EP1711673B1 - Dispositif de fixation par clips permettant le montage rapide de systemes d'armature tels que des fermetures a levier pivotant, des parties de charniere, dans des ouvertures d'une fine paroi - Google Patents

Dispositif de fixation par clips permettant le montage rapide de systemes d'armature tels que des fermetures a levier pivotant, des parties de charniere, dans des ouvertures d'une fine paroi Download PDF

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Publication number
EP1711673B1
EP1711673B1 EP05707016A EP05707016A EP1711673B1 EP 1711673 B1 EP1711673 B1 EP 1711673B1 EP 05707016 A EP05707016 A EP 05707016A EP 05707016 A EP05707016 A EP 05707016A EP 1711673 B1 EP1711673 B1 EP 1711673B1
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EP
European Patent Office
Prior art keywords
fixture according
spring
clip fixture
retaining element
clip
Prior art date
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Active
Application number
EP05707016A
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German (de)
English (en)
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EP1711673A1 (fr
Inventor
Dieter Ramsauer
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Individual
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Individual
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Publication date
Priority claimed from DE200420001161 external-priority patent/DE202004001161U1/de
Priority claimed from DE200420003238 external-priority patent/DE202004003238U1/de
Application filed by Individual filed Critical Individual
Priority to EP20070010668 priority Critical patent/EP1849937A3/fr
Priority to PL05707016T priority patent/PL1711673T3/pl
Publication of EP1711673A1 publication Critical patent/EP1711673A1/fr
Application granted granted Critical
Publication of EP1711673B1 publication Critical patent/EP1711673B1/fr
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Classifications

    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B9/00Lock casings or latch-mechanism casings ; Fastening locks or fasteners or parts thereof to the wing
    • E05B9/08Fastening locks or fasteners or parts thereof, e.g. the casings of latch-bolt locks or cylinder locks to the wing
    • EFIXED CONSTRUCTIONS
    • E05LOCKS; KEYS; WINDOW OR DOOR FITTINGS; SAFES
    • E05BLOCKS; ACCESSORIES THEREFOR; HANDCUFFS
    • E05B1/00Knobs or handles for wings; Knobs, handles, or press buttons for locks or latches on wings
    • E05B1/0092Moving otherwise than only rectilinearly or only rotatively
    • 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
    • Y10STECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
    • Y10S411/00Expanded, threaded, driven, headed, tool-deformed, or locked-threaded fastener
    • Y10S411/913Self-expanding anchor
    • 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
    • Y10T70/00Locks
    • Y10T70/70Operating mechanism
    • Y10T70/7441Key
    • Y10T70/7486Single key
    • Y10T70/7508Tumbler type
    • Y10T70/7559Cylinder type
    • Y10T70/7655Cylinder attaching or mounting means

