arXiv · 1612.01314
Fabrication of ice-templated tubes by rotational freezing: microstructure, strength, and permeability
Abstract
We demonstrate a facile and scalable technique, rotational freezing, to produce porous tubular ceramic supports with radially aligned porosity. The method is based on a conventional ice-templating process in a rotatory mold and demonstrated here with yttria-stabilized zirconia (YSZ). We investigated the effects of solid loading, freezing temperature, and volume of the slurry on the microstructure, strength (o-ring test and four-point bending), and air permeability. The results show that pore volume and pore size can be controlled by the solid loading and freezing temperature respectively, and overall tube thickness can be adjusted by the volume of slurry initially poured into the mold. Decreasing pore size and pore volume increases the mechanical properties but decreases the air permeability. These tubes could be particularly interesting as tubular membrane supports such as oxygen transport membranes.
Explore related subjects
Keep this discovery
Jordi Seuba, Jérôme Leloup, Stéphane Richaud, Sylvain Deville, Christian Guizard, Adam J. Stevenson. 2016-12-05. Fabrication of ice-templated tubes by rotational freezing: microstructure, strength, and permeability. https://arxiv.org/abs/1612.01314
Cite the original work for its findings. Save a collection to share your selection of sources.