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EP 2 043 797 B1 |
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EUROPEAN PATENT SPECIFICATION |
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Mention of the grant of the patent: |
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09.01.2013 Bulletin 2013/02 |
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Date of filing: 04.06.2007 |
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International Patent Classification (IPC):
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International application number: |
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PCT/NL2007/000140 |
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International publication number: |
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WO 2008/010701 (24.01.2008 Gazette 2008/04) |
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METHOD FOR BENDING A SHEET PILE WALL
VERFAHREN ZUM BIEGEN EINER SPUNDWAND
PROCÉDÉ DE FLEXION D'UNE PAROI CONSTITUÉE D'UN EMPILEMENT DE TÔLES
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Designated Contracting States: |
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AT BE BG CH CY CZ DE DK EE ES FI FR GB GR HU IE IS IT LI LT LU LV MC MT NL PL PT RO
SE SI SK TR |
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Priority: |
20.07.2006 NL 1032218
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Date of publication of application: |
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08.04.2009 Bulletin 2009/15 |
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Proprietor: Van Halteren Infra B.V. |
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3752 LR Bunscholten Spakenburg (NL) |
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Inventor: |
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- VAN HALTEREN, Tijmen
NL-3751 ET Bunschoten Spakenburg (NL)
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Representative: Verdijck, Gerardus et al |
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Arnold & Siedsma
Sweelinckplein 1 2517 GK Den Haag 2517 GK Den Haag (NL) |
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References cited: :
EP-A2- 0 164 296 WO-A-99/42669
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EP-A2- 1 420 116 FR-A- 701 574
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| Note: Within nine months from the publication of the mention of the grant of the European
patent, any person may give notice to the European Patent Office of opposition to
the European patent
granted. Notice of opposition shall be filed in a written reasoned statement. It shall
not be deemed to
have been filed until the opposition fee has been paid. (Art. 99(1) European Patent
Convention).
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[0001] The present invention relates to a method for manufacturing a sheet pile wall from
a steel plate material of predetermined dimensions.
[0002] Sheet pile walls are applied in, among others, water barriers, as bank protection
along a canal, as quay wall, as wall of an underground car park and the like. A sheet
pile wall is an earth-retaining construction which is placed in vertical manner in
the ground and which comprises separate sheet pile profiles which are mutually connected.
These sheet pile profiles are manufactured in practice by hot or cold forming of plate
material. In the case of cold forming use is made here of rolling, or roll bending,
or roll profiling of steel plate material. This is a process for bringing the plate
material into the desired profile form using profiled rolls. Manufacture of sheet
pile profiles in this manner is limited to relatively thin plate material, since the
friction forces which occur are not sufficient to carry thick plates between the rolls.
In addition, rolls are required in this process which are adapted to the desired form
of the sheet pile profile. The number of sheet pile profiles obtainable in practice
is hereby limited to a number of standard types. This is caused because small series
of sheet pile profiles require relatively high investment costs. The change-over to
a different profile form further requires modifying the machine, and this adversely
affects the efficiency of the production process. Through the use of standard types
an over-dimensioned sheet pile profile is generally obtained for a specific application.
[0003] EP-A-0164296 discloses cold forming of a sheet pile part with adjacent parts of the sheet pile
wall being connected by separate coupling parts.
[0004] The present invention has for its object to provide an improved method for manufacturing
sheet pile profiles.
[0005] The present invention provides a method for manufacturing a sheet pile wall from
a steel plate material of predetermined dimensions according to claim 1.
[0006] By defining a desired profile for a sheet pile wall the most suitable form of a sheet
pile profile is obtained for a specific application. A specific application or location
differs in respect of, among others, type of soil, moistness, play of forces and the
like. By then bending the desired profile using for instance an angle-bending machine,
or a press or folding machine, the plate material can be bent at desired locations
so as to thereby obtain the desired profile. Thus is achieved that the form of the
profile, as well as the amount of material, can be adapted to the specific requirements
associated with the specific application for the profile. Over-dimensioning of the
sheet pile profile is hereby prevented.
[0007] In a preferred embodiment according to the invention the profile is defined by calculating
a width and height thereof when obtaining desired moments of resistance and area moments.
A desired moment is determined on the basis of a specific application and the requirements
associated therewith. The required weight of the sheet pile wall can then be minimized.
