EP3543428B1 - Method for connecting a climbing bracket which is activatable automatically safe with an anchoring device, system with a climbing bracket and an anchoring device and climbing bracket - Google Patents

Method for connecting a climbing bracket which is activatable automatically safe with an anchoring device, system with a climbing bracket and an anchoring device and climbing bracket Download PDF

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Publication number
EP3543428B1
EP3543428B1 EP19162871.8A EP19162871A EP3543428B1 EP 3543428 B1 EP3543428 B1 EP 3543428B1 EP 19162871 A EP19162871 A EP 19162871A EP 3543428 B1 EP3543428 B1 EP 3543428B1
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EP
European Patent Office
Prior art keywords
hook
climbing bracket
anchoring device
climbing
bracket
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
EP19162871.8A
Other languages
German (de)
French (fr)
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EP3543428A3 (en
EP3543428C0 (en
EP3543428A2 (en
Inventor
Pino Albanese
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Individual
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Individual
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Publication date
Application filed by Individual filed Critical Individual
Priority to EP23186146.9A priority Critical patent/EP4234840A3/en
Publication of EP3543428A2 publication Critical patent/EP3543428A2/en
Publication of EP3543428A3 publication Critical patent/EP3543428A3/en
Application granted granted Critical
Publication of EP3543428C0 publication Critical patent/EP3543428C0/en
Publication of EP3543428B1 publication Critical patent/EP3543428B1/en
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Classifications

    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G5/00Component parts or accessories for scaffolds
    • E04G5/06Consoles; Brackets
    • E04G5/062Consoles; Brackets specially adapted for attachment to building walls
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G11/00Forms, shutterings, or falsework for making walls, floors, ceilings, or roofs
    • E04G11/36Forms, shutterings, or falsework for making walls, floors, ceilings, or roofs for floors, ceilings, or roofs of plane or curved surfaces end formpanels for floor shutterings
    • E04G11/365Stop-end shutterings
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G15/00Forms or shutterings for making openings, cavities, slits, or channels
    • E04G15/04Cores for anchor holes or the like around anchors embedded in the concrete
    • EFIXED CONSTRUCTIONS
    • E04BUILDING
    • E04GSCAFFOLDING; FORMS; SHUTTERING; BUILDING IMPLEMENTS OR AIDS, OR THEIR USE; HANDLING BUILDING MATERIALS ON THE SITE; REPAIRING, BREAKING-UP OR OTHER WORK ON EXISTING BUILDINGS
    • E04G17/00Connecting or other auxiliary members for forms, falsework structures, or shutterings
    • E04G17/16Members, e.g. consoles, for attachment to the wall to support girders, beams, or the like carrying forms or moulds for floors, lintels, or transoms

