首页> 外文期刊>International journal of hydrogen energy >Effect of minor elements and a Ce surface treatment on the oxidation behavior of an Fe-22Cr-0.5Mn (Crofer 22 APU) ferritic stainless steel
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Effect of minor elements and a Ce surface treatment on the oxidation behavior of an Fe-22Cr-0.5Mn (Crofer 22 APU) ferritic stainless steel

机译:微量元素和Ce表面处理对Fe-22Cr-0.5Mn(Crofer 22 APU)铁素体不锈钢氧化行为的影响

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This paper details the oxidation behavior of coupons from three different Crofer 22 APU sheets. Oxidation tests were conducted at 800 ℃ in moist air for 2300h. The major features of the scales were similar in all three coupons, with a continuous Cr-Mn spinel layer forming at the gas-oxide interface and a Cr_2O_3 layer forming at the oxide-metal interface. Also, at the Cr_2O_3-metal interface, large Cr-Mn oxide particles formed in the base metal. Metal extrusions in the oxide scale were observed in the vicinity of these Cr-Mn oxide particles. All three alloys had internal oxide particles forming in the base metal beneath the oxide scale, and the extent of this internal oxidation was related to the Al and Si-content in the coupons (as also reported by Piron-Abellan J, Huczkowski P, Ertl S, Shemet V, Singheiser L, Quadakkers W. In: Fuel cell seminar, 2004. San Antionio, TX, November 1-5, 2004). Of note, discontinuous Ti-oxide and Mn-oxide particles formed above the outer spinel layer on the coupons with relatively high Al and Si contents. The effectiveness of rare-earth surface modification on improving oxidation resistance of this alloy was demonstrated. Pack cementation-like processes were used to treat the surface of the coupons with Ce. A continuous Cr-Mn outer oxide layer and a continuous inner Cr_2O_3 layer formed on the surface of the treated coupons during oxidation. However, the thickness of the scales and amount of internal oxidation were significantly reduced with the treatment, leading to the decrease in oxidation rate. The amount of internal oxidation was also reduced with the treatment. The treatment appeared to suppress the formation of SiO_2 at the scale-metal interface in high Si containing alloys. ASR measurements indicate that the treatment decreases the electrical resistance, which is a benefit for SOFC interconnect application.
机译:本文详细介绍了三种不同的Crofer 22 APU片材试样的氧化行为。在800℃的潮湿空气中进行了2300h的氧化测试。在所有三个试样中,氧化皮的主要特征均相似,在气体-氧化物界面处形成连续的Cr-Mn尖晶石层,在氧化物-金属界面处形成Cr_2O_3层。另外,在Cr_2O_3-金属界面处,在贱金属中形成了大的Cr-Mn氧化物颗粒。在这些Cr-Mn氧化物颗粒的附近观察到金属氧化物的氧化皮挤压。所有这三种合金均在贱金属中以氧化皮以下的形式形成内部氧化物颗粒,并且这种内部氧化程度与试样中的Al和Si含量有关(也如Piron-Abellan J,Huczkowski P,Ertl所报道) S,Shemet V,Singheiser L,QuadakkersW。在:燃料电池研讨会,2004年。德克萨斯州圣安蒂蒂奥,2004年11月1-5日。值得注意的是,在外尖晶石层上方的试样块上形成的不连续的Ti-氧化物和Mn-氧化物颗粒具有较高的Al和Si含量。证明了稀土表面改性对改善该合金的抗氧化性的有效性。使用堆积胶结样工艺用Ce处理试样块的表面。在氧化期间,在处理过的试样块的表面上形成连续的Cr-Mn外氧化物层和连续的内Cr_2O_3层。然而,随着处理,氧化皮的厚度和内部氧化量显着降低,导致氧化速率降低。处理也减少了内部氧化的量。该处理似乎抑制了高含硅合金中鳞片金属界面处SiO_2的形成。 ASR测量表明,该处理降低了电阻,这对于SOFC互连应用是有好处的。

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