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Anisotropic thermal creep of internally pressurized Zr-2.5Nb tubes

机译:内压Zr-2.5Nb管的各向异性热蠕变

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The anisotropy of creep of internally pressurized cold-worked Zr-2.5Nb tubes with different crystallographic textures is reported. The stress exponent n was determined to be about three at transverse stresses from 100 to 250MPa with an activation energy of ~99.54kJ/mol in the temperature range 300-400C. The stress exponent increased to ~6 for transverse stresses from 250 to 325MPa. From this data an experimental regime of 350C and 300MPa was established in which dislocation glide is the likely strain-producing mechanism. Creep tests were carried out under these conditions on internally pressurized Zr-2.5Nb tubes with 18 different textures. Creep strain and creep anisotropy (ratio of axial to transverse steady-state creep rate,) exhibited strong dependence on crystallographic textures of the Zr-2.5Nb tubes. It was found that the values of () increased as the difference between the resolved faction of basal plane normals in the transverse and radial directions (fT-fR) increases. The tubes with the strongest radial texture showed a negative axial creep strain and a negative creep rate ratio () and tubes with a strong transverse texture exhibited the positive values of steady-state creep rate ratio () and good creep resistance in the transverse direction. These behaviors are qualitatively similar to those observed during irradiation creep, and also to the predictions of polycrystalline models for creep in which glide is the strain-producing mechanism and prismatic slip is the dominant system. A detailed analysis of the results using polycrystalline models may assist in understanding the anisotropy of irradiation creep.
机译:报道了具有不同晶体学织构的内部加压冷加工Zr-2.5Nb管的蠕变各向异性。在300-400℃的温度范围内,在100至250MPa的横向应力下,应力指数n约为3,活化能为〜99.54kJ / mol。对于250至325MPa的横向应力,应力指数增加至〜6。根据该数据,建立了350℃和300MPa的实验状态,其中位错滑移是可能的应变产生机理。在这些条件下,对具有18种不同织构的内部加压Zr-2.5Nb管进行蠕变测试。蠕变应变和蠕变各向异性(轴向与横向稳态蠕变率之比)表现出对Zr-2.5Nb管晶体结构的强烈依赖性。发现()的值随着在横向和径向(fT-fR)上基底平面法线的分辨派系之间的差异增加而增加。径向织构最强的管表现出负的轴向蠕变应变和负蠕变速率比(),横向织构强的管表现出稳态蠕变率比()的正值,并且在横向方向上具有良好的抗蠕变性。这些行为在质量上与在辐照蠕变期间观察到的行为相似,并且也与多晶模型的蠕变预测有关,其中滑行是产生应变的机制,而棱柱形滑移是主要系统。使用多晶模型对结果进行详细分析可能有助于理解辐照蠕变的各向异性。

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