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Failure of Hydrided Zircaloy-4 Under Equal-Biaxial and Plane-Strain Tensile Deformation

机译:等双轴和平面 - 应变拉伸变形下氢化锆铝-4的失效

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The fracture behavior of unirradiated Zircaloy-4 containing either solid hydride blisters or hydrided rims has been examined for the contrasting conditions of equal-biaxial and plane-strain tensile deformation at three temperatures (25°, 300°, and 375°C). Cold-worked and stress-relieved Zircaloy-4 sheet containing hydride blisters shows nearly identical failure strains in equal-biaxial and plane-strain tensile deformation for a wide range of blister or rim depths. In all cases, failure strains decrease rapidly with increasing hydride blister or rim thickness, especially in the ≤100 μm range. Test temperature has a significant effect on ductility with failure strains at 300° and 375°C being much greater than at room temperature. The results indicate that the ductility of material containing hydride rims/blisters greater than ≈ 30-40 μm deep is limited by crack growth, which occurs in a mode Ⅰ manner at 25°C but in a mixed mode Ⅰ/Ⅱ manner at ≥300°C (and at higher failure strain levels).
机译:已经检查了含有固体氢化物衬里或氢化边缘的未照射锆卤代-4的断裂行为,用于在三个温度(25°,300°和375℃)的相等双轴和平面 - 应变拉伸变形的对比条件。含有氢化物水泡的冷加工和应力缓解的锆石4片显示出几乎相同的损伤菌株,用于相等双轴和平面 - 应变拉伸变形,用于各种泡罩或轮辋深度。在所有情况下,失效菌株随着氢化物泡罩或边缘厚度的增加而迅速降低,特别是在≤100μm范围内。试验温度对延展性有显着影响,延展性在300°和375℃下具有大于室温的抑制菌株。结果表明,含有大于≈30-40μm的氢化物轮辋/水疱的材料的延展性受到裂纹生长的限制,其在25℃下以模式Ⅰ方式发生但在≥300时以混合模式Ⅰ/Ⅱ方式发生。 °C(并且在更高的故障应变水平)。

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