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Densification and preservation of ceramic nanocrystalline character by spark plasma sintering

机译:放电等离子体烧结致密化并保持陶瓷纳米晶特性

摘要

Spark plasma sintering is a hot pressing technique where rapid heating by dc electric pulses is used simultaneously with applied pressure. Thus, spark plasma sintering is highly suitable for rapid densification of ceramic nanoparticles and preservation of the final nanostructure. A considerable portion of the shrinkage during densification of the green compact of nanoparticles in the first and intermediate stages of sintering occurs during heating by particle rearrangement by sliding and rotation. Further densification to the final stage of sintering takes place by either plastic yield or diffusional processes. Full densification in the final stage of sintering is associated with diffusional processes only. Nanoparticle sliding and rotation during heating may also lead to grain coalescence, with much faster kinetics than normal grain growth at higher temperatures. Based on existing models for particle rearrangement and sliding, the contributions of these processes in conjunction with nanoparticle properties and process parameters were highlighted.
机译:火花等离子体烧结是一种热压技术,其中在施加压力的同时使用直流电脉冲快速加热。因此,火花等离子体烧结非常适合于陶瓷纳米颗粒的快速致密化和最终纳米结构的保存。在烧结的第一阶段和中间阶段,在纳米颗粒的压坯的致密化过程中,相当一部分的收缩发生在通过滑动和旋转进行的颗粒重排加热期间。通过塑性屈服或扩散过程进一步烧结至烧结的最后阶段。烧结最后阶段的完全致密化仅与扩散过程有关。加热过程中纳米粒子的滑动和旋转也可能导致晶粒聚结,其动力学比高温下正常晶粒的生长快得多。基于现有的颗粒重排和滑动模型,突出了这些过程以及纳米颗粒性质和过程参数的贡献。

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