Zirconia-based material doped with yttrium and lanthanum
Sintered bodies containing zirconia-based ceramic materials and partially sintered bodies that are intermediates in the preparation of the sintered bodies are described. The zirconia-based ceramic material is doped with lanthanum and yttrium. The grain size of the zirconia-based ceramic material can be controlled by the addition of lanthanum. The crystalline phase of the zirconia-based ceramic material can be influenced by the addition of yttrium.
1. A partially sintered body comprising a product formed by partially sintering zirconia-based particles that are crystalline, that have an average primary particle size no greater than 100 nanometers, and that comprise
a) at least 92.5 mole percent zirconium oxide based on total moles of inorganic oxide in the zirconia-based particles;
b) at least 0.5 mole percent lanthanum oxide based on total moles of inorganic oxide in the zirconia-based particles;
c) at least 1.5 mole percent yttrium oxide based on total moles of inorganic oxide in the zirconia-based particles,
wherein the partially sintered body comprises 25 to 75 volume percent inorganic oxide and 25 to 75 volume percent voids based on a total volume of the partially sintered body.
2. The partially sintered body of claim 1 , wherein the partially sintered body comprises 0 to less than 5 volume percent organic material, water, or a combination thereof.
3. The partially sintered body of claim 1 , wherein the partially sintered body comprises 40 to 70 volume percent inorganic oxide and 30 to 60 volume percent voids.
4. The partially sintered body of claim 1 , wherein the zirconia-based particles comprise 92.5 to 98.0 mole percent zirconium oxide based on total moles of inorganic oxide in the zirconia-based particles, 0.5 to 5.0 mole percent lanthanum oxide based on total moles of inorganic oxide in the zirconia-based particles, and 1.5 to 2.5 mole percent yttrium oxide based on total moles of inorganic oxide in the zirconia-based particles.
5. The partially sintered body of claim 1 , wherein at least 70 percent of the zirconia-based particles have a cubic/tetragonal crystalline structure.