EP4303378A1 - Console d'échafaudage pour un échafaudage modulaire et échafaudage modulaire doté d'au moins une telle console d'échafaudage - Google Patents

Console d'échafaudage pour un échafaudage modulaire et échafaudage modulaire doté d'au moins une telle console d'échafaudage Download PDF

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Publication number
EP4303378A1
EP4303378A1 EP23020332.5A EP23020332A EP4303378A1 EP 4303378 A1 EP4303378 A1 EP 4303378A1 EP 23020332 A EP23020332 A EP 23020332A EP 4303378 A1 EP4303378 A1 EP 4303378A1
Authority
EP
European Patent Office
Prior art keywords
scaffolding
console
stand
scaffold
hook
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.)
Pending
Application number
EP23020332.5A
Other languages
German (de)
English (en)
Inventor
Michael Nordmeier
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.)
MJ Geruest GmbH
Original Assignee
MJ Geruest GmbH
Priority date (The priority date is an assumption and is not a legal conclusion. Google has not performed a legal analysis and makes no representation as to the accuracy of the date listed.)
Filing date
Publication date
Application filed by MJ Geruest GmbH filed Critical MJ Geruest GmbH
Publication of EP4303378A1 publication Critical patent/EP4303378A1/fr
Pending legal-status Critical Current

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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
    • E04G5/061Consoles; Brackets specially adapted for attachment to scaffolds
    • 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
    • E04G7/30Scaffolding bars or members with non-detachably fixed coupling elements
    • E04G7/302Scaffolding bars or members with non-detachably fixed coupling elements for connecting crossing or intersecting bars or members
    • E04G7/306Scaffolding bars or members with non-detachably fixed coupling elements for connecting crossing or intersecting bars or members the added coupling elements are fixed at several bars or members to connect
    • E04G7/308Scaffolding bars or members with non-detachably fixed coupling elements for connecting crossing or intersecting bars or members the added coupling elements are fixed at several bars or members to connect without tying means for connecting the bars or members
    • 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
    • E04G7/30Scaffolding bars or members with non-detachably fixed coupling elements
    • E04G7/34Scaffolding bars or members with non-detachably fixed coupling elements with coupling elements using positive engagement, e.g. hooks or pins

