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A novel route for manufacturing asymmetric BSCF-based perovskite structures by a combined tape and freeze casting method
Affiliation:1. Federal University of Santa Catarina (UFSC), Departments of Mechanical (EMC) and Chemical Engineering (EQA), Laboratory of Ceramic and Composite Materials (CERMAT), 88040-900 Florianópolis, SC, Brazil;2. Federal University of Minas Gerais (UFMG), Department of Metallurgical and Materials Engineering, Laboratory of Ceramic Materials (LMC), 31270-901 Belo Horizonte, MG, Brazil;1. Directeur de Recherche CNRS, Science des Procédés Céramiques et de Traitements de Surface - SPCTS, UMR 7315 CNRS-Centre Européen de la Céramique,12 Rue Atlantis 87068 LIMOGES Cedex, France;2. IEM (Institut Europeen des Membranes), UMR 5635 (CNRS-ENSCM-UM), Université Montpellier, Place E. Bataillon, 34095 Montpellier, France;3. IEM (Institut Europeen des Membranes), UMR 5635 (CNRS-ENSCM-UM), Université Montpellier, Place E. Bataillon, 34095 Montpellier, France;1. Federal University of Rio Grande do Sul, Av. Osvaldo Aranha, 99/705, 900135-190 Porto Alegre – RS, Brazil;2. Empa, Material Science and Technologie, Überlandstr. 129, 8600 Dübendorf, Switzerland;1. Departments of Mechanical Engineering (EMC) and Chemical Engineering (EQA), Federal University of Santa Catarina (UFSC), 88040-900 Florianópolis, SC, Brazil
Abstract:In this work, we present an innovative route for the preparation of asymmetric structures by combining the tape and freeze casting methods A perovskite oxide ceramic based on BSCF (Ba0.5S0.5Co0.8Fe0.2O3-δ) was chosen as the mother material. BSCF freeze cast substrates showed highly ordered and interconnected pores networks with open porosity from 66% to 79%. The top layer for the tape cast was altered by doping BSCF with Zr, thus forming a slightly different compound BSCFZ. The BSCFZ slurries containing 1.0 wt% dispersant and pH >6 were characterised by pseudoplastic behaviour, ideal for the preparation of tape cast layers. Coupling the BSCF freeze cast substrate with the BCSFZ tape cast green top layer to make asymmetric structures was achieved by the pre-sintering of the substrate between 900 and 1050 °C. This allowed for the densification and coupling of the BSCFZ top layer, resulting in suitable adhesion with no cracks or delamination. Higher pre-sintering temperatures than 1050 °C limited the densification of the BSCFZ top layer as the coefficient of expansion between the substrate and top layer did not match, leading to the formation of surfaces with high porosity.
Keywords:Perovskite  Freeze casting  Tape casting  Asymmetric structure
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