EP3029227B2 - Ferrure dotée d'une plage de serrage réglable - Google Patents

Ferrure dotée d'une plage de serrage réglable Download PDF

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Publication number
EP3029227B2
EP3029227B2 EP14196240.7A EP14196240A EP3029227B2 EP 3029227 B2 EP3029227 B2 EP 3029227B2 EP 14196240 A EP14196240 A EP 14196240A EP 3029227 B2 EP3029227 B2 EP 3029227B2
Authority
EP
European Patent Office
Prior art keywords
fitting
elements
designed
door
lock
Prior art date
Legal status (The legal status is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the status listed.)
Active
Application number
EP14196240.7A
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German (de)
English (en)
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EP3029227B1 (fr
EP3029227A1 (fr
Inventor
Holger Herth
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.)
Dorma Glas GmbH
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Dorma Glas GmbH
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.)
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Publication date
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Application filed by Dorma Glas GmbH filed Critical Dorma Glas GmbH
Priority to ES14196240T priority Critical patent/ES2684991T5/es
Priority to EP14196240.7A priority patent/EP3029227B2/fr
Priority to CN201510324524.0A priority patent/CN105672816B/zh
Priority to US14/946,079 priority patent/US11306504B2/en
Publication of EP3029227A1 publication Critical patent/EP3029227A1/fr
Publication of EP3029227B1 publication Critical patent/EP3029227B1/fr
Application granted granted Critical
Publication of EP3029227B2 publication Critical patent/EP3029227B2/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B15/00Other details of locks; Parts for engagement by bolts of fastening devices
    • E05B15/02Striking-plates; Keepers; Bolt staples; Escutcheons
    • E05B15/0205Striking-plates, keepers, staples
    • E05B15/024Striking-plates, keepers, staples adjustable
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B63/00Locks or fastenings with special structural characteristics
    • E05B63/0056Locks with adjustable or exchangeable lock parts
    • E05B63/006Locks with adjustable or exchangeable lock parts for different door thicknesses
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B15/00Other details of locks; Parts for engagement by bolts of fastening devices
    • E05B15/02Striking-plates; Keepers; Bolt staples; Escutcheons
    • E05B15/0205Striking-plates, keepers, staples
    • E05B15/024Striking-plates, keepers, staples adjustable
    • E05B15/0245Movable elements held by friction, cooperating teeth, or the like
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B65/00Locks or fastenings for special use
    • E05B65/0025Locks or fastenings for special use for glass wings
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B15/00Other details of locks; Parts for engagement by bolts of fastening devices
    • E05B15/02Striking-plates; Keepers; Bolt staples; Escutcheons
    • E05B15/0205Striking-plates, keepers, staples
    • E05B15/024Striking-plates, keepers, staples adjustable
    • E05B2015/0275Striking-plates, keepers, staples adjustable in two directions
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T292/00Closure fasteners
    • Y10T292/62Bolt casings
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T292/00Closure fasteners
    • Y10T292/68Keepers
    • Y10T292/705Adjustable
    • YGENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10TECHNICAL SUBJECTS COVERED BY FORMER USPC
    • Y10TTECHNICAL SUBJECTS COVERED BY FORMER US CLASSIFICATION
    • Y10T292/00Closure fasteners
    • Y10T292/68Keepers
    • Y10T292/705Adjustable
    • Y10T292/707Vertically