Definitions

  • the invention relates to a scaffolding console for a modular scaffolding and a modular scaffolding with at least one such scaffolding console.
  • Modular scaffolding is one of the so-called system scaffoldings. They contain numerous connection points and are therefore particularly flexible and can easily be adapted to a wide range of width, length, height and angle requirements.
  • Modular scaffolding includes a number of scaffolding stands, which are usually set up vertically with respect to their orientation in space, and a number of modular scaffolding bars, which are arranged essentially horizontally between two vertical scaffolding stands and are connected to the scaffolding stands.
  • Modular scaffolding also includes decking, consoles, etc.
  • scaffolding floors or scaffolding coverings are placed in so-called scaffolding fields. This creates a scaffolding layer as the main covering. Cover expansion is often necessary.
  • Such a covering extension can advantageously be installed, for example by coupling consoles to scaffolding stands. If no consoles were provided, a scaffolding stand or scaffolding frame train would have to be guided to the ground on which the modular scaffolding stands. Additional scaffolding decking can be placed on the consoles to form a console decking surface.
  • the mounting bracket includes a cantilever arm with a longitudinal axis for holding a scaffolding board and a holding device for attaching the fastening bracket to a connecting element.
  • the holding device has a closing element and an engagement hook.
  • the engagement hook In an end position of the fastening console, the engagement hook is arranged at the top of the holding device. In this position, the engagement hook encompasses the connecting element perpendicular to the longitudinal axis by more than 180 °.
  • the engagement hook has a downwardly directed end.
  • the fastening console is thus brought horizontally towards a vertical frame approximately in the direction of the boom arm.
  • a rotation takes place around the longitudinal axis of the pipe in order to positively connect the engagement hook to an element attached to the vertical frame.
  • the fastening console is then positively secured against slipping down on the vertical frame and can accommodate vertical loads.
  • the mounting bracket is only partially secured against rotation around the longitudinal axis of the pipe. Looseness and play can result in a wobbly connection between the mounting bracket and the vertical frame.
  • a fastening bracket for scaffolding boards for releasably connecting to a tube of a vertical frame which comprises a cantilever arm with a longitudinal axis for receiving a scaffolding board and a holding device for attaching the fastening bracket to the tube.
  • the holding device includes a closure element and an engagement hook. The engagement hook is arranged at the top of the holding device in an end position of the fastening console.
  • the end element has a guide contour which is designed such that a guide distance between the guide contour and the engagement end is at least equal to or greater than the hook distance of the engagement hook to the end element along the longitudinal axis, so that the fastening console is only tilted to the end position and can be hung on the vertical frame in a twisted position.
  • a stop element spaced apart from the engagement hook is preferably provided.
  • This mounting bracket is also not secured, or only partially secured, against rotation about the longitudinal axis of the boom arm.
  • a console for scaffolding for supporting scaffolding decking planks which can be attached to a vertical scaffolding tube of a vertical frame of a scaffolding that has at least one cross member and is formed from a console frame, which has a horizontal cross strut for receiving the plank and is provided with a strut is, at one end of which a counter bearing is provided for supporting the console on the scaffolding tube.
  • the console is designed as a hanging bracket and the console frame has a hanging part arranged at a distance from the counter bearing and provided with a side opening, which has a U-shaped profile in plan view, which is formed by a first support member, a second support member and a connecting web is, wherein the first support member forms the end of the hanging part facing the first cross strut.
  • the hanging part is provided at its end facing away from the crossbar with a securing hook, which is provided on the second support member on the side of the hanging part facing the opening, protrudes beyond the lower end of the second support member and is L-shaped at its lower end in the direction of the connecting web is angled so that the securing hook on the crossbeam can be locked and unlocked by pivoting the console to be attached to the scaffolding tube at the center of the hanging part and thus the center of the scaffolding tube.
  • This console also carries the risk of detaching from the vertical frame when rotating around the vertical axis of the cross brace.
  • a scaffolding console for supporting scaffolding planks, which can be attached to a vertical scaffolding tube of a scaffolding and is formed from a console frame, which has a lower support shell for supporting the console on the scaffolding tube, a support strut projecting upwards from it and a cross strut mounted thereon for holding the plank.
  • the console is designed as a hanging console and the console frame has a space above the lower one for this purpose Support shell arranged and laterally open hanging part and vertically offset support members for hanging on the scaffolding tube.
