Patent · US10413968B2 · B2 · US
Machine and method for powder-based additive manufacturing
- (11) Publication number
- US10413968B2
- (21) Application number
- 14/418,644
- (22) Filing date
- 2013-07-31
- (30) Priority date
- 2012-07-31
- (43) Publication date
- 2019-09-17
- (45) Date of grant
- 2019-09-17
- (51) IPC
- B23K 26/34; B22F 3/00; B22F 3/105; B23K 15/00; B28B 1/00; B23K 26/342; B29C 64/153; B29C 64/20; B33Y 10/00; B33Y 30/00
- (52) CPC
- B29C Shaping or joining of plastics; shaping of material in a plastic state, not otherwise provided for; after-treatment of the shaped products, e.g. repairing: 64/153, 64/20, 64/232, 64/245, 64/25
- B22F Working metallic powder; manufacture of articles from metallic powder; making metallic powder; apparatus or devices specially adapted for metallic powder: 10/28, 10/73, 12/222, 12/49, 12/52, 12/63, 2003/1056, 2003/1058, 3/003, 3/1055
- B23K Soldering or unsoldering; welding; cladding or plating by soldering or welding; cutting by applying heat locally, e.g. flame cutting; working by laser beam: 15/0086, 26/342
- B28B Shaping clay or other ceramic compositions; shaping slag; shaping mixtures containing cementitious material, e.g. plaster: 1/001
- B33Y Additive manufacturing, i.e. manufacturing of three-dimensional [3D] objects by additive deposition, additive agglomeration or additive layering, e.g. by 3D printing, stereolithography or selective laser sintering: 10/00, 30/00
- Y02P Climate change mitigation technologies in the production or processing of goods: 10/25, 10/295
- (73) Assignee
- Compagnie Generale des Etablissements Michelin SCA; Michelin Recherche et Technique SA France
- (72) Inventors
- Frederic Pialot; Miguel Torres-Catellano; Gilles Walrand; Benoit Pourcher
- (54) Title
- Machine and method for powder-based additive manufacturing
- (57) Abstract
The machine presents a working zone that is defined in an upper part of a build sleeve which is fixedly mounted in a chassis. Within the working zone, the object is supported by a build plate which slides inside the build sleeve when driven in vertical translation by the head of an actuating cylinder which is placed along a central axis of the sleeve. The build plate is positioned inside a transport container which is arranged removably between the sleeve and the actuating cylinder. The machine also includes a means for moving the transport container vertically into contact with the build sleeve. The container is open at its top and at its bottom so that, when the actuating cylinder is actuated, the head thereof can transfer the plate between the transport container and the build sleeve which forms a build envelope around the plate.
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Claims (14)
- A machine for the additive manufacture of a three-dimensional object by sintering or melting powder using a beam of energy acting on a layer of powder comprising: a working zone, wherein the working zone is defined in an upper part of a build sleeve in which the three-dimensional object is manufactured, wherein the build sleeve has a height which defines a maximum height for the three-dimensional object to be manufactured such that the entire three-dimensional object remains in the build sleeve during manufacturing; a chassis, in which the build sleeve is fixedly mounted; a build plate which supports the three-dimensional object, and which slides inside the build sleeve when driven in vertical translation; a head of an actuating cylinder placed along the central axis of the build sleeve, and which drives the build plate in vertical translation; wherein the build plate is positioned inside a transport container which is made as a separate piece from the sleeve and which is arranged removably below a lower edge of the build sleeve and above the actuating cylinder; a raising device that is configured to move the transport container vertically upwardly into contact with the build sleeve; and wherein the transport container is open at its top and at its bottom so that, when the actuating cylinder is actuated, the head transfers the plate from the transport container to the build sleeve, which forms a build envelope around the build plate, and so that the head of the actuating cylinder are retractable out of the bottom of the transport container such that the transport container with the build plate and the three-dimensional object can be transported away from the build sleeve and away from the actuating cylinder.
- The machine according to claim 1, wherein the central axis of the actuating-cylinder head is aligned with the central axis of the build sleeve, and further comprising an indexing means for orienting the transport container relative to the chassis of the machine, and a centering means for centering between the build plate relative to the head of the actuating cylinder.
