EP2740868B1 - Armature de baguette de fermeture formée comme un renvoi d'angle - Google Patents

Armature de baguette de fermeture formée comme un renvoi d'angle Download PDF

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Publication number
EP2740868B1
EP2740868B1 EP12008187.2A EP12008187A EP2740868B1 EP 2740868 B1 EP2740868 B1 EP 2740868B1 EP 12008187 A EP12008187 A EP 12008187A EP 2740868 B1 EP2740868 B1 EP 2740868B1
Authority
EP
European Patent Office
Prior art keywords
connection
locking strip
window
strip fitting
fitting according
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.)
Not-in-force
Application number
EP12008187.2A
Other languages
German (de)
English (en)
Other versions
EP2740868A8 (fr
EP2740868A1 (fr
Inventor
Dirk Hanel
Eike Diem
Jürgen Mattausch
Barbara REICH
Marcus Mehr
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.)
Roto Frank AG
Original Assignee
Roto Frank AG
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by Roto Frank AG filed Critical Roto Frank AG
Priority to EP12008187.2A priority Critical patent/EP2740868B1/fr
Publication of EP2740868A1 publication Critical patent/EP2740868A1/fr
Publication of EP2740868A8 publication Critical patent/EP2740868A8/fr
Application granted granted Critical
Publication of EP2740868B1 publication Critical patent/EP2740868B1/fr
Not-in-force legal-status Critical Current
Anticipated expiration legal-status Critical

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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
    • E05C9/24Means for transmitting movements between vertical and horizontal sliding bars, rods or cables for the fastening of wings, e.g. corner guides
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05CBOLTS OR FASTENING DEVICES FOR WINGS, SPECIALLY FOR DOORS OR WINDOWS
    • E05C19/00Other devices specially designed for securing wings, e.g. with suction cups
    • E05C19/001Other devices specially designed for securing wings, e.g. with suction cups with bolts extending over a considerable extent, e.g. nearly along the whole length of at least one side of the wing
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05CBOLTS OR FASTENING DEVICES FOR WINGS, SPECIALLY FOR DOORS OR WINDOWS
    • E05C19/00Other devices specially designed for securing wings, e.g. with suction cups
    • E05C19/06Other devices specially designed for securing wings, e.g. with suction cups in which the securing part if formed or carried by a spring and moves only by distortion of the spring, e.g. snaps
    • E05C19/063Released by pull or pressure on the wing
    • E05C19/066Released by pull or pressure on the wing made of plastics, e.g. hook-and-loop type fastener
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05FDEVICES FOR MOVING WINGS INTO OPEN OR CLOSED POSITION; CHECKS FOR WINGS; WING FITTINGS NOT OTHERWISE PROVIDED FOR, CONCERNED WITH THE FUNCTIONING OF THE WING
    • E05F7/00Accessories for wings not provided for in other groups of this subclass
    • E05F7/08Means for transmitting movements between vertical and horizontal sliding bars, rods, or cables

