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Microstructural refinement in spark plasma sintering 3Y-TZP nanoceramics

机译:火花等离子体烧结3Y-TZP纳米陶瓷的微结构细化

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A commercial 3Y-TZP nanopowder was consolidated by spark plasma sintering (SPS) techniques. By special die-upset designs, each possible influence from the electric field, uniaxial pressure and heating rate was peeled to identify its contribution. Besides density and grain growth, the evolution of pore structure was consulted to clarify the relationships between microstructural development and densification kinetics. The results showed that neither electric current nor fast heating had no decisive contributions while external force was a necessity for the microstructural refinement. The authors proposed that the essentially underlying mechanism was the intensive particle rearrangement, which involves no grain growth but particle close-packing through grain rotation and sliding. The full advantages of this mechanism can be taken in rapid heating conditions, which combined with the application of higher pressures, make the SPS family of techniques to have advancement in the preparations of nanoceramics over their conventional counterparts characterized by slow heating features. (C) 2016 Elsevier Ltd. All rights reserved.
机译:商业3Y-TZP纳米粉通过火花等离子烧结(SPS)技术进行了固结。通过特殊的模具-锻设计,剥离了电场,单轴压力和加热速率的每种可能影响,以确定其影响。除了密度和晶粒长大之外,还咨询了孔结构的演变,以阐明微观结构发展与致密化动力学之间的关系。结果表明,电流和快速加热都没有决定性作用,而外力是微结构细化的必要条件。作者提出,根本的机理是密集的颗粒重排,它不涉及晶粒长大,而是通过晶粒旋转和滑动而紧密堆积。这种机理的全部优点可以在快速加热条件下获得,再加上更高的压力,使得SPS系列技术在制备纳米陶瓷方面比传统的慢速加热技术进步。 (C)2016 Elsevier Ltd.保留所有权利。

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