- The machine according to claim 2, wherein the raising device comprises push rods belonging to a box fixedly mounted on the chassis and which collaborate with orifices made in the bottom part of the transport container.
- The machine according to claim 2, wherein the indexing means comprises studs made on a bottom rim of the build sleeve and collaborating with openings made on a top rim of the transport container.
- The machine according to claim 2, wherein the centering means comprises two diametrically opposite orifices on a bottom face of the build plate which collaborate with protuberances situated on a frontal face of the head of the actuating cylinder.
- The machine according to claim 1, wherein the build plate slides freely inside the build sleeve and inside the transport container.
- The machine according to claim 1, wherein a sliding clearance for sliding of the build plate inside the transport container is greater than a sliding clearance for sliding of the build plate inside the build sleeve.
- The machine according to claim 1, wherein the transport container comprises a sealed flexible bellows arranged between the build plate and its bottom wall.
- The machine according to claim 1, wherein the build sleeve comprises a periphery having lateral openings outside of the working zone which are made to communicate with a transport container when it is placed underneath.
- The machine according to claim 9, wherein the transport container comprises an internal chamber for accepting the build plate, which internal chamber is surrounded by a peripheral corridor communicating at its top with the said lateral openings of the build sleeve.
- The machine according to claim 1, wherein the actuating cylinder drives the build plate via an intermediate plate.
- The machine according to claim 1, wherein the raising device includes a frame actuated in a horizontal translational movement.
- A method for the additive manufacture of a three-dimensional object by sintering or melting powder using a beam of energy acting on a layer of powder in a working zone of a machine according to claim 1, wherein the working zone is defined in the upper part of the fixed build sleeve in which the object is manufactured, the object being supported by a build plate which slides inside the build sleeve when driven in vertical translation by the head of the actuating cylinder placed along the central axis of the build sleeve, comprising: positioning the plate inside the transport container, which is open at its top and at its bottom; removably arranging the transport container between the build sleeve and the actuating cylinder vertically moving the transport container until it comes into contact with the build sleeve; and transferring the build plate between the transport container and the build sleeve which forms a build envelope around the build plate using the actuating cylinder.
- The method according to claim 13, comprising successively: bringing the build plate to the top of the build sleeve, depositing a layer of powder on the build plate, melting the powder particles using a pre-established melting strategy, repeating the depositing and melting steps layer by layer while at the same time progressively lowering the build plate down inside the build sleeve until the object is obtained, lowering the build plate and with the object out of the build sleeve and into the transport container only after the depositing and melting steps are completed, lowering the build plate to the bottom of the transport container, moving the actuating cylinder until it is detached from the build plate, and removing the transport container from the machine with the unmelted and previously melted powder particles inside the transport container.
Description
This application is a 371 national phase entry of PCT/EP2013/066130, filed 31 Jul. 2013, which claims benefit of French Patent Application No. 1257415, filed 31 Jul. 2012, the entire contents of which is incorporated herein by reference for all purposes.
1. Field
The disclosure relates to machines and methods used in powder-based additive manufacturing by sintering or melting particles of the said powder using a beam of energy, such as an electromagnetic radiation (for example a laser beam), or a beam of particles (for example an electron beam). Such a powder-based additive manufacturing method leads to a successive, layer by layer, consolidation, using a beam of energy or particles, of the selected zones of a stratum of pulverulent material, the consolidated zones corresponding to successive sections of the three-dimensional object.
More specifically, the disclosure relates to the means and methods used for transferring a three-dimensional object between an additive manufacturing workstation and a workstation for the removal of the manufactured object, more particular of the type employing an interchangeable container in which the manufactured object is situated.
2. Description of Related Art
Document WO 90/03893 describes a machine for the manufacture of a three-dimensional object by successive, layer by layer, consolidation, using a laser beam, of a pulverulent material, which uses a mobile container. The container contains the object-support plate and means for driving the vertical translational movement thereof.