Definitions

  • the present invention relates to a fitting with a lock function part according to the preamble of claim 1.
  • Fits are mounted on both doors and windows and should have a uniform and optically advantageous appearance within a fitting system.
  • the fittings mentioned are installed on door elements, in particular on glass doors, with the fittings having to be adapted to the respective leaf thicknesses or glass or material thicknesses of the door elements, in particular the glass door elements.
  • the structure of the known fittings usually includes two fitting elements, each having a contact section for the door element, with an intermediate layer being used between the contact sections and the door element, which at least partially corresponds to the contour of the contact sections. Outside of the contact sections, the fitting elements form a free space within a section of the door element, which is used, for example, to accommodate a lock insert.
  • cover or cover elements such as caps, which encompass the fitting elements or are placed on them, also move away from the door element on both sides. Accordingly, a gap is automatically formed on both sides of the door element, namely between the surfaces of the door element and the cover element. If one wants to prevent this formation of a gap, the cover or cover element on both sides of the door element must be replaced by a lowered cover or cover element, which then covers the gap formed by the reinforced intermediate layer.
  • the object of the present invention to at least partially eliminate the disadvantages of the prior art described above.
  • the fitting according to claim 1 with a functional lock part in particular a lock insert or lock case or counter-lock case, with a clamping area for a door element, in particular for a glass door element, having a first fitting element and a second fitting element, which each have at least regionally a contact section, the one with the door element contactable intermediate layer, wherein the fitting elements delimit the clamping area, and wherein the lock functional part has a third fitting element which is arranged between the fitting elements
  • the technical teaching includes that an adjustment mechanism is provided between the fitting elements with which a positional alignment of the lock functional part with respect to the Fitting elements can be executed, the adjustment mechanism being designed between the fitting elements in such a way that a movement of the lock function part is orthogonal to the longitudinal extent of the fitting emente can be carried out for position alignment, with the adjustment mechanism having at least one link arranged on the fitting element, along which the lock function part can be moved via an adjustment element.
  • This solution offers the advantage that while the function of the fitting is maintained by the adjustment mechanism, the position of the lock function part can be aligned within the fitting, with the distance between the fitting elements being able to be changed to the glass thickness of a door element clamped in the fitting, without this move the fitting elements away from the door element by means of an intermediate layer that becomes stronger. This means that the distance between the fitting elements and the door element clamped between the fitting elements in the clamping area is independent of the glass thickness or the door leaf thickness of the door element always remains constant.
  • the design of the fitting according to the invention with an adjustment mechanism that enables a position alignment of the lock function part, a gap formation between the fitting elements and the door element, regardless of the door leaf or glass thickness of the door element can be prevented.
  • the structural depth of the fitting according to the invention is always the same on both sides of the door element, regardless of the thickness of the door leaf or glass.
  • the lock function part has a third fitting element, the function of the fitting can be variably adjusted.
  • the third fitting element can be a locking plate, the positioning of which is aligned via the adjustment mechanism and which forms the functional lock part designed as a counter-lock case.
  • the fitting according to the invention can be variably adjusted to the door leaf or glass thickness of a door element clamped therein via the adjustment mechanism, the thickness of the intermediate layer between the fitting elements and the door element, d. H. in the clamping or clamping area of the fitting according to the invention, always remain constant. In this respect, constant stability of the fitting can be ensured in an advantageous manner, independently of the door element with variable thickness that is clamped with the fitting according to the invention.
  • the adjustment mechanism has an adjustment element or a holding element not covered by the invention, designed as an adjustment element, which is arranged between the fitting elements in such a way that the lock function part can be moved orthogonally to the longitudinal extent of the fitting elements for position alignment, or a movement of the lock function part not covered by the invention can be carried out can be carried out parallel to the longitudinal extent of the fitting elements for position alignment.
  • at least one fitting element and preferably both fitting elements have a free space in which the setting element or the holding element, which is a component of the setting mechanism, can be moved.
  • free space should not be understood to mean a recess, a slot or a groove which runs in the longitudinal direction in at least one of the fitting elements.
  • free space is understood to mean a distance formed between the two fitting elements, which enables the setting element or the retaining element, which is not according to the invention and which advantageously has a head part, a connecting part and a foot part, to connect to the connecting part between the fitting elements to move.
  • the non-inventive free space designed as a recess, which runs in the longitudinal extent of the fitting elements, is used to movably mount the retaining element with its head part or to mount the retaining element that is not claimed via the head part in a non-positive and/or positive manner to couple at least one fitting element.
  • the unclaimed retaining element is designed as an L-profile with a head and a connecting part, preferably in the form of two surfaces that are essentially orthogonal to one another, with the head part in the free space designed as a groove, slot or recess in movably mounted in one of the fitting elements in the released state of the adjustment mechanism and has a clamping effect in the recess in the fixed state of the adjustment mechanism and the connecting part is in operative connection with the connecting element.
  • both fitting elements have a free space designed as a groove, slot or recess
  • the head part of the holding element or the holding element is designed as a T-profile in order to hold the holding element in both recesses to store or clamp the fitting elements movably.
  • the retaining element which is not according to the invention and is designed as a T-profile, offers on both sides, d. H. in both free spaces of the fitting elements designed as a groove, slot or recess, at least in sections, a bearing surface which serves for the non-positive and/or positive connection between the holding element and the fitting elements, d. H.
  • the head part has a clamping effect in both grooves, slits or recesses.
  • the holding element designed as a T-profile not according to the invention, clamps evenly on both sides of the corner fitting, namely on both fitting elements.
