EP2224074A1 - Echafaudage avec un dispositif anti-levage pour plancher - Google Patents

Echafaudage avec un dispositif anti-levage pour plancher Download PDF

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Publication number
EP2224074A1
EP2224074A1 EP10158341A EP10158341A EP2224074A1 EP 2224074 A1 EP2224074 A1 EP 2224074A1 EP 10158341 A EP10158341 A EP 10158341A EP 10158341 A EP10158341 A EP 10158341A EP 2224074 A1 EP2224074 A1 EP 2224074A1
Authority
EP
European Patent Office
Prior art keywords
plate
securing
stop
scaffolding according
spring
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.)
Granted
Application number
EP10158341A
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German (de)
English (en)
Other versions
EP2224074B1 (fr
Current Assignee (The listed assignees may be inaccurate. Google has not performed a legal analysis and makes no representation or warranty as to the accuracy of the list.)
Wilhelm Layher Verwaltungs GmbH
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Wilhelm Layher Verwaltungs GmbH
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Filing date
Publication date
Application filed by Wilhelm Layher Verwaltungs GmbH filed Critical Wilhelm Layher Verwaltungs GmbH
Priority to PL10158341T priority Critical patent/PL2224074T3/pl
Publication of EP2224074A1 publication Critical patent/EP2224074A1/fr
Application granted granted Critical
Publication of EP2224074B1 publication Critical patent/EP2224074B1/fr
Active legal-status Critical Current
Anticipated expiration legal-status Critical

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    • 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
    • E04G7/00Connections between parts of the scaffold
    • E04G7/02Connections between parts of the scaffold with separate coupling elements
    • E04G7/28Clips or connections for securing boards