Citations (21)
- US5354414A
- US5387380A
- US20070003244A1
- US6554600B1
- US6824714B1
- US20040026418A1
- US7204684B2
- DE20318721U1
- EP1704989A2
- US20070057412A1
- US20120090734A1
- WO2007003244A1
- US20080190905A1
- DE102006032025A1
- US20070026099A1
- DE102007014968A1
- DE102009015130A1
- US20120119399A1
- DE102010020416A1
- US20110293771A1
- US20130064707A1
Record as JSON
{
"publication_number": "US10413968B2",
"country": "US",
"kind": "B2",
"title": "Machine and method for powder-based additive manufacturing",
"abstract": "The machine presents a working zone that is defined in an upper part of a build sleeve which is fixedly mounted in a chassis. Within the working zone, the object is supported by a build plate which slides inside the build sleeve when driven in vertical translation by the head of an actuating cylinder which is placed along a central axis of the sleeve. The build plate is positioned inside a transport container which is arranged removably between the sleeve and the actuating cylinder. The machine also includes a means for moving the transport container vertically into contact with the build sleeve. The container is open at its top and at its bottom so that, when the actuating cylinder is actuated, the head thereof can transfer the plate between the transport container and the build sleeve which forms a build envelope around the plate.",
"claims": [
"1. A machine for the additive manufacture of a three-dimensional object by sintering or melting powder using a beam of energy acting on a layer of powder comprising: a working zone, wherein the working zone is defined in an upper part of a build sleeve in which the three-dimensional object is manufactured, wherein the build sleeve has a height which defines a maximum height for the three-dimensional object to be manufactured such that the entire three-dimensional object remains in the build sleeve during manufacturing; a chassis, in which the build sleeve is fixedly mounted; a build plate which supports the three-dimensional object, and which slides inside the build sleeve when driven in vertical translation; a head of an actuating cylinder placed along the central axis of the build sleeve, and which drives the build plate in vertical translation; wherein the build plate is positioned inside a transport container which is made as a separate piece from the sleeve and which is arranged removably below a lower edge of the build sleeve and above the actuating cylinder; a raising device that is configured to move the transport container vertically upwardly into contact with the build sleeve; and wherein the transport container is open at its top and at its bottom so that, when the actuating cylinder is actuated, the head transfers the plate from the transport container to the build sleeve, which forms a build envelope around the build plate, and so that the head of the actuating cylinder are retractable out of the bottom of the transport container such that the transport container with the build plate and the three-dimensional object can be transported away from the build sleeve and away from the actuating cylinder.",
"2. The machine according to claim 1, wherein the central axis of the actuating-cylinder head is aligned with the central axis of the build sleeve, and further comprising an indexing means for orienting the transport container relative to the chassis of the machine, and a centering means for centering between the build plate relative to the head of the actuating cylinder.",
"3. The machine according to claim 2, wherein the raising device comprises push rods belonging to a box fixedly mounted on the chassis and which collaborate with orifices made in the bottom part of the transport container.",
"4. The machine according to claim 2, wherein the indexing means comprises studs made on a bottom rim of the build sleeve and collaborating with openings made on a top rim of the transport container.",
"5. The machine according to claim 2, wherein the centering means comprises two diametrically opposite orifices on a bottom face of the build plate which collaborate with protuberances situated on a frontal face of the head of the actuating cylinder.",
"6. The machine according to claim 1, wherein the build plate slides freely inside the build sleeve and inside the transport container.",
"7. The machine according to claim 1, wherein a sliding clearance for sliding of the build plate inside the transport container is greater than a sliding clearance for sliding of the build plate inside the build sleeve.",
"8. The machine according to claim 1, wherein the transport container comprises a sealed flexible bellows arranged between the build plate and its bottom wall.",
"9. The machine according to claim 1, wherein the build sleeve comprises a periphery having lateral openings outside of the working zone which are made to communicate with a transport container when it is placed underneath.",
"10. The machine according to claim 9, wherein the transport container comprises an internal chamber for accepting the build plate, which internal chamber is surrounded by a peripheral corridor communicating at its top with the said lateral openings of the build sleeve.",
"11. The machine according to claim 1, wherein the actuating cylinder drives the build plate via an intermediate plate.",
"12. The machine according to claim 1, wherein the raising device includes a frame actuated in a horizontal translational movement.",
"13. A method for the additive manufacture of a three-dimensional object by sintering or melting powder using a beam of energy acting on a layer of powder in a working zone of a machine according to claim 1, wherein the working zone is defined in the upper part of the fixed build sleeve in which the object is manufactured, the object being supported by a build plate which slides inside the build sleeve when driven in vertical translation by the head of the actuating cylinder placed along the central axis of the build sleeve, comprising: positioning the plate inside the transport container, which is open at its top and at its bottom; removably arranging the transport container between the build sleeve and the actuating cylinder vertically moving the transport container until it comes into contact with the build sleeve; and transferring the build plate between the transport container and the build sleeve which forms a build envelope around the build plate using the actuating cylinder.",
"14. The method according to claim 13, comprising successively: bringing the build plate to the top of the build sleeve, depositing a layer of powder on the build plate, melting the powder particles using a pre-established melting strategy, repeating the depositing and melting steps layer by layer while at the same time progressively lowering the build plate down inside the build sleeve until the object is obtained, lowering the build plate and with the object out of the build sleeve and into the transport container only after the depositing and melting steps are completed, lowering the build plate to the bottom of the transport container, moving the actuating cylinder until it is detached from the build plate, and removing the transport container from the machine with the unmelted and previously melted powder particles inside the transport container."
