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ELECTRICAL FIELD ENHANCEMENT OF COMPACTION AND SUPER-PLASTIC DEFORMATION OF CERAMICS

机译:陶瓷的电场增强和超塑性变形

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摘要

A wide variety of ceramic materials, e.g. sialons, Al_2O_3, ZrO_2, BaTiO_3 and Bi_4Ti_3O_(12), have successfully been compacted by spark plasma sintering (SPS). Our most recent findings concerning preparation of nano-sized ferroelectric ceramics and concerning dramatically improved super-plastic performance in presence an external pulsed electric field will be briefly described. Compressive strain rates of the order of 10~(-2) s~(-1) at 1500℃ for Si_3N_4-based ceramics containing less than 5 vol% inter-granular glassy phase have thus been obtained in the SPS-unit, while experiments in a hot press, i. e. in absence of an electrical field, yielded rates of the order 10~(-5) s~(-1). The ferroelectric domain structure of Bi_4Ti_3O_(12) has been tailored to yield specimens with extremely well aligned grains of the size 0.5x0.5x2.5 (μm)~3 exhibiting ferroelectric properties equal to or better than single crystal ones via directional dynamic ripening of nano-grains that in turn are exposed to a compressive stress.
机译:各种各样的陶瓷材料,例如赛隆,Al_2O_3,ZrO_2,BaTiO_3和Bi_4Ti_3O_(12)已成功通过火花等离子体烧结(SPS)压实。我们将简要描述我们有关纳米铁电陶瓷制备以及在外部脉冲电场存在下显着改善超塑性性能的最新发现。因此,在SPS单元中,对于晶界小于5vol%的Si_3N_4基陶瓷,在1500℃下的压缩应变率约为10〜(-2)s〜(-1)。在热压机中e。在没有电场的情况下,产生的速率约为10〜(-5)s〜(-1)。量身定制了Bi_4Ti_3O_(12)的铁电畴结构,以产生具有0.5x0.5x2.5(μm)〜3尺寸的极好排列的晶粒的样品,该样品通过定向动态熟化显示出的铁电性能等于或优于单晶纳米颗粒继而受到压应力。

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