Definitions

  • the invention relates to a designed as corner deflection closing strip fitting for a corner region of a window, a door or the like, with a holding part, which is operatively connected to two, in an angle defined by the corner angle to each other extending closing strips.
  • the invention has for its object to provide a designed as corner deflection lock strip fitting, which is simple, works safely and is inexpensive. In particular, a simple assembly or disassembly should be possible.
  • a closing strip fitting of the type mentioned above in that the holding part by means of a rotary bearing rotatably mounted on a stationary base to be stored and that two support members are pivotally hinged by means of pivot bearings on the holding part, wherein at each Support element is attached to one of the closing strips by means of a connection.
  • the closing strip fitting therefore has the holding part rotatably mounted on the base part.
  • the base part is assigned to the corner region of the window, the door or the like, in particular fastened there by means of screws.
  • the two support elements are pivotally mounted by means of pivot bearings.
  • the one support element is associated with a closing strip and the other support element of the other locking strip, wherein the closing strips - as mentioned - extend in an angle defined by the corner angle to each other.
  • the respective closing strip is fastened by means of a connection to the associated support element. Due to this construction, the closing strips are stored in a defined manner and, in the case of a locking movement or an unlocking movement, they perform a reproducible movement defined by the bearing points, thereby enabling safe and error-free operation.
  • the construction according to the invention further ensures that one of an actuating device, such as a handle or a motorized actuator, displacement of one of the closing strips by means of the holding part and the support elements - around the corner - is transferred to the other locking strip, so it is sufficient to move preferably only one closing strip by means of the actuating device, while the other closing strip or the other closing strips receive their displacement movement / displacement movements of this closing strip.
  • the displacement movement is thus passed on from the closing strips with each other.
  • connection is or has at least one fixed connection.
  • this includes is a connection to understand, which arranges the two interconnected parts fixed to each other, so that no displacement, in particular displaceability to each other and preferably also no pivoting to each other.
  • connection is or has at least one Railnverstellanitati. This is to be understood as meaning a connection in which the interconnected parts can preferably be set at a distance relative to one another in terms of a direction relative to one another. For example, by means of the fixed connection, the respective support element with the associated closing strip with respect to their relative position to each other firmly connected, in particular rigid and thus neither slidably connected nor pivotally connected.
  • the fixed connection is a latching connection or has.
  • the assembly or disassembly is considerably simplified, since after allocation of the base to the sash or frame of the window, the door or the like, the closing strips can be mounted by simply clipping. Accordingly, when disassembling only a release of these locking connections is required.
  • the Gaznverstellanitati an eccentric or a multi-toothed connection or a screw channel connection or a split pin / recess connection with a plurality of split receptacle recesses or a rack / gear connection or a threaded rod / nut connection is or has.
  • Each mentionedChinanverstellanitati allows a defined displacement of the respective support member to the associated locking bar to make adjustments and / or to provide a tolerance compensation. This can absorb tensile and / or compressive stresses acting between the parts joined together by the connection.
  • the length adjustment connection is or has a clamping connection, in particular an over-center clamping connection or a wedge-clamping connection, preferably a wedge-clamping connection which can be actuated by means of an eccentric.
  • a clamping connection in particular an over-center clamping connection or a wedge-clamping connection, preferably a wedge-clamping connection which can be actuated by means of an eccentric.
  • the pivot bearing is an adjustable eccentric pivot bearing. Will the eccentric actuates this eccentric pivot bearing, so shifts accordingly the holding part, with the result that the support elements shift accordingly, which in turn are connected to the closing strips.
  • At least one of the pivot bearings is an adjustable eccentric pivot bearing. If the eccentric of this Exzenterschenklagerung actuated, so there is a relative displacement between the corresponding support member and the holding part, with the result that also hereby the aforementioned adjustment measures can be taken.
  • each closing strip has a cavity-forming, in particular U-shaped, cross-sectional profile at least at each of its end regions, wherein a region of the associated support element is arranged in an engaged manner in the cavity.
  • This cavity is present at least in the respective end region of the respective closing strip, but may also extend over the entire length of the closing strip.
  • the cavity or a portion thereof serves to receive a portion of the associated support element, whereby the attachment of these parts to each other, in particular by means of the connection.
  • the above-mentioned fixed connection which is designed in particular as a latching connection, however, can alternatively or additionally be designed as a screw connection, rivet connection, adhesive connection and so on.
  • the latching connection has a latching element and a locking receptacle latched to the latching element.
  • the latching element is formed on the support element and the latching receptacle on the closing strip.
  • the cavity of the closing strip forms the locking receptacle.
  • each of the support elements has at least one longitudinal slot for the formation of spring arms, which belong to the latching element and / or that the cavity of the closing strip is bounded by at least one elastic spring arm.
  • spring arms are formed, which belong to the locking element and compress during insertion of the locking element in the locking receptacle and rebound again in the detent, creating a rear handle is. If a disassembly, so it is only necessary to apply the spring arms such that they resiliently spring to each other, whereby the locking receptacle releases the locking element.
  • the preferably U-shaped cross-sectional profile of the closing strip to form at least one spring arm, ie, at least one material region, in particular a leg of the U, can spring due to the elasticity of the material, thus forming the spring arm, resulting in insertion the latching element of the material area moves, in particular the two legs from each other Remove piece so that the locking element can get into its catch seat.
  • the material region, in particular the leg elastically springs back when it engages, with the result that the detent element is trapped.
  • At least one spring arm, a latching hook is formed, which engages in the latched state of the latching connection behind a latching step of the latching receptacle or the latching element.
  • latching hooks and two latching steps can be provided on the latching receptacle on both spring arms of the latching element.
  • each of the support elements is designed as a mounting rail.
  • the longitudinal extent of the respective support rail extends in the direction of the longitudinal extension of the associated closing strip.
  • the respective support element engages in the interior of the U-shaped cross-sectional profile of the respective locking strip latching, whereby the parts are securely fastened to each other by means of the locking connection thus formed.
  • the feeding and locking movement of the parts takes place transversely, in particular at right angles to the longitudinal extent the associated mounting rail and the longitudinal extent of the associated closing strip.