  • a more stable non-inventive and/or positive connection i.e. improved clamping between the retaining element and the fitting elements, can be achieved.
  • the connecting element is also connected to the holding element not according to the invention via a connecting part in the case of the holding element designed as a T-profile not according to the invention.
  • the adjusting element preferably has a head part, a connecting part and a foot part, the adjusting element being connected to the third fitting element via at least one fastening element via the foot part is connected.
  • the head part and the connecting part are advantageously configured perpendicular to one another.
  • the foot part is advantageously configured parallel to the head part and preferably forms a monolithic and/or one-piece component with the head part and the connecting part.
  • the holding element not claimed and the connecting element which is in operative connection with the holding element not claimed via the connecting part and which is designed, for example, as a lock function part in the form of a counter-lock box are two interconnected components of the fitting.
  • These interconnected components form an adjustment mechanism not according to the invention, which is integrated on both components, namely on the holding element and on the connecting element, and which can be converted between the released state and the fixing state, with the holding element not according to the invention being attached to the fitting elements in the released state.
  • th is displaceable and is fixed in the fixing state at least non-positively or positively on at least one fitting element.
  • the adjusting mechanism not according to the invention formed on the holding element and on the connecting element serves to displace the holding element and the connecting element connected to the holding element relative to the fitting elements and in particular relative to the longitudinal extension of the fitting elements.
  • the adjustment mechanism not according to the invention is used to position and fix the fitting and in particular the connecting element designed as a lock function part, namely to couple the holding element not according to the invention to at least one of the fitting elements at least in a force-fit or form-fit manner via the adjustment mechanism not according to the invention.
  • the holding element and the connecting element are particularly advantageously connected to one another in a non-positive and/or positive manner via at least one fastening element.
  • the fastening element between the retaining element, which is not according to the invention, and the connecting element can be, for example, a screw, such as a screw.
  • At least two fastening elements are particularly advantageously provided, which connect the holding element, which is not according to the invention, to the connecting element.
  • the non-positive and/or positive connection between the holding element and the connecting element, d. H. the transfer of the adjustment mechanism not according to the invention from the released state to the fixing state also advantageously serves to fix the holding element not according to the invention to the fitting element.
  • the fitting element preferably has a free space as a guide, for example in the form of a recess, a groove or a rail, on or in which the holding element, which is not according to the invention, is guided or movably mounted.
  • the free space in the fitting element is advantageously designed in such a way that that the holding element not according to the invention can be displaced or guided in the longitudinal extension of the fitting element.
  • the adjustment mechanism has at least one link arranged on the fitting element, on which the lock function part can be moved via the adjustment element.
  • the connecting link preferably extends between the fitting elements, namely in the distance between the fitting elements.
  • Two connecting links lying parallel to one another are preferably arranged on the fitting, with the connecting links preferably being formed on one or even more preferably on both fitting elements and the Lock function part can be moved via two adjustment elements in the two scenes.
  • the connecting link preferably extends at least in sections between the fitting elements, i. H.
  • the setting element can still be guided and clamped on the connecting link when the door leaf thickness or the glass thickness of the door element clamped between the fitting elements is between approximately 6 mm and 25 mm, preferably between 7 mm and 22 mm, and more preferably between 8 mm and 17 mm.
  • the connecting link forms a common component with at least one fitting element.
  • the connecting link and the fitting element are preferably designed in one piece and/or as a monolithic component.
  • a monolithic component is to be understood as meaning a component produced from one or more different components, for example by injection molding.
  • a one-piece component can also be understood to mean a component made of one material, which is milled out of the metal block, for example by machining a metal block.
  • a common component is preferably also to be understood in such a way that the connecting link and the fitting element are designed as individual parts which are provided as a common component, namely as a fitting element in a pre-assembled state with the connecting link.
  • the setting element is preferably movably mounted in the connecting link and can advantageously be moved steplessly along the extension of the connecting link in the free space that is designed as a distance between the fitting elements.
  • the position of the lock function part can be aligned over the entire through the fitting elements distance formed as a free space.
  • this configuration of the fitting according to the invention supports a compact design and a uniform overall depth, regardless of the material thickness of the door element clamped between the fitting elements.
  • the connecting link has a free space in the form of a recess designed as a slot or a groove, through which or in which the holding element (not claimed) can be moved between the fitting elements.
  • sections of the holding element that is not claimed are designed as an L-profile or as a T-profile, preferably in the form of two essentially orthogonal surfaces that form a head part and a connecting part, with the connecting part in the free space designed as a groove, slot or recess in the connecting link in the released state of the adjustment mechanism not according to the invention is movably mounted and has a clamping effect in the recess in the fixed state of the adjustment mechanism not according to the invention.
  • the setting element or the holding element which is not according to the invention, is fastened to the lock function part and/or to the third fitting element. It is fastened either via the connecting part formed on the adjusting element or on the holding element not according to the invention or at a foot part connected to the connecting part, with the foot part, the connecting part and the head part of the adjusting element or the holding element not according to the invention being a common unit
  • a monolithic component is also to be understood here as a component produced from one or more different components, for example by injection molding.
  • a one-piece component can also be understood to mean a component made of one material, which is milled out of the metal block, for example by machining a metal block.
  • a common component is preferably also to be understood as meaning that the head part, the connecting part and/or the foot part are designed as individual parts which are provided as a common component, namely as an adjusting element or as a holding element not according to the invention in a preassembled state with link.