Definitions

  • the invention relates to a method for automatically activatable, secure connection of a climbing bracket to an anchoring device according to the preamble of patent claim 1.
  • the invention also relates to a system with a climbing bracket and an anchoring device.
  • the subject matter of the invention is also a climbing bracket according to the preamble of patent claim 5.
  • Climbing brackets of the type mentioned are used in order to be able to attach slab edge formwork with little effort and to be able to carry wall formwork, in particular also large-area wall formwork panels, and/or at the same time to be able to create scaffolding along the crowns of walls, in particular partial buildings.
  • the climbing brackets have the shape of a right-angled triangle, one leg of which is the top and loads receiving traverse forms, the second leg comes into contact with the wall or the sub-structures to lie and the hypotenuse or base of the triangle is designed as a strut.
  • a hook is formed on the traverse in the region of the connection of the two legs and as an extension of the traverse, the end of which engages in an anchoring device forming a recess in the wall.
  • Such anchoring devices are fastened to the formwork before the substructure (wall) is poured, in that a mounting pin is fastened to the formwork with a nail and the opening in the anchoring device is then pushed onto the mounting pin.
  • the mounting pin which lies in the surface of the wall, can be removed and thus the opening of the anchoring device can be exposed.
  • the anchoring device extends into the wall behind the opening and spaced a further distance downwardly from the opening so that the hook on the climbing bracket after insertion passes down through the opening and onto the lower edge of the box and on a there existing wall section can be hung.
  • a climbing bracket anchoring device system constructed in this way can probably accommodate the required load capacity for the climbing bracket. However, the climbing bracket is only held by gravity and if a crane load accidentally attaches to the climbing bracket from below and lifts it, the climbing bracket is not secured and can detach from the wall.
  • a reinforcing iron is inserted in the box below the opening and the hook on the climbing bracket is cranked to such an extent that the cranked section grips under the reinforcing iron.
  • the hook can be moved in the traverse and after the hook has been hung in the anchoring device, the climbing bracket can again be additionally secured by means of a wedge which penetrates the traverse and pulls back the hook.
  • Such a climbing bracket is held relatively securely if it has been properly fastened, but the construction worker who is fastening the climbing bracket has to move over it and, unsecured, pass the wedge through the traverse and the hook outside the wall and also below its crown and strike.
  • Another known climbing bracket has a T-shaped hook firmly connected to it. In order to introduce this climbing bracket into the anchoring device, the climbing bracket must be brought into a horizontal position and inserted through the horizontally arranged opening of the anchoring device and then pivoted by 90°. Such a climbing bracket can no longer be detached from the wall by mistake or external forces, but there is no way of bringing the climbing bracket close to the surface of the wall at different distances from it.
  • a climbing bracket and a formwork part for such a climbing bracket comprises a frame and in this a movable hook which can be hung in the formwork part forming a wall recess and can be secured within the formwork part against detachment from the formwork part, whereby for the securing the shuttering part and the hook must each include at least one passive safety element.
  • a securing part can be a securing flap which is pivoted in the formwork part and after the hook has been pushed in and lowered it comes to lie between the upper surface of the formwork part and the upper edge of the hook and is thus intended to prevent the hook from being lifted.
  • a lever that is guided in a slot is articulated on the hook.
  • this lever inclines so far that the hook can be inserted into the opening of the formwork part if the opening is very large, in particular in cross-section much larger, in particular higher.
  • the lever should tilt into a vertical position due to a frictional force and, as in the first exemplary embodiment, prevent the hook from being lifted. Since the pivoting of the lever can only be triggered by frictional contact and no clear end position is guaranteed, the securing of the console is also not guaranteed, in particular there is no visual control of the position of the lever.
  • a wedge must additionally and imperatively be driven through the upper traverse of the climbing bracket and the carrier of the hook, which is slidably mounted in the traverse, in order to prevent horizontal displacement and thus the risk of the safety lever tipping over.
  • the construction worker has to bend over the wall as before and drive the wedge in below the crown of the partial structures on the climbing brackets.
  • the safety lever later when the climbing bracket is to be detached from the wall, is released from the safety position and thus released can be pulled out of the casing part.
  • the object of the present invention is to create a method and a climbing bracket for automatically activatable, secure connection of a climbing bracket to an anchoring device, in which the climbing bracket automatically secures itself in the anchoring device after the hook has been hooked into the anchoring device.
  • Another object of the present invention is to create a system that allows the construction worker, without explanations or learning effort, to introduce the climbing bracket into the anchoring device as before and without further actions, i.e. without introducing safety elements such as a wedge, so that the climbing bracket after hanging definitely secured to the wall.
  • a further object of the invention is to provide a climbing bracket that is forced onto the wall or into the wall during the hanging process without any manipulation by the construction worker
  • Anchoring device is drawn in, at the latest when the construction worker lets go of the climbing bracket, so that a play-free hold of the climbing bracket is guaranteed immediately and without using a wedge.
  • a further object of the invention is the creation of a climbing bracket which inevitably and automatically eliminates the inaccuracies that arise when setting the anchoring device or the climbing bracket is pressed tightly against the wall and held securely there, regardless of the position of the anchoring device.
  • a further object of the invention is the creation of a climbing bracket in which an automatic safety element prevents the hook from extending again after the end of the lowering of the hook on the climbing bracket, without active release being able to take place through manual intervention.
  • a further object of the invention is to provide an anchoring device for installation in a wall for anchoring a climbing bracket, in which the hook of the climbing bracket is secured against being pulled out both above and below the opening.
  • a further object of the invention is the creation of an anchoring device with such high strength that it can be anchored in the wall without additional reinforcing irons or the like.
  • the general object of the invention is consequently the creation of a climbing bracket which secures itself or inevitably and whose securing means do not have to be activated in a separate operation.
  • the essentially two-armed securing element on the hook can be pivoted upwards about an axis to such an extent that the first leg reaches a cross-sectional widening located above the insertion opening for the hook.
  • the second leg of the two-armed safety element locks on a locking bolt in such a way that the hook together with the climbing bracket can no longer be released from the anchoring device.
  • Pulling out the climbing bracket from the Anchoring device is already prevented when the hook is only partially inserted, because at this point the vertical extension of the hook and the safety lever is greater than the height of the opening in the anchoring device, which is not the case with any known climbing bracket with safety elements.
  • the securing element could also be articulated on the hook such that it could swing out laterally and, when inserted into the anchoring device, extend into a space located on the side of the insertion channel.
  • the release of the climbing bracket after completion of its assigned tasks, namely the support of formwork panels for the further concreting of the partial structures already constructed, can only take place if the safety bolt on the traverse or the upper, horizontally running leg, which is accessible from the outside, is against pressed by the force of a spring and thereby the locking of the two-armed safety element is released in its raised or laterally extended position.
  • the lock can only be released if the climbing bracket is no longer loaded by formwork and is initially lifted vertically. In other words, even if the safety bolt is actuated intentionally or unintentionally, the climbing bracket is still held securely in the anchoring device.
  • the climbing bracket succeeds without the construction worker having to do anything, that it inevitably comes into close contact with the wall of the substructure, i.e. the climbing bracket is pulled horizontally towards the wall as soon as the climbing bracket is no longer from the Construction worker is kept raised. Pulling towards the wall is compulsory and regardless of how far the anchoring device is from the surface of the wall, in which it is concreted in, is arranged. This eliminates inaccuracies when setting the anchoring device.
  • the anchoring device which is advantageously made of steel, has a small width in relation to its height, the internal dimension of which corresponds substantially to the width of the hook and of the securing element placed next to it.
  • a pull-out strength that is greater than in the prior art is achieved by embossed outwardly protruding ribs or humps.
  • the anchoring device can be produced inexpensively and with high quality in a progressive press from the coil in a few stamping and deep-drawing strokes from two halves connected to one another.
  • the hook on the climbing bracket is preferably composed of two parallel elements, between which the securing element is pivotably inserted. Alternatively, the securing element can also lie to the side of a simple hook.
  • the anchoring device Due to the small mass and the small width of the anchoring device, there is only a negligible weakening of the partial structures and on the side of the opening of the anchoring device it is only slightly covered by the concrete mass of the wall, so that blasting off due to too thin a cover or high load can be avoided .
  • the anchoring device has a relatively long channel-like insertion area, in which the guide support for the hook can lie down after the hook has been inserted and within which the securing element prevents the climbing bracket from being lifted by the securing element. Furthermore, as soon as the hook is pushed into the anchoring device and lowered, the second leg of the securing element is prevented from pivoting upwards or downwards The safety lever pivoted above, ie the first leg, cannot pivot back down and allow extraction from the can.
  • a climbing bracket 1 is shown schematically and in part on the left-hand side.
  • the overhead leg 3 which serves as a guide and support element, visible.
  • the vertical leg 5 On the right side is the vertical leg 5 to support the Climbing bracket 1 partially shown on a substructure 21 .
  • a housing 7 is arranged on the upper leg 3, in which a guide support 9 for a hook 11 is slidably mounted.
  • the guide support 9 can also be integrated into the upper leg 3 if it has a suitably large cross section.
  • the guide support 9 with the hook 11 or hook-shaped end is slidably mounted on the climbing bracket 1 on guideways inclined to the horizontal at an angle of inclination of >45° to the horizontal.
  • the guideways are formed by sloping slots 13, which are formed in the guide support 9 and at least one other, preferably two more slots 41 in the Figures 7,8 are visible and embedded in the housing 7.
  • the slots 13 are crossed by two bolts 15 fixedly mounted in the housing 7 and form a first longitudinal guideway for the guide support 9.
  • the three or preferably four parallel slots 13; 41 consequently form the parallel guide for the guide support 9 and the hook 11 ( 6 ).
  • a two-armed securing element 19 with a first arm 19' and a second arm 19" is pivotably mounted on the guide support 9 on a shaft 48.
  • the two-armed securing element 19 lies with its first arm 19' essentially within the Outline of the hook 11, that is, the arm 19' protrudes neither at its upper edge nor at its lower edge the outer contour of the hook 11.
  • the height h of the hook 11 in the area of its front end also determines the height or height extent of the securing element 19.
  • the second arm 19" of the securing element 19 protrudes beyond the upper edge of the guide support 9 in the rest and starting position (cf. 2 + 8a).
  • the second arm 19" lies entirely within the outline of the climbing bracket 1.
  • FIG. 1 Also shown in vertical section is a partial structure 21, for example a wall made of concrete, in which an anchoring device 23 is concreted.
  • the anchoring device 23 points to the left in Figures 1-5 an opening 25, the height H of which is slightly greater than the height h of the hook 11 or guide support 9.
  • the width B of the opening 25 is slightly greater than the width of the hook 11, which is preferably constructed of two spaced plates and between which the fuse element 19 is located. These dimensions make it possible to move the hook 11 or guide support 9 and the securing element 19 lying between them horizontally in the direction X ( 1 ) to be pushed into the anchoring device 23.
  • the hook 11 can also be constructed from a single sheet metal part or from two parallel sheet metal parts connected at the hook-shaped end 11'.
  • the figure 2 shows the climbing bracket 1 after the hook 11 has been inserted horizontally into the anchoring device 23 by an operator, for example the construction worker, carried on the climbing bracket or on a formwork holder slidably arranged on the carrier 3 has been. It can be seen that the upper edge of the guide support 9 and hook 11 lie behind the opening 25 with only a little play on the upper wall 27 and the lower end 11' of the hook 11 is now guided past the lower wall 29 in the expanded interior space or hollow body 65 of the Anchoring device 23 is located.
  • the positions of the elements shown are present as long as the operator is still carrying the climbing bracket 1, ie as long as the mass of the climbing bracket 1 does not move it downwards.
  • the climbing bracket 1 would consequently be able to be carried out of the anchoring device 11 again in this position, carried by the construction worker.
  • FIG 2 It can be seen that there is a distance A of, for example, 8 mm between the front edge of the vertical leg 5 of the climbing bracket 1 and the surface 21' of the wall 21 with the opening 25 on the anchoring device 23, after the front end of the hook 11 is close to the rear wall the anchoring device 23 of the hollow body 65 is located.
  • the securing element 19 can also be slidably fastened in a linear guide on the guide support 9 and, instead of a rotary movement, perform a sliding movement upwards.
  • the securing element 19 could be pivoted about a horizontal axis on the guide support 9 and on the lowering of the hook 11 laterally be able to swing out and consequently prevent the hook from being pulled out.
  • the securing element 19 is pushed upwards by the right arm 19' of the securing element 19 through contact with the bottom section 29 and rotates counterclockwise about the axis of the shaft 48 until the guide beam 9 with its lower edge 9' in the area behind the hook 11 rests on the bottom section 29.
  • the hook 11 As the hook 11 is further lowered, it engages in the anchoring device 23 from behind an approximately vertical section 33 at the end of the insertion channel 29 in the anchoring device 23.
  • the securing element 19 is securely fixed (cf. Figures 8a, 8b ).
  • Mounting the guide support 9 in the guideways formed by the slots 13, 41, which are inclined relative to the vertical, is particularly advantageous because the hook 11 with the guide support 9 is pulled to the left when the climbing bracket 1 is lowered in the housing 7 and consequently, on the one hand, the vertical leg 5 of the climbing bracket 1 is attracted to the surface of the substructure 21 and on the other hand the hook 11 is displaced in the anchoring device 23 to the left, so that the hook 11 in the anchoring device 23 comes into close contact. The end of the hook 11 is also pulled to the left and there comes into close contact with a vertical section on the anchoring device 23.
  • the climbing bracket 1 is consequently automatically and forcibly held in the anchoring device 23 on the substructure 21 automatically and forcibly without any action on the part of the construction worker, simply by being pushed into the anchoring device 23 and then lowered after being released by gravity and can no longer be held in place by external forces, which act on the climbing bracket 1 from below, from below or from above or from the side, can be solved.
  • the climbing bracket 1 can only be released again by manual intervention on the safety bolt 45, as will be described later.
  • the Figures 4 and 5 correspond in principle to the figure 3 . They differ in that the anchoring device 23 or the edge of its opening 25 does not lie exactly in the surface of the partial structure 21, but for whatever reason, by a few millimeters set back.
  • the climbing bracket 1 is nevertheless hooked in in the same way and its securing in the hooked-in position corresponds to that in figure 3 .
  • the difference visible from the outside is that the relative displacement in the horizontal direction between the climbing bracket 1 and the anchoring device 23 is smaller. This can be seen from the fact that the bolts 15 have slid less far up in the slot 13 or the climbing bracket 1 has shifted less far down
  • the advantage of the arrangement is that the opening 25 on the anchoring device 23 is completely covered by the vertical leg 5 of the climbing bracket 1 and therefore no concrete or concrete water can get through the opening 25 into the interior of the anchoring device 23 and damage the safety element 19 there or can render unusable.
  • the sliding movement of the hook 11 with the guide support 9 in the direction of the partial structure 21 could also take place horizontally, as is the case in the prior art if the slots 13, 41, 43 were arranged horizontally.
  • the great disadvantage would then have to be accepted that the climbing bracket 1 would have to be pulled up to the partial structures 21 in a conventional manner, for example with a wedge. This means that the operator would have to perform an additional action in a bent and accident-prone body position, which can also be forgotten.
  • the climbing bracket 1 is partially shown in perspective at its hook-side end. It can be seen from this figure that the horizontal leg 3 is surrounded at least laterally by the housing 7 on the hook-side end.
  • the housing 7 is preferably widened at its upper edge by laterally outwardly projecting tabs 47 and also preferably also extend over the hook-side edge of the horizontal leg 3 and the vertical leg 5 in the form of a second tab 49.
  • the housing 7 is preferably also closed at the rear by a wall 51 .
  • the hook 11 is in the starting position and the securing element 19 is consequently in its rest position (only protrudes below with its nose 19' under the guide support 9).
  • the screw 17 and the safety bolt 45 lie at the lower end of the two slots 41.
  • the guide beam 9 with the hook 11 is in the position in which it is after it has been inserted through the opening 25 and lowered into the anchoring device 23 .
  • the anchoring device 1 has been omitted here for the sake of clarity.
  • the screw 17 and the safety bolt 45 have now slid relatively upwards, since the hook 11 has been pushed relative to the horizontal leg 3 of the climbing bracket 1 in the housing 7 upwards. In the latter position, i.e.
  • the securing element 19 is fixed to the disc 35 on the securing bolt 45 by an indentation 39 on the securing element 19 ( Figure 8b ).
  • the construction worker must therefore release the connection between the disc 35 on the safety bolt 45 and the safety element 19 so that the safety element 19 can pivot clockwise and thereby move back between the two plates of the hook 11.
  • the climbing bracket 1 can consequently be raised and then pulled out of the anchoring device 23 .
  • the release of the securing element 19 takes place in that the washer 35 is axially displaced by the securing bolt 45 so that the lower lug 53 on the securing element 19 (see 2 ) is no longer held back by the disc 35 and can slide past the shaft of the safety bolt 45.
  • the securing bolt 45 or the washer 35 can only be displaced axially against the force of a spring (the spring is not shown).
  • the climbing bracket 1 serves as a temporary carrier on the one hand for a scaffolding board and on the other hand as a device for attaching a formwork panel girder 55 for creating the wall above the partial structures 21
  • Figures 9-21 Formwork panels, not shown, are carried by the formwork panel carrier 55, which is displaceable on the horizontal leg 3 relative to the climbing bracket 1.
  • the formwork panel carrier 55 comprises a U-shaped guide shoe 57 which is pushed horizontally from the side onto the horizontal leg 3 of the climbing bracket 1 and is fixed laterally and below by suitable means.
  • the guide shoe 57 ( 11 , 12 ) comprises a side wall 59, an upper guide wall 61 and a lower guide wall 63 serving as a sliding shoe, which are U-shaped relative to one another and are connected to one another.
  • a safety and release plate 65 can be attached to the side wall 59 forming the base of the U. Their function and shape will be described later.
  • a pivotable locking plate 69 is held in a downwardly projecting tab or in an opening 73 attached thereto. Furthermore, a first passage 75 is embedded in the upper guide wall 61 and lies above a second passage 77 formed in the lower guide wall 63 . With a slider 79, whose cross-sectional area is slightly smaller than the cross-section of the two passages 75,77, the guide shoe 57 can be closed to form a rectangular tube when this is pushed onto the upper leg 3 of the climbing bracket 1. The locking plate 69 can then be pushed through the opening 73 and a recess 81 be pushed through a slide 79. The locking plate 69 is captively connected to the guide shoe 57 by a locking bar 83 formed at its end.
  • the narrow ends of the upper guide wall 61 and the lower guide wall 63 are bent slightly out of their plane.
  • the locking plate 69 which interacts with the slide 79, prevents a force F, which acts from the liquid concrete behind the formwork panel on the vertical arm 85 of the shuttering panel carrier 55, from being absorbed. This ensures that the shuttering plate carrier 55 can be displaced with little friction on the upper leg 3 of the climbing bracket before and after concreting as soon as the conical locking plate 69 is out of the locking position ( 15 ) to the unlocked position ( 16 and 17 ) has been withdrawn.
  • the locking plate 69 or its wedge-shaped cross-sectional shape cf.
  • the formwork panel carrier 55 can be fixed to the climbing bracket 1 in its working position, ie pushed up to a formwork panel.
  • the wedge-shaped locking plate 69 By pulling out the wedge-shaped locking plate 69, the clamping effect on the slide 79 is also canceled.
  • the slider 79 is pushed into the upper and lower bushings 75, 77, the formwork panel carrier 55 is held securely on the climbing bracket 1, but it can be moved.
  • the backup and release plate 65 which is formed on the side wall 59 on the guide shoe 57, has two tasks. In the working position, when the formwork panel carrier 55 is pushed against the wall of the substructure 21 and is only spaced apart from it by a formwork panel (not shown), the covers Safety and release plate 65 the bolt 45 just far enough that it is not unintentionally actuated or can be actuated and triggering the locking within the anchoring device 23 leads.
  • the shuttering plate supports 55 arranged next to one another on the climbing brackets 1 are pushed away from the wall by knocking out the locking plate 69 on the climbing bracket 1 .
  • the formwork panels are still secured by being supported on the upper leg 3 of the climbing bracket 1 so that they cannot slide down.
  • the operator ie the construction worker, standing on the newly concreted ceiling, can move the formwork plate carrier 55 on the vertical arm 85 towards himself, ie in the direction of the substructures 21 .
  • the offset safety and release plate 65 slides over the safety bolt 45 and presses it into the housing 7 .
  • the disk 35 is disengaged from the securing element 19, 19' with the securing bolt 45 and the locking of the securing element 19, which was previously held in the raised position, is released.
  • the securing element 19 now turns clockwise and disappears between the two plates forming the hook 11 .
  • the climbing bracket 1 can now be raised and only then pushed or pivoted outwards, ie away from the partial structure, without the construction worker having to bend over the edge of the partial structure 21 (cf. Figures 18 to 20 ).
  • backup and release plate 65 In a further embodiment of the backup and release plate 65 according to Figures 22 and 23 is the upper tab 47 at the edge or edges folded by about 90 ° and is now parallel to the wall of the housing 7. Next is the backup and release plate 65 at the front end not only with a run-up area 66 over the entire height of Safety and release plate 65 provided, but an overhead section 68 runs parallel to the side wall 59.
  • both elements namely the safety and release plate 65 and their front edge regions 66 and 68, are out of contact with other elements of the device.
  • the shuttering plate support 55 is in accordance with figure 23 pushed to the right and the safety and release plate 65 covers the safety bolt 45 with its run-on area 66 and thereby prevents an intentional or unintentional loosening of the locking mechanism with the hook 11.
  • the section 68 is now under the area of the first flap 47 folded down and stands with this preferably in contact. So that the section 68 can easily slide under the folded flap 47, its end is bent slightly inwards.
  • this further configuration of the shuttering panel support 55 is that during casting and already when the vertical arm 85 of the shuttering panel support 55 is braced, the latter, reinforced by the lever, transmits high forces to the guide shoe 57 . These forces transmitted to the guide shoe can be at least partially absorbed by the section 68 which engages under the bent lug 47, and the shuttering panel support 55 can thus be stiffened with respect to the climbing bracket 1.
  • its vertical arm 85 is pivotally supported with respect to the vertical by two spaced spindles.
  • the lower spindle 89 and the upper spindle 87 are connected to one another by a spindle carrier 91 .
  • threaded bushings 93 and 95 are formed, in which the threads of the spindles 87 and 89 mesh.
  • the output-side end of the lower spindle 89 is freely rotatably mounted in a spindle bearing 97 and axially secured against displacement of the lower spindle.
  • the bore in the spindle bearing has play relative to the diameter of the spindle in the region of the bore, which offers the possibility that the axis of the lower spindle is pivotally connected to the vertical arm 85 in a certain angular range.
  • the upper spindle 87 is also carried in a bearing block 99 and secured against axial displacement. However, the end of the spindle 87 is not guided in a bore, but in a U-shaped recess in the bearing block 99. This design makes it possible, after loosening a locking screw arranged at the end of the lower spindle 89, to move the two spindles 87 and 89 from the vertical arm 85 to release.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Mechanical Engineering (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Ladders (AREA)
  • Joining Of Building Structures In Genera (AREA)
  • Emergency Lowering Means (AREA)
  • Moulds, Cores, Or Mandrels (AREA)
  • Cultivation Receptacles Or Flower-Pots, Or Pots For Seedlings (AREA)

Description

Gegenstand der Erfindung ist ein Verfahren zum selbsttätig aktivierbaren sicheren Verbinden einer Kletterkonsole mit einer Verankerungsvorrichtung gemäss Oberbegriff des Patentanspruchs 1. Gegenstand der Erfindung ist weiter ein System mit einer Kletterkonsole und einer Verankerungsvorrichtung. Gegenstand der Erfindung ist weiter eine Kletterkonsole gemäss dem Oberbegriff des Patentanspruchs 5.The invention relates to a method for automatically activatable, secure connection of a climbing bracket to an anchoring device according to the preamble of patent claim 1. The invention also relates to a system with a climbing bracket and an anchoring device. The subject matter of the invention is also a climbing bracket according to the preamble of patent claim 5.

Kletterkonsolen der genannten Gattung werden eingesetzt, um Deckenrandabschalungen mit geringem Aufwand anbringen zu können und um Wandschalungen, insbesondere auch Grossflächen-Wandschalungsplatten, tragen zu können und/oder gleichzeitig ein Gerüst entlang von Kronen von Wänden, insbesondere Teilbauten, erstellen zu können. Die Kletterkonsolen haben eine Gestalt eines rechtwinkligen Dreiecks, wovon ein Schenkel die obere und Lasten aufnehmende Traverse bildet, der zweite Schenkel kommt in Anlage mit der Wand bzw. der Teilbaute zu liegen und die Hypotenuse oder Basis des Dreiecks ist als Strebe ausgebildet sind. An der Traverse ist im Bereich der Verbindung der beiden Schenkel und in Verlängerung der Traverse ein Haken ausgebildet, dessen Ende in eine Aussparung in der Wand bildende Verankerungsvorrichtung eingreift. Solche Verankerungsvorrichtung werden vor dem Giessen der Teilbaute (Wand) an der Schalung befestigt, indem ein Montagezapfen mit einem Nagel an der Schalung befestigt wird und anschliessend die Öffnung an der Verankerungsvorrichtung auf den Montagezapfen aufgeschoben wird. Nach der Erstellung der Teilbaute kann der Montagezapfen, der in der Oberfläche der Wand liegt, entfernt und damit die Öffnung der Verankerungsvorrichtung freigelegt werden. Die Verankerungsvorrichtung erstreckt sich hinter der Öffnung in die Wand hinein und, beabstandet zur Öffnung über einen weiteren Bereich nach unten, so dass der Haken an der Kletterkonsole nach dem Einführen durch die Öffnung nach unten geführt und an der unteren Kante der Dose und an einem dort vorhandenen Wandabschnitt einhängbar ist. Ein derart aufgebautes Kletterkonsole-Verankerungsvorrichtung-System kann wohl die erforderliche Tragkraft für die Kletterkonsole aufnehmen. Die Kletterkonsole ist allerdings nur durch Schwerkraft gehalten und, falls versehentlich eine Kranlast von unten an der Kletterkonsole anhängt und diese anhebt, ist die Kletterkonsole nicht gesichert und kann sich aus der Wand lösen.Climbing brackets of the type mentioned are used in order to be able to attach slab edge formwork with little effort and to be able to carry wall formwork, in particular also large-area wall formwork panels, and/or at the same time to be able to create scaffolding along the crowns of walls, in particular partial buildings. The climbing brackets have the shape of a right-angled triangle, one leg of which is the top and loads receiving traverse forms, the second leg comes into contact with the wall or the sub-structures to lie and the hypotenuse or base of the triangle is designed as a strut. A hook is formed on the traverse in the region of the connection of the two legs and as an extension of the traverse, the end of which engages in an anchoring device forming a recess in the wall. Such anchoring devices are fastened to the formwork before the substructure (wall) is poured, in that a mounting pin is fastened to the formwork with a nail and the opening in the anchoring device is then pushed onto the mounting pin. After the construction of the sub-structures, the mounting pin, which lies in the surface of the wall, can be removed and thus the opening of the anchoring device can be exposed. The anchoring device extends into the wall behind the opening and spaced a further distance downwardly from the opening so that the hook on the climbing bracket after insertion passes down through the opening and onto the lower edge of the box and on a there existing wall section can be hung. A climbing bracket anchoring device system constructed in this way can probably accommodate the required load capacity for the climbing bracket. However, the climbing bracket is only held by gravity and if a crane load accidentally attaches to the climbing bracket from below and lifts it, the climbing bracket is not secured and can detach from the wall.

