WATERJET CUTTING MACHINE COMPRISING A DEVICE FOR MOVING A PLATE IN A PLANE
20180001507 · 2018-01-04
Assignee
Inventors
Cpc classification
B26F1/26
PERFORMING OPERATIONS; TRANSPORTING
B26D1/02
PERFORMING OPERATIONS; TRANSPORTING
International classification
B26F3/00
PERFORMING OPERATIONS; TRANSPORTING
B26F1/26
PERFORMING OPERATIONS; TRANSPORTING
Abstract
Exemplary Embodiments of the invention relate to a device for moving a plate in a plane P parallel to same, said plate including at least two opposite edges parallel to one another, wherein it includes at least two arms parallel to one another and movable in a plane parallel to said plane P, one of said arms being directly moved by a first actuator, the other arm being driven by said first arm via a connection member, a drive member mounted on the free end of each of said two arms such as to be pivotable about an axis perpendicular to said plane P and moved by a second actuator, each drive member engaging with an actuation member arranged along one of the edges of the plate.
Claims
1-15. (canceled)
16. A movement device for moving a plate parallel to itself in a plane P, said plate comprising: at least two opposite edges parallel to each other, wherein said device further comprises at least two arms parallel to each other and able to move in a plane parallel to said plane P, one of said two arms being called the master and directly moved by a first actuator, the other then called the slave being moved by the master arm by means of a connection member connecting together said master and slave arms, said connection member being articulated at each of its ends on the master and slave arms about axes perpendicular to said plane P, a drive member mounted pivotally at one of the ends of each of said arms, about an axis perpendicular to said plane P and moved by a second actuator, the drive member associated with the master arm cooperating with an actuation member disposed along the edge of the plate and the drive member associated with the slave arm cooperating with an actuation member disposed along the other edge of the plate.
17. The movement device according to claim 16, wherein each of the two arms pivots at its end opposite to the drive member about respectively an axis perpendicular to said plane P.
18. The movement device according to claim 17, wherein the first actuator is a geared electric motor.
19. The movement device according to claim 16, wherein each of the two arms is able slide at its end opposite to the drive member in a direction D perpendicular to the two edges of the plate.
20. The movement device according to claim 19, wherein the first actuator is a linear actuator.
21. The movement device according to claim 16, wherein the connection member comprises a linear actuator affording a permanent takeup of clearance between the master and slave arms and therefore between the members for actuating the plate and the drive members.
22. The movement device according to claim 21, wherein the linear actuator is a cylinder of the single-acting type.
23. The movement device according to claim 16, wherein the members for actuating the plate are racks and in that each drive member cooperating with the associated actuation member is a notched pinion.
24. The movement device according to claim 16, wherein the master and slave arms are hollow tubes.
25. The movement device according to claim 24, wherein each second actuator is a geared electric motor supplied by a cable routed inside one of the associated master or slave arms.
26. A waterjet cutting machine comprising: at least one frame, a cutting head provided with at least one immobile nozzle secured to said frame, and a cutting table disposed under the nozzle, wherein a device for moving a plate in a plane P parallel to itself is secured to said frame, and in that at the cutting table defines said plane P of movement of the plate.
27. The waterjet cutting machine according to claim 26, wherein each nozzle is supplied with pressurised water by a rigid pipe.
28. The waterjet cutting machine according to claim 26, wherein it comprises a tank for recovering cutting water disposed under the cutting table advantageously vertically in line with the nozzle and provided at its bottom end with a discharge, and a high-pressure pumping unit disposed under the cutting table and connected to the free end of the pipe.
29. The waterjet cutting machine according to claim 26, wherein it comprises a cover hinged on the frame, making it possible to have a working area that is completely sealed and noise proof.
30. The waterjet cutting machine according to claim 29, wherein the cover is at least partly produced from a transparent material.
Description
SUMMARY DESCRIPTION OF THE FIGURES
[0022] Other advantages and features will, emerge better from the following description of a particular example embodiment, given by way of non-limitative example, of a waterjet cutting machine according to the invention, with reference to the accompanying drawings, on which:
[0023]
[0024]
[0025]
BEST WAY OF IMPLEMENTING THE TECHNICAL INVENTION
[0026] With reference to
[0027] In addition, in the following, the cutting machine 1, and more particularly the movement device 2, will be described in a position for which the plate 3 moves in a substantially horizontal plane P. It goes without saying that the cutting machine 1 or the movement device 2 can be used in any other position without departing from the scope of the present invention.
[0028] Likewise, in the following, a cutting machine 1 using water as the cutting fluid will be described. However, it goes without saying that the cutting machine 1 according to the invention can use any other type of cutting fluid without departing from the scope of the present invention.
[0029] The cutting machine 1 comprises at least one frame 4 with a roughly parallelepipedal shape, a cutting head 5 provided with at least one immobile nozzle 6 secured to said frame 4 supplied with pressurised water by a rigid pipe 7, and a roughly horizontal, cutting table 8, disposed under the nozzle 6, provided with at least one orifice at its centre to enable the cutting water jet to pass and able to receive the plate 3.
[0030] However, it will be understood clearly that, for obvious reasons of adapting the position of the nozzle 6 according to the thickness of object to be cut disposed on the plate 3, said nozzle 6 can be movable in a direction Z perpendicular to said plane P and two perpendicular axes X and Y without departing from the scope of the present invention.
[0031] The term “immobile” designates hereinafter the fact that the nozzle 6 of the cutting machine 1 according to the invention is immobile in at least said two perpendicular axes X and Y.
