System and method for additively manufacturing composite wiring harness
A method is disclosed for additively manufacturing a composite wiring harness. The method may include directing a plurality of conductors through a print head, directing at least one reinforcement through the print head, and coating at least one of the plurality of conductors and the at least one reinforcement with a matrix material. The method may also include discharging the at least one of the plurality of conductors and the at least one reinforcement with the matrix material from the print head, and exposing the matrix material during discharging to a cure energy to cause hardening of a sheath around the plurality of conductors.
1. A composite wiring harness, comprising:
a plurality of elongated conductors arranged generally parallel to each other;
at least one connector connected to at least one end of at least one of the plurality of elongated conductors; and
a sheath at least partially surrounding the plurality of elongated conductors and forming an outer shell of the composite wiring harness,
wherein the sheath includes:
a rigid portion and a flexible portion; and
at least one of a glass fiber, a carbon fiber, and an aramid that is continuous through the rigid and flexible portions and coated in a thermoset matrix material, the thermoset matrix material having a first performance characteristic in the rigid portion and a second performance characteristic in the flexible portion.
2. The composite wiring harness of claim 1 , wherein a characteristic of at least one of the thermoset matrix material and the at least one of the glass fiber, the carbon fiber, and the aramid fiber is different between the rigid and flexible portions.
3. The composite wiring harness of claim 1 , wherein the plurality of elongated conductors are visible through only a portion of the sheath.
4. The composite wiring harness of claim 1 , wherein the at least one of the glass fiber, the carbon fiber, and the aramid fiber is generally parallel with the plurality of elongated conductors.
5. The composite wiring harness of claim 1 , wherein the plurality of elongated conductors includes at least one of a solid and semi-solid core.
6. The composite wiring harness of claim 5 , wherein the plurality of elongated conductors further includes an insulating outer annular layer.
7. The composite wiring harness of claim 1 , wherein the plurality of elongated conductors includes a hollow tubular structure.
8. The composite wiring harness of claim 1 , wherein the sheath provides electromagnetic field shielding.
9. The composite wiring harness of claim 8 , wherein the electromagnetic field shielding is variable along a length of the composite wiring harness.