EP3516149B1 - Combinaison d'un châssis de battant et d'un châssis dormant - Google Patents

Combinaison d'un châssis de battant et d'un châssis dormant Download PDF

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Publication number
EP3516149B1
EP3516149B1 EP17761845.1A EP17761845A EP3516149B1 EP 3516149 B1 EP3516149 B1 EP 3516149B1 EP 17761845 A EP17761845 A EP 17761845A EP 3516149 B1 EP3516149 B1 EP 3516149B1
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EP
European Patent Office
Prior art keywords
frame
wedge
leaf
sash
assembly
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
EP17761845.1A
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German (de)
English (en)
Other versions
EP3516149A1 (fr
Inventor
Christian Kluge
Georg Dinger
Matthias Weber
Sebastian SCHNITTERT
Michael Jung
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.)
Siegenia Aubi KG
Original Assignee
Siegenia Aubi KG
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Publication date
Application filed by Siegenia Aubi KG filed Critical Siegenia Aubi KG
Priority to PL17761845T priority Critical patent/PL3516149T3/pl
Publication of EP3516149A1 publication Critical patent/EP3516149A1/fr
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Publication of EP3516149B1 publication Critical patent/EP3516149B1/fr
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Classifications

    • EFIXED CONSTRUCTIONS
    • E06DOORS, WINDOWS, SHUTTERS, OR ROLLER BLINDS IN GENERAL; LADDERS
    • E06BFIXED OR MOVABLE CLOSURES FOR OPENINGS IN BUILDINGS, VEHICLES, FENCES OR LIKE ENCLOSURES IN GENERAL, e.g. DOORS, WINDOWS, BLINDS, GATES
    • E06B5/00Doors, windows, or like closures for special purposes; Border constructions therefor
    • E06B5/10Doors, windows, or like closures for special purposes; Border constructions therefor for protection against air-raid or other war-like action; for other protective purposes
    • E06B5/11Doors, windows, or like closures for special purposes; Border constructions therefor for protection against air-raid or other war-like action; for other protective purposes against burglary
    • E06B5/113Arrangements at the edges of the wings, e.g. with door guards to prevent the insertion of prying tools