],
"description_excerpt": "This application is a 371 national phase entry of PCT/EP2013/066130, filed 31 Jul. 2013, which claims benefit of French Patent Application No. 1257415, filed 31 Jul. 2012, the entire contents of which is incorporated herein by reference for all purposes.\n\n1. Field\n\nThe disclosure relates to machines and methods used in powder-based additive manufacturing by sintering or melting particles of the said powder using a beam of energy, such as an electromagnetic radiation (for example a laser beam), or a beam of particles (for example an electron beam). Such a powder-based additive manufacturing method leads to a successive, layer by layer, consolidation, using a beam of energy or particles, of the selected zones of a stratum of pulverulent material, the consolidated zones corresponding to successive sections of the three-dimensional object.\n\nMore specifically, the disclosure relates to the means and methods used for transferring a three-dimensional object between an additive manufacturing workstation and a workstation for the removal of the manufactured object, more particular of the type employing an interchangeable container in which the manufactured object is situated.\n\n2. Description of Related Art\n\nDocument WO 90/03893 describes a machine for the manufacture of a three-dimensional object by successive, layer by layer, consolidation, using a laser beam, of a pulverulent material, which uses a mobile container. The container contains the object-support plate and means for driving the vertical translational movement thereof.",
"cpc": [
"B29C 64/153",
"B22F 10/28",
"B22F 10/73",
"B22F 12/222",
"B22F 12/49",
"B22F 12/52",
"B22F 12/63",
"B22F 2003/1056",
"B22F 2003/1058",
"B22F 3/003",
"B22F 3/1055",
"B23K 15/0086",
"B23K 26/342",
"B28B 1/001",
"B29C 64/20",
"B29C 64/232",
"B29C 64/245",
"B29C 64/25",
"B33Y 10/00",
"B33Y 30/00",
"Y02P 10/25",
"Y02P 10/295"
],
"ipc": [
"B23K 26/34",
"B22F 3/00",
"B22F 3/105",
"B23K 15/00",
"B28B 1/00",
"B23K 26/342",
"B29C 64/153",
"B29C 64/20",
"B33Y 10/00",
"B33Y 30/00"
],
"assignees": [
"Compagnie Generale des Etablissements Michelin SCA",
"Michelin Recherche et Technique SA France"
],
"inventors": [
"Frederic Pialot",
"Miguel Torres-Catellano",
"Gilles Walrand",
"Benoit Pourcher"
],
"filing_date": "2013-07-31",
"publication_date": "2019-09-17",
"grant_date": "2019-09-17",
"priority_date": "2012-07-31",
"application_number": "US-201314418644-A",
"family_id": "47227946",
"cited_by_count": 16,
"citations": [
"US5354414A",
"US5387380A",
"US20070003244A1",
"US6554600B1",
"US6824714B1",
"US20040026418A1",
"US7204684B2",
"DE20318721U1",
"EP1704989A2",
"US20070057412A1",
"US20120090734A1",
"WO2007003244A1",
"US20080190905A1",
"DE102006032025A1",
"US20070026099A1",
"DE102007014968A1",
"DE102009015130A1",
"US20120119399A1",
"DE102010020416A1",
"US20110293771A1",
"US20130064707A1"
]
}
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