MAGNESIUM_ALLOYS

作品数:544被引量:2377H指数:23
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相关作者:王敬丰潘复生张丁非杨明波孙扬善更多>>
相关机构:中国有色金属工业标准计量质量研究所郑州轻金属研究院重庆大学东北轻合金有限责任公司更多>>
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  • 期刊=Journal of Magnesium and Alloysx
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Revealing the limits of laser energy density: A study of the combined effects of process parameters on melt pool and microstructure in WE43 magnesium alloys
《Journal of Magnesium and Alloys》2025年第3期1034-1049,共16页Chee Ying Tan Cuie Wen Edwin Mayes Dechuang Zhang Hua Qian Ang 
Additive manufacturing(AM)has revolutionized modern manufacturing,but the application of magnesium(Mg)alloys in laser-based AM remains underexplored due to challenges such