Definitions

  • the invention relates to a combination of sash and frame according to the preamble of claim 1. Such combinations are already known.
  • the DE20215822 U discloses a combination of sash and frame according to the preamble of claim 1.
  • the EP 1116847 A2 discloses such a combination, in which a connecting rod fitting is attached to the wing, which can bring about a locking position with locking elements and locking engagements, in which the wing is fixed relative to the frame.
  • a connecting rod fitting is attached to the wing, which can bring about a locking position with locking elements and locking engagements, in which the wing is fixed relative to the frame.
  • means are provided which restrict the rebate air and which support the sash rebate against the frame rebate.
  • the sash can only be moved to a limited extent relative to the frame by burglary tools.
  • the bolt elements and bolt interventions can thus be subjected to less force and the overall resistance of the window or door is improved.
  • the disadvantage here is that this configuration requires greater care in the manufacture of the window or door, since a circulating rebate air is required for the functions of the wing.
  • the EP 0816609 A2 discloses a combination of a frame and a sash, wherein a drive rod fitting is arranged on the sash. This is equipped with conventional bolt elements and bolt interventions, but also with locking wedges.
  • the locking wedges are arranged on the connecting rod fitting on the frame. A locking point is formed by a pair of these wedges.
  • the wedges of a pairing lie against one another with their tips, which have the smallest dimensions perpendicular to the folds.
  • the wedge associated with the frame is fixed to it and can be brought into and out of contact with the wedge attached to the drive rod when actuated and the associated displacement of the drive rod.
  • the locking elements are in engagement with the locking engagements and the wedges assigned to one another lie against one another with the wedge surfaces, so that the effective extension of the wedges between the folding surfaces is maximized.
  • the disadvantage here is that the espagnolette fitting is comparatively difficult to operate, so that the wedges all have to be carried during normal operation and, after a certain period of time, the rebate air by lowering the sash is reduced, as a result of which the wedges meet at the wrong time and to an extent not intended.
  • the movable wedges on the drive rod fitting require longer guides of the moving elements, which remain free of fastening elements, which reduces the burglar resistance.
  • a wing lifter which provides a pivotably mounted two-armed lever, the first arm of which strikes the wing when the wing is closed, thus causing the lever to pivot, so that the second arm rests on the wing.
  • the lever arms are arranged in such a way that both lever arms rest in the desired position. This configuration is not suitable for effectiveness in the event of a break-in, since it does provide a movable element in the form of the lever, but only an effective position against a reduction in the clearance air by moving the wings.
  • mushroom head pins are usually used as locking elements, such as from the DE 8402163 U1 known.
  • the locking elements known from this engage behind the edge of a locking slot in the striking plate with a head which is larger in diameter than a shaft. This counteracts a displacement of the locking element from the striking plate perpendicular to the folding plane.
  • the perpetrators first try to move the sash frame using suitable tools, either to overwhelm the fastenings of the fitting parts with larger tools and greater forces, or to force the locking elements out of the striking plates by moving them along the fold. In order to counteract this, the number of locking elements is increased, which has a negative impact on the assembly effort and the costs.
  • the GB 2 365 053 A discloses a fuse element. This consists of a first component 11 attached in the frame or sash rebate and a second component 12 attached in the sash or frame rebate.
  • the first component forms a rear grip for a locking element which can be displaced by means of a spring. Due to the arrangement, this device can only be used close to the hinge straps and causes a latch-like element to be swiveled in easily behind a fixed engagement.
  • the disadvantage here is that such securing device can not be arranged at other points on the wing or frame, and the hinge side is well secured anyway by the formation of axes by means of the hinges.
  • the object of the invention is therefore to find a combination of sash frame and frame, which in the event of a break-in actively displacing the sash frame relative to Counteracts frame and does not affect the actual everyday function of the fitting.
  • At least one assembly is provided in the rebate air area between the sash frame and the frame, which, due to a displacement of the wing and enlargement of the rebate air area, automatically adjusts in its effective extension between the folds to their spacing.
