JOURNAL ARTICLE

Strain Hardening in Superplastic Codoped Yttria‐Stabilized Tetragonal‐Zirconia Polycrystals

Kazutaka SasakiManabu NakanoJunpei MimuradaYiichi IkuharaTaketo Sakuma

Year: 2001 Journal:   Journal of the American Ceramic Society Vol: 84 (12)Pages: 2981-2986   Publisher: Wiley

Abstract

The superplastic characteristics of 3‐mol%‐yttria‐stabilized tetragonal‐zirconia polycrystals (3Y‐TZP) were drastically improved by the combined addition of germanium oxide and other oxides (titanium, magnesium, and calcium), resulting in up to 1000% elongation under optimum conditions. Extensive work hardening of the codoped compositions for temperatures >1400°C was observed. Dynamic grain growth was not a sufficient mechanism to explain this anomalous high strain hardening. The appearance of a cubic phase that caused abnormal grain growth during testing may have resulted in increased flow stress, which resulted in exaggerated work hardening.

Keywords:
Materials science Superplasticity Metallurgy Yttria-stabilized zirconia Strain hardening exponent Work hardening Grain growth Elongation Cubic zirconia Hardening (computing) Tetragonal crystal system Crystal twinning Flow stress Grain size Titanium Composite material Ceramic Strain rate Crystallography Microstructure Crystal structure Ultimate tensile strength

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24
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0.72
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Citation History

Topics

Advanced ceramic materials synthesis
Physical Sciences →  Materials Science →  Ceramics and Composites
Advanced materials and composites
Physical Sciences →  Engineering →  Mechanical Engineering
Nuclear materials and radiation effects
Physical Sciences →  Materials Science →  Materials Chemistry

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