Enhanced additive manufacturing with a reciprocating platen
An additive manufacturing extrusion head that includes a heated nozzle for accepting a feedstock and extruding the feedstock onto a substrate at a deposition plane, the nozzle having a longitudinal extrusion axis. A reciprocating platen surrounds the nozzle, the platen operable to reciprocate along the extrusion axis at or above the deposition plane as the nozzle extrudes feedstock onto the substrate; and wherein the platen flattens the extruded feedstock such that it does not protrude above the deposition plane as the extrusion head traverses over the substrate.
1. An additive manufacturing extrusion head comprising:
a heated nozzle for accepting a feedstock and extruding the feedstock onto a substrate at a deposition plane, said nozzle having a longitudinal extrusion axis perpendicular to said deposition plane;
a reciprocating platen surrounding said nozzle, said platen operable to reciprocate along the extrusion axis at or above the deposition plane as said nozzle extrudes said feedstock onto the substrate; and
a support structure connecting the platen with respect to the nozzle the support structure being stiff in a direction of the extrusion axis and compliant in a direction of the deposition plane,
wherein said platen flattens the extruded feedstock such that it does not protrude above the deposition plane as the extrusion head traverses over the substrate.
2. The additive manufacturing extrusion head of claim 1 further comprising:
a load cell connected with respect to the reciprocating platen, the load cell measuring a contacting force between the platen and the extruded feedstock.
3. The additive manufacturing extrusion head of claim 1 further comprising:
a drive motor; and
an eccentric link connected between the platen and the drive motor, wherein the eccentric link includes a load cell.
4. The additive manufacturing extrusion head of claim 1 further comprising:
a cooling system connected with respect to the platen.
5. The additive manufacturing extrusion head of claim 1 further comprising:
a low friction coating applied to the platen.
6. The additive manufacturing extrusion head of claim 1 wherein the support structure comprises a plurality of flexible rods connecting the platen with respect to the nozzle, and wherein the flexible rods are stiff in a direction of the extrusion axis and compliant in a direction of the deposition plane.
7. An additive manufacturing extrusion head comprising:
a heated nozzle depositing feedstock onto a substrate along a deposition plane;
a platen positioned at a tip of the nozzle, wherein the platen reciprocates along a direction perpendicular to the deposition plane between a position above the deposition plane and a position at or below the deposition plane to flatten the deposited feedstock as the extrusion head traverses over the substrate;
a support structure connecting the platen with the nozzle the support structure being rigid in a direction perpendicular to the deposition plane and compliant in a direction parallel to the deposition plane; and
a load cell positioned with respect to the platen, the load cell measuring a contacting force between the platen and the deposited feedstock.
8. The additive manufacturing extrusion head of claim 7 wherein the platen flattens the deposited feedstock such that it does not protrude above the deposition plane as the extrusion head traverses the deposition plane.
9. The additive manufacturing extrusion head of claim 7 wherein the support structure comprises a plurality of flexible rods.
10. The additive manufacturing extrusion head of claim 7 further comprising:
a cooling system connected with respect to the platen.
11. The additive manufacturing extrusion head of claim 7 wherein the platen includes a surface area that is greater than a throat area of the nozzle.
12. The additive manufacturing extrusion head of claim 7 wherein the platen is connected with respect to an eccentric gear for imparting the reciprocating motion.