EP0683296B2 - Système à ferrures positionnable automatique en partie pour fenêtres, portes ou similaires - Google Patents

Système à ferrures positionnable automatique en partie pour fenêtres, portes ou similaires Download PDF

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Publication number
EP0683296B2
EP0683296B2 EP95107727A EP95107727A EP0683296B2 EP 0683296 B2 EP0683296 B2 EP 0683296B2 EP 95107727 A EP95107727 A EP 95107727A EP 95107727 A EP95107727 A EP 95107727A EP 0683296 B2 EP0683296 B2 EP 0683296B2
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EP
European Patent Office
Prior art keywords
corner
angle
fitting system
fitting
mushroom head
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.)
Expired - Lifetime
Application number
EP95107727A
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German (de)
English (en)
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EP0683296B1 (fr
EP0683296A1 (fr
Inventor
Hans-Peter Schenck
Dieter Renz
Paul Greisner
Wolfgang Lau
Horst Dr. Schwenk
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Aug Winkhaus GmbH and Co KG
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Aug Winkhaus GmbH and Co KG
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Application filed by Aug Winkhaus GmbH and Co KG filed Critical Aug Winkhaus GmbH and Co KG
Publication of EP0683296A1 publication Critical patent/EP0683296A1/fr
Publication of EP0683296B1 publication Critical patent/EP0683296B1/fr
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Classifications

    • 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
    • E05C9/18Details of fastening means or of fixed retaining means for the ends of bars
    • E05C9/1808Keepers
    • 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
    • E05C9/18Details of fastening means or of fixed retaining means for the ends of bars
    • E05C9/1825Fastening means
    • E05C9/1833Fastening means performing sliding movements
    • E05C9/185Fastening means performing sliding movements parallel with actuating bar
    • E05C9/1858Fastening means performing sliding movements parallel with actuating bar of the roller bolt type
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D15/00Suspension arrangements for wings
    • E05D15/48Suspension arrangements for wings allowing alternative movements
    • E05D15/52Suspension arrangements for wings allowing alternative movements for opening about a vertical as well as a horizontal axis
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05DHINGES OR SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS
    • E05D15/00Suspension arrangements for wings
    • E05D15/48Suspension arrangements for wings allowing alternative movements
    • E05D15/52Suspension arrangements for wings allowing alternative movements for opening about a vertical as well as a horizontal axis
    • E05D15/5208Suspension arrangements for wings allowing alternative movements for opening about a vertical as well as a horizontal axis with means for transmitting movements between vertical and horizontal sliding bars, rods or cables
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05YINDEXING SCHEME RELATING TO HINGES OR OTHER SUSPENSION DEVICES FOR DOORS, WINDOWS OR WINGS AND DEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION, CHECKS FOR WINGS AND WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05Y2900/00Application of doors, windows, wings or fittings thereof
    • E05Y2900/20Application of doors, windows, wings or fittings thereof for furnitures, e.g. cabinets