In einer Weiterentwicklung eines solchen Kletterkonsolen-Verankerungsvorrichtung-Systems ist in der Dose unterhalb deren Öffnung ein Armierungseisen eingelegt und der Haken an der Kletterkonsole ist soweit gekröpft, dass der gekröpfte Abschnitt unter das Armierungseisen greift, allerdings nur wenn zuvor mit einem Keil der Haken manuell zurückgezogen und die Kletterkonsole satt an die Wand herangezogen worden ist und so ein Anheben der Kletterkonsole erschwert wird, jedoch nicht genügend sichergestellt ist. In einer weiteren Ausgestaltung der bekannten Kletterkonsole ist der Haken in der Traverse verschiebbar und nach dem Einhängen des Hakens in der Verankerungsvorrichtung kann die Kletterkonsole wiederum mittels eines Keils, welcher die Traverse durchdringt und den Haken zurückzieht, zusätzlich gesichert werden. Eine solche Kletterkonsole ist, falls sie richtig befestigt worden ist, verhältnismässig sicher gehalten, doch muss sich der Bauarbeiter, der die Kletterkonsole befestigt, über diese hinweg bewegen und ungesichert ausserhalb der Wand und zudem unterhalb dessen Krone den Keil durch die Traverse und den Haken hindurchführen und einschlagen. Eine weitere bekannte Kletterkonsole besitzt einen fest mit dieser verbundenen T-förmigen Haken. Um diese Kletterkonsole in die Verankerungsvorrichtung einzuführen, muss die Kletterkonsole in eine horizontale Lage gebracht werden und durch die horizontal angeordnete Öffnung der Verankerungsvorrichtung eingeführt und danach um 90° geschwenkt werden. Eine solche Kletterkonsole ist durch Versehen oder äussere Kräfte nicht mehr aus der Wand lösbar, jedoch besteht keine Möglichkeit, die Kletterkonsole bei unterschiedlichen Abständen von der Oberfläche der Wand satt an diese heranzuführen.In a further development of such a climbing bracket anchoring device system, a reinforcing iron is inserted in the box below the opening and the hook on the climbing bracket is cranked to such an extent that the cranked section grips under the reinforcing iron. However, only if the hook has previously been pulled back manually with a wedge and the climbing bracket has been pulled close to the wall, making lifting of the climbing bracket more difficult but not sufficiently secure. In a further embodiment of the known climbing bracket, the hook can be moved in the traverse and after the hook has been hung in the anchoring device, the climbing bracket can again be additionally secured by means of a wedge which penetrates the traverse and pulls back the hook. Such a climbing bracket is held relatively securely if it has been properly fastened, but the construction worker who is fastening the climbing bracket has to move over it and, unsecured, pass the wedge through the traverse and the hook outside the wall and also below its crown and strike. Another known climbing bracket has a T-shaped hook firmly connected to it. In order to introduce this climbing bracket into the anchoring device, the climbing bracket must be brought into a horizontal position and inserted through the horizontally arranged opening of the anchoring device and then pivoted by 90°. Such a climbing bracket can no longer be detached from the wall by mistake or external forces, but there is no way of bringing the climbing bracket close to the surface of the wall at different distances from it.

In der EP 3 032 002 wird eine Kletterkonsole und ein Verschalungsteil für eine solche beschrieben, welche Kletterkonsole einen Rahmen und in diesem einen verschiebbaren Haken umfasst, der in dem eine Wandaussparung bildenden Verschalungsteil einhängbar und innerhalb des Verschalungsteils gegen eine Loslösung vom Verschalungsteil sicherbar ist, wobei für die Sicherung das Verschalungsteil und der Haken jeweils mindestens ein passives Sicherungselement umfassen müssen. Ein solches Sicherungsteil kann eine Sicherungsklappe sein, welche im Verschalungsteil schwenkbar angelenkt ist und nach dem Einschieben des Hakens und Absenken desselben zwischen der oberen Fläche des Verschalungsteils und der Oberkante des Hakens zu liegen kommt und so das Hochheben des Hakens verhindert sein soll. In einer weiteren Ausgestaltung dieses Standes der Technik ist am Haken ein Hebel, der in einem Langloch geführt ist, angelenkt. Dieser Hebel neigt sich beim Einführen des Hakens soweit, dass der Haken in die Öffnung des Verschalungsteils eingeführt werden kann, sofern die Öffnung sehr gross, insbesondere im Querschnitt wesentlich grösser, insbesondere höher ausgelegt ist. Beim Absenken des Hakens im Verschalungsteil soll der Hebel durch eine Reibkraft in eine vertikale Position kippen und wie im ersten Ausführungsbeispiel ein Anheben des Hakens verhindern. Da die Schwenkung des Hebels nur durch Reibkontakt auslösbar und keine eindeutige Endlage gewährleistet ist, ist auch die Sicherung der Konsole nicht gewährleistet, insbesondere fehlt eine optische Kontrolle der Position des Hebels. In beiden Ausführungsformen muss zusätzlich und zwingend noch ein Keil durch die obere Traverse der Kletterkonsole und den Träger des Hakens, der in der Traverse verschiebbar gelagert ist, eingeschlagen werden, um das horizontale Verschieben und damit die Gefahr eines Kippens des Sicherungshebels zu verhindern. Zum Anbringen eines Keils muss der Bauarbeiter sich wie bisher über die Wand hinaus beugen und so unterhalb der Krone der Teilbaute an den Kletterkonsolen den Keil einschlagen. Im Weiteren ist nicht erkennbar, auf welche Weise der Sicherungshebel später, wenn die Kletterkonsole wieder von der Wand gelöst werden soll, aus der Sicherungsstellung löst und so aus dem Verschalungsteil herausgezogen werden kann. Zudem besteht akut die Gefahr, dass das Anbringen des Keils entweder vergessen wird oder der Keil nur unvollständig eingeschlagen wird, so dass der Keil und der Sicherungshebel sich durch das Vibrieren bei den nachfolgenden Betonierarbeiten aus seiner Klemmlage herauslösen können. Im Weiteren kann beim Betonieren oberhalb der horizontalen Traverse Beton durch die zwecks Einführen des Hebels extra grosse Öffnung in den Verschalungsteil gelangen und dort aushärten, so dass der Haken unlösbar in der Wand verbleibt.In the EP 3 032 002 a climbing bracket and a formwork part for such a climbing bracket is described, which climbing bracket comprises a frame and in this a movable hook which can be hung in the formwork part forming a wall recess and can be secured within the formwork part against detachment from the formwork part, whereby for the securing the shuttering part and the hook must each include at least one passive safety element. Such a securing part can be a securing flap which is pivoted in the formwork part and after the hook has been pushed in and lowered it comes to lie between the upper surface of the formwork part and the upper edge of the hook and is thus intended to prevent the hook from being lifted. In a further embodiment of this prior art, a lever that is guided in a slot is articulated on the hook. When the hook is inserted, this lever inclines so far that the hook can be inserted into the opening of the formwork part if the opening is very large, in particular in cross-section much larger, in particular higher. When lowering the hook in the shuttering part, the lever should tilt into a vertical position due to a frictional force and, as in the first exemplary embodiment, prevent the hook from being lifted. Since the pivoting of the lever can only be triggered by frictional contact and no clear end position is guaranteed, the securing of the console is also not guaranteed, in particular there is no visual control of the position of the lever. In both embodiments, a wedge must additionally and imperatively be driven through the upper traverse of the climbing bracket and the carrier of the hook, which is slidably mounted in the traverse, in order to prevent horizontal displacement and thus the risk of the safety lever tipping over. To attach a wedge, the construction worker has to bend over the wall as before and drive the wedge in below the crown of the partial structures on the climbing brackets. Furthermore, it is not clear how the safety lever later, when the climbing bracket is to be detached from the wall, is released from the safety position and thus released can be pulled out of the casing part. In addition, there is an acute risk that the wedge will either be forgotten to be attached or that the wedge will only be driven in incompletely, so that the wedge and the safety lever can become detached from their clamped position due to vibration during the subsequent concreting work. Furthermore, when concreting above the horizontal traverse, concrete can get through the opening, which is extra large for the purpose of inserting the lever, into the formwork part and harden there, so that the hook remains in the wall inseparably.

Generell kann festgestellt werden, dass alle bekannten Kletterkonsolen ein separat zu betätigendes Sicherungselement, wie einen Keil benötigen, um deren Sicherheit zu gewährleisten.In general, it can be stated that all known climbing brackets require a separately operated safety element, such as a wedge, to ensure their safety.

Die Aufgabe der vorliegenden Erfindung ist die Schaffung eines Verfahrens und einer Kletterkonsole zur selbsttätig aktivierbaren sicheren Verbindung einer Kletterkonsole mit einer Verankerungsvorrichtung bei welchem die Kletterkonsole nach Einhängen des Hakens in der Verankerungsvorrichtung sich selbständig in der letzteren sichert. Eine weitere Aufgabe der vorliegenden Erfindung ist ein System zu schaffen, welches dem Bauarbeiter erlaubt, ohne Erklärungen oder Lernaufwand, die Kletterkonsole wie bisher in die Verankerungsvorrichtung einzuführen und dabei ohne weitere Handlungen, also ohne Sicherheitselemente wie ein Keil einzuführen, damit die Kletterkonsole nach dem Einhängen definitiv gesichert an der Wand befestigt ist. Eine weitere Aufgabe der Erfindung besteht darin, eine Kletterkonsole zu schaffen, die während des Einhängevorgangs ohne jegliche Manipulation des Bauarbeiters zwangsweise an die Wand bzw. in dieThe object of the present invention is to create a method and a climbing bracket for automatically activatable, secure connection of a climbing bracket to an anchoring device, in which the climbing bracket automatically secures itself in the anchoring device after the hook has been hooked into the anchoring device. Another object of the present invention is to create a system that allows the construction worker, without explanations or learning effort, to introduce the climbing bracket into the anchoring device as before and without further actions, i.e. without introducing safety elements such as a wedge, so that the climbing bracket after hanging definitely secured to the wall. A further object of the invention is to provide a climbing bracket that is forced onto the wall or into the wall during the hanging process without any manipulation by the construction worker

Verankerungsvorrichtung hineingezogen wird, spätestens, wenn der Bauarbeiter die Kletterkonsole loslässt, so dass sofort und ohne Einsatz eines Keils ein spielfreier Halt der Kletterkonsole gewährleistet ist.Anchoring device is drawn in, at the latest when the construction worker lets go of the climbing bracket, so that a play-free hold of the climbing bracket is guaranteed immediately and without using a wedge.

Eine weitere Aufgabe der Erfindung ist die Schaffung einer Kletterkonsole, welche zwangsläufig und selbsttätig die Ungenauigkeiten, die beim Setzen der Verankerungsvorrichtung entstehen, aufhebt bzw. die Kletterkonsole unabhängig von der Lage der Verankerungsvorrichtung satt an die Wand angepresst und dort gesichert festgehalten wird.A further object of the invention is the creation of a climbing bracket which inevitably and automatically eliminates the inaccuracies that arise when setting the anchoring device or the climbing bracket is pressed tightly against the wall and held securely there, regardless of the position of the anchoring device.

Eine weitere Aufgabe der Erfindung ist die Schaffung einer Kletterkonsole, bei der ein selbsttätiges Sicherungselement nach dem Ende des Absenkens des Hakens an der Kletterkonsole das Wiederausfahren des Hakens verhindert, ohne dass durch einen manuellen Eingriff ein aktives Lösen erfolgen kann.A further object of the invention is the creation of a climbing bracket in which an automatic safety element prevents the hook from extending again after the end of the lowering of the hook on the climbing bracket, without active release being able to take place through manual intervention.

Eine weitere Aufgabe der Erfindung ist die Schaffung einer Verankerungsvorrichtung für den Einbau in eine Wand zur Verankerung einer Kletterkonsole, bei der der Haken der Kletterkonsole sowohl oberhalb als auch unterhalb der Öffnung gegen das Ausziehen gesichert wird.A further object of the invention is to provide an anchoring device for installation in a wall for anchoring a climbing bracket, in which the hook of the climbing bracket is secured against being pulled out both above and below the opening.

Eine weitere Aufgabe der Erfindung ist die Schaffung einer Verankerungsvorrichtung mit derart hoher Festigkeit, dass deren Verankerung in der Wand ohne zusätzliche Armierungseisen oder dergleichen erfolgen kann.A further object of the invention is the creation of an anchoring device with such high strength that it can be anchored in the wall without additional reinforcing irons or the like.

Die allgemeine Aufgabe der Erfindung ist folglich die Schaffung einer sich selbst bzw. zwangsläufig sichernden Kletterkonsole, deren Sicherungsmittel nicht in einem separaten Arbeitsgang aktiviert werden müssen.The general object of the invention is consequently the creation of a climbing bracket which secures itself or inevitably and whose securing means do not have to be activated in a separate operation.