  • a fastening element is preferably arranged so that it is accessible to a user from the outside, for example on a third fitting element designed as a striking plate for a lock functional part designed as a counter-lock case. Since the third fitting element is in operative connection with the setting element or the holding element not according to the invention, which is guided between the first and the second fitting element in the connecting link, and the setting element or the holding element not according to the invention is therefore difficult to access, it can advantageously be from the outside on the third fitting element accessible fasteners advantageously the adjustment mechanism can be operated.
  • the holding element that is not claimed can perform a lifting movement through the fastening elements that are preferably arranged so that they are accessible to the user from the outside, and in order to form the adjusting mechanism that is not according to the invention as an integrated part of the holding element that is not claimed, the holding element that is not claimed has at least one bore into which the Fastening element engages in the fixing state at least partially, whereby an increased clamping between the holding element and the recess acts.
  • the fastening element In the detached state, the fastening element preferably engages less far into the bore or is located at a distance from the bore so that the clamping is less or the clamping is almost eliminated.
  • the third fitting element has at least one passage through which the fastening element extends to the bore and which is advantageously designed as an internally threaded bore.
  • the internal thread of the bushing serves as an abutment for the fastening element, which is preferably a screw
  • the adjusting element or the retaining element not according to the invention is moved with the advancement of the fastening element in the opposite direction to the advancement of the fastening element.
  • the setting element or holding element not according to the invention which is guided in the recess of the slotted link, comes to rest against the recess in a non-positive manner.
  • the head By tightening the fastening element, the head, here preferably the screw head, comes into contact with the passage designed in the third fitting element, as a result of which the adjusting element or the holding element that is not claimed moves relative to the third fitting element is or the setting or the non-inventive holding element is moved relative to the backdrop. Due to the movement of the setting element or the retaining element not according to the invention relative to the connecting link, the setting element or the retaining element not according to the invention is preferably coupled to the connecting link in a non-positive and/or positive manner.
  • the third fitting element and the lock function part are advantageously designed as a monolithic and/or one-piece component.
  • a monolithic component is also to be understood here as a component produced from one or more different components, for example by injection molding.
  • a one-piece component can also be understood as a component made from a material that is milled out of the material block, for example by machining a material block, for example a metal block.
  • a common component is preferably also to be understood in such a way that the fitting element and the lock function part are individual parts that are provided as a common component in a preassembled state.
  • the holding element not claimed is in the area of the bearing surface of the connecting part preferably has a profile, which can be a corrugation, for example.
  • the profile of the bearing surface is designed in such a way that the clamping or the friction between the holding element and the recess, which is not stressed, ensures a form fit in addition to a force fit.
  • the fitting element arranged between the first and the second fitting element has at least one recess which is designed for a functional element of a lock to reach through and/or engage.
  • a lock can be understood, for example, as a bolt that engages in the recess of the fitting element, which is arranged in a fitting according to the invention, which is designed as a counter-lock case and is used for clamping on, for example, a double-leaf glass door.
  • a bolt is preferably closed as the functional element which reaches through the recess of the fitting element to understand.
  • a functional element is also to be understood, for example, as a mounting module which reaches through the fitting element, namely through the cutout, in order to mount a bolt or, for example, a locking latch thereon.
  • the setting element is designed as a holding element, which is not claimed, as already described.
  • the retaining element that is not claimed is preferably designed as an L-profile with a head part and a connecting part, preferably in the form of two surfaces that are essentially orthogonal to one another, with the head part in the free space designed as a groove, slot or recess in one of the fitting elements in the disengaged state of the adjustment mechanism movably mounted and in the fixing state of the adjustment mechanism not according to the invention acts clampingly in the recess.
  • both fitting elements have a free space designed as a groove, slot or recess
  • the head part of the holding element not claimed or the holding element not claimed is designed as a T-profile in order to movably mount or clamp the holding element in both recesses of the fitting elements.
  • the head part has a clamping effect in both grooves, slots or recesses.
  • the retaining element designed as an L-profile the retaining element designed as a T-profile clamps evenly on both sides of the corner fitting, namely on both fitting elements.
  • the designed as a T-profile head part has the advantage that when the holding element is rotated, the surface rotated out of the free space of one of the fitting elements on the other side into the free space of the other fitting element is screwed in.
  • the connecting element is also advantageously connected to the holding element not according to the invention via a connecting part in the case of the holding element not according to the invention designed as a T-profile.
  • bearing surfaces configured on both sides of the T-profile as a holding element designed as a holding element have the additional advantage that the setting element is not only displaceable parallel to the fitting elements, but also between the fitting elements, ie towards one or the other fitting element is movable or displaceable.
  • the adjusting element designed as a holding element not according to the invention not only the height of the fitting and the glass thickness can be adjusted via the adjusting element designed as a holding element not according to the invention, but also, for example, a plane offset between the fitting according to the invention designed as a counter-lock case and, for example, a bolt that can be inserted into the recess of the fitting element.
  • an angular offset between the bolt and the fitting designed as a counter-lock case not according to the invention can be compensated for or set by the advantageous design of the adjusting element designed as a holding element not according to the invention.