  • the respective pivot bearing is arranged with holding part cross-over distance to the associated closing strip. This means that there is a gap between the respective pivot bearing and the associated closing strip, which makes it possible for the supporting element to be pivoted so far relative to the holding part that there is a certain overlapping position between the supporting element and holding part, without the closing strip interfering or blocking acts. This situation is needed to ensure that upon actuation of a plurality of closing strip fittings, which are associated with a window, a door or the like, all operatively connected coupled closing strips perform a similar movement, so either a locking movement or an unlocking movement. This will be discussed in more detail below.
  • the respective support rail is formed as an angle rail, which has two rail legs, one of which is associated with the pivot bearing and the other the associated locking strip. Due to the angular shape of the angle rail, the associated closing strip is held in a position lying further from the holding part to the outside (relative to the plane of the window). A further inward position would be present if the mounting rail would not be angular, but rectilinear, which is alternatively possible.
  • the holding part is preferably designed as a rocker, in particular rollover rocker.
  • a development of the invention provides that the pivot bearing and the two pivot bearings are arranged to each other such that they lie at the corners of an imaginary triangle. They are therefore not aligned along a straight line, but offset accordingly.
  • the base has a holmverbindenden corner angle.
  • This corner angle causes or supports a holding together of angularly arranged bars of a sash or a window frame of the window, the door or the like.
  • each leg of the corner bracket is fastened with corresponding fastening means on the respective spar.
  • a base plate is arranged, which carries the pivot bearing.
  • the base plate thus forms a solid basis for the moving parts of the closing strip fitting.
  • the base part has a hinge.
  • a lock cover fitting is realized by means of the invention, but also a storage of the sash of the window, the door or the like on the associated frame of the window, the door or the like.
  • the hinge band an opening position of the sash frame relative to the frame is feasible.
  • a plurality, spaced from each other closing strip fittings are provided with hinge straps, in particular in two opposite corner areas, to guide the sash securely on the frame pivot.
  • the invention further relates to a window, a door or the like, with at least one closing strip fitting according to at least one of the preceding embodiments.
  • such a door or the like is provided that at least two closing strip fittings are used, which are connected to each other via at least one, in particular only one, closing strip, in particular directly connected to each other.
  • the closing strip is therefore associated with its one end the one closing strip fitting and with its other end the other closing strip fitting, ie, it belongs to both closing strip fittings. In particular, it extends over the entire length of the associated spar of the window, the door or the like.
  • each corner of the sash or window frame of the window, the door or the like is assigned a closing strip fitting, the four closing bar fittings have four closing strips and each closing strip with arranged in the corner portions of each two closing strip fittings is in communication. These four closing strips are arranged like a frame.
  • the phrase "directly linked together” means that - except the closing strip - is no further element between the arranged in the corners of parts of the associated closing strip fittings.
  • there is at least one element so that then only by a "connected” or "indirectly connected” can be spoken.
  • the at least one element may, for example, be an actuating device which performs a closing strip displacement.
  • a portion of a closing strip extends on both sides of this actuating device, wherein the two sections together form the locking strip and wherein the two sections are actuated by the actuating device, that are displaced to bring about a locking position or an unlocking position.
  • the associated closing strip fittings which are located in the corners of the window, the door or the like, they are connected with the interposition of the actuator, so not directly connected.
  • the closing strip fitting is associated with a casement or a frame of the window, the door or the like.
  • a circumferentially formed on the window frame and / or sash receiving groove may be provided for the closing strips.
  • This circumferential receiving groove can - per spar - record a closing strip.
  • only some of the spars or only a spar of a window, the door or the like is provided with a corresponding number of closing strips or with a closing strip, which is located at least partially in the receiving groove / is.
  • a preferred embodiment of the invention provides an on the frame and / or sash circumferentially trained Einbaunut for the corner angle.
  • the installation groove is formed on the associated spars of the frame or sash over the entire longitudinal extent, but is used by the corner angle only in the corner regions of the frame or sash.
  • the circumferential design of the receiving groove and / or installation groove has manufacturing advantages.
  • At least one corner receptacle formed on the frame and / or sash frame may be provided for the base plate and the support elements.
  • This Ecktext is formed only in the respective corner region of the frame and / or sash of the window, the door or the like.
  • the receiving groove opens laterally into the installation groove.
  • the two grooves are thus adjacent to each other, so that they merge into each other.
  • the Eckgenesis opens with its one side into the receiving groove and with its other side in the installation groove.
  • the corner receptacle is "between” receiving groove and Einbaunut.
  • the "between” is not to be taken literally, but is only intended to clarify the situation, because when the receiving groove opens laterally into the installation, nothing can be found here between. Nevertheless, there is the Ecktex, such that it claims a share of the receiving groove or a portion of the installation groove or a respective area of receiving groove and Einbaunut for themselves.
  • the FIG. 1 shows a window 1, which is provided with a plurality of closing strip fittings 2 according to the invention, which form a total of a fitting assembly 3.
  • the invention is not limited to a window 1, but can also be used in other devices, such as doors or the like.
  • the window 1 has a frame 4 and a sash 5.
  • the casement 5 is pivotally mounted by means of hinges 6 on the frame 4, so that it can be opened in rotation.
  • the casement 5 has four corner regions 9 to 12, wherein each corner region 9 to 12 is associated with a closing strip fitting 2. Unless otherwise stated below, the formation of one of the closing strip fittings 2 becomes closer received.
  • the other closing strip fittings 2 are formed accordingly.
  • the FIG. 2 shows a base part 13 of the closing strip fitting 2.
  • the base part 13 has a corner bracket 14 which has a provided with fastening holes 15 legs 16 and a provided with fastening holes 17 leg 18th
  • the two legs 16, 18 preferably have an angle of 90 ° between them.
  • a base plate 19 is arranged, which has approximately a triangular plan.
  • the leg lengths of the triangle thus formed are shorter than the lengths of the legs 16 and 18 of the corner angle 14.
  • a bearing pin 20 is fixed, which serves for the rotatable mounting of a holding part 21.
  • the holding part 21 has a bearing opening 22 into which the bearing pin 20 engages.
  • bearing pin 20 and bearing opening 22 form a rotary bearing 23, which has an axis of rotation 24.
  • the holding part 21 is formed as a rocker 25 which can rock about the rotational axis 24 of the pivot bearing 23.
  • the holding part 21 has an approximately kidney-shaped floor plan.
  • the bearing opening 22 is - as seen in plan view - approximately in the center of the holding part 21, wherein on both sides of the bearing opening 22 due to the kidney shape rocker arms 26 and 27 are formed.
  • the rocker arms 26 and 27 are each provided with a pivot bearing 28 and 29, wherein the pivot bearings 28 and 29 support members 30 and 31 pivotally mounted on the support member 21.
  • the pivot bearings 28 and 29 are formed by means of head pins 32 and 33, the bearing openings 34 and 35 (in FIG. 2 not directly visible) of the support members 30 and 31 pass through.