Definitions

  • the invention relates to a partially automatic turn-tilt hardware system for windows, doors or like.
  • a drive rod system on the sash frame usually with manual operation, is provided for the optional setting of different fitting functions, in particular locking function, turning function and turn-tilt function, with corner drives ensure that of a central actuator (e.g. handle) made of locking elements along several frame bars in the desired Way can be moved.
  • the corresponding sash frames made of wood, plastic, steel, aluminum or composite systems each have a sash rebate groove for receiving the corner deflections and the connecting them Connection units consisting of faceplate section and drive rod section.
  • the corner angle of the corner drive and the faceplate sections cover the possibly stepped wing rebate circumferential groove, so that a pleasant Appearance results with little risk of contamination.
  • the cycle time is not longer than the cycle time of previous processing stages, in particular welding stage with welding plastic or aluminum bars and cleaning step to level the weld seams.
  • This cycle time is, for example, 2 minutes.
  • a fitting according to the preamble of claim 1 is known from EP-A-0 397 179, Figures 3 and 4. It can be seen cylindrical locking pins 14, 1 5 of the upper pivot deflections remote from the pivot bearing, with the fixed frame side Interacting strikers. By contrast, the extension arm 25 of the opening scissor unit acts elongated locking projection 21 together in the direction of displacement. It has a comparatively large distance from upper pivot-side wing frame corner, and it apparently penetrates over much of the length of the upper Horizontal spar cuff rail, so that from a special corner deflections remote from the pivot different opening scissors-faceplate corner deflection unit, as is the case with turn-tilt fittings was previously common (see for example DE 39 15 796 A1, Figure 1).
  • the invention has for its object a tilt and turn hardware system for windows, doors or the like to provide, which is easier to manufacture and to post.
  • Each deflection is provided with at least one locking member on each of the two corner angle legs, so that the corner drive in addition to its actual function, namely the transmission of the actuating force for displacement the connecting rod sections, also as a carrier of two adjustable locking links on its corner angle legs serves.
  • the two frame legs converging in the corresponding frame corner are each one Bolt member assigned to the corner drive.
  • the locking members generally have at least one Locking function in a closed position of the fitting, what a safe fitting function and security against burglary Meaning is.
  • at least the locking member on one of the two angle legs can also perform other functions depending on the type of fitting used.
  • the corner deflections to one to the longitudinal center plane the corner deflection of the vertical bisecting plane are mirror-symmetrical. Based on these Training, the respective angle orientation is irrelevant during assembly.
  • the corner deflections can be struck in such a way that, based on a direction of rotation the same corner deflection leg always points in the circumferential direction along the wing rebate circumferential groove.
  • This asymmetrical design allows the locking members to be designed differently to different To be able to optimally perform functions. Due to the given same orientation of the corner drives on the sash frame, the attachment of all corner deflections to a sash frame with the help of a be made single mounting head without this having to perform additional rotational movements.
  • At least one of the locking members of the respective corner angle in is essentially designed as a mushroom head.
  • the mushroom head can, for example, with an appropriately adapted fixed frame side
  • the striking plate work together, with the advantage of security against tearing out and thus increased security against break-ins.
  • the sash frame can be used at all four corners if burglar resistance is required be formed with the corner drive according to the invention.
  • the mushroom head with respect to its direction of movement along the corner angle leg elongated neck between the corner angle and the enlarged diameter has a free mushroom head end.
  • the mushroom head on the horizontal at a lower corner deflection remote from the axis of rotation Corner angle leg is arranged and when turning the wing with a rotary section of a fixed frame side Fitting part interacts.
  • the mushroom head comes up on the trestle-like rotating section when the wing is closed.
  • the mushroom head in a tilted position of the wing with a tilting section of the fixed frame-side fitting part interacts.
  • the mushroom head thus forms together with the fixed frame side Fitting part of a tilting bearing, the mushroom head preferably being supported on the tilting section in order to provide reliable fitting functions sure.