  • an exchangeable spacer element adapted to the glass thickness can advantageously be arranged between the fitting elements, namely outside the contact sections, which acts as a counter bearing to the contact sections and the is designed clamped between the first and the second fitting element door element. Thanks to the spacer elements that can be adjusted to the thickness of the door leaf or the glass or material of the door element, consistent stability can be guaranteed with one and the same fitting, regardless of whether, for example, a glass door element is 8 mm thick or a glass door element is 20 mm thick Glass thickness is clamped in the clamping area between the fitting elements, since according to the invention the intermediate layer and in particular the thickness of the intermediate layer always remains the same.
  • the spacer element is held at least via one of its ends in a holder configured on one of the fitting elements in a force-fitting and/or form-fitting manner, in particular in a form-fitting manner. With its other end, which is not held in the holder, the spacer element is then preferably supported on the opposite fitting element or engages in this in a holder.
  • the holder which can be designed in one or in both fitting elements, is preferred a recess, for example a bore, a blind hole or a cut-out, the contour, ie the shape of which is preferably adapted to the outer contour of the spacer element.
  • the spacer element is designed as a square element, for example in the form of a square bar
  • the bore or the milled cutout is advantageously designed as a square hole or square cutout, in which the square spacer element can be arranged at least in a form-fitting manner, ie is accommodated in it.
  • the spacer element can also be designed in the form of a round rod or, for example, in the form of a hexagonal rod, in which case the bore or the milling is advantageously adapted to the shape of the round rod or the shape of the hexagonal rod.
  • the design of the spacer element as a round rod, square or hexagon should not be restrictive, rather all contours of the spacer element are conceivable, the outer contour of which can be represented in the bore or milled cutout in the fitting element in order to be able to accommodate the spacer element therein at least in a form-fitting manner.
  • a frame that encompasses at least some of these elements can be placed on the fitting elements and can be used, for example, to arrange a covering or Lid element, such as a cap, is used.
  • the frame preferably has an edge that encompasses the fitting elements, the edge of which rests flush at least in sections on a door element clamped in the clamping area.
  • the edge of the frame at least partially covers the fitting element arranged between the first and the second fitting element, the overlapping of the frame being dependent on the door element clamped between the first and the second fitting element.
  • the overlap of the edge of the frame encompassing the fitting elements over the fitting element arranged between the first and the second fitting element is greater than if between the fitting elements in the clamping area a glass door element with a glass thickness of 20 mm, for example, is clamped.
  • the edges of the frames enclosing the fitting elements are moved relatively away from one another, i. H. moved in the opposite direction over the fitting element arranged between the first and the second fitting element.
  • a “link” is to be understood as a guide on which the setting element or the holding element, which is not according to the invention, is guided in a displaceable manner between the fitting elements or in the fitting elements.
  • the connecting link serves to connect the fitting element, which is arranged between the first and the second fitting element, to the first and/or the second fitting element and the third fitting element in a non-positive and/or positive manner via the holding element.
  • the connecting link has a free space designed as a recess in the form of a groove, ridge, groove, a shoulder, a rail or a projection.
  • a connecting link within the meaning of the present invention can also be understood as a slot formed between two elements, the two elements being configured orthogonally to the longitudinal extent of the fitting elements, and the slot being formed by the spacing of the elements from one another, in which the holding element, which is not according to the invention, can be guided
  • latching means can be provided along the connecting link, which causes the retaining element not according to the invention to engage and thus enable the fitting to be preset with regard to its positioning on the door element, or which serve to preset the fitting to a specific glass thickness.
  • a "retaining element" not according to the invention is to be understood as meaning a component which can be displaced essentially parallel to the fitting elements and which serves in particular to displace the connecting element operatively connected to the retaining element not according to the invention parallel to the fitting elements.
  • the holding element which is not according to the invention, can be designed as a single-surface or multi-surface body. Of course, not according to the invention holding element can also consist of one or more interconnected struts or otherwise, such as. B. be designed as an elbow.
  • the only limiting factor for the type and design of the holding element, which is not according to the invention, is the free space available between the fitting elements, which is formed by the distance between the fitting elements.
  • the “third fitting element which is arranged between the first and the second fitting element” is to be understood, inter alia, as a connecting element which is operatively connected to the holding element which is not according to the invention.
  • the connecting element should have a recess which is used for a latch to reach through or engage. That as a connecting element configured fitting element can be configured in one piece and/or as a monolithic component with the holding element according to the invention.
  • the fitting element designed as a connecting element is suitable for an adjustable fitting that acts as a counter-lock case is designed.
  • a “spacer element” not according to the invention should be understood to mean a spacer element and preferably at least two or more spacer elements.
  • the spacer element or the spacer elements can be accommodated in holders on the fitting elements alternately in a non-positive and/or positive manner, and in particular in a positive manner, and are supported on the other fitting element.
  • the spacer elements can also only be accommodated in holders on one fitting element and are then supported on the opposite fitting element or engage in holders in this.
  • a "hardware” in the sense of the present invention is in particular a door fitting. This can be attached to a door element using a clamp.
  • a door element is to be understood in particular as the door leaf itself.
  • a fitting device according to the invention for example, in addition to the pivoting module of a door system, i.e. the door leaf, it can also be a skylight, a fixed module or a sliding module of the door system.
  • the fitting according to the invention can also be used with other disc-shaped components, for example with glass showcases, railing glazing and shower stalls.
  • the fitting according to the invention is used in particular for door elements with a glass construction or partial glass construction.
  • the fitting according to the invention can also simplify the manufacture of this door element or simplify the preparation of the door element for use of the fitting.
  • the door element can be clamped or clamped by the fitting according to the invention on the vertical or horizontal edge of the door element or on its corner points or particularly preferably in the central part of the vertical edge of the door element, which is opposite the vertical edge lying at the pivot point.
