Systems, devices, and methods for three-dimensional printing
US-2015328838-A1 · Nov 19, 2015 · US
US11679560B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-11679560-B2 |
| Application number | US-201916442363-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 14, 2019 |
| Priority date | Jan 16, 2014 |
| Publication date | Jun 20, 2023 |
| Grant date | Jun 20, 2023 |
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According to one aspect there is provided an apparatus for generating a three-dimensional object. The apparatus may include a first agent distributor to selectively deliver a coalescing agent onto portions of a layer of build material, a second agent distributor to selectively deliver a coalescence modifier agent onto portions of the layer of build material, and a controller to control the first and second distributors to selectively deliver each of the agent and the coalescence modifier onto the layer of build material in respective patterns derived from data representing a slice of a three-dimensional object to be generated, in which when energy is applied to the layer of build material, the build material coalesces and solidifies to form a slice of the three-dimensional object in accordance the patterns and the three-dimensional object has mechanical object properties that are related to the patterns.
Opening claim text (preview).
The invention claimed is: 1. An apparatus for generating a three-dimensional object, comprising: a first distributor to selectively deliver a coalescing agent onto portions of a layer of build material; a second distributor to selectively deliver a coalescence modifier onto portions of the layer of build material, wherein the coalescence modifier is to reduce a degree of coalescence of the build material on which the coalescence modifier is delivered; an energy source to apply energy to the layer of build material; and a controller that controls: the first distributor to selectively deliver the coalescing agent onto build material located at portions of the layer of build material that are to be coalesced to each other and at portions of the layer of build material that are to undergo a modified degree of coalescence; the second distributor to selectively deliver the coalescence modifier onto build material located at certain portions of the layer of build material that are not to be coalesced to each other and at portions of the layer of build material that are to undergo the modified degree of coalescence, wherein the controller is to control the first distributor and the second distributor according to independent patterns derived from data representing a slice of the three-dimensional object to be generated; and the energy source to apply energy to the layer of build material, wherein application of the energy causes the build material on which the coalescing agent has been delivered to coalesce, the build material on which the coalescing agent and the coalescence modifier have been delivered to undergo the modified degree of coalescence, and does not cause the build material on which only the coalescence modifier has been delivered to coalesce. 2. The apparatus of claim 1 , wherein the controller is to control the first and second distributors to selectively deliver each of the coalescing agent and the coalescence modifier onto the layer of build material in respective patterns to cause a first portion of the layer of build materials to have first mechanical object properties and a second portion of the layer of build materials to have second mechanical object properties. 3. The apparatus of claim 1 , wherein the build material comprises a powdered metal build material. 4. The apparatus of claim 3 , wherein the coalescence modifier comprises at least one of a colloidal ink, a dye-based ink, a polymer-based ink, or a salt solution, and wherein at least one of the first and second distributors is a drop on demand thermal printhead or a drop on demand piezo inkjet printhead. 5. The apparatus of claim 1 , further comprising a build material distributor to provide a first layer of build material on a build material support, and to provide subsequent layers of build material on a previously provided layer of build material. 6. The apparatus of claim 5 , wherein the first and second distributors have a length to enable the first and second distributors to span the support and wherein at least one of the support and the distributors is moveable relative to the other to enable the coalescing agent and the coalescence modifier to be selectively deliverable to a surface of any portion of the layer of build material. 7. The apparatus of claim 5 , wherein the coalescence modifier acts to produce a mechanical separation between particles of the build material. 8. The apparatus of claim 5 , further comprising a carriage movable bi-directionally across the support on which are mounted, or on which are mountable, the first distributor to selectively deliver the coalescing agent, the second distributor to selectively deliver the coalescence modifier, and the build material distributor, the first and second distributors and the build material distributor being arranged to allow delivery of build material, coalescing agent, and coalescence modifier whilst the carriage is moving in either direction. 9. The apparatus of claim 5 , further comprising a carriage movable bi-directionally across the support on which are mounted, or on which are mountable, the first distributor to selectively deliver the coalescing agent, the second distributor to selectively deliver coalescence modifier, and a pair of build material distributors, the first and second distributors and the pair of build material distributors being arranged to allow delivery of build material, the coalescing agent, and the coalescence modifier whilst the carriage is moving in either direction. 10. The apparatus of claim 1 , wherein the first distributor is a first printhead comprising a first array of nozzles, and wherein the second distributor is a second, different, printhead comprising a second array of nozzles. 11. The apparatus of claim 1 , wherein the controller is to control the first and second distributors to selectively deliver the coalescing agent and the coalescence modifier onto a surface of the layer of build material in accordance with control data derived from a combination of data representing a slice of a three-dimensional object to be generated and data representing at least one desired object property of at least one portion of the three-dimensional object to be generated. 12. The apparatus of claim 1 , wherein at least one of the first distributor or the second distributor is to eject drops of the coalescing agent or coalescence modifier in the order of about 10 pico liters per drop. 13. The apparatus of claim 1 , wherein: the first distributor is to deliver drops of coalescing agent that are larger than drops of coalescence modifier to be delivered from the second distributor; the first distributor is to deliver drops of coalescing agent that are about the same size as the drops of coalescence modifier to be delivered from the second distributor; or the first distributor is to deliver drops of coalescing agent that are smaller than the drops of coalescence modifier to be delivered from the second distributor. 14. The apparatus of claim 1 , wherein the controller is to generate control data from data representing a three-dimensional object and mechanical object property data. 15. The apparatus of claim 1 , wherein the build material that has coalesced is solidified following coalescence of the build material. 16. A method of controlling a system to generate a three-dimensional object, comprising: obtaining control data, the control data being derived from data representing a portion of a three-dimensional object to be generated; controlling a build material distributor to deposit a layer of build material; controlling a first distributor to selectively deposit a coalescing agent onto build material located at first portions of the layer of deposited build material that are to be coalesced together and at portions of the layer of build material that are to undergo a modified degree of coalescence; controlling a second distributor to selectively deposit a coalescence modifier onto build material located at second portions of the layer of deposited build material that are not to be coalesced together and at portions of the layer of build material that are to undergo the modified degree of coalescence, wherein the coalescing agent and the coalescence modifier are deposited in respective patterns derived from the obtained control data; and controlling an energy source to apply energy to the layer of deposited build material, wherein application of the energy is to cause the build material located at the first portions of the layer of deposited build material to coalesce, the build material on which the coalescing agent and the coalescenc
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