  • the pivot axes of the pivot bearings 28 and 29 are parallel to the axis of rotation 24 of the pivot bearing 23.
  • the arrangement is preferably made such that the pivot bearing 23 and the two pivot bearings 28 and 29 are located at the corners of an imaginary triangle. As the FIG. 2 shows, the pivot bearing 28 is closer to the leg 16 as the pivot bearing 23 and the pivot bearing 29 is closer to the leg 18 as the pivot bearing 23.
  • a first rotational position of the holding part 21 is shown relative to the base part 13.
  • the two support elements 30 and 31 are of identical design, so that below only the design of the support element 30 is discussed and these embodiments apply correspondingly to the support element 31.
  • the support member 30 is formed as a support rail 36, in particular as an angle rail 37.
  • the angle rail 37 has a rail leg 38 and a rail leg 39, wherein the two rail legs 38 and 39 are at an angle to each other, in particular at right angles.
  • the rail leg 39 has the bearing opening 34. lhm so the pivot bearing 28 is assigned.
  • the rail leg 39 has the bearing opening 35 and consequently there is the pivot bearing 29 is provided.
  • the rail leg 38 has a first portion 40, at the end of the rail leg 39 sits and has an axial stop 41.
  • the first section 40 is followed by a second section 42, which has a holding region 43.
  • the second portion 42 of the support member 30 has a height H which is greater than the height h of the first portion 40 of the support member 30, whereby a step 45 is formed.
  • the corner region 9 of the sash 5 of the window 1 is shown.
  • the casement 5 has a circumferential receiving groove 46 and a peripherally formed installation groove 47, wherein in the respective corner region 9 to 12 in the installation groove 47 an Eckability 48 is formed.
  • the corner receptacle 48 is designed triangular.
  • the installation groove 47 has a flattening 49.
  • the receiving groove 46 has a greater depth than the installation groove 47.
  • FIG. 3 shows the built - in state of the FIG. 2 It can be seen that during assembly of the corner bracket 14 is inserted into the installation groove 47 and that by means of fastening screws 50 which pass through the mounting holes 15 and 17, a screw on the casement 5 is carried out.
  • the arrangement is such that the base plate 19 together with the rotatably mounted holding part 21 such in the corner receptacle 48 and the receiving groove 46 rests that the two support members 30 and 31 are aligned with the receiving groove 46 or can dive into it.
  • the two legs 16 and 18 of the corner angle 14 are assigned to different spars of the sash 5 of the window 1 and fastened thereto by means of the fastening screws 50, so that the corner angle 14 acts bar connecting and therefore improves the stability of the sash 5.
  • the closing strip fitting 2 has two closing strips 51, 52, wherein the two closing strips 51 and 52 are of identical construction, so that only the design of the invention is described below Closing bar 51 is received. For the closing strip 52 then applies accordingly.
  • the closing strip 51 has at least at each of its end regions 53 a cavity 54 which is formed by the closing strip 31 having a U-shaped cross-sectional profile.
  • the cavity 54 which is accessible from an underside of the locking bar 51, laterally bounded by two elastic spring arms 55 and 56.
  • the elasticity of the spring arms 55 and 56 results from the elasticity of the material of which the closing strip 51 consists.
  • the cavity 54 has due to two opposing webs 57 a waist 58 and - in the lower region - due to two opposing webs 59 another waist 60.
  • the two spring arms 55 and 56 are connected by an end wall 44, from the one into the cavity 54 protruding stop ridge 88 goes out.
  • the holding portion 43 of the second portion 42 of the rail leg 38 of the support member 30 has a cross-sectional configuration, which - as in particular from FIG. 7 it can be seen - has a width B, which corresponds to the distance C of the spring arms 55 and 56 between their webs 57 and webs 59.
  • the width B of the cross-sectional configuration is reduced to a dimension which corresponds to the distance between the webs 59, that is to say the dimension of the waist 60.
  • the width B of the cross-sectional configuration tapers to a dimension D which corresponds to the spacing of the webs 57, that is to say the size of the waist 58.
  • the height H of the holding portion 43 corresponds to the distance of the end face of the stop web 88 to the underside of the closing bar 51.
  • the spring arms 55 and 56 have on the input side of the cavity 54 insertion bevels 90 '.
  • the two closing strips 51 and 52 are assigned to the two sections 42 of the support elements 30 and 31.
  • the two closing strips 51 and 52 are at a 90 ° angle to each other. They are each held with a connection 64 on the associated support member 30 and 31 respectively.
  • the connection 64 is preferably designed as a fixed connection 90, in particular in each case as a latching connection 65.
  • For locking it is only necessary to supply the two closing strips 51 and 52 according to the arrows 66 and 67 to the respective support element 30 or 31 ( Figure 4), whereby a latching takes place. If the support element 30 or 31, in particular its holding region 43, enters into the cavity 54 of the closing strip 51 or 52 for latching, the insertion bevels 90 'serve as an insertion aid.
  • the detent connection 65 thus described is thus designed in accordance with this embodiment such that a detent element 76, namely the support element 30 or 31, with the described cross-sectional configuration in a latching receptacle 77 of the locking bar 51 and 52 engages, wherein the locking receptacle 77 is formed by the cavity 54, which has due to the edges of the webs 59 corresponding retaining means which cooperate with the latching steps 89 of the support member 30 and 31 respectively.
  • the axial stops 41 of the support elements 30 and 31 are in the locked state on the end faces of the closing strips 51 and 52 and therefore form axial securing.
  • FIG. 8 shows a further embodiment of a latching means of a latching connection 65 between the locking bar 51 and the support member 30.
  • the support member 30 has a longitudinal slot 68 provided with head 69, whereby elastic spring arms 70 and 71 are formed.
  • the locking strip 51 has in its cavity 54 latching steps 72, 73, engage in the latching hooks 74 and 75 of the support member 30 during assembly.
  • the latching connection 65 thus formed is designed such that a latching element 76 of the support member 30, namely the head 69 engages in a latching receptacle 77 of the locking bar 51, wherein the latching receptacle 77 is formed by the latching steps 72, 73 provided with cavity 54.
  • FIG. 9 shows - in a schematic form - the closing strip 51, which can enter into a closing strip holder 78 of the window frame 4 of the window 1 for locking the window 1.
  • the entry process provide inclined guides 79 of the closing strip receiving 78 of the frame 4 for an insertion.
  • the insertion movement is in FIG. 9 represented by an arrow 80.
  • the closing bar 51 insertion bevels 81 for improved entry into the Closing strip receiving 78 of the frame 4 has. If the respective closing strip 51, 52 has entered the corresponding closing strip holder 78, then there is a locking state of the window 1. If the closing strips 51, 52 have not entered the closing strip holder 78, then the window 1 is unlocked and can therefore be opened.
  • FIG. 11 illustrates that the sash 5 of the window 1 a total of four closing bar fittings 2 are assigned, which are arranged in the respective corner regions 9 to 12 of the window 1.
  • the window 1 itself is in the FIG. 9 -
  • each closing strip fitting 2 has two closing strips 51, 52 which extend at an angle, in particular at a right angle, to one another.
  • the respective closing strip 51 or 52 is assigned to two opposite closing stretcher fittings 2.
  • the FIG. 11 shows the locked state of the window 1, that is, the closing strips 51 and 52 are in a locking position in which they engage in the associated Schierancenfactn 78 of the frame 4 (not shown).
  • the holding parts 21 which from the FIG. 2 or 12 resulting first rotational position.
  • the handle 8 is actuated, by turning it by 90 °, for example, causes the actuator 7, a shift of the closing strips 51 and 52.
  • the FIG. 11 shows that the right locking strip 52 consists of two closing strip portions 82, 83, which in the mentioned operation of the handle 8 in the direction of the FIG. 11 resulting arrow 84 are shifted.