  • FIG 1 shows a fitting 1 according to the invention with a lock function part configured as a lock insert 7, with the rear frame 19, which encompasses the fitting element 4, and the end cap 22 that can be attached to the rear frame 19 and the subsequent cover element 23 for inserting a profile cylinder, as in Fig 6 shown in 1 are not shown.
  • the fitting 1 comprises a clamping area 2 (e.g. in 2 shown) for a door element and has a first fitting element 3 and a second fitting element 4, which each have at least partially a contact section 6.1, which comprises an intermediate layer 5 resting on the door element.
  • the fitting elements 3 and 4 delimit the clamping area 2 for the door element and form a free space 6 designed as a receiving area, which serves, for example, for receiving the lock insert 7.1.
  • the lock insert 7.1 is designed in one piece with a third fitting element 8, which is arranged between the fitting elements 3 and 4 and can be connected to them.
  • the connection between the third fitting element 8 and the fitting elements 3 and 4 takes place via adjusting elements 9 with a head part 9.1, a connecting part 9.2 and a foot part 9.3.
  • the adjusting elements 9 can be slidably arranged or guided via the connecting part 9.2 in links 13, which are designed on the fitting element 4.
  • the slides 13 extend between the fitting elements 3 and 4 at least in sections over the free space 6 configured as a receiving area between the fitting elements 3 and 4 or over the distance formed between the fitting elements 3 and 4 .
  • the fitting element 8 can be coupled or connected to the fitting element 4 in a non-positive and/or positive manner via the link 13.
  • the adjusting elements 9 are inserted with the connecting part 9.2 in the link 13 designed as a slot and on the head part 9.1 attached by means of fasteners 11, which are designed here as screws.
  • the fastening elements 11 engage through bushings 10 of the fitting element 8 in each case in a bore 12 configured in the foot part 9.3 of the adjustment elements 9.
  • the bore 12 is preferably configured as an internally threaded bore into which the fastening elements 11 configured as screws engage in a non-positive and/or positive manner .
  • the adjustment elements 9 are pulled in the direction of the fitting element 8 and jam in the connecting link 13. Ie. That the adjustment elements 9 connect the fitting element 8 with the fitting element in a non-positive and/or positive manner 4, namely in the link 13 configured on the fitting element 4. Since the setting elements 9 are slidably guided or mounted in the connecting link 13 of the fitting element 4, the fitting elements 3 and 4 can be spaced apart from one another in accordance with the glass thickness of a door element, without the thickness of the intermediate layer 5 having to be changed.
  • the material thickness of the intermediate layer 5 always remains constant, so that the distance between the fitting elements 3 and 4 and the door element, and thus also the flush Connection of the frame 19 encompassing the fitting elements 3 and 4, here in particular the flush connection of the edge 21 configured on the edge 20 on the door element is maintained regardless of the glass thickness of the door element.
  • the adjustment elements 9 can also be used to align the lock insert 7.1 connected to the fitting element 8, if necessary and to the extent that the installation situation of the fitting 1 according to the invention on a door element, in particular a glass door element, can be aligned centrally to the door leaf thickness of the door element and preferably centrally to the glass thickness of the glass door element . In this way, a homogeneous appearance between the lock insert 7.1 and the door leaves used for the door element and in particular the glass panes used for the glass door element can be set in a preferred manner.
  • a lower rosette 24 can be attached or attached, which in this case, like the fitting elements 3 and 4, has a cutout in the form of a profile cylinder, which corresponds to the cutout designed in the lock insert 7.1 for is adapted to a profile cylinder.
  • the lower rosette 24 extends through the frame 19 and through the end cap 22 and is surrounded on the connection cap 22 by a cover element 23, in the present case by a rosette.
  • the cover element 23 designed as a rosette also has a cutout for a profile cylinder.
  • the length of the profile cylinder is to be selected or adapted to the length of the door leaf thickness of the door element, here in particular to the glass thickness of the glass door element clamped between the fitting elements 3 and 4 .
  • threaded pins 25.1 in the form of grub screws are used, which engage in a borehole 26.1 of the lower rosette 24 designed as an internally threaded bore and come to rest on the profile cylinder, not shown here.
  • the fitting element 8 has a cutout 15 for the passage of a functional element of the lock insert 7.1 designed as a mounting module 27, on which, for example, a bolt can be mounted.
  • FIG 2 shows the in figure 1 illustrated components of a fitting 1 according to the invention in an assembled state in front view.
  • the fitting element 8 is designed in one piece with the lock insert 7.1 designed as a lock function part 7, which cannot be seen here due to the illustration behind the fitting element 8.
  • the fastening elements 11, which connect the fitting element 8 to the adjustment elements 9, are arranged so that they are accessible to a user from the outside.
  • the fastening elements 11 embodied as screws lie with their screw head in an end or stop position on the fitting element 8, as a result of which the setting elements 9 are at least non-positively coupled in the links 13 of the fitting element 4.
  • a marking A configured on the link 13 can be seen.
  • the setting of the fitting 1, namely the size of the clamping area 2 can be read from the marking A.
  • the door leaf thickness in particular the glass thickness of a clamped glass door element, can also be read via the marking A.
  • the edge 20 of the frame 19 covers both sides at least in sections, here in the illustration above and below the fitting element 8. If the clamping area 2 is enlarged, i.e.
  • the frames 19 arranged on both sides of the fitting elements 3 and 4, which each encompass the fitting elements 3 and 4, are also spaced apart from one another and the partial coverage of the edge 20 of the frame 19 over the fitting element 8 is reduced, so that with larger becoming clamping area 2 and a larger area of the fitting element 8 is released.
  • a larger area of the marking A is released.
  • figure 3 is the structure of a fitting 1, as already in the figure 1 represented, shown.
  • the one in the figure 3 fitting 1 shown not for Accommodating a profile cylinder, but for accommodating a round cylinder in the fitting 1.
  • the cover element 23, namely the rosette that rests on the end caps 22, is exchanged. All other components remain the same as in the design of fitting 1 for receiving a profile cylinder, as in figure 1 shown, preserved.
  • the fitting 1 according to the invention can be designed both to accommodate a profile cylinder and to accommodate a round cylinder.
  • a lock function part designed as a counter-lock case is shown in a fitting 1 according to the invention.
  • a fitting element 8 designed as a plate or striking plate with a recess 15 is arranged between the fitting elements 3 and 4.
  • the recess 15 is used, for example, to pass through a bolt when clamping on a glass leaf door element or to accommodate the bolt between the fitting elements in the free space 6 formed by the glass cut-out and by the fitting elements of the fitting 1 designed as a counter-lock case.
