Target for vaporizing under an electron beam, a method of fabricating it, a thermal barrier and a coating obtained from a target, and a mechanical part including such a coating
View Patent ↗The invention relates to a composite target in the form of a bar made of ceramic powders and designed to be evaporated under an electron beam, the target comprising zirconia and at least one zirconia stabilizer. In characteristic manner, said target is wherein said zirconia stabilizer is at a molar content lying in the range 2% to 30% and wherein said zirconia is formed by more than 90% of a monoclinic phase. The invention is applicable to fabricating a ceramic thermal barrier of low thermal conductivity and high thermomechanical strength formed by evaporation under an electron beam.
1. A composite target in the form of a bar made of ceramic powders for the purpose of being evaporated under an electron beam, the target comprising zirconia and at least one zirconia stabilizer, said zirconia stabilizer being included at a molar content lying in the range 2% to 30%, and wherein, after sintering of said target, said zirconia in the target contains more than 90% of a monoclinic phase.
2. A target according to claim 1 , wherein the stabilizer comprises at least one element belonging to the group formed by rare earth oxides, tantalum oxide, and niobium oxide.
3. A target according to claim 1 , presenting specific gravity of less than 3.9.
4. A target according to claim 1 , presenting mean pore diameter d50 less than 2 μm.
5. A target according to claim 1 , presenting porosity of 30% to 50%.
6. A target according to claim 1 , presenting composition in zirconia and stabilizer that varies along the height of the target.
7. A target according to claim 1 wherein, after the sintering of said target, said zirconia in the target contains at least 91.7% of a monoclinic phase.
8. A target according to claim 1 wherein, after the sintering of said target, said zirconia in the target contains at least 95% of a monoclinic phase.
9. A target according to claim 1 wherein, after the sintering of said target, said zirconia in the target contains more than 98% of a monoclinic phase.
10. A target according to claim 1 wherein, after the sintering of said target, said zirconia in the target contains 100% of a monoclinic phase.