Process of forming a metal additive manufactured part with a smooth surface
A process for forming a metal part from an additive manufacturing process with a smooth surface that includes the steps of printing the part using an AM process, heating the printed part to its solution heat treat or annealing temperature, placing the printed part in a fluidized salt bath for a short period of time to smooth a rough surface on the metal part, and then rapidly cool the heated metal part to prevent any change in grain structure. If the metal part is made from a metal material that oxidizes, then the metal part is treated in an enclosed chamber with Argon gas.
1. A process for forming a metal part from an additive manufacturing process with a smooth surface finish comprising the steps of:
producing a metal part using a metal additive manufacturing process;
heat the additive manufactured part to its solution heat treat or annealing temperature;
place the heated metal part in to a fluidized salt bath that has been heated to around the metal part's incipient melt temperature to smooth a surface of the metal part;
after a short period of time, remove the metal part from the fluidized salt bath; and,
rapidly cool the metal part to a temperature that would prevent a change in grain structure.
2. The process for forming a metal part from an additive manufacturing process of claim 1 , and further comprising the step of:
the short period of time is around 10 seconds.
3. The process of forming a metal part from an additive manufacturing process of claim 1 , and further comprising the step of:
rapidly cool the metal part to a temperature of around 1,000 degrees F.
4. The process for forming a metal part from an additive manufacturing process of claim 1 , and further comprising the step of:
the metal additive manufacturing process is a metal powder bed using a laser to melt selected areas of the powder bed.
5. The process for forming a metal part from an additive manufacturing process of claim 1 , and further comprising the step of:
if the metal part is formed from a material that oxidizes in air, then hold the metal part in an enclosed chamber with an inert gas.
6. The process for forming a metal part from an additive manufacturing process of claim 5 , and further comprising the step of:
holding the metal part in the enclosed chamber using Argon gas.
7. The process for forming a metal part from an additive manufacturing process of claim 1 , and further comprising the step of:
the metal part is a shrouded impeller.