Pile installing system and a method of operating the system
11613865 ยท 2023-03-28
Assignee
Inventors
Cpc classification
E02D7/28
FIXED CONSTRUCTIONS
International classification
E02D7/28
FIXED CONSTRUCTIONS
Abstract
A pile installing system for a pile including a cylindrical wall surrounding a hollow space, the system having a central cutter which is locatable at a lower end of the pile for loosening soil below the hollow space upon installing the pile into the ground and which is displaceable within the pile in longitudinal direction thereof so as to remove the central cutter from the pile after installing the pile in the ground, a peripheral cutter locatable at the lower end of the pile for loosening soil below the cylindrical wall, a soil passage for guiding loosened soil from below the cutters to the hollow space, and a soil conveying member for transporting loosened soil upwardly through the hollow space. The soil passage is located at at least one of the central and peripheral cutter at a radial distance from the cylindrical wall.
Claims
1. A pile installing system for a pile including a cylindrical wall surrounding a hollow space, the system comprising: a central cutter which is locatable at a lower end of the pile for loosening soil below the hollow space upon installing the pile into the ground and which is displaceable within the pile in longitudinal direction thereof so as to remove the central cutter from the pile after installing the pile in the ground, a peripheral cutter locatable at the lower end of the pile for loosening soil below the cylindrical wall, a soil passage for guiding loosened soil from below the central and peripheral cutters to the hollow space, and a soil conveying member for transporting loosened soil upwardly through the hollow space, wherein the peripheral cutter is mounted to a lower side of a ring-shaped section, whereas the ring-shaped section has an upper side for supporting the cylindrical wall during installing the pile, wherein the ring-shaped section including the peripheral cutter can rotate with respect to the pile.
2. The pile installing system according to claim 1, wherein the central cutter and the peripheral cutter are drivable with respect to the pile about an axis of rotation extending in longitudinal direction of the pile.
3. The pile installing system according to claim 2, wherein the central cutter and the peripheral cutter are releasably attachable to each other in at least a rotational direction about the axis of rotation.
4. The pile installing system according to claim 2, wherein the peripheral cutter is shaped such that loosened soil is directed towards the axis of rotation upon driving the peripheral cutter.
5. The pile installing system according to claim 1, wherein a tubular bearing portion is fixed to the ring-shaped section, which bearing portion fits inside the pile such that.
6. The pile installing system according to claim 1, wherein the peripheral cutter extends beyond the outer circumference of the pile.
7. . The pile installing system according to claim 1, wherein the soil passage is located between the central cutter and the peripheral cutter.
8. The pile installing system according to claim 1, wherein the soil conveying member comprises an auger, wherein the central cutter is mounted to a lower end of said auger.
9. The pile installing system according to claim 1, wherein the pile is provided with coupling members which are configured such that, upon engaging cooperating coupling members of another similar pile both piles can be moved with respect to each other in their longitudinal direction, but the piles are interlocked in at least one of rotational direction about the respective axes of rotation and lateral direction.
10. The pile installing system according to claim 9, wherein the coupling members form a dovetail joint.
11. The pile installing system according to claim 1, wherein the central cutter and the peripheral cutter are releasably attachable to each other through a bayonet coupling.
12. A method of operating a pile installing system comprising a cylindrical wall surrounding a hollow space, a central cutter positionable at a lower end of the pile and displaceable within the pile in longitudinal direction, a peripheral cutter mounted to a lower side of a ring-shaped section and locatable at a lower end of the pile, the ring-shaped section having an upper side for supporting the cylindrical wall, a soil passage for guiding loosened soil from below the cutters to the hollow space, and a soil conveying member for transporting loosened soil upwardly through the hollow space, the method comprising: locking the pile in rotational direction about the axis of rotation; and operating the central and peripheral cutters, wherein the ring-shaped section including the peripheral cutter can rotate with respect to the pile.
13. The method of claim 12, wherein the step of locking the pile in a rotational direction about the axis of rotation comprises using one or more locking members to connect to the pile.
14. The method of claim 13, wherein the one or more locking members comprise a member to lock the pile to a neighbouring pile.
15. A pile installing system for installing a pile comprising a cylindrical wall surrounding a hollow space, the system comprising: a central cutter which is locatable at a lower end of the pile and which is displaceable within the pile in a longitudinal direction thereof; a peripheral cutter locatable at the lower end of the pile, the peripheral cutter mounted to a lower side of a ring-shaped section with an upper side for supporting the cylindrical wall during installation; a soil passage for guiding loosened soil from below the cutters to the hollow space; and a soil conveying member for transporting loosened soil upwardly through the hollow space, wherein the ring-shaped section including the peripheral cutter can rotate with respect to the pile.
16. The pile installing system of claim 15, wherein a tubular bearing portion is fixed to the ring-shaped section, the bearing portion configured to fit inside the pile.
17. The pile installing system according to claim 15, wherein the peripheral cutter is shaped such that loosened soil is directed towards an axis of rotation upon driving the peripheral cutter and/or wherein the peripheral cutter extends beyond the outer circumference of the pile.
18. The pile installing system according to claim 15, wherein the soil conveying member comprises an auger.
19. The pile installing system according to claim 15, wherein the central cutter and the peripheral cutter are releasably attachable to each other.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention will hereafter be elucidated with reference to very schematic drawings showing an embodiment of the invention by way of example.
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DETAILED DESCRIPTION
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(10) The leftmost pile 1 of
(11) The central cutters 5 are located at a lower end of the pile 1 such that they loosen soil below the hollow space 2 upon installing the pile 1 into the ground. After the pile has reached a desired depth the central cutters 5 can be removed from the pile 1 together with the auger 7, since the central cutters 5 have such dimensions that they are displaceable within the pile 1 in longitudinal direction thereof.
(12) The peripheral cutters 6 are part of a ring element 9 which is depicted as a separate part in
(13) The ring element 9 is provided with a tubular bearing portion 11 which fits inside the pile 1 whereas the flange 10 is fixed to the bearing portion 11. The bearing portion 11 comprises a vertical rib 12 at an inner side thereof, which rib 12 cooperates with a notch (not shown) at one of the central cutters 5 or the auger 7 in order to couple the central cutters 5 and the peripheral cutters 6 to each other in rotational direction. The rib 12 allows the central cutters 5 and the peripheral cutters 6 to move with respect to each other in longitudinal direction of the pile 1. This means that after installing the pile 1 in the ground the central cutters 5 can be displaced upwardly with respect to the pile 1 whereas the ring element 9 including the peripheral cutters 6 can stay in the ground. The central cutters 5 and the auger 7 can be used for installing a next pile 1, whereas a new ring element 9 should be applied; this is acceptable since the ring element 9 is a relatively simple and low-cost product.
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(16) The pile installing system 4 is provided with soil passages 13 which guide loosened soil, such as sand and earth, from below the cutters 5, 6 to the hollow space 2. In the embodiment as shown the soil passages 13 are located between the central cutters 5 and the peripheral cutters 6 which surround the central cutters 5. When the loosened soil arrives at the hollow space 2 above the cutters 5, 6 it can be transported upwardly through the hollow space 2 by the auger 7.
(17) The pile installing system 4 may be part of a pile driving arrangement comprising a crane vehicle (not shown), for example. The crane vehicle may have a vertical guide along which the pile installing system 4 can slide.
(18) The invention is not limited to the embodiment shown in the drawings and described hereinbefore, which may be varied in different manners within the scope of the claims and their technical equivalents.