Definitions

  • the invention relates to a Klipsbefest Trent for quick assembly of fitting devices, such as socket wrench locks, swivel lever locks, hinge parts, in openings in a thin wall, comprising a on the one, outer side of the thin wall to be arranged, the outer edge of the opening overlapping headboard, of which a Breakthrough in the mounted position protruding torso portion protrudes from the in the direction of its outer surface resilient retaining elements, the free end of a first inclined surface, (inlet taper) which serves for spring-loaded pushing back of the retaining element by the breakthrough edge, and a thereto substantially perpendicular second inclined surface (outlet taper) for play-free support of the body part on the edge or edge of the opening of the other, inner side of the thin wall, are arranged, wherein the body part and retaining element and spring are separate parts.
  • fitting devices such as socket wrench locks, swivel lever locks, hinge parts
  • the object of the invention is to provide a Klipsbefest only alternative to the prior art, which does not have these disadvantages.
  • the object is achieved in that the holding elements in a parallel to the plane of the thin wall, rectangular in cross-section cylinders slidably arranged carriage, which are held by a latching between themselves or in the cylinder hook device or by frictional forces or by a pin against compression spring force and supporting elements held or supported by the body part are provided for supporting the holding elements after mounting the misting device in the thin wall.
  • two diametrically opposed holding elements are provided, which are supported by spring means such as coil spring and / or wedge devices such as cone screw. Since the spring means can be provided with freely selectable spring force, the locking force can be adapted to the respective task and is not dependent on the plastic material.
  • the locking force is highly dependent on the shape of the fitting and the material property of the plastic used.
  • the holding element is a flat in the direction of movement, from one or from the two side edges of strips for better guidance in the direction of movement.
  • the retaining element may have a projection / recess which cooperates with a stroke-determining projection / projection which is supported or formed by the body part or cylinder (claim 4).
  • the holding element has a direction of movement extending, substantially rectangular opening, in which a coil compression spring is used.
  • the holding member may be a flat in the direction of movement part with a width smaller than the round diameter of the spring.
  • the holding element holds a katzbuckelnde spring.
  • the retaining element receiving the channel can take a protruding from the holding member part of the spring by clamping engagement (claim 8).
  • the retaining element may according to claim 9, two opposite lateral nests for receiving half the spring width of the spring and the channel have a matching recess for the remaining spring width.
  • According to claim 10 may have at two juxtaposed holding elements projecting at the transverse edges of the respective opening for receiving the spring in the other breakthrough approaches that form support surfaces for the spring.
  • the holding element may consist of a package of a first and a second and possibly further flat parts each with a rectangular breakthrough having a common opening for flush receiving a coil compression spring such that in the unloaded state, the coil spring is pressed into the working position ,
  • the holding element is a flat in the direction of movement part with an opening, extending from the transverse to the direction of movement extending side edges projections for aligning the coil spring.
  • the holding element is housed in a housing which in turn is mountable in a thick wall.
  • the holding element has inclined surfaces of the same angle for inlet and outlet and thereby operates like a ball catch.
  • the holding element can form a straight centering surface in front of the inlet bevel.
  • the holding element forms approach, return or threaded surfaces into which a tool, such as keys or screwdriver blade for moving the or the holding elements can engage in the retracted position.
  • a further embodiment is characterized in that the holding elements in a parallel to the door leaf plane, rectangular in cross-section cylinder slidably mounted slide of rigid material, such as metal, which are held by a pinning arranged between them against compression spring force. (Claim 18)
  • the pinning device can also consist of screws screwed in the head part (claim 19), wherein according to yet another embodiment there is the possibility that the screws determine the stroke of the movement of the holding elements. (Claim 20)
  • the hull or cylinder may have a part partition or undercut or breakthrough edge on which the carriages or levers are axially supported by a shoulder or hook.
  • the holding elements are formed by slidably held carriages whose movement axis is perpendicular to the longitudinal extension of the trough.
  • the holding elements are formed by slidably held carriages whose movement axis is parallel to the longitudinal extent of the fitting device.
  • the holding element is formed by a stamped part.
  • the head part in the region of the retaining element, has a recess for receiving Kantenausbeulept.
  • two or more holding elements are arranged side by side in each case.
  • body part and head part are injected in one piece.
  • the body part and the head part are two parts which are screwed, welded or clipped.
  • the fitting device may be a swivel or folding lever lock for attachment in an elongated or in two shorter rectangular openings, one breakthrough a lever bearing and the other breakthrough receives a lever lock, it is favorable if at least one of the openings also for receiving at least one body part with holding elements according to one of the preceding claims 1 to 29 is used.
  • the pivot or folding lever lock may have a trough for lockable recording of the actuating lever, wherein it is favorable when the trough forms the head part of one or two fuselage parts with holding elements in the region of the lever support, such as drive shaft.
  • the swiveling or folding lever lock can have a recess for the arresting of the actuating lever, whereby it is favorable, when the trough on the one hand forms the Schugriff Structure for the thumb of a Hebelarretmaschine, on the other hand, the head part of a body part with holding elements in the lever locking.
  • the fitting device may represent a rod guide, or a lock case, or a socket wrench.
  • Fig. 1A a longitudinal sectional view of a pivot lever closure 10 shown, which is arranged in two rectangular openings 12, 14 of a thin wall 16, here a sheet metal cabinet door leaf, see also Fig. 27 , Leaving the center bar 17 away, results in a long rectangular opening, which would also be suitable.
  • the fitting device here the pivot lever lock comprises in the region of each opening 12 or 14 on the one, outer side 18 of the thin wall 16 to be arranged, the outer edge 20 of the opening 12 and 14 overlapping head part, here in the form of the pivot lever 22 receiving trough 24, from which head part or trough 24, a breakthrough 12 and 14 in the mounted position each protruding hull part 26 emanates.
  • the pivot lever lock comprises in the region of each opening 12 or 14 on the one, outer side 18 of the thin wall 16 to be arranged, the outer edge 20 of the opening 12 and 14 overlapping head part, here in the form of the pivot lever 22 receiving trough 24, from which head part or trough 24, a breakthrough 12 and 14 in the mounted position each protruding hull part 26 emanates.
  • the free end of an inclined surface 38 for backlash-free support of the body part 26, 28 on the edge or the edge 40th of the opening 12 or 14 of the other, inner side 42 of the thin wall 16 has.
  • the locking elements are hooks hooked each other, the material of these hooks is advantageously made of polyamide, that is flexible enough to dodge the linear insertion of the holding elements 36 in the body part 26, 28 sufficiently and can pass each other and springing back according to Fig. 1B hooked at the top and bottom, so that they are in the Fig. 1B shown position, and so the outgoing from the trough 24 body parts 32, 28, 128 are securely held in the associated rectangular opening.
