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首页> 外文期刊>Journal of power sources >High-temperature Mechanical Properties Of A Glass Sealant For Solid Oxide Fuel Cell
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High-temperature Mechanical Properties Of A Glass Sealant For Solid Oxide Fuel Cell

机译:固体氧化物燃料电池用玻璃密封胶的高温力学性能

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摘要

The high-temperature mechanical properties of a newly developed silicate-based glass sealant, designated as GC-9, have been studied for use in planar solid oxide fuel cell (pSOFC). Four-point bending tests were conducted at room temperature, 550℃, 600℃, 650 ℃, 700℃ and 750℃ to investigate the variation of flexural strength, elastic modulus, and stress relaxation with temperature for the given glass sealant. Weibull statistic analysis was applied to describe the fracture strength data. The results indicated that the flexural strength was increased with temperature when the testing temperature was below the glass transition temperature (T_g, 668 ℃). This was presumably caused by a crack healing effect taking place at high temperatures for glasses. However, with a further increase of temperature to a level higher than 7_g, significant stress relaxation was observed to cause extremely large deformation without breaking the specimen. When the controlled displacement rate was increased by an order of magnitude, the stress relaxation effect at 750℃ became less effective. However, the mechanical stiffness of the given glass was significantly reduced at a temperature higher than T_g.
机译:对于平面固体氧化物燃料电池(pSOFC),已经研究了一种新开发的基于硅酸盐的玻璃密封剂(称为GC-9)的高温机械性能。在室温,550℃,600℃,650℃,700℃和750℃下进行了四点弯曲试验,以研究给定的玻璃密封胶的弯曲强度,弹性模量和应力松弛随温度的变化。采用威布尔统计分析法描述断裂强度数据。结果表明,当测试温度低于玻璃化转变温度(T_g,668℃)时,弯曲强度随温度而增加。据推测这是由于玻璃在高温下产生的裂纹愈合效果所致。但是,随着温度进一步升高到高于7_g的水平,观察到明显的应力松弛会导致极大的变形而不会破坏样品。当控制位移速率增加一个数量级时,在750℃的应力松弛效果变得不太有效。但是,给定玻璃的机械刚度在高于T_g的温度下明显降低。

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