Definitions

  • the invention relates to a scaffolding with at least one, preferably in cross-section U-shaped, transverse bar which extends between two vertical scaffolding elements and connects them together, with at least one covering unit, such as a gangplank or scaffold floor, the one or more Ein disorderwhiskar , preferably claws, for mounting the pad unit in or on the cross bar and with at least one Aushebeschsvorraum to secure the pad unit against digging, which is detachably connected to the crossbar is or is connected and the one, preferably plate-shaped, in particular elongated, preferably comprising metal, in particular galvanized sheet steel, existing securing body, preferably a rail, for placement on the Einitationsstoff or on the Ein developmentaltimesstoffn and / or for covering the Ein developmentaltimesstoffs or Ein developmentalopathicsstoff having at least one hook has a shaped fastening element which in the secured against excavation state by a hole provided in the crossbar, preferably by a direction of Longitudinal hole extending through the longitudinal axi
  • a spring a coil spring, preferably at least one leg spring can be used. As a result, favorable force application and safety conditions can be achieved.
  • the leg spring can be formed as a double-leg spring of a first leg spring and a second leg spring, each comprising a first leg and a second leg, wherein a first leg of the first leg spring and a first leg of the second leg spring in one piece connected or integrally formed.
  • first leg spring and the second leg spring may have or form a common leg, in particular a V-shaped or U-shaped leg.
  • the plate and / or the securing body has a, preferably first, stop body for preventing an overstretching of the spring during pivoting of the plate from the closing or securing position into the open position, ie during an opening movement or have.
  • a stop body for preventing an overstretching of the spring during pivoting of the plate from the closing or securing position into the open position, ie during an opening movement or have.
  • the plate and / or the securing body has a, preferably second, stop body for limiting the pivoting of the plate in the closing direction in a simple assembly enabling position or have.
  • the, preferably first and / or second, stop body can be designed as a stop lug or stop tongue. This allows a simple, inexpensive and stable as well as safe construction.
  • the, preferably first and / or second, stop body of the plate is formed integrally with the plate and / or that, preferably first and / or second, stop body of the fuse body is formed integrally with the fuse body.
  • the, preferably first and / or second, stop body of the plate is formed by forming from the plate or is produced by forming the plate and / or that, preferably first and / or second, Stop body of the fuse body is formed by forming from the fuse body or is made by forming the fuse body.
  • the, preferably first and / or second, stop body at least partially surrounds or embrace the pivot axis of the hinge.
  • one or more easily manufactured stop body can be provided, by means of which or which one or more particularly stable securing end positions of the plate can be realized.
  • the first stop body and the second stop body of the plate are formed in different directions from the plate or are made by forming the plate in different directions or that the first stop body and the second stop body of the fuse body in different Directions are formed from the fuse body or are made by forming the fuse body in different directions.
  • Such stopper body can be particularly simple and inexpensive to manufacture and allow limiting the pivoting movement of the locking plate both in the opening direction and in the closing direction in a particularly simple and stable manner.
  • the first stop body extends beyond a plane spanned by the plate and that the second stop body extends below the plane defined by the plate.
  • the plate during its pivoting from the closed or securing position in the open position on or with one, preferably the first, stop body at an inclination angle relative to the fuse body or to a spanned by this and the Plane containing longitudinal axis abuts that is greater than zero degrees and / or in which the plate is not completely pivoted to or on the fuse body.
  • the inclination angle is greater than 10 degrees or 20 degrees and / or the inclination angle is less than 135 degrees or 100 degrees. Particularly preferably, the angle of inclination is about 90 degrees.
  • the plate in the non-installed and / or installed state of the Aushebeschsvorraum is acted upon by the spring forces of the spring in the closing direction such that the plate on or with one or the, preferably second, stop body in an inclination angle relative to the securing body or to a plane defined by this plane and containing its longitudinal axis, which is greater than 135 degrees, in particular greater than 170 degrees and which is less than 225 degrees, in particular less than 205 degrees.
