Active EP3489443B1 (de)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
FR1761308A FR3074209B1 (fr) 2017-11-28 2017-11-28 Dispositif pour entrainer une tringle porte-pene d'ouvrant coulissant

Publications (2)

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EP3489443A1 EP3489443A1 (de) 2019-05-29
EP3489443B1 true EP3489443B1 (de) 2020-07-29

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EP (1) EP3489443B1 (de)
ES (1) ES2828327T3 (de)
FR (1) FR3074209B1 (de)
MA (1) MA46662B1 (de)
PT (1) PT3489443T (de)

Family Cites Families (4)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
EP1243728B1 (de) * 2001-03-20 2005-06-15 SCHÜCO International KG Antriebseinheit für Fenster oder Türen
DE10354185B4 (de) * 2003-11-20 2015-04-02 Aug. Winkhaus Gmbh & Co. Kg Kantengetriebe
DE202010004686U1 (de) * 2010-04-08 2011-09-02 MACO Vermögensverwaltung GmbH Beschlag für Fenster, Türen o.dgl.
DE102015206905A1 (de) * 2015-04-16 2016-10-20 Roto Frank Ag Getriebebeschlag sowie Fenster, Tür oder dergleichen mit einem Getriebebeschlag

Non-Patent Citations (1)

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

Also Published As

Publication number Publication date
FR3074209B1 (fr) 2019-11-08
FR3074209A1 (fr) 2019-05-31
ES2828327T3 (es) 2021-05-26
EP3489443A1 (de) 2019-05-29
MA46662B1 (fr) 2020-11-30
PT3489443T (pt) 2020-10-22

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