METHOD AND MACHINE FOR AUTOMATING THE LAYER-BY-LAYER MANUFACTURING OF AN OBJECT USING A SOLID-SOLID ADDITIVE MANUFACTURING METHOD
20220362988 ยท 2022-11-17
Inventors
- Cyril PELAINGRE (Mandray, FR)
- David DI GIUSEPPE (Betrichamps, FR)
- Denis CUNIN (Les Poulieres, FR)
- Hugo RICATTE (Taintrux, FR)
- Benoit DELEBECQUE (Nayemont Les Fosses, FR)
- Thomas GUILLAUME (Saint-Michel-Sur-Meurthe, FR)
- Claude BARLIER (Coinches, FR)
Cpc classification
B33Y10/00
PERFORMING OPERATIONS; TRANSPORTING
G05B19/4099
PHYSICS
Y02P90/02
GENERAL TAGGING OF NEW TECHNOLOGICAL DEVELOPMENTS; GENERAL TAGGING OF CROSS-SECTIONAL TECHNOLOGIES SPANNING OVER SEVERAL SECTIONS OF THE IPC; TECHNICAL SUBJECTS COVERED BY FORMER USPC CROSS-REFERENCE ART COLLECTIONS [XRACs] AND DIGESTS
B29C64/386
PERFORMING OPERATIONS; TRANSPORTING
B33Y30/00
PERFORMING OPERATIONS; TRANSPORTING
G05B2219/49023
PHYSICS
B33Y50/00
PERFORMING OPERATIONS; TRANSPORTING
B29C64/232
PERFORMING OPERATIONS; TRANSPORTING
B33Y40/20
PERFORMING OPERATIONS; TRANSPORTING
B29C64/147
PERFORMING OPERATIONS; TRANSPORTING
International classification
B29C64/147
PERFORMING OPERATIONS; TRANSPORTING
B29C64/232
PERFORMING OPERATIONS; TRANSPORTING
B29C64/386
PERFORMING OPERATIONS; TRANSPORTING
B33Y10/00
PERFORMING OPERATIONS; TRANSPORTING
B33Y30/00
PERFORMING OPERATIONS; TRANSPORTING
B33Y40/20
PERFORMING OPERATIONS; TRANSPORTING
B33Y50/00
PERFORMING OPERATIONS; TRANSPORTING
Abstract
A method and machine for automating the layer-by-layer manufacturing of an object according to a solid-solid additive manufacturing method, includes a vacuum table and at least one machining tool movably mounted above the table. The machine also includes a turning station having a cross member which is movable in a longitudinal direction above the table and in a vertical direction. There is a device gripping a plate mounted such that it can rotate about an axis parallel to the cross member. The machine also includes a device supporting a plate to allow the plate to be gripped on either of the two sides thereof by the device gripping the plate. There is an X and Y wedge device suitable for determining the position for, and positioning a plate, a set or a sheet.
Claims
1. A method for automating the layer-by-layer manufacturing of an object using a solid/solid additive manufacturing method, the method comprising the following steps: digital decomposition of said object along one or several axes, and a thickness, into different sheets, by digital slicing, optimized distribution in a set of said sheets on a plate of raw material, calculation of the trajectories of the cutting and/or machining tool or tools, digital slicing of the sheets, then micro-milling of the front side of the sheets of the set in finishing, turning upside down of the set, wedging, marking and positioning of the set, micro-milling in a set of the back side of the sheets, in roughing, extraction of a first sheet of the set, then displacement in a so-called horizontal XY-plane, and angular positioning of said sheet on a mounting and finishing area, deposition of glue on said first sheet, extraction of a second sheet of the set, then displacement along said XY-plane, and angular positioning of said sheet, and deposition and maintaining on said first sheet, then reproduction of the steps of gluing and extraction for each of the sheets remaining to be assembled.
2. The method, according to claim 1, wherein a step of determining the nature, the shape and the positioning of the assembling elements internal or external to the object is interposed between the step of digital breaking down of the object and that of optimized distribution in a set.
3. The method, according to claim 1, wherein each of the operations of depositing a sheet on another one after gluing is followed by a step of micro-milling on the back side, for the purpose of finishing, of removing excess material of the joint resulting from the gluing, and rectifying the defects related to stacking.
4. A machine, permitting the automation of the layer-by-layer manufacturing of an object using a solid/solid additive manufacturing method, comprising: a machining table maintained by vacuum and at least one machining tool mounted movably in displacement above said table, and a turning station comprising a cross member movable longitudinally above said table and movable vertically, carrying a means for gripping a plate mounted movably in rotation along an axis parallel to said cross member, and a means for supporting a plate designed capable of permitting the gripping of the latter by either one of its two faces, through said gripping means, and means for wedging in X- and Y-direction capable of permitting the marking and the positioning of a plate, of a set or of a sheet.
5. The machine, according to claim 4, wherein the cross member, which carries the gripping means of the turning station, is movably mounted on two benches, while a tool holder is movably mounted along a movable cross member on the same two benches.
6. The machine, according to claim 4, wherein the means for gripping a plate is carried by two movable columns.
7. The machine, according to claim 5, wherein on the tool holder can be adapted means for gripping a cut part, as well as gluing means or the like.
8. The machine, according to claim 5, wherein the machining means can also be adapted to the tool holder.
9. The machine, according to claim 5, further comprising: means for cleaning the table, which can be adapted to the tool holder.
