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首页> 外文期刊>Metals and Materials International >Effects of La2O3 content and particle size on the long-term stability and thermal cycling property of La2O3-dispersed SUS430 alloys for SOFC interconnect materials
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Effects of La2O3 content and particle size on the long-term stability and thermal cycling property of La2O3-dispersed SUS430 alloys for SOFC interconnect materials

机译:La2O3含量和粒径对SAFC互连材料La2O3分散SUS430合金长期稳定性和热循环性能的影响

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We developed oxide-dispersed alloys as interconnect materials for a solid oxide fuel cell by adding La2O3 to SUS430 ferritic steels. For this purpose, we prepared two types of La2O3 with different particle sizes and added different amounts of La2O3 to SUS430 powder. Then, we mixed the powders using a high energy ball mill, so that nano-sized as well as micro-sized oxide particles were able to mix uniformly with the SUS430 powders. After preparing hexahedral green samples using uni-axial and cold isostatic presses, we were finally able to obtain oxide-dispersed alloys having high relative densities after firing at 1,400 A degrees C under hydrogen atmosphere. The nano-sized La2O3 dispersed alloys showed properties superior to those of micro-sized dispersed alloys in terms of long-term stability and thermal cycling. Moreover, we determined the optimum amounts of added La2O3. Finally we were able to develop a new oxide-dispersed alloy showing excellent properties of low area specific resistance (16.23 m Omega cm(2)) after 1000 h at 800 A degrees C, and no degradation after 10 iterations of thermal cycling under oxidizing atmosphere.
机译:我们通过将La2O3加入SUS430铁素体钢,将氧化物分散的合金作为用于固体氧化物燃料电池的互连材料。为此目的,我们制备了两种类型的La2O3,具有不同的颗粒尺寸,并添加了不同量的La2O3至SUS430粉末。然后,我们使用高能球磨机混合粉末,使得纳米尺寸以及微尺寸的氧化物颗粒能够与SUS430粉末均匀地混合。使用单轴和冷等静压压机制备六面对绿色样品后,我们最终能够在氢气氛下在1,400℃下烧制后获得具有高相对密度的氧化物分散的合金。纳米大小的La2O3分散合金显示出在长期稳定性和热循环方面优于微尺寸分散合金的特性。此外,我们确定了添加量的La2O3的最佳量。最后,我们能够开发一种新的氧化物分散合金,显示出在800℃的1000小时后的低面积电阻(16.23mΩcm(2))的优异性能,并且在氧化气氛下热循环10次迭代后没有降解。

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