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Features of Structure Formation in the Low Modulus Quasi-Single Crystal from Zr-25Nb Alloy at Cold Rolling

机译:冷轧下ZR-25%NB合金低模量准晶体结构形成的特征

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The paper presents the results of investigation of the regularities of the structure and texture formation during rolling of single crystals of Zr-25%Nb alloy differing in their initial orientations relative to the external principal directions in the rolled plate: normal (ND) and rolling directions (RD). The features of rolled single crystals with initial orientations of planes {001}, {011} or {111} parallel to the rolling plane and different crystallographic directions along RD are considered. A comparison of the peculiarities of plastic deformation in a polycrystalline alloy of the same composition is made. For the samples studied, a decrease in the lattice parameter of the β-phase has been recorded, the minimum of the parameter being observed for different degrees of deformation, varying from 20 to 50%. Observed decrease in the unit cell parameter can be connected with the precipitation of the α(α')-Zr phase from the deformed nonequilibrium β-phase of the Zr-25%Nb alloy, i.e. change in the composition of the solid solution. Distributions of the increase in the dimensions of the deformed single crystal along RD and the transverse direction (TD) with its deformation up to 30% in thickness, which indicate the anisotropy of the plasticity of single crystals during their rolling, are constructed on stereographic projection. It is shown, that the deformation of single crystals occurs practically without increasing of their dimensions in the <110> direction with a total thickness deformation of up to 30%. Direction <110> is characterized by maximum hardening (microhardness) with indentation along it, which causes low plasticity of deformed and annealed foils from Zr-25%Nb alloy at the stretching along and across RD, that is connected with the features of their crystallographic texture.
机译:本文介绍了在相对于轧制板中的外部主题的初始取向不同的Zr-25%Nb合金的单晶体轧制过程中结构和纹理形成的规则的结果:正常(Nd)和滚动方向(RD)。考虑轧制单晶的特征,具有平行于滚动平面和沿RD的滚动平面和不同晶形方向的平面{001},{011}或{111}的初始取向。制备了相同组合物的多晶合金中塑性变形的特性的比较。对于所研究的样品,已经记录了β相的晶格参数的降低,对于不同程度的变形,观察到的参数的最小值,从20%到50%。观察到的单位细胞参数的降低可以与Zr-25%Nb合金的变形非纤维β相的α(α') - Zr相的沉淀连接,即固溶体组合物的变化。沿RD和横向(Td)的变形单晶尺寸增加的分布,其变形高达30%,表示在其轧制过程中单个晶体的可塑性各向异性,在立体投影中构建。示出了,单晶的变形实际情况而不发生在<110>方向上的尺寸增加,总厚度变形高达30%。方向<110>的特征在于沿其凹陷的最大硬化(显微硬度),其在沿着和跨越Rd的拉伸和跨越Rd的Zr-25%Nb合金中导致Zr-25%Nb合金的变形和退火箔的低可塑性。与其晶体的特征相连质地。

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