  • this angle of inclination is about 180 degrees.
  • the invention task can also be solved in that the hook-shaped fastening element consists of flat steel and / or secured against excavation state at least one of the height of the free hooking the Ein distrifsstoffs or the free ends of Ein rehabilitationwhisstoff corresponding area, preferably substantially over its entire, preferably formed below the fuse unit, length, is bounded by parallel side surfaces extending parallel to the longitudinal axis of the fuse body in a thickness corresponding to the fastener corresponding distance to each other.
  • the invention task is solved and the corresponding advantages can be achieved, can be achieved by the above measures even more advantages.
  • this hook-shaped fastener now be made of a higher-strength steel compared to the previously used and cold forming or cold forming and therefore of a relatively soft, deformable steel or steel sheet fasteners .
  • Alone by this can be higher strength or load capacity in conjunction with greater security against deformation of the hook-shaped fasteners and thus achieve greater security against tilting and / or lifting or lifting the entire Aushebeschsvorraum.
  • the hook-shaped fastener is made of flat steel and / or is bounded by parallel side surfaces which extend parallel to the longitudinal axis of the fuse body at a distance to each other, it is with selection of a suitable distance or a suitable thickness in contrast to the comparatively wide, conically down to the hook end towards tapered fasteners according to the prior art possible to avoid a collision of the hook-shaped fastener with the Ein skillwhisstoff or with the Ein developmentalwhisstoffn the covering unit or covering units during assembly.
  • the hook-shaped fastening element consists of solid material. As a result, further improved strength and load capacity can be achieved.
  • the hook-shaped fastening element is made without bending or bending, preferably without deformation, in particular by punching. This allows a particularly cost-effective production and construction.
  • the distance of the side surfaces of the hook-shaped fastening element or the thickness of the fastening element in the secured against excavation state at least in one of the height of the free end of the Ein rehabilitationwhisffens or the free ends of Ein cognitivewhisstoff corresponding area, preferably substantially over its entire, in particular formed below the fuse unit, length is smaller than the horizontal distance of at least two in or on one and the same Cross bar opposite hinged Ein rehabilitationwhisstoffn of two of the cross bars in different directions away and / or adjoining pad units.
  • the hook-shaped fastener is also readily between two opposing Ein rehabilitationwhisschn place, so that it does not depend on the width of the pad units, respectively, on the arrangement or the distance of Ein vonsstoff the padding units.
  • the end face of the free end of the fuse body with an elongated, extending in the axial direction recess for receiving a formed with or made of flat material fastening body, in particular a mounting wedge for attaching the cross bar to one of the vertical framework elements, and Front end face of the free end of the pivotable plates is provided with a same or the same recess, wherein the recesses are each designed as a recess slot, as in itself from the DE 30 20 389 C2 is known, but in addition the slot, preferably substantially over its entire slot length, is bounded by parallel slot walls having a slot width corresponding distance to each other, which is equal to or only slightly larger than the thickness of the flat material of the mounting body, so that then, when mounted on one side of the cross bar in or on this at least one covering unit with its Eingehighilfsstoff or with their Ein developmentaltosstoffn, the Aushebeschsvortechnisch on the flat material of the mounting body is verkantbar or tilted so
  • the slot width is at most 25%, preferably at most 20%, in particular approximately 17%, greater than the thickness of the flat material of the fastening body accommodated in the slot.
  • Such a scaffolding 20 can be constructed of vertical scaffolding elements 22, which are also referred to as stems, as well as of diagonal scaffold elements and / or horizontal scaffolding elements which can be fixed thereto as a horizontal scaffolding element a cross bar 21 is shown.
  • the diagonally and horizontally extending scaffolding elements may be connected to the vertical scaffolding elements 22 and fixed to be attached to the vertical scaffolding element 22 with a connection shoe 25 provided with a horizontal slit 25, which may preferably be a wedge head located connecting flange 23, which may be a rosette, preferably a perforated disc provided with through holes, engage around and on this or at this by means of a fastening body 26, here in the form of a mounting wedge 26, set.
