Three-dimensional printed composites using sodium silicate binder
A three-dimensional object comprises stacked substrate layers infiltrated by a hardened material. Each substrate layer is a sheet-like structure that comprises fibers held together by a sodium silicate binder. The substrate layer material may be non-woven or woven. The substrate layer may be a non-woven fiber veil bound by a sodium silicate binder. The fibers may optionally include carbon fibers, ceramic fibers, polymer fibers, glass fibers, metal fibers, or a combination thereof.
1. A three-dimensional article of manufacture comprising a plurality of substrate layers that are infiltrated or coated by, and bound together by, a hardened material, such that the hardened material has a material composition that is different from the material composition of any of the plurality of substrate layers, wherein all of the plurality of substrate layers have a substantially identical material composition and each substrate layer is a sheet-like structure that has a material composition comprising fibers held together by binder consisting only of sodium silicate.
2. The article of manufacture of claim 1 , wherein the substrate layer material composition includes fibers selected from the group consisting of carbon fibers, ceramic fibers, polymer fibers, glass fibers, and metal fibers.
3. The article of manufacture of claim 1 , wherein the substrate material is non-woven.
4. The article of manufacture of claim 3 , wherein the substrate layer material composition includes fibers selected from the group consisting of carbon fibers, ceramic fibers, polymer fibers, glass fibers, and metal fibers.
5. The article of manufacture of claim 1 , wherein the substrate material is woven.
6. The article of manufacture of claim 5 , wherein the substrate layer material composition includes fibers selected from the group consisting of carbon fibers, ceramic fibers, polymer fibers, glass fibers, and metal fibers.
7. The article of manufacture of claim 1 , wherein the hardened material is formed by heating at least one engineered powder.
8. The article of manufacture of claim 7 , wherein the engineered powder comprises at least one emulsion aggregation powder.
9. The article of manufacture of claim 7 , wherein the engineered powder comprises at least one chemically-produced toner powder.
10. The article of manufacture of claim 1 , wherein the hardened material exhibits a set of one or more characteristics, which set is sufficient for distinguishing the hardened material as having formed as a result of the powder having been positioned on the substrate layers and then being at least partially softened followed by hardening.
11. An article of manufacture comprising a substrate layer that is a sheet-like structure having a material composition comprising fibers held together by binder consisting only of sodium silicate.
12. The article of manufacture of claim 11 , wherein the substrate layer material composition includes fibers selected from the group consisting of carbon fibers, ceramic fibers, polymer fibers, glass fibers, and metal fibers.
13. The article of manufacture of claim 11 , wherein the substrate material is non-woven.
14. The article of manufacture of claim 13 , wherein the substrate layer material composition includes fibers selected from the group consisting of carbon fibers, ceramic fibers, polymer fibers, glass fibers, and metal fibers.
15. The article of manufacture of claim 11 , wherein the substrate material is woven.
16. The article of manufacture of claim 15 , wherein the fibers are selected from the group consisting of carbon fibers, ceramic fibers, polymer fibers, glass fibers, and metal fibers.
17. An article of manufacture comprising a non-woven substrate comprising fibers held together by binder consisting only of sodium silicate.
18. The article of manufacture of claim 17 , wherein the fibers are selected from the group consisting of carbon fibers, ceramic fibers, polymer fibers, glass fibers, and metal fibers.
19. The article of manufacture of claim 17 , wherein the substrate is a sheet-like structure.