[0032] Moreover, the cutting machine 1 preferably comprises: [0033] a cutting-water recovery tank, not shown in the figures, disposed under the cutting table 8 advantageously vertically in line with the nozzle 6 and provided at its bottom end with a discharge that is optionally connected to an aspiration system, not shown in the figures, and [0034] a high-pressure pumping unit, not shown in the figures, disposed under the cutting table 8 and connected to the free end of the pipe 7.
[0035] The cutting machine 1 further comprises the device 2 for moving the plate 3 parallel to itself on two perpendicular axes X and Y, said plate 3, which is able to receive the product to be out, having at least two opposite edges 31, 32 parallel to each other, being at least partially perforated, and moving in abutment on a movement plane P determined by the cutting table 8 by means of pins, not shown in the figures, fixed at each of its corners.
[0036] Here “movement of the blade 3 parallel to itself” means a movement that includes no rotation of the plate 3.
[0037] Said device 2 for moving the plate 3 provided with an actuation member 33 along each of its edges 31, 32 comprises at least: [0038] two arms 21, 22 parallel to each other, each of them being mounted pivotally at one of their ends on the frame 4, about respectively a substantially vertical axis 211, 221 perpendicular to said plane P, one 21 of the two arms 21, 22 being termed the “master” and directly moved by a first actuator 23, the other 22, then termed the “slave”, being moved by the “master” arm 21 by means of a connection member 24 connecting together the “master” 21 and “slave” 22 arms, [0039] a drive member 25 mounted pivotally at the free of each of said arms 21, 22, about a substantially vertical axis 251 perpendicular to said movement plane P and moved by a second actuator 26, the drive member 25 associated with the “master” arm 21 cooperating with an actuation member 33 disposed along the edge 31 of the plate 3 and the drive member 25 associated with the “slave” arm 22 cooperating with an actuation member 33 disposed along the other edge 32 of the plate 3.
[0040] For reasons of mechanical strength and lightness, the “master” 21 and “slave” 22 arms are advantageously hollow tubes.
[0041] The first, actuator 23 is advantageously a geared electric motor with a hollow shaft making it possible to receive one of the ends of the “master” arm 21 and a reversible functioning in order to pivot the latter with precision in one direction or the other about the axis 23. This type of geared motor also has the advantage of being very compact.
[0042] According to a preferred embodiment, the members 33 actuating the plate 3 disposed along its edges 31, 32 are racks and each drive member 25 cooperating with the associated actuation member 33 is a notched pinion.
[0043] A person skilled in the art will have no difficulty in determining the form and pitch of the teeth suitable for guaranteeing precise movement of the plate 3 when the actuation members 33 rotate.
[0044] Each second actuator 26 is advantageously a geared electric motor supplied by a cable, not shown in the figures, routed inside one of the associated “master” 21 or “slave” 22 arms in order not to create retention areas that are difficult to clean and liable to retain fine particles of products sprayed when the cutting water jet impacts and liable to cause undesirable microbial development.
[0045] The connection member 24 is articulated at each of its arms on the “master” 21 and “slave” 22 arms respectively about substantially vertical, axes 241 perpendicular to said plane P. Furthermore, the connection member 24 comprises a linear actuator 242 affording a permanent takeup of clearance between the “master” 21 and “slave” 22 arms and therefore between the members 33 actuating the plate 3 and the drive members 25.
[0046] With reference to
[0047] This configuration makes it possible firstly to continuously take up the clearance between the members 33 actuating the plate 3 and the drive members 25, when the cylinder 242 is supplied, and secondly to bring out the plate 3, for example to clean it, by moving away the “master” 21 and “slave” 22 arms when the cylinder 242 is no longer supplied.
[0048] Furthermore, the return spring 243 of the cylinder 242, which holds the latter in the “retracted” position, makes it possible to preserve the position of the plate and to prevent impacts when said cylinder 242 is re-pressurised.
[0049] Moreover, the “master” 21 and “slave” 22 arms and the drive members 25 are such that the projection in a horizontal plane of their respective pivot axis 211, 221, 251 forms the four angles of a parallelogram deformable under the action of the first actuator 23.
[0050] The device 2 for moving the plate 3 further comprises a control unit, not shown in the figures, for controlling the first actuator 23 and the second actuators 26 in order to effect the movement of the plate 3 along the axes X and Y.
[0051] It will be understood clearly that the device 2 for moving the plate 3 makes it possible to produce a compact waterjet cutting machine 1 that is particularly easy to clean. This is because the configuration of said device 2 for moving the plate 3 offers the possibility firstly of confining the first and second actuators 23, 26 and the connection member 24 in housings that are substantially watertight or isolated from the cutting zone, and secondly leaving no supply cable visible in said zone.
[0052] Moreover, it will be understood clearly that, since the plate 3 moves parallel to itself on two axes X and Y, the movement device 2 is perfectly compatible with a cutting machine 1 comprising a plurality of fixed nozzles 6.
[0053] Finally, with reference to
DESCRIPTION OF OTHER EMBODIMENTS
[0054] According to a first variant embodiment shown in
[0057] However, the movement device 20 differs in that each of the two arms 21, 22 is able to slide at its end opposite to the drive member (25) in a direction D perpendicular to the two edges (31, 32) of the plate (3), said first actuator 203 then being a linear actuator able to move the “master” arm 21 in said direction D.
INDUSTRIAL APPLICABILITY
[0058] It will be understood clearly that the cutting machine 1 according to the invention can be used for cutting any other type of product in addition to food products. Likewise, it is obvious that the device 2 for moving the plate 3 according the invention can be adapted to any other type of cutting such as for example laser cutting.
[0059] Finally, it goes without saying that the examples or cutting machine 1 and device 2 for moving the plate 3 according to the invention that have just been described are merely particular illustrations, in no case limitative of the invention.