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A Novel Thermomechanical Processing Route to Fabricate ODS Ferritic Stainless Steel Interconnects and Their Oxidation Behavior

机译:一种制造ODS铁素体不锈钢互连的新型热机械加工途径及其氧化行为

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摘要

Oxide dispersion-strengthened AISI 430 alloy was fabricated using a novel thermomechanical processing route for potential application as interconnect in solid oxide fuel cells. The process can be termed as reverse friction deposition wherein the final product is formed by curling up as a seamless tube on the surface of the parent rod which is used as a consumable tool in a friction stir welding machine. The oxide dispersion alloy is obtained by incorporating 8mol% yttria-stabilized zirconia powder in drilled holes in the rod. The number and spatial distribution of holes were optimized for a sound product and uniform distribution of the particles. The oxidation behavior of the formed tube was remarkably different from that of the parent rod. The dispersion of zirconia particles on the outer surface of the tube retards Cr diffusion owing to their grain boundary pinning effect which also refines the Fe2O3 crystal size. (Cr, Mn)O-4 spinel, which is known to be electrically conductive, formed in the inner surface of the tube. The tube thus can be used as an interconnect in tubular solid oxide fuel cells and potentially prevent Cr poisoning of the cathode.Graphical Abstract
机译:使用新的热机械加工途径制造氧化物分散体加强的AISI 430合金,用于潜在应用作为固体氧化物燃料电池中的互连。该方法可以称为反向摩擦沉积,其中通过作为母杆表面上的无缝管形成最终产物,该阀体杆上用作摩擦搅拌焊接机中的消耗工具。通过在杆中的钻孔中掺入钻孔中的8mol%的yTTRIA稳定的氧化锆粉末获得氧化物分散合金。孔的数量和空间分布用于声音产品和颗粒的均匀分布。形成的管的氧化行为与母杆的氧化行为显着不同。由于它们的晶界钉扎效应,氧化锆颗粒在管的外表面上的分散延迟了Cr扩散,这也改善了Fe2O3晶体尺寸。 (Cr,Mn)O-4尖晶石,其已知在管的内表面中形成导电。因此,管可以用作管状固体氧化物燃料电池中的互连,并且可能防止阴极的Cr中毒。图摘要

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