  • the mounting wedge 26 is inserted through a respective wedge opening in an upper head part and in a lower head part of the connection head 24 as well as through a hole of the here eight through holes of the perforated disc or rosette 23.
  • the transverse bar 21 shown in the figures can be firmly wedged or connected to two of the vertical framework elements 22 in a torsionally rigid manner.
  • a U-shaped cross bar 21 In the crossbar 21 is in the in the FIGS. 7 to 9 shown embodiment, a U-shaped cross bar 21. So this has, as from FIG. 9 seen in a sectional plane perpendicular to its longitudinal axis 32 has a U-shaped cross-section. It is understood, however, that also crossbars with other cross-sections, for example, round tubes, possibly in combination with other, custom-designed Ein vonsstoffn can be used.
  • the transverse bar 21 having a U-shaped cross section is formed with a base or web 31, from which perpendicular to and spaced from one another and approximately parallel two support webs 29.1 and 29.2 extend in the same direction away. In the region of their free ends, the support webs 29.1 and 29.2 support edges for supporting the pad units 27.
  • the support edges are preferably bent inward or angled.
  • In the web or in the base 31 of the cross bar 21 are spaced from each other, here two designed as slots holes 33 are provided.
  • Their spacing or arrangement and dimensioning is designed in such a way matched to the Aushebeschsvorraum 40 according to the invention that after the application of the securing body 41 of the Aushebeschsvortechnik 40 and their engagement in the desired end position the hook parts 95.2 at the end edges of the respective hole 33 to below the base or engage the web 31 of the cross bar 21, so this then engage behind and abut directly on this or are arranged at a small distance to this.
  • one or more pad units 27; 27.1, 27.2 are secured by means of a Aushebeschsvortechnisch 40 according to the invention against lifting from or out or against lifting of the crossbar 21.
  • the Aushebeschsvorraum 40 includes as essential elements, here a plate-shaped, securing body 41, which is designed here as a rail and further comprises a plate 47 which is pivotally connected via a hinge 43 to the securing body 41. Further, the Aushebommesvortechnik 40, here two, hook-shaped fasteners 42 which are at an axial distance from each other on the underside 54 of the fuse body 41, preferably by welding, are attached.
  • the plate-shaped securing body 41 is designed here as an elongated rail, which preferably consists of galvanized sheet steel.
  • the securing plate 47 may be made of metal, preferably made of galvanized steel sheet. The connection between the plate 47 and the securing body 41 via the hinge 43.
  • the hinge 43 is formed in the embodiment with a threaded bolt bolt 45, here a hexagonal bolt 45 and a serving to secure nut 46.
  • the plate 47 has on the fuse body 41 associated side in the region of its two outer edges on a formed by forming, for example, bending or flanging, eyelet or sleeve, through which the threaded bolt of the screw 45 is inserted therethrough.
  • the securing body 41 has at its end associated with the plate 47 in an on both sides of the longitudinal axis 76 associated end in a both sides of the longitudinal axis 76 extending central region also through Forming, such as bending or crimping, prepared eyelet or sleeve through which the threaded bolt of the screw 45 is also inserted therethrough.
  • the double leg spring 61 comprises two leg springs 61.1 and 61.2.
  • the first leg 61.1 has a first leg 64.1 and a second leg 64.2 and the second leg spring 61.2 also has a first leg 65.1 and 65.2.
  • the first leg 64.1 of the first leg spring 61.1 and the first leg 65.1 of the second leg spring 61.2 are integral with each other here connected or formed to form a common U-shaped leg 62.
  • This U-leg 62 is supported on the upper side 63 of the securing body 41 in a substantially flat bearing area there, which is arranged between the two axially extending or parallel to the longitudinal axis 76 of the securing body 41 extending lateral folds 93 which a Stiffen the fuse body 41 effect.
  • the other legs 64.2 and 65.2 of the spring 61 are supported on the upper side 55 of the plate 47.
  • the spring 61 is arranged and dimensioned such that the spring forces of the spring 61, the plate 47 in the closing direction 48 (FIG. FIG. 5 ).
  • the spring 61 forms a plate securing aid 60, by means of which the plate 47 from an open position, as for example in FIG. 5 in form of a maximum opening position 49 is shown, in a closing or securing position 50 is Agenkbar or is pivoted ( FIGS. 4 and 8th ).
  • the plate 47 can be pivoted against the spring force of the spring 61 from the closed or secured position 50 in one or the open position 49 only by applying increased opening forces (see arrow 63). In this way, therefore, the plate 47, when the Aushebeschsvorplatz 40 is in its Aushebe Anlagenswolf (see. FIGS. 7 and 8th ) held by the spring force of the spring 61 in its closed or securing position 50. Consequently, the plate 47 would not only due to its own weight, but additionally held by the spring forces of the spring 61 in the closed position 50.
