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Processing optimisation and fracture behaviour of layered ceramic composites with highly compressive layers

机译:具有高压缩层的层状陶瓷复合材料的工艺优化和断裂行为

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摘要

Multilayer ceramics with five thick layers of alumina-YTZP and four thin layers of alumina-pure zirconia have been fabricated by slip casting and mechanically characterized in order to evaluate the influence of residual stresses on the fracture behaviour. In doing so, processing parameters are optimised in terms of suspension stabilization and well-dispersion of the zirconia particles within the alumina layers. Two different compressive residual stress values are attained through sequential slip casting of specimens with thick/thin layer thickness ratios of 5.4 and 9.5, by controlling the stability and casting time of aqueous slurries. Flexural tests conducted on indented monoliths and multilayered materials show a stepwise failure in the laminates associated with the bifurcation of the impinging crack when interacting with the internal layers, this phenomenon being evidenced even for the case of laminates with very thin compressive layers where edge cracking is not observed.
机译:为了评估残余应力对断裂行为的影响,已经通过滑模铸造制造了具有五个氧化铝-YTZP厚层和四个氧化铝-氧化锆薄层的多层陶瓷,并对其进行了机械表征。这样做,就悬浮稳定性和氧化锆颗粒在氧化铝层内的均匀分散而言,优化了工艺参数。通过控制水性浆料的稳定性和流延时间,通过依次滑动浇铸厚/薄层厚度比为5.4和9.5的样品,可获得两个不同的压缩残余应力值。对带有压痕的整料和多层材料进行的弯曲试验表明,层压板与内层相互作用时,与冲击裂纹分叉有关的层压板会逐步失效,即使对于具有非常薄的压缩层且边缘破裂的层压板,这种现象也得到了证明。没有观察到。

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