In-situ curing oven for additive manufacturing system
A system is disclosed for additively manufacturing a composite structure. The system may include a head configured to discharge a continuous reinforcement that is at least partially coated with a matrix, and a housing trailing from the head and configured to at least partially enclose the continuous reinforcement after discharge. The system may also include a heat source disposed at least partially inside the oven, and a support configured to move the head during discharging.
1. A system for additively manufacturing a composite structure, the system comprising:
a head configured to discharge a continuous reinforcement that is at least partially coated with a matrix;
a housing trailing from the head and configured to at least partially enclose the continuous reinforcement after discharge;
a heat source disposed at least partially inside the housing; a support configured to move the head during discharging; and
a cure enhancer located between the head and the housing.
2. The system of claim 1 , wherein:
the cure enhancer is a UV light; and
the heat source is an infrared lamp.
3. The system of claim 1 , wherein:
the cure enhancer is configured to produce at least one of a first type and a first amount of cure energy that cures only an outer shell of the matrix; and
the heat source is configured to produce at least one of a second type and a second amount of cure energy different from the at least one of the first type of the first amount and that cures an inner portion of the matrix.
4. The system of claim 1 , wherein:
the cure enhancer is configured to produce at least one of a first type and a first amount of cure energy that cures only the matrix; and
the heat source is configured to produce at least one of a second type and a second amount of cure energy different from the at least one of the first type of the first amount and that cures particles suspended in the matrix.
5. The system of claim 4 , wherein the particles are metallic.
6. The system of claim 1 , further including a controller in communication with the heat source and the support, the controller being configured to selectively activate the heat source and the support based on specifications for the composite structure.
7. The system of claim 1 , further including an arm extending radially from the head to the housing.
8. The system of claim 7 , further including a plunger slidingly connecting the housing to the arm.
9. The system of claim 8 , wherein the housing is at least one of:
axially adjustable relative to the arm; and
radially adjustable relative to the head.
10. The system of claim 1 , wherein the housing is configured to enclose the continuous reinforcement on at least three sides.
11. A system for additively manufacturing a composite structure, the system comprising:
a head configured to discharge a continuous reinforcement that is at least partially coated with a matrix;
a housing trailing from the head and configured to at least partially enclose the continuous reinforcement after discharge;
an infrared lamp disposed at least partially inside the housing;
a UV light located between the head and the housing; and
a support configured to move the head during discharging;
a controller in communication with the infrared lamp, the support, and the UV light, the controller being configured to selectively activate the infrared lamp, the support, and the UV light based on specifications for the composite structure.
12. The system of claim 11 , wherein:
the UV light is configured to produce an amount of light that cures only an outer shell of the matrix; and
the infrared lamp is configured to cure produce an amount of heat that cures an inner portion of the matrix.
13. The system of claim 11 , wherein:
the UV light is configured to produce an amount of light that cures only the matrix; and
the infrared lamp is configured to produce an amount of heat that cures particles suspended in the matrix.
14. The system of claim 13 , wherein the particles are metallic.
15. A system for additively manufacturing a composite structure, the system comprising:
a head configured to discharge a composite material;
a housing connected to a trailing side of the head and configured to at pass over the composite material discharged from the head;
a source disposed at least partially inside the housing and configured to direct cure energy toward the composite material; and
a support configured to move the head during discharging; and
a cure enhancer configured to direct cure energy to the composite material.
16. The system of claim 15 , wherein the cure enhancer is configured to direct cure energy to the composite material at a location between the head and the housing.
17. The system of claim 16 , wherein:
the cure energy from the cure enhancer is of a first amount sufficient to cure the composite material only enough for the composite material to retain a discharged shape; and
the cure energy from the source is of a second amount different from the first amount and sufficient to through-cure the composite material.
18. The system of claim 16 , wherein the cure energy from the cure enhancer is a different form of energy than the cure energy from the source.
19. The system of claim 16 , wherein:
the cure enhancer is a light source; and
the source is a heat source.