Gelöst werden diese Aufgaben durch ein Verfahren gemäss den Merkmalen des Patentanspruchs 1, ein System gemäss den Merkmalen des Patentanspruchs 11, und eine Kletterkonsole gemäss den Merkmalen des Patentanspruchs 5.These problems are solved by a method according to the features of patent claim 1, a system according to the features of patent claim 11, and a climbing bracket according to the features of patent claim 5.

Vorteilhafte Ausgestaltungen der Erfindung werden in den jeweils von den unabhängigen Ansprüchen 1 und 5 abhängigen Ansprüchen umschrieben.Advantageous developments of the invention are defined in the claims dependent on the independent claims 1 and 5, respectively.

Beim Einführen des Hakens an der Kletterkonsole in der Verankerungsvorrichtung, ist das im Wesentlichen zweiarmig ausgebildete Sicherungselement am Haken um eine Achse nach oben schwenkbar, soweit, dass der erste Schenkel in eine oberhalb der Einführöffnung für den Haken befindlichen Querschnittsausweitung gelangt. Gleichzeitig arretiert der zweite Schenkel des zweiarmig ausgebildeten Sicherungselements an einem Arretierbolzen derart, dass der Haken zusammen mit der Kletterkonsole nicht mehr aus der Verankerungsvorrichtung gelöst werden kann. Das Herausziehen der Kletterkonsole aus der Verankerungsvorrichtung wird bereits schon bei erst teilweisen Einführen des Hakens verhindert, weil zu diesem Zeitpunkt die vertikale Ausdehnung des Hakens und des Sicherungshebels grösser ist als die Höhe der Öffnung in der Verankerungsvorrichtung, was bei keiner bekannten Kletterkonsole mit Sicherungselementen der Fall ist. Selbstverständlich könnte das Sicherungselement auch seitlich ausschwenkbar am Haken angelenkt sein und beim Einführen in die Verankerungsvorrichtung in einen seitlich des Einführkanals befindlichen Raum ausfahren.When inserting the hook on the climbing bracket in the anchoring device, the essentially two-armed securing element on the hook can be pivoted upwards about an axis to such an extent that the first leg reaches a cross-sectional widening located above the insertion opening for the hook. At the same time, the second leg of the two-armed safety element locks on a locking bolt in such a way that the hook together with the climbing bracket can no longer be released from the anchoring device. Pulling out the climbing bracket from the Anchoring device is already prevented when the hook is only partially inserted, because at this point the vertical extension of the hook and the safety lever is greater than the height of the opening in the anchoring device, which is not the case with any known climbing bracket with safety elements. Of course, the securing element could also be articulated on the hook such that it could swing out laterally and, when inserted into the anchoring device, extend into a space located on the side of the insertion channel.

Das Lösen der Kletterkonsole nach Beendigung der ihr zugeordneten Aufgaben, nämlich das Abstützen von Schaltafeln für die Weiterbetonierung der bereits erstellten Teilbaute, kann nur erfolgen, wenn an der Traverse bzw. dem oberen, horizontal verlaufenden Schenkel der Sicherungsbolzen, der von aussen zugänglich ist, gegen die Kraft einer Feder gedrückt und dadurch die Arretierung des zweiarmigen Sicherungselements in seiner angehobenen oder seitlich ausgefahrenen Stellung aufgehoben wird. Die Aufhebung der Arretierung kann aber nur erfolgen, wenn die Kletterkonsole nicht mehr von einer Schalung belastet und vorerst vertikal angehoben wird. Mit anderen Worten, auch bei absichtlich oder unabsichtlich betätigtem Sicherungsbolzen ist die Kletterkonsole weiterhin sicher in der Verankerungsvorrichtung gehalten.The release of the climbing bracket after completion of its assigned tasks, namely the support of formwork panels for the further concreting of the partial structures already constructed, can only take place if the safety bolt on the traverse or the upper, horizontally running leg, which is accessible from the outside, is against pressed by the force of a spring and thereby the locking of the two-armed safety element is released in its raised or laterally extended position. However, the lock can only be released if the climbing bracket is no longer loaded by formwork and is initially lifted vertically. In other words, even if the safety bolt is actuated intentionally or unintentionally, the climbing bracket is still held securely in the anchoring device.

Weiter gelingt es in einer weiteren vorteilhaften Ausgestaltung der Erfindung, die Kletterkonsole ohne Zutun des Bauarbeiters, dass diese zwangsläufig in eine satte Anlage mit der Wand der Teilbaute gelangt, das heisst dass die Kletterkonsole horizontal in Richtung Wand gezogen wird, sobald die Kletterkonsole nicht mehr vom Bauarbeiter angehoben gehalten ist. Das Heranziehen an die Wand erfolgt zwangsläufig und unabhängig davon, wie weit die Verankerungsvorrichtung von der Oberfläche der Wand, in der sie einbetoniert ist, angeordnet ist. Ungenauigkeiten beim Setzen der Verankerungsvorrichtung werden dadurch aufgehoben.Furthermore, in a further advantageous embodiment of the invention, the climbing bracket succeeds without the construction worker having to do anything, that it inevitably comes into close contact with the wall of the substructure, i.e. the climbing bracket is pulled horizontally towards the wall as soon as the climbing bracket is no longer from the Construction worker is kept raised. Pulling towards the wall is compulsory and regardless of how far the anchoring device is from the surface of the wall, in which it is concreted in, is arranged. This eliminates inaccuracies when setting the anchoring device.

Die Verankerungsvorrichtung, die vorteilhafterweise aus Stahl hergestellt ist, weist eine geringe Breite im Verhältnis zu deren Höhe auf, wobei deren Innenmass im Wesentlichen der Breite des Hakens und des neben diesem angeordneten Sicherungselements entspricht.The anchoring device, which is advantageously made of steel, has a small width in relation to its height, the internal dimension of which corresponds substantially to the width of the hook and of the securing element placed next to it.

Durch geprägte nach aussen abstehende Rippen oder Buckel wird eine Auszugsfestigkeit erreicht, welche grösser ist als im Stand der Technik. Die Verankerungsvorrichtung kann in einer Stufenpresse ab Coil in wenigen Stanz- und Tiefziehhüben aus zwei untereinander verbundenen Hälften kostengünstig und qualitativ hochstehend erzeugt werden. Vorzugsweise ist der Haken an der Kletterkonsole aus zwei parallel verlaufenden Elementen zusammengesetzt, zwischen denen das Sicherungselement schwenkbar eingesetzt ist. Alternativ kann das Sicherungselement auch seitlich eines einfachen Hakens liegen. Durch die geringen Masse bzw. die geringe Breite der Verankerungsvorrichtung erfolgt nur eine vernachlässigbare Schwächung der Teilbaute und auf der Seite der Öffnung der Verankerungsvorrichtung wird diese nur geringfügig von der Betonmasse der Wand überdeckt, so dass Absprengungen infolge zu dünner Überdeckung oder hoher Last vermieden werden können. Die Verankerungsvorrichtung weist einen verhältnismässig langen kanalartigen Einführbereich auf, in dem der Führungsträger für den Haken nach dem Einführen des Hakens unten aufliegen kann und innerhalb welchem das Sicherungselement ein Anheben der Kletterkonsole durch das Sicherungselement verhindert. Im Weiteren wird der zweite Schenkel des Sicherungselements, sobald der Haken in die Verankerungsvorrichtung eingeschoben und abgesenkt ist, daran gehindert, nach oben auszuschwenken bzw. der nach oben geschwenkte Sicherungshebel, d.h. der erste Schenkel, kann nicht nach unten zurückschwenken und das Herausziehen aus der Dose ermöglichen.A pull-out strength that is greater than in the prior art is achieved by embossed outwardly protruding ribs or humps. The anchoring device can be produced inexpensively and with high quality in a progressive press from the coil in a few stamping and deep-drawing strokes from two halves connected to one another. The hook on the climbing bracket is preferably composed of two parallel elements, between which the securing element is pivotably inserted. Alternatively, the securing element can also lie to the side of a simple hook. Due to the small mass and the small width of the anchoring device, there is only a negligible weakening of the partial structures and on the side of the opening of the anchoring device it is only slightly covered by the concrete mass of the wall, so that blasting off due to too thin a cover or high load can be avoided . The anchoring device has a relatively long channel-like insertion area, in which the guide support for the hook can lie down after the hook has been inserted and within which the securing element prevents the climbing bracket from being lifted by the securing element. Furthermore, as soon as the hook is pushed into the anchoring device and lowered, the second leg of the securing element is prevented from pivoting upwards or downwards The safety lever pivoted above, ie the first leg, cannot pivot back down and allow extraction from the can.

Anhand von Ausführungsbeispielen wird das erfindungsgemässe Verfahren, die erfindungsgemässe Konsole und das erfindungsgemässe System näher erläutert. Es zeigen:

Figur 1
Eine Schnittdarstellung des Eckbereichs einer Kletterkonsole mit dem Haken und dem Sicherungselement sowie beabstandet dazu einen Ausschnitt aus einer Wand mit darin eingegossener Verankerungsvorrichtung,
Figur 2
einen Schnitt durch den Hakenbereich der Kletterkonsole mit in die Verankerungsvorrichtung eingeführtem Haken und Sicherungselement, Kletterkonsole noch gehalten vom Bauarbeiter, bei Wandabstand A = 2 mm,
Figur 3
die vom Bauarbeiter nicht mehr gehaltene und dadurch abgesenkte Kletterkonsole mit ausgeschwenktem Sicherungselement, Kletterkonsole satt an Wand anliegend,
Figur 4
einen Schnitt durch den Hakenbereich der Kletterkonsole mit in die Verankerungsvorrichtung eingeführtem Haken und Sicherungselement, bei Wandabstand 7 mm, Haken nur teilweise im Schenkel der Kletterkonsole eingezogen,
Figur 5
die abgesenkte Kletterkonsole mit ausgeschwenktem Sicherungselement, Konsole satt an Wand anliegend, Haken vollständig eingezogen,
Figur 6
eine perspektivische Darstellung der Kletterkonsole mit hakenförmigem Ende, nicht eingeführt,
Figur 7
eine Seitenansicht des hakenförmigen Endes, Haken in Ausgangs-/ Ruhestellung, nicht eingeführt,
Figur 8
eine Seitenansicht des hakenförmigen Endes, Haken in Einhakstellung,
Figur 8a
einen Vertikalschnitt durch das Gehäuse und das Sicherungselement in Ruhestellung,
Figur 8b
einen Vertikalschnitt durch das Gehäuse und das Sicherungselement in verrasteter gesicherter Stellung,
Figur 9
eine teilweise aufgeschnittene Seitenansicht der Kletterkonsole mit aufgesetztem Abschalplattenhalter, Wand der Teilbaute nicht dargestellt,
Figur 10
eine Seitenansicht der Kletterkonsole mit aufgesetztem Abschalplattenträger nach dem Entfernen der vom Abschalplattenträger getragenen Schalplatte, Wand nicht dargestellt,
Figur 11
perspektivische Darstellung der Kletterkonsole mit Abschalplattenträger gemäss Figur 9,
Figur 11a
eine perspektivische Darstellung der Kletterkonsole gemäss Figur 11 rückseitig
Figur 12
perspektivische Darstellung der Kletterkonsole mit Abschalplattenträger gemäss Figur 10,
Figur 13
Aufsicht auf die Kletterkonsole mit dem Abschalplattenträger gemäss Figur 10,
Figur 14
Aufsicht auf die Kletterkonsole und dem Abschalplattenträger gemäss Figur 9,
Figur 15
Abschalplattenträger in perspektivischer Darstellung von hinten, geschlossen,
Figur 16
Abschalplattenträger in perspektivischer Darstellung von hinten, geöffnet,
Figur 17
Ansicht des Abschalplattenträgers von der Rückseite, Abschalplattenträger geöffnet,
Figur 18
eine Darstellung der Montage der Kletterkonsole mit einem Abschalplattenträger an einer Teilbaute vor dem Einführen des Hakens in die Verankerungsvorrichtung,
Figur 19
eine Darstellung des eingeführten Hakens an der Kletterkonsole vor dem Absenken durch Loslassen der Kletterkonsole,
Figur 20
Kletterkonsole abgesenkt mit nach oben ausgefahrenem Sicherungselement,
Figur 21
Lösen der Verriegelung nach dem Betonieren,
Figur 22
perspektivische Darstellung der Kletterkonsole mit Abschalplattenträger gemäss Figur 11 mit einer alternativen Ausgestaltung der Sicherungs- und Auslöseplatte und
Figur 23
eine perspektivische Darstellung der Kletterkonsole mit aufgesetztem Abschalplattenträger vorgerückt zum Lösen der Hakenverriegelung.
The method according to the invention, the console according to the invention and the system according to the invention are explained in more detail on the basis of exemplary embodiments. Show it:
figure 1
A sectional view of the corner area of a climbing bracket with the hook and the safety element as well as a section of a wall with an anchoring device cast into it at a distance,
figure 2
a section through the hook area of the climbing bracket with the hook and safety element inserted into the anchoring device, climbing bracket still held by the construction worker, at wall distance A = 2 mm,
figure 3
the climbing bracket no longer held by the construction worker and thus lowered with the safety element swiveled out, climbing bracket lying snugly against the wall,
figure 4
a section through the hook area of the climbing bracket with the hook and safety element inserted into the anchoring device, at a distance of 7 mm from the wall, hook only partially inserted in the leg of the climbing bracket,
figure 5
the lowered climbing bracket with the safety element swiveled out, bracket lying snugly against the wall, hook fully retracted,
figure 6
a perspective view of the climbing bracket with hooked end, not inserted,
figure 7
a side view of the hooked end, hook in initial/at rest position, not inserted,
figure 8
a side view of the hooked end, hook in hooked position,
Figure 8a
a vertical section through the housing and the safety element in the rest position,
Figure 8b
a vertical section through the housing and the securing element in the locked secured position,
figure 9
a partially cut-away side view of the climbing bracket with stop-end plate holder attached, wall of the sub-structures not shown,
figure 10
a side view of the climbing bracket with the shuttering plate girder attached after removing the shuttering plate carried by the shuttering plate girder, wall not shown,
figure 11
Perspective view of the climbing bracket with stop-end plate girder as per figure 9 ,
Figure 11a
according to a perspective view of the climbing bracket figure 11 back
figure 12
Perspective view of the climbing bracket with stop-end plate girder as per figure 10 ,
figure 13
Supervision of the climbing bracket with the shuttering plate girder as per figure 10 ,
figure 14
Supervision of the climbing bracket and the shuttering plate girder as per figure 9 ,
figure 15
Stop-end plate girder in a perspective view from behind, closed,
figure 16
A perspective view from the rear of the shuttering plate support, open
figure 17
Rear view of the shuttering plate carrier, shuttering plate carrier open,
figure 18
a representation of the assembly of the climbing bracket with a shuttering plate girder on a partial structure before the insertion of the hook into the anchoring device,
figure 19
a representation of the inserted hook on the climbing bracket before lowering by releasing the climbing bracket,
figure 20
Climbing console lowered with safety element extended upwards,
figure 21
loosening the locking after concreting,
figure 22
Perspective view of the climbing bracket with stop-end plate girder as per figure 11 with an alternative design of the backup and release plate and
figure 23
a perspective view of the climbing bracket with attached formwork plate carrier advanced to release the hook lock.

