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首页> 外文期刊>日本セラミックス協会学術論文誌 >Mechanical properties of Y2O3-stabilized ZrO2 polycrystals fabricated by the solid phase mixing and sintering method
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Mechanical properties of Y2O3-stabilized ZrO2 polycrystals fabricated by the solid phase mixing and sintering method

机译:固相混合烧结法制备Y2O3稳定的ZrO2多晶体的力学性能

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摘要

The flexural strength and fracture toughness of 2.8 mol% Y2O3-stabilized zirconia polycrystals were investigated. The poly-crystals were fabricated by sintering powders prepared by two different methods; the solid phase method (SPM), which involved wet dispersing and mixing using an agitator mill, and the liquid phase precipitation method (LPM). In the case of the LPM sample, the compressive residual stress on the polished surface was lower than of the SPM sample and did not depend on the grain size, while the monoclinic phase fraction on the fracture surface increased with an increase in the grain size. By contrast, for the SPM sample, the compressive residual stress depended on the grain size, and the monoclinic phase fraction on the fracture surface revealed the tendency to decrease with an increase in the grain size. The flexural strength and fracture toughness of the LPM sample were greatly influenced by the stress-induced transformation. However, mechanical properties and transformation behavior of the SPM sample in relation to grain size implied that the SPM sample was dominated not only by the stress-induced transformation but also by the compressive residual stress and the microcracks generated by the transformation. For both SPM and LPM samples, the relationship between the transformed volume V_f√h, where V_f is the tetragonal phase fraction and h is the transformed depth, and the fracture toughness was linear. The fracture toughness for the SPM sample was more strongly influenced by V_f√h than that of the LPM sample.
机译:研究了2.8 mol%的Y2O3稳定的氧化锆多晶的弯曲强度和断裂韧性。通过烧结通过两种不同方法制备的粉末来制造多晶。固相法(SPM),包括使用搅拌磨的湿法分散和混合,以及液相沉淀法(LPM)。在LPM样品的情况下,抛光表面的压缩残余应力低于SPM样品,并且与晶粒尺寸无关,而在断裂表面上的单斜晶相分数随晶粒尺寸的增加而增加。相比之下,对于SPM样品,压缩残余应力取决于晶粒尺寸,并且断裂表面上的单斜晶相分数显示出随着晶粒尺寸增加而降低的趋势。 LPM样品的弯曲强度和断裂韧性受应力诱导的转变影响很大。但是,SPM样品的机械性能和相变行为与晶粒尺寸有关,这意味着SPM样品不仅受应力诱导的相变主导,而且还受残余压缩应力和相变产生的微裂纹的影响。对于SPM和LPM样品,转变体积V_f√h之间的关系,其中V_f是四方相分数,h是转变深度,断裂韧性是线性的。与LPM样品相比,S_PM样品的断裂韧性受V_f√h的影响更大。

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