Method of using a print head assembly for extrusion-based additive construction
A method of using a print head assembly, in extrusion-based additive construction is disclosed. The print head may be optionally equipped with a fluid channel for aiding in the regulation of the temperature of the print head cold end, and one or more thermal monitors for monitoring the temperature of the cold end of the print head.
1 . A computer-implemented method of performing extrusion-based additive construction comprising:
initiating, by a microcontroller of a 3D printer, an extrusion-based additive construction, the 3D printer equipped with a print head comprising:
a hot end configured to provide heat to a material feed, and
a cold end opposite the hot end, the cold end configured to maintain a temperature of the material feed for input to the hot end within a desired operating temperature range, wherein the cold end has a thermal monitor disposed therein, the thermal monitor configured to monitor a temperature of the cold end;
reading, by the microcontroller from the thermal monitor, the thermal monitor to determine a current temperature of the cold end of the print head;
assessing, by the microcontroller, whether the current temperature is above a predetermined temperature threshold, wherein the predetermined temperature threshold is based on the desired operating temperature range of the material feed;
determining, by the microcontroller, that the current temperature is above the predetermined temperature threshold; and
responsive to the determining, pausing, by the microcontroller, the extrusion-based additive construction to allow the cold end of the print head to cool to a print resume temperature,
wherein the print resume temperature is equal to or below the predetermined temperature threshold.
2 . The computer-implemented method of claim 1 , wherein the cold end comprises a front end, a rear end, a left side, a right side, a top surface extending from the front end to the rear end and from the left side to the right side and a bottom surface extending from the front end to the rear end and from the left side to the right side.
3 . The computer-implemented method of claim 1 , further comprising:
resuming, by the microcontroller, the extrusion-based additive construction when the cold end of the print head reaches the print resume temperature.
4 . The computer-implemented method of claim 1 , wherein the temperature of the material feed is affected by the temperature of the cold end.
5 . The computer-implemented method of claim 1 , wherein a second material feed has a second desired operating temperature range different than the desired operating temperature range of the material feed.
6 . The computer-implemented method of claim 5 , wherein a second predetermined temperature threshold is based on the second desired operating temperature range of the second material feed.