In Figur 1 ist schematisch und ausschnittsweise auf der linken Seite eine Kletterkonsole 1 dargestellt. Oben in Figur 1 ist der oben liegende Schenkel 3, der als Führungs- und Tragelement dient, sichtbar. Auf der rechten Seite ist der vertikale Schenkel 5 zur Abstützung der Kletterkonsole 1 an einer Teilbaute 21 teilweise dargestellt. Etwas nach unten versetzt, ist am oberen Schenkel 3 ein Gehäuse 7 angeordnet, in welchem ein Führungsträger 9 für einen Haken 11 verschiebbar gelagert ist. Alternativ kann der Führungsträger 9 auch im oberen Schenkel 3 integriert angeordnet sein, wenn dieser einen geeignet grossen Querschnitt aufweist. In der bevorzugten Ausgestaltung der Erfindung ist der Führungsträger 9 mit dem Haken 11 bzw. hakenförmigen Ende auf zur horizontalen geneigten Führungsbahnen mit einem Neigewinkel zur Horizontalen von >45° an der Kletterkonsole 1 verschiebbar gelagert. Die Führungsbahnen werden gebildet durch geneigt verlaufende Schlitze 13, welche im Führungsträger 9 ausgebildet sind und mindestens ein weiterer, vorzugsweise zwei weitere Schlitze 41, die in den Figuren 7,8 sichtbar und im Gehäuse 7 eingelassen sind. Die Schlitze 13 werden von zwei im Gehäuse 7 fest montierten Bolzen 15 durchquert und bilden eine erste Längsführungsbahn für den Führungsträger 9. Ein axial beweglich gelagerter Stift 17, der im Führungsträger 9 gegen eine Federkraft axial verschiebbar ist und ein weiterer im Führungsträger 9 eingesetzter Sicherheitsbolzen 43 durchdringen die dritten Schlitze 41 im Gehäuse 7. Die drei oder vorzugsweise vier parallel verlaufenden Schlitze 13;41 bilden folglich die Parallelführung für den Führungsträger 9 und den daran angeordneten Haken 11 (Fig. 6).In figure 1 a climbing bracket 1 is shown schematically and in part on the left-hand side. up in figure 1 is the overhead leg 3, which serves as a guide and support element, visible. On the right side is the vertical leg 5 to support the Climbing bracket 1 partially shown on a substructure 21 . Slightly offset downwards, a housing 7 is arranged on the upper leg 3, in which a guide support 9 for a hook 11 is slidably mounted. Alternatively, the guide support 9 can also be integrated into the upper leg 3 if it has a suitably large cross section. In the preferred embodiment of the invention, the guide support 9 with the hook 11 or hook-shaped end is slidably mounted on the climbing bracket 1 on guideways inclined to the horizontal at an angle of inclination of >45° to the horizontal. The guideways are formed by sloping slots 13, which are formed in the guide support 9 and at least one other, preferably two more slots 41 in the Figures 7,8 are visible and embedded in the housing 7. The slots 13 are crossed by two bolts 15 fixedly mounted in the housing 7 and form a first longitudinal guideway for the guide support 9. An axially movably mounted pin 17, which can be displaced axially in the guide support 9 against a spring force, and another safety bolt 43 inserted in the guide support 9 penetrate the third slots 41 in the housing 7. The three or preferably four parallel slots 13; 41 consequently form the parallel guide for the guide support 9 and the hook 11 ( 6 ).

Im Weiteren ist am Führungsträger 9 auf einer Welle 48 ein zweiarmiges Sicherungselement 19 mit einem ersten Arm 19' und einem zweiten Arm 19" schwenkbar gelagert. Das zweiarmige Sicherungselement 19 liegt in der Ruhe- oder Ausgangsstellung mit seinem ersten Arm 19' im Wesentlichen innerhalb des Umrisses des Hakens 11, das heisst der Arm 19' überragt weder an seiner Oberkante noch an seiner Unterkante die äussere Kontur des Hakens 11. Anders herum gesagt, die Höhe h des Hakens 11 im Bereich seines vorderen Endes bestimmt auch die Höhe bzw. Höhenausdehnung des Sicherungselements 19.Furthermore, a two-armed securing element 19 with a first arm 19' and a second arm 19" is pivotably mounted on the guide support 9 on a shaft 48. In the rest or initial position, the two-armed securing element 19 lies with its first arm 19' essentially within the Outline of the hook 11, that is, the arm 19' protrudes neither at its upper edge nor at its lower edge the outer contour of the hook 11. The other way around In other words, the height h of the hook 11 in the area of its front end also determines the height or height extent of the securing element 19.

Der zweite Arm 19" des Sicherungselements 19 überragt in der Ruhe- und Ausgangsstellung die Oberkante des Führungsträgers 9 (vergl. Fig. 2 + 8a). Der zweite Arm 19" liegt vollständig innerhalb des Umrisses der Kletterkonsole 1.The second arm 19" of the securing element 19 protrudes beyond the upper edge of the guide support 9 in the rest and starting position (cf. 2 + 8a). The second arm 19" lies entirely within the outline of the climbing bracket 1.

In der Verlängerung des Führungsträgers 9 bzw. Hakens 11 ist in Figur 1 ebenfalls im Vertikalschnitt eine Teilbaute 21, z.B. eine Wand aus Beton dargestellt, in welcher eine Verankerungsvorrichtung 23 einbetoniert ist. Der genaue Aufbau der Verankerungsvorrichtung 23 wird später beschrieben. Die Verankerungsvorrichtung 23 weist auf der linken Seite in Fig. 1-5 eine Öffnung 25 auf, deren Höhe H etwas grösser ist als die Höhe h des Hakens 11 bzw. Führungsträgers 9. Die Breite B der Öffnung 25 ist etwas grösser als die Breite des Hakens 11, der vorzugsweise aus zwei beabstandet angeordneten Blechen aufgebaut ist und zwischen denen das Sicherungselements 19 liegt. Diese Dimensionen ermöglichen es, den Haken 11 bzw. Führungsträger 9 und den das dazwischen liegende Sicherungselement 19 mit geringem Spiel horizontal in Richtung X (Fig. 1) in die Verankerungsvorrichtung 23 einzuschieben. Der Haken 11 kann auch aus einem einzigen Blechteil oder eben aus zwei parallel verlaufenden, am hakenförmigen Ende 11' verbundenen Blechteilen aufgebaut sein.In the extension of the guide support 9 or hook 11 is in figure 1 Also shown in vertical section is a partial structure 21, for example a wall made of concrete, in which an anchoring device 23 is concreted. The detailed structure of the anchoring device 23 will be described later. The anchoring device 23 points to the left in Figures 1-5 an opening 25, the height H of which is slightly greater than the height h of the hook 11 or guide support 9. The width B of the opening 25 is slightly greater than the width of the hook 11, which is preferably constructed of two spaced plates and between which the fuse element 19 is located. These dimensions make it possible to move the hook 11 or guide support 9 and the securing element 19 lying between them horizontally in the direction X ( 1 ) to be pushed into the anchoring device 23. The hook 11 can also be constructed from a single sheet metal part or from two parallel sheet metal parts connected at the hook-shaped end 11'.

Die Figur 2 zeigt die Kletterkonsole 1, nachdem der Haken 11 von einer Bedienungsperson, z.B. dem Bauarbeiter, getragen an der Kletterkonsole oder an einem auf dem Träger 3 verschiebbar angeordneten Abschalungshalter, horizontal in die Verankerungsvorrichtung 23 eingeführt worden ist. Dabei ist ersichtlich, dass die Oberkante des Führungsträgers 9 und Hakens 11 mit nur wenig Spiel an der oberen Wand 27 hinter der Öffnung 25 liegen und das untere Ende 11' des Hakens 11 an der unteren Wand 29 vorbeigeführt nun im erweiterten Innenraum oder Hohlkörper 65 der Verankerungsvorrichtung 23 liegt. Das untere Ende des ersten Arms 19' des Sicherungselements 19, das in etwa gleicher Höhe wie das Ende 11' liegt, gleitet ebenfalls über den Bodenabschnitt 29 des Einführbereichs 26 der Verankerungsvorrichtung 23. Die in den Figuren 1 und 2 dargestellten Positionen der Elemente liegen vor, solange die Kletterkonsole 1 von der Bedienungsperson noch getragen wird, das heisst solange die Masse der Kletterkonsole 1 diese nicht nach unten verschiebt. Die Kletterkonsole 1 wäre folglich in dieser Position vom Bauarbeiter getragen wieder aus der Verankerungsvorrichtung 11 herausführbar. Weiter ist in Figur 2 ersichtlich, dass zwischen der Vorderkante des vertikalen Schenkels 5 der Kletterkonsole 1 und der Oberfläche 21' der Wand 21 mit der Öffnung 25 an der Verankerungsvorrichtung 23 ein Abstand A von beispielsweise 8 mm besteht, nachdem das vordere Ende des Hakens 11 in der Nähe der Rückwand der Verankerungsvorrichtung 23 des Hohlkörpers 65 liegt.The figure 2 shows the climbing bracket 1 after the hook 11 has been inserted horizontally into the anchoring device 23 by an operator, for example the construction worker, carried on the climbing bracket or on a formwork holder slidably arranged on the carrier 3 has been. It can be seen that the upper edge of the guide support 9 and hook 11 lie behind the opening 25 with only a little play on the upper wall 27 and the lower end 11' of the hook 11 is now guided past the lower wall 29 in the expanded interior space or hollow body 65 of the Anchoring device 23 is located. The lower end of the first arm 19 'of the securing element 19, which is approximately the same height as the end 11', also slides over the bottom portion 29 of the insertion area 26 of the anchoring device 23 Figures 1 and 2 The positions of the elements shown are present as long as the operator is still carrying the climbing bracket 1, ie as long as the mass of the climbing bracket 1 does not move it downwards. The climbing bracket 1 would consequently be able to be carried out of the anchoring device 11 again in this position, carried by the construction worker. Next is in figure 2 It can be seen that there is a distance A of, for example, 8 mm between the front edge of the vertical leg 5 of the climbing bracket 1 and the surface 21' of the wall 21 with the opening 25 on the anchoring device 23, after the front end of the hook 11 is close to the rear wall the anchoring device 23 of the hollow body 65 is located.

Alternativ kann anstelle des Sicherungselements 19, welches sich um die Achse der Schraube 17 drehen kann, das Sicherungselement 19 auch in einer Linearführung am Führungsträger 9 verschiebbar befestigt sein und anstelle einer Drehbewegung eine Schiebebewegung nach oben ausführen. In einer weiteren ebenfalls nicht dargestellten Ausführungsform könnte das Sicherungselement 19 um eine horizontale Achse schwenkbar am Führungsträger 9 angelenkt sein und beim Absenken des Hakens 11 seitlich ausschwenkbar sein und folglich das Ausziehen des Hakens verhindern.Alternatively, instead of the securing element 19, which can rotate about the axis of the screw 17, the securing element 19 can also be slidably fastened in a linear guide on the guide support 9 and, instead of a rotary movement, perform a sliding movement upwards. In a further embodiment, which is also not shown, the securing element 19 could be pivoted about a horizontal axis on the guide support 9 and on the lowering of the hook 11 laterally be able to swing out and consequently prevent the hook from being pulled out.

Sobald der Bedienungsmann, der beispielsweise aufrecht auf der Teilbaute 23 stehend die Kletterkonsole 1 an einem auf dem ersten Schenkel 3 der Kletterkonsole 1 aufgesetzten Abschalplattenträger 55 festhält (Fig. 20), die Kletterkonsole 1 nach unten gleiten lässt, also nicht mehr festhält (wie in Fig. 19), wird das Sicherungselement 19 vom rechten Arm 19' des Sicherungselements 19 durch den Kontakt mit dem Bodenabschnitt 29 nach oben gedrückt und dreht sich um die Achse der Welle 48 im Gegenuhrzeigersinn, bis der Führungsträger 9 mit seiner Unterkante 9' im Bereich hinter dem Haken 11 am Bodenabschnitt 29 aufliegt. Zu beachten ist, dass mit Beginn des Absenkens der Kletterkonsole 1 in der Verankerungsvorrichtung 23 unmittelbar die Drehung oder eine Verschiebung des Sicherungselements 19 einsetzt und der an der Oberseite des Arms 19 z.B. angeordnete Sporn 31 sofort über die Oberkante des Führungsträgers 9 hinausragt und sodann die Höhe h vom Haken 11, Führungsträger 9 und Sicherungselement 19 vergrössert wird und folglich der Haken 11 ab diesem Augenblick nicht mehr durch den Öffnungsquerschnitt mit der Höhe H der Verankerungsvorrichtung 23 hinaus gleiten kann.As soon as the operator, who is standing, for example, upright on the substructure 23, holds the climbing bracket 1 to a stop-end plate carrier 55 placed on the first leg 3 of the climbing bracket 1 ( 20 ), which allows the climbing bracket 1 to slide downwards, i.e. no longer holds it (as in 19 ), the securing element 19 is pushed upwards by the right arm 19' of the securing element 19 through contact with the bottom section 29 and rotates counterclockwise about the axis of the shaft 48 until the guide beam 9 with its lower edge 9' in the area behind the hook 11 rests on the bottom section 29. It should be noted that when the climbing bracket 1 begins to be lowered in the anchoring device 23, the rotation or displacement of the securing element 19 begins immediately and the spur 31, for example arranged on the upper side of the arm 19, immediately protrudes over the upper edge of the guide beam 9 and then the height h of the hook 11, guide support 9 and securing element 19 is increased and consequently the hook 11 can no longer slide through the opening cross-section with the height H of the anchoring device 23 from this moment on.

