Powder regulating device
US-2024316648-A1 · Sep 26, 2024 · US
US2020031043A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2020031043-A1 |
| Application number | US-201816495958-A |
| Country | US |
| Kind code | A1 |
| Filing date | Mar 8, 2018 |
| Priority date | Mar 24, 2017 |
| Publication date | Jan 30, 2020 |
| Grant date | — |
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The invention relates to a device (1) for producing three-dimensional workpieces (15), comprising a carrier (7) for receiving raw material powder (9), a build chamber wall (11, 11a, 11b) which extend substantially vertically and which is adapted to laterally delimit and support the raw material powder (9) applied to the carrier (7); an irradiation unit (17) for selectively irradiating the raw material powder (9) applied to the carrier (7) with electromagnetic radiation or particle radiation in order to produce on the carrier (7) a workpiece (15) manufactured from the raw material powder (9) by an additive layer building method, wherein the irradiation unit (17) comprises at least one optical element; and a vertical movement device (31) which is adapted to move the irradiation unit (17) vertically relative to the carrier (7). The build chamber wall (11, 11a, 11b) and the carrier (7) are adapted to be connected to one another in a stationary manner during the vertical movement of the irradiation unit (17) so that the vertical movement takes place relative to the carrier (7) and relative to the build chamber wall (11, 11a, 11b).
Opening claim text (preview).
1 - 14 . (canceled) 15 . A device for producing three-dimensional workpieces, comprising: a carrier for receiving raw material powder, a build chamber wall which extends substantially vertically and which is adapted to laterally delimit and support the raw material powder applied to the carrier, an irradiation unit for selectively irradiating the raw material powder applied to the carrier with electromagnetic radiation or particle radiation in order to produce on the carrier a workpiece manufactured from the raw material powder by an additive layer building method, wherein the irradiation unit comprises at least one optical element, and a vertical movement device which is adapted to move the irradiation unit vertically with respect to the carrier, wherein the build chamber wall and the carrier are adapted to be connected to one another in a stationary manner during the vertical movement of the irradiation unit so that the vertical movement takes place relative to the carrier and relative to the build chamber wall, wherein the build chamber wall is rigidly connected to the carrier and to a base of the device, or wherein the build chamber wall is detachably connected to the carrier and to the base and is adapted to be detached from the carrier on completion of a build process, in order to remove the finished workpiece. 16 . The device as claimed in claim 15 , wherein the build chamber wall is adapted to laterally surround the raw material powder applied to the carrier completely and to delimit and support the raw material powder on all sides. 17 . The device as claimed in claim 15 , further comprising a powder application device which is adapted to apply the raw material powder layer by layer to the carrier. 18 . The device as claimed in claim 17 , wherein the vertical movement device is adapted to move the irradiation unit vertically together with the powder application device. 19 . The device as claimed in claim 3 , further comprising a further vertical movement device which is mechanically independent of the vertical movement device and which is adapted to move the powder application device vertically. 20 . The device as claimed in claim 15 , further comprising a control unit which is adapted to control the vertical movement device in such a manner that the irradiation unit is vertically adjustable in terms of its height relative to the carrier and relative to the build chamber wall according to a desired thickness of a respective raw material powder layer that is to be applied. 21 . The device as claimed in claim 15 , further comprising at least one gas inlet which is adapted to direct a gas into a build chamber defined by the build chamber wall, and at least one gas outlet which is adapted to draw in the gas introduced from the gas inlet, wherein the gas inlet and the gas outlet are in particular adapted to generate a gas stream flowing substantially parallel to the carrier. 22 . The device as claimed in claim 21 , wherein the vertical movement device is adapted to move the irradiation unit vertically together with the gas inlet and the gas outlet. 23 . The device as claimed in claim 15 , wherein the device comprises a plurality of irradiation units arranged side by side, each of which comprises at least one optical element and each of which is adapted to scan an electromagnetic beam or a particle beam over the raw material powder, and wherein the vertical movement device is adapted to move the plurality of irradiation units together vertically with respect to the carrier. 24 . The device as claimed in claim 15 , further comprising a horizontal movement device which is adapted to move the irradiation unit horizontally with respect to the carrier and with respect to the raw material powder applied to the carrier. 25 . The device as claimed in claim 24 , wherein the device comprises a plurality of build chambers arranged side by side, each of which has a build chamber wall which laterally surrounds the respective build chamber, and a carrier, and wherein the horizontal movement device is adapted to move the irradiation unit from a first build chamber of the plurality of build chambers to a second build chamber of the plurality of build chambers. 26 . The device as claimed in claim 25 , further comprising a control unit which is adapted to control the horizontal movement device in such a manner that the irradiation unit, on completion of a first build process in the first build chamber, is moved horizontally to the second build chamber, and then to control the irradiation unit in such a manner that it begins a new build process in the second build chamber. 27 . A method for producing three-dimensional workpieces, comprising: applying raw material powder to a carrier, wherein the raw material powder applied to the carrier is laterally delimited and supported by a build chamber wall extending substantially vertically, selectively irradiating the raw material powder applied to the carrier with electromagnetic radiation or particle radiation by an irradiation unit in order to produce on the carrier a workpiece manufactured from the raw material powder by an additive layer building method, wherein the irradiation unit comprises at least one optical element, and moving the irradiation unit vertically with respect to the carrier by means of a vertical movement device, while the build chamber wall and the carrier are connected to one another in a stationary manner, so that the vertical movement takes place relative to the carrier and relative to the build chamber wall, wherein the build chamber wall is rigidly connected to the carrier and to a base, or wherein the build chamber wall is detachably connected to the carrier and to the base and is detached from the carrier on completion of a build process, in order to remove the finished workpiece. 28 . The method as claimed in claim 27 , further comprising: moving the irradiation unit horizontally from a first build chamber to a second build chamber by means of a horizontal movement device, on completion of a build process in the first build chamber, and beginning a build process in the second build chamber.
for motion along the axis orthogonal to the plane of a layer · CPC title
Processes of additive manufacturing · CPC title
Apparatus for additive manufacturing; Details thereof or accessories therefor · CPC title
using an environment other than air, e.g. inert gas · CPC title
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