  • This configuration has the effect that the assembly adjusts its effective extension following a temporary expansion of the enlarged rebate air and thereby counteracts an oppositely acting displacement of the wing.
  • the assembly limits the rebate clearance to a minimum and reduces the force exerted on the locking elements.
  • the assembly is not perceivable or cannot be blocked in its normal function and the complexity of the locking fitting remains low.
  • the module can also be retrofitted as required and is independent of the quality of the locking fitting.
  • the assembly comprises a pair of locking wedges which are arranged on the frame or on the sash frame independently of the fitting, and by means of a force storage device from a first position in which the locking wedges with their tips stand against one another in one position, in which the tips and the back of the wedges lie against each other and the wedges are held in the first position by a fixation which is lifted when the sash is moved to the frame.
  • This first and simple embodiment remains inoperative during normal operation of the casement.
  • a further development of this embodiment provides that the wedge surfaces are provided with a small toothing which forms plane surfaces parallel to the fold surface and slopes increasing in the direction of action of the force storage device, so that the wedges cannot be pushed back by a force acting perpendicular to the fold surface.
  • the assembly consists of several plane-parallel plates which are pivotably mounted about an axis running approximately perpendicular to a fold and which are each loaded with an energy store and have a stratified extension.
  • This configuration is particularly simple and robust.
  • the plates can be made from sheet metal by punching, and their position cannot be shifted in the event of a break-in by normal forces.
  • the panels move from a stop arranged on the casement or frame into a supply position when the casement is closed be pushed.
  • the plates are thereby moved against the restoring force of the energy accumulator and remain movable.
  • a further alternative embodiment provides that the assembly comprises a T-punch which can be displaced and acted upon in the direction of the opposite fold, which is mounted with little play in a guide of a base body and which has an inclined asymmetrical head surface running transversely to its guide, the shorter T- Leg points to the opening direction.
  • This configuration is very simple, but effective, since the punch tilts in the guide in the event of an asymmetrical loading by sash or frame fold and cannot be pushed back into the base body.
  • a more stable embodiment provides that the guidance of the T-stamp is rectangular.
  • the assembly comprises a wedge mounted on the frame and a sash frame and at least one wedge is movable transversely to the rebate surface and the wedges are provided with wedge surfaces falling in the closing direction.
  • a special embodiment provides that the wedge surfaces are shaped like steps, so that normal forces do not lead to a displacement of the wedges.
  • FIG. 1 an assembly 1 for equipping a combination of a casement 5 and a window frame 4 of a window / a door is shown.
  • the assembly 1 is according to the Fig. 6 fixed in a rebate air area 6 lying between the folds 2 and 3 of the frame 4 and the sash 5.
  • a fitting that serves to lock the casement 5 in the frame 4.
  • the first exemplary embodiment shown provides that the assembly 1 comprises a pair of wedges 10, 11 which are arranged on the frame 4 or on the casement 5 independently of a fitting.
  • the wedge 10 is an elongate plate 9 with a ramp 12 which runs in three parallel planes 13, 14 and 15.
  • the ramp 12 divides the plate 9 into a flatter section 16 and a region 17 that is raised to it. While the outer plane 13 forms the smooth boundary edge of the plate 9, the plane 14 represents a backdrop 18 that runs essentially parallel to it acute angle kinking end section 19.
  • the wedge 11 engages in the link 18 with lateral pins 20, 21 arranged in pairs. In the in Fig. 2 standby position shown, the pin 21 is moved in the region of the end portion 19 and out of the straight-line backdrop 22. The wedge 11 is in the Fig. 2 shown starting position determined by the engagement of the pin 21. The wedge 11 is designed such that the back 23 in the ready position protrudes slightly above the raised area 17.
  • the wedge 11 has in addition to the pin 20, 21 on its underside 24 in the Fig. 2 recognizable teeth 25 on.
  • the toothing 25 is designed like a sawtooth and the tooth tip points up the ramp 12. while the tooth base or back forms a right angle to the underside 24.
  • a second set of teeth 26 is provided in level 15 of ramp 12. This toothing 26 is designed as a mirror image of the toothing 25, so that the tapering tip points in the direction of the section 16.