  • the respective from the FIG. 12 prominent position of the closing strip fitting 2 in the from FIG. 13 shifting position.
  • FIG. 12 shows the first, already mentioned rotational position; in the FIG. 13 a second rotational position of the holding part 21 is shown relative to the base part 13.
  • the mentioned movement of the closing strip sections 82 and 83 existing closing strip 52 causes the rocker 25 formed as holding member 21 rotates about the pivot bearing 23 in a clockwise direction, whereby the closing bar 51 is also displaced by the displacement of the locking bar 52, so in that the rocker 25 entrains the support element 30 and thus the closing strip 51 so far that the support element 30 engages over the retaining part 21.
  • FIGS. 12 and 13 A comparison of FIGS. 12 and 13 shows that the two closing strips 51 and 52 are displaced by the rotation of the holding part 21 about the pivot bearing 23 so that they are in the FIG. 12 with respect to the window 1 further out than in the FIG. 13 in which they lie further inwards and therefore assume the unlocking position in which they are arranged retracted into the receiving groove 46.
  • the rocker 25 so far from the position of FIG. 12 twisted is that it has performed almost a "rollover", the rocker 25 can also be referred to as a rollover rocker.
  • FIGS. 14 to 18 illustrate the design of the actuator 7, which - as will be described in more detail below - also a support device 92 for the displacement of the closing strips 51, 52 forms.
  • the actuating device 7 or support device 92 has a main body 93 which is fixed to the window 1, to the door or the like, in particular to the sash 5.
  • the base body 93 mounting holes 94 for mounting screws.
  • an actuating element 95 is rotatably mounted, which on one side of the base body 93 a receptacle 96 (FIG. FIG. 16 ), which is designed in particular as a square socket.
  • the actuating element 95 On the other side of the main body 93, the actuating element 95 has a crank arm 97, which is rotatably entrainment for receiving 96 and pivotally connected via a pin connection 98 in the region of its crank arm end with a special design of a support member 99.
  • the support element 99 has at its two ends in each case holding areas 43, which correspond - as to FIG. 7 described - are formed and can therefore be clipped onto the end portions of the split closure strip 52, so the closing strip portions 82 and 83.
  • the FIGS. 14 to 16 show the unlocked state; in the Figures 17 and 18 the closing strip sections 82 and 83 are not shown.
  • the handle 8 the one in the Figures 14 and 15 unrecognizable square bar, rotatably coupled with the receptacle 96, ie, the square bar is inserted into the receptacle 96.
  • FIGS. 16 to 18 it is also possible not to mount the handle 8.
  • the situation of a mounted handle 8 will be discussed. Will - starting from the FIG. 14 - The handle 8 in the position according to FIG. 15 pivoted by 90 ° clockwise, so the actuator 95 is thereby rotated accordingly, with the result that the crank arm 97 performs a pivoting movement, as they are from a comparison of Figures 17 and 18 becomes apparent. This has the consequence that the support element 99 from the position according to FIG.
  • the actuating device 7 also acts as a support device 92, as by means of the guidance of the crank arm 97, the aforementioned deflection is prevented, because the crank arm 97 sets a longitudinal displacement of the corresponding closing strip portions 82, 83 in a guided exit movement or entry movement of the closing strip sections 82 and 83 to.
  • the displacement is supported in the locked position or unlocked position.
  • the trajectory of the crank arm 97 thus corresponds to the paths of movement of the closing strip fittings 2.
  • FIG. 19 shows a further embodiment of a closing strip fitting 2, wherein the closing strips 51, 52 are not shown.
  • the hinge 6 is fixed, which is already in the FIG. 1 was briefly described.
  • the closing strip fittings 2 not only Eckumlenkept 86 represents, as shown in the FIGS. 2 to 11 has been explained, but optionally also Eckumlenkept 86 arranged thereon with hinges 6, for example, for rotational opening of the sash 5 of the window. 1
  • connection 64 which exists between the respective support element 30, 31 and the respective closing strip 51, 52.
  • the connection 64 can either be formed as at least one fixed connection 90 or have a fixed connection 90 or at least one Railnverstellanitati be 91 or have a Gaznverstellanitati 91. It is also possible that the connection 64 both at least one fixed connection 90 and at least one Neuronverstellanitati 91 has.
  • the various embodiments are discussed in greater detail, wherein each embodiment can also be combined with any other embodiment or with a plurality of other embodiments.
  • FIGS. 20a, b Below is always spoken only of a support member 30 and a locking bar 51, even if the respective closing strip fitting 2 and the more closing strip fittings 2 having fitting assembly 3 a plurality of support elements and / or has several closing strips.
  • the special shape of the support element 30 of the FIGS. 20a to 30e differs from the design of the other figures, but the same function exists.
  • the support member 30 is fixed by means of the bearing opening 34 for forming the pivot bearing 28 on the holding part 21. The same applies to all other embodiments.
  • the FIG. 20a shows a perspective view and the FIG.
  • the support member 30 has a slidably guided carriage 93 which is held on the side of the closing strip 51 by means of a pin / hole connection 92 and on the support element side by means of an eccentric connection 94.
  • An eccentric 95 is rotatably mounted in a bearing bore 96 of the support member 30 and can be rotated by means of a tool in a clockwise or counterclockwise direction (arrows 97).
  • An eccentric pin 98 of the eccentric 95 engages in a receiving opening 99 of the carriage 93 and causes upon rotation of the eccentric 95 a length adjustment (carriage displacement) according to the double arrow 100.
  • the pin / hole connection 92 is realized by a pin 101 of the carriage 93, wherein the pin 101 engages in a receptacle 102 of the closing strip 51. All in all, it can be seen that the eccentric connection 94 forms a continuous length adjustment connection 91 and that the pin / hole connection 92 forms a fixed connection 90. By adjusting the eccentric 95, it is possible to implement length adjustment measures to compensate for tolerances and / or absorb tensile and / or compressive stresses during operation of the closing strip fitting 2.
  • TheChinanverstellanitati 91 is set (especially in all embodiments of this application) when commissioning the closing strip fitting 2 once and then no longer adjusted. Nevertheless, it is possible to make an adjustment during maintenance work, for example.
  • FIGS. 21a to 21d show a further embodiment of a connection 64, which is designed asCloudnverstellanitati 91.
  • an eccentric 94 is provided which actuates a carriage 93.
  • the carriage 93 is in the embodiment of FIGS. 21a to d however, designed to be part of a clamp connection 103.
  • the FIG. 21 a shows a perspective view which FIG. 21b a longitudinal section, the FIG. 21c a 90 ° rotated longitudinal section and Figure 21d a cross section of the arrangement.
  • the clamping connection 103 is realized in that the carriage has wedge elements 104 which cooperate with fixed wedge elements 105 in the interior of the closing bar 51 such that Adjustment of the eccentric 95 of the carriage 93 is displaced and thus the wedge elements 104 are displaced so that they exert a compressive force on the wedge elements 105, in turn act on a clamping piece 106 of the locking bar 51 by clamping, whereby the closing strip 51 in each desired position according to the double arrow 100th can be fixed on the support element 30, namely, can be clamped.
  • here is a continuous
  • FIG. 22a and b show a further embodiment of a connection 64 between the support member 30 and the locking bar 51, which is designed as an eccentric 94 and forms a Regionnverstellanitati 91.
  • the FIG. 22a shows a perspective view and the FIG. 22b a longitudinal section view.
  • the arrangement is such that an eccentric 95 which is rotatably mounted in a bearing bore 96 of the locking bar 51, an eccentric pin 98 which engages in a bearing bore 107 of the support member 30.
