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[1]The hot deformation characteristics and the associated microstructural evolution of an Al-Cu-Li-Zn alloy studied by constitutive equations and processing maps.journal of materials research and technology, 2023, 27: 401-418.
[2]Enhanced initial biodegradation resistance of the biomedical Mg-Cu alloy by surface nanomodification[J].Journal of Magnesium and Alloys, 2023 (Journal of Magnesium and Alloys 11 (2023) 2776-278)
[3]Comparison on Tensile Characteristics of Plain C–Mn Steel with Ultrafine Grained Ferrite/Cementite Microstructure and Coarse Grained Ferrite/Pearlite Microstructure.Materials, 2021, 14 (2309)
[4]Corrosion and antibacterial performance of novel selective-laser-melted (SLMed) Ti-xCu biomedical alloys[J].Journal of Alloys and Compounds, 2021, 864: 158415.
[5]Biodegradation, Antibacterial Performance, and Cytocompatibility of a Novel ZK30-Cu-Mn Biomedical Alloy Produced by Selective Laser Melting.International Journal of Bioprinting, 2021, Volume 7 (Volume 7, Issue 1) : 78-89.
[6]Comparison of the biodegradation of ZK30 subjected to solid solution treating and selective laser melting[J].Journal of materials Research and Technology, 2021, 10: 722-729.
[7]Influence of graphene oxide (GO) on microstructure and biodegradation of ZK30-xGO composites prepared by selective laser melting,[J].Journal of Magnesium and Alloys, 2020, 8: 952-962.
[8]Microstructural evolution upon heat treatments and its effect on corrosion in Al-Zn-Mg alloys containing Sc and Zr[J].Journal of materials Research and Technology, 2020, 9 (3) : 5077-5089.
[9]Corrosion behavior of a self-sealing coating containing CeO2 particles on pure Mg produced by micro-arc oxidation[J].Surface & Coatings Technology, 2020, 386: 125456.
[10]Evolution of microstructure and texture for an Al-0.4 Er alloy during accumulative roll bonding[J].Journal of Alloys and Compounds, 2019, 811: 152005.
[11]Improvement of biodegradable and antibacterial properties by solution treatment and micro-arc oxidation (MAO) of a magnesium alloy with a trace of copper[J].Corrosion Science, 2019, 156: 125-138.
[12]Ultra-high cycle fatigue behavior of a novel 1.9 GPa grade super-highstrength maraging stainless steel[J].Materials Science and EngineeringA, 2019, 755: 50-56.
[13]Formation of coherent, core-shelled nano-particles in dilute Al-Sc-Zr alloys from the first-principles[J].Journal of Materials Science & Technology, 2019, 35: 930-938.
[14]Al-Zn-Mg-Cu-Zr-0.12Ce 合金铸锭的均匀化退火及组织演变[J].中国有色金属学报, 2017, 27 (3) : 459-467.
[15]新型 Al-Cu-Li-X 合金热处理强化及组织特征,[J].中国有色金属学报, 2016, 26 (1) : 7-15.
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