Process and slip for the production of ceramic shaped bodies made of zirconium oxide by 3D inkjet printing
Process and slip for the production of ceramic shaped parts made of zirconium oxide ceramic by a 3D inkjet printing process. The slip contains zirconium oxide which is suspended in a liquid medium, wherein the slip has a zirconium oxide content of from 68 to 88 wt.-% and contains not more than 5 wt.-% organic components. The process for the production of ceramic components comprises the layered shaping and subsequent sintering of the desired component from the slip.
1. A process of using a slip for the production of a ceramic shaped part by an inkjet printing process,
wherein the slip comprises zirconium oxide with a particle size of from 50 to 250 nm, measured as the d 50 value and relative to the volume of the particles, suspended in a liquid medium and has a zirconium oxide content of from 68 to 88 wt.-%, and not more than 3 wt.-% organic components, relative to the total mass of the slip, and
wherein the slip has a viscosity of 5 to 100 mPas, measured at a shear rate of from 0.1 to 1000 s −1 and at a temperature of 25° C., and
wherein the printed ceramic shaped part is sintered directly after printing and optionally includes subsequent drying without a separate debinding step.
2. The process according to claim 1 comprising
(i) shaping the slip in layers into a geometric shape of the desired ceramic shaped part, wherein the individual layers are each dried after printing to produce a green compact,
(ii) optionally drying the green compact, and
(iii) sintering the green compact,
wherein the layered construction of the green compact in step (i) is effected by a layered inkjet printing process.
3. The process according to claim 2 ,
wherein the green body formed in step (i) is dried in step (ii) at a temperature of from 10 to 100° C.
4. The process according to claim 2 ,
wherein the green body has a density of from 3.3 to 4.0 g/cm 3 , and/or
a pore volume of from 0.08 to 0.14 cm 3 /g and/or
a pore diameter of from 0.02 to 0.12 μm measured as the d 50 value relative to the volume of the particles.
5. The process according to claim 2 ,
wherein the green body is densely sintered at a sintering temperature of from 1200 to 1600° C.
6. The process according to claim 5 ,
wherein a period for heating up the green body from room temperature to the sintering temperature, holding at the sintering temperature and cooling down to a final temperature is not more than 6 hours.
7. The process according to claim 5 ,
wherein
(a) the green body is heated up to a temperature T 1 ,
(b) is optionally further heated up to a temperature T 2 and held and sintered at the temperature T 2 and
(c) is cooled down to a temperature T ar
wherein the temperature T 1 is 0 to 500 K below the temperature T 2 and step (a) is effected at a lower pressure than step (b).
8. The process according to claim 2 ,
wherein the ceramic shaped part is a dental restoration comprising an inlay, onlay, veneer, a crown, bridge, a framework, an implant, a shell or an abutment.