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An Analysis of Creep Mechanisms in Superplastic Yttria-Stabilized Zirconia

机译:超塑性氧化钇稳定氧化锆蠕变机制分析

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Extensive experimental results are now available for the creep of yttria-stabilized tetragonal zirconia (Y-TZP). This paper considers the following creep mechanisms: (a) Grain boundary sliding at high stresses and interface-reaction controlled flow at low stresses, (b) Interface-controlled diffusion creep over the entire range of stresses, (c) Grain boundary sliding with a threshold stress and (d) Intragranular dislocation motion at high stresses and Nabarro-Herring diffusion creep at low stresses. It is shown that interface-controlled grain boundary diffusion creep provides a satisfactory explanation of the results. The limiting behavior at high and low stresses, as well as at fine and coarse grain sizes, is discussed using a Deformation Limit Diagram (DLD).
机译:现在可用于蠕动稳定四方氧化锆(Y-TZP)的蠕变的广泛的实验结果。本文考虑以下蠕变机制:(a)在低应力下滑动的晶界和在低应力下的界面反应控制流动,(b)界面控制的扩散蠕变在整个应力范围内,(c)晶界滑动在低应力下高应力和Nabarro-Herring扩散蠕变处的阈值应力和(d)腔内位错运动。结果表明,界面控制的晶界扩散蠕变提供了对结果的令人满意的解释。使用变形限制图(DLD)讨论高压和低应力的限制行为以及精细和粗粒尺寸。

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