  • This fuse can be designed by appropriately strong spring means 44 so that under normal circumstances and operating conditions, the retaining elements or Klipsetti 36 does not retract against the force of the spring 44.
  • the closure comprises, as shown here, a projection tongue 52 which lies behind a door frame edge 50
  • the two diametrally opposed holding elements 36, 136 are loaded to different degrees.
  • the pressure exerted on the side of the tongue 52 in its rear grip position is for the most part taken up by the holding element 36 opposite edge 20 of the tiller, while the holding member 36 is little loaded, which is exactly the opposite on the opposite side, as this holding member 136 is the strongest loaded.
  • the two levers 236 are pressed at their inner end in each case by a common strong compression spring 244 to the outside.
  • the tongue can be provided with a rotatable cross stop, which is indicated at 64. Also connected to the trough bar lock body with pinion and rods can be mounted and clipped, especially if the central web 17 is omitted between the two openings 12, 14 in the thin wall 16 and so an elongated opening is formed, the openings 12, 14, see Fig. 2 ,
  • the upper body portion 26, which projects from the trough 14, serves as a bearing for a drive shaft 66, at whose lying outside the door leaf end of the lever 22 is pivotally pivoted about an axis perpendicular to the door leaf axis 68, while the inner end of the shaft 66th With a square ends, is attached to the square opening having a tongue 52 and held by a fastening screw 72.
  • a receiving portion 30 for an outgoing from the hand lever 22 cylinder lock interlocking part, with excentered tongue or thumb 70 is provided, which can be locked behind a return surface 74 by actuation of a cylinder key 76 in the retracted position.
  • a spring rear handle 174 may be provided, whereby the rotating tongue 170 could also be mounted in a torsionally rigid manner on the cylinder roller by means of clip devices.
  • FIG. 4 an application is shown in which the Klipsbefest only invention is applied to a hinge. That's how it shows Figs. 4A and 4D a two-part hinge with the hinge parts 80, 82, wherein the lower, first hinge part 80 is fixed to the door frame 250 by means of the clip element 228 described in connection with the pivot lever handle, while the second, upper hinge part 82 is connected to the door leaf by means of the holding element 236 , please refer Fig. 4D ,
  • the lower hinge part 80 and upper hinge part 82 are interconnected by a hinge pin 84 which is crimped in the lower hinge part 80, while its upper end is rotatably received in a bore 86 of the upper hinge part 82.
  • Lower hinge part 80 is connected to a door frame 150, by means of a Klipsbefest mod 228, while the upper hinge part 82 by means Klipsbefest mod 232 a metal door 216 about the hinge axis of Hinge pin 84 holds pivotally.
  • the rectangular opening required for this in the door frame 250 or in the door leaf 216 is, for example, in Fig. 13 represented and denoted by the reference numeral 76.
  • the Klipsbefest Trent comprises a on the outer side of the thin wall or of the frame 250 and the door panel 216 to be arranged, the outer edge of the opening 78 overlapping head portion or hinge lobes 88, from which a breakthrough 78 in the mounted position protruding body portion 228 emanates from which projecting in the direction of its outer surface resilient retaining or tongue members 336, the free end of an inclined surface 38 for play-free support of the body portion 228 and thus of the hinge 80 on the edge of the opening 78 of the other, inner side of the thin wall 250, is arranged ,
  • a construction can be selected, as has already been described in connection with the pivot lever lock, or as they according to an embodiment of the Figs. 5A to 5C is selected.
  • hooking hook serves a pin according Fig. 6 as a lock.
  • Two metal components according to Figs. 5A to 5C be in a rectangular guide channel according to Fig. 8B pushed in and by a bolt screwed from the outside according to Fig. 6 held in the retracted position, so that they can indeed move a short distance to each other, but can not fall out.
  • FIGs. 9A, 9B and 9C an embodiment for a hinge is shown, in which one hinge part is welded to the door leaf 416, while the other hinge part is held on the door frame 450 with a further embodiment of the clip fastening according to the invention.
  • This consists of the Door leaf level at a distance about an axis perpendicular to the door leaf axis rotatably arranged lever means 436 which are pressed by spring means to the outside and then engage edge portions of a arranged in the door leaf 450 rectangular opening.
  • Figs. 10A and 10B show an embodiment in which the two are pressed apart by spring means holding elements are held by hooks to each other, between which an inclined wedge 94 is arranged.
  • a similar construction shows Fig. 11 ,
  • a round pin 294 is provided which holds two mutually displaceable, made of hard material such as metal parts in position.
  • a rectangular opening 78 is shown, as it is suitable for the embodiment described here, a lock. So could a hinge element, as in the Figs. 14A and 14B is shown in side view and front view, clipped into this rectangular opening 78. Otherwise, the structure is similar to that of Fig. 3 but this is an (upper) hinge part 282.
  • FIGS. 15A, 15B, 16 and 17 are representations of a fixture, in accordance with Fig. 15A upper part of a pivot lever, according to Fig. 15A lower part of a hinge part can be fixed in a rectangular opening of a thin wall.
  • a single spring is provided, the two holding elements 536 from the depressed Klipswolf according to Fig. 17 in the clipped position according to Fig. 16 pushes when the component or the fitting is pressed into the mounting hole.
  • the two holding elements 536 are in the Figs. 19A and 19B again as an item in two different views.
  • the Figs. 18A and 18B show the associated item as hinges. It is important that here the hook of the holding element 536 is supported on a wall opening 96.
  • a solution is found here, with a spring and frontal opening in which the clip elements hold with hooks in the mounted state of delivery.
  • a lateral in the holding or guide channel is provided instead of the frontal opening. In both cases, the advantage is that you can do with only one spring.
  • Fig. 16 20A and 26B show an embodiment in two different views, in which the conical screw 98, two holding elements 736 are pressed apart, resulting in a particularly large holding force, the screw head is located inside and a Blindbefest Trent is not possible. But you could also tighten with a screw from the outside a conical nut, which would have the same effect, and also would allow a blind assembly.
  • Fig. 25 shows a pivot lever with a arranged at the lower end, known per se hook attachment, but provided at the upper end holding elements according to the invention.
  • a hook fastening means hook 100 At the lower end only small forces are effective, a hook fastening means hook 100, while in the tongue area, 52, where the closing forces and the rotation of the hand lever cause greater forces occur, the device 836 according to the invention is provided, be it one of the preceding embodiments in particular, the conical screw embodiment, Figs. 26A, 26B.
  • a hook 100 At the other end of the key plate or headboard 24 is located in Fig. 25 a hook 100.
  • a hook 100 At the other end of the key plate or headboard 24 is located in Fig. 25 a hook 100.
  • Fig. 29 it is a socket wrench, in the embodiment according to Fig. 30 one Lever lock.
  • Fig. 31A shows in a sectional view from above a hinge part 382, at its head part forming tabs 388, the body part 326 is attached by means of cap screws 27. These screws 27 simultaneously limit the stroke of the fastening elements 1136, see the slot 29, in which the screw cross section 27 can migrate.
  • FIG. 31B Like from the Fig. 31B or 31C , an axial sectional view in a view from below, move when inserted, the elements 1136 in the channel inwardly against the force of the spring 344, as far as the Langloch extension 29 allows, and then jump back into the locking position, the Fig. 31B is recognizable.