10. The machine, according to claim 5, further comprising: an assembling area, comprising a mounting table associated with an elevator capable of maintaining the object to be manufactured at a height, which depends on the height of the machining table.
11. The machine, according to claim 10, wherein the assembling area includes comprises means for clamping the object against the mounting table during assembling and after gluing, and which cooperate with the elevator of said table in order to perform the pressing of said object.
12. The machine, according to claim 10, wherein the means for supporting a plate is retractably mounted in the machining table.
Description
BRIEF DESCRIPTION OF THE SEVERAL VIEWS OF THE DRAWINGS
[0045] The advantages and features of the method and of the machine according to the invention will become more evident from the following description, which relates to the attached drawing, which represents several non-restrictive embodiments thereof.
[0046] In the attached drawing:
[0047]
[0048]
[0049]
[0050]
[0051]
[0052]
[0053]
DETAILED DESCRIPTION OF THE INVENTION
[0054] Referring to
[0055] According to the method of the invention, the object to be reproduced will previously have been broken down digitally along one or several axes, in this case only one axis, and a thickness, into different sheets, which are arranged in a set P on the plate M, while the trajectories of the cutting and machining tool or tools have been defined.
[0056] In
[0057] In
[0058] In
[0059] In
[0060] In
[0061] Finally, in
[0062] It should be noted that, at each step, the micro-milling also permits to correct the defects along the so-called vertical Z-axis orthogonal to the XY-plane, related to the potential variations in thickness of the plates and the joint.
[0063] When referring now to
[0064] This machine 1 comprises a table 2, preferably a vacuum table, as well as a Cartesian gantry 3 comprising two benches 30 and 31 laterally and longitudinally bordering the table 2, on which can move, in the longitudinal direction, a movable cross member on which is mounted, movably along the latter, a tool holder 33, while at one end of the table 2 are stored tools 34 intended to be adapted to the tool holder 33.
[0065] It should be noted that the representation of the machine is not restrictive, it can for example be designed so that the longitudinal movements are carried out at the level of the base.
[0066] The machine 1 also includes a loading/turning station 4 cooperating with the two benches 30 and 31, and which comprises two carriages 40 and 41, movable in displacement on the benches 30 and 31, respectively, a cross member 42, movable vertically on the carriages 40 and 41, as well as in axial rotation, and carrying gripping means 43. The turning station 4 also comprises a console 44, arranged at the end of the table 2 opposite the one where tools 34 are stored, and which essentially comprises two brackets 45 spaced apart from each other in order to create a central space, permitting the passing through of the gripping means 43.
[0067] In an alternative construction, the two brackets 45 can be replaced by the teeth 46 of a retractable fork in the table 2, as shown in
[0068] When referring now to
[0069] In
[0070] In
[0071]
[0072] It should be noted that in
[0073] In
[0074] It should be noted that the mounting/stacking area and the machining area represented in the figures can be interchangeable, as represented for example in
[0075] In
[0076] When referring now to
[0077] This existing machine includes a table 5, which a movable gantry 6 is associated with, comprising two lateral posts 60 and 61, movable along the table 5, and a cross member 62, which connects them, which is thus movable above the table 5 and along which a tool holder 63 capable of gripping the machining tools 64 stored at the end of the table 5 can move.
[0078] According to the invention, the existing table 5 is complemented, in order to enable it to reproduce the method according to the invention, by the addition, on the one hand, of a gantry 3 comprising two benches 30 and 31, a movable cross member 32, intended to move a tool holder 33, which is however reserved for the operations of gripping, gluing and pressing the sheets, as well as for cleaning the table 5; and on the other hand, a turning station 4 comprising two carriages 40 and 41, a cross member 42, gripping means 43, and a console 44.
[0079] In the embodiment shown, the machine is associated externally with a machining station 7 permitting to carry out the finishing operations, and namely, but not exclusively, the removal of the extensions or trigger guards, which were used for indexing.
[0080] It should be noted that the station 7 can be advantageously be replaced by the association of a machining tool with the tool holder 33 through a tool holder with two axes of rotation, or a bi-rotating head, for machining on five axes. This configuration namely permits to integrate all the functions into the same machine.
[0081] When referring now to
[0082] On this machine is added an additional movable cross member 8, which a tool holder 80 dedicated to the gluing and handling of the sheets for assembling is associated with, so as to be able to dissociate the machining/cleaning and gluing/stacking functions. This dissociation permits a more efficient processing in a masked period.
[0083] When referring now to
[0084] Thus, in
[0085] As can be seen in more detail in
[0086] In addition, the mounting table 90 cooperates with lifting studs 91, which can pass through it through holes 92, in order to permit the extraction of the object after assembling.
[0087] When referring now to
[0088] Thus, the gripping plate 48 is turned upside down on the stack, not shown, of freshly glued sheets, positioned on the mounting table 90, while, on the one hand, flanges 93, which the assembling area includes, on the periphery of the mounting table 90, clamp the gripping plate 48, and on the other hand, the mounting table 90 associated with its elevator presses the stack from the bottom to the top.
[0089] Advantageously, the pressing force is received by the flanges 93, and not by the gantry of the loading/turning station 4.
[0090] When referring now to
[0091] When referring to
[0092] The machine shown in these figures permits to implement the method according to the invention in the same way as with the above-described machines, while being of a more compact and rigid design.