Method for 3D printing a 3D item
The invention provides a method comprising 3D printing a 3D item ( 1 ), the method comprising co-depositing during a printing stage 3D printable material ( 201 ) and an elongated solid fiber ( 310 ) with a fused deposition modeling 3D printer ( 500 ) via a single nozzle ( 502 ), to provide the 3D item ( 1 ) comprising 3D printed material ( 202 ) with the elongated solid fiber ( 310 ) embedded therein.
1. A method for 3D printing a 3D item using a fused deposition modeling 3D printer, wherein the method comprises the steps of:
feeding by a feeder unit, a 3D printable material to a printer nozzle of the fused deposition modeling 3D printer, wherein the printer nozzle is comprised in a printer head,
providing, with a fiber providing unit, an elongated solid fiber to the printer nozzle, wherein said fiber providing unit is separate from the feeder unit, and
co-depositing, during a printing stage, the 3D printable material and the elongated solid fiber via the printer nozzle to provide the 3D item comprising 3D printed material with the elongated solid fiber embedded therein,
wherein the printer head makes at least one turn during the printing stage,
wherein the fiber providing unit is further configured to affect a reduction in rotation of the elongated solid fiber around an axis of elongation of the elongated solid fiber to reduce twisting of the elongated solid fiber which occurs as a result of the printer head making said turns during said printing stage,
wherein the reduction in rotation occurring on the elongated solid fiber before it is provided to the printer head, and
wherein the elongated solid fiber has a diameter d of at least 0.5 mm.
2. The method according to claim 1 , wherein the method further comprises controlling during deposition a layer height of the 3D printed material at at least 1.5*d, and controlling during deposition a layer width of the 3D printed material at at least 2*d, and wherein the elongated solid fiber has a length of at least 5 cm.
3. The method according to claim 1 , wherein the elongated solid fiber comprises an electrically conductive material.
4. The method according to claim 1 , wherein the elongated solid fiber comprises a light guide material.
5. The method according to claim 1 , wherein the elongated solid fiber comprises a glass material.
6. The method of claim 1 wherein the fiber providing unit is further configured to reduce torque that occurs in the elongated solid fiber when the printer head makes turns during the printing stage.