Influence of feedstock preparation on ceramic injection molding and microstructural features of zirconia toughened alumina

Feedstocks for ceramic injection molding of ZTA containing 90vol.% of sub-μm alumina and 10vol.% of zirconia nanopowder were prepared by different processing techniques. Feedstocks were prepared by mixing in a sigma-blade kneader and subsequent homogenizing by twin-screw extrusion or shear roll comp...

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Veröffentlicht in:Journal of the European Ceramic Society 2014-03, Vol.34 (3), p.745-751
Hauptverfasser: Sommer, Frank, Walcher, Hartmut, Kern, Frank, Maetzig, Marko, Gadow, Rainer
Format: Artikel
Sprache:eng
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Zusammenfassung:Feedstocks for ceramic injection molding of ZTA containing 90vol.% of sub-μm alumina and 10vol.% of zirconia nanopowder were prepared by different processing techniques. Feedstocks were prepared by mixing in a sigma-blade kneader and subsequent homogenizing by twin-screw extrusion or shear roll compaction. Two other feedstocks were previously bead milled and subsequently processed by the same procedure. Compounding technology strongly influences the injection molding behavior and microstructures of the final product. Despite higher energy input of the shear roll compactor, powder agglomerates cannot be completely avoided. Pre-milling is effective to disperse and deagglomerate ceramic powders. Injection pressures of feedstocks from pre-milled powders were about 200bar lower compared to pressures needed for non-milled feedstocks. Present feedstock preparation methods are feasible to produce homogeneous feedstocks, which strongly influence microstructures. In order to produce high solid loaded sub-μm/nm feedstocks, processing methods, pre-treatment and solid content have to be carefully chosen.
ISSN:0955-2219
1873-619X
DOI:10.1016/j.jeurceramsoc.2013.09.020