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Refitting of Zirconia Toughening into Open-Cellular Alumina Foams by Infiltration with Zirconyl Nitrate

机译:硝酸锆浸渗法将增韧氧化锆增韧成开孔氧化铝泡沫

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摘要

The present work describes the combination of the well-established dispersion infiltration of the hollow struts in reticulated porous ceramics (RPCs) and the salt solution infiltration of the remaining strut porosity. This approach is applied on alumina foams, which are loaded subsequently with a dispersion of sub-micrometer alumina particles and a ZrO(NO3)2 solution. The zirconyl nitrate is converted into a ZrO2 transformation toughening phase during the final sintering step. As a consequence of the complex microstructure evolution during the consecutive infiltration cycles, the reinforcement phase concentrates selectively at the weak spots of RPC structures—namely, the hollow strut cavities and longitudinal cracks along the struts. As a consequence, a severe improvement of the compressive strength is observed: The average compressive strength, normalized to a porosity of 91.6 vol.%, is 1.47 MPa for the Al2O3/ZrO2 infiltrated foams, which is an improvement by 40% with respect to alumina-only loaded foams (1.05 MPa) or by 206% compared to uninfiltrated alumina RPCs (0.48 MPa). The compressive strength results are correlated to infiltration parameters and the properties of the infiltration fluids, for example the rheological behavior and the size of the Zr solute species in the respective ZrO(NO3)2 solution.
机译:本工作描述了网状多孔陶瓷(RPC)中的中空支柱的良好建立的分散渗透与剩余的支柱孔隙率的盐溶液渗透的结合。此方法适用于氧化铝泡沫,随后在泡沫中装入亚微米级氧化铝颗粒和ZrO(NO3)2溶液的分散体。在最后的烧结步骤中,硝酸氧锆转化为ZrO2相变增韧相。由于在连续的渗透循环过程中复杂的微观结构演变,增强相选择性地集中在RPC结构的薄弱点上,即空心支柱腔和沿着支柱的纵向裂缝。结果,观察到抗压强度的严重改善:渗透率达到91.6 vol。%的Al2O3 / ZrO2渗透泡沫的平均抗压强度为1.47 MPa,相对于Al2O3 / ZrO2渗透泡沫,平均抗压强度提高了40%。纯氧化铝泡沫(1.05 MPa)或未渗透氧化铝RPCs(0.48 MPa)的206%。抗压强度结果与渗透参数和渗透流体的性质相关,例如在各自的ZrO(NO3)2溶液中的流变行为和Zr溶质的大小。

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