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首页> 外文期刊>Journal of the European Ceramic Society >Curvature and stresses for bi-layer functional ceramic materials
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Curvature and stresses for bi-layer functional ceramic materials

机译:双层功能陶瓷材料的曲率和应力

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摘要

The technical application of layered functional ceramic components is challenged by curvature effects and residual stresses originating mostly from the thermal mismatch or chemical strains of the joined materials. Based on the general solution for elastic deformation of monolithic and multilayered materials the determination of curvature and residual stress for linear elastic bi-material specimens with chemical strains, chemical reduction in stiffness, shape variations, gradients in elastic modulus or thermal expansion is outlined. The use of the relationships is exemplified for ceramic solid oxide fuel cell (SOFC) and ceramic membrane materials. For SOFCs curvature changes are considered resulting from the reduction of the anode and crystallization of a glass–ceramic sealant with semi-spherical shape. For gas separation membranes which currently under development for fossil power plants the effect of chemical strains is assessed. The limits of using analytical relationships are addressed for the warpage of thin, rectangular SOFCs.
机译:层状功能陶瓷组件的技术应用受到曲率效应和残余应力的挑战,这些残余应力主要源于连接材料的热失配或化学应变。基于整体和多层材料弹性变形的一般解决方案,概述了具有化学应变,化学刚度降低,形状变化,弹性模量梯度或热膨胀的线性弹性双材料试样的曲率和残余应力的确定。对于陶瓷固体氧化物燃料电池(SOFC)和陶瓷膜材料举例说明了这种关系的使用。对于SOFC,认为曲率变化是由于阳极的减少和半球形玻璃陶瓷密封胶的结晶而引起的。对于目前正在为化石发电厂开发的气体分离膜,评估了化学应变的影响。对于薄的矩形SOFC的翘曲,解决了使用分析关系的限制。

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