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首页> 外文期刊>Journal of the European Ceramic Society >Dense nanostructured zirconia by two stage conventional/hybrid microwave sintering
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Dense nanostructured zirconia by two stage conventional/hybrid microwave sintering

机译:两步常规/混合微波烧结致密纳米氧化锆

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摘要

The processing of 3 mol percent yttria partially stabilised zirconia nanopowder into components has been investigated via slip casting low viscosity but high solids content nanosuspensions and subsequent pressureless sintering via one and two stage sintering involving both pure conventional heating and hybrid conventional-microwave heating. Very homogeneous and uniform green bodies with densities up to approx 54 percent of theoretical could be produced, the major limitation being cracking on drying when the highest solid content suspensions were used. This could be partially overcome via the use of humidity drying. The pressureless sintering of the bodies revealed that the two stage sintering process allows a much finer average grain size to be retained than conventional single stage firing, whilst the use of hybrid heating gave further improvements. Greater than 99 percent dense ceramics with average grain sizes of approx 65 nm could be produced from a powder with an average particle size of approx 16 nm.
机译:通过滑模铸造低粘度但固体含量高的纳米悬浮液,以及随后的无压烧结,包括纯常规加热和混合常规微波加热的一阶段和两阶段烧结,研究了将3摩尔百分比的氧化钇部分稳定的氧化锆纳米粉加工为组分的过程。可以生产出密度高达理论值的约54%的非常均匀且均匀的生坯,主要限制是使用最高固含量的悬浮液干燥时会产生裂纹。通过使用湿度干燥可以部分克服这一问题。坯体的无压烧结表明,与传统的单级烧结相比,两级烧结工艺可以保留更细的平均晶粒尺寸,而混合加热的使用则带来了进一步的改进。用平均粒径约为16 nm的粉末可以生产出大于99%的平均粒径约为65 nm的致密陶瓷。

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