  • the toothing 26 runs essentially at right angles to the longitudinal axis of the plate 9 and parallel to it a rabbet surface, but it can also be provided that the teeth run inclined.
  • a spring 27 forming an energy accumulator lies in a longitudinal opening of the plate 9 and is fastened at one end to the plate 9 and at the other end to the wedge 11. In the in Fig. 2 standby position shown, the spring 27 is tensioned.
  • the configuration of level 13, which is raised to levels 14 and 15, results in a guide for the wedge 11.
  • the arrangement results in the following mode of operation: If the sash 5 is moved relative to the frame 4 during an attempted break-in, for example by a tool attacking the sash 5, then the fold 3 abuts the back 23 or when the plate 9 is on Sash frame 5 is attached to the fold 2. If there is a further displacement, then the pin 21 is pushed out of the end section 19 and the pin 21 reaches the area of the straight-line link 22. The wedge 11 now slips in due to the force applied by the spring 27 Direction of the area 17 until the wedge 11 abuts the opposite fold 2 or 3. The back 23 thus comes to bear earlier on the opposite fold 2 or 3 and thereby prevents the sash 5 from being able to be moved further in the said direction.
  • the serrations 25, 26 allow displacement in the ascending direction of the ramp 12, but not in the opposite direction.
  • An arrangement of a second module 1, which acts identically, on the opposite sash frame edge is particularly advantageous, since the displacement in both directions can thereby be restricted.
  • the wedge 11 is smaller on its side pointing in the direction of the region 17 than at the opposite end and thereby forms a tip 28 and a wedge back 29.
  • the plate 9 forms the second wedge 10 in the region of the ramp 12 with the tip 30 pointing towards the section 16 and the wedge back 31 lying in the direction of the region 17.
  • a pushing back and advancing of the wedge 11, as already described above, is prevented or achieved by the spring 27, the wedges 10, 11 with their tips 28, 30 standing against one another in a position in which the tips 28, 30 are subjected to force and the wedge backs 29, 31 of the wedges 10, 11 lie against one another and the wedges 10, 11 are held in the first position by a fixation, which is lifted when the sash 5 is displaced to the frame 4 by the pin 21 emerging from the end section 19.
  • the Fig. 5 shows that the assembly according to the first embodiment essentially consists of only four components, namely the plate 9, the wedge 11, the spring 27 and a pin 32 for fixing the spring 27 in the plate 9.
  • the second also shows an assembly 1 which is provided in the rebate air region 6 between the sash frame 5 and the frame 4 and which is a result of a Displacement of the sash 5 and the associated enlargement of the rebate air area 6 in its effective extension 35 between the rebates 2, 3 automatically adjusts to their spacing.
  • the assembly 1 comprises a T-punch 40 which can be displaced and acted upon in the direction of the opposite fold 2, 3 and which is mounted with little play in a guide 41 or sleeve of a base body 42 and one transverse to its guide 41 runs inclined asymmetrical head surfaces 43, 44, the shorter T-leg 45 facing the opening direction 46.
  • This embodiment is based on the self-locking of the T-punch 40, which is displaceable in the guide during normal axial actuation, but tilted under an eccentric load.
  • the principle is as a knocking woodpecker, e.g. B. at http://dodo.fb06.fh-muenchen.de/lab_didaktik/sw-1-10.htm , already known.
  • the head surface 43, 44 is inclined at an angle 48 with respect to a horizontal 47, so that the rear head surface 44 lying in the closing direction 49 is at a somewhat greater distance from the fold 2 than the head surface 43 at its front end 50
  • Figures 7 to 11 details of assembly 1 are clarified.
  • the T-punch 40 is mounted in a guide 41 of the base body 42 and is supported by a spring 52 on a plate 53 which closes the base body 42.
  • the guide 41 is in turn T-shaped, so that a reinforcing web 56 connecting the T-plate 54 to the web 55 can enter a rear channel 57.
  • the spring 52 is partially received in a bore of the T-punch 40.
  • the guide 41 is like that Fig.
  • the web 55 has a rectangular cross section and the guidance of the T-stamp 40 is also rectangular.
  • the extent 35 of the assembly 1 thus corresponds to the distance between the folds 2, 3, that is to say the rebate air region 6. If wear or the like occurs as a result. the assembly 1 adapts accordingly to a change in the rebate air region 6.
  • the fold 3 is displaced either in or against the direction of the fold 2.
  • the T-punch 40 moves up and takes the position accordingly Fig. 6 back in, in which the T-stamp 40 rests with the head surface 44 on the fold 3.
  • the web 55 in the guide 51 is tilted over the longer T-leg 58.
  • the T-punch 40 blocks further displacement of the sash 5 in Direction of the frame 4.