  • Such a scaffolding console cannot be arranged in a modular scaffolding because there is no possibility of providing a connection with a perforated disk.
  • the console device is designed to be rotatable about the axis of the vertical handle or about an axis parallel to it.
  • a substantially horizontally arranged cantilever bar is present, as well as a vertical bar connected in the end region of the cantilever bar facing the scaffold, a diagonal bar connected to the cantilever bar and the vertical bar, resulting in a substantially triangular support structure.
  • the lower end area of the diagonal bar is supported on the scaffolding post.
  • a suspension device is provided on the end region of the cantilever rod facing the scaffolding, which enables a rotatable connection to the vertical rod of the scaffolding.
  • a screw unit is screwed in via a recess in tabs.
  • gaps are created between the main deck and the bracket decking. These gaps comply with standards up to a width of 80 mm and are permitted where the decking surface is interrupted by rows of scaffolding stands. Gaps with a width of more than 80 mm and in case of special requirements must be closed with gap covers. Such gap covers are usually placed on the two covering surfaces adjacent to the gap or forming between them.
  • the configuration of consoles, scaffolding decks and the main scaffolding field is designed so that the gap covers are not required. Gap covers require a lot of purchase effort, assembly effort and logistics effort, which one tries to avoid in order to save costs and time.
  • the present invention is therefore based on the object of providing a scaffolding console for a modular scaffolding and a modular scaffolding with at least one such scaffolding console, in which it is possible to have a gap width of less than 80 mm after assembly of the scaffolding console on a perforated disk of a scaffolding stand of the modular scaffolding, to provide a higher assembly speed and a tool-free assembly of the scaffolding console on the modular scaffolding.
  • the task is for a scaffolding console for a modular scaffolding according to claim 1, wherein the scaffolding console has at least one covering receiving element with at least one section on or on which at least one console covering can be accommodated or received, at least one hook-shaped element for attaching the scaffolding console to at least one on a scaffolding stand Module frame arranged perforated disk and to prevent unhooking from this and at least one support strut element, wherein the at least one hook-shaped element is arranged at the end on the at least one lining receiving element, the at least one support strut element with its first end can be attached or attached, fastened or fastened to the lining receiving element and with its opposite second end is designed to be supported on the scaffolding stand, with the at least one Support strut element and the at least one lining receiving element extend at an angle to one another.
  • the task is solved in that the at least one scaffolding console is a scaffolding console defined above, the at least one scaffolding console being inserted into one of the perforated disks on one of the scaffolding stands can be hung or suspended and is used to hold at least one console covering on or on at least a section of at least one covering receiving element of the scaffolding console.
  • the at least one hook-shaped element serves not only to attach the scaffolding console to the perforated disk on the scaffolding stand, but also to prevent it from being unhooked from it.
  • the scaffolding console has at least one support strut element, which is either connected to the covering receiving element with its first end or is attached to it and is supported on the outside of the scaffolding stand with its second end.
  • the first end of the support strut element is thus connected to the distal end of the covering receiving element remote from the scaffolding stand, while the second end of the support strut element can be or is supported on the outside of the scaffolding stand of the modular scaffolding.
  • the support section at the end of the lining receiving element opposite the end at which the lining receiving element and the support strut element are connected to one another and the second end of the support strut element are supported on the outside at locations spaced apart from one another on the scaffold stand.
  • a console covering mounted on or on the scaffolding console, in combination with the scaffolding console, contributes to the horizontal stiffening of the modular scaffolding through a frame effect.
  • the fastening console requires according to the EP 3 339 533 A1 further special fastening elements that fit and correspond to the fastening console in order to be able to be fastened to frame scaffolding elements.
  • the scaffolding console according to the present invention can be hung in a wide variety of perforated disks of modular scaffolding or scaffolding stands available on the market.
  • the covering receiving element of the scaffolding console can also be supported on the at least one perforated disk of the scaffolding stand, while the hook-shaped element reaches through a corresponding hole in the perforated disk so that its angled section reaches under the perforated disk on the opposite side of the covering receiving element.
  • the at least one hook-shaped element is advantageously L-shaped and has a straight and an angled one Section and extends with its angled section towards the lining receiving element.