  • This separation of the head and torso parts of the fastening system is z. B. advantageous if grooves 31 are to be provided for Abdichtringe 33. This can lead to tools for the injection molding process, which are difficult to handle when a one-piece production is desired.
  • the hinge part 82 is in the Fig. 32A . 32B and 32C drawn out in three different views.
  • the groove 35 can be seen, in which the free legs of the U-part 326 are used, as well as the threaded holes 37, in which the screws 27 can be screwed.
  • the holding element used here is in the Figs. 33A to 33C shown as a single part, including the receiving blind hole 39 for receiving a compression spring 44th
  • Figs. 34A and 34B is shown in an end view and a side view of the guide member for the holding members 1136.
  • Fig. 36A shows as an alternative way to create clamping action, in a side view and in Fig. 36B in a front view of a Klipselementan elbow 3236 with Schlitzschräg Adjust 3204 in the retracted position during the assembly process, in Fig. 36C the front view like Fig. 36B
  • Fig. 36C the front view like Fig. 36B
  • Fig. 36D shows an embodiment in which the clamping forces are transmitted to the sheet 16 at a greater distance from the breakthrough edge 12. This allows a higher power through the sheet.
  • Fig. 36E shows in a partial front view of an alternative embodiment in which the slotted slope guide is replaced by a slanted surface guide 3304;
  • Figs. 37A and 37B show in a side view and in a plan view of an embodiment with lever-shaped, cross-spring-supported (3644), about a perpendicular to the wall plane 16 axis 3661 pivotable holding members 3636, see also Figs. 9A to 9C ,
  • Figs. 38A and 38B show in a front view and a side view end face or frontally mounted, in a circular arc around a Wandebebe 16 parallel axis 60 guided, each spring-loaded (3744) holding or Klips institute 3736.
  • the attachment of the fitting 3724 in the break center of the Auflaufnikbogens is further inside, based on the pivot point 60 of the clip elements, arranged to achieve the clamping function. See also the Fig. 3 ,
  • Figs. 39A and 39B show in a side view and in a plan view holding elements 3836 as in Figs. 38A, 38B
  • a plurality of holding elements 3836 are mounted side by side on a shaft 3860. They transmit larger forces.
  • the shaft 3860 is mounted multiple times (at both ends and in the middle) in the joining part 3826, eg in the body part 3826 of a fitting part, eg hinge part 3824, as shown.
  • Figs. 40A to 40C show in a front view, in plan view and in an exploded view linearly running, spring-loaded clip elements 3936 guided in a groove 3929 of the body portion 3926 pin 45, after insertion of the spring 3944 in the blind hole 3947 and insertion of the holding member 3936 in the channel 3913 of the body part 3926 in the bore 49 to
  • Figs. 41A and 41B show in two views a plate 16 detecting a clip member 4036 with stroke limitation by a pin 4094, see also Figs. 8A and 8B ,
  • Fig. 42A in a front view and Fig. 42B in a side view as well as in other views ( Figs. 42C, 42D ) show a Klipsbefest Trent with secured by a pin 4194 and limited stroke holding elements 4136, formed of two opposing, spring-supported (4144) elements 4136, which have a closed breakthrough 4185 in mirror image stacking for the spring receiving in which a spiral compression spring 4144 is biased.
  • a recessed longitudinally inserted 4183 forms in mirror image layering a groove for receiving a plug 4194, which aligns with its neck 4105 the Klipselementapt 4106 in the channel 4113 centered.
  • Fig. 42D shows in various views the items 4136 (two-fold) and 4194 of Klipselementwovenes 4106.
  • Figs. 42E and 42F show an embodiment in which the elements are centered by bending down a grooved rib 4294.
  • Figs. 43A and 43B shows a thin material formed, packaged, with open spring channel 4385 provided Klips institute 4336, in which the attached hook 4351 holds in an outer opening 4307 of the channel 4313 and secures the Klips institute 4336 against the spring pressure 4344. Again, these are counteracting packaged clip elements.
  • Fig. 43C make these two individual packages 4306 of the arrangement Figs. 43A and 43B clear.
  • Fig. 43D shows two other arrangements (resilient, with the plate 4336 integral nose 4359 or two-piece inserted into a recess of the plate 4336 nose part 4363 to hold the clip elements against spring force in its functional position (against spring force, because the spring channel 4385 is open to the rear) ,
  • Figs. 43E to 43G show clip elements 4336b with closed half-shell 4308 for receiving the spring 4344, after removing the optionally provided plug (see Fig. 42A ) can be the clip elements 4336 with a screwdriver blade 4301 or similar tool (see eg: Fig. 43G and Fig. 81B ) for disassembling the fixed part 4324 (fitting, panel).
  • Fig. 44A shows the retraction of toothed clip parts 4436 with a toothed shank 4402.
  • FIG. 12 shows a housing 4424 of a fastener for side-by-side mounting of packaged clip members 4336 Figure 43C .
  • Fig. 44C a screwdriver blade 4401, and Figs. 44D and 44E arranged side by side Klips emulate with longitudinal return for retraction with the screwdriver according to Fig. 44C , mounted in a fastener housing, and Fig. 44F the associated Klips institute 4436 in plan view.
  • Fig. 45A explains in 6 subpictures individual (non-stratified) clip elements 4536 for individual use on end or side surfaces of fittings or other structural parts, with T-section 4503 to improve the leadership properties for particularly short or high clip elements, the field on the right in plan view an end face Application 4524.
  • the spring 4544 is used preloaded.
  • Fig. 45B represents a clip element with a rectangular opening 4683 spring receiving, end edges of the opening 4683 are provided with one-sided or two-sided projections to hold the spring safely during pre-assembly.
  • Fig. 45C shows a single use clip 4736.
  • the spring 4744 may be centered or one-sided ( Fig. 45C ) are used (biased), where off Fig. 45D the knowledge arises that in one-sided inserted spring 4744 this tends to Katzbuckeln and thereby securely holds the pre-assembled clip element in the mounting space.
  • Fig. 45E shows the mounting space 4747 for the clip 4736 according to FIG. 45D , in compliance with the reference dimensions A in clip 4736 and 4747 spring test in the mounting space of the fastening to be fastened by clips 4724, the position of the clip 4736 is set.
  • Fig. 45F shows in two fields that with centrally arranged spring in Klipselement it is secured by the following measures against falling out: either the hole for the spring (spring test 4747) is reduced in the rear area so that the spring 4744 jammed when inserting the pre-assembled clip element, or there are areas, see left part of fig Fig. 45F , or tips, see right part of fig Fig. 45F , attached, whose intermediate dimension is smaller than the diameter of the spring is;
  • Fig. 45G in 7 partial pictures Klips institute with rectangular cross-section, used at the front for Klips fastening of a component, spring arrangement centered or laterally, Figs. 46A and 46B the provision of a guide channel 4813 for clip elements 4836 on a sheet metal part, such as hinge tabs 4824, by Anyaken a rectangular pipe section.
  • Figs. 47A and 47B show a broad clip 9436 for the absorption of large forces with 4983 prestressed springs 4944 on both sides in the closed nest, cat humps of the springs 4944 secures Klipselement 4936 against falling out of the channel 4933th
  • Fig. 47C is a recess 4947 with half spring cross-section on both sides for receiving the Klipsiatas 4936 according to Fig. 47B to recognize.
  • Figs. 48A and 48B show a clip member 5036 similar as in accordance with Fig. 42D with reciprocal approaches 5015, which allow full support of 5044 spring faces.
  • Figs. 49A and 49B show a clip 5136 inserted into an enveloping housing 5126 for mounting in an otherwise unsuitable material such as wood.
  • the cross section of the housing 5126 is rectangular here.
  • Figs. 50A to 50C as above, but round cross section for the housing 5226 and this with collar.
  • Fig. 50D shows an embodiment with a clip member 5336, the inlet and outlet angle is the same and can take over in conjunction with a bore 5337 Kugelschnäpperfunktion.
