Drilling machine
10844570 · 2020-11-24
Assignee
Inventors
- Sara Cascarino (Rueil Malmaison, FR)
- Daniel Perpezat (Rueil Malmaison, FR)
- Laurent Pivert (Rueil Malmaison, FR)
- Régis Bernasinski (Rueil Malmaison, FR)
Cpc classification
E02D17/04
FIXED CONSTRUCTIONS
E02D17/13
FIXED CONSTRUCTIONS
International classification
Abstract
A drilling machine (10) for making an excavation in ground (S) in a vertical drilling direction (F). The drilling machine (10) includes: a support (12) having a longitudinal direction (L); a drilling module (14) provided with cutter members (16), the drilling module being movable in translation relative to the support; and a movement device arranged between the support and the drilling module in order to move the drilling module (14) relative to the support along the longitudinal direction of the support. The machine is characterized by the fact that the movement device includes a damper (70) for damping the vibration generated by the drilling module while drilling.
Claims
1. A drilling machine for making an excavation in ground in a drilling direction that is substantially vertical, said drilling machine comprising: a support having a longitudinal direction; a drilling module provided with cutter members, the drilling module being movable in translation relative to the support along the longitudinal direction of the support; and a movement device including at least one hydraulic jack arranged between the support and the drilling module in order to move the drilling module relative to the support along the longitudinal direction of the support; wherein the movement device includes a damper assembly for damping the vibration generated by the drilling module while drilling, said damper assembly comprising a hydraulic damper device separate from the hydraulic jack and in fluid flow connection with the hydraulic jack of the movement device.
2. The drilling machine according to claim 1, wherein the hydraulic damper device comprises a spring accumulator which receives compressed hydraulic fluid from the hydraulic jack, damping a rise in pressure in the hydraulic fluid, thereby providing damping.
3. The drilling machine according to claim 1, wherein the drilling module has a bottom section carrying the cutter members, and a top section that passes longitudinally through said support, the top section being slidably mounted relative to said support and presenting a top end connected to the bottom end of a lift cable.
4. The drilling machine according to claim 3, wherein the support is a frame, the transverse dimensions of which, considered in a plane perpendicular to the longitudinal direction, are substantially equal to or less than the transverse dimensions of the drilling module, and wherein said frame includes an anchor device suitable for preventing the frame from moving relative to the walls of the excavation.
5. The drilling machine according to claim 1, wherein the damper assembly comprises a spring member arranged between the support and the drilling module.
6. The drilling machine according to claim 5, wherein the spring member comprises a coil spring.
7. The drilling machine according to claim 1, wherein the drilling module further comprises an anti-swinging device to prevent horizontal movement of the drilling module while drilling.
8. The drilling machine according to claim 7, wherein the anti-swinging device comprises deployable pads arranged on the lateral sides of the drilling module and arranged to co-operate with the walls of the excavation.
9. The drilling machine according to claim 1, further comprising a device for regulating the damping coefficient of the damper assembly.
10. The drilling machine according to claim 1, wherein the drilling machine is a milling machine having cutter members comprising two pairs of drums that are rotatable about axes of rotation that are parallel, distinct, and perpendicular to the longitudinal direction of the support.
11. A drilling machine for making an excavation in ground in a drilling direction that is substantially vertical, said drilling machine comprising: a support having a longitudinal direction; a drilling module provided with cutter members, the drilling module being movable in translation relative to the support along the longitudinal direction of the support; and a movement device including at least one hydraulic actuator arranged between the support and the drilling module in order to move the drilling module relative to the support along the longitudinal direction of the support; wherein the movement device includes a damper assembly for damping the vibration generated by the drilling module while drilling, and wherein the damper assembly comprises a spring arranged between the support and the drilling module, said spring being mounted parallel and coaxial to the hydraulic actuator.
12. A drilling machine for making an excavation in ground in a drilling direction that is substantially vertical, said drilling machine comprising: a support having a longitudinal direction and comprising a vertical boom; a drilling module having a bar provided with cutter members situated at the bottom end of said bar, the drilling module being movable in translation relative to the support along the longitudinal direction; and a movement device comprising a carriage mounted on the vertical boom to be vertically slidable along the longitudinal direction, the carriage co-operating with said bar to move the drilling module in respect of the vertical boom along the longitudinal direction, wherein the carriage includes a damper assembly for damping the vibration generated by the drilling module while drilling, and wherein the carriage comprises a first portion slidably mounted on the vertical boom, a second portion co-operating with the bar, and wherein the damper assembly is arranged between the first and second portions of the carriage.
13. The drilling machine according to claim 12, wherein the damper assembly comprises a hydraulic actuator coupled to a hydraulic damper device.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
(1) The invention can be better understood on reading the following description of embodiments of the invention given as non-limiting examples and with reference to the accompanying drawings, in which:
(2)
(3)
(4)
(5)
DETAILED DESCRIPTION OF THE INVENTION
(6)
(7) The drilling machine 10 comprises a support 12 having a longitudinal direction L that is substantially vertical in this example. The drilling machine 10 also comprises a drilling module 14 provided with cutter members 16. In this example, the drilling machine 10 is a milling machine in which the cutter members 16 comprise two pairs of drums 18, 20 provided with cutter teeth 22, the two pairs of drums 18, 20 being mounted to rotate about respective axes of rotation A, B that are parallel, distinct, and perpendicular to the longitudinal direction L of the support 12.