  • the locking element which is essentially designed as a mushroom head
  • the horizontal leg of the upper corner bracket on the pivot bearing is arranged and interacts with a control curve of the stay scissor unit. This configuration enables the angular orientation to be maintained when moving from one lower corner of the axis of rotation, which forms the tilting bearing on its horizontal angle leg also carries the mushroom head.
  • control cam from a control link on the underside of an extension arm is formed, which in a ready-to-turn position D of the fitting is the enlarged mushroom head end preferably engages behind.
  • the minimum overall height of the mushroom head is relatively large, as this is in the area of the corner deflections remote from the pivot bearing each interacts with a striking plate on the frame side.
  • the extension arm follows the Mushroom head in the vertical direction and the extension arm including the control link.
  • at least the extension arm section carrying the control link has an L-profile shape or has a C-profile shape. Due to the L-profile shape or C-profile shape, there is increased bending strength, so that the sheet thickness can be reduced accordingly. The vertical clearance can therefore be maintained become.
  • the locking element on one of the two corner angle legs in is essentially designed as a mushroom head and that the locking member on the other corner angle leg from one transverse to Longitudinal center plane of the corner deflection optionally adjustable locking member, preferably eccentric pin, is formed.
  • the locking element which can be optionally adjusted transversely to the longitudinal center plane of the corner deflection, permits the optional adjustment a required closing pressure.
  • the fitting can also be readjusted after longer use if necessary to ensure proper functioning.
  • the invention also relates to an upper corner deflection with pivoting scissor unit, in particular for the above-mentioned fitting system with the features of claim 17, which increased by mechanical stability in the ready-to-turn position distinguishes itself, since the control link then engages around it Mushroom head at least severely limits bending of the extension arm under load.
  • the Corner drive 12 of a uniform design for all corners, if required, regardless of the profile and frame design.
  • the corner deflection 12 comprises a corner bracket 14, accordingly bent at a right angle Sheet metal, a power transmission member 16, in particular in the form of two spring sheet strips 16a and 16b within a C-shaped guide bracket 16c, two identical support parts 18 at the two ends of the corner bracket 14 for supporting the corner deflection 12 on the bottom of a double-stepped groove 20 on the circumferential surface of a fold Wing frame 22 and drive rod coupling elements 24 at the two ends of the power transmission member 16. How is indicated at the top right in FIG.
  • the free end of the connecting rod coupling element 24 has a cross section U-shaped coupling part formed with an inwardly projecting toothing on the side legs of the U-shape 24a, into which a correspondingly complementarily toothed end section 26a of a drive rod section 26 can be inserted from above.
  • a faceplate section 28 provided, which is supported on the corresponding step edge 20a and with its corresponding End section 28a can be coupled to the associated end section 14a of corner bracket 14.
  • the end section is for this purpose 14a cranked towards the groove base 20b in a Z-shape and provided with a countersunk bore 14b in alignment with a corresponding bore 28b of the end section 28a of the faceplate section 28 and one to the groove base 20b leading through bore 18b of the support member 18th
  • the support member 18 is further provided with a second through hole 18c in alignment with a corresponding one countersunk bore 14c of the corner bracket 14 for screw fastening the corner drive 12 to the casement 20 regardless of the faceplate section 28.
  • An outwardly projecting projection 18d of the support part passes through an assigned through opening 14d of the corner bracket 14 and is caulked there to hold both parts together in a loss-proof manner.
  • the drive rod coupling element 24 formed as an elongated sheet metal part and provided with an elongated hole 24b into which the support part 18 is inserted.
  • the corner drive 12 is provided with two locking members, one on each of the two corner angle legs 36a, 36b, which are coupled to the force transmission member 16 for the corresponding co-movement.
  • One of the two locking members is formed by an eccentric pin 30 of conventional construction, which is transverse to The sash level is adjustable for the optional adjustment of a sash pressure.
  • the eccentric pin can in particular be formed by a holder 30a, which is connected to both the corresponding end of the force transmission member 16 and rigidly connected to the connecting rod coupling element 24, in particular riveted and which after passing through an elongated hole 32 of the corner bracket 14 an eccentric in different rotational positions definable eccentric head 30b carries.
