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Transverse cracking in metal/ceramic composites with lamellar microstructure

机译:金属/陶瓷复合材料的横向开裂,具有层状组织

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Metal/ceramic composites with lamellar microstructures are a novel class of metal-matrix composites produced by infiltration of freeze-cast or ice-templated ceramic preforms with molten aluminium alloy. The cost-effectiveness of production and relatively high ceramic content make such composites attractive to a number of potential applications in the automotive, aerospace and biomedical engineering. A hierarchical lamellar microstructure exhibited by these composites, with randomly orientated domains in which all ceramic and metallic lamellae are parallel to each other, is the result of the ice crystal formation during freeze-casting or ice templating of preforms from water-ceramic suspensions. In this paper, a single-domain sample of metal/ceramic composite with lamellar microstructure is modelled theoretically using a combination of analytical and computational means. Stress field in the sample containing multiple transverse cracks in the ceramic layer is determined using a modified 2-D shear lag approach and a finite element method. Degradation of stiffness properties of the sample due to multiple transverse cracking is also predicted.
机译:具有层状组织的金属/陶瓷复合材料是通过熔融铝合金渗透的渗透或冰塑陶瓷预制件产生的新型金属基质复合材料。生产成本效益和相对高的陶瓷内容使得这种复合材料对汽车,航空航天和生物医学工程中的许多潜在应用具有吸引力。这些复合材料表现出的分层板状微观结构,其中所有陶瓷和金属薄片彼此平行的随机取向的结构域,是冰晶形成在水 - 陶瓷悬浮液的冻铸造或冰玻璃凝固过程中的结果。本文使用分析和计算装置的组合理论上模拟了具有层状微观结构的金属/陶瓷复合物的单结构域样品。使用改性的2-D剪切滞后方法和有限元法测定含有陶瓷层中多个横裂缝的样品中的应力场。还预测了由于多个横变裂缝引起的样品的刚度特性的降解。

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