Beim weiteren Absenken des Hakens 11 hintergreift dieser in der Verankerungsvorrichtung 23 unten einen etwa vertikal verlaufenden Abschnitt 33 am Ende des Einführkanals 29 in der Verankerungsvorrichtung 23. Das linke Ende, d.h. der Arm 19" des zweiarmigen Sicherungselements 19 schwenkt beim Absenken im Gegenuhrzeigersinn nach unten und kommt in den Bereich einer Scheibe 35 an einem Sicherungsbolzen 45 zu liegen und rastet an dieser mit der konkaven Fläche 46 zwangsweise ein. Das Sicherungselement 19 ist sicher fixiert (vergl. Fig. 8a, 8b).As the hook 11 is further lowered, it engages in the anchoring device 23 from behind an approximately vertical section 33 at the end of the insertion channel 29 in the anchoring device 23. The left end, i.e. the arm 19" of the two-armed securing element 19, pivots counterclockwise downwards and comes to rest in the area of a disc 35 on a safety bolt 45 and snaps onto it with the concave surface 46 forced one. The securing element 19 is securely fixed (cf. Figures 8a, 8b ).

Besonders vorteilhaft wirkt sich eine Lagerung des Führungsträgers 9 in den zur Vertikalen geneigten, durch die Schlitze 13,41 gebildeten Führungsbahnen aus, weil dadurch der Haken 11 mit dem Führungsträger 9 beim Absenken der Kletterkonsole 1 im Gehäuse 7 nach links gezogen wird und folglich einerseits der vertikale Schenkel 5 der Kletterkonsole 1 an die Oberfläche der Teilbaute 21 angezogen und andererseits der Haken 11 in der Verankerungsvorrichtung 23 nach links verschoben wird, so dass der Haken 11 in der Verankerungsvorrichtung 23 in satte Anlage gelangt. Auch das Ende des Hakens 11 wird nach links gezogen und gelangt dort in satte Anlage mit einem vertikal verlaufenden Abschnitt an der Verankerungsvorrichtung 23.Mounting the guide support 9 in the guideways formed by the slots 13, 41, which are inclined relative to the vertical, is particularly advantageous because the hook 11 with the guide support 9 is pulled to the left when the climbing bracket 1 is lowered in the housing 7 and consequently, on the one hand, the vertical leg 5 of the climbing bracket 1 is attracted to the surface of the substructure 21 and on the other hand the hook 11 is displaced in the anchoring device 23 to the left, so that the hook 11 in the anchoring device 23 comes into close contact. The end of the hook 11 is also pulled to the left and there comes into close contact with a vertical section on the anchoring device 23.

Die Kletterkonsole 1 ist folglich selbsttätig und zwangsweise ohne jegliches Dazutun durch den Bauarbeiter einzig durch das Einschieben in die Verankerungsvorrichtung 23 und danach das Absenken nach dem Loslassen durch die Schwerkraft unlösbar in der Verankerungsvorrichtung 23 an der Teilbaute 21 gehalten und kann nicht mehr durch äussere Kräfte, die auf die Kletterkonsole 1 von unten, von schräg unten oder von oben oder seitlich wirken, gelöst werden. Das Wiederlösen der Kletterkonsole 1 kann einzig durch einen manuellen Eingriff am Sicherungsbolzen 45, wie später beschrieben wird, erfolgen.The climbing bracket 1 is consequently automatically and forcibly held in the anchoring device 23 on the substructure 21 automatically and forcibly without any action on the part of the construction worker, simply by being pushed into the anchoring device 23 and then lowered after being released by gravity and can no longer be held in place by external forces, which act on the climbing bracket 1 from below, from below or from above or from the side, can be solved. The climbing bracket 1 can only be released again by manual intervention on the safety bolt 45, as will be described later.

Die Figuren 4 und 5 entsprechen im Prinzip der Figur 3. Sie unterscheiden sich dadurch, dass die Verankerungsvorrichtung 23 bzw. der Rand von deren Öffnung 25 nicht exakt in der Oberfläche der Teilbaute 21 liegt, sondern aus welchen Gründen auch immer, um einige Millimeter zurückversetzt ist. Das Einhängen der Kletterkonsole 1 erfolgt trotzdem in gleicher Weise und deren Sicherung in der eingehängten Stellung entspricht derjenigen in Figur 3. Der von aussen sichtbare Unterschied besteht darin, dass die relative Verschiebung in horizontaler Richtung zwischen Kletterkonsole 1 und der Verankerungsvorrichtung 23 kleiner ist. Dies ist ersichtlich, dass die Bolzen 15 weniger weit im Schlitz 13 nach oben geglitten sind bzw. die Kletterkonsole 1 hat sich weniger weit nach unten verschoben Eine weitere Besonderheit, insbesondere ein weitererThe Figures 4 and 5 correspond in principle to the figure 3 . They differ in that the anchoring device 23 or the edge of its opening 25 does not lie exactly in the surface of the partial structure 21, but for whatever reason, by a few millimeters set back. The climbing bracket 1 is nevertheless hooked in in the same way and its securing in the hooked-in position corresponds to that in figure 3 . The difference visible from the outside is that the relative displacement in the horizontal direction between the climbing bracket 1 and the anchoring device 23 is smaller. This can be seen from the fact that the bolts 15 have slid less far up in the slot 13 or the climbing bracket 1 has shifted less far down Another special feature, in particular another one

Vorteil der Anordnung, besteht darin, dass die Öffnung 25 an der Verankerungsvorrichtung 23 vom vertikalen Schenkel 5 der Kletterkonsole 1 vollständig abgedeckt ist und daher beim Betonieren kein Beton oder Betonwasser durch die Öffnung 25 ins Innere der Verankerungsvorrichtung 23 gelangen und dort das Sicherungselement 19 beschädigen oder unbrauchbar machen kann.The advantage of the arrangement is that the opening 25 on the anchoring device 23 is completely covered by the vertical leg 5 of the climbing bracket 1 and therefore no concrete or concrete water can get through the opening 25 into the interior of the anchoring device 23 and damage the safety element 19 there or can render unusable.

Selbstverständlich könnte die Schiebebewegung des Hakens 11 mit dem Führungsträger 9 in Richtung auf die Teilbaute 21 hin auch horizontal erfolgen, wie dies im Stand der Technik der Fall ist, wenn die Schlitze 13,41,43 horizontal angeordnet würden. Allerdings müsste dann der grosse Nachteil in Kauf genommen werden, dass das Heranziehen der Kletterkonsole 1 an die Teilbaute 21 beispielsweise in herkömmlicher Weise mit einem Keil erfolgen müsste. Dies bedeutet, dass die Bedienungsperson zwingend in einer gebeugten und umfallträchtigen Körperstellung eine zusätzliche Handlung vornehmen müsste, die zudem auch vergessen werden kann.Of course, the sliding movement of the hook 11 with the guide support 9 in the direction of the partial structure 21 could also take place horizontally, as is the case in the prior art if the slots 13, 41, 43 were arranged horizontally. However, the great disadvantage would then have to be accepted that the climbing bracket 1 would have to be pulled up to the partial structures 21 in a conventional manner, for example with a wedge. This means that the operator would have to perform an additional action in a bent and accident-prone body position, which can also be forgotten.

Dennoch wäre auch bei nicht mit einem Keil herangezogenem Haken 9 die Kletterkonsole 1 gemäss der vorliegenden Anmeldung gesichert an der Teilbaute 21 gehalten, weil das Sicherungselement 19 sofort nach dem Einschieben zwangsläufig beim Loslassen des Bauarbeiters und damit beginnenden Absenken (auch ohne Heranziehen) den Haken 11 unverrückbar in der Verankerungsvorrichtung 23 festgehalten wird (keine Abb.).Nevertheless, even if the hook 9 was not pulled in with a wedge, the climbing bracket 1 according to the present application would be held securely on the substructure 21, because the safety element 19 would inevitably snap the hook 11 is immovably held in the anchoring device 23 (no illustration).

In der Figur 6 ist wiederum die Kletterkonsole 1 ausschnittsweise an ihrem hakenseitigen Ende perspektivisch dargestellt. Aus dieser Figur ist erkennbar, dass der horizontale Schenkel 3 am hakenseitigen Ende vom Gehäuse 7 mindestens seitlich umfasst wird. Das Gehäuse 7 ist vorzugsweise an seiner Oberkante durch seitlich nach aussen abstehende Laschen 47 verbreitert und ebenfalls vorzugsweise erstrecken sich auch über die hakenseitige Kante des horizontalen Schenkels 3 und des vertikalen Schenkels 5 in Gestalt einer zweiten Laschen 49. Diese beiden Laschen 47,49, die paarweise angeordnet sind, schützen die seitlich das Gehäuse 7 überragenden Elemente, nämlich die schraubenförmigen Bolzen 15 welche die Schlitze 13 am Führungsträger 9 durchqueren, den Sicherungsbolzen 45 und die Schraube 17 sowie selbstverständlich die in dieser Figur sichtbaren oben liegenden dritten und vierten Schlitze 41, welche beidseitig in den Seitenwänden des Gehäuses 7 eingelassen sind (vergl. auch Fig. 7+8). Vorzugsweise ist das Gehäuse 7 auch rückseitig durch eine Wand 51 verschlossen.In the figure 6 in turn, the climbing bracket 1 is partially shown in perspective at its hook-side end. It can be seen from this figure that the horizontal leg 3 is surrounded at least laterally by the housing 7 on the hook-side end. The housing 7 is preferably widened at its upper edge by laterally outwardly projecting tabs 47 and also preferably also extend over the hook-side edge of the horizontal leg 3 and the vertical leg 5 in the form of a second tab 49. These two tabs 47,49, the are arranged in pairs, protect the elements projecting laterally from the housing 7, namely the helical bolts 15 which traverse the slots 13 on the guide support 9, the safety bolt 45 and the screw 17 and, of course, the third and fourth slots 41 at the top visible in this figure, which are embedded on both sides in the side walls of the housing 7 (see also 7 +8). The housing 7 is preferably also closed at the rear by a wall 51 .

In Figur 7 ist der Haken 11 in Ausgangsstellung und das Sicherungselement 19 folglich in seiner Ruhestellung (ragt nur unten mit seiner Nase 19' unter dem Führungsträger 9 hervor). Die Schraube 17 und der Sicherungsbolzen 45 liegen am unteren Ende der beiden Schlitze 41 an. In der Figur 8 befindet sich der Führungsträger 9 mit dem Haken 11 in der Position, wie sie nach dem Einschieben durch die Öffnung 25 und Absenken in der Verankerungsvorrichtung 23 vorliegt. Die Verankerungsvorrichtung 1 ist hier der besseren Übersichtlichkeit halber weggelassen worden. Die Schraube 17 und der Sicherungsbolzen 45 sind nun relativ nach oben gegleitet, da der Haken 11 relativ zum horizontalen Schenkel 3 der Kletterkonsole 1 im Gehäuse 7 nach oben geschoben worden ist. In letzterer Position, also abgesenkte Kletterkonsole 1 in der Verankerungsvorrichtung 23, ist das Sicherungselement 19 an der Scheibe 35 am Sicherungsbolzen 45 durch eine Einbuchtung 39 am Sicherungselement 19 fixiert (Fig. 8b). Zum Lösen der Kletterkonsole 1 von der Teilbaute 21 muss der Bauarbeiter folglich die Verbindung zwischen der Scheibe 35 am Sicherungsbolzen 45 und dem Sicherungselement 19 lösen, damit sich das Sicherungselement 19 im Uhrzeigersinn verschwenken und sich dadurch zurück zwischen die beiden Platten des Hakens 11 bewegen kann. In der verschwenkten Stellung gemäss den Figuren 1,2,4 und 7 lässt sich die Kletterkonsole 1 folglich anheben und danach aus der Verankerungsvorrichtung 23 herausziehen. Das Lösen des Sicherungselements 19 erfolgt dadurch, dass die Scheibe 35 durch den Sicherungsbolzen 45 axial verschoben wird, so dass die untere Nase 53 am Sicherungselement 19 (siehe Fig. 2) nicht mehr von der Scheibe 35 zurückgehalten wird und an der Welle des Sicherungsbolzens 45 vorbeigleiten kann. Der Sicherungsbolzen 45 bzw. die Scheibe 35 kann nur gegen die Kraft einer Feder axial verschoben werden (die Feder ist nicht dargestellt).In figure 7 the hook 11 is in the starting position and the securing element 19 is consequently in its rest position (only protrudes below with its nose 19' under the guide support 9). The screw 17 and the safety bolt 45 lie at the lower end of the two slots 41. In the figure 8 the guide beam 9 with the hook 11 is in the position in which it is after it has been inserted through the opening 25 and lowered into the anchoring device 23 . The anchoring device 1 has been omitted here for the sake of clarity. The screw 17 and the safety bolt 45 have now slid relatively upwards, since the hook 11 has been pushed relative to the horizontal leg 3 of the climbing bracket 1 in the housing 7 upwards. In the latter position, i.e. lowered climbing bracket 1 in the anchoring device 23, the securing element 19 is fixed to the disc 35 on the securing bolt 45 by an indentation 39 on the securing element 19 ( Figure 8b ). To release the climbing bracket 1 from the substructure 21, the construction worker must therefore release the connection between the disc 35 on the safety bolt 45 and the safety element 19 so that the safety element 19 can pivot clockwise and thereby move back between the two plates of the hook 11. In the pivoted position according to the Figures 1,2 , 4 and 7 the climbing bracket 1 can consequently be raised and then pulled out of the anchoring device 23 . The release of the securing element 19 takes place in that the washer 35 is axially displaced by the securing bolt 45 so that the lower lug 53 on the securing element 19 (see 2 ) is no longer held back by the disc 35 and can slide past the shaft of the safety bolt 45. The securing bolt 45 or the washer 35 can only be displaced axially against the force of a spring (the spring is not shown).

