BORING MACHINE FOR PRODUCING A NON-RECTILINEAR TRENCH
20200291603 ยท 2020-09-17
Inventors
Cpc classification
E02D17/13
FIXED CONSTRUCTIONS
E02F3/188
FIXED CONSTRUCTIONS
E02F3/205
FIXED CONSTRUCTIONS
E02D17/06
FIXED CONSTRUCTIONS
International classification
E02F3/24
FIXED CONSTRUCTIONS
E02F3/18
FIXED CONSTRUCTIONS
Abstract
The disclosure relates to a boring machine for producing a trench in the ground, comprising a chassis that extends in a longitudinal direction, the chassis having a lower end, the machine including a boring device mounted at the lower end of the chassis, the boring device including: a first boring member which is rotary about a first axis of rotation; a second boring member which is rotary about a second axis of rotation, the second axis of rotation and the first axis of rotation extending in a plane perpendicular to the longitudinal direction;
wherein the first axis of rotation is inclined with respect to the second axis of rotation.
Claims
1-16. (canceled)
17. A boring machine for producing a trench in the ground, comprising a chassis that extends in a longitudinal direction, said chassis having a lower end, the machine including a boring device mounted at the lower end of the chassis, the boring device including: a first boring member which is rotary about a first axis of rotation; a second boring member which is rotary about a second axis of rotation; wherein the first axis of rotation is inclined with respect to the second axis of rotation.
18. The boring machine as claimed in claim 17, wherein at least the first boring member has a truncated cone shape.
19. The boring machine as claimed in claim 18, wherein the first boring member includes at least one cutting drum of truncated cone shape which is rotary about the first axis of rotation.
20. The boring machine as claimed in claim 19, wherein the cone angle of the first cutting drum is substantially equal to the angle of inclination between the first and second axes of rotation.
21. The boring machine as claimed in claim 20, wherein the first cutting drum includes a cylindrical body having a peripheral face extending between a first side and a second side, opposite the first side, and wherein the peripheral face is equipped with cutting teeth, the radial heights of which vary in an increasing manner from the first side toward the second side.
22. The boring machine as claimed in claim 19, wherein the first boring member further includes a second cutting drum of truncated cone shape, rotary about the first axis of rotation.
23. The boring machine as claimed in claim 22, wherein the boring device includes a first motor arranged in the first and second cutting drums in order to rotationally drive the first boring member about the first axis of rotation.
24. The boring machine as claimed in claim 18, wherein the second boring member has a truncated cone shape.
25. The boring machine as claimed in claim 19, wherein the first boring member and the second boring member have truncated core shapes and wherein the second boring member includes at least a third cutting drum of truncated cone shape identical to the first cutting drum, the third cutting drum being rotary about the second axis of rotation.
26. The boring machine as claimed in claim 25 and wherein the first boring member further includes a second cutting drum of truncated core shape, rotary about the first axis of rotation, and wherein, the second boring member further includes a fourth cutting drum of truncated cone shape identical to the second cutting drum, the fourth cutting drum being rotary about the second axis of rotation.
27. The boring machine as claimed in claim 26, wherein the boring device includes a second motor arranged in the third and fourth cutting drums in order to rotationally drive the second boring member about the second axis of rotation.
28. The boring machine as claimed in claim 26, wherein the greatest distance between the cutting teeth of the first boring member and the cutting teeth of the second boring member is less than or equal to 2 cm.
29. The boring machine as claimed in claim 17, wherein an angle of inclination between the first and second axes of rotation is between 2 and 30.
30. A method for construction of a diaphragm wall, wherein at least a first primary panel is produced in the ground, at least a second primary panel is produced in the ground, distant from the first primary panel, the second primary panel being inclined with respect to the first primary panel, then a secondary panel is produced between the first and second primary panels, by milling the lateral edges of the first and second primary panels using the boring machine as claimed in any of the preceding claims.
31. The construction method as claimed in claim 30, wherein the first primary panel is produced using the boring machine as claimed in claim 17.
