The present invention relates to the field of scaffolding and, more specifically, it relates to improvements made to the vertical scaffolding elements consisting of a tubular portion provided with a certain number of radially projecting sockets, distributed peripherally in a star arrangement, intended for the attachment of one end of a horizontal transverse member of the scaffolding.
Scaffolding elements of the type in question are described and shown, for example, in document FR-A-1 521 232.
In the scaffolding elements of the type in question which are currently used, the sockets are manufactured individually, from a folded metal plate in the form of a U-shaped yoke, then welded individually to the tubular portion. Each edge of the U-shaped yoke is welded to the tubular portion both externally and possibly internally.
This results, for a scaffolding element equipped with four sockets placed in a cross arrangement, in the need to produce eight linear weld lines extending longitudinally. In addition, the production of internal welds is complex and requires specific equipment capable of being engaged inside the sockets.
The manufacture of this type of equipment proves to be difficult, lengthy and expensive.
Documents GB-A-2 207 875 and FR-A-1 553 487 certainly show arrangements of scaffolding elements comprising a part shaped into a star arrangement, defining radial sockets for the attachment of transverse member(s). However, these star-shaped parts have a geometrical shape which does not allow easy manufacture with simple equipment by an unskilled worker.
The aim of the invention is to overcome these drawbacks and to provide an improved solution suitable for simplifying the manufacturing process, and in rendering it shorter, simpler and therefore less expensive.
To these ends, according to a first of its aspects, the invention provides a method of manufacturing a vertical scaffolding element consisting of a tubular portion to which is welded a star-shaped part defining a number n of radially projecting sockets, distributed peripherally in a star arrangement, intended for the attachment of one end of a horizontal crosspiece of the scaffolding, the said process consisting in stamping flat a plane metal strip of a predetermined length at n regularly spaced locations so as to form n recesses, then in folding the said strip shaped in this way in order to close it on itself and to form a star-shaped part, and finally to position the latter on the said tubular portion and to weld it thereto,
wherein, according to the invention, said strip is stamped at n regularly spaced locations so as to form n recesses approximately in a dihedral arrangement with a rounded ridge transverse to the length of the strip,
wherein said strip stamped in this way is folded at the joins of the ends of the faces of the dihedra with the intermediate plane regions of the strip so as to bring closer to each other the lateral faces of two adjacent recesses which are located on each side of a plane region of the strip and so as to position the rounded ridges of the recesses on an axisymmetric cylindrical outline having substantially the same diameter as the external diameter of the tubular portion,
and wherein, after welding the abutted ends of the strip to each other and positioning the star-shaped part onto the tubular portion with the rounded ridges of the dihedra formed by the recesses placed bearing against the outer face of the tubular portion, the said star-shaped part is secured to the tubular portion by discontinuous circular welds made on the upper and lower edges of the rounded ridges in contact with the tubular portion.
By virtue of the invention, the sockets are no longer manufactured and secured individually to the tubular portion by a high number of longitudinal welds, but they result from the production of a star-shaped part; and in addition, this star-shaped part is obtained by simple stamping and folding operations on an initially flat metal strip, which part is then welded to the tubular portion by a small number of circular arc-shaped welds which can be produced quickly with simple equipment, and without the need for skilled personnel.
The cost of manufacturing a scaffolding element by implementing the method of the invention is considerably reduced, at the same time, the element is manufactured in a much shorter period of time.
A considerable advantage will also be noted as regards safety. If a socket is torn off—that is to say that its welds to the tubular portion are broken—for example under the effect of too high a force, the torn socket continues to be integral with the rest of the part which, itself, remains secured to the tubular portions by its other welds. Thus, a crosspiece bearing on the torn socket is prevented from collapsing, as would happen with individual sockets.
In a simple manner, provision is made that the recesses are formed as dihedra which are open over an angle of 2 π/n.
Also, advantageously, the stamped strip is folded so as to bring the lateral faces of two adjacent recesses into a substantially parallel mutual position.
In a preferred embodiment which seems to constitute the most common practical application of the invention, provision may be made for the number of recesses to be four and for the angle α of opening of the dihedra formed by the recesses to be about 90°, by virtue of which a vertical scaffolding element is obtained, consisting of a tubular portion equipped with four sockets placed substantially in a cross arrangement.
