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[21]In-situ STEM imaging of growth and phase change of individual CuAlX precipitates in Al alloy.Scientific Report, 7(1): 2184.
[22]Natural-aging-induced reversal of the precipitation pathways in an Al-Mg-Si alloy.Scripta Materialia, 115(7): 150-154.
[23]Optimized pre-thinning procedures of ion-beam thinning for TEM sample preparation by magnetorheological polishing.Ultramicroscopy, 181(10): 165-172.
[24]Mechanical properties e nhanced by deformation-modified precipitation of theta '-phase approximants in an Al-Cu alloy.Materials Science and Engineering A, 676(20): 138-145.
[25]Enhancing electrical conductivity and strength in Al alloys by modification of conventional thermo-me chanical process.Materials & Design, 87(35): 1-5.
[26]The influence of Mg/Si ratio on the negative natural aging effect in Al-Mg-Si-Cu alloys.Materials Science and Engineering A, 642(16): 241-248.
[27]A tuning nano-precipitation approach for achieving enhanced strength and good ductility in Al alloys.Materials & Design, 54(2): 144-148.
[28]Multiple silicon nanotwins formed on the eutectic silicon particles in Al-Si alloys.Scripta Materialia, 64(4): 339-342.
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