Three-dimensional (3d) object printing based on build material permeability
US-2021023795-A1 · Jan 28, 2021 · US
US2025153246A1 · US · A1
| Field | Value |
|---|---|
| Publication number | US-2025153246-A1 |
| Application number | US-202318839030-A |
| Country | US |
| Kind code | A1 |
| Filing date | Feb 15, 2023 |
| Priority date | Feb 21, 2022 |
| Publication date | May 15, 2025 |
| Grant date | — |
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A gas management system for binder jetting additive manufacturing from build material powder includes a first volume at least partly within a binder jet printer that contains gas at a first pressure. A second volume encloses a plurality of process modules configured to deposit and bind build material powder. The second volume contains gas at a second pressure. A boundary between the first and second volumes includes a partition providing separation between the volumes and controls gaseous communication between them. A gas management system maintains a conditioned environment within the second volume during printing by selectively providing an inflow of process gas to the second volume. Process gas flows from the first volume to the second volume. The first pressure of the gas in the first volume is greater than the second pressure of the gas in the second volume.
Opening claim text (preview).
What is claimed: 1 . A system for binder jet additive manufacturing from build material powder, comprising: a first volume at least partly within a binder jet printer containing gas at a first pressure; a second volume within the binder jet printer that encloses a plurality of process modules configured to deposit and bind build material powder during an additive manufacturing process, the second volume containing gas at a second pressure; a boundary between the first volume and the second volume, the boundary including a partition providing separation between the first volume and the second volume, the partition controlling gaseous communication between the first volume and second volume; and a gas management system configured to maintain a conditioned environment within the second volume during the process of additive manufacturing from a build material powder by selectively providing to the second volume an inflow of process gas, at least some amount of the flow of process gas originating from the first volume and flowing across the boundary; and wherein the first pressure of the gas in the first volume is greater than the second pressure of the gas in the second volume. 2 . The gas management system of claim 1 wherein the inflow of process gas includes an amount of gas recycled from the second volume. 3 . The gas management system of claim 1 wherein the inflow of process gas is provided by an external gas source. 4 . The gas management system of claim 1 wherein the first volume and the second volume are at least partially isolated from one another by bellows at the boundary. 5 . The gas management system of claim 4 wherein the bellows are constructed from an electrostatic-dispersive material. 6 . The gas management system of claim 1 wherein the plurality of process modules includes a printhead mounted to a carriage and having a compressible seal therebetween. 7 . The gas management system of claim 1 , further comprising: a z-lift enclosure accessible to a printing chamber of the binder jet printer via an aperture and configured to deliver a work surface of a build box to the printing chamber. 8 . The gas management system of claim 7 wherein the gas management system is configured to maintain a conditioned environment in the z-lift enclosure independently of the second volume. 9 . The gas management system of claim 1 wherein a gas pressure in the second volume is higher than a pressure of an ambient environment surrounding the second volume. 10 . The gas management system of claim 1 wherein gas pressure in the second volume is lower than a pressure of an ambient environment the second volume. 11 . The gas management system of claim 1 wherein the second volume is a sealable printing chamber sealed via a plurality of multi-pane doors. 12 . The gas management system of claim 11 wherein the multi-pane doors include a set of inner panes constructed from an electrostatically dispersive transparent material and a set of outer panes constructed from polycarbonate. 13 . The gas management system of claim 12 wherein the inner pane and outer pane are spaced apart a distance sufficient to store a set of gloves connected to a set of glove ports in the outer pane. 14 . The gas management system of claim 11 , further comprising: wherein the plurality of multi-pane doors include a center door and a first side door and a second side door, wherein the center door is configured to only be closeable when the first side door and the second side door are closed, and wherein the first side door and second side door are configured to only be openable when the center door is open; and a lock out device configured to lock the center door during the binder jetting additive manufacturing process. 15 . The gas management system of claim 8 , further comprising a pressure equalization tube between the second volume and the z-lift enclosure.
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