32. The construction method as claimed in claim 30, wherein the diaphragm wall is curved or ring-shaped.
Description
BRIEF DESCRIPTION OF THE DRAWINGS
[0050] The disclosure will be better understood on reading the following description of an embodiment of the disclosure given by way of non-limiting example, with reference to the appended drawings, wherein:
[0051]
[0052]
[0053]
[0054]
[0055]
[0056]
DETAILED DESCRIPTION
[0057] In
[0058] This boring machine 10 is a cutter that is intended to produce a vertical trench R in the ground S, the trench having a horizontal section of a particular shape, which will be described below.
[0059] The boring machine 10 includes a chassis 12 which extends in a longitudinal direction A, preferably vertical. The chassis 12 extends in the longitudinal direction A between a lower end 12a and an upper end (not illustrated).
[0060] In this example, the boring machine 10 is suspended from a supporting cable (not illustrated here) which is connected in a known manner to the upper end of the chassis 12.
[0061] The boring machine 10 moreover includes a boring device 14 which is mounted at the lower end 12a of the chassis 12. The trench 11 is executed by making the boring device and the chassis vertically penetrate the ground S.
[0062] The boring device 14 includes a first boring member 16 which is rotary about a first axis of rotation B and a second boring member 18 which is rotary about a second axis of rotation C.
[0063] As can be observed in
[0064] As can be observed in
[0065] In accordance with the present disclosure, the first axis of rotation B is inclined with respect to the second axis of rotation C. This inclination is considered in the horizontal plane P.
[0066] In
[0067] It can be observed that the first boring member 16 has a truncated cone shape T, the latter being schematized by dashed lines in
[0068] It can also be seen that the first and second boring members are identical and are inclined with respect to one another by an angle corresponding to the angle of inclination between the first and second axes of rotation B,C.
[0069] The cone angle 1 of the first boring member 16 is substantially equal to the angle of inclination a between the first and second axes of rotation B, C. Similarly, the cone angle 2 of the second boring member 18 is substantially equal to the angle of inclination a between the first and second axes of rotation B, C.
[0070] Moreover, the first boring member 16 includes a first cutting drum 20 of truncated cone shape which is rotary about the first axis of rotation B.
[0071] The cone angle 1 of the first cutting drum 20 is substantially equal to the angle of inclination a between the first and second axes of rotation B, C.
[0072] The first cutting drum 20 includes a cylindrical body 22 having a peripheral face 24 which extends axially, along the first axis of rotation B, between a first side 26 and a second side 28 opposite the first side 26. It will be understood that the first and second sides 26, 28 are parallel and extend in planes perpendicular to the first axis of rotation B. The peripheral face 24 itself winds around the first axis of rotation B.
[0073] Moreover, the peripheral face 24 is equipped with cutting teeth 30,30,30 which extend radially. The cutting teeth 30, 30, 30 have radial heights which vary in an increasing manner from the first side 26 toward the second side 28.
[0074] In
[0075] Moreover, the first series of cutting teeth 30 is arranged close to the first side 26. The first cutting drum 20 moreover includes a second series of cutting teeth 30 having a radial height h, the cutting teeth 30 of the second series also extending along the circumference of the cylindrical body 22. Finally, in this non-limiting example, the first cutting drum 20 further includes a third series of cutting teeth 30, extending along the circumference of the cylindrical body 22, while being arranged close to the second side 28.
[0076] Hence, it will be understood that the second series of cutting teeth 30 is arranged between the first and third series of cutting teeth 30, 30.
[0077] It also will be understood that the radial height h is greater than the height h which is itself greater than the radial height h.
[0078] In this example, these three radial heights h, h and h are chosen such that the external geometrical envelope of the first cutting drum 20 has a truncated cone shape, the cone angle 1 of which is substantially equal to the angle of inclination .
[0079] It will therefore be understood that it is the variation of the radial heights of the cutting teeth, this variant being increasing, considered axially along the first axis of rotation, from the first side 26 toward the second side 28, which gives the first cutting drum 20 its truncated cone shape.
[0080] Without departing from the scope of the present disclosure, provision may obviously be made for a number of series of teeth less than or greater than three. Moreover, the first boring member 16 further includes a second cutting drum 32, which is also rotary about the first axis of rotation B.
