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A novel route for manufacturing asymmetric BSCF-based perovskite structures by a combined tape and freeze casting method

机译:组合胶带和冷冻铸造方法制造非对称BSCF基钙钛矿结构的新途径

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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-delta) 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 degrees 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 degrees 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. (C) 2017 Elsevier Ltd. All rights reserved.
机译:在这项工作中,我们通过将基于BSCF(Ba0.5S0.5CO0.8FE0.2O3-DELTA)组合的钙钛矿氧化物陶瓷组合作为母材料,提出了一种制备不对称结构的创新途径。 BSCF冷冻铸基材显示出高度有序和相互连接的孔隙网络,开放孔隙度为66%至79%。通过用Zr掺杂BSCF改变带铸造的顶层,从而形成略微不同的化合物BSCZ。含有1.0wt%分散剂和pH> 6的BSCFZ浆料的特征在于假塑性行为,适用于制备带浇铸层的理想选择。通过将BCSFz胶带铸造的绿色顶层耦合以使BSCF冷冻铸基板通过900至1050℃的基板的预烧结来实现不对称结构。这允许BSCFZ顶层的致密化和耦合,从而导致合适的粘附性,没有裂缝或分层。在1050摄氏度上的更高的预烧结温度限制了BSCFZ顶层的致密化,因为基板和顶层之间的膨胀系数不匹配,导致具有高孔隙率的表面。 (c)2017 Elsevier Ltd.保留所有权利。

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