Coater apparatus and method for additive manufacturing
US-2017057013-A1 · Mar 2, 2017 · US
US11364678B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11364678-B2 |
| Application number | US-201615737353-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jul 8, 2016 |
| Priority date | Jul 13, 2015 |
| Publication date | Jun 21, 2022 |
| Grant date | Jun 21, 2022 |
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A method of manufacturing an object comprises applying a layer of building material in powder form having a predetermined thickness onto a layer of the building material already previously applied which has been solidified in a region corresponding to a cross section of the object. A recoater is moved in a direction across the layer already previously applied, and the building material is solidified in a shape corresponding to a cross section of the object. Prior to the application of a layer, for a solidified region having a thickness in the layer applied before, the maximum of the product of the extension of this region in movement direction of the recoater and the thickness is determined and during the application of the layer, at least an additional powder amount proportional to the value of the maximum is additionally provided.
Opening claim text (preview).
The invention claimed is: 1. A metering device for use in a manufacturing device for manufacturing a three-dimensional object by a layer-by-layer solidification of a building material in powder form within a build area, the metering device comprising: a recoater movable across the build area for applying a layer of the building material in the build area and having a long axis extending across the build area; a plurality of storage chambers adjacently arranged in a direction perpendicular to a movement direction of the recoater and along the long axis of the recoater, a plurality of the storage chambers are each subdivided into partial chambers in the movement direction of the recoater; a controller that controls the movement of the recoater and discharge of the building material in powder form to respectively selectively feed from a bottom of each of the partial chambers, wherein the storage chambers subdivided into the partial chambers in the movement direction of the recoater are mounted for movement of the storage chambers relative to the recoater long axis, the bottom of each of the partial chambers is thereby selectably movable in the movement direction of the recoater and positionable above an outlet opening provided in the recoater, through which the building material is fed to the build area during the application. 2. The metering device according to claim 1 , wherein the storage chambers are configured such that they can feed volumes of the building material in powder form different from one another in the direction perpendicular to the movement direction for an application of a layer by the recoater. 3. The metering device according to claim 2 , wherein a building material feeding is switchable on and/or off in at least one of the storage chambers during the movement of the recoater. 4. The metering device according to claim 1 , wherein a plurality of the storage chambers are movable together. 5. The metering device according to claim 1 , wherein the outlet opening provided in the recoater is subdivided into a plurality of outlet openings adjacently arranged perpendicular to the movement direction. 6. The metering device according to claim 1 , wherein the movement of a storage chamber for positioning the bottoms of its partial chambers above the outlet opening is implemented by moving the storage chambers parallel to the movement direction of the recoater. 7. A metering device for use in a manufacturing device for manufacturing a three-dimensional object by layer-by-layer solidification of a building material in powder form within a build area, the metering device comprising: a recoater movable across the build area for applying a layer of the building material in the build area and having a long axis extending across the build area; a plurality of storage chambers adjacently arranged perpendicular to the movement direction of the recoater and along the long axis of the recoater, the plurality of the storage chambers are each subdivided into partial chambers in the movement direction of the recoater and the building material in powder form can be respectively selectively fed from the partial chambers, wherein the storage chamber subdivided into the partial chambers in the movement direction of the recoater is configured such that, by a movement of the storage chambers relative to the recoater long axis, the bottom of each of the partial chambers is selectably movable in the movement direction of the recoater and positionable above an outlet opening provided in the recoater, through which the building material is fed to the build area during the application, wherein the movement of a storage chamber for positioning the bottoms of its partial chambers above the outlet opening is implemented by a pivoting of the storage chamber about a pivot axis extending perpendicular to the movement direction of the recoater. 8. A metering device for use with a recoater for manufacturing a three-dimensional object by layer-by-layer solidification of a building material in powder form within a build area, the solidification process involving scanning an energy beam over a planar build area surface to melt powder in a layer corresponding to a cross section of the object, the melted powder thereby leaving a depression contour in the planar build surface, comprising: the recoater having a long axis extending across the build area surface, and including a plurality of powder storage chambers adjacently arranged along the long axis; the powder storage chambers having an outlet for release of powder, the outlets being independently controlled to deliver powder to the build area surface; and a powder metering controller including a control unit which is configured to provides a determination of where the depression contour exists in a layer, the control unit operating outlets in an application of a next overlying layer by the recoater to selectively apply more powder than is otherwise being supplied for a next overlying layer so as to fill the depression contour to thereby establish a planar build area surface for the next overlying layer while minimizing powder for the next overlying layer. 9. The metering device according to claim 3 , wherein a building material feeding is switchable on and/or off in all storage chambers, during the movement of the recoater.
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