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Practical applications of the chemical strain effect in ionic and mixed conductors

机译:化学应变效应在离子导体和混合导体中的实际应用

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Abstract The chemical strain effect in solids is the deviation from linear elasticity due to the association and dissociation of point defects. Although to date this effect has been observed and studied only in Ce0.8Gd0.2O1,9, one may expect that it will be found in other ionic and mixed conductors containing a large concentration of point defects. In this work, some practical applications of materials exhibiting the chemical strain effect are discussed. Based on the example of Ce0.8Gd0.2O1,9, mechanical structures built from these materials should exhibit exceptional mechanical stability and are therefore very attractive for use as components of solid oxide fuel cells (SOFC) or other devices subjected to large and frequent temperature variations. The ability of these materials to withstand large strain without accumulating large stress also makes them potentially useful as flexible elements in micro-electromechanical systems (MEMS).
机译:摘要固体中的化学应变效应是由于点缺陷的缔合和解离而导致的线性弹性的偏离。尽管迄今为止仅在Ce 0.8 Gd 0.2 O 1,9 中观察到并研究了这种效应,但人们可能希望可以发现在含有大量点缺陷的其他离子导体和混合导体中在这项工作中,讨论了具有化学应变效应的材料的一些实际应用。根据Ce 0.8 Gd 0.2 O 1,9 的示例,由这些材料构建的机械结构应表现出优异的机械稳定性,因此非常用作固体氧化物燃料电池(SOFC)或其他经受较大且频繁温度变化的设备的组件非常有吸引力。这些材料能够承受较大应变而不会累积大应力的能力也使它们有可能用作微机电系统(MEMS)中的柔性元件。

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