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Design and production of ceramic laminates with high mechanical reliability

机译:机械可靠性高的陶瓷层压板的设计与生产

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摘要

A procedure for designing innovative ceramic laminates characterized by high mechanical reliability is proposed in this work. A fracture mechanics approach has been considered to define the stacking sequence, thickness and composition of the different laminae on the basis of the requested strength and of the defect size distribution. Once the different laminae are stacked together a residual stress profile is generated upon cooling after sintering because of the differential thermal expansion coefficient. Such residual stress profile is conceived in order to allow stable growth of surface defects upon bending and guarantee limited strength scatter. As an example, the proposed approach is used to design and produce ceramic laminates in the alumina-zirconia and alumina-mullite system. Mechanical performances of the produced materials are discussed in terms of the generated residual stress profile and compared to parent monolithic ceramics.
机译:在这项工作中,提出了一种设计新颖的,具有高机械可靠性的陶瓷层压板的程序。已经考虑采用断裂力学方法来根据要求的强度和缺陷尺寸分布来定义不同薄片的堆叠顺序,厚度和成分。一旦将不同的薄片堆叠在一起,由于不同的热膨胀系数,在烧结后冷却后会产生残余应力分布。构想这种残余应力分布图是为了允许弯曲时表面缺陷的稳定增长并保证有限的强度散布。例如,所提出的方法用于设计和生产氧化铝-氧化锆和氧化铝-莫来石体系的陶瓷层压板。根据产生的残余应力曲线讨论了所生产材料的机械性能,并与母体整体陶瓷进行了比较。

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