  • the effective extension of the assembly 1 always corresponds to the distance between the folds 2, 3. The more force is applied during the attempt to break open, the more the T-punch 40 jams in the guide 51.
  • the Fig. 12 to 14 show a further embodiment of the invention.
  • the assembly 1 has a structure that can be adapted to the spacing of the folds 2, 3, but for this purpose a further frame-side or wing-side component is provided.
  • the assembly 1 therefore comprises a wing-side stop 60 and a frame-side block 61, which together form the assembly 1.
  • the block 61 consists of the Fig. 13 and 14 a base plate 62 and an axis 63 on which a plurality of plates 64 are rotatably stacked independently of one another.
  • a spring arm 65 of a rake-like spring element 66 is assigned to each plate 64.
  • the mounting of the plates 64 is designed in such a way that the plates 64 have an outer radius 67 which runs eccentrically to the axis 63 and which enables the respective spring arm 65 to introduce an eccentric force.
  • an outer edge facing the stop 60 is also provided with a generous radius 68.
  • the stop 60 is dimensioned such that its vertical dimension corresponds to a partial height of the clearance clearance and, based on an ideal distance, takes the dimension of the base plate 62 into account in such a way that the stop 60 abuts the plates 64.
  • the stop 60 can be mounted on a connecting rod component which is fitted in the fitting groove 59. However, it can also be provided that the base plate 62 is attached to the connecting rod fitting part and the stop 60 is a fitting part to be provided anyway on the frame 4, for example in the form of a bolt engagement. If the sash 5 is closed, the stop 60 abuts one or more of the plates 64.
  • the plates 64 are deflected under tension of the spring arm 65 assigned to them and pivot into a passive position directed at 90 ° to the starting position.
  • the stop 60 with its surface 69 running parallel to the folding surface, is now only slightly spaced from a plate 64 in the starting position. If the sash is now displaced by the action of force, the stop 60 abuts the flat surface 70 of the uppermost plate 64 and thereby supports the sash frame 5 against further displacement.
  • the stop 60 is spaced apart from the plane surface 70 and if a distance from the plane surface 70 is exceeded that is greater than the vertical dimension of a plate 64 previously pushed into the passive position, the stop 60 loses the Contact with the edge thereof and the plate 64 pivots through the associated spring arm 65 from its passive position back to your starting position. As a result, the effective extension of the assembly 1 is increased by the vertical dimension of the plate 64 and the scope for further displacements under the action of force is reduced.
  • Attachment to the casement 5 is advantageous if the assembly 1 is to be attached to a lower horizontal window or door leg, since the assembly 1 is thereby better protected from dirt.
  • mounting on the frame 4 has proven itself on the upper frame spar.
  • the burglar-resistant effect is improved by being attached to opposite window or door bars.
  • the security of the window or the door is already improved by the fact that the assembly 1 is provided on one side and a rigid clearance air limitation is attached on the opposite side.
  • the assembly 1 again consists of two wedges 71, 77 which act with one another.
  • One of the wedges 71 is displaceably mounted transversely to the fold on a base 72.
  • the base 72 is shaped like a frame and has a T-shaped outline, which is based on two fastening ears 73.
  • the wedge 71 plunges into the window 84 and engages under two edge strips 75 with wings 74, as a result of which the wedge 71 is guided.
  • Springs 76 act on the wedge 71 and act on the wedge 71 with a force component pointing in the closing direction 49.
  • the wedge 71 is assigned a second wedge 77, which is fixedly attached to the frame 4 when the wedge 71 with the base 72 is assigned to the sash 5.
  • the wedge 77 is fastened to the casement 5.
  • the wedges 71, 77 are arranged such that their wedge surfaces 78, 79 abut against one another when the casement 5 is closed.
  • the wedges 71, 77 are provided along the wedge surfaces 78, 79 with a step-like contour.
  • the vertical sections 80, 81 of the wedge surfaces 78, 79 abut one another, so that the wedge 71 is displaced in the closing direction 49 along the base 72 transversely to the fold 2, 3.
  • the horizontal step sections 82, 83 remain slightly apart and at a maximum by a little less than one step height. If an attempt is made to break in, the horizontal step sections 82, 83 collide and prevent further displacement of the casement 5 relative to the window frame 4. If further attempts are made to achieve an opposite casement movement, the vertical sections 80, 81 slide past each other and the Wedge 71 may assume a new position relative to wedge 77 if the distance caused by the burglary tool exceeds the height of the adjacent steps.