  • the at least one covering receiving element further advantageously has a support section at the end for external contact or support on the scaffolding stand.
  • the at least one hook-shaped element is advantageously arranged on the support section, in particular on the outside of it.
  • the support section has an external shape adapted to the external shape of the scaffolding stand for positive support on the scaffolding stand.
  • the support section can be designed like a frame and provided with a concavely curved external shape, i.e. directed away from the lining receiving element. This makes it possible for the support section to rest positively on the outside of the scaffolding stand. This enables a particularly good and secure hold on the scaffolding stand.
  • the support strut element can also have a concavely curved outside at its second end, which is designed to be supported on the scaffolding stand, for positive contact with the outside of the scaffolding stand. Accordingly, it is possible for the scaffolding console to rest positively on the outside of the scaffolding stand both in the area of the support section at the end of the covering receiving element and with the second end of the support strut element, so that a stable attachment of the scaffolding console to the scaffolding stand is possible.
  • the at least one hook-shaped element which is advantageously arranged on the outside of the support section, further advantageously extends in its height or height extension direction.
  • at least one pin element can advantageously be arranged on the outside of the support section, opposite to the arrangement of the at least one hook-shaped element, the at least one pin element extending in the direction of the support strut element beyond the lower extent of the support section to make this possible reaching through a hole in the perforated disk after installing the scaffolding console on the perforated disk on the scaffolding stand of the modular scaffolding.
  • the hook-shaped element on the end of the lining receiving element on opposite sides of the support section and the pin element on the other side, which each extend in the height direction of the support section or the lining receiving element, thus in the direction of the height of the side cheeks or .Side walls of the covering receiving element.
  • the hook-shaped element engages under the support section or the covering receiving element, while the pin element extends on the outside of this only beyond the lower extent of the support section in order to engage in and in particular reach through a perforated disk to which the scaffold console is attached , to enable. If the pin element is provided, the scaffolding console can therefore transmit a moment about the vertical spatial axis to the scaffolding stand.
  • At least one stabilizing strut can be arranged between the lining receiving element and the support strut element. This thus extends between the covering receiving element and the support strut element and in particular approximately parallel to the scaffolding stand to which the scaffolding console is or is attached.
  • the stabilization strut therefore serves to further stabilize the scaffold console.
  • the scaffolding console In order to attach the scaffolding console to a perforated disk of a scaffolding stand of a modular scaffolding, the scaffolding console can first be brought with its covering receiving element close to the scaffolding stand or the perforated disk on it. Subsequently, the scaffolding console is moved down in the vertical direction, i.e. parallel to the extension of the scaffolding stand in the opening direction of the holes in the perforated disk, in order to pass the hook-shaped element through a hole in the perforated disk.
  • the scaffolding console can be slightly rotated about the longitudinal axis of the covering receiving element in order to thread the hook-shaped element into the hole in the perforated disk on the scaffolding stand.
  • the scaffolding console is then pivoted back in the opposite direction in order to bring its support section close to the scaffolding stand.
  • the second end of the support strut element is directed towards the Scaffolding stands moved and placed on the outside of them.
  • the scaffolding console is then placed in a form-fitting manner on the outside of the scaffolding stand in the area of the support section and in particular also placed on the top of the perforated disk.
  • the hook-shaped element engages through the hole in the perforated disk and the pin element on the support section of the covering receiving element of the scaffolding console engages in a hole in the perforated disk and advantageously through it.
  • the assembly of the scaffolding console on the scaffolding stand can therefore be carried out quickly and effortlessly and yet safely without the use of tools, i.e. without tools.
  • the gap width can be made very small, i.e. less than 80 mm, when at least one console covering is attached to the covering receiving element or its support surface. The provision of a gap cover is therefore no longer necessary when using the scaffolding console according to the invention.
  • a scaffolding console 1 for a modular scaffolding is shown. Like in particular Figure 3 can be removed, the scaffold console 1 is arranged and fastened to a scaffold stand 2 or a perforated disk 3 attached to the scaffold stand 2. To attach the scaffolding console 1 to the perforated disk 3 on the scaffolding stand 2 of the modular scaffolding, the scaffolding console 1 has a hook-shaped element 10 which can reach through a hole 30 in the perforated disk 3.