  • the plate 47 with also referred to as a first stop body stop body 71 is provided, which is designed here as a stop tongue 71.
  • This stop body or this stop tongue 71 is integrally formed with the plate 47 and formed out of this by forming, for example by bending or flanging, in this case such that the stop body 71 extends to above a plane defined by the plate 47 level 73 and thereby the threaded spindle of the nut 46 containing the pivot axis 44 partially surrounds.
  • the plate 47 also has a stop body 72, also referred to as a second stop body, which serves to upon pivoting of the plate 47 in the closing direction 58 to effect a limitation of the closing movement in the closing direction 58 such that after abutment of the stopper body 72 on the underside 54 of the securing body 41, a position 59 of the plate 47 enabling easy assembly is achieved relative to the securing body 41 ,
  • the plate 47 is in this position 59 in a position relative to the fuse body 41, in which the plane spanned by the plate 73 and plane spanned by the fuse body 41 level 75 are approximately parallel or in the only slight inclination angle of these levels is reached relative to each other. How out FIG.
  • this position 49 corresponds approximately to the closing or securing position 50.
  • the stop 72 is thus on the underside 54 of the fuse body 41 struck.
  • the stopper body 72 is also formed integrally with the plate 47 and is also formed out of the plate 47 by forming.
  • the stop body 72 which is also referred to as a second stop body, is shaped out of the plate 47 in such a way that it extends below the plane 73 defined by the plate 47.
  • the stopper body 72 surrounds the pivot pin 44 containing threaded bolt of the screw 45 of the hinge 43 partially.
  • FIG. 5 proposes the plate 47 respectively the stopper body 71 in a pivoting of the Plate 47 of its closed or securing position 50 in an open position due to the stopper body 71 at an inclination angle 74 relative to the fuse body 41 and relative to a plane defined by the fuse body 41 and its longitudinal axis 76 containing level 75, which is greater than Zero degrees and this is about 90 degrees.
  • the plate 47 is in its maximum open position 49, that is, in relation to, in FIG. 4 shown closed position 50 pivoted about 90 degrees in the opening direction 57 in its maximum open position 49. This ensures that the spring 61 is not overstretched, so that over a long time secure function is ensured.
  • the plate 47 is acted upon in the closing direction 58 by the spring forces of the spring 61 both in the non-installed state and in the installed state of the Ausheb Anlagensvorraum 40, so that the plate 47 with the, preferably second, stopper body 72 at an inclination angle 77 relative to the fuse body 41 or to a plane defined by this and its longitudinal axis 76 containing level 75 abuts the underside 54 of the fuse body 41, which is about 180 degrees here.
  • a particular advantage of the Ausheberiessvortechnisch 40 according to the invention is that the plate 47 is not necessarily previously pivoted into a mounting position enabling the assembly, so for the purpose of their attachment to the or in the crossbar 21 to a lift-off must or must not be located in a previously folded in the direction of the fuse body 41 opening position, but that the plate is due to the spring force of the spring 61 and due to the provision and the arrangement and design of the stopper 72 is already in a mounting position in which a simple assembly when hanging and moving the fuse body 41 can be reached.
  • the fastening elements 42 are formed from flat steel 78.
  • the fastening elements 42 are delimited essentially over their entire length 80 by parallel side surfaces 81.1 and 81.2 which extend parallel to the longitudinal axis 76 of the securing body 41 in a distance 82 corresponding to the thickness 82 of the respective fastening element 42.
  • This thickness 82 or this distance 82 is 5 mm in the exemplary embodiment.
  • the hook-shaped fastening elements 42 are made of solid material and are free from bending and bending, preferably without deformation, produced by punching.
  • the distance 82 of the side surfaces 81.1 and 81.2 or the thickness 82 of the hook-shaped fastening element 42 is substantially less than the horizontal distance 69 of two in or on one and the same cross bar 21 opposite hinged Ein rehabilitationwhisstoffn 28.1, 28.2, over its entire length 80, here claws, of two at a joint adjoining pad units 27.1, 27.2 or of two of the cross bar 21 in different directions away extending pad units 27.1, 27.2 ( FIG. 9 ).
  • the fastening element 42 or the hook-shaped fastening elements 42 regardless of the arrangement or position of the Einitationsstoff 28; 28.1, 28.2 on or on the crossbar 21 not with the Eingehighilfsstoffn 28; 28.1, 28.2 collide.