  • Other constructions are also conceivable, such as stiff ones Riveting a continuous eccentric bolt.
  • the rigid coupling between the corner bracket 14 and the guide bracket 16c serves as depressions 42 of the angle legs 36a and 36b, which engage in corresponding recesses in the guide angle 16c.
  • the corner deflection 12 is inexpensive to manufacture due to the use of the same parts, namely Support part 18 and drive rod coupling element 24.
  • the corner drive 12 has no loose in the preassembled state Parts and is easy to store, especially in a magazine with a rectangular slot for receiving a series of corner brackets, each corner bracket leg to corner bracket legs in alignment with each other in the angular plane vertical direction.
  • the stop on the respective sash corner can be done automatically, for which the corner bracket 12 in one the first step is to lead to the frame corner (or vice versa) and then at least one of the two Insert screws into holes 14c, 18c and screw into groove base 20b.
  • the connecting unit 46b on the upper horizontal spar of the casement connects the axis remote from the axis of rotation Corner bearing 12 with the corner bearing 12 close to the rotary axis.
  • a guide pin 52a at the free end of a fixed frame Articulated extension arm 52 can be suspended in an elongated hole of an inclined faceplate section 54 in order to open it in a tilting manner of the wing.
  • a guide link is on the faceplate section of the connecting unit 46b 55 rotatably mounted as part of the scissor unit 56, the other end with the arm 52 is rotatably coupled.
  • the mushroom head 34 of the upper corner guide 12 close to the rotary axis serves to control the folding scissor unit 26, i.e. the fixing of the extension arm 12 on the casement in parallel to the casement orientation Opening the sash around the axis of rotation DA and for releasing the opening arm 52 for tilting opening the sash frame about the tilt axis KA indicated in FIG. 5 below.
  • the sash frame When the sash frame is tilted open, it is only symbolically supported on the pivot axis side indicated corner bearing 60 from the sash-fixed bearing sleeve 60a and on the fixed frame around the tilt axis KA pivotally mounted corner bearing pin 60b engaging sleeve 60a.
  • the sash frame On the side far from the axis of rotation on the other hand, the sash frame is supported on a fixed frame-side fitting part 62, specifically via the mushroom head 34 of the lower corner bearing 12 remote from the axis of rotation.
  • the corresponding section is shown in FIG. 9 in connection with FIG remove.
  • Figures 5 and 6 are the three common functional positions of the turn-tilt fitting for the respective bolt links each indicated separately and with S for the closed position, D for the ready-to-turn position and K for tilt ready position.
  • additional locking members 64 which are attached to additional units 66 are in turn each composed of a faceplate section and a drive rod section, which are only with are coupled at one end to a corner bracket 12.
  • One unit 66 is located on the vertical spar near the axis of rotation of the casement and is only coupled to the upper corner drive 12 close to the rotational axis, whereas the other unit 66 runs on the lower horizontal spar and only on the lower corner bearing 12 remote from the axis of rotation is coupled.
  • the already mentioned fixed frame-side fitting part 62 serving as a tilting bearing has a parallel to the tilting axis KA extending slot 68 to within a substantially U-shaped in cross section of Figures 7 to 9 Sheet metal stamping part 70, the leg edges of which are rigidly connected to a horizontally extending base sheet 72.
  • the elongated hole 68 is located in the middle leg of the U-shape.
  • One of the two side legs is with one in it Elongated hole 68 provided in the region of the longitudinal center of the elongated hole opening 74.
  • the recess 74 allows the mushroom head 34 to exit when the sash is rotated in the fitting position D and accordingly the reentry when turning the wing.
  • the base plate 72 is in the area of the recess 74 in the region of the recess 74, particularly when the sash is slightly lowered provided with a ramp bevel 76, on which the mushroom head end 34a can possibly run, thereby the sash to raise slightly.
  • the fitting part 62 thus serves as a headstock.
  • the mushroom head 34 is located within the one on the left in FIGS. 5 and 6 Section 68a of the elongated hole 68 with an elongated hole width adapted to the cross section of the neck 34b of the mushroom head 34. Now there is practically no play in the opening direction.
  • the mushroom head 34 In the tilted position K, in turn, the mushroom head 34 is located in the section 68b on the right in FIGS. 5 and 6 of the elongated hole 68 with movement play perpendicular to the sash frame level due to corresponding oversizing the slot width.
