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Erosion and mechanical properties of hydrothermally-resistant nanostructured zirconia components

机译:水热耐纳米结构氧化锆组分的腐蚀和力学性能

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Large scale 50 x 50 mm sintered nanostructured zirconia ceramics were fabricated via industrially viable dry pressing routes. The green bodies were sintered by a two-stage process and the optimised sintering conditions are reported. The suitability of nanostructured zirconia for demanding applications in petrochemical valve components was investigated by slurry impingement erosion experiments. Zirconia showed a 60-fold improvement compared to commonly used stellite-coated commercial stainless steel specimens under test conditions while no tetragonal to monoclinic phase transformation was observed after erosion. The enhanced performance was also valid when compared with reported erosion resistant properties of alumina and zirconia components by a factor of 36 and 3, respectively. This suggests nanostructured zirconia as a potential robust alternative material for construction of internal trim components of petrochemical valves.
机译:通过工业可行的干压途径制造大规模50×50mM烧结纳米结构氧化锆陶瓷。 通过两级工艺烧结生坯,报告了优化的烧结条件。 通过浆料冲击腐蚀实验研究了纳米结构氧化锆对苛刻的氧化术中的应用的适用性。 与常用的钝化型商业不锈钢样本相比,氧化锆改善了在试验条件下,同时在侵蚀后没有观察到单斜晶相转变的四边形。 与氧化铝和氧化锆组分的报告的侵蚀性能相比,增强的性能也分别为36和3系列。 这表明纳米结构氧化锆作为用于构建石化阀的内部装饰部件的潜在稳健的替代材料。

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