APPARATUS, SYSTEM AND METHOD OF OPERATING AN ADDITIVE MANUFACTURING NOZZLE
Apparatuses, systems and methods of providing heat to enable an FDM additive manufacturing nozzle having refined print control and enhanced printing speed. The heating element may include at least one sheath sized to fittedly engage around an outer circumference of the FDM printer nozzle; at least one wire coil at least partially contacting an inner diameter of the sheath; and at least one energy receiver associated with the at least one wire coil.
1 . A heating element for a three-dimensional (3D) printer nozzle having a tip from which exits 3D print material, and a nozzle body terminating in the tip, comprising:
at least one sheath comprising an inner diameter and an outer diameter;
an insulating layer comprising reflectors disposed around the at least one sheath; and
at least one wire coil embedded between the inner diameter and the outer diameter of the at least one sheath,
wherein the at least one wire coil is configured to heat a first area proximate the tip to a first temperature and a second area proximate the nozzle body to a second temperature, and
wherein the reflectors of the insulating layer are configured to direct heat, in the form of infrared (IR) power, from the first area and the second area into the 3D printer nozzle.
2 . The heating element of claim 1 , wherein the at least one wire coil is configured to heat the first area to a higher temperature than the second area.
3 . The heating element of claim 1 , the at least one wire coil comprises a nichrome wire coil.
4 . The heating element of claim 1 , wherein the insulating layer comprises glass fabric.
5 . The heating element of claim 1 , wherein the at least one wire coil comprises a first wire coil and a second wire coil, and wherein the first wire coil and the second wire coil are embedded between the inner diameter and the outer diameter of the at least one sheath, such that the first wire coil and the second wire coil are at least partially staggered along a longitudinal axis of the 3D printer nozzle.
6 . The heating element of claim 1 , further comprising at least one energy receiver associated with the at least one wire coil.
7 . The heating element of claim 6 , wherein the at least one energy receiver comprises at least one of a Newtonian, a convective, and a radiative energy receiver.
8 . The heating element of claim 1 , further comprising at least one resistance sensor capable of sensing a resistance change in the at least one wire coil as indicative of a level of heating delivered to the 3D printer nozzle.
9 . The heating element of claim 1 , wherein the at least one energy receiver comprises a thermocouple.
10 . The heating element of claim 1 , further comprising a nozzle temperature sensor embedded in the at least one sheath.
11 . The heating element of claim 1 , wherein the at least one sheath comprises a first sheath and a second sheath,
wherein the second sheath is concentrically located about the first sheath,
wherein the first sheath and the second sheath each have a wire coil embedded therein,
wherein the wire coils of the first sheath and the second sheath are configured to respectively heat the first area and the second area.