  • no other fitting elements 3 and 4 are required in comparison to the one in figure 1 and 3 Fitting 1 shown.
  • figure 5 shows the fitting 1 configured as a counter-lock case figure 4 in assembled condition.
  • the recess 15 allows a look into the free space 6 designed as a receiving area between the fitting elements 3 and 4.
  • the non-inventive embodiment according to figure 6 1 shows a fitting 1 which is designed as a corner fitting with a functional lock part designed as a counter-lock case.
  • the fitting elements 3 and 4 are each encompassed by a frame 19 to which an end cap 22 is fastened. Since the fitting elements 3 and 4 are preferably made of a metal, a metal alloy or, for example, a plastic-metal alloy, a contact section 6.1, which serves to place a door element against the fitting elements 3 and 4, includes an intermediate layer 5 for each fitting element 3 and 4 if the door element is preferably a glass door element, the intermediate layer 5 serves on the one hand to prevent metal from contacting glass. On the other hand, the intermediate layers 5 support the damping properties of the fitting 1.
  • the intermediate layer 5 applies not only to the here in the figure 6 Fitting 1 shown, but also for the previously in the Figures 1 to 5 fittings 1 shown.
  • a holder 25 is provided in each case, which serves for the arrangement, ie for the insertion of interchangeable spacer elements 18 and 18.1.
  • the holder 25 is a recess in the form of a blind hole, which is used for receiving or arranging the spacer element 18 at least in a form-fitting manner.
  • the holder 25 for the spacer element 18.1 shown for the fitting element 3 is designed as a separate component which, for example, engages in a bore, in particular in a blind hole designed on the fitting element 3, or can be inserted into this.
  • the holder 25 of the fitting element 3 also has a recess which is used for insertion or for a positive connection with the exchangeable spacer element 18 or 18.1.
  • the fitting element 8 is designed as a connecting element 17 which is operatively connected to the holding element 16 and together form an adjustment mechanism which can be switched from a fixed state to a released state and vice versa transferable.
  • the connecting element 17 is connected to the holding element 16 in a non-positive and/or positive manner via two adjustment or fastening elements 11 .
  • the holding element 16, which is in operative connection with the connecting element 17, is guided in the fitting element 3 and the fitting element 4 in a connecting link 13, which is designed as a free space 13.1 in the form of a recess 14, here as a groove.
  • the recess 14 or the gate 13 designed as a free space 13.1 is designed parallel to the longitudinal extension of the fitting elements 3 and 4.
  • the fitting element 8 designed as a connecting element 17 with the holding element 16 can be displaced parallel to the longitudinal extension of the fitting elements with the adjusting element 9 designed as a holding element 16 .
  • the fitting element 8 can also be moved perpendicularly to the longitudinal extent of the fitting elements in the space formed as a free space 6 between the fitting elements 3 and 4 .
  • the fitting element 8, in particular its recess 15, can be adjusted to a bolt engaging therein.
  • the connecting element 17 is fixed in its position via the holding element 16 by at least non-positive fitting elements 3 and 4 on the fitting elements 3 and 4.
  • fastening elements 11 and 16 are used, as described, in an advantageous manner Screws, which are guided through passages 10 in the form of bores 12 configured in the fitting element 8 , 17 .
  • the bushings 10 or bores 12 are advantageously designed as internally threaded bores, into which the fastening elements 11 engage in a form-fitting and/or non-positive manner after being passed through the bushings 10 .
  • the holding element 16 and the connecting element 17 are presently designed as two components connected to one another, which comprise a fastening mechanism or the adjustment mechanism, which is presently integrated in both components, namely in the holding element 16 and the connecting element 17 .
  • a fastening mechanism or the adjustment mechanism which is presently integrated in both components, namely in the holding element 16 and the connecting element 17 .
  • the head part 16.1 of the holding element 16 is clamped at least in sections, at least in a non-positive manner, in the connecting link 13, which is designed as a recess 14 in the form of a groove or slot, on the fitting elements 3 and 4.
  • Fastening mechanism is thus the displaceability of the holding element 16 and the operatively connected to the holding element 16 connecting element 17 by fixing the holding element 16 to the fitting elements 3 and 4 is prevented.
  • pins 28 are configured on the connecting part 16.2.
  • the pins 28 each have a bore 12 through which the fastening elements 11, which are guided in the bushings 10, and thus the fitting element 8, namely here, as shown, the connecting element 17 with the holding element 16 grip and/or form fit associate.
  • the head part 16.1 of the holding element 16, which is perpendicular to the connecting part 16.2, has at least one support surface, in this case one on the left and right of the connecting part 16.2, which serves to hold the holding element 16 in the connecting link 13 or to guide recess 14 and to couple it at least in a non-positive manner.
  • the contact surface of the head part 16.1 can have a corrugation, for example a diamond-shaped corrugation, which engages in a corrugation designed in the gates 13, so that between the Retaining element 16 and the fitting elements 3 and 4 in addition to the non-positive connection and a positive connection is formed in the fixation state of the adjustment or fastening mechanism.
  • This configuration of the holding element 16 is of course also in the Figures 1 to 5 illustrated embodiments applicable, but then in particular guided in the link 13 connecting part 16.2 of the holding element 16 has, for example, a corrugation.
  • the maximum glass thickness of the door element clamped in the fitting 1 and thus the adjustment of the clamping area 2 to the leaf thickness of a door element is limited by the contact surface of the head part 16.2 of the holding element 16, since this, as described above, is guided in the slots 13 of the fitting elements 3 and 4 designed as recesses 14 and with the recesses 14 via the fastening elements 11, which connect the holding element 16 to the fitting element 8 designed as a connecting element 17, force- and/or or coupled in a form-fitting manner.
  • the non-inventive embodiment according to figure 7 shows fitting 1 figure 6 in assembled condition in a frontal view.
  • the fitting element 8 designed as a connecting element 17, which has a recess 15 for receiving a bolt, is at least partially connected between the fitting elements 3 and 4 with the holding element 16, here in the figure to the left and to the right, ie parallel to the fitting elements 3 and 4 displaceable.
  • a counter-lock case can be realized which is adjustable, ie here in particular can be adjusted in height at the vertical edge of a door.
  • FIG 8 shows a detailed view of section A of Figures 1 to 5 .
  • the detailed view A is the marking made on the link 13 .
  • the marking shows information in the millimeter range, and here information on standardized glass door thicknesses is preferred.
  • the fitting 1 according to the invention can thus be preset to the known door leaf thicknesses, in particular glass thicknesses of glass door elements, via this marking A.