(8) The drilling module 14 comprises a bottom section 24 that carries the cutter members 16, and in particular the drums 18, 20. The bottom section 24 further comprises a pump module 26 that serves to suck up fragments of excavated ground in order to discharge them to the surface.
(9) The drilling module 14 also comprises an anti-swinging device 30 for preventing horizontal movement of the drilling module 14 while drilling. The anti-swinging device comprises deployable pads 32, 34 that are arranged on the lateral sides 24a, 24b of the bottom section 24 of the drilling module 14. These deployable pads are arranged to co-operate with the walls of the excavation when they are deployed horizontally. The deployable pads 32, 34 are actuated by actuators (not shown) arranged in the bottom section 24 of the drilling module 14.
(10) The drilling module 14 also comprises a top section 40 that extends vertically above the bottom section 24, the top section 40 in this example being in the form of a bar that passes longitudinally through the support 12. In this example, the support 12 is a frame that includes guide members 42 in which the top section 40 is slidably mounted. It can thus be understood that the top section 40 is mounted to slide relative to the frame 13 in a direction that is substantially vertical, whereby the drilling module 14 is movable in translation relative to the support 12.
(11) In this first embodiment, the drilling module is thus movable in translation relative to the support along the drilling module direction F, which is substantially vertical.
(12) The top section 40 of drilling module 14 presents a top end 40a that projects above the top end 12a of the support 12, this top end 40a being connected to the bottom end 50a of a lift cable 50. The lift cable 50 is connected to the top end of a carrier (not shown) that is itself known.
(13) The drilling module 10 also comprises a movement device 60 that is arranged between the support 12 and the drilling module 14 and that serves to move the drilling module 14 relative to the support 12 along the longitudinal direction of the support. In other words, the movement device serves to move the drilling module relative to the support along the drilling direction F, which is substantially vertical.
(14) In the first embodiment, the movement device 60 comprises a pair of hydraulic actuators 62, 64 that connect the support 12 to the bottom section 24 of the drilling module 14. It can thus be understood that the hydraulic actuators 62, 64 are connected to the support 12 and to the drilling module 14 in such a manner that actuating them enables the drilling module to be moved vertically relative to the support 12.
(15) In accordance with the invention, the movement device 60 further comprises damper means 70 for damping the vibration generated by the drilling module 14 while drilling.
(16)
(17) In another aspect of the invention, the frame 13 includes an anchor device 80 that is suitable for preventing the support 12 from moving relative to the walls of the excavation. The anchor device 80 comprises a plurality of deployable anchor pads referenced 82 that are configured to bear against the larger faces of the excavation in order to hold the support 12 stationary in the excavation.
(18) With reference to
(19) In this second embodiment, the damper means 170, clearly visible in
(20) Associating springs 167, 169 with the hydraulic actuators 162, 164 thus constitutes the damper means that serve to damp the damper means that have the function of damping the vibration generated by the drilling module 114 while drilling, and consequently to prevent vibration being transmitted to the support 212. Without going beyond the ambit of the invention, the springs 167, 169 could be arranged beside the hydraulic actuators 162, 164 without being coaxial about them.
(21) With reference to
(22) The cutter members 216 of the drilling module 214 are situated at the bottom end 213a of a longitudinal bar of the drilling module, traditionally referred to as a Kelly.
(23) The movement device 260 is arranged between the boom 212 and the bar 213 of the drilling module 214, and it serves to move the drilling module 214 relative to the boom 212 in the longitudinal direction L of the boom. To do this, the movement device 260 comprises a carriage 271, better seen in
(24) It can be understood that the carriage 271 is moved towards the top and bottom ends of the boom 212 by exerting traction on the cables 275 and 277, which cables are actuated by one or more winches (not shown) arranged on the carrier, such winches themselves being well known.
(25) The carriage 271 has a first portion 281 that is fastened to the boom 212 in slidable manner, the first portion 281 being connected to the end of the cable 275. The carriage 271 also has a second portion 283 that carries the bar 213 while being mounted to slide relative to the first portion of the carriage along the longitudinal direction of the bar 213.
(26) In the invention, the movement device 260 further comprises damper means 270 for damping the vibration generated by the drilling module 214 while drilling. The damper means 210 are arranged between the first and second portions 281, 283 of the carriage 271. It can be understood that in this second embodiment, it is the carriage 271 of the movement device 260 that comprises the damper means 270.
(27) In this example, the damper means 270 constitute in this example a suspension comprising one or more hydraulic dampers 262 connecting the first portion 281 to the second portion 283 of the carriage 271, these dampers being associated in parallel with springs 263.
(28) It can be understood that during drilling the vibration generated by the cutter members 216 is transmitted along the bar 213 to the second portion 283 so as subsequently to be absorbed by the damper means 270, such that the vibration is not transmitted to the first portion 281 or to the boom 212. Without going beyond the ambit of the invention, the springs 263 could be arranged beside the dampers 262 without being axial thereabout.