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Influence of prior dislocation structure on anisotropy of thermal creep of cold-worked Zr-2.5Nb tubes

机译:先验位错结构对冷加工Zr-2.5Nb管热蠕变各向异性的影响

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摘要

Normally, creep anisotropy of hcp metals is thought to be controlled by the crystallographic texture. Here, we show that the creep anisotropy of cold-worked Zr-2.5Nb tubes is also very dependent on the anisotropic dislocation structures introduced by cold-work. The contribution of each slip system to the creep deformation of an individual grain orientation depends upon the activity of that slip system during prior cold-work. This conclusion is reached by comparing the self-consistant visco-plastic polycrystalline models with thermal creep tests performed on internally pressurized thin-wall capsules with different textures under a transverse stress of 300 MPa at 350 °C, where dislocation creep is the dominant operating mechanism. The non-uniform dislocation distributions prior to creep were derived by simulating the cold-work process of Zr-2.5Nb tubes from an Elasto-Plastic Self-Consistent (EPSC) model.
机译:通常,hcp金属的蠕变各向异性被认为是由晶体织构控制的。在这里,我们表明,冷加工Zr-2.5Nb管的蠕变各向异性也非常依赖于冷加工引入的各向异性位错结​​构。每个滑移系统对单个晶粒取向的蠕变变形的贡献取决于该滑移系统在先前的冷加工期间的活动。通过比较自洽的粘塑性多晶模型和在350°C的横向应力,300 MPa的横向应力下对具有不同质地的内部加压薄壁胶囊进行的热蠕变试验,可以得出结论。 。通过模拟弹塑性自洽(EPSC)模型中的Zr-2.5Nb管的冷加工过程,得出蠕变之前的不均匀位错分布。

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