When defining the profile it is further possible to take into account that an equal
amount of material is preferably situated on either side of a neutral line of the
profile. This achieves a correct adjustment of the width and height of the profile.
The height of the profile is here the dimension transversely of the plane of the initial
plate material. The adjustment of form and material of the profile to the requirements
of the specific application achieves that a sheet pile profile with a larger working
width is realized than in the case of a standard type of profile. It is hereby possible
to suffice with fewer sheet pile profiles in the construction of for instance a quay
wall. In addition to reducing material costs, this also reduces the costs associated
with placing of the separate profiles. A total wall length of 520 metres for instance
requires a number of 327 specially defined plates or profiles (HA-Z-666-3) with a
working width of 1588 mm at 60 kg/m
2, while for a standard type of profile (PAU 22-60) 543 plates or profiles are required
with a working width of 957 mm at 63 kg/m
2. The required moments are here achieved with the specially defined profiles and due
to the larger working width it is possible to suffice with fewer plates of the specially
developed profile. The whole wall can hereby be placed more quickly. The defined sheet
pile profiles are preferably formed as a Z-profile or a U-profile, with which the
desired moments can be obtained in the simplest manner.
[0008] In a preferred embodiment according to the invention the bending of a profile for
the sheet pile wall is carried out with plate thicknesses up to 15 mm. For the present
sheet pile profiles plate material of thicknesses up to about 8 mm is used in cold
forming by means of rolling. At greater thicknesses of the plate material the forces
required for the forming are too high in the rolling process. Thicknesses up to preferably
about 15 mm can be processed by making use of bending of plate material. An additional
advantage is that, due to the lower forces required at the same plate thicknesses
in the case of bending, higher-quality plate material can also be processed. Such
a higher quality of plate material comprises for instance additives for reducing rust-formation.
As a result of these additives greater forces are generally required for the purpose
of forming. The application of higher qualities of plate material is made possible
by bending of sheet pile profiles (for instance use of steel type S355 instead of
S235 of a lower quality). For the forming during bending of a normal sheet pile profile
the exertion of about 3000 tonnes is required for the pressing at a length of 24 metres.
The bending of sheet pile profiles takes place on so-called angle-bending machines
or folding machines with which plate thicknesses up to about 25 mm with a length of
4 to 24 metres can be bent. The width of the plate material used for the profiles
amounts to about 2.5 metres. An additional advantage is that, by defining the profile
on the basis of the specific application, use can preferably be made of thinner plate
material, wherein the same strength is obtained. During the bending plate material
is preferably further used with a width of 2.0 metres instead of 1.20 metres as used
in practice during rolling. An example of a sheet pile profile known in practice is
PAU 22-40 with a working width of 957 mm. With a specially defined profile (e.g. HAZ
196-4) a greater working width of 1059 mm is obtained at 40.4 kg/m
2. A much used length for sheet pile profiles is 8 metres, although other lengths can
also be bent. The bending of such a profile takes place preferably by making the bends
one by one. In the case of a U-profile there are for instance eight bends.
[0009] In a further preferred embodiment according to the invention the sheet pile profiles
are provided with interlock members for the purpose of coupling to adjoining sheet
piles. This achieves that sheet piles can be connected to each other so that they
together form a complete wall. About 1 mm of additional free play is preferably provided
here, whereby sheet piles can be placed in connection with the adjoining sheet pile
profile in a simpler manner. This achieves that a wall can be placed more quickly
and at lower cost.
[0010] Further advantages, features and details of the invention are elucidated on the basis
of a preferred embodiment thereof, wherein reference is made to the accompanying drawings,
in which:
- Figure 1A shows a schematic view of the bending of plate material;
- Figure 1B shows a schematic view of the bending of a plate material in an angle-bending
machine or press;
- Figure 1C shows a view of a small angle-bending machine;
- Figure 2 is a top view of two mutually connected U-profiles according to the invention;
- Figure 3 is a top view of a Z-profile according to the invention; and
- Figure 4 is a top view of an alternative embodiment of a Z-profile according to the
invention.
[0011] Figure 1A shows schematically the bending of a steel plate material 2 which is placed
on a table 4 of an angle-bending machine. Plate 2 is bent to the desired angle by
means of the tilting bending beam 6. The bent plate 2 after forming is shown in the
figure together with the tilting bending beam 6 in broken lines as respectively 2'
and 6'. The swivel bending takes place on a so-called the bending frame 8 which is
held in position by means of a pressing beam 10.
