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首页> 外文期刊>Journal of the European Ceramic Society >Influence of green state processes on the sintering behaviour and the subsequent optical properties of spark plasma sintered alumina
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Influence of green state processes on the sintering behaviour and the subsequent optical properties of spark plasma sintered alumina

机译:绿态工艺对火花等离子体烧结氧化铝的烧结行为及其后续光学性能的影响

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摘要

The present investigation gives a quantitative correlation between different green microstructures, and their sintering behaviour during spark plasma sintering. The green microstructures were elaborated via various green shaping processes such as direct casting and direct coagulation casting compared to uniaxial compaction of the as-received sub-micron grained corundum powder. Narrowing pore size distribution and reducing pore size (≈ 40 nm) in the green compact could favour cold densification during initial uniaxial pressing by grain sliding and rearrangement. This is attributed to the soft homogeneous touching network in direct-cast green samples. Consequently, grain growth was impeded and the onset of shrinkage was delayed. Moreover, the small pores and the narrow pore size distribution in the homogeneous green bodies led to higher final densities, with better optical properties compared to the less homogeneous green samples.
机译:本研究给出了不同绿色微结构及其在火花等离子体烧结过程中的烧结行为之间的定量关系。通过与原样获得的亚微米级刚玉粉末的单轴压实相比,通过各种绿色成形工艺(例如直接铸造和直接凝结铸造)对绿色微观结构进行了详细阐述。在生坯中缩小孔径分布并减小孔径(约40 nm),可能有利于在初始单轴压制过程中通过晶粒滑动和重排进行冷致密化。这归因于直接浇铸绿色样本中的柔软均质触摸网络。因此,阻碍了晶粒的生长并且延迟了收缩的开始。此外,与较不均匀的生坯样品相比,均匀的生坯中的小孔和狭窄的孔径分布导致更高的最终密度,并具有更好的光学性能。

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