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首页> 外文期刊>Journal of Applied Physics >Reversible phase transition in laser-shocked 3Y-TZP ceramics observed via nanosecond time-resolved x-ray diffraction
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Reversible phase transition in laser-shocked 3Y-TZP ceramics observed via nanosecond time-resolved x-ray diffraction

机译:通过纳秒级时间分辨X射线衍射观察到激光冲击3Y-TZP陶瓷中的可逆相变

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摘要

The high-pressure phase stability of the metastable tetragonal zirconia is still under debate. The transition dynamics of shocked Y2O3 (3 mol. %) stabilized tetragonal zirconia ceramics under laser-shock compression has been directly studied using nanosecond time-resolved x-ray diffraction. The martensitic phase transformation to the monoclinic phase, which is the stable phase for pure zirconia at ambient pressure and room temperature, has been observed during compression at 5 GPa within 20 ns without any intermediates. This monoclinic phase reverts back to the tetragonal phase during pressure release. The results imply that the stabilization effect due to the addition of Y2O3 is to some extent negated by the shear stress under compression.
机译:亚稳态四方氧化锆的高压相稳定性仍在争论中。已使用纳秒时间分辨X射线衍射直接研究了冲击的Y2O3(3摩尔%)稳定的四方氧化锆陶瓷在激光冲击压缩下的跃迁动力学。马氏体相转变为单斜晶相,这是纯氧化锆在环境压力和室温下的稳定相,在5 GPa压缩下20 ns内观察到无任何中间产物。在压力释放期间,该单斜相恢复为四方相。结果暗示由于添加Y 2 O 3而产生的稳定作用在一定程度上被压缩下的剪切应力所抵消。

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