Clustering and Precipitation Processes in Microalloyed Aluminium Alloys(APFIM/FIM)
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概要
- 論文の詳細を見る
Recent progress in understanding the origins of hardening in Al-1.7Cu-0.01Sn (at. %) and Al-1.1Cu-1.7Mg-(0.1Ag, 0.3-0.5Si) (at. %) microalloyed alloys is presented. The results of systematic studies involving atom probe field ion microscopy in conjunction with transmission electron microscopy indicate that the precipitation processes depend to a considerable degree upon the nature of pre-precipitate clustering reactions which occur early in the decomposition of the solid solution. Furthermore, it is shown that the presence of these co-clusters can influence significantly the alloy properties.atomic clusteringprecipitationlight alloystransmission electron microscopyatom probe field ion microscopy
- 東北大学の論文
- 1997-03-31
著者
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SAKURAI Toshio
Institute for Materials Research (IMR), Tohoku University
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Sakurai Toshio
Institute For Materials Research (imr) Tohoku University
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HONO Kazuhiro
National Institute for Materials Science
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Hono K
National Inst. For Materials Sci. Tsukuba Jpn
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Hono K
National Research Institute For Metals
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Ringer Simon
Department Of Materials Engineering Monash University
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Hono Kazuhiro
National Inst. For Materials Sci. (nims) Ibaraki Jpn
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Hono Kazuhiro
Institute For Materials Research (imr) Tohoku University:(present Address)national Research Institut
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Hono Kazuhiro
Graduate School Of Pure And Applied Sciences University Of Tsukuba
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Hutchinson Christopher
Department of Materials Science and Engineering, The University of Virginia
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Polmear Ian
Department of Materials Engineering, Monash University
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Polmear Ian
Department Of Materials Engineering Monash University
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Hono Kazuhiro
National Institute For Materials Science Tsukuba
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Hutchinson Christopher
Department Of Materials Science And Engineering The University Of Virginia
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- PREFACE
- Atomic Structure of Faceted Planes of InAs Quantum Dots on GaAs (001) Studied by Scanning Tunneling Microscopy
- Indium-rich 4x2 Reconstruction in Novel Growth of InAs on the GaAs(001)(STM-BEEM interfaces)
- Microstructures and the Magnetic Properties of Fe_3B/(Nd, Dy)_2Fe_B Nanocomposite Microalloyed with Cu and Zr
- Lattice Parameter and Thermal Expansion Measurements of a LiF(001)Surface by He-Atom Beam Diffraction Method
- GaAs(100) (2×4) Surface Study by Molecular Beam Epitaxy and Field-Ion-Scanning-Tunneling-Microscopy
- Spin Polarization of Alternate Monatomic Epitaxial 〔Fe/Co〕n Superlattice
- Microscopic Observation of the Interface between a Tool Surface and Deposits of Low-Carbon Free Cutting Steel
- Detection of X-ray Induced Current Using a Scanning Tunneling Microscope and its Spatial Mapping for Elemental Analysis
- Growth of a High-Quality Ultrathin Fe(001) Layer on MgO(001) by Insertion of an Ultrathin \gamma-Fe
- Growth of a High-Quality Ultrathin Fe(001) Layer on MgO(001) by Insertion of an Ultrathin γ-Fe₂O₃ Layer