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Strain-induced phase transformation behavior of stabilized zirconia ceramics studied via nanoindentation

机译:通过纳米茚地段研究稳定氧化锆陶瓷的应变诱导的相变行为

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摘要

To study the tetragonal-to-monoclinic (T-M) phase transformation behavior under different strain rates and indentation depths, nanoindentation tests were performed on stabilized zirconia ceramics with Continuous Stiffness Measurements. The results indicate decreased phase transformation velocities at both lower and higher strain rates, but increased velocity under medium strain rate during loading. The phase transformation process is sensitive to P/P but the final volume fractions are almost identical (45%). Furthermore, most of the phase transformation is completed during a short initial time followed by slight linear increase of the M-phase volume fraction with holding time. The phase transformation continuously slowed with increasing indentation depth when indented with a constant strain rate.
机译:为了研究不同应变率和凹口深度下的四甲基单斜晶(T-M)相转化行为,在稳定的氧化锆陶瓷和连续刚度测量中进行纳米茚调试验。 结果表明在较低且较高的应变速率下降低的相变速,但在负载期间,中等应变速率下的速度增加。 相变过程对P / P敏感,但最终体积分数几乎相同(45%)。 此外,在短的初始时间内完成大部分相变,然后在具有保持时间的M相体积分数的轻微线性增加。 当用恒定应变率缩进时,相变随着凹陷深度的增加而连续速度。

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