[0012] Figure 1B shows the principal of a press wherein a plate material 2 is bent by means
of a punch 12 and a die 14. As shown in the figure, punch 12 can here be moved substantially
vertically for the purpose of the bending. The bending process shown in the figure
relates to free bending. Just as die-bending (not shown), this can be carried out
with a press. A simple, small angle-bending machine 16 is shown in figure 1C.
[0013] Figure 2 shows two U-profiles 20 which are mutually connected by means of an interlock
22 by hooking together these interlocks 22 of the two profiles 20. For the shown profile
the bends 24, 26 and 28 are made for the purpose of interlock 22, while bends 34,
36 and 38 are made for interlock 22 on the other side of profile 20. In order to obtain
the correct stability and moments, a U-profile is arranged by means of the bends 28,
30, 32 and 34. The working width b is determined on the one hand by the width of the
plate material of which use is made and on the other by the height h in the direction
transversely of the plane of the initial plate material.
[0014] Figure 3 shows a sheet pile profile embodied as a Z-profile 40. Profile 40 is herein
provided with an interlock 42 formed by the bends 44, 46 and 48. The bend 50 is provided
in order to realize a good connection to an adjacent sheet pile profile 40. The other
interlock 42 of profile 40 is formed by bends 52, 54 and 56. The moments and the amount
of material on either side of the neutral line 60 are influenced by the bends 62 and
64. The height h' and working width b' of profile 40 are also determined by these
two bends 62 and 64.
[0015] Sheet pile profile 70 as shown in figure 4 has a longer strip between bends 72 and
74 compared to the strip between bends 48 and 50 of profile 40 in figure 3. The height
h" and working width b" of the sheet pile profile are also determined for this profile
by the distances between the bends, as is the amount of material on either side of
the neutral line.
[0016] The present invention is by no means limited to the above described preferred embodiments;
the rights sought, within the scope of which many modifications can be envisaged,
are defined by the following claims.
1. Method for manufacturing a sheet pile wall from a steel plate material (2) of predetermined
dimensions, comprising the steps of:
- defining the desired profile for the sheet pile wall to obtain a most suitable form
of a sheet pile profile for a specific location, thereby preventing over-dimensioning
of the sheet pile profile, such that the form, as well as the amount of material,
is adapted to the specific requirements associated with the specific application for
the profile,
wherein the profile is defined by calculating a width and/or height of the profile
when realizing the desired moment of resistance, and
- bending the plate material at desired locations with an angle-bending machine (16)
or folding machine in order to bend a desired profile,
wherein the desired profile is provided with interlock members (22, 42) formed by
bends (44,46 and 48) of the two ends of the profile for the purpose of coupling to
adjoining sheet piles.
2. Method as claimed in claim 1, wherein the profile is defined by minimizing a required
weight of the sheet pile wall when realizing the desired moment of resistance.
3. Method as claimed in claim 1 or 2, wherein the profile is defined by an equal amount
of material on either side of a neutral line (60) of the profile.
4. Method as claimed in one or more of the claims 1-3, wherein a Z-profile (40) or a
U-profile (20) is obtained by calculating the desired profile.
5. Method as claimed in one or more of the claims 1-4, wherein the bending of the profile
for the sheet pile wall is carried out on plate material with a thickness up to 15
mm.
6. Method as claimed in one or more of the claims 1-5, wherein a relatively low force
can be exerted on the plate material during bending of the profile compared to roll
forming of the profile.
7. Method as claimed in one or more of the claims 1-6, wherein the interlock members
are provided with about 1 mm of free play for placing of the sheet pile wall.
1. Verfahren zum Herstellen einer Spundwand aus einem Stahlplattenmaterial (2) vorgegebener
Abmessungen, mit folgenden Schritten:
- Definieren des gewünschten Profils für die Spundwand, um eine möglichst geeignete
Form eines Spundbohlenprofils für einen bestimmten Ort zu erhalten, wobei dadurch
eine ÜberDimensionierung des Spundbohlenprofils vermieden wird, derart, dass die Form
sowie die Menge an Material an die spezifischen Erfordernisse angepasst sind, die
mit der speziellen Anwendung für das Profil zusammenhängen, wobei das Profil durch
eine Berechnung einer Breite und/oder einer Höhe des Profils definiert ist, wenn das
gewünschte Widerstandsmoment realisiert wird, und
- Biegen des Plattenmaterials an gewünschten Positionen mit einer Winkelbiegemaschine
(16) oder einer Faltmaschine, um ein gewünschtes Profil zu biegen, wobei das gewünschte
Profil Verriegelungsmittel (22, 42) aufweist, die aus Biegungen (44, 46 und 48) der
zwei Enden des Profils für den Zweck des Verbindens mit benachbarten Spundbohlen geformt
sind.