Landscapes

  • Engineering & Computer Science (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Wing Frames And Configurations (AREA)
  • Specific Sealing Or Ventilating Devices For Doors And Windows (AREA)

Claims (8)

  1. Combinaison d'un cadre de battant (5) et d'un cadre dormant (4) d'une fenêtre / d'une porte avec une zone d'aération de feuillure (6), située entre les feuillures (2, 3) et une ferrure, disposée sur le cadre de battant (5) ou sur le cadre dormant (6) pour le verrouillage du battant dans le cadre,
    caractérisée en ce que
    dans la zone d'aération de feuillure (6), entre le cadre de battant (5) et le cadre dormant (4) est prévu au moins un groupe de composants (1), qui, à la suite d'un déplacement du cadre de battant (5) et un agrandissement de la zone d'aération de feuillure (6), par extension efficace (35) entre les feuillures (2, 3), s'adapte automatiquement à leur intervalle et bloque par extension efficace un retour en arrière.
  2. Combinaison selon la revendication 1,
    caractérisée en ce que
    le groupe de composants (1) comprend un couple de cales (10, 11), qui sont disposées sur le cadre dormant (4) ou sur le cadre de battant (5), indépendamment de la ferrure, et, par un dispositif d'accumulation de force, passent d'une première position, dans laquelle les cales de fermeture sont l'une à côté de l'autre avec leurs pointes (28, 30) à une position, dans laquelle les pointes (28, 30) et le dos (31, 29) des cales (10, 11) sont les uns à côté des autres, et les cales (10, 11), sont maintenues fixées dans la première position, qui est annulée lors d'un déplacement du cadre de battant (5) par rapport au cadre dormant (4).
  3. Combinaison selon la revendication 1,
    caractérisée en ce que
    le groupe de composants (1) comprend plusieurs plaques (64), qui, montées en pivotement, le long d'un plan parallèle, s'étendant à peu près perpendiculairement par rapport à une feuillure (2, 3), sont chacune soumises à l'action d'un accumulateur de force (65) et, empilées, présentent ensemble avec un bloc (61), disposé sur la feuillure opposée (3, 2), l'extension (35).
  4. Combinaison selon la revendication 3,
    caractérisée en ce que
    les plaques (64) lors de la fermeture du cadre de battant (5) sont contraintes dans une position passive par un bloc (61), qui est disposé sur le cadre de battant (5) ou le cadre dormant (4).
  5. Combinaison selon la revendication 1,
    caractérisée en ce que
    le groupe de composants (1) comprend un organe de tamponnage en T (40) pouvant être déplacé en direction de la feuillure (2 ou 3) opposée et étant sollicité par une force, lequel est monté, avec peu de jeu, dans un guidage d'un corps de base (42) et est doté d'une face de tête (43, 44) asymétrique, inclinée transversalement par rapport à un guidage (41), sachant que sa branche de T la plus courte (45) est orientée dans la direction d'ouverture (46).
  6. Combinaison selon la revendication 5,
    caractérisée en ce que
    le guidage de l'organe de tamponnage en T (40) est de conception rectangulaire.
  7. Combinaison selon la revendication 1,
    caractérisée en ce que
    le groupe de composants (1) comprend une cale (71, 77), qui est montée sur le cadre dormant (4) et sur le cadre de battant (5), et qu'au moins une cale (71) est déplaçable transversalement par rapport à la feuillure (2 ou 3) et que les cales (71, 77) sont pourvues de surfaces de cale (78, 79) en pente descendante dans la direction de fermeture.
  8. Combinaison selon la revendication 7,
    caractérisée en ce que
    les surfaces de la cale (78, 79) sont formées à la manière de marches d'escalier.
EP17761845.1A 2016-09-20 2017-08-28 Combinaison d'un châssis de battant et d'un châssis dormant Active EP3516149B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL17761845T PL3516149T3 (pl) 2016-09-20 2017-08-28 Kombinacja złożona z ramy skrzydła i ościeżnicy

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE202016005742.2U DE202016005742U1 (de) 2016-09-20 2016-09-20 Kombination aus Flügelrahmen und Blendrahmen
PCT/EP2017/071482 WO2018054653A1 (fr) 2016-09-20 2017-08-28 Combinaison d'un châssis de battant et d'un châssis dormant

Publications (2)

Publication Number Publication Date
EP3516149A1 EP3516149A1 (fr) 2019-07-31
EP3516149B1 true EP3516149B1 (fr) 2020-07-08

Family

ID=57352149

Family Applications (1)

Application Number Title Priority Date Filing Date
EP17761845.1A Active EP3516149B1 (fr) 2016-09-20 2017-08-28 Combinaison d'un châssis de battant et d'un châssis dormant

Country Status (4)

Country Link
EP (1) EP3516149B1 (fr)
DE (1) DE202016005742U1 (fr)
PL (1) PL3516149T3 (fr)
WO (1) WO2018054653A1 (fr)

Family Cites Families (7)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE8402163U1 (de) 1984-01-26 1984-05-17 August Bilstein GmbH & Co KG, 5828 Ennepetal Beschlag fuer dreh-kipp-fluegel von fenstern, tueren od. dgl.
GB2290336A (en) * 1994-06-18 1995-12-20 Plus Plan Door or window security device
DE19625946C2 (de) 1996-06-28 1998-10-29 Pax Gmbh Kombination aus Flügelrahmen und Blendrahmen eines Fensters/einer Tür
DE20000238U1 (de) 2000-01-11 2000-03-23 Siegenia-Frank Kg, 57074 Siegen Fenster oder Tür
GB2365053B (en) * 2000-06-14 2003-10-29 Cotswold Architect Prod A device for resisting forced opening of a window
DE20215822U1 (de) * 2002-10-15 2003-01-02 Roto Frank Ag Beschlag
US20070289219A1 (en) 2006-06-14 2007-12-20 Newell Operating Company Sash Lift Mechanism

Non-Patent Citations (1)

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

Also Published As

Publication number Publication date
WO2018054653A1 (fr) 2018-03-29
EP3516149A1 (fr) 2019-07-31
PL3516149T3 (pl) 2020-12-14
DE202016005742U1 (de) 2016-10-27

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