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Evidence of Phase Transitions and Their Role in the Transient Behavior of Mechanical Properties and Low Temperature Degradation of 3Y-TZP Made from Stabilizer-Coated Powder

机译:稳定剂包覆粉末制成的3Y-TZP的相变及其在力学性能和低温降解的瞬态行为中的作用

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The substance 3 mol% yttria stabilized zirconia (3Y-TZP) has become a commodity for the manufacture of components in biomedical and engineering applications. Materials made from stabilizer-coated rather than co-precipitated starting powders are known for their superior toughness and low temperature ageing resistance. The reason for this phenomenon is however still not fully understood. In this study, 3Y-TZP materials hot pressed at 1300-1450 C for 1 h were characterized. It was found that at a sintering temperature of 1375 C, a transition from fine grain to coarse grain microstructure associated with a shift from tough and ageing resistant to brittle and prone to ageing was observed. The detailed analysis of the phase composition by X-ray diffraction revealed that TZPs consists of up to five crystallographically different phases of zirconia simultaneously whose contents dynamically change with sintering temperature. At low sintering temperature, the predominant phases are a tetragonal phase with low yttria content and large domain size and high tetragonality together with a cubic phase of high yttria content. At high temperature, a tetragonal phase of higher yttria content and lower tetragonality is formed together with a cubic phase of lower yttria content.
机译:3摩尔%氧化钇稳定的氧化锆(3Y-TZP)物质已成为生物医学和工程应用中组件制造的商品。由稳定剂涂层而不是共沉淀的起始粉末制成的材料以其优异的韧性和低温老化性而闻名。然而,这种现象的原因仍未完全理解。在这项研究中,表征了在1300-1450 C下热压1 h的3Y-TZP材料。已经发现,在1375℃的烧结温度下,观察到从细晶粒到粗晶粒微观结构的转变,伴随着从韧性和耐老化性到脆性和易于老化的转变。通过X射线衍射对相组成进行的详细分析表明,TZPs最多由五个氧化锆的晶体学上不同的相组成,同时,其含量随烧结温度而动态变化。在低的烧结温度下,主要相是具有低氧化钇含量,大畴尺寸和高四方性的四方相以及具有高氧化钇含量的立方相。在高温下,氧化钇含量较高而四方性较低的四方相与氧化钇含量较低的立方相一起形成。

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