Slurry mixtures for 3-D slurry extrusion of artifacts
A slurry composition for forming an article using additive manufacturing is provided. The slurry composition comprises a carrier having a viscosity of at least 0.001 cP at normal temperature and pressure. The carrier is adapted to be flowable through a nozzle. The slurry composition further comprises a material selected from the group of a metal-containing material, a ceramic-containing material, an inorganic carbon-containing material, a silica-containing material, and combinations thereof.
1 . A method of forming an article using additive manufacturing, the method comprising:
providing a slurry composition comprising:
less than 70 vol. % of a carrier having a viscosity of at least 0.001 cP at normal temperature and pressure, wherein the carrier is adapted to be flowable through a nozzle, the carrier consisting of a sol-gel of a hydroxyethyl cellulose in an amount of from 0.1 to 10 wt. % based on the total weight of the carrier, a phenolic binder in an amount of from 0.1 to 10 wt. % based on the total weight of the carrier, and the balance a solvent that is a 50/50 mixture of water and ethanol; and
5 to 55 wt. % of a material that is an inorganic carbon-containing material consisting of a mixture of graphite microbeads and milled carbon fibers; and
applying the slurry composition to a substrate to form the article.
2 . The method of claim 1 , further comprising densifying the article to form a processed article.
3 . The method of claim 2 , wherein densifying the article comprises:
(A) combining the article and a polymeric composition to form the processed article;
(B) exposing the article to heat at a temperature of from about 600° C. to about 2500° C. to form the processed article;
(C) exposing the article to heat at a temperature of from about 800° C. to about 2000° C. and then combining the article and a molten metal to form the processed article;
(D) exposing the article to a vacuum and heat at a temperature of from about 400° C. to about 2000° C. in the presence of a precursor to form a deposit on the article thereby forming the processed article;
(E) combining the article and a carbon precursor and then exposing the article to heat at a temperature of from about 600° C. to about 1400° C. to form the processed article;
(F) exposing the article to irradiation to form the processed article; or
(G) any combination of (A) to (F).
4 . The method of claim 1 , wherein the slurry composition further comprises a sintering aid.
5 . The method of claim 4 , wherein the sintering aid is selected from the group of graphene, a nickel-containing sintering aid, a ceramic-containing sintering aid, and combinations thereof.