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Influence of ZrO_2 on the thermo-mechanical response of nano-ZTA

机译:ZrO_2对纳米ZTA热机械响应的影响

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摘要

Zirconia dispersed alumina powders have been synthesized in homogenous condition by following the wet interaction process at varying ZrO_2 content and the thermo-mechanical behavior of the same has been studied. The tetragonal phase is retained at room temperature without any deliberate addition of stabilizer, which has been explained on the basis of particle size effect in terms of lower surface energy of the t-phase compensating for the difference in chemical free energy. Flexural strength follows an inverse relation with temperature due to reduction of driving force for t -- > m transformation. The toughness and strength reduce significantly above 10 mol. percent ZiO_2 beyond which comparatively large grain growth is observed. The thermal expansion hysteresis associated with t -- > m transformation is evident with martensitic temperature influenced by ZrO_2 content and grain size.
机译:通过在不同的ZrO_2含量下通过湿相互作用过程,在均匀条件下合成了氧化锆分散的氧化铝粉末,并研究了其热机械行为。四方相在室温下无需添加任何稳定剂即可保留,这是根据粒度效应以t相的较低表面能补偿化学自由能的差异进行解释的。由于t-> m转换的驱动力降低,抗弯强度与温度成反比关系。高于10 mol时,韧性和强度显着降低。 %的ZiO_2,超过该值观察到较大的晶粒生长。 ZrO_2含量和晶粒尺寸影响马氏体温度时,与t-> m转变有关的热膨胀滞后现象是明显的。

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