  • the mushroom head can therefore pivot and depending on the position of the tilt axis KA move perpendicular to the sash frame level to allow the sash to tilt.
  • the mushroom head 34 In the tilt position the mushroom head 34 can in turn be supported on the base plate 72 and thus as a tilt bearing on the axis of rotation away Serve side of the wing.
  • FIGS. 10 to 14 show the situation in the area of the raising arm unit, of that simplicity only the extension arm 52 is shown with the guide pin 52a at one end and one with the axis of rotation DA defining bearing sleeve 70 at the other end.
  • the bearing sleeve 70 acts with a fixed frame side indicated in FIG. 10 Pivot fitting part 72 together.
  • a coupling bolt 52b is used to couple the guide link 55 in accordance with FIG. 5.
  • a first adjustment device 74 is indicated roughly schematically for optional purposes Shortening or lengthening the effective length of the raising arm 52, for example with the aid of one in FIG. 10 indicated adjusting screw 74a.
  • the extension arm 52 has an arm section 78 on the left in FIGS. 11 and 12, which holds the guide pin 52a and the coupling bolt 52b and which consists of a relatively thick, flat metal sheet. His in the figures, the right end is one with two horizontal rivets 79 with the horizontal leg 80a in cross section Figures 12 to 14 L-shaped arm section 80 riveted. Due to its L shape, section 80 be formed with a reduced material thickness, with the decisive advantage that the relatively tall mushroom head 34 has sufficient space below the horizontal leg 80a (see FIG. 13).
  • the extension arm is substantially reinforced by a cross section of FIGS. 12 and 13 U-shaped part 84 made of bent sheet metal or of die-cast material, the free leg ends on the Horizontal legs 80a rest, one of the two side legs 84a on the inside of the vertical leg 80b of the extension arm section 80a bears flat.
  • An elongated hole 86 extends in the middle section 84b of the sheet metal part 84 parallel to the longitudinal direction of the arm.
  • An opening 88 in the vertical leg 80b of the extension arm section 80 opposite side legs 84a of the sheet metal part 84 in turn opens into the elongated hole 86 to an entry and Allow mushroom head 34 to emerge (similar to the striking plate 62 serving as a tilting bearing).
  • there is the recess 88 at one end of the elongated hole so that the following functions are obtained:
  • the mushroom head 34 can easily emerge laterally from the slot 86, so that the sash can be tilted open about the tilt axis KA (see also Figure 13).
  • the mushroom head 34 is located inside of the elongated hole 86, so that the extension arm 52 is fixed to the casement in this way.
  • a second adjusting device 76 with a transverse adjusting spindle 76a allows an optional slight Swiveling (double arrow A1) of part 84 around a pivot pin 81 for adjusting the Closing pressure.
  • the adjusting spindle 76a engages in a toothing at the right end of the part 84 in FIG. 11.
  • the Pivot pin 81 on the left end of part 84 also serves to (rotatably) fasten part 84 to the extension arm 52nd
  • the fitting system according to the invention can also be used, for example, for pure turn windows be used.
  • the corner brackets 12 ' are mounted on the casement in a first work cycle, in particular in that, after the attachment of a first corner bracket 12 ', the casement is rotated by 90 ° is used to attach the second corner bracket using the same assembly machine (alternatively, one Also walk the assembly machine from corner to corner).
  • the assembly machine alternatively, one Also walk the assembly machine from corner to corner.
  • the corner deflection connecting units are then installed in a work cycle, but this is not the case in FIG. 15 is shown.
  • the fixed frame-side fitting part 62 serving as a tilting bearing in FIG. 5 can also remain unchanged the pure rotary fitting according to Figure 15 are used (fitting part 62 '), which in turn the manufacturing and Assembly costs reduced. However, in the case of the rotating fitting according to FIG Figure 5 not started.
  • the remaining fixed frame-side fittings are conventional striking plates.
  • the one with the mushroom head 34 ' grasp each cooperating striking plate 90 '(apart from the striking plate 62' already described) in the closed position, the mushroom head 34 'in order to ensure the desired pull-out strength.
  • the adjustable Eccentric pins 30 ' interact with simple striking plates 92'. This applies in the same way to the Mushroom heads 34 and eccentric pin 30 according to FIG. 5, to which the striking plates 90 and 92 are assigned.
  • the semi-automatic stopable according to the invention is distinguished Hardware system due to low manufacturing and assembly costs in one work cycle for the stop of the Corner angle and, if necessary, a further work cycle for the manual stop of the other fittings, which is not differs from the previous work steps.
  • the corner drives are in the form of a modular system Can still be used for different types of fittings such as turn-tilt fittings.

