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Tuning of phase content, microstructure and thermal expansion of MgPSZ

机译:调整MgPSZ的相含量、微观结构和热膨胀

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? 2022 Elsevier Ltd and Techna Group S.r.l.MgO partially stabilized zirconia (xMgPSZ, with x = 3–14 mol MgO) was prepared by a ceramic route, starting from pure metal oxides. 7.5MgPSZ, the focus of this work, was sintered at 1700 °C and cooled at various rates (1, 2 or 4 °C/min), without or with 1 or 2 intermediate dwells (1400, 1300, and 1000 °C), and dwell durations (1–6 h). Customized thermal expansion (TE) data analysis is used to estimate the monoclinic (M) phase content (with discrimination between large and small particles), while powder X-ray diffraction (XRD) provides an accurate cubic (C) phase assessment. With the tetragonal (T) phase content determined from balance to 100, detailed sets of structural (M, C, T) and microstructural information (M particle size), are grouped in novel radar-type charts. Original benchmarking exercises using literature data on up thermal shock resistance and the characteristics of a commercial MgPSZ, provide unique insights on the thermal performance of these materials, and property tuning rationale.
机译:?2022 Elsevier Ltd 和 Techna Group S.r.l.MgO 部分稳定的氧化锆 (xMgPSZ, x = 3–14 mol% MgO) 通过陶瓷路线制备,从纯金属氧化物开始。7.5MgPSZ是这项工作的重点,在1700°C下烧结并以不同的速率(1,2或4°C / min)冷却,没有或有1或2个中间停留(1400,1300和1000 °C),停留时间(1-6小时)。定制的热膨胀 (TE) 数据分析用于估计单斜晶系 (M) 相含量(区分大颗粒和小颗粒),而粉末 X 射线衍射 (XRD) 则提供准确的立方 (C) 相评估。通过从平衡到100%确定四方(T)相含量,将详细的结构(M,C,T)和微观结构信息(M粒径)分组到新型雷达型图表中。使用有关抗热震性和商业 MgPSZ 特性的文献数据进行原始基准测试练习,为这些材料的热性能和性能调整原理提供了独特的见解。

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