[0081] The second cutting drum 32 is similar to the first cutting drum 22 and also has a truncated cone shape, the cone angle 132 of which is substantially equal to the angle 131, and therefore substantially to the angle of inclination .
[0082] The second cutting drum 32 includes a cylindrical body 34 which has a peripheral face 36 extending between a first side 38 and a second side 40. It will be understood that the first side 38 of the cylindrical body 34 of the second cutting drum 32 is adjacent to the second side 28 of the cylindrical body 22 of the first cutting drum 20.
[0083] The peripheral face 36 of the cylindrical body of the second cutting drum is also equipped with a fourth, fifth and sixth series of cutting teeth 30, 30, 30.
[0084] It will be understood that the radial heights h, h, h of the cutting teeth of the fourth, fifth and sixth series of cutting teeth 30, 30, 30, vary in an increasing manner, from the first side 38 toward the second side 40 of the cylindrical body 34 of the second cutting drum 32. In other words, the radial height h of the cutting teeth of the sixth series is greater than the radial height h of the cutting teeth of the fifth series, and is also greater than the radial height h of the cutting teeth of the fourth series.
[0085] Also, the radial heights h, h, h, h, h, h are chosen in such a way that the first boring member 16 has the truncated cone shape T of cone angle 1.
[0086] In this non-limiting example, considered in a horizontal plane, the length D1 of the small side of the first boring member 16, corresponding to the first side of the first cutting drum is in the order of 1 300 mm, whereas the length D2 of the large side of the first boring member 16, corresponding to the second side of the second cutting drum is in the order of 1 500 mm. The width L of the first boring member, corresponding to the thickness of the ring-shaped wall portion, is in the order of 1 500 mm. Such values make it possible to obtain a ring-shaped wall having an average radius of curvature in the order of 14 m.
[0087] To make the first boring member 16 rotate about the axis of rotation B, the boring device includes a first motor M1, preferably a hydraulic motor, which is arranged in the first and second cutting drums 20,32 in order to rotationally drive the first boring member about the first axis of rotation A.
[0088] The first motor M1 may be supplied by hydraulic lines which extend in the chassis 12.
[0089] As can be further seen in
[0090] Like the first boring member, the second boring member 18 includes a third cutting drum 50, of truncated cone shape, which is identical to the first cutting drum, 22, the third cutting drum 50 being rotary about the second axis of rotation C. The third drum 50 thus includes cutting teeth identical to those of the first cutting drum 22.
[0091] The second boring member 18 further includes a fourth cutting drum 52, of truncated cone shape, which is identical to the second cutting drum. Moreover, the fourth cutting drum is rotary about the second axis of rotation C.
[0092] Moreover, the boring device further includes a second motor M2 arranged in the third and fourth cutting drums 50,52 in order to rotationally drive the second boring member 18 about the second axis of rotation C. Here again the second motor M2 may be a hydraulic motor, moreover known.
[0093] It is specified here that the rotational driving of the cutting drums, using hydraulic motors, is already known in the case where the axes of rotation of the boring members are mutually parallel.
[0094] According to another advantageous aspect of the disclosure, the greatest distance d between the cutting teeth of the first boring member and the cutting teeth of the second boring member, illustrated in
[0095] Moreover, the angle of inclination a between the first and second axes of rotation B, C is in this example, in the order of 6 to 8.
[0096] Without departing from the scope of the disclosure, provision may be made for a range of values between 2 and 30 according to the type of structure that one wishes to produce.
[0097] In
[0098] In
[0099] The wall portion illustrated in
[0100] Then, a secondary panel 104 is produced between the first and second primary panels 100, 102 by milling the lateral edges 106, 108 of the first and second primary panels using the boring machine 10 according to the disclosure.
[0101] Preferably, in this example, the first primary panel, along with the second primary panel, are produced using the machine according to the disclosure.
[0102] In this example, the trenches of the primary panels are bored under drilling mud, before being filled with concrete during the raising of the boring device.
[0103] It will be understood that the construction method according to the disclosure notably makes it possible to produce the ring-shaped diaphragm wall 200 illustrated in