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  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Hinges (AREA)
  • Power-Operated Mechanisms For Wings (AREA)
  • Joining Of Corner Units Of Frames Or Wings (AREA)
  • Catching Or Destruction (AREA)

Claims (17)

  1. Système de ferrure pivotant et basculant, positionnable de façon partiellement automatique, susceptible de venir en butée, pour fenêtres, portes ou similaires, comprenant
    au moins deux coudes d'angle (12) à monter dans une rainure périphérique (20) de la feuillure du vantail sur un châssis de vantail (22), formés chacun par une cornière d'angle (14) formée par deux branches (36a, 36b) réunies de manière rigide l'une avec l'autre, comportant des éléments d'accouplement pour des profilés en U sur les deux extrémités de la cornière et un organe de transmission (16) monté de manière mobile sur la cornière d'angle (14) et muni d'éléments d'accouplement pour des bielles (24) sur les deux extrémités dudit organe, au moins un élément de verrouillage, monté de manière mobile sur la branche de la cornière d'angle et assemblé de manière mobile avec l'organe de transmission (16), étant prévu pour agir conjointement avec des pièces de ferrure du côté du châssis ou avec une unité à parallélogramme articulé de projection,
    au moins une unité d'assemblage du coude d'angle (46), formée par un segment de profilé en U (28) et un segment d'une bielle (26), destinée à relier les extrémités respectives du profilé en U et les extrémités respectives de la bielle avec les éléments d'accouplement pour des profilés en U ou les éléments d'accouplement pour des bielles de deux coudes d'angle (12) à assembler, de préférence sans organe de verrouillage,
    caractérisé en ce que l'un des coudes d'angle (12) peut être monté dans l'angle supérieur du châssis de vantait du côté du coussinet de pivotement et au moins un des organes de verrouillage coopère avec un parallélogramme articulé de projection (56) pour fixer parallèlement aux vantaux la ferrure dans une position prête à pivoter (D) et en ce que tous les coudes d'angle (12) du système de ferrure sont tous construits de la même manière.
  2. Système de ferrure selon la revendication 1, caractérisé en ce que les coudes d'angle sont conformés symétriquement par rapport à un plan bissecteur perpendiculaire au plan médian longitudinal du coude d'angle.
  3. Système de ferrure selon la revendication 1 ou 2, caractérisé en ce que, dans le cas où les coudes d'angle (12) sont conformés de manière asymétrique par rapport au plan bissecteur, les coudes d'angle (12) peuvent entrer en butée de telle sorte que, par rapport à un sens circulaire le long de la rainure périphérique de la feuillure du vantail, toujours la même branche du coude d'angle est orientée dans le sens circulaire.
  4. Système de ferrure selon l'une des revendications précédentes, caractérisé en ce qu'au moins l'un des organes de verrouillage de chaque cornière d'angle (14) est conformé sensiblement en forme de champignon (34).
  5. Système de ferrure selon la revendication 4, caractérisé en ce que le champignon (34) est conformé avec une collerette périphérique (34c) qui entre en contact avec une face extérieure de la cornière d'angle (14),
  6. Système de ferrure selon la revendication 5, caractérisé en ce que la collerette périphérique (34c) entre en contact avec une empreinte (40) réalisée sur la branche de la cornière d'angle (36a, 36b) en bordure d'un trou de guidage oblong (38) réalisé dans la branche de la cornière d'angle respective (36a).
  7. Système de ferrure selon l'une des revendications 4 à 6, caractérisé en ce que le champignon (34) est muni d'un collet (34b) allongé dans le sens de son déplacement le long de la branche de la cornière d'angle, entre la cornière d'angle (14) et la tête libre (34a) du champignon, de diamètre plus grand.
  8. Système de ferrure selon l'une des revendications 4 à 7, caractérisé en ce que, dans un coude d'angle (12) inférieur éloigné de l'axe de rotation, le champignon (34) est disposé sur la branche horizontale (36a) de la cornière d'angle et, au moment de la fermeture par pivotement du vantail, il coopère avec une partie de pivotement (trou oblong 74) d'une pièce de ferrure (62) du côté du châssis fixe.
