Additive fabrication methods and devices for manufacture of objects having preform reinforcements
Additive fabrication methods for 3D composite objects having preform fiber reinforcements embedded in a matrix material include providing local heat and mechanical energy to at least partially melt, impregnate and solidify the matrix material forming at least one reinforced composite layer of the object. Successive layers are added in accordance to a computer generated tool path to form a three dimensional object with useful features.
1. A method of forming a reinforced composite layer comprising:
disposing a fiber preform on a target platform;
placing a pair of electrodes onto a single surface of the fiber preform with a gap between the electrodes;
applying an electrical voltage through the pair of electrodes and across the gap of the fiber preform to generate a surface plasma on the fiber preform;
disposing a layer of metal powder onto at least a portion of the heated fiber preform; and
impregnating the metal powder into the fiber preform, thereby forming, a reinforced composite layer.
2. The method of claim 1 , wherein impregnating the powder further comprises projecting a directed energy beam onto the powder to at least partially melt the powder.
3. The method of claim 2 , wherein the directed energy beam is produced by a laser, and electron beam, a plasma jet, or combinations thereof.
4. The method of claim 1 , further comprising providing ultrasonic waves to the at least a portion of the fiber preform.
5. The method of claim 1 , wherein the electrical voltage is applied at a current of 1 Ampere to 100 Amperes.