  • Each hook-shaped fastening element 42 consists of a fastening part 95.1 and a hook part 95.2.
  • the fastening element 42 is fastened with its fastening part 95.1 to the securing body 41.
  • a planar contact surface 90 is provided, which is here perpendicular to the longitudinal axis 76 of the securing body 41 or perpendicular to the plane defined by this and the longitudinal axis 76 containing level 75 formed.
  • the hook portion 95.2 of the fastener 42 extends in a direction away from the plate 47 provided with the end of the fuse body 41 direction.
  • the hook portion 95.2 has on its upper side 98 a Aushebeschs response 98, which is here approximately parallel to the longitudinal axis 76 of the fuse body or parallel to the plane formed by the fuse body 41 and the longitudinal axis 76 containing level 75 is formed.
  • this top 98 and this Aushebeschs composition 98 engages behind the underside or outer surface 36 of the web or the base 31 of the cross bar 21, as shown in the FIGS. 8 and 9 seen.
  • the end face 84 of the free end 83 of the securing body 41 is provided with an elongated, in the axial direction recess in the form of a slot 85.1, the or for receiving a with or from flat material formed fastening body 26, in particular a fastening wedge 26, preferably for fastening the cross bar 21 on one of the vertical framework elements 22, suitable and is determined.
  • the end face 88 of the free end 87 of the plate 47 is provided with a similar or the same, also designed in the form of a slot 85.2 recess 85.2.
  • Each slot 85.1 and 85.2 is substantially over its entire slot length 89.1, 89.2 with parallel slot walls 91.1.1, 91.1.2; 91.2.1, 91.2.2 limited, which have a slot width 92.1 or 92.2 corresponding distance 92.1 or 92.2 to each other.
  • This distance 92.1, 92.2 is only slightly larger than the thickness 30 of the flat material of the fixing wedge 26 designed here as attachment wedge 26, so that if only on one side of the cross bar 21 in or on this at least one covering unit 27 with their Eingehighilfsstoff 28 with or their Ein developmentalwhisstoffn 28 is mounted, the Aushebe earringssvorides 40 on the flat material of the mounting body 26 can be tilted or tilted so that it is not or only slightly or only slightly tilted about its longitudinal axis 76 or tilted.
  • the slot width 92.1, 92.2 each 7 mm and the thickness 30 of the flat material of the fastening body 26 and the mounting wedge 26 is 6 mm. Accordingly, the slot width 92.1, 92.2 in the exemplary embodiment about 17% greater than the thickness 30 of the flat material of the mounting body 26 and the mounting wedge 26.
  • the respective flat material of the respective mounting body 26 and the fastening wedge 26 is located in the slot 85.1 of the securing body 41 or in the slot 85.2 of the plate 47, remains between the flat material of the fastening body 26 and the slot walls 91.1.1, 91.1.2; 91.2.1, 91.2.2 each only a small gap, which is here about a maximum of about 1 mm.
  • the fastening elements 42 are dimensioned such that the distance between the upper side 98 and the Aushebeschs composition 98 of the hook parts 95.2 from the bottom 54 and of the lower surface 54 of the fuse body 41 is preferably just so large that the hook portion 95.2 after engagement or Moving the fuse body 41 in its end position on the outer surface 36 of the web or the Base 31 of the cross bar 21 abuts or is located only a short distance from this outer surface 36.
  • the plate 47 automatically works in the closing direction 58 due to the spring forces of the spring 61 downward in its closing - or securing position 50, in which then also the slot 85.2 of the plate 47 surrounds a mounting wedge 26.
  • the plate 47 prevents a displacement of the securing body 41 or the entire Aushebeschsvor512 40 in a direction opposite to the arrow 70. Furthermore, in this end position or in this Aushebe Anlagenswolf then hook parts 95.2 of the hook-shaped fasteners 42 engage under Web or the base 31 of the cross bar 21, so that a lifting of the Aushebe Anlagensvortechnisch 20 and consequently the pad unit 27 and the pad units 27.1, 27.2 is prevented by the Aushebeschsvortechnisch 40.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Mechanical Engineering (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Emergency Lowering Means (AREA)
  • Floor Finish (AREA)
  • Movable Scaffolding (AREA)
  • Hooks, Suction Cups, And Attachment By Adhesive Means (AREA)
  • Connection Of Plates (AREA)
  • Conveying And Assembling Of Building Elements In Situ (AREA)
  • Pivots And Pivotal Connections (AREA)
  • Steps, Ramps, And Handrails (AREA)
  • Automobile Manufacture Line, Endless Track Vehicle, Trailer (AREA)
  • Air Bags (AREA)
  • Clamps And Clips (AREA)
  • Control And Other Processes For Unpacking Of Materials (AREA)
EP10158341A 2008-06-27 2009-03-10 Echafaudage avec un dispositif anti-levage pour plancher Active EP2224074B1 (fr)