  9. Système de ferrure selon la revendication 8, caractérisé en ce que, au moment de la fermeture par pivotement du vantail, le champignon (34) glisse sur la partie de pivotement (chanfrein 76) de forme semblable à un support de contact.
  10. Système de ferrure selon l'une des revendications 4 à 9, caractérisé en ce que, dans une position de basculement (K) du vantail, le champignon (34) coopère avec une partie de basculement (segment 68b du trou oblong) de la pièce de ferrure (62) du côté du vantail fixe.
  11. Système de ferrure selon la revendication 10, caractérisé en ce que le champignon (34) vient en appui dans la position de basculement (K) sur la partie de basculement.
  12. Système de ferrure selon l'une des revendications 4 à 11, caractérisé en ce que, dans la position de fermeture (S) du vantail, le champignon (34) entre en prise avec une partie de verrouillage (segment 68a du trou oblong) de la pièce de ferrure (62) du côté du châssis fixe.
  13. Système de ferrure selon l'une des revendications précédentes, caractérisé en ce que l'organe de verrouillage, conformé sensiblement en forme de champignon (34), est disposé contre la branche horizontale (36a) du coude d'angle (12) supérieur situé du côté du coussinet de pivotement et coopère avec une came de commande du parallélogramme articulé de projection (56).
  14. Système de ferrure selon la revendication 13, caractérisé en ce que la came de commande est formée par une coulisse de commande (sur la pièce 84) sur la face inférieure d'un bras de projection (52), laquelle, lorsque la ferrure est dans une position prête à pivoter (D), s'engage de préférence derrière la tête (34a) du champignon, de diamètre plus grand.
  15. Système de ferrure selon la revendication 14, caractérisé en ce qu'au moins la partie du bras de projection (80), qui porte la coulisse de commande, est un profilé en forme de L ou en forme de C.
  16. Système de ferrure selon l'une des revendications précédentes, caractérisé en ce que l'élément de verrouillage, monté sur l'une (36a) des deux branches de la cornière d'angle (36a, 36b), est conformé sensiblement en forme de champignon (34) et en ce que l'organe de verrouillage, monté sur l'autre branche de la cornière d'angle (36b), est formé par un organe de verrouillage, de préférence un doigt excentré (30), réglable à volonté transversalement au plan médian longitudinal du coude d'angle (12).
  17. Coude d'angle supérieur du côté du coussinet de pivotement, comprenant un parallélogramme articulé de projection, en particulier pour un système de ferrure selon l'une quelconque des revendications précédentes, comprenant une cornière d'angle (14) formée par deux branches (36a, 36b) réunies de manière rigide l'une avec l'autre, comportant des éléments d'accouplement pour des profilés en U (section d'extrémité 14a) sur les deux extrémités de la cornière et un organe de transmission (16) monté de manière mobile sur la cornière d'angle (14) et muni d'éléments d'accouplement pour des bielles (24) sur les deux extrémités dudit organe, dans lequel coude d'angle il est prévu sur chaque branche de cornière (36a, 36b) au moins un élément de verrouillage, monté de manière mobile sur la branche de cornière (36a, 36b) et assemblé de manière mobile avec l'organe de transmission (16), au moins un des deux organes de verrouillage est en forme de champignon (34) et l'autre organe de verrouillage est formé par un organe de verrouillage, de préférence un doigt excentré (30), réglable à volonté transversalement par rapport au plan médian longitudinal du coude d'angle (12), et l'organe de verrouillage, conformé sensiblement en forme de champignon (34), est disposé sur la branche horizontale (36a) du coude d'angle (12) supérieur du côté du coussinet de pivotement et coopère avec uns came de commande du parallélogramme articulé de projection (56), la came de commande étant formée par une coulisse de commande (sur la pièce 84) sur la face inférieure d'un bras de projection (52), laquelle, lorsque la ferrure est dans une position prête à pivoter (D), s'engage de préférence derrière la tête (34a) du champignon, de diamètre plus grand.
EP95107727A 1994-05-20 1995-05-19 Système à ferrures positionnable automatique en partie pour fenêtres, portes ou similaires Expired - Lifetime EP0683296B2 (fr)

