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Information on deformation mechanisms in nanocrystalline Pd-10% Au inferred from texture analysis

机译:通过质构分析推断出纳米Pd-10%Au晶体的变形机理

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摘要

There is still a lack of understanding of deformation mechanisms in nanocrystalline (nc) materials. Studies on microstructures formed in nc Pd-10% Au (grain size about 15 nm) after high pressure torsion revealed signatures of various deformation processes as cooperative grain boundary sliding (GBS), shear banding, dislocation slip and twinning. In order to estimate contributions of these processes to total strain, a comparison was made between torsion textures formed in nc and coarse grained (cg) samples after identical shear strain. The textures were measured with synchrotron radiation. Intensities of characteristic components of the shear texture are two times stronger in the cg sample than in the nc one, indicating that dislocation slip is less significant in the nc sample. It is proposed that numerous planes of cooperative GBS revealed by TEM contribute to plasticity of nc alloy.
机译:仍缺乏对纳米晶体(nc)材料变形机制的了解。高压扭转后,在nc Pd-10%Au(晶粒尺寸约为15 nm)中形成的微观结构的研究揭示了各种变形过程的特征,如协同晶界滑动(GBS),剪切带,位错滑移和孪晶。为了估计这些过程对总应变的贡献,在nc和相同剪切应变后的粗晶粒(cg)样品中形成的扭转织构之间进行了比较。用同步加速器辐射测量织构。 cg样品中剪切织构的特征成分强度比nc样品强两倍,表明nc样品中的位错滑移不那么显着。有人提出TEM揭示的许多GBS协同平面有助于nc合金的塑性。

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