  • the hook-shaped element 10 is, in particular Figure 1 can be removed, L-shaped.
  • the base body of the hook-shaped element 10 thus has a straight cylindrical section 100 and a section 101 angled therefrom. Both sections 100, 101 have a round cross section.
  • the hook-shaped element 10 can thus be formed from a cylindrical pin element by moving it into the desired L shape.
  • the hook-shaped element 10 is arranged at the end on a covering receiving element 11 of the scaffolding console 1, more precisely, on the outside on a support section 12 arranged on the end of the covering receiving element 11.
  • the supporting section 12 serves to support the scaffolding console 1 on the scaffolding stand 2.
  • the covering receiving element 11 is used for Receiving a console covering not shown in the figures and has a section 110 for this purpose. This is here in the exemplary embodiment Figures 1 to 3 not as a continuous surface, but rather multi-dimensionally shaped, with engagement sections 114, 115, 116 being formed between individual upper surface sections 111, 112, 113.
  • console coverings such as claw-shaped or hook-shaped connecting elements, engage in the engagement sections 114, 115, 116 and hold on to them.
  • a different design of the console coverings a different design of the section 110 of the covering receiving element 11 that matches them can be provided.
  • the lining receiving element 11 is designed as a hollow profile element and has, in particular Figure 3 can be removed, two mutually opposite, approximately perpendicular to the upper surface sections 111, 112, 113 standing continuous side cheeks 117, 118 and a lower wall 119, which is opposite the section 110 with its upper surface sections 111, 112, 113 and approximately at right angles to the two side cheeks 117, 118 is arranged.
  • the support section 12 is designed like a frame, as in particular Figure 2 can be removed particularly well.
  • the support section 12 also has a narrow upper section 120 between the side cheeks 117, 118, which serves to stabilize the support section 12.
  • the lining receiving element 11 has a first end 211 and a second end 212.
  • the support section 12 is provided at its first end 211.
  • the two side cheeks 117, 118 are notched on one side, namely at the bottom, i.e. on the side of the lower wall 119, and thus each have a notched section 210.
  • the lower wall 119 is missing there, as in the top view in Figure 4 can be removed.
  • the lining receiving element 11 thus has a lower height h1 in the area of the support section 12 at this first end 211 of the lining receiving element 11 compared to the maximum height H of the lining receiving element 11 in the area of the upper surface sections 112, 113. This makes it possible for the lining receiving element 11 in the area of its first end 211 after the hook-shaped element 10 engages in a hole 30 in the perforated disk 3 the top 31 of the perforated disk 3 rests. This can in particular Figure 3 be removed.
  • the frame-shaped support section 12 has a concavely curved outer side 121 in the outward direction, i.e. away from the covering receiving element 11.
  • the curvature of the outside 121 of the support section 12 is chosen so that the support section 12 can rest positively on the outside 20 of the scaffold stand 2, as is the case in particular Figure 4 can be removed particularly well.
  • a cylindrical pin element 13 is arranged on the support section 12 of the lining receiving element 11 opposite the external arrangement of the hook-shaped element 10.
  • the pin element 13 serves for symmetrical load transfer and stabilization in the area of the support section 12 and is therefore opposite to the outside arrangement of the hook-shaped element 10 on the support section 12 and is also arranged on the outside.
  • the pin element 13 is shorter than the hook-shaped element 10, and therefore protrudes less far beyond the lower extent of the side cheeks 117, 118 in the area of the first end 211 of the covering receiving element 11 or through a hole after the scaffold console 1 has been arranged on the perforated disk 3 30 in this through.
  • the support section 12 has a transverse web 122 which is arranged approximately parallel to the upper section 120 between the two side cheeks 117, 118 of the covering receiving element 11.
  • the crossbar 122 can in particular be provided with connecting elements projecting at the ends, which, however, are in the Figures 1 and 2 cannot be seen, with which the crossbar 122 can engage in slot-shaped openings or grooves 214 in the two opposite side cheeks 117, 118.
  • This can be an application-specific Stability adjustment of the support section 12 can be made.
  • the scaffold console 1 has a support strut element 14 to further support the covering receiving element 11.
  • the support strut element 14 is at an angle ⁇ to the lining receiving element 11, as in particular Figure 3 can be removed particularly well.
  • the support strut element 14 is arranged with its first end 140 at the second end 212 of the lining receiving element 11 on the underside 219 of its lower wall 119, i.e. opposite to the support surface 110 of the lining receiving element 11, and is connected to it or attached to it and extends from this connection point with the lining receiving element 11 at the angle ⁇ in the direction away from it.
  • the opposite second end 141 of the support strut element 14 serves to support the outside 20 of the scaffolding stand 2, such as Figure 3 can be removed.
