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Directionally solidified calcia stabilised zirconia-nickel oxide plates in anode supported solid oxide fuel cells

机译:阳极支撑固体氧化物燃料电池中的定向凝固的氧化钙稳定化氧化锆-氧化镍板

摘要

We present here a new manufacturing procedure for the anode Ni-zirconia cermet. It is based on the modification of the surface of a NiO-CaSZ (calcia stabilized zirconia) pellet of eutectic composition by surface laser melting and resolidification. A smooth, continuous and dense NiO-CaSZ layer is obtained on top of the ceramic pellet. Its depth can be varied from less than 200 οm to more than 570 οm, depending on the processing conditions. Its microstructure consists mainly of lamellar eutectic grains with interlamellar spacing ranging from 0.4 to 1.6 οm. The interspacing diminishes towards the surface, where a very fine microstructure is developed. Chemical reduction treatment transforms NiO to metallic Ni with the accompanying volume reduction. Complete reduction results into a cermet with 43 CaSZ+33.5 Ni+23.5 pores (%vol). Electrical conductivity is mainly electronic and proceeds along NiO lamellae or through percolating Ni particles. © 2003 Elsevier Ltd. All rights reserved.
机译:我们在这里介绍阳极镍氧化锆金属陶瓷的新制造程序。它基于通过表面激光熔化和再固化对共晶成分的NiO-CaSZ(氧化钙稳定的氧化锆)粒料的表面进行改性的方法。在陶瓷丸粒的顶部获得了光滑,连续且致密的NiO-CaSZ层。它的深度可以从小于200微米到大于570微米不等,具体取决于处理条件。它的微观结构主要由层状共晶晶粒,层间间距范围从0.4到1.6μm。间距朝着表面逐渐减小,在该表面形成了非常精细的微观结构。化学还原处理将NiO转变为金属Ni,并伴随着体积的减少。完全还原成具有43个CaSZ + 33.5 Ni + 23.5孔(%vol)的金属陶瓷。导电性主要是电子,并且沿着NiO薄片或通过渗滤Ni颗粒而进行。 ©2003 ElsevierLtd。保留所有权利。

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