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首页> 外文期刊>Materials Science and Engineering. A, Structural Materials: Properties, Microstructure and Processing >Braze oxidation behavior and joint microstructure in YSZ/steel joints made using palladium brazes for SOFC applications
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Braze oxidation behavior and joint microstructure in YSZ/steel joints made using palladium brazes for SOFC applications

机译:使用SOFC应用的钯钎料制成的YSZ /钢接头的钎料氧化行为和接头微观结构

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摘要

Two palladium-base brazes (Palco and Palni), and two silver-base brazes containing palladium as an alloying element (Palcusil-10 and Palcusil-15) were evaluated for oxidation resistance at 750 ℃, and used in joining yttria-stabilized zirconia (YSZ) to a corrosion-resistant ferritic stainless steel for possible use in solid oxide fuel cell (SOFC) interconnects. Thermogravimetric analysis (TGA), and optical and scanning electron microscopy (SEM) coupled with energy dispersive spectrometry (EDS) were used to evaluate the braze oxidation behavior and the microstructure of the YSZ/braze/steel joints. Knoop microhardness testing was used to develop hardness profiles across the joint region. The TGA results showed that Palco and Palni exhibited the fastest and the slowest oxidation kinetics, respectively, with Palcusil-10 and Palcusil-15 exhibiting oxidation kinetics intermediate between Palco and Palni. The EDS analysis revealed the dissolution of YSZ and steel constituents in braze, and of braze constituents in the YSZ and steel, which led to metallurgically sound joints. The microhardness profiles exhibited a sharper discontinuity at the YSZ/braze interface than at the steel/braze interface, with a peak hardness of ~1000KHN in YSZ and 150-180 KHN in the steel substrate.
机译:对两种钯基钎料(Palco和Palni)以及两种含钯作为合金元素的银基钎料(Palcusil-10和Palcusil-15)在750℃下的抗氧化性进行了评估,并用于连接氧化钇稳定的氧化锆( YSZ)到耐腐蚀的铁素体不锈钢,可能用于固体氧化物燃料电池(SOFC)互连。使用热重分析(TGA),光学和扫描电子显微镜(SEM)以及能量色散光谱(EDS)来评估YSZ /钎焊/钢接头的钎焊氧化行为和微观结构。努氏显微硬度测试用于在整个接头区域形成硬度曲线。 TGA结果表明,Palco和Palni分别表现出最快和最慢的氧化动力学,而Palcusil-10和Palcusil-15表现出介于Palco和Palni之间的氧化动力学。 EDS分析表明,YSZ和钢成分在钎焊中的溶解,以及YSZ和钢中的钎焊成分的溶解,导致了接头处的冶金学合理。显微硬度分布在YSZ /钎焊界面处的不连续性比在钢/钎焊界面处更尖锐,YSZ的峰值硬度为〜1000KHN,在钢基底中的峰值硬度为〜150-180 KHN。

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