  • Figs. 51A to 51C Clip elements 5436 similar as according to Fig. 42D with an outer centering surface 5439 for better insertion into the mounting hole, if for certain reasons to dispense with a centrally-oriented measure such as plugs.
  • Attachment is provided by means arranged in a channel fasteners, see reference numeral 1636.
  • the attachment is made here with arranged on the end faces holding elements 1636, which, since they are slightly shorter than in other embodiments, additionally guided by a groove which at 65 it can be seen, see Figs. 57A, 57B , 57C, while the bearing of the pinion, shown in the Figs. 58A, 58B , done in a fuselage 1632, in Fig. 53C it can be seen in Fig. 59
  • a lid 67 can be seen, which represents an additional storage for the pinion.
  • This cover can either be supported on a recess 69 in the fuselage part of the fitting, see FIGS. 54A, 54B , or at the edges of the locking rods 71, as in the 52B, 53B becomes recognizable.
  • Figs. 60A, 60B, 60C . 60D show a similar construction as described above, but here the Klipsbefest Trent for the cap is arranged at the frontal corners and these engage in apertures formed by the lid, which in the Figs. 61A, 61B, 61C and 61D is shown, so it grab the hooks 73 in the in Fig. 61C shown openings 75, so that the holder according to Fig. 61A results.
  • a toggle fastener is shown with closure rod 75, which operates without a cap, instead having a one-piece housing, with lateral guide webs 79 for the rods 75 carry Klips noticeden 77 and thereby hold the rods.
  • Fig. 63A . 63B illustrated embodiment is a clipped according to the invention housing, with fastening elements 2136, which housing has an attached adapter 87, shown in the Figs. 65A, 65B, 65C , By means of which adapter 87 a wing tongue 89, shown in the FIGS. 64A, 64B , can be mounted. On the wing tongue can be rods 275 hinge, as in the Fig. 63A . 63B dargestelllt.
  • the adapter forms stop surfaces 91, see the Fig. 63C to which the nose 93 abuts the Drehwegbegrenzung the wing tongue 89.
  • FIGS. 66A, 66B , 66C an embodiment is shown in which a holding device according to the invention 2236 is welded to a sheet metal hinge 95. Welding is punctiform, see reference numeral 97. In the area of welding fastening, the spring 2336 has, moreover, a bead 99, which has a stiffening effect, Fig. 72D ,
  • FIG. 67E shows a further embodiment of the invention, in which two mutually movable holding elements 2636 are mounted in a channel against each other displaceable against spring force.
  • a grub screw 113 engages, the movement of the elements 2636 is linearly limited.
  • this is a cost-effective, but also easy to install arrangement.
  • the flat sheet metal parts to be used can be punched cheaply. In built-in situation, but not yet mounted on the cupboard, the two openings of the sheet metal parts are congruent even when preloaded compression spring.
  • the overall arrangement is very narrow and is therefore space-saving. In special situations can The Klipsplatten be used solitary and cranked in adaptation to space.
  • Fig. 69A shows the compression spring
  • Fig. 69B the grub screw, in place of which a pin shown in Fig. 78C is usable, but which would not be disassembled.
  • Fig. 67E shows how the parts can also meet in the guide channel.
  • a one-sided protuberance 115 for the breakthrough leaves the spring at the end in each case over the entire surface.
  • FIG. 70A, 70B and 70C A similar embodiment show the Figs. 70A, 70B and 70C , in which the attachment 2736 according to the invention is used in a pivoting lever.
  • the pivoting lever drives a pusher which secures the door in a frame when it is closed.
  • the Fig. 71A . 71B show details of the trough area to be defined in the door leaf, while the Figs. 72A, 72B show two views of the slider.
  • Fig. 73A again shows a grub screw and Fig. 73B a wire spring.
  • Figs. 74A, 74B show an embodiment that solves the problem that occurs when the burden of the Klips institute on the sheet edge is too high and creates an outward bump.
  • the hinge leaf is no longer clean.
  • a return on the inside of the hinge leaf is created in the region of the clip element, see reference numeral 117, in which the bump 119 is received.
  • the clip element 2836 pushes behind and the secure attachment is still ensured without disadvantages.
  • Fig. 75 shows in a sectional view at 119 the bulged sheet, which may have been caused by high stress on the high edges.
  • Fig. 74A is a view from the side to show the channel structure with Klips instituten and return to recognize.
  • Fig. 74B shows a view from the rear with the channel structure without Klips publishede, but with a return to receive the bulge.
  • the fixing stopper 123 which engages in a slot 125 formed by the holding elements 3036, is not loaded by spring 3044, since the opposing holding elements 3036 hold each other.
  • the fixing plug 123 holds the holding members 3036 only in the correct (central) position so that the Einklipsvorgang is not disturbed.
  • the design allows for simplified assembly, and only a spring 3044 is used because the central partition in the channel, which were present in other embodiments, can be omitted here.
  • Figs. 76A to 76C show the associated holding elements 3036 as a single part.
  • FIGS. 78A to 78C show in three different views a guide channel-forming attachment 3230, which can be screwed, which for the introduction of channels 3233 for a seal 3233 would have tool-side advantages. It would not work with sliders in the tool.
  • the central fixation attachment 3293 can be produced by ejection (sheet metal part) or casting (die casting, plastic injection molding). Fixing plug 123 used in the previous embodiment ( Figs. 76A to 76E ) would not be necessary here.
  • the Figs. 79A to 79C show in three different views of an embodiment in which a quadruple arrangement of clipboard 3136 a particularly heavy load capacity is achieved.
  • the U-part for forming the guide channel 3128 is bolted here. Overlying U-legs are recessed in the back of the head portion 3124. The Klipsplatten lead between the Verschraubungszylindern 3127th and in the inner wall of the U-part.
  • the holding elements 5536 are formed by two adjacent pieces of metal or plastic pieces. They form mutually facing projections / recesses, such that with a rotatable tool or key 82, the two retaining elements 5536-1, 5536-2 retracted by rotating the tool 82 against the force of the spring 5542 and thereby dismantling the hinge of the door panel 5514 can be.
  • the structure is suitably made so that the lever 82 automatically remains in the open position, so that all hinges can be brought into the open position simultaneously with multiple hinges and so all hinges are simultaneously deductible from the door leaf.
  • the tool is provided with a pinion 84, which engage in corresponding teeth 86 of the two holding elements 5636-1, 5636-2 and also upon rotation of the tool with the pinion 84 retraction of the two holding elements is made possible in the housing, so the housing to pull out of the breakthrough in the thin wall.
  • the 45 ° inclined surface 127 of the holding elements 5736 causes them to be urged by the spring pressure of the spring 5742 outward in the direction of the channel walls 129, whereby friction is created in the channel and the holding elements may already be sufficiently fixed by this friction, so that in Fig. 81A recognizable fixing plug 131 is not needed. If the plug 131 is not required for securing the holding elements 5736, the plug 131 does not need to be removed too when the release key 133 is to be inserted through the opening 135 in the manhole cover 137 into the return area 139 formed by the two holding elements 5736. If the key 133 then according to Fig.
  • Fig. 81A Turned counterclockwise pushes the key with its wings 141 against the end surface 143 of the return portion 139, thereby displacing the holding member 5736 into the channel until the in Fig. 81I shown position is reached, at which time the key is rotated by 90 ° and holds itself. Then the whole in Fig. 81A illustrated unit from the breakthrough, shown in Fig. 81D , are pulled out in the thin wall 5714, including possibly further hinge elements, which have also been brought with a corresponding key in the retracted position.