2. Verfahren nach Anspruch 1, wobei das Profil durch eine Minimierung eines erforderlichen
Gewichts der Spundwand definiert wird, wenn das gewünschte Widerstandsmoment realisiert
wird.
3. Verfahren nach Anspruch 1 oder 2, wobei das Profil durch eine gleiche Menge an Material
auf jeder Seite einer neutralen Linie (60) des Profils definiert wird.
4. Verfahren nach einem oder mehreren der Ansprüche 1 bis 3, wobei ein Z-Profil (40)
oder ein U-Profil (20) durch eine Berechnung des gewünschten Profils erhalten wird.
5. Verfahren nach einem oder mehreren der Ansprüche 1 bis 4, wobei das Biegen des Profils
für die Spundwand an Plattenmaterial mit einer Dicke von bis zu 15 mm ausgeführt wird.
6. Verfahren nach einem oder mehreren der Ansprüche 1 bis 5, wobei eine relativ geringe
Kraft auf das Plattenmaterial während des Biegens des Profils im Vergleich zu einem
Rollformen des Profils ausgeübt werden kann.
7. Verfahren nach einem oder mehreren der Ansprüche 1 bis 6, wobei die Verriegelungsmittel
mit einem freien Spiel von ungefähr 1 mm für eine Anordnung der Spundwand versehen
sind.
1. Procédé pour fabriquer une paroi faite d'un empilement de tôles à partir d'un matériau
de tôle (2) de dimensions prédéterminées, comprenant les étapes consistant à :
- définir le profil souhaité pour la paroi faite d'un empilement de tôles afin d'obtenir
la forme la plus appropriée d'un profil d'empilement de tôles pour un emplacement
spécifique, empêchant ainsi le surdimensionnement du profil d'empilement de tôles,
de sorte que la forme ainsi que la quantité de matériau sont adaptées aux exigences
spécifiques associées à l'application spécifique pour le profil,
dans lequel le profil est défini en calculant une largeur et/ou une hauteur du profil
lorsque l'on réalise le moment souhaité de résistance, et
- cintrer le matériau de plaque aux emplacements souhaités avec une machine de cintrage
(16) ou une machine de pliage afin de cintrer un profil souhaité,
dans lequel le profil souhaité est prévu avec des moyens de verrouillage (22, 42)
formés par des coudes (44, 46 et 48) des deux extrémités du profil afin de se coupler
aux empilements de tôles attenants.
2. Procédé selon la revendication 1, dans lequel le profil est défini en minimisant un
poids requis de la paroi faite d'un empilement de tôles lorsque l'on réalise le moment
de résistance souhaité.
3. Procédé selon la revendication 1 ou 2, dans lequel le profil est défini par une quantité
de matériau identique de chaque côté d'une ligne neutre (60) du profil.
4. Procédé selon une ou plusieurs des revendications 1 à 3, dans lequel un profil en
Z (40) ou un profil en U (20) est obtenu en calculant le profil souhaité.
5. Procédé selon une ou plusieurs des revendications 1 à 4, dans lequel le cintrage du
profil pour la paroi faite d'un empilement de tôles est réalisé sur le matériau de
plaque avec une épaisseur allant jusqu'à 15 mm.
6. Procédé selon une ou plusieurs des revendications 1 à 5, dans lequel une force relativement
faible peut être exercée sur le matériau de plaque pendant le cintrage du profil par
rapport au formage par laminage du profil.
7. Procédé selon une ou plusieurs des revendications 1 à 6, dans lequel les éléments
de verrouillage sont prévus avec environ 1 mm de jeu pour placer la paroi faite d'un
empilement de tôles.


REFERENCES CITED IN THE DESCRIPTION
This list of references cited by the applicant is for the reader's convenience only.
It does not form part of the European patent document. Even though great care has
been taken in compiling the references, errors or omissions cannot be excluded and
the EPO disclaims all liability in this regard.
Patent documents cited in the description