  • the closing strip 51 is mounted longitudinally displaceable on the support elements 30 according to double arrow 100. If the eccentric element 95 is rotated according to the arrows 97 with a suitable tool, then the closing strip 91 shifts in the direction of the double arrow 100, whereby a desired length adjustment can be set.
  • connection 64 which is designed as a fixed connection 90. It is a multi-toothed spline connection 108, wherein the support member 30 has a toothing 109 and the locking bar 51 has a cooperating with the teeth 109 counter teeth 110. If the closing strip 51 according to arrow 111 on the support element 30 pressed, in particular latched, so engage corresponding teeth of the teeth 109 and counter toothing 110 together, thereby discontinuing a length adjustment (depending on the tooth positions) takes place.
  • FIG. 24a shows a connection 64, which is designed as a screw connection 112 and is designed to be adjustable in length before setting the parts, so that a Constellanitati 91 is present.
  • FIG. 24a shows a perspective view and the FIG. 24b a cross-sectional view of the arrangement.
  • the embodiment is such that the support member 30 has a screw 113 and that the closing bar 51 has a screw groove 114.
  • a mounting screw 115 is screwed into the screw 114, which penetrates the material of the locking bar 51 and engages in the screw 113 of the support member 30. In this way, then a determination is created after the desired length adjustment.
  • FIGS. 25a and 25b which form a perspective view and a longitudinal sectional view, show an embodiment of a connection 64, which is formed as a splint / recess connection 116, which forms a Geographicnverstellanitati 91.
  • a preferably U-shaped split pin 117 is inserted into an opening 118 of the closing strip 51 and in pin receiving recesses 119 of the support member 30, whereby a desired length adjustment is possible because a plurality of pin receiving recesses 119 are arranged side by side and the pin 117 only is inserted into at least one or more desired pin receiving recess (s) 119.
  • the Figures 26a to 26c show a further embodiment of a connection 64, which is designed as a length adjustment connection 91 and part of the closing strip 51 as a fixed connection 90 side of the support member.
  • the Figure 26a shows a perspective view, the FIG. 26b a longitudinal sectional view in a lower and the FIG. 26c a longitudinal sectional view in a higher area.
  • TheInternverstellanitati 91 is a rack / gear connection 120 having a rotatably mounted on the support member 30 gear 121 which cooperates with a toothing 122 of a carriage 93 of the support member 30. If the gear 121 is rotated by means of a suitable tool according to the arrows 97, the carriage 93 correspondingly displaces.
  • the carriage 93 has a through bore 123 in which a spring 124 and two pressure pieces 125 loaded by the ends of the spring 124 are supported.
  • the closing strip 51 has two receptacles 126. For the attachment of the carriage 93 to the locking bar 51, this is a piece-wide introduced into the interior of the locking bar 51, to a position in which the plungers 125 - driven by the spring 124 - snap into the receptacles 126. As a result, the fixed connection 90 is realized.
  • the snap action is in the FIG. 26b indicated by the double arrow 127.
  • FIG. 27a and 27b shows a connection 64, which is also configured asConnverstellanitati 91 on the part of the support member 30 asClassnverstellanitati 91 and the side of the closing strip 51.
  • a carriage 93 has a threaded rod 128, to which a nut, in particular knurled nut 129 is screwed.
  • the knurled nut 129 is supported on the support element 30 in such a way that, when the carriage 93 is rotated, it is adjusted in the direction of the double arrow 100. The rotation is again indicated by the arrows 97.
  • the Operatingnverstellanitati 91 on the closing strip side is designed as a toothed connection 108 by the carriage 93 has a toothing 109 and the locking bar 51 has a counter toothing 110. Since toothing 109 and counter teeth 110 can be joined together in different longitudinal positions of the arrangement, a length adjustment is possible. Alternatively, it can also be provided that the toothed connection 108 is not designed to be adjustable in length. Then there would be a fixed connection 90.
  • the Figures 28a and 28b show an embodiment of a compound 64, which is formed on the part of the support member 30 asConnverstellanitati 91 and the closing strip 51 also asClassnverstellanitati 91.
  • TheGermannverstellanitati 91 of the support member 30 is designed as an eccentric 94, whereby a carriage 93 can be adjusted, which can be connected to the locking strip 51 via a spline connection 108.
  • the carriage 93 has a toothing 109 and the locking bar 51 has a counter toothing 110, wherein toothing 109 and counter teeth 110 can be brought into engagement in different longitudinal positions of the arrangement, whereby a length adjustment is possible.
  • a further length adjustment by means of the eccentric connection 94 is provided.
  • the spline connection 108 acts discontinuously and a continuous adjustment is made possible by means of the eccentric connection 94.
  • FIGS. 29a and 29b provides that a connection 64 is designed asCloudnverstellanitati 91.
  • the Figure 29a shows a perspective view and the FIG. 29b a longitudinal sectional view of the arrangement.
  • an eccentric 95 is rotatably mounted, against which the end face 131 of the locking bar 51 abuts. It should be assumed that several closing strips are provided on the window 1, on the door or the like, which form in particular a closed, frame-like arrangement. If the eccentric element 95 is rotated according to the arrows 97, then the end face 131 of the closing strip 51 is correspondingly longitudinally displaced due to the eccentric action.
  • the eccentric 95 has a collar 132 which engages over the upper side 133 of the closing strip 51 at corresponding rotational positions and thereby secures them to the support element 30.
  • FIGS. 30a to 30e a connection 64 is formed asCloudnverstellanitati 91.
  • two pressure pieces 134 are pivotally mounted on the support member 30, which cooperate with a holding element 135 of the locking bar 51.
  • the FIG. 30a shows a perspective view of the support member 30, the FIG. 30b a perspective cross-sectional view in the not latched state, the FIGS. 30c to 30e Cross-sectional views of different mounting conditions.
  • the Constellanitati 91 is designed as a clamp connection 103, in particular as Studentstotriosklemmitati 136. Will - according to FIG.
  • FIGS. 31 and 32 show additional separate or combinable ways to make the mentioned adjustment measures and tolerance adjustments.
  • the pivot bearings 28 are designed by means of suitable eccentric elements 95 as Exzenterschwenklagerungen 138 '.
  • the pivot bearing 23 is designed as Exzenterduslagerung 139.
  • the support elements 30 and 31 displaced by the eccentric action of the eccentric 95 relative to the holding part 21, whereby an adjustment exists.
  • only one pivot bearing 28 is provided with eccentric.
  • the mentioned tolerance compensation is necessary because there are tolerances in each bearing point and joint. Moreover occur during operation of the closing strip fitting 2 and the fitting assembly 3 tensile and compressive stresses, both in a rotating as well as a non-rotating system. In a circulating system, one thrust component - once in a circle - will act as a pressure on the other side. Furthermore, a switching, so a shutter bar actuation of the one in the other direction, always lead to train and pressurization. Due to the bearing and connection points game is present, with these tolerances accumulate, with the result that different angles of rotation arise and thus different extension positions or Einfahrpositionen the closing strips can be present.
  • the resulting tolerance need not be compensated at each point, but it is sufficient, for example, to provide a tolerance compensation within a single operating chain and, for example, to carry out the remainder of the connections as fixed connections.
  • the objects according to the invention can be used both in the wings of windows, doors and the like, which have a frame or which are designed frameless.
  • no circumferential arrangement of closing strips is possibly possible. This is especially true for the lower band corner. In most cases, the upper band side corner is not affected, since there is a different construction due to the usually existing Ausstellschere.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Hinges (AREA)
  • Joining Of Corner Units Of Frames Or Wings (AREA)

