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Evaluation of Creep Properties in Anode Materials for Solid Oxide Fuel Cells by Using Small Punch Testing Method

机译:用小冲头试验方法评估固体氧化物燃料电池阳极材料中的蠕变性质

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To assess the mechanical reliability and durability of solid oxide fuel cells (SOFCs), a suitable creep test method needs to be developed. The objective of this study is to examine the potential of small punch (SP) method as a simple creep testing method for SOFCs. In this study, the creep properties of Ni-YSZ composites were evaluated at temperatures of 800-900°C, and at stresses of 47.3 to 89.8 MPa under 1% hydrogen environment. The obtained creep curves by the SP method showed three stages: initial transition creep, secondary creep, and tertiary stages. The central displacement versus time data obtained by the SP method was found to be characterized by a power law relationship. Even though quantitative comparisons need to be made with conventional methods, the above result suggests the usefulness of the SP methods for characterizing the creep properties in constituent materials of SOFCs.
机译:为了评估固体氧化物燃料电池(SOFC)的机械可靠性和耐久性,需要开发合适的蠕变试验方法。本研究的目的是检查小冲头(SP)方法的潜力,作为SOFC的简单蠕变测试方法。在该研究中,在800-900℃的温度下评价Ni-YSZ复合材料的蠕变性质,并在1%氢气环境下的47.3至89.8MPa的应力。通过SP方法获得的蠕变曲线显示出三个阶段:初始转变蠕变,二次蠕变和三级阶段。发现由SP方法获得的中央位移与时间数据以权力法关系为特征。尽管需要用常规方法进行定量比较,但上述结果表明SP方法的用性,用于表征SOFC的组成材料中的蠕变性质。

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