Wie eingangs erwähnt, dient die Kletterkonsole 1 als temporäre Trägerin einerseits für ein Gerüstbrett und andererseits als Vorrichtung zur Befestigung eines Abschalplattenträgers 55 für das Erstellen der Wand oberhalb der Teilbaute 21. Die in den Figuren 9-21 nicht dargestellten Abschalplatten werden durch den Abschalplattenträger 55, der auf dem horizontalen Schenkel 3 relativ zur Kletterkonsole 1 verschiebbar ist, getragen. Der Abschalplattenträger 55 umfasst einen U-förmigen Führungsschuh 57, welcher auf den horizontalen Schenkel 3 der Kletterkonsole 1 von der Seite her horizontal aufgeschoben und seitlich und unten durch geeignete Mittel fixiert ist.As mentioned above, the climbing bracket 1 serves as a temporary carrier on the one hand for a scaffolding board and on the other hand as a device for attaching a formwork panel girder 55 for creating the wall above the partial structures 21 Figures 9-21 Formwork panels, not shown, are carried by the formwork panel carrier 55, which is displaceable on the horizontal leg 3 relative to the climbing bracket 1. The formwork panel carrier 55 comprises a U-shaped guide shoe 57 which is pushed horizontally from the side onto the horizontal leg 3 of the climbing bracket 1 and is fixed laterally and below by suitable means.

Der Führungsschuh 57 (Fig. 11,12) umfasst eine Seitenwand 59, eine obere Führungswand 61 und eine untere als Gleitschuh dienende Führungswand 63, die U-förmig zueinanderstehen und miteinander verbunden sind. An der die Basis des U's bildende Seitenwand 59 kann an diese seitlich eine Sicherungs- und Auslöseplatte 65 anschliessen. Deren Funktion und Formgebung wird später beschrieben.The guide shoe 57 ( 11 , 12 ) comprises a side wall 59, an upper guide wall 61 and a lower guide wall 63 serving as a sliding shoe, which are U-shaped relative to one another and are connected to one another. A safety and release plate 65 can be attached to the side wall 59 forming the base of the U. Their function and shape will be described later.

An der unteren Führungswand 63 ist eine schwenkbare Riegelplatte 69 in eine nach unten ragende Lasche bzw. in eine an dieser angebrachte Öffnung 73 einschiebbar gehalten. Weiter ist in der oberen Führungswand 61 eine erste Durchführung 75 eingelassen, welche über einer zweiten Durchführung 77 liegt, die in der unteren Führungswand 63 ausgebildet ist. Mit einem Schieber 79, dessen Querschnittsfläche etwas kleiner ist als der Querschnitt der beiden Durchführungen 75,77, kann der Führungsschuh 57 zu einem rechteckigen Rohr verschlossen werden, wenn dieses auf den oberen Schenkel 3 der Kletterkonsole 1 aufgeschoben ist. Die Riegelplatte 69 kann danach durch die Öffnung 73 und eine Ausnehmung 81 durch einen Schieber 79 hindurchgeschoben werden. Die Riegelplatte 69 ist unverlierbar durch einen an deren Ende ausgebildeten Riegel 83 mit dem Führungsschuh 57 verbunden. Vorzugsweise sind die schmalen Enden der oberen Führungswand 61 und der unteren Führungswand 63 leicht aus deren Ebene umgebogen. Die Riegelplatte 69, welche mit dem Schieber 79 zusammenwirkt, verhindert, dass bei einer Kraft F, welche vom flüssigen Beton hinter der Schalungsplatte auf den vertikalen Arm 85 des Abschalplattenträgers 55 wirkt, aufgenommen werden. Dadurch ist sichergestellt, dass der Abschalplattenträger 55 vor und nach dem Betonieren mit geringer Reibung auf dem oberen Schenkel 3 der Kletterkonsole verschiebbar ist, sobald die konisch ausgebildete Riegelplatte 69 aus der Verriegelungsstellung (Fig. 15) in die Entriegelungsstellung (Fig. 16 und 17) zurückgezogen ist. Mit der Riegelplatte 69 bzw. deren keilförmigen Querschnittsform (vergl. insbesondere Fig. 17), kann der Abschalplattenträger 55 in seiner Arbeitsstellung, d.h. herangeschoben an eine Schalungsplatte, an der Kletterkonsole 1 fixiert werden. Durch das Herausziehen der keilförmigen Riegelplatte 69 wird auch die Klemmwirkung auf den Schieber 79 aufgehoben. Solange der Schieber 79 in der oberen und unteren Durchführung 75,77 eingeschoben ist, wird der Abschalplattenträger 55 an der Kletterkonsole 1 sicher gehalten, jedoch ist er verschiebbar.On the lower guide wall 63, a pivotable locking plate 69 is held in a downwardly projecting tab or in an opening 73 attached thereto. Furthermore, a first passage 75 is embedded in the upper guide wall 61 and lies above a second passage 77 formed in the lower guide wall 63 . With a slider 79, whose cross-sectional area is slightly smaller than the cross-section of the two passages 75,77, the guide shoe 57 can be closed to form a rectangular tube when this is pushed onto the upper leg 3 of the climbing bracket 1. The locking plate 69 can then be pushed through the opening 73 and a recess 81 be pushed through a slide 79. The locking plate 69 is captively connected to the guide shoe 57 by a locking bar 83 formed at its end. Preferably, the narrow ends of the upper guide wall 61 and the lower guide wall 63 are bent slightly out of their plane. The locking plate 69, which interacts with the slide 79, prevents a force F, which acts from the liquid concrete behind the formwork panel on the vertical arm 85 of the shuttering panel carrier 55, from being absorbed. This ensures that the shuttering plate carrier 55 can be displaced with little friction on the upper leg 3 of the climbing bracket before and after concreting as soon as the conical locking plate 69 is out of the locking position ( 15 ) to the unlocked position ( 16 and 17 ) has been withdrawn. With the locking plate 69 or its wedge-shaped cross-sectional shape (cf. in particular 17 ), the formwork panel carrier 55 can be fixed to the climbing bracket 1 in its working position, ie pushed up to a formwork panel. By pulling out the wedge-shaped locking plate 69, the clamping effect on the slide 79 is also canceled. As long as the slider 79 is pushed into the upper and lower bushings 75, 77, the formwork panel carrier 55 is held securely on the climbing bracket 1, but it can be moved.

Die Sicherungs- und Auslöseplatte 65, die an der Seitenwand 59 am Führungsschuh 57 angeformt ist, hat zwei Aufgaben. In Arbeitsstellung, wenn der Abschalplattenträger 55 gegen die Wand der Teilbaute 21 geschoben ist und nur durch eine (nicht dargestellte) Schalungsplatte beabstandet zu dieser liegt, deckt die Sicherungs- und Auslöseplatte 65 den Bolzen 45 gerade soweit ab, dass dieser nicht unabsichtlich betätigt wird bzw. betätigt werden kann und zur Auslösung der Verrastung innerhalb der Verankerungsvorrichtung 23 führt.The backup and release plate 65, which is formed on the side wall 59 on the guide shoe 57, has two tasks. In the working position, when the formwork panel carrier 55 is pushed against the wall of the substructure 21 and is only spaced apart from it by a formwork panel (not shown), the covers Safety and release plate 65 the bolt 45 just far enough that it is not unintentionally actuated or can be actuated and triggering the locking within the anchoring device 23 leads.

Nach dem Giessen der Decke oberhalb der Teilbaute 21 und Erstarrung des Betons, werden die nebeneinander angeordneten Abschalplattenträger 55 an den Kletterkonsolen 1 durch Herausschlagen der Riegelplatte 69 auf der Kletterkonsole 1 von der Wand weggeschoben. Danach erfolgt das Entfernen der Schalungsplatten (nicht gezeigt). Die Schalungsplatten sind dabei immer noch gesichert, indem sie auf dem oberen Schenkel 3 der Kletterkonsole 1 abgestützt sind, so dass sie nicht nach unten gleiten können. Nach der Entnahme der Schalungstafeln oder -bretter kann die Bedienungsperson, d.h. der Bauarbeiter, auf der neu betonierten Decke stehend den Abschalplattenträger 55 am vertikalen Arm 85 zu sich hin, also in Richtung der Teilbaute 21, verschieben. Dabei gleitet die abgekröpfte Sicherungs- und Auslöseplatte 65 über den Sicherungsbolzen 45 und drückt diesen in das Gehäuse 7 hinein. Dadurch wird mit dem Sicherungsbolzen 45 die Scheibe 35 ausser Eingriff mit dem Sicherungselement 19,19' gebracht und es löst sich die Arretierung des Sicherungselements 19, welche zuvor in angehobener Stellung gehalten worden ist. Das Sicherungselement 19 dreht sich nun im Uhrzeigersinn und verschwindet zwischen den beiden, den Haken 11 bildenden Platten. Nun kann die Kletterkonsole 1 angehoben und erst dann nach aussen, d.h. von der Teilbaute weg, geschoben oder geschwenkt werden, ohne dass der Bauarbeiter sich über den Rand der Teilbaute 21 hinausbeugen muss (vergl. Figuren 18 bis 20).After the ceiling has been poured above the substructure 21 and the concrete has solidified, the shuttering plate supports 55 arranged next to one another on the climbing brackets 1 are pushed away from the wall by knocking out the locking plate 69 on the climbing bracket 1 . This is followed by the removal of the formwork panels (not shown). The formwork panels are still secured by being supported on the upper leg 3 of the climbing bracket 1 so that they cannot slide down. After the formwork panels or boards have been removed, the operator, ie the construction worker, standing on the newly concreted ceiling, can move the formwork plate carrier 55 on the vertical arm 85 towards himself, ie in the direction of the substructures 21 . The offset safety and release plate 65 slides over the safety bolt 45 and presses it into the housing 7 . As a result, the disk 35 is disengaged from the securing element 19, 19' with the securing bolt 45 and the locking of the securing element 19, which was previously held in the raised position, is released. The securing element 19 now turns clockwise and disappears between the two plates forming the hook 11 . The climbing bracket 1 can now be raised and only then pushed or pivoted outwards, ie away from the partial structure, without the construction worker having to bend over the edge of the partial structure 21 (cf. Figures 18 to 20 ).

Ist an der Kletterkonsole 1 kein Abschalplattenträger 55 montiert, wird das Lösen nach dem Ende des Gebrauchs der Konsole 1 durch Drücken auf den Sicherungsbolzen 45, z.B. mit dem Daumen, oder einem Schlag mit einem Hammer, das Sicherungselement 19 gelöst und fällt im Uhrzeigersinn zwischen die beiden, den Haken 11 bildenden Platten, so dass die Kletterkonsole 1 nach dem Anheben leicht aus der Verankerungsvorrichtung 23 herausgezogen werden kann.If no shuttering plate carrier 55 is mounted on the climbing bracket 1, loosening after the end of use of the bracket 1 by pressing on the safety pin 45, e.g. with your thumb, or hitting it with a hammer, the safety element 19 is released and falls clockwise between the two plates forming the hook 11, so that the climbing bracket 1 can be easily pulled out of the anchoring device 23 after lifting.

In einer weiteren Ausgestaltung der Sicherungs- und Auslöseplatte 65 gemäss den Figuren 22 und 23 ist die obere Lasche 47 an deren Rand oder deren Rändern um ca. 90° umgelegt und liegt nun parallel zur Wand des Gehäuses 7. Weiter ist die Sicherungs- und Auslöseplatte 65 an deren vorderem Ende nicht nur mit einem Auflaufbereich 66 über die gesamte Höhe der Sicherungs- und Auslöseplatte 65 versehen, sondern ein oben liegender Abschnitt 68 verläuft parallel zur Seitenwand 59.In a further embodiment of the backup and release plate 65 according to Figures 22 and 23 is the upper tab 47 at the edge or edges folded by about 90 ° and is now parallel to the wall of the housing 7. Next is the backup and release plate 65 at the front end not only with a run-up area 66 over the entire height of Safety and release plate 65 provided, but an overhead section 68 runs parallel to the side wall 59.

Bei zurückgezogenem Abschalplattenträger 55 sind beide Elemente, nämlich die Sicherungs- und Auslöseplatte 65 sowie deren vordere Kantenbereiche 66 und 68 ausser Kontakt mit anderen Elementen der Vorrichtung.With the shutter plate carrier 55 retracted, both elements, namely the safety and release plate 65 and their front edge regions 66 and 68, are out of contact with other elements of the device.

Während des Giessens der Decke ist der Abschalplattenträger 55 gemäss Figur 23 nach rechts vorgeschoben und die Sicherungs- und Auslöseplatte 65 deckt mit deren Auflaufbereich 66 den Sicherungsbolzen 45 und verhindert dadurch ein absichtliches oder unabsichtliches Lösen des Verriegelungsmechanismus mit dem Haken 11. Der Abschnitt 68 liegt nun unter dem nach unten umgeklappten Bereich der ersten Lasche 47 und steht mit dieser vorzugsweise in Kontakt. Damit der Abschnitt 68 leicht unter die umgeklappte Lasche 47 gleiten kann, ist dessen Ende leicht nach Innen gebogen.During the pouring of the ceiling, the shuttering plate support 55 is in accordance with figure 23 pushed to the right and the safety and release plate 65 covers the safety bolt 45 with its run-on area 66 and thereby prevents an intentional or unintentional loosening of the locking mechanism with the hook 11. The section 68 is now under the area of the first flap 47 folded down and stands with this preferably in contact. So that the section 68 can easily slide under the folded flap 47, its end is bent slightly inwards.

Zweck dieser weiteren Ausgestaltung des Abschalplattenträgers 55 besteht darin, dass beim Giessen und bereits beim Verspannen des vertikalen Arms 85 des Abschalplattenträgers 55 dieser, verstärkt durch den Hebel, hohe Kräfte auf den Führungsschuh 57 überträgt. Diese auf den Führungsschuh übertragenen Kräfte können über den Abschnitt 68, welcher unter die umgebogene Lasche 47 greift, mindestens teilweise aufgefangen werden, und damit kann eine Versteifung des Abschalplattenträgers 55 bezüglich der Kletterkonsole 1 erreicht werden.The purpose of this further configuration of the shuttering panel support 55 is that during casting and already when the vertical arm 85 of the shuttering panel support 55 is braced, the latter, reinforced by the lever, transmits high forces to the guide shoe 57 . These forces transmitted to the guide shoe can be at least partially absorbed by the section 68 which engages under the bent lug 47, and the shuttering panel support 55 can thus be stiffened with respect to the climbing bracket 1.