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE4417842A DE4417842A1 (de) 1994-05-20 1994-05-20 Teilautomatisch anschlagbares Beschlagssystem für Fenster, Türen oder dergleichen
DE4417842 1994-05-20

Publications (3)

Publication Number Publication Date
EP0683296A1 EP0683296A1 (fr) 1995-11-22
EP0683296B1 EP0683296B1 (fr) 2000-01-05
EP0683296B2 true EP0683296B2 (fr) 2003-09-17

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Country Link
EP (1) EP0683296B2 (fr)
AT (1) ATE188531T1 (fr)
CZ (1) CZ288733B6 (fr)
DE (2) DE4417842A1 (fr)
HU (1) HU218762B (fr)
PL (1) PL177010B1 (fr)

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DE19520133C1 (de) * 1995-06-01 1996-12-19 Weidtmann Wilhelm Kg Drehfenster oder Dreh-Kipp-Fenster, -Tür o. dgl.
DE19547854C2 (de) * 1995-12-21 2001-02-08 Lemuth Praez Steile Gmbh Verfahren und Vorrichtung zur automatisierten Montage von Eckumlenkungen für Beschläge an den Flügeln eines Fensters oder dergleichen
DE29602793U1 (de) * 1996-02-16 1996-04-11 Siegenia Frank Kg Fenster oder Fenstertür mit Drehflügel- oder Drehkippflügel-Beschlag
DE19607366A1 (de) * 1996-02-27 1997-08-28 Winkhaus Fa August Treibstangenbeschlag-Montagesatz
DE19725627B4 (de) 1997-06-17 2007-07-19 Aug. Winkhaus Gmbh & Co. Kg Drehkipp-Beschlag-System
DE19734280A1 (de) 1997-08-07 1999-02-11 Winkhaus Fa August Verfahren und Scharnierbeschlag für eine montageautomatenunterstützte Montage an einem Flügel eines Fensters, einer Tür oder dergleichen
DE19736934C2 (de) 1997-08-25 2001-05-10 Roto Frank Ag Verriegelungsbeschlag
DE29914072U1 (de) * 1999-08-16 1999-11-18 Siegenia Frank Kg Verriegelungsbeschlag
DE20001477U1 (de) * 2000-01-28 2000-03-30 Siegenia Frank Kg Treibstangenbeschlag
DE10107471B4 (de) * 2001-02-15 2005-04-28 Schueco Int Kg Vitrine
DE10134249A1 (de) * 2001-07-18 2003-01-30 Roto Frank Ag Verriegelungsbeschlag mit drehbarer Riegelleiste
DE10149865A1 (de) 2001-10-10 2003-04-24 Siegenia Aubi Kg Drehkipp-Beschlagsystem
ATE341687T1 (de) * 2002-02-28 2006-10-15 Mayer & Co Verschlussgetriebe für flügel von fenstern, türen und dergleichen
ITBO20030723A1 (it) * 2003-11-28 2005-05-29 Gsg Int Spa Elemento di rinvio angolare per infissi.
DE102005007831A1 (de) * 2005-02-21 2006-08-31 W. Hautau Gmbh Motorisch antreibbare oder angetriebene Scherenanordnung
DE102005000073A1 (de) * 2005-06-01 2006-12-07 Aug. Winkhaus Gmbh & Co. Kg Schließblech für einen Verschluss eines Treibstangenbeschlages und Verschluss für einen Treibstangenbeschlag
WO2010012456A1 (fr) * 2008-07-29 2010-02-04 Sunflex Aluminiumsysteme Gmbh Cloison pliante et coulissante
GB201316572D0 (en) * 2013-09-18 2013-10-30 Ramsden Purchasing Ltd Door Locks
JP6411849B2 (ja) * 2014-10-02 2018-10-24 Ykk Ap株式会社 コーナードライブ及び建具
DE102016004918A1 (de) 2016-04-23 2017-10-26 Roto Frank Aktiengesellschaft Eckumlenkung für ein Fenster, eine Tür oder dergIeichen und Fenster, Tür oder dergleichen mit einer Eckumlenkung sowie Fenstersystem, Türsystem oder dergleichen
DE102016004916A1 (de) * 2016-04-23 2017-10-26 Roto Frank Aktiengesellschaft Fenstersystem und/oder Türsystem
CN110242159A (zh) * 2019-07-25 2019-09-17 深圳好博窗控技术有限公司 快装连接头、传动杆、连接组件及门窗结构
KR102362110B1 (ko) * 2019-11-04 2022-02-11 주식회사 공진 도어록킹장치
KR102340129B1 (ko) * 2021-02-25 2021-12-16 손영백 턴/틸트 창호시스템
KR102373584B1 (ko) * 2021-06-18 2022-03-11 주식회사 씨에스테크 환기 기능 및 수평 밀착 기능을 갖는 창호 조립체 및 이에 사용되는 걸림 안내부

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Also Published As

Publication number Publication date
EP0683296B1 (fr) 2000-01-05
PL308689A1 (en) 1995-11-27
HU218762B (hu) 2000-11-28
CZ130095A3 (en) 1996-04-17
PL177010B1 (pl) 1999-09-30
HUT71431A (en) 1995-11-28
EP0683296A1 (fr) 1995-11-22
HU9501484D0 (en) 1995-07-28
DE4417842A1 (de) 1995-11-23
DE59507550D1 (de) 2000-02-10
ATE188531T1 (de) 2000-01-15
CZ288733B6 (cs) 2001-08-15

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