  • K, L, M, N, O, P serves as a holding element, a flat piece of metal, which has an opening 84 for receiving the spring 42, and two opposing projections 86, which take on the spring 5842 this captive, so that here a handle unit of retaining element and spring is given.
  • This unit can be received in the correspondingly shaped opening 88 in the body part 38, see Fig. 81K , the recess provided for the spring 90 is shorter than the corresponding recess 92 for the holding member 5836, whereby the spring 5842 gets a contact surface, when the holding member 5836 in position according to Fig. 81J is pushed.
  • the spring can hold there and is prevented from falling out of the holding element 5836 with the spring 5842.
  • a hinge is shown in which the hinge part has an opening 119 like the thin wall 1614, wherein the holding part 1634 and the body part 1630 have their own head part 1628.
  • the hinge part shown in Fig. 16D also has holes 145 for an alternative Attachment by means of capscrews.
  • the head portion 1738 and body portion 130 are two parts screwed together, here two screws 17108 are used.
  • the pairs of retaining elements 1736 are present in duplicate, and arranged symmetrically to the right and left of the screw 17108.
  • Figs. 84A, 84B, 84C Similarly designed is the embodiment according to the Figs. 84A, 84B, 84C , wherein the fastening element in Fig. 84D and the spring in Fig. 84E as firmly assembled parts in Figs. 84F and 84G are shown.
  • Mounting projections are in Fig. 84H provided here, in addition to the fact that the retaining element has a deviating from the flat shape for reasons of stability, see Fig. 84I ,
  • Figs. 85A, 85B, 85C two springs are provided, which is inserted laterally into the associated holding element 36. The other half of the spring element is received by the body part 1030.
  • Fig. 80A shows still the peculiarity that in the case of very thin wall material reinforcing plates 94, 96 are provided on both sides, which are clamped by the holding elements and thus hold the thin door leaf 1014 and support.
  • E, F, G and H are two adjacent metal pieces 136 are provided, which are held together by a spring 1144 such that these three parts form a stable handle unit, so handled separately and then in a corresponding recess in the body part 1130 if necessary can be inserted, as can be seen in Fig. 90E.
  • nubs 1192 can also be achieved here that the construction holds in position.
  • Fig. 85H Strengthen the two metal parts so that they total the spring be able to record.
  • the head of the screw 149 is conical and pushes the two holding elements 2136 apart.
  • the conical screw embodiments Compared to a construction according to Fig. 86A in which a spring spreads the two holding elements 2036, the conical screw embodiments have the disadvantage that when the plate edges laterally buckle or buckle under load, the screw has to be tightened by hand. A spring automatically slides and compensates automatically.
  • the breakthrough in the thin wall does not necessarily have to be rectangular, as it is, for example, in Fig. 2 is shown. He can also have any other shape, such as oval or round.
  • a round embodiment is in Fig. 86B to recognize, however, must be provided for a rotation assurance that does not provide the round breakthrough shape in contrast to the rectangular breakthrough shape.
  • a securing of the first hinge part can be done, for example, by the second hinge part, if it is fixed enough (eg on the frame), or by the arrangement of, as in Fig. 86B to recognize two spaced circular openings 2012, or by additional molded on the hinge part pins 151, which prevent rotation, see Fig. 86C provided there are corresponding holes in the door leaf that receive these pins.
  • Fig. 89 shows in a cross-sectional view of a window frame 2514, with an elongated opening 2512 in which a pressed aluminum profile existing hinge part 2516 can be inserted to then set it with a T-shaped wedge element 2536. Since the press tool and production are simpler, the production is cheaper. Also, the eye for a pin 2520 can be left open and can be produced by pressing.
  • Figs. 90A, 90B and 90C show three different views of a short shield as Single component, Figs. 91A and 91B two views of a suitable cross-section double-T-shaped retaining element and Figs. 92A and 92B show two views of one half of the associated two-piece lock case.
  • Figs. 90A, 90B and 90C show in various views, a headboard or key plate with an inlet surface 44, also with a hooking and fixing contour 92 for a preassembled rod lock, for example, from the halves according to Figs. 92A and 92B constructed, these halves has notches 90 for hooking with the shield or Ausschwenkhebelgriffelement.
  • the in the Figs. 93A to 93B illustrated embodiment is suitable for mandrel actuation as actuation, in Fig. 93A indicated, and pivot lever operation, see Fig. 93H ,
  • the specially designed attachment hook 17 holds the trough 716, fixed in the sheet metal section in the lower area.
  • the in the Fig. 93H shown attachable cap 715 has only the seal 781 to press the door leaf 14, which in Fig. 93H is shown in cross-section and adapts as a molding of the cap shape.
  • possible clipping surfaces are suggested, which work together with corresponding corrugations of the clip surfaces 785 of the trough.
  • the pinion 750 drives the locking bars 52, 152 and is itself driven by a lever 718 via a square mandrel.
  • a pre-assembly of the handle 718 in the trough 716 can be done by a shaft lock 719.
  • Fig. 93A is a socket operation 796, z. B. as a square, or as a handle operation, shown in phantom provided.
  • the two halves of the lock box 724 one is in Figs. 93F and 93E can be clipped, by spring inserts 723, which are received in corresponding pockets 729 with clips, the springs of the lugs 723 engage behind grip edges 731 and unite the clipped two halves to form a lock box 724.
  • the resulting lock case 724 has pockets 733 for slides 736 and a pocket 735 for the associated spring 732.
  • Characterized the spring 732 is tensioned, which then penetrates in the position of the lock box 724 on the support member 734 in the opening opening with recess area 740 and locked there.
  • a finger grip 737 is provided with which the carriage 736 can be pulled out and thereby passes into the release position.
  • Head portion 716 may include a centering lug 739 to center the head portion 716 in the wall cutout 12.
  • the lock case 724 according to Fig. 93H has a recess 741 into which a projection 739 projecting over the plate 14 can penetrate so as to center the lock case.
  • the lock box 824 can be separated from the clipped with the key plate or body part 816 by pressing keys again.
  • the push buttons 837 according to Figs. 94A to 94D are simply inserted before assembly of the lock box 824 and are limited in their internal movement, but can press back on the Klips institute 836, which do not perform linear movement but a pivoting movement here, in the release position.
  • the holding element 836 with spring 832 is arranged pivotably about an axis 11, which is arranged at a distance from the plane of the wall plane and is parallel to this plane, and has at its end a rising curve 13, with which the holding element 836 lays in the end position behind a Schugriff Structure 45, as already in Fig. 94C recognizable. In this position, the component 824 can no longer move away from the component 816. At the same time the door panel 14 is clamped between them and then simultaneously again under centering, as already described, the fitting held in the door leaf.
  • Fig. 94D shows, moreover, in addition to the folded door leaf 14, a door frame 114, both of which form a fold region, in which the compact lock 824 can be accommodated.
  • the key plate 816 may be provided for socket wrenches, handles in L or D shape as well as for lever locks.
  • Figs. 95A to 95F show a particularly simple embodiment, in which the slides 1036 are formed or carried by the head part 1016 in a kinematic reversal, see in particular Figs. 95B and 95F ,
  • a rotary latch 1000 is provided instead of the rods, but this (or one with the illustrated drive - square 1096 - torsionally rigid connected (double) lever) additionally have hinged to him rods.
  • the invention can be evaluated commercially in control cabinet construction.