Priority Applications (1)

Application Number Priority Date Filing Date Title
PL10158341T PL2224074T3 (pl) 2008-06-27 2009-03-10 Rusztowanie z urządzeniem zabezpieczającym przed wyjmowaniem dla zespołów pokładów

Applications Claiming Priority (2)

Application Number Priority Date Filing Date Title
DE102008030602A DE102008030602A1 (de) 2008-06-27 2008-06-27 Baugerüst mit Aushebesicherungsvorrichtung für Belageinheiten
EP09768814A EP2188465B1 (fr) 2008-06-27 2009-03-10 Structure de construction comportant un dispositif de sécurisation contre l'extraction pour des unités de garniture

Related Parent Applications (1)

Application Number Title Priority Date Filing Date
EP09768814.7 Division 2009-03-10

Publications (2)

Publication Number Publication Date
EP2224074A1 true EP2224074A1 (fr) 2010-09-01
EP2224074B1 EP2224074B1 (fr) 2011-08-31

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EP09768814A Active EP2188465B1 (fr) 2008-06-27 2009-03-10 Structure de construction comportant un dispositif de sécurisation contre l'extraction pour des unités de garniture
EP10158341A Active EP2224074B1 (fr) 2008-06-27 2009-03-10 Echafaudage avec un dispositif anti-levage pour plancher

Family Applications Before (1)

Application Number Title Priority Date Filing Date
EP09768814A Active EP2188465B1 (fr) 2008-06-27 2009-03-10 Structure de construction comportant un dispositif de sécurisation contre l'extraction pour des unités de garniture

Country Status (11)

Country Link
US (1) US8544605B2 (fr)
EP (2) EP2188465B1 (fr)
AT (2) ATE522676T1 (fr)
AU (1) AU2009264472B2 (fr)
BR (1) BRPI0912791B1 (fr)
DE (2) DE102008030602A1 (fr)
ES (2) ES2370234T3 (fr)
NZ (1) NZ588059A (fr)
PL (2) PL2224074T3 (fr)
WO (1) WO2009155890A2 (fr)
ZA (1) ZA201006492B (fr)

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Publication number Priority date Publication date Assignee Title
DE102013102492A1 (de) 2013-03-12 2014-09-18 Wilhelm Layher Verwaltungs-Gmbh Gerüstbelagträger
DE102014112041A1 (de) 2014-08-22 2016-02-25 Wilhelm Layher Verwaltungs-Gmbh Aushebesicherungsvorrichtung und Verfahren zu deren Montage sowie Baugerüst mit einer derartigen Aushebesicherungsvorrichtung zur Sicherung einer Belageinheit
US10604951B2 (en) * 2016-11-03 2020-03-31 Alum-A-Pole Corporation Support member for joinable scaffolding planks
DE102018103897A1 (de) * 2018-02-21 2019-08-22 Wilhelm Layher Verwaltungs-Gmbh Gerüst mit einer Aushebesicherungsvorrichtung und Verfahren zur Sicherung eines Gerüstbodens gegen Ausheben
DE202020104198U1 (de) * 2020-04-15 2020-08-14 Rux Gmbh Baugerüst

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DE3020389A1 (de) 1980-05-29 1981-12-03 geb. Layher Ruth 7129 Güglingen Langer Abhubsicherung fuer baugerueste
DE3020389C2 (fr) 1980-05-29 1989-09-28 Geb. Layher Ruth 7129 Gueglingen De Langer
DE4027754A1 (de) 1990-09-01 1992-03-05 Langer Ruth Geb Layher Stuetzausbildung fuer geruestboeden o. dgl. mit wenigstens einer aussparung in der begehbaren flaeche
DE19511847A1 (de) * 1995-03-31 1996-10-02 Layher Ulrich Tragstruktur-Element-Anordnung eines Gerüstes
EP1039067A1 (fr) * 1999-03-25 2000-09-27 ASSCO GERÜSTE GmbH & Co. Dispositif de fixation d'éléments d'échafaudage
GB2397612A (en) * 2003-01-24 2004-07-28 Robert Henry Weller Scaffolding with door access through sidewall or floor into the workspace

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AU2009264472A1 (en) 2009-12-30
PL2224074T3 (pl) 2012-01-31
BRPI0912791A2 (pt) 2015-10-13
EP2188465B1 (fr) 2011-04-27
EP2224074B1 (fr) 2011-08-31
AU2009264472A2 (en) 2010-12-23
WO2009155890A3 (fr) 2010-04-08
ZA201006492B (en) 2011-05-25
ES2370234T3 (es) 2011-12-13
PL2188465T3 (pl) 2011-09-30
DE102008030602A1 (de) 2009-12-31
AU2009264472B2 (en) 2015-05-07
US8544605B2 (en) 2013-10-01
ATE522676T1 (de) 2011-09-15
ATE507361T1 (de) 2011-05-15
NZ588059A (en) 2013-06-28
ES2365202T3 (es) 2011-09-26
WO2009155890A2 (fr) 2009-12-30
US20110036665A1 (en) 2011-02-17
EP2188465A2 (fr) 2010-05-26
DE502009000587D1 (de) 2011-06-09
BRPI0912791B1 (pt) 2019-04-16

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