Claims (28)

  1. Ferrure de battant de fermeture réalisée comme renvoi d'angle pour une région d'angle d'une fenêtre, d'une porte ou similaire, avec une partie de maintien qui est en connexion active avec deux battants de fermeture s'étendant l'un vers l'autre dans un angle défini par la région d'angle, dans laquelle la partie de maintien (21) peut être logée au moyen d'un logement rotatif (23) de manière mobile en rotation sur une partie de base à disposer de manière fixe (13), caractérisée en ce que deux éléments porteurs (30, 31) sont articulés au moyen de logements pivotants (28, 29) de manière mobile en pivotement sur la partie de maintien (21), dans laquelle un des battants de fermeture (51, 52) est fixé sur chaque élément porteur (30, 31) au moyen d'une connexion (64).
  2. Ferrure de battant de fermeture selon la revendication 1, caractérisée en ce que la connexion (64) est ou présente au moins une liaison fixe (90).
  3. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce que la connexion (64) est ou présente au moins une liaison réglable en longueur (91).
  4. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce que la liaison fixe (90) est ou présente au moins une connexion par encliquetage (65) et/ou une connexion à tenon/mortaise (92).
  5. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce que la liaison réglable en longueur (91) est ou présente une connexion excentrique ou une connexion à engrenage à plusieurs dents ou une connexion à canal vissé ou une connexion à goupille fendue/évidement avec plusieurs évidements de réception de goupille fendue ou une connexion à crémaillère/roue dentée ou une connexion à tige filetée/écrou.
  6. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce que la liaison réglable en longueur (91) est ou présente une connexion par serrage, notamment une connexion par serrage au-delà du point mort ou une connexion par serrage à clavette, de préférence une connexion par serrage à clavette pouvant être actionnée au moyen d'un excentrique.
  7. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce que le logement rotatif est un logement rotatif excentrique réglable.
  8. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce qu'au moins un des logements pivotants est un logement pivotant excentrique réglable.
  9. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce que chaque battant de fermeture (51, 52) présente au moins sur chacune de ses régions d'extrémité (53) un profil de section transversale formant un espace creux (54), notamment en forme de U, dans laquelle une région de l'élément porteur associé (30, 31) est disposée de manière encliquetée dans l'espace creux (54).
  10. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce que la connexion par encliquetage (65) présente un élément d'encliquetage (76) et un logement d'encliquetage (77) enclenché avec l'élément d'encliquetage (76).
  11. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce que chacun des éléments porteurs (30, 31) présente au moins une fente longitudinale (68) pour la réalisation des bras à ressorts (70, 71) qui appartiennent à l'élément d'encliquetage (76) et/ou que l'espace creux (54) du battant de fermeture (51, 52) est bordé d'au moins un bras à ressort élastique (55, 56).
  12. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce qu'un crochet d'encliquetage (74, 75), notamment un flanc d'une traverse (59), est réalisé sur au moins un bras à ressort (55, 56, 70, 71), lequel s'engrène à l'état enclenché de la connexion par encliquetage (65) derrière un étage d'encliquetage (72, 73, 89) du logement d'encliquetage (77) ou de l'élément d'encliquetage (76).
  13. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce que chacun des éléments porteurs (30, 31) est réalisé en tant que rail porteur (36).
  14. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce que le logement pivotant respectif (28, 29) est disposé avec un écart de chevauchement de partie de maintien (Ha) par rapport au battant de fermeture associé (51, 52).
  15. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce que le rail porteur respectif (36) est réalisé en tant que rail angulaire (37) qui présente deux branches de rail (38, 39) parmi lesquelles le logement pivotant (28, 29) est associé à l'une et le battant de fermeture associé (51, 52) est associé à l'autre.
  16. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce que la partie de maintien (21) est réalisée en tant que bascule (25), notamment bascule de recouvrement.
  17. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce que le logement rotatif (23) et les deux logements pivotants (28, 29) sont disposés les uns par rapport aux autres de telle sorte qu'ils se situent aux angles d'un triangle imaginaire.
  18. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce que la partie de base (13) présente une cornière d'angle de connexion au longeron (14).
  19. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce qu'une plaque de base (19) qui porte le logement rotatif (23) est disposée dans une région d'angle de la cornière d'angle (14).
  20. Ferrure de battant de fermeture selon une des revendications précédentes, caractérisée en ce que la partie de base (13) présente une charnière (6).
  21. Fenêtre, porte ou similaire, avec au moins une ferrure de battant de fermeture (2) selon une ou plusieurs des revendications précédentes.
  22. Fenêtre, porte ou similaire selon la revendication 21, caractérisée par au moins deux ferrures de battant de fermeture (2) qui sont reliées ensemble, notamment directement reliées ensemble, par le biais d'au moins un, notamment d'un seul, battant de fermeture (51, 52).
  23. Fenêtre, porte ou similaire selon une des revendications précédentes, caractérisée en ce que la ferrure de battant de fermeture (2) est associée à un châssis d'ouvrant (5) ou un dormant (6) de la fenêtre (1), de la porte ou similaire.
  24. Fenêtre, porte ou similaire selon une des revendications précédentes, caractérisée par une rainure de réception (46) pour les battants de fermeture (51, 52) réalisée de manière circonférentielle sur le dormant (4) et/ou châssis de battant (5).
  25. Fenêtre, porte ou similaire selon une des revendications précédentes, caractérisée par une rainure de montage (47) pour la cornière d'angle (14) réalisée de manière circonférentielle sur le dormant (4) et/ou châssis de battant (5).
  26. Fenêtre, porte ou similaire selon une des revendications précédentes, caractérisée par au moins un logement d'angle (48) pour la plaque de base (19) et les éléments porteurs (30, 31) réalisé sur le dormant (4) et/ou châssis de battant (5).
  27. Fenêtre, porte ou similaire selon une des revendications précédentes, caractérisée en ce que la rainure de réception (46) débouche latéralement dans la rainure de montage (47).
  28. Fenêtre, porte ou similaire selon une des revendications précédentes, caractérisée en ce que le logement d'angle (48) débouche avec un de ses côtés dans la rainure de réception (46) et avec son autre côté dans la rainure de montage (47).
EP12008187.2A 2012-12-07 2012-12-07 Armature de baguette de fermeture formée comme un renvoi d'angle Not-in-force EP2740868B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP12008187.2A EP2740868B1 (fr) 2012-12-07 2012-12-07 Armature de baguette de fermeture formée comme un renvoi d'angle

