Claims
- 1. Method for assembling a sheet pile and a beam, comprising following steps:
- providing the sheet pile having a standard hook-type interlocking element;
- providing the beam having a beam flange with an initially flat edge;
- providing on said initially flat flange edge a longitudinal succession of bulges protruding with respect to said beam flange, so as to transform said initially flat flange edge in an undulating flange edge;
- providing an asymmetric connection section incorporating on one side a groove which widens from outside to inside, and on a side opposite to the groove a standard hook-type interlocking element complementary to said standard hook-type interlocking element of said sheet pile;
- sliding said connection section over said undulating flange edge, so that said protruding bulges are received in said groove with ability to lock the connection section laterally onto the undulating flange edge; and
- locking said standard hook-type interlocking element of said sheet pile with said hook-type interlocking element of said connection section to form a standard hook-type sheet pile joint.
- 2. Method according to claims 1, wherein said sheet pile is a Z-shaped sheet pile and said standard hook-type interlocking elements are "LARSSEN" type interlocking elements.
- 3. Method according to claim 1, wherein said beam flange is given an undulating profile with the longitudinal succession of bulges protruding alternately from two faces of the flange, and the groove has a plane of symmetry, so that the connection section can be turned through 180.degree. to be mounted in two different positions onto said undulating flange edge, and wherein said standard hook-type interlocking element of said connection section is asymmetrical with regard to said plane of symmetry.
- 4. Method according to claim 3, wherein said standard hook-type interlocking element of the connection section and said standard hook-type interlocking element of the sheet pile both have an edge formed as a hook, and an abutment surface positioned opposite the hook and defining with said hook an opening to an inner chamber.
- 5. Method according to claim 4, wherein the connection section comprises a body which has a C-shaped transverse cross-section and which defines said groove, and said hook is positioned on this body in such a way that the back of the "C" defines said abutment surface.
- 6. Method according to claim 4, wherein the following condition is satisfied:
- z=(c-e)/2
- wherein z is the distance between said plane of symmetry of said groove and the bottom of said inner chamber; c is the width of said hook of said sheet pile; e is the thickness of the hook of said sheet pile in the part of it parallel to a sheet pile flange.
- 7. Method according to claim 6, wherein said sheet pile is a Z-shaped sheet pile and said standard hook-type interlocking elements are "LARSSEN" type interlocking elements.
- 8. Method according to claim 1, further comprising a step of welding said connection section received on said undulating flange edge to the latter.
- 9. Method according to claim 1, further comprising a step of mechanically deforming said connection section received on said undulating flange edge so as to create within said groove longitudinal abutments behind said bulges of said flange edge.
- 10. Method for erecting a supporting wall, comprising following steps:
- providing a sheet pile having a standard hook-type interlocking element;
- providing a beam having a beam flange with an initially flat flange edge;
- providing on said initially flat flange edge a longitudinal succession of bulges protruding with respect to said beam flange so as to transform said initially flat flange edge in an undulating flange edge;
- providing an asymmetric connection section incorporating on one side a groove which widens from the outside to the inside, and on a side opposite said groove a standard hook-type interlocking element complementary to said standard hook-type interlocking element of the sheet pile;
- sliding the connection section over the undulating flange edge, so that said protruding bulges are received in said groove with ability to lock the connection section laterally onto said undulating flange edge;
- locking said connection section in a longitudinal direction with respect to the beam flange;
- driving the beam prepared in this way partially into a ground;
- locking said standard hook-type interlocking element of the sheet pile into said standard hook-type interlocking element of the connection section;
- driving said sheet pile into the ground to form a standard hook-type sheet pile joint between said sheet pile and said connection section; and
- repeating the above steps as often as necessary to erect a combined supporting wall.
- 11. Method according to claim 10, wherein said sheet pile is a Z-shaped sheet pile and said standard hook-type interlocking elements are "LARSSEN" hook-type interlocking elements.
- 12. Method according to claim 10, wherein said beam flange is given an undulating profile with the longitudinal succession of bulges protruding alternately from two faces of the flange, and the groove has a plane of symmetry, so that the connection section can be turned through 180.degree. to be mounted in two different positions onto said undulating flange edge, and wherein said standard hook-type interlocking element of said connection section is asymmetrical with regard to said plane of symmetry.
- 13. Method according to claim 12, wherein said standard hook-type interlocking element of the connection section and said standard hook-type interlocking element of the sheet pile both have an edge formed as a hook, and an abutment surface positioned opposite said hook and defining with the hook an opening to an inner chamber.
- 14. Method according to claim 13, wherein the connecting section comprises a body which has a C-shaped transverse cross-section and which defines said groove, and said hook is positioned on this body in such a way that the back of the "C" defines said abutment surface.
- 15. Method according to claim 14, wherein the following condition is satisfied:
- z=(c-e)/2
- wherein z is the distance between said plane of symmetry of the groove and the bottom of said inner chamber; c is the width of the hook of said sheet pile; and e is the thickness of the hook of said sheet pile in the part of it parallel to a sheet pile flange.
- 16. Method according to claim 15, wherein said sheet pile is a Z-shaped sheet pile and said standard hook-type interlocking elements are "LARSSEN" type interlocking elements.
- 17. Method according to claim 10, wherein the locking of said connection section in the longitudinal direction with respect to said beam flange is provided by welding said connection section received on said undulating flange edge to the latter.
- 18. Method according to claim 10, wherein the locking of said connection section in the longitudinal direction with respect to said beam flange is provided by mechanically deforming said connecting section received on said undulating flange edge so as to create within the groove longitudinal abutments behind the bulges of said flange edge.
- 19. A section for connecting a flange of Z-shaped sheet pile having an interlocking hook forming either a standard bent LARSSEN type interlocking element or a standard straight LARSSEN type interlocking element to a beam flange, said section comprising:
- on one side, a body having a C-shaped transverse cross-section, said body defining a groove adapted for receiving and interlocking an edge of said beam flange, said groove widening from outside to inside and having a plane of symmetry;
- on the opposite side, an interlocking hook which is complementary to said LARSSEN type interlocking hook, said interlocking hook of the connection section being formed on said body so that the back of said C-shaped body defines with the hook an opening to an inner chamber; wherein the following condition is satisfied:
- z=(c-e)/2
- wherein z is the distance between said plane of symmetry of said groove and the bottom of said inner chamber;
- c is the width of the hook of the sheet pile; and
- e is the thickness of the part of said hook of the sheet pile that is parallel to a sheet pile flange;
- so that it is possible to use said section in a first position on said flange edge to connect the standard Z-shaped sheet pile with its bent LARSSEN type interlocking element to the beam flange, and to use said section turned through 180.degree. in a second position on said flange for connecting the standard Z-shaped sheet pile with its straight LARSSEN type interlocking element to the beam flange, while ensuring in both cases that the outer face of the flange of the Z-shaped sheet pile lies substantially in the same plane.
Priority Claims (1)
Number |
Date |
Country |
Kind |
88 743 |
Apr 1996 |
LUX |
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Parent Case Info
This is a continuation of International Application PCT/EP97/01439, with an international filing date of Mar. 21, 1997, now abandoned.
US Referenced Citations (9)
Foreign Referenced Citations (2)
Number |
Date |
Country |
869950 |
Dec 1978 |
BEX |
0 072 118 |
Feb 1983 |
EPX |
Continuations (1)
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Number |
Date |
Country |
Parent |
PCTEP9701439 |
Mar 1997 |
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