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Evaluation of Phase Transformation and Mechanical Properties of Metastable Yttria-Stabilized Zirconia by Nanoindentation

机译:纳米茚满的亚稳态稳定氧化锆相的转化和力学性能评价

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摘要

Microscopical nonuniformity of mechanical properties caused by phase transformation is one of the main reasons for the failure of the materials in engineering applications. Accurate measurement of the mechanical properties of each phase is of virtual importance, in which the traditional approach like Vickers hardness cannot accomplish, due to the large testing range. In this study, nanoindentation is firstly used to analyze the mechanical properties of each phase and demonstrate the phase transformation in thermal barrier coatings during high-temperature aging. The distribution of T-prime metastable tetragonal phase, cubic and tetragonal phase is determined by mapping mode of nanoindentation and confirmed with X-ray diffraction and scanning electron microscope observation. The results show that during 1300 °C aging, the phase transition of metastable Yttria-Stabilized Zirconia induces the quick decrease of T′ phase content and an increase of T and C phases accordingly. It is found that there are some fluctuations in the mechanical properties of individual phase during annealing. The hardness and Young’s modulus of T′ increase at first 9 h, due to the precipitation of Y3+ lean T phase and then decrease to a constant value accompanied by the precipitation of Y3+ rich C phase. The relevant property of C phases also increases a little firstly and then decreases to a constant, due to the homogenization of Y3+ content, while the hardness and Young’s modulus of T phase remain unchanged. After aging of 24h the hardness of T′, C and T phases are 20.5 GPa, 21.3 GPa and 19.1 GPa, respectively. The Young’s modulus of T′, C and T phases are 274 GPa, 275 GPa and 265 GPa, respectively. Present work reveals the availability of nanoindentation method to demonstrate the phase transformation and measure mechanical properties of composites. It also provides an efficient application for single phase identification of ceramics.
机译:引起的相变的机械性能的显微不均匀性是主要的原因为在工程应用中的材料的失败之一。各相的机械性能的精确测量是虚拟重要性,其中相同的维氏硬度的传统方法不能完成,由于大的测试范围。在这项研究中,纳米压痕首先用于分析各相的机械性能和证明热障涂层的相变高温老化期间。 T-素亚稳四方晶相,立方和四方晶相的分布是通过纳米压痕的映射模式测定,并与X射线衍射和扫描电子显微镜观察确认。结果表明,在1300℃下老化,亚稳钇稳定氧化锆的相变诱导T'相含量的快速降低,并相应地增加T和C相的。据发现,有在各个阶段的退火时的机械特性的一些波动。硬度和在第一9ħ杨氏模量的T'的增加,由于Y3 +贫T相的析出,然后降低到伴随Y3 +富C相的析出的恒定值。 C三相的相关属性还先增大一点,然后下降到一个恒定,由于Y3 +含量的均质化,而硬度和T相的杨氏模量保持不变。 24小时的老化的T'后的硬度,C和T相是20.5 GPA,21.3 GPA和19.1 GPA,分别。的T'的杨氏模量,C和T相是274 GPA,275 GPA和265 GPA,分别。目前的工作揭示了纳米压痕方法的有效性证明了相变和测量复合材料的力学性能。它也提供了一种用于陶瓷的单一相识别一个有效的应用。

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