In einer weiteren Ausgestaltung des Abschalplattenträgers 55 gemäss den Figuren 22 und 23 ist dessen vertikaler Arm 85 bezüglich der Vertikalen mit zwei beabstandeten Spindeln verschwenkbar getragen. Die untere Spindel 89 und die obere Spindel 87 sind durch einen Spindelträger 91 miteinander verbunden. An den Enden des Spindelträgers 91 sind Gewindebüchsen 93 und 95 ausgebildet, in welchen die Gewinde der Spindeln 87 bzw. 89 kämmen. Das abtriebseitige Ende der unteren Spindel 89 ist in einem Spindellager 97 frei drehbar gelagert und axial gegen eine Verschiebung der unteren Spindel gesichert. Die Bohrung im Spindellager weist gegenüber dem Durchmesser der Spindel im Bereich der Bohrung Spiel auf, das die Möglichkeit bietet, dass die Achse der unteren Spindel in einem gewissen Winkelbereich schwenkbar mit dem vertikalen Arm 85 verbunden ist. Die obere Spindel 87 ist ebenfalls in einem Lagerbock 99 getragen und gegen axiale Verschiebung gesichert. Allerdings liegt das Ende der Spindel 87 nicht in einer Bohrung geführt, sondern in einer u-förmigen Ausnehmung im Lagerbock 99. Diese Ausführung ermöglicht es, nach dem Lösen einer am Ende der unteren Spindel 89 angeordneten Sicherungsschraube, die beiden Spindeln 87 und 89 vom vertikalen Arm 85 zu lösen.In a further embodiment of the shuttering plate carrier 55 according to the Figures 22 and 23 its vertical arm 85 is pivotally supported with respect to the vertical by two spaced spindles. The lower spindle 89 and the upper spindle 87 are connected to one another by a spindle carrier 91 . At the ends of the spindle carrier 91 threaded bushings 93 and 95 are formed, in which the threads of the spindles 87 and 89 mesh. The output-side end of the lower spindle 89 is freely rotatably mounted in a spindle bearing 97 and axially secured against displacement of the lower spindle. The bore in the spindle bearing has play relative to the diameter of the spindle in the region of the bore, which offers the possibility that the axis of the lower spindle is pivotally connected to the vertical arm 85 in a certain angular range. The upper spindle 87 is also carried in a bearing block 99 and secured against axial displacement. However, the end of the spindle 87 is not guided in a bore, but in a U-shaped recess in the bearing block 99. This design makes it possible, after loosening a locking screw arranged at the end of the lower spindle 89, to move the two spindles 87 and 89 from the vertical arm 85 to release.

Mit den beiden beweglich gelagerten Spindeln 87 kann der vertikale Arm 85 und damit das an diesem anliegende Schalbrett exakt horizontal oder aber auch in gewissem Winkel zur Horizontalen ausgerichtet werden. Folglich kann mit dem Abschalplattenträger 55 eine Wand erstellt werden, welche nicht in einer vertikalen Ebene verläuft, sondern nach innen oder nach aussen dazu geneigt ist.With the two movably mounted spindles 87, the vertical arm 85 and thus the formwork board lying against it can be aligned exactly horizontally or at a certain angle to the horizontal. Consequently, with the formwork panel support 55, a wall can be constructed which does not run in a vertical plane but is inclined inwardly or outwardly thereto.

Claims (14)

  1. A method for the automatically activatable secure connection of a climbing bracket (1) to a hook (11) on an anchoring device (23) embedded in a substructure (21), having the following steps:
    a. bringing the climbing bracket (1) up to the substructure (21),
    b. inserting the hook (11) into the anchoring device (23),
    c. fitting the hook (11) and lowering the climbing bracket (1) in the anchoring device (23),
    d. activating a securing element (19) by lowering the hook (11) in the climbing bracket (1) and
    e. locking the hook (11) and the securing element (19) in the anchoring device (23) and adjusting the secure connection with the anchoring device,
    characterized in that
    the securing element (19) is substantially formed to have two arms and is pivoted upwards about an axis on the hook (11) when the securing element (19) is activated by lowering the hook (11) such that a first arm (19') of the securing element enters a cross-sectional widening of the anchoring device located above an insertion opening (25) of the anchoring device (23) for the hook (11), and at the same time a second arm (19") of the securing element is locked onto a latching and release device (45) on the climbing bracket (1) such that the hook together with the climbing bracket can no longer be released from the anchoring device and the climbing bracket (1) is prevented from being pulled out of the anchoring device (23), because the vertical extension of the hook (11) and the securing element (19) is greater than the height of the insertion opening (25) in the anchoring device (23).
  2. The method according to Claim 1, characterized in that, during the lowering of the climbing bracket (1) in the anchoring device (23), the climbing bracket (1) is automatically brought up to the anchoring device (23).
  3. The method according to Claim 2, wherein the climbing bracket (1) comprises an upper leg (3) intended to lie horizontally, and a vertical leg (5) intended to lie vertically and parallel to the surface of the substructure (21), wherein the hook (11) is mounted on the upper leg (3) on a guide support (9) displaceable along the upper leg (3), wherein the anchoring device (23) has an opening (25) as an insertion opening (25) intended to lie substantially in the surface of the substructure (21), to which an insertion channel (26) is connected, at the end of which facing away from the opening (25) the cross-section of the anchoring device (23) is larger than at the opening (25),
    wherein
    the securing element (19) is formed for forced locking on the guide support (9) for the hook (11), and the guide support (9) is displaceably mounted with the hook (11) on the upper leg (3) in at least one guide (15, 41) at an acute angle to said upper leg, such that, during the lowering of the climbing bracket (1), the distance of the hook (11) from the vertical leg (5) is reduced and the climbing bracket (1) is thereby pulled by gravity towards the anchoring device (23) in the substructure and such that, after bringing the climbing bracket (1) up to the anchoring device (23), its opening (25) is fully closed by the housing (7) of the climbing bracket (1).
  4. The method according to Claim 2, wherein the climbing bracket (1) comprises an upper leg (3) intended to lie horizontally, and a vertical leg (5) intended to lie vertically and parallel to the surface of the substructure (21), wherein the hook (11) is mounted on the upper leg (3) on a guide support (9) displaceable along the upper leg (3), wherein the anchoring device (23) has an opening (25) as an insertion opening (25) intended to lie substantially in the surface of the substructure (21), to which an insertion channel (26) is connected, at the end of which facing away from the opening (25) the cross-section of the anchoring device (23) is larger than at the opening (25),
    wherein
    the securing element (19) is formed for forced locking onto the guide support (9) for the hook (11), and wherein the securing element (19) engages on a securing bolt (45) on the climbing bracket (1) during lowering and pivoting.
  5. A climbing bracket (1) for placing scaffolding boards and fastening stop-end plate girders (55) for constructing ceilings on substructures (21), comprising two horizontally and vertically aligned legs (3,5) made of steel profiles connected to one another substantially at right angles and a frame connecting the two legs (3, 5) at their other end to form a triangle, further comprising a hook (11) formed on a guide support (9), wherein the guide support (9) is displaceably mounted on the climbing bracket (1) and a securing element (19) is located next to the hook on the guide support (9) of the hook (11) in its rest and starting position,
    characterized in that
    in its rest and starting position, the securing element (19) lies within the greatest vertical extension of the hook (11), the securing element (19) comprises a first arm (19") and a second, longer arm (19'), in a working position the longer arm (19') can be pushed or pivoted into a position projecting upwards beyond the hook (11), and in that the first arm (19") can be automatically locked in a lowered position of the climbing bracket (1) on a latching and release device (45) on the climbing bracket (1).
  6. The climbing bracket (1) according to Claim 5, characterized in that the first arm (19") of the securing element (19) can be engaged at its end in a bolt (45) formed as latching means on the climbing bracket (1) and/or the guide support (9).
  7. The climbing bracket (1) according to Claim 6, characterized in that, as latching means, an axially displaceable disc (35) is arranged which is fitted or formed on a bolt (15).
  8. The climbing bracket (1) according to Claim
    5, characterized in that
    the guide support (9) with the hook (11) formed on its front end is displaceably mounted in at least one guide track (13, 41) on the climbing bracket (1) at an acute angle to the upper leg (3).
  9. The climbing bracket (1) according to Claim 8, characterized in that the guide track on the upper leg (3) comprises at least one first guide slot (41), in which a screw (17) or a pin inserted in the guide support (9) is displaceable, in that a bolt (15) is guided in a second guide slot (13) formed in the guide support (9), which bolt is held in the upper leg (3) such that the hook (11) with the guide support (9) after inserting the hook (11) into an anchoring device (23) simultaneously executes an upwards and backwards movement in the direction of the climbing bracket (1) by gravity with respect to the climbing bracket (1).
  10. The climbing bracket (1) according to Claim 9, characterized in that the at least one first guide slot (41) is formed on both sides of the upper leg (3) such that the screw (17) is guided at both ends and in that the bolt (15) is held at both ends in bores in the upper leg (3).
  11. A system with a climbing bracket (1) according to any one of Claims 5 to 10 and an anchoring device (23), wherein the anchoring device (23) has an opening (25) as an insertion opening (25) intended to lie substantially in the surface of the substructure (21), which is associated with an insertion channel (26), at the end of which facing away from the opening (25) the cross-section of the anchoring device (23) is greater than at the opening (25), and comprises a hollow body with the opening (25) for inserting the hook-like end (11) on a climbing bracket (1), wherein, following the opening (25), the insertion channel (26) of height H and width B follows with a substantially uniform cross-section, which is connected with a retaining area with the larger cross-section, and the retaining area extends at the end of the insertion channel (26) both upwardly and downwardly over the base and top portion of the insertion channel (26).
  12. The system according to Claim 11, characterized in that the hollow body forming the anchoring device (23) consists of two interconnected shells made of steel or plastic.
  13. The system according to Claim 12, characterized in that the two shells are connected to one another by welding or flanging.
  14. The system according to Claim 13, characterized in that ribs and/or bosses are formed as anchoring elements on the shells of the hollow body.
EP19162871.8A 2018-03-20 2019-03-14 Method for connecting a climbing bracket which is activatable automatically safe with an anchoring device, system with a climbing bracket and an anchoring device and climbing bracket Active EP3543428B1 (en)

Priority Applications (1)

Application Number Priority Date Filing Date Title
EP23186146.9A EP4234840A3 (en) 2018-03-20 2019-03-14 Method for automatically activated secure connection of a climbing console with an anchoring device, system with a climbing console and an anchoring device and climbing console

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
CH00368/18A CH714813A2 (en) 2018-03-20 2018-03-20 System for temporary attachment of a climbing console, console and an anchorage box.

Related Child Applications (1)

Application Number Title Priority Date Filing Date
EP23186146.9A Division EP4234840A3 (en) 2018-03-20 2019-03-14 Method for automatically activated secure connection of a climbing console with an anchoring device, system with a climbing console and an anchoring device and climbing console

Publications (4)

Publication Number Publication Date
EP3543428A2 EP3543428A2 (en) 2019-09-25
EP3543428A3 EP3543428A3 (en) 2019-11-13
EP3543428C0 EP3543428C0 (en) 2023-07-19
EP3543428B1 true EP3543428B1 (en) 2023-07-19

Family

ID=65812230

Family Applications (2)

Application Number Title Priority Date Filing Date
EP19162871.8A Active EP3543428B1 (en) 2018-03-20 2019-03-14 Method for connecting a climbing bracket which is activatable automatically safe with an anchoring device, system with a climbing bracket and an anchoring device and climbing bracket
EP23186146.9A Pending EP4234840A3 (en) 2018-03-20 2019-03-14 Method for automatically activated secure connection of a climbing console with an anchoring device, system with a climbing console and an anchoring device and climbing console

Family Applications After (1)

Application Number Title Priority Date Filing Date
EP23186146.9A Pending EP4234840A3 (en) 2018-03-20 2019-03-14 Method for automatically activated secure connection of a climbing console with an anchoring device, system with a climbing console and an anchoring device and climbing console

Country Status (2)

Country Link
EP (2) EP3543428B1 (en)
CH (1) CH714813A2 (en)

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* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
GB2549275B (en) * 2016-04-11 2018-05-09 Tectonic Facades Ltd Construction assembly
EP3848532A1 (en) * 2020-01-13 2021-07-14 Pino Albanese Formwork plate holder assembly and method for positioning same on a bracket
CH717032A2 (en) * 2020-01-13 2021-07-15 Albanese Pino Method for automatically activatable, safe connection of a climbing console with an anchoring device, system for fastening a climbing console and climbing console.
DE102021115025A1 (en) * 2021-06-10 2022-12-15 Doka Gmbh Support bracket for supporting a formwork element and/or a working platform of a formwork
CN114105006B (en) * 2021-11-30 2024-01-09 湖南三一塔式起重机械有限公司 Jacking crossbeam, climbing frame and tower crane
US20230374775A1 (en) * 2022-05-19 2023-11-23 Urban Redwood Methods and apparatuses for constructing high-rise buildings

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Publication number Priority date Publication date Assignee Title
GB1435689A (en) * 1972-02-01 1976-05-12 Lecormex Ltd Device for securing scaffolding to building constructions
DE9301494U1 (en) * 1993-02-04 1993-04-15 Mägert Bautechnik AG, Frutigen Climbing console
DE20220101U1 (en) * 2002-12-23 2003-04-03 Wilhelm Layher Vermögensverwaltungs-GmbH, 74363 Güglingen Justierabschalstütze
CH705280B1 (en) * 2005-01-19 2013-01-31 Pino Albanese Abschalplattenträger for a console.
EP1696085B1 (en) * 2005-02-24 2016-10-05 Pino Albanese Anchoring socket for anchoring consoles on a concrete wall
KR101365059B1 (en) * 2011-06-30 2014-02-19 임종준 Temporary type guardrail post
CH710500B1 (en) 2014-12-12 2020-03-13 Maegert & Co Innovation Climbing console and formwork part for attaching the climbing console.
CH713434A2 (en) * 2017-02-01 2018-08-15 Albanese Pino Anchor box for the temporary attachment of a console for scaffolding and shuttering slabs to a substructure and a plug-in cover for the temporary closing of an anchorage box.

Also Published As

Publication number Publication date
EP4234840A2 (en) 2023-08-30
EP3543428A3 (en) 2019-11-13
EP3543428C0 (en) 2023-07-19
EP4234840A3 (en) 2023-11-22
CH714813A2 (en) 2019-09-30
EP3543428A2 (en) 2019-09-25

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