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首页> 外文期刊>Journal of the European Ceramic Society >Optimal strength and toughness of Al_2O_3-ZrO_2 laminates designed with external or internal compressive layers
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Optimal strength and toughness of Al_2O_3-ZrO_2 laminates designed with external or internal compressive layers

机译:设计有外部或内部压缩层的Al_2O_3-ZrO_2层压板的最佳强度和韧性

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摘要

Layered ceramics have been proposed as an alternative choice for the design of structural ceramics with improved fracture toughness, strength and reliability. The use of residual compressive stresses, either at the surface or in the internal layers, may improve the strength as well as the crack resistance of the material during crack growth. In this work, two alumina-zirconia laminates designed with external (ECS-laminates) and internal (ICS-laminates) compressive stresses have been investigated using a fracture mechanics weight function analysis. An optimal architecture that maximises material toughness and strength has been found for each design as a function of geometry. From a flaw tolerant viewpoint, ECS-laminates are suitable for ceramic components with small cracks or flaws which are embedded in or near the potential tensile surface of the piece. On the other hand, the existence of large cracks or defects suggests the use of ICS-laminates to attain a more reliable response.
机译:已经提出了层状陶瓷作为具有改善的断裂韧性,强度和可靠性的结构陶瓷设计的替代选择。在表面或内层使用残余压缩应力,可以改善材料的强度以及在裂纹扩展过程中的抗裂性。在这项工作中,使用断裂力学权函数分析研究了两种设计有外部(ECS层压板)和内部(ICS层压板)压应力的氧化铝-氧化锆层压板。对于每种设计,已经找到了一种优化的体系结构,该体系结构可以使材料的韧性和强度最大化,这是几何形状的函数。从容错角度来看,ECS层压板适用于具有小裂纹或缺陷的陶瓷组件,这些组件嵌入工件的潜在拉伸表面中或附近。另一方面,大裂纹或缺陷的存在表明使用ICS层压板可获得更可靠的响应。

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