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP12008187.2A EP2740868B1 (fr) 2012-12-07 2012-12-07 Armature de baguette de fermeture formée comme un renvoi d'angle

Publications (3)

Publication Number Publication Date
EP2740868A1 EP2740868A1 (fr) 2014-06-11
EP2740868A8 EP2740868A8 (fr) 2014-08-20
EP2740868B1 true EP2740868B1 (fr) 2017-01-11

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Families Citing this family (1)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
DE102019208425B4 (de) * 2019-06-11 2021-04-01 Roto Frank Fenster- und Türtechnologie GmbH Stangenförmiges Beschlagelement

Family Cites Families (6)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR456764A (fr) * 1913-04-16 1913-09-04 Marcel Bazille Perfectionnements aux fermetures de portes
US2268114A (en) 1939-05-03 1941-12-30 William H Foster Closure, sealing, and locking means
AU4902296A (en) * 1995-02-06 1996-08-27 Edwin A. Macdonald Security door assembly
DE29718393U1 (de) * 1996-10-19 1998-05-28 Kunz Manfred Schließvorrichtung
DE19745553A1 (de) * 1996-10-19 1998-08-06 Manfred Kunz Schließvorrichtung
FR2960015B1 (fr) * 2010-05-11 2012-07-13 Pierre Couder Dispositif d'ouverture fermeture pour tous chassis vitres ou non roulant sur un rail avec possibilite d'ouverture en pivotant autour d'un axe vertical.

Non-Patent Citations (1)

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

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EP2740868A1 (fr) 2014-06-11

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