  • the second end 141 of the support strut element 14 also has a concavely curved outside 143 in order to enable the second end 141 of the support strut element 14 to be placed in a form-fitting manner on the outside 20 of the scaffold stand 2.
  • the concave shape of the second end 141 of the support strut element 14 can be particularly good Figure 2 be removed.
  • a stabilizing strut 15 is provided between the covering receiving element 11 and the support strut element 14 which extends away from it at an angle ⁇ . This is supported on the one hand on the underside 219 of the lower wall 119 of the covering receiving element 11 and on the other hand on the top 142 of the support strut element 14. How Figure 3 can be removed, the stabilizing strut 15 extends approximately parallel to the scaffolding stand 2 when it is fully mounted on the scaffolding stand 2 or its perforated disk 3. The stabilizing strut 15 also grips Figure 3 can be removed particularly well, directly adjacent to the notched section 210 of the two side cheeks 117, 118 on the underside 219 of the lower wall 119 of the Pad receiving element 11. In this area in particular, optimal stabilization of the scaffold console 1 is achieved. In principle, the stabilizing strut 15 can also be arranged at another location between the lining receiving element 11 and the supporting strut element 14.
  • the support section 12, thus the entire scaffold console 1 is lowered towards the perforated disk 3, so that the hook-shaped element 10 can reach through the hole 30.
  • a slight wastage around the longitudinal axis L 11 of the covering receiving element 11 of the scaffold console 1 can be provided, so that the hook-shaped element 10 can be threaded into the hole 30 without any problems .
  • the scaffold console 1 could basically be moved out of the penetration position of the hook-shaped element 10 in the hole 30 of the perforated disk 3 by moving in the direction of arrow P1, i.e. in the direction away from the perforated disk 3.
  • the scaffolding console 1 is in the third assembly step pivoted around the longitudinal axis L of the scaffold stand 2, so that the cylindrical section 100 of the hook-shaped Element 10 angled section 101 is brought into a locking position on the perforated disk 3.
  • the angled section 101 of the hook-shaped element 10 is placed in overlap with an intermediate web 32 between the elongated hole 30, through which the hook-shaped element 10 extends, and an adjacent hole 33 of the perforated disk 3.
  • the scaffolding console 1 it is only possible to lift the scaffolding console 1 by, for example, a maximum of 1 cm vertically, i.e. in the direction of arrow 1, since further lifting of the scaffolding console 1 and thus removing it from the Perforated disk 3 on the scaffolding stand 2 is prevented by the intermediate web 32 and the angled section 101 of the hook-shaped element 10 which then rests on it.
  • This can be done in particular Figure 8b particularly easy to remove.
  • the pin element 13 In this locking position of the hook-shaped element 10, the pin element 13 is positioned to engage in another hole 30 in the perforated disk 3, such as Figures 7b, 8a and 8b can be seen.
  • the pin element 13 engages so far into the hole 30 that it projects through the hole 30 in the perforated disk 3 downwards over the underside 34 of the perforated disk 3.
  • This position of the scaffolding console 1 on the scaffolding stand, as well Figure 3 can be seen, is therefore the final assembly position of the scaffold console 1 on the scaffold stand 2 or the perforated disk 3.
  • both the support section 12 and the second end 141 of the support strut element 14 lie positively on the outside of the scaffold stand 2.
  • the hook-shaped element 10 is hooked with its angled section 101 into the perforated disk 3, engaging under the intermediate web 32 between hole 30 and hole 33, at a distance from the underside 34 of the perforated disk 3. Furthermore, the first end 211 of the lining receiving element 11 lies on the top side 31 of the Perforated disk 3.
  • the perforated disk 3 is also positioned adjacent to the outer edge 213 of the notched section 210 of the covering receiving element 11 directed in the direction of the scaffold stand 2 or to its two opposite side cheeks 117, 118, as Figure 3 can be seen. With at least one console covering suspended in the scaffolding console 1, horizontal bracing of the modular scaffolding can be achieved.
  • the at least one console covering added to the scaffold console 1 thus leads to a frame effect.
  • the scaffold console 1 can transmit a moment about the longitudinal axis L of the scaffold stand 2 to the scaffold stand 2 by engaging or passing through the pin element 13 in or through the further hole 30.
  • the scaffolding console each having at least one covering receiving element with at least one section, on or on which at least a console covering can be accommodated, at least one hook-shaped element for fastening the scaffolding console to a scaffolding stand of the modular scaffolding or to a perforated disk on the scaffolding stand of the modular scaffolding and for preventing unhooking from this and at least one support strut element, the support strut element on the one hand with the at least one covering receiving element is or is connected and on the other hand extends at an angle to it.
  • the at least one hook-shaped element is further arranged at the end on the at least one covering receiving element, away from the second end of the support strut element, which is designed and serves for support on the scaffolding stand.

