Series enabled multi-material extrusion technology
A method and apparatus are provided for producing a multicomponent feedstock being delivered through a print head of a 3D printer. Multiple component lengths are produced from separate feedstocks and are aligned to form the multicomponent feedstock which is fed into the print head for extrusion. The method includes providing at least two sources of feedstock of different material, feeding a distal end of a first feedstock along a feed path, cutting the first feedstock at a pre-determined length to provide a length of first feedstock having a proximal end. The method includes feeding a distal end of a second feedstock along the feed path and aligning the distal end of the second feedstock with the proximal end of the length of the first feedstock. The second feedstock is cut at a pre-determined length to provide a length of the second feedstock serially aligned with the length of first feedstock, to form a length of multicomponent feedstock. The length of multicomponent feedstock is fed into the print head.
1 . An apparatus for buffering feedstock fed into a 3D printer, the apparatus comprising:
a 3D printer having a print head;
a feedstock source having a feedstock output driver;
a feedstock buffer including an expandable constrained passageway through which the feedstock is fed from the output driver to the print head of the 3D printer; and
a feedstock monitoring device positioned between the output driver and the print head to track a size of the feedstock buffer, which is indicative of the feedstock amount.
2 . The apparatus according to claim 1 , wherein the feedstock source is a multicomponent feedstock source.
3 . The apparatus according to claim 1 , wherein the expandable constrained passageway comprises at least two tubes in series and connected by at least one coupler that has elastic properties.
4 . The apparatus according to claim 1 , wherein the expandable constrained passageway comprises a telescoping mechanism including at least two telescoping tubes.
5 . The apparatus according to claim 1 , wherein the feedstock monitoring device is configured to track movement of the feedstock.
6 . The apparatus according to claim 1 , wherein the size of the feedstock buffer is tracked using a linear encoder, a rotary encoder, an optical sensor, a non-contact sensor including an emitter and a detector, or a mechanical switch.
7 . The apparatus according to claim 1 , wherein the feedstock monitoring device is configured to pass feedstock consumption information to the feedstock source so that the feedstock source can replenish the buffer to keep it in a neutral state.
8 . The apparatus according to claim 4 , wherein the feedstock buffer comprises a spring that can limit range of motion of the telescoping mechanism.
9 . The apparatus according to claim 4 , wherein the feedstock buffer comprises one or more physical stops that can limit range of motion of the telescoping mechanism.
10 . The apparatus according to claim 1 , wherein the feedstock is spooled feedstock in the form of filament.
11 . The apparatus according to claim 1 , wherein the feedstock is multicomponent feedstock.
12 . The apparatus according to claim 1 , further comprising a cutting module along a feedstock path.
13 . The apparatus according to claim 1 , wherein the feedstock buffer is between the output driver and the print head.
14 . An apparatus for buffering feedstock fed into a 3D printer, the apparatus comprising:
a 3D printer having a print head;
a feedstock source having a feedstock output driver; and
a feedstock buffer including an expandable constrained passageway through which the feedstock is fed from the output driver to the print head of the 3D printer, wherein the expandable constrained passageway comprises a telescoping mechanism including at least two telescoping tubes, and wherein the feedstock buffer comprises one or more physical stops that can limit range of motion of the telescoping mechanism.
15 . The apparatus according to claim 14 , wherein the feedstock source is a multicomponent feedstock source.
16 . The apparatus according to claim 14 , further comprising a feedstock monitoring device positioned between the output driver and the print head to track movement of the feedstock.
17 . The apparatus according to claim 14 , further comprising a feedstock monitoring device positioned between the output driver and the print head to track a size of the feedstock buffer, which is indicative of the feedstock amount.
18 . The apparatus according to claim 17 , wherein the size of the feedstock buffer is tracked using a linear encoder, a rotary encoder, an optical sensor, a non-contact sensor including an emitter and a detector, or a mechanical switch.
19 . The apparatus according to claim 17 , wherein the feedstock monitoring device is configured to pass feedstock consumption information to the feedstock source so that the feedstock source can replenish the buffer to keep it in a neutral state.
20 . The apparatus according to claim 14 , wherein the feedstock buffer comprises a spring that can limit the range of motion of the telescoping mechanism.
21 . The apparatus according to claim 14 , wherein the feedstock is spooled feedstock in the form of filament.
22 . The apparatus according to claim 14 , wherein the feedstock is multicomponent feedstock.
23 . The apparatus according to claim 14 , further comprising a cutting module along a feedstock path.
24 . The apparatus according to claim 14 , wherein the feedstock buffer is between the output driver and the print head.
25 . An apparatus for buffering feedstock fed into a 3D printer, the apparatus comprising:
a 3D printer having a print head;
a feedstock source having a feedstock output driver; and
a feedstock buffer including an expandable constrained passageway through which the feedstock is fed from the output driver to the print head of the 3D printer, wherein the expandable constrained passageway comprises a telescoping mechanism including at least two telescoping tubes, and wherein the feedstock buffer comprises a spring that can limit range of motion of the telescoping mechanism.