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首页> 外文期刊>Journal of the European Ceramic Society >Nanoreactor engineering and SPS densification of multimetal oxide ceramic nanopowders
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Nanoreactor engineering and SPS densification of multimetal oxide ceramic nanopowders

机译:纳米反应器工程和多金属氧化物陶瓷纳米粉的SPS致密化

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摘要

The concept of the in situ engineering of nanoreactors has been suggested and realized. Nanoreactors are morphologically homogeneous aggregates of synthesized complex intermediate metastable products. The thermo-activated processes of nucleation-growth of the final compositions were realized within the preliminary localized volume of each single nanoreactor, which provides the heredity of the final structure of the nanosize products. This new approach of multimetal oxide nanosize powder engineering allowed the prevention of the uncontrolled agglomeration and production of ceramic powders (8YSZ, CGO) consisting of approx 45 nm nano-aggregates of approx 7 nm crystallites with a remarkably homogeneous composition and uniform morphology. The advances from the introduction of the nanoblast calcination technique were also demonstrated. Finally, the SPS consolidation of nanosized aggregates of 8YSZ and CGO was analyzed. The 8YSZ ceramic with an average grain size of 90 nm and CGO nanoceramic with an extremely fine grain microstructure were obtained by low-temperature SPS under the ambient pressures of 100-150 MPa. The CGO ceramics with average grain sizes of 73, 32 and 18 nm were obtained by SPS at 1100, 1050 and 1000 deg C, respectively.
机译:已经提出并实现了纳米反应器的原位工程的概念。纳米反应器是合成的复杂中间体亚稳态产物的形态均一的聚集体。最终组合物的成核生长的热活化过程在每个单个纳米反应器的初步局部体积内实现,这提供了纳米级产物最终结构的遗传。这种多金属氧化物纳米级粉末工程的新方法可以防止陶瓷粉末(8YSZ,CGO)的不受控团聚和生产,该陶瓷粉末由约45 nm纳米聚集体和约7 nm的微晶组成,并具有非常均匀的组成和均匀的形态。还展示了引入纳米胚煅烧技术的进展。最后,分析了8YSZ和CGO纳米聚集体的SPS固结。在100-150 MPa的环境压力下,通过低温SPS获得了平均晶粒尺寸为90nm的8YSZ陶瓷和晶粒组织非常精细的CGO纳米陶瓷。通过SPS分别在1100、1050和1000摄氏度下获得平均晶粒度为73、32和18 nm的CGO陶瓷。

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