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首页> 外文期刊>Journal of the European Ceramic Society >High-temperature compressive creep of novel fine-grained orthorhombic ZrO2 ceramics stabilized with 12 mol% Ta doping
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High-temperature compressive creep of novel fine-grained orthorhombic ZrO2 ceramics stabilized with 12 mol% Ta doping

机译:高温压缩蠕变的新型细粒粒细胞正交ZrO2陶瓷稳定,12摩尔%TA掺杂

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摘要

A novel fine-grained orthorhombic ZrO2 ceramic stabilized with 12 mol% Ta doping was fabricated by spark plasma sintering from home-made powders, and its high-temperature mechanical properties evaluated for the first time by compressive creep tests in both Ar and air. It was found that the high-temperature plasticity of the ceramic deformed in Ar, under which the Ta-doped orthorhombic ZrO2 is a black suboxide with abundant oxygen vacancies in its crystal structure, is controlled by grain boundary sliding (stress exponent similar to 2, and activation energy similar to 780-800 kJ/mol). However, the high-temperature plasticity of the ceramic deformed in air, under which the Ta-doped orthorhombic ZrO2 is a white oxide due to the elimination in situ of oxygen vacancies, is controlled by recovery creep (stress exponent 3, and activation energy similar to 750 kJ/mol). It was also observed that black Ta-doped orthorhombic ZrO2 is more creep resistant than its white counterpart with the same grain size, and that the former deforms as the more conventional Y2O3-stabilized ZrO2 does.
机译:通过从自制粉末的火花等离子体烧结制造稳定用12mol%Ta掺杂的新型细粒状正晶ZrO2陶瓷,其高温机械性能首次评价AR和空气中的压缩蠕变试验。结果发现,在AR中变形的陶瓷的高温可塑性,在其下,TA掺杂的正交ZrO2是具有丰富的氧空位中的黑色亚氧化物,其晶体结构是由晶界滑动控制的(相对于2的应力指数,和激活能量类似于780-800 kJ / mol)。然而,由于在氧空位原位的消除原位而导致的空气中变形的陶瓷的高温可塑性是由氧空缺的消除,由恢复蠕变(应力指数3,以及激活能量相似到750 kj / mol)。还观察到,黑色Ta掺杂的邻晶ZrO2比其具有相同晶粒尺寸的白色对应物更令人抗蠕变,并且前者变形为更常规的Y2O3稳定的ZrO2。

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