首页> 外文期刊>Journal of Nuclear Materials: Materials Aspects of Fission and Fusion >Strain evolution of zirconium hydride embedded in a Zircaloy-2 matrix
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Strain evolution of zirconium hydride embedded in a Zircaloy-2 matrix

机译:嵌入Zircaloy-2基质中的氢化锆的应变演化

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摘要

In situ synchrotron X-ray diffraction has been used to determine strain evolution in a minority phase, zirconium hydride, embedded in Zircaloy-2 (<100 wt ppm average hydrogen content). The elastic modulus of the hydride is similar to that of Zircaloy-2. Three regimes are observed: I - elastic, II - post-yield load transfer from Zircaloy-2 to hydride, and III - strain saturation, possibly due to hydride fracture. The interpretation is supported by finite element calculations and scanning electron microscopy of the fracture surface.
机译:原位同步加速器X射线衍射已用于确定少数相中嵌入Zircaloy-2的氢化锆(<100 wt ppm平均氢含量)中的应变演化。氢化物的弹性模量类似于Zircaloy-2。观察到三种状态:I-弹性,II-屈服后载荷从Zircaloy-2转移到氢化物,以及III-应变饱和,可能是由于氢化物破裂所致。断裂表面的有限元计算和扫描电子显微镜证实了这一解释。

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