Landscapes

  • Engineering & Computer Science (AREA)
  • Structural Engineering (AREA)
  • Securing Of Glass Panes Or The Like (AREA)
  • Road Signs Or Road Markings (AREA)
  • Steering Control In Accordance With Driving Conditions (AREA)
  • Traffic Control Systems (AREA)

Claims (9)

  1. Ferrure (1) avec une partie fonctionnelle de serrure (7), tout particulièrement un insert de serrure (7.1) ou boîtier de serrure ou têtière, avec une région de serrage (2) pour un élément de porte, tout particulièrement pour un élément de porte en verre, incluant un premier élément de ferrure (3) et un deuxième élément de ferrure (4), lesquels incluent respectivement au moins par régions une section d'appui (6.1), laquelle comprend une couche intermédiaire (5) pouvant établir un contact avec l'élément de porte, les éléments de ferrure (3, 4) délimitant la région de serrage (2), la partie fonctionnelle de serrure (7) incluant un troisième élément de ferrure (8), lequel est agencé entre les éléments de ferrure (3, 4),
    caractérisée en ce
    que, entre les éléments de ferrure (3, 4) est prévu un mécanisme de réglage, au moyen duquel un alignement de position de la partie fonctionnelle de serrure (7) par rapport aux éléments de ferrure (3, 4) est exécutable, le mécanisme de réglage étant aménagé de telle façon entre les éléments de ferrure (3, 4) qu'un mouvement de la partie fonctionnelle de serrure (7) peut être effectué orthogonalement par rapport à l'extension longitudinale des éléments de ferrure (3, 4) pour réaliser l'alignement de position, le mécanisme de réglage incluant au moins une coulisse (13) qui est agencée sur l'élément de ferrure (3, 4), la partie fonctionnelle de serrure (7) étant déplaçable le long de cette coulisse (13) par l'intermédiaire d'un élément de réglage (9).
  2. Ferrure (1) selon la revendication 1,
    caractérisée en ce
    que les éléments de ferrure (3, 4) sont adaptés de telle façon que des épaisseurs de matière différentes de l'élément de porte peuvent être insérées dans la région de serrage (2), tout particulièrement sans avoir à modifier l'épaisseur de matière de la couche intermédiaire (5).
  3. Ferrure (1) selon l'une des revendications précédentes,
    caractérisée en ce
    que la coulisse (13) forme un composant structurel commun avec au moins un élément de ferrure (3, 4), tout particulièrement en ce que la coulisse (13) et l'élément de ferrure (3, 4) sont intégraux et/ou forment un composant structurel monolithique.
  4. Ferrure (1) selon l'une des revendications précédentes,
    caractérisée en ce
    que la coulisse (13) inclut une entaille comme espace libre en forme d'une fente ou d'une rainure, à travers laquelle ou dans laquelle l'élément de réglage (9) est mobile.
  5. Ferrure (1) selon l'une des revendications précédentes,
    caractérisée en ce
    que l'élément de réglage (9) est affixé sur la partie fonctionnelle de serrure (7) et/ou sur le troisième élément de ferrure (8).
  6. Ferrure (1) selon l'une des revendications précédentes,
    caractérisée en ce
    que le troisième élément de ferrure (8) et la partie fonctionnelle de serrure (7) sont aménagés comme composant structurel monolithique et/ou intégral.
  7. Ferrure (1) selon l'une des revendications précédentes,
    caractérisée en ce
    que le troisième élément de ferrure (8) inclut au moins un évidement (15) pour le passage et/ou l'engagement d'un élément fonctionnel d'une serrure.
  8. Ferrure (1) selon l'une des revendications précédentes,
    caractérisée en ce
    que l'élément de réglage (9) inclut une partie de tête (9.1), une partie de connexion (9.2), et une partie de base (9.3), et tout particulièrement la partie de tête (9.1) et la partie de connexion (9) étant alignées verticalement l'une par rapport à l'autre et la partie de base (9.3) parallèlement par rapport à la partie de tête (9.1) et/ou forment un composant structurel monolithique et/ou intégral.
  9. Ferrure (1) selon l'une des revendications précédentes,
    caractérisée en ce
    que le mécanisme de réglage comprend l'élément de réglage (9).
EP14196240.7A 2014-12-04 2014-12-04 Ferrure dotée d'une plage de serrage réglable Active EP3029227B2 (fr)

Priority Applications (4)

Application Number Priority Date Filing Date Title
ES14196240T ES2684991T5 (es) 2014-12-04 2014-12-04 Herraje con zona de sujeción ajustable
EP14196240.7A EP3029227B2 (fr) 2014-12-04 2014-12-04 Ferrure dotée d'une plage de serrage réglable
CN201510324524.0A CN105672816B (zh) 2014-12-04 2015-06-12 具有可调节的夹紧区域的包覆件
US14/946,079 US11306504B2 (en) 2014-12-04 2015-11-19 Fitting with adjustable restraining area

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
EP14196240.7A EP3029227B2 (fr) 2014-12-04 2014-12-04 Ferrure dotée d'une plage de serrage réglable

Publications (3)

Publication Number Publication Date
EP3029227A1 EP3029227A1 (fr) 2016-06-08
EP3029227B1 EP3029227B1 (fr) 2018-05-09
EP3029227B2 true EP3029227B2 (fr) 2022-05-18

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ID=52103206

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US (1) US11306504B2 (fr)
EP (1) EP3029227B2 (fr)
CN (1) CN105672816B (fr)
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Also Published As

Publication number Publication date
US20160194899A1 (en) 2016-07-07
US11306504B2 (en) 2022-04-19
EP3029227B1 (fr) 2018-05-09
CN105672816B (zh) 2019-10-01
CN105672816A (zh) 2016-06-15
ES2684991T5 (es) 2022-10-11
ES2684991T3 (es) 2018-10-05
EP3029227A1 (fr) 2016-06-08

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