Landscapes

  • Engineering & Computer Science (AREA)
  • Mechanical Engineering (AREA)
  • Clamps And Clips (AREA)
  • Hinges (AREA)
  • Connection Of Plates (AREA)
  • Snaps, Bayonet Connections, Set Pins, And Snap Rings (AREA)
  • Insertion Pins And Rivets (AREA)
  • Lock And Its Accessories (AREA)
  • Dowels (AREA)
  • Cartons (AREA)
  • Helmets And Other Head Coverings (AREA)

Claims (34)

  1. Dispositif de fixation par clip approprié pour le montage rapide de systèmes de ferrures, comme des fermetures à clé enfichable, des fermetures à levier pivotant (10), des parties de charnière (80, 82), dans des traversées (12, 14) dans une paroi mince (16, 50), comprenant une partie de tête (24) destinée à être agencée sur un côté extérieur (18) de la paroi mince (16) en recouvrant la bordure extérieure (20) de la traversée, depuis laquelle part une partie de tronc (26, 28, 30, 32) qui, dans la situation montée, passe à travers la traversée et de laquelle font saillie des éléments de maintien (36) flexibles en direction de sa surface extérieure et dont l'extrémité libre présente une première surface oblique (19), qui sert à déplacer l'élément de maintien (36) en retour à travers l'arête de la traversée sous la charge d'un ressort, et une seconde surface oblique (38) sensiblement perpendiculaire à celle-ci, pour le soutien sans jeu de la partie de tronc sur la bordure ou sur l'arête (40) de la traversée sur l'autre côté intérieur (42) de la paroi mince (16), dans lequel la partie de tronc (26, 28, 30, 32) et l'élément de maintien (36) et le ressort (44) sont des pièces séparées,
    caractérisé en ce que les éléments de maintien (36, 336) sont des chariots (56) agencés en translation dans un cylindre (54) à section rectangulaire parallèle au plan de la paroi mince, lesquels sont maintenus par un moyen d'accrochage qui s'enclenche entre eux-mêmes ou dans le cylindre, ou par des forces de friction ou encore par un ergot, à l'encontre de la force d'un ressort de compression, et en ce que des éléments de soutien (46, 48, 94, 96) maintenus ou portés par la partie de tronc (26, 28, 30, 32) sont prévus pour le soutien des éléments de maintien (36) après le montage du système de ferrure dans la paroi mince (16).
  2. Dispositif de fixation par clip selon la revendication 1, caractérisé en ce que deux éléments de maintien (36) agencés diamétralement l'un par rapport à l'autre sont soutenus par des moyens à ressort, comme un ressort spiralé (44) et/ou par des moyens à coin (94), comme une vis conique (98).
  3. Dispositif de fixation par clip selon la revendication 1, caractérisé en ce que l'élément de maintien (4536) est une pièce plane en direction de déplacement, avec des barrettes (4503) qui partent de l'une ou de ses deux arêtes latérales pour un guidage amélioré dans la direction de déplacement.
  4. Dispositif de fixation par clip selon l'une des revendications 1 à 3, caractérisé en ce que l'élément de maintien comporte une saillie/un ressaut (45 ; 4183, 4351, 4359, 4383) qui coopère avec un ressaut/une saillie (3929 ; 4105, 4294, 4307) qui détermine l'amplitude de course en direction de déplacement et qui est porté(e) ou formé(e) par la partie de tronc ou par le cylindre (3926, 4126, 4226, 4313).
  5. Dispositif de fixation par clip selon le la revendication 1, caractérisé en ce que l'élément de maintien (4136) comporte une traversée essentiellement rectangulaire (4185), s'étendant dans la direction de déplacement et dans laquelle un ressort de compression spiralé (4144) est mis en place.
  6. Dispositif de fixation par clip selon la revendication 5, caractérisé en ce que l'élément de maintien (5436) est une pièce plane en direction de déplacement avec une largeur plus petite que le diamètre extérieur du ressort (5444).
  7. Dispositif de fixation par clip selon la revendication 6, caractérisé en ce que l'élément de maintien (4736) retient un ressort arc-bouté (4744).
  8. Dispositif de fixation par clip selon la revendication 7, caractérisé en ce que le canal qui reçoit l'élément de maintien (4747) saisit en engagement une partie du ressort qui fait saillie hors de l'élément de maintien en la coinçant (figure 45F).
  9. Dispositif de fixation par clip selon la revendication 7, caractérisé en ce que l'élément de maintien (4936) comporte deux logements latéraux mutuellement opposés pour la réception de la moitié de la largeur du ressort (4944), et le canal comporte un ressaut adapté (4947) pour la moitié restante respective du ressort.
  10. Dispositif de fixation par clip selon la revendication 5, caractérisé en ce que pour deux éléments de maintien (5036) agencés l'un à côté de l'autre, ceux-ci comprennent sur les arêtes transversales de la traversée respective des talons (5015) destinés à recevoir le ressort (5044) et pénétrant dans l'autre traversée respective, qui forment des surfaces de soutien pour le ressort (5044).
  11. Dispositif de fixation par clip selon la revendication 5, caractérisé en ce que l'élément de maintien (5436) est constitué d'un paquet formé d'une première et d'une seconde pièce plane et le cas échéant d'autres pièces planes avec une traversée rectangulaire (4185), qui comportent une traversée commune pour recevoir en alignement un ressort de compression spiralé (4144) de telle manière que, dans la situation non chargée, le ressort spiralé est forcé dans la position de travail.
  12. Dispositif de fixation par clip selon la revendication 4, 5 ou 6, caractérisé en ce que l'élément de maintien (4536) est une pièce plane en direction de déplacement avec une traversée (4683) et présentant des saillies, destinées à orienter le ressort spiralé, qui partent des arêtes latérales de la traversée qui s'étendent perpendiculairement à la direction de déplacement.
  13. Dispositif de fixation par clip selon la revendication 1, caractérisé en ce que l'élément de maintien (5136) est logé dans un boîtier (5126) qui peut être monté de son côté dans une paroi épaisse.
  14. Dispositif de fixation par clip selon la revendication 1, caractérisé en ce que l'élément de maintien (5336) comporte des surfaces obliques (5319, 5338) sous le même angle pour l'entrée pour la sortie, et fonctionne ainsi comme un encliquetage à bille.
  15. Dispositif de fixation par clip selon la revendication 1, caractérisé en ce que l'élément de maintien (5436) forme devant la surface oblique d'entrée (5419) une surface de centrage droite (5439).
  16. Dispositif de fixation par clip selon la revendication 1, caractérisé en ce que l'élément de maintien (4336, 4436) forme des surfaces en talon, en ressaut ou des surfaces à pas de vis (4383) dans lesquelles peut s'engager un outil, comme une clé ou une panne de tournevis (4301 ; 4402) pour déplacer le ou les éléments de maintien dans la position en retrait.
  17. Dispositif de fixation par clip selon l'une des revendications 1 à 4, caractérisé en ce que, sous l'application d'une charge différente sur les deux éléments de maintien diamétralement opposés, comme lors de l'utilisation avec un verrou (52), l'élément de maintien (36) supportant une charge plus faible est réalisé en matière plastique souple, comme en polyamide, et l'autre élément de maintien (136), supportant une charge plus forte, est réalisé en un matériau rigide, comme du métal.
  18. Dispositif de fixation par clip selon l'une des revendications 1 et 2, caractérisé en ce que les éléments de maintien (336) sont en un matériau rigide, comme du métal.
  19. Dispositif de fixation par clip selon la revendication 18, caractérisé en ce que le système de blocage est formé par des vis (27) susceptibles d'être vissées (37) dans la partie de tête (382, figures 31A, B, C).
  20. Dispositif de fixation par clip selon la revendication 19, caractérisé en ce que les vis (27) déterminent la course du déplacement des éléments de maintien (1136).
  21. Dispositif de fixation par clip selon les revendications 1 à 15, caractérisé en ce que la partie de tronc (3726) ou le cylindre (54) possède une paroi de séparation partielle (358) ou une contre-dépouille ou encore une arête de traversée contre laquelle s'appuient axialement les chariots (36, 336, 536, 636) ou les leviers (3736) avec un épaulement (3751) ou un crochet.
  22. Dispositif de fixation par clip selon la revendication 1 ou 2, caractérisé en ce que les éléments de maintien sont formés par des chariots (56) tenus en déplacement, dont l'axe de déplacement est perpendiculaire à l'extension longitudinale du système de ferrure.
  23. Dispositif de fixation par clip selon la revendication 1 ou 2, caractérisé en ce que les éléments de maintien (5436) sont formés par des chariots tenus en déplacement, dont l'axe de déplacement est parallèle à l'extension longitudinale du système de ferrure.
  24. Dispositif de fixation par clip selon la revendication 1, caractérisé en ce que l'élément de maintien (2636, 2736) est formé par une pièce poinçonnée.
  25. Dispositif de fixation par clip selon la revendication 1, caractérisé en ce que dans la région de l'élément de maintien (2836) la partie de tête comporte un ressaut (117) pour la réception de bosses (119) sur l'arête.
  26. Dispositif de fixation par clip selon la revendication 1, caractérisé en ce que deux ou plusieurs éléments de maintien (3136, 3836) respectifs sont agencés les uns à côté des autres.
  27. Dispositif de fixation par clip selon la revendication 1, caractérisé en ce que la partie de tronc (26, 28, 30, 32) et la partie de tête (24) sont injectées en une seule pièce.
  28. Dispositif de fixation par clip selon la revendication 1, caractérisé en ce que la partie de tronc et la partie de tête sont deux pièces qui sont vissées (figures 31A, B, C ; figures 89 A, B, C), soudée (figures 72A, 72B, 72C) ou clipsées.
  29. Dispositif de fixation par clip selon l'une des revendications 1 à 28, dans lequel le système de ferrure est une fermeture à levier pivotant ou rabattable (10) destiné à être fixé dans une traversée allongée (12, 17, 14) ou dans deux traversées rectangulaires (12, 14) plus courtes, l'une des traversées (12) recevant un palier de levier (66) et l'autre de traversée (14) recevant un blocage de levier (170, 70), caractérisé en ce que l'une au moins des traversées (12, 14) sert également à recevoir au moins une partie de tronc (28, 128, 32) avec des éléments de maintien selon l'une des revendications précédentes 1 à 32.
  30. Dispositif de fixation par clip selon la revendication 28, dans lequel la fermeture à levier pivotant ou rabattable comporte un creux (24) pour recevoir le levier d'actionnement (22) de manière à pouvoir être arrêté, caractérisé en ce que le creux (24) forme la partie de tête d'une ou deux parties de tronc avec des éléments de maintien dans la région du palier de levier, comme un arbre d'entraînement (66).
  31. Dispositif de fixation par clip selon la revendication 28 ou 29, dans lequel la fermeture à levier pivotant ou rabattable (10) comporte un creux (24) pour recevoir le levier d'actionnement (22) de manière à pouvoir être arrêté, caractérisé en ce que le creux (24) forme d'une part la surface (74, 174) d'engagement postérieure pour le pouce d'un dispositif de blocage de levier (70, 170), et forme d'autre part la partie de tête d'une partie de tronc avec des éléments de maintien dans la région du dispositif de blocage de levier.
  32. Dispositif de fixation par clip selon l'une des revendications 1 à 27, dans lequel le système de ferrure est un guidage de tringle.
  33. Dispositif de fixation par clip selon l'une des revendications 1 à 27, dans lequel le système de ferrure est un boîtier de serrure.
  34. Dispositif de fixation par clip selon l'une des revendications 1 à 27, dans lequel le système de ferrure et une monture pour clé enfichable.
EP05707016A 2004-01-26 2005-01-26 Dispositif de fixation par clips permettant le montage rapide de systemes d'armature tels que des fermetures a levier pivotant, des parties de charniere, dans des ouvertures d'une fine paroi Active EP1711673B1 (fr)

