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首页> 外文期刊>粉体および粉末冶金 >Isothermal tetragonal to monoclinic phase transition around room temperature in 2.0 mol% yittria-doped zirconia ceramics
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Isothermal tetragonal to monoclinic phase transition around room temperature in 2.0 mol% yittria-doped zirconia ceramics

机译:在2.0mol%掺杂氧化锆陶瓷的2.0mol%的室温下的等温四方转变

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摘要

The tetragonal to monoclinic (t-m) phase transition in 2.0 mol% yttria-doped tetragonal zirconia polycrystals (2Y-TZP) was studied by use of XRD and FT-IR diffuse scattering (DRIFT) measurements. The phase transition occurred isothermally when the 2Y-TZP powder after calcining at temperatures below 1200°C was annealed in air even at room temperature, and more than 90% of the monoclinic phase was obtained after a long period of annealing. However only about several percent and about 40% of themonoclinic phase were formed after the annealing treatments under vacuum and 1 atm air separately sealed in a 5 ml Pyrex tube, respectively. On the other hand, no phase transition occurred in air around room temperature in the 2Y-TZP powder after beingcalcined at temperatures above 1300'C. A broad band around 3300 cm{sup}-1 due to the existence of adsorbed water was observed in the FT-IR DRIFT spectra of the 2Y-TZP powder only after calcination below 1200°C. The t-m transition behavior of 2Y-TZP powder after calcination below 1200°C differed with that after calcination above 1300°C. The existence of adsorbed water on 2Y-TZP was essential for the t-m phase transition of 2Y-TZP to take place in air around room temperature. The amount of transformedmonoclinc phase was determined by the amount of adsorbed water on 2Y-TZP and supplied water from annealing atmosphere.
机译:通过使用XRD和FT-IR漫射散射(漂移)测量,研究了2.0mol%yTTRIA掺杂的四方氧化锆多晶(2Y-TZP)中的四方对单斜晶(T-M)相转变。当在低于1200℃的温度下煅烧后的2Y-TZP粉末在室温下在空气中煅烧后2Y-TZP粉末,在室温下退火,并且在长时间的退火后获得超过90%的单斜相。然而,在真空下的退火处理和1个atm空气中分别在5ml Pylex管中分别密封的1个atm空气,仅形成大约几个百分之几和约40%的核蛋白酶。另一方面,在1300℃的温度下垂直的2Y-TZP粉末中,在2Y-TZP粉末中的空气中没有发生相变。在煅烧之后在1200℃以下仅在2Y-TZP粉末的FT-IR漂移光谱中观察到宽3300cm {sup} -1,其由于存在于2℃的FT-IR漂移光谱。在低于1200℃以下煅烧后2Y-TZP粉末的T-M转变行为在1300℃以上煅烧后不同。 2Y-TZP上吸附的水的存在对于2Y-TZP的T-M相转变是必不可少的,在室温周围的空气中发生。转化甲烷烃相的量由2Y-TZP上的吸附水的量测定,并从退火气氛中提供水。

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