Electrophotography-based additive manufacturing with part molding
US-2017299973-A1 · Oct 19, 2017 · US
US10293547B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-10293547-B2 |
| Application number | US-201615176040-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jun 7, 2016 |
| Priority date | Jun 7, 2016 |
| Publication date | May 21, 2019 |
| Grant date | May 21, 2019 |
A practical reading order for non-experts. Skip the full description unless you need deep technical detail.
What the patent document calls the invention.
A short plain-language summary of the technical disclosure.
Who owns or filed the patent and who is credited as inventor.
Filing, priority, publication, and grant dates set the timeline.
The legal scope of protection — read this for what is actually claimed.
Technology tags used to group this patent with similar filings.
Prior art links and similar publications in this corpus.
Official abstract text for this publication.
A three-dimensional (3-D) printer includes build and support material development stations positioned to transfer layers of build and support materials to an intermediate transfer surface. The intermediate transfer surface transfers a layer of the build and support materials to a platen each time the platen contacts the intermediate transfer surface. A sensor detects the thickness of the layer on the platen, and a mechanical planer is positioned to contact and level the layer on the platen as the platen moves past the mechanical planer. Additionally, a feedback loop is electrically connected to the sensor and the mechanical planer. The mechanical planer adjusts the amount of the build material and the support material removed from the layer based on the thickness of the layer on the platen, as determined by the sensor.
Opening claim text (preview).
What is claimed is: 1. A three-dimensional (3-D) printer comprising: an intermediate transfer surface; a build material development station positioned to transfer build material to said intermediate transfer surface; a support material development station positioned to transfer support material to said intermediate transfer surface, said build material development station and said support material development station transfer layers of said build material and said support material to said intermediate transfer surface; a platen having a flat surface positioned to contact said intermediate transfer surface, said intermediate transfer surface transfers a layer of said build material and said support material to said platen, or existing layers on said platen, each time said platen, or said existing layers, contact said intermediate transfer surface; a sensor detecting the thickness of said layer on said platen; a mechanical planer positioned to contact and level said layer on said platen as said platen moves past said mechanical planer, wherein said sensor is positioned between said mechanical planer and a location where said platen contacts said intermediate transfer surface; and a feedback loop electrically connected to said sensor and said mechanical planer, said mechanical planer adjusts the amount of material removed from said layer based on said thickness of said layer on said platen, as determined by said sensor. 2. The 3-D printer according to claim 1 , said mechanical planer comprises a blade positioned at a non-parallel and non-perpendicular angle to said flat surface of said platen. 3. The 3-D printer according to claim 1 , said mechanical planer comprises a movable blade and an actuator connected to said movable blade, said actuator moves said movable blade toward and away from said platen. 4. The 3-D printer according to claim 3 , said mechanical planer comprises a cleaning structure in a fixed position, said cleaning structure contacts and cleans said movable blade as said actuator moves said movable blade past said cleaning structure. 5. The 3-D printer according to claim 1 , further comprising a collection tray adjacent said mechanical planer, said collection tray is positioned to collect said build material and said support material removed from said layer by said mechanical planer. 6. The 3-D printer according to claim 1 , said mechanical planer makes the top of said layer parallel to said flat surface of said platen. 7. The 3-D printer according to claim 1 , said mechanical planer reduces said thickness of said layer. 8. A three-dimensional (3-D) printer comprising: an intermediate transfer surface; a build material development station positioned to transfer build material to said intermediate transfer surface; a support material development station positioned to transfer support material to said intermediate transfer surface, said build material development station and said support material development station transfer layers of said build material and said support material to said intermediate transfer surface; a platen having a flat surface positioned to contact said intermediate transfer surface, said intermediate transfer surface transfers a layer of said build material and said support material to said platen, or existing layers on said platen, each time said platen, or said existing layers, contact said intermediate transfer surface; a sensor detecting the thickness of said layer on said platen; a mechanical planer positioned to contact and level said layer on said platen as said platen moves past said mechanical planer, wherein said sensor is positioned between said mechanical planer and a location where said platen contacts said intermediate transfer surface; and a feedback loop electrically connected to said sensor and said mechanical planer, said mechanical planer moves toward and away from said platen to adjust the amount of material removed from said layer based on said thickness of said layer on said platen, as determined by said sensor. 9. The 3-D printer according to claim 8 , said mechanical planer comprises a blade positioned at a non-parallel and non-perpendicular angle to said flat surface of said platen. 10. The 3-D printer according to claim 8 , said mechanical planer comprises a movable blade and an actuator connected to said movable blade, said actuator moves said movable blade toward and away from said platen. 11. The 3-D printer according to claim 10 , said mechanical planer comprises a cleaning structure in a fixed position, said cleaning structure contacts and cleans said movable blade as said actuator moves said movable blade past said cleaning structure. 12. The 3-D printer according to claim 8 , further comprising a collection tray adjacent said mechanical planer, said collection tray is positioned to collect said build material and said support material removed from said layer by said mechanical planer. 13. The 3-D printer according to claim 8 , said mechanical planer makes the top of said layer parallel to said flat surface of said platen. 14. The 3-D printer according to claim 8 , said mechanical planer reduces said thickness of said layer. 15. A three-dimensional (3-D) printer comprising: an intermediate transfer surface; a build material development station positioned to transfer build material to said intermediate transfer surface; a support material development station positioned to transfer support material to said intermediate transfer surface, said build material development station and said support material development station transfer layers of said build material and said support material to said intermediate transfer surface; a platen having a flat surface positioned to contact said intermediate transfer surface, said intermediate transfer surface transfers a layer of said build material and said support material to said platen, or existing layers on said platen, each time said platen, or said existing layers, contact said intermediate transfer surface; a sensor detecting the thickness of said layer on said platen; a mechanical planer positioned to contact and level said layer on said platen by removing material from said layer as said platen moves past said mechanical planer, wherein said sensor is positioned between said mechanical planer and a location where said platen contacts said intermediate transfer surface; and a feedback loop electrically connected to said sensor and said mechanical planer, said mechanical planer moves toward and away from said platen to adjust the amount of material removed from said layer based on said thickness of said layer on said platen, as determined by said sensor. 16. The 3-D printer according to claim 15 , said mechanical planer comprises a blade positioned at a non-parallel and non-perpendicular angle to said flat surface of said platen. 17. The 3-D printer according to claim 15 , said mechanical planer comprises a movable blade and an actuator connected to said movable blade, said actuator moves said movable blade toward and away from said platen. 18. The 3-D printer according to claim 17 , said mechanical planer comprises a cleaning structure in a fixed position, said cleaning structure contacts and cleans said movable blade as said actuator moves said movable blade past said cleaning structure. 19. The 3-D printer according to claim 15 , further comprising a collection tray adjacent said mechanical planer, said collection tray is positioned to collect said build material and said support material removed from said layer
Surface or curve machining, making three-dimensional [3D] objects, e.g. desktop manufacturing · CPC title
Processes of additive manufacturing · CPC title
Machines for forming tactile or three dimensional images by electrographic means, e.g. braille, 3d printing · CPC title
Doctor blades · CPC title
Structures for supporting 3D objects during manufacture and intended to be sacrificed after completion thereof · CPC title
Related publications grouped by family.
Answers are generated from the same data shown on this page.