Preferably, the metal strip is treated such that the said abutted ends of the strip which are welded are located away from the end of a socket, so that the weld bead does not hamper the attachment of the additional scaffolding members to the socket. Advantageously, there will be a benefit in that the welded abutted ends of the strip are located in a region of the star-shaped part which bears against the tubular portion, such that the upper and lower ends of the weld bead are remelted during subsequent welding of the star-shaped part to the tubular portion.
According to a second one of its aspects, the invention provides a vertical scaffolding element comprising four sockets defined by a metal strip folded in a cross arrangement with orthogonal branches and welded to a tubular portion which is characterized in that it is manufactured by implementing the method described above.
The invention will be better understood on reading the following detailed description of certain embodiments given by way of purely illustrative example. In this description, reference is made to the appended drawings in which:
The method of the invention will now be explained with reference to
Initially, a plane metal strip 1 of a predetermined length (
Next, diagonal bolt housings are punched out, this punching thus being carried out flat, under proper conditions.
Then, the said strip 1 is flat-stamped at n (in this case four) regularly spaced locations so as to form n recesses 2 approximately in a dihedral arrangement with a rounded ridge 3 extending transversely for the length of the strip 1.
Preferably, the dihedral recesses 2 are open over an angle α=2π/n, which, in the case illustrated, is an angle of about 90°.
As can be seen in
Next, on the strip stamped in this way with its recesses 2, a bending or folding operation is carried out on the strip by folding the metal strip at the joins of the ends of the faces 4a, 4b of the recesses with the intermediate flat regions 5 so as to bring closer to each other successive lateral faces 4a, 4b belonging respectively to two adjacent recesses which are located on each side of a flat region 5.
In the example with four recesses taken into consideration here, the bending or folding operation is carried out in two steps.
In
Then, on the intermediate part thus obtained (
Following on from this, a star-shaped part 11 provided with n branches mutually separated by an angle of 2π/n is obtained. In the example in question here, the star-shaped part 11 is cross-shaped with opposed arms, offset by 90°, as illustrated in
The star-shaped part 11 is finished by welding, at 13, the aforementioned ends 6 edge to edge, such that an integral star-shaped part 11 is obtained, consisting of a metal strip closely following a closed outline with a complex shape as illustrated in
In addition, it will be noted that the rounded ridges 3 of the dihedral recesses 2 are all positioned on an axisymmetric cylindrical outline, the dimensions of the various deformed/folded parts of the strip 1 being chosen such that this cylindrical contour 12 (drawn in dotted lines in
Then, the star-shaped part 11 is pulled over and positioned on a tubular metal portion 14 (
Finally, the star-shaped part 11 is welded to the tubular portion 14: weld beads 15 (
Following on from which, a vertical scaffolding element is obtained, as illustrated in
The method of the invention overcomes the drawbacks associated with the manufacture and the securing of individual sockets. It makes it possible to manufacture all of the sockets 17 integrally, it being possible for the star-shaped part 11 to be obtained by implementing simple mechanical processes. Furthermore, its attachment to the tubular portion requires two welding operations carried out discontinuously, in a circular manner, over the periphery of the tubular portion, and therefore under very simple conditions. These two welding operations may be carried out in a single pass by using two welding apparatuses, or else in two successive passes.
In the example envisaged above with regard to
However, the invention is not limited to this single configuration and it is possible to envisage an implementation of the method of the invention capable of leading to a star-shaped part 11′, the branches 17′ of which have a different shape, for example a tapered shape, as illustrated schematically in
Furthermore, the invention is not limited to the manufacture of vertical scaffolding elements equipped with four sockets. It is possible, by the method of the invention, to manufacture elements having any number n of sockets spaced apart by an angle of 2π/n; in this case, the recesses 2 are formed, at the stamping step of
In the exemplary embodiments which have just been described and which are illustrated in
Finally it may prove to be particularly beneficial, as illustrated in
This application is a continuation of application Ser. No. 10/244,613, filed Sep. 17, 2002 (which is hereby incorporated by reference).
Number | Date | Country | |
---|---|---|---|
Parent | 10244613 | Sep 2002 | US |
Child | 11433487 | May 2006 | US |