Methods of extruding a multi-colored molten filament material and nozzle for use therewith
US-2016101567-A1 · Apr 14, 2016 · US
US9895844B2 · US · B2
| Field | Value |
|---|---|
| Publication number | US-9895844-B2 |
| Application number | US-201514589841-A |
| Country | US |
| Kind code | B2 |
| Filing date | Jan 5, 2015 |
| Priority date | Feb 19, 2014 |
| Publication date | Feb 20, 2018 |
| Grant date | Feb 20, 2018 |
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An assembly that is configured to be coupled to and communicate with a 3D printer having a printer head includes a color-application unit positioned upstream of the 3D printer. The color-application unit is configured to receive a filament and direct the filament to the printer head of the 3D printer. The assembly also includes a color applicator coupled to the color-application unit. The color applicator is operable to selectively apply color to an interior surface of the filament.
Opening claim text (preview).
What is claimed is: 1. An assembly that is configured to be coupled to and communicate with a 3D printer having a printer head, the assembly comprising: a color-application unit positioned upstream of the 3D printer, the color-application unit configured to receive a filament and direct the filament to the printer head of the 3D printer, the color application unit including: a body; a conduit extending through the body; a motor that engages the filament to move the filament through the conduit; and a through-hole that extends through the body and is communication with the conduit; and a color applicator coupled to the color-application unit, the color applicator operable to selectively apply color to an interior surface of the filament, the color applicator including an elongate member containing the color and having a color applicator tip that applies color to the filament through the through-hole, wherein at least a portion of the elongate member is slidably received within the through-hole to selectively engage and apply color onto the filament. 2. The assembly of claim 1 , wherein the filament includes a first filament portion and a second filament portion, the first filament portion defining the interior surface, and further comprising a coupler positioned downstream of the color applicator and configured to join the first filament portion to the second filament portion to form the filament. 3. The assembly of claim 2 , wherein the color-application unit and the coupler are integrated together as a single unit. 4. The assembly of claim 2 , wherein the coupler includes a body that has a first channel and a second channel, wherein the first channel receives the first filament portion and the second channel receives the second filament portion, and wherein the first channel and the second channel converge within the body to form a discharge channel that guides the filament through the body. 5. The assembly of claim 4 , wherein the coupler includes a motor and a roller assembly that is actuated by the motor, and wherein the roller assembly engages the first filament portion and the second filament portion to advance the filament through the body. 6. The assembly of claim 4 , wherein the body of the coupler also has a third channel that receives a third filament portion, wherein the third channel converges with the first channel and the second channel to form the discharge channel, and wherein the coupler joins the second and third filament portions to substantially enclose the first filament portion. 7. The assembly of claim 1 , further comprising a second color applicator coupled to the color-application unit, the second color applicator operable to selectively apply a different color to the interior surface of the filament. 8. The assembly of claim 1 , wherein the color applicator includes one or more of an inkjet cartridge, a thermal inkjet, a pressure inkjet, a piezo pump, a pressure pump, a spray mechanism, a microfluidic device, and a rubber applicator. 9. A method for preparing a filament for use with a printer head of a 3D printer, the method comprising: receiving the filament at a color-application unit positioned upstream of the 3D printer, wherein the filament includes a first filament portion defining an interior surface of the filament, a second filament portion, and a third filament portion; applying color, by a color applicator coupled to the color-application unit, to the interior surface of the filament; coupling the second filament portion to the third filament portion to substantially enclose the first filament portion between the second and third filament portions to form the filament; and directing the filament from the color-application unit to the printer head of the 3D printer. 10. The method of claim 9 , wherein coupling the first filament portion to the second filament portion includes joining, by a coupler positioned downstream of the color applicator, the first filament portion and the second filament portion together. 11. The method of claim 10 , wherein the coupler includes a body having a first channel and a second channel that converge within the body to form a discharge channel, further comprising: receiving the first filament portion in the first channel; receiving the second filament portion in the second channel; and joining the first filament portion and the second filament portion together within the discharge channel. 12. The method of claim 11 , wherein directing the filament to the printer head includes dispensing the filament from the discharge channel of the coupler and guiding the filament to the printer head. 13. The method of claim 9 , wherein the color applicator includes one of an elongate member having a color applicator tip or an inkjet cartridge, if the color applicator is the elongate member, applying color to the interior surface of the filament includes moving the color applicator tip into contact with the interior surface, if the color applicator is the inkjet cartridge, applying color to the interior surface of the filament includes actuating the inkjet cartridge to dispense color. 14. The method of claim 9 , wherein applying color to the interior surface of the filament includes applying a first color to a first section of the interior surface and applying a second color to a second section of the interior surface, the first color being different than the second color. 15. The method of claim 9 , wherein the color applicator includes one or more of an inkjet cartridge, a thermal inkjet, a pressure inkjet, a piezo pump, a pressure pump, a spray mechanism, a microfluidic device, and a rubber applicator. 16. An assembly that is configured to be coupled to and communicate with a 3D printer having a printer head, the assembly comprising: a color-application unit positioned upstream of the 3D printer, the color-application unit configured to receive a filament and direct the filament to the printer head of the 3D printer, wherein the filament includes a first filament portion defining an interior surface of the filament, a second filament portion, and a third filament portion; a color applicator coupled to the color-application unit, the color applicator operable to selectively apply color to the first filament portion; and a coupler positioned downstream of the color applicator and including a body having a first channel, a second channel, and a third channel, wherein the first channel, the second channel, and the third channel converge to form a discharge channel that guides the filament through the body, wherein the first channel receives the first filament portion, the second channel receives the second filament portion, and the third channel receives the third filament portion, and wherein the coupler joins the second filament portion and the third filament portion to substantially enclose the first filament portion. 17. The assembly of claim 16 , wherein the color applicator includes one or more of an inkjet cartridge, a thermal inkjet, a pressure inkjet, a piezo pump, a pressure pump, a spray mechanism, a microfluidic device, and a rubber applicator.
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