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  • Engineering & Computer Science (AREA)
  • Architecture (AREA)
  • Mechanical Engineering (AREA)
  • Civil Engineering (AREA)
  • Structural Engineering (AREA)
  • Ladders (AREA)
  • Emergency Lowering Means (AREA)
EP23020332.5A 2022-07-08 2023-07-04 Console d'échafaudage pour un échafaudage modulaire et échafaudage modulaire doté d'au moins une telle console d'échafaudage Pending EP4303378A1 (fr)

Applications Claiming Priority (1)

Application Number Priority Date Filing Date Title
DE102022002503.5A DE102022002503A1 (de) 2022-07-08 2022-07-08 Gerüstkonsole für ein Modulgerüst sowie Modulgerüst mit zumindest einer solchen Gerüstkonsole

Publications (1)

Publication Number Publication Date
EP4303378A1 true EP4303378A1 (fr) 2024-01-10

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Application Number Title Priority Date Filing Date
EP23020332.5A Pending EP4303378A1 (fr) 2022-07-08 2023-07-04 Console d'échafaudage pour un échafaudage modulaire et échafaudage modulaire doté d'au moins une telle console d'échafaudage

Country Status (2)

Country Link
EP (1) EP4303378A1 (fr)
DE (1) DE102022002503A1 (fr)

Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR1563120A (fr) * 1968-02-27 1969-04-11
JPH11148224A (ja) * 1997-09-12 1999-06-02 Fumio Fujiki 足場布板受け部材
DE29912557U1 (de) 1999-07-17 1999-10-07 Layher W Vermogensverw Gmbh Konsoleinrichtung für Gerüste
DE20103596U1 (de) 2001-03-01 2001-05-10 Rux Guenter Gmbh Konsole für Baugerüste
US20020185335A1 (en) * 2001-06-11 2002-12-12 Mark Verdyk Safety device
JP2004156209A (ja) * 2002-11-01 2004-06-03 Fumio Fujiki 足場部材及び足場装置
DE102011008315B4 (de) 2011-01-11 2014-07-10 Rux Gmbh Konsole für Baugerüste
EP3339533A1 (fr) 2016-12-21 2018-06-27 Tobler AG Console de fixation pour plateaux d'échafaudage
EP3339534A1 (fr) 2016-12-21 2018-06-27 Tobler AG Console de fixation pour plateaux d'échafaudage
FR3087805A1 (fr) * 2018-10-29 2020-05-01 Entrepose Echafaudages Noeud pour une structure de service et structure de service comprenant un tel noeud

Patent Citations (10)

* Cited by examiner, † Cited by third party
Publication number Priority date Publication date Assignee Title
FR1563120A (fr) * 1968-02-27 1969-04-11
JPH11148224A (ja) * 1997-09-12 1999-06-02 Fumio Fujiki 足場布板受け部材
DE29912557U1 (de) 1999-07-17 1999-10-07 Layher W Vermogensverw Gmbh Konsoleinrichtung für Gerüste
DE20103596U1 (de) 2001-03-01 2001-05-10 Rux Guenter Gmbh Konsole für Baugerüste
US20020185335A1 (en) * 2001-06-11 2002-12-12 Mark Verdyk Safety device
JP2004156209A (ja) * 2002-11-01 2004-06-03 Fumio Fujiki 足場部材及び足場装置
DE102011008315B4 (de) 2011-01-11 2014-07-10 Rux Gmbh Konsole für Baugerüste
EP3339533A1 (fr) 2016-12-21 2018-06-27 Tobler AG Console de fixation pour plateaux d'échafaudage
EP3339534A1 (fr) 2016-12-21 2018-06-27 Tobler AG Console de fixation pour plateaux d'échafaudage
FR3087805A1 (fr) * 2018-10-29 2020-05-01 Entrepose Echafaudages Noeud pour une structure de service et structure de service comprenant un tel noeud

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