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Microstructure and vacancy-type defects of high-pressure torsion deformed Al-3 wt%Cu alloy

机译:高压扭转变形Al-3 wt%Cu合金的组织和空位型缺陷

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The influence of high-pressure torsion (HPT) on the microstructure and free-volume type defects of supersaturated Al-3 wt%Cu was studied. By means of HPT, grain refinement down to sizes of 100 nm could be achieved. Positron annihilation spectroscopy was applied for the characterization of deformation-induced defects and of vacancy-solute interaction. The chemical sensitive method of two-dimensional Doppler broadening spectroscopy reveals predominantly deformation-induced defects. In comparison to undeformed supersaturated Al-3 wt%Cu, the fraction of Cu-decorated free-volume type defects is strongly reduced and Al2Cu-precipitates with equilibrium structure occur rather than metastable semi-coherent Al-Cu precipitates. These precipitates stabilize the nanocrystalline structure and give rise to a rather different aging behaviour compared to the undeformed state.
机译:研究了高压扭转(HPT)对过饱和Al-3 wt%Cu的组织和自由体积型缺陷的影响。通过HPT,可以实现细化到100 nm的晶粒。正电子an没光谱法用于表征形变引起的缺陷和空位-溶质相互作用。二维多普勒增宽光谱的化学敏感方法显示出主要由变形引起的缺陷。与未变形的过饱和Al-3 wt%Cu相比,Cu装饰的自由体积型缺陷的比例大大降低,并且出现了具有平衡结构的Al2Cu沉淀,而不是亚稳的半相干Al-Cu沉淀。这些沉淀物稳定了纳米晶体结构,与未变形状态相比,引起了相当不同的老化行为。

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