Priority Applications (2)

Application Number Priority Date Filing Date Title
EP20070010668 EP1849937A3 (fr) 2004-01-26 2005-01-26 Fixation par clip pour le montage de dispositifs d'armatures, comme fermeture, parties de charnière, poignée dans des percées d'une paroi mince
PL05707016T PL1711673T3 (pl) 2004-01-26 2005-01-26 Zatrzask do szybkiego montażu w wycięciach cienkiej ścianki osprzętu, takiego jak obrotowe dźwignie zamka lub części zawiasu

Applications Claiming Priority (3)

Application Number Priority Date Filing Date Title
DE200420001161 DE202004001161U1 (de) 2004-01-26 2004-01-26 Klipsbefestigung für die Schnellmontage von Beschlageinrichtungen, wie Schwenkhebelverschlüsse, Scharnierteile in einer dünnen Wand
DE200420003238 DE202004003238U1 (de) 2004-02-27 2004-02-27 Klipsbefestigung für die Schnellmontage von Beschlageinrichtungen, wie Schwenkhebelverschlüsse, Scharnierteile in Durchbrüchen in einer dünnen Wand
PCT/EP2005/000755 WO2005071199A1 (fr) 2004-01-26 2005-01-26 Dispositif de fixation par clips permettant le montage rapide de systemes d'armature tels que des fermetures a levier pivotant, des parties de charniere, dans des ouvertures d'une fine paroi

Related Child Applications (2)

Application Number Title Priority Date Filing Date
EP20070010668 Division EP1849937A3 (fr) 2004-01-26 2005-01-26 Fixation par clip pour le montage de dispositifs d'armatures, comme fermeture, parties de charnière, poignée dans des percées d'une paroi mince
EP07010668.7 Division-Into 2007-05-30

Publications (2)

Publication Number Publication Date
EP1711673A1 EP1711673A1 (fr) 2006-10-18
EP1711673B1 true EP1711673B1 (fr) 2011-07-06

Family

ID=34809633

Family Applications (5)

Application Number Title Priority Date Filing Date
EP05715211A Not-in-force EP1709270B1 (fr) 2004-01-26 2005-01-26 Fixation de pinces pour le montage de dispositifs de ferrures, tels que fermetures, elements de charniere, poignees dans des passages au travers d'une paroi mince
EP20070010100 Active EP1845222B1 (fr) 2004-01-26 2005-01-26 Fixation par clip pour le montage de dispositifs d'armatures, comme fermeture, partie de charnière, poignée dans des percées d'un mur fin
EP20070010668 Withdrawn EP1849937A3 (fr) 2004-01-26 2005-01-26 Fixation par clip pour le montage de dispositifs d'armatures, comme fermeture, parties de charnière, poignée dans des percées d'une paroi mince
EP05707010A Withdrawn EP1709269A1 (fr) 2004-01-26 2005-01-26 Dispositif de clipsage a l'aide de dispositifs ressorts a lames destines au montage rapide de ferrures comme des serrures a levier pivotant, des parties charnieres dans des ouvertures d'une paroi mince
EP05707016A Active EP1711673B1 (fr) 2004-01-26 2005-01-26 Dispositif de fixation par clips permettant le montage rapide de systemes d'armature tels que des fermetures a levier pivotant, des parties de charniere, dans des ouvertures d'une fine paroi

Family Applications Before (4)

Application Number Title Priority Date Filing Date
EP05715211A Not-in-force EP1709270B1 (fr) 2004-01-26 2005-01-26 Fixation de pinces pour le montage de dispositifs de ferrures, tels que fermetures, elements de charniere, poignees dans des passages au travers d'une paroi mince
EP20070010100 Active EP1845222B1 (fr) 2004-01-26 2005-01-26 Fixation par clip pour le montage de dispositifs d'armatures, comme fermeture, partie de charnière, poignée dans des percées d'un mur fin
EP20070010668 Withdrawn EP1849937A3 (fr) 2004-01-26 2005-01-26 Fixation par clip pour le montage de dispositifs d'armatures, comme fermeture, parties de charnière, poignée dans des percées d'une paroi mince
EP05707010A Withdrawn EP1709269A1 (fr) 2004-01-26 2005-01-26 Dispositif de clipsage a l'aide de dispositifs ressorts a lames destines au montage rapide de ferrures comme des serrures a levier pivotant, des parties charnieres dans des ouvertures d'une paroi mince

Country Status (9)

Country Link
US (2) US9617754B2 (fr)
EP (5) EP1709270B1 (fr)
CN (1) CN101736939B (fr)
AT (3) ATE515617T1 (fr)
DE (2) DE112005000142A5 (fr)
HK (1) HK1101421A1 (fr)
PL (1) PL1711673T3 (fr)
RU (1) RU2341634C2 (fr)
WO (3) WO2005071194A1 (fr)

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Also Published As

Publication number Publication date
ATE527419T1 (de) 2011-10-15
WO2005071194B1 (fr) 2005-09-15
EP1845222A3 (fr) 2008-04-30
WO2005071192A1 (fr) 2005-08-04
HK1101421A1 (en) 2007-10-18
RU2006127106A (ru) 2008-03-10
PL1711673T3 (pl) 2011-12-30
EP1711673A1 (fr) 2006-10-18
DE112005000145D2 (de) 2006-10-26
US7690083B2 (en) 2010-04-06
EP1709270B1 (fr) 2012-04-25
ATE515617T1 (de) 2011-07-15
EP1849937A3 (fr) 2008-04-30
WO2005071199B1 (fr) 2005-09-15
EP1845222B1 (fr) 2011-10-05
WO2005071192B1 (fr) 2005-10-20
CN101736939A (zh) 2010-06-16
EP1709270A1 (fr) 2006-10-11
EP1849937A2 (fr) 2007-10-31
ATE555266T1 (de) 2012-05-15
WO2005071199A1 (fr) 2005-08-04
EP1709269A1 (fr) 2006-10-11
DE112005000142A5 (de) 2007-05-24
US20070271735A1 (en) 2007-11-29
WO2005071194A1 (fr) 2005-08-04
WO2005071199A9 (fr) 2005-10-20
CN101736939B (zh) 2013-03-20
RU2341634C2 (ru) 2008-12-20
US9617754B2 (en) 2017-04-11
US20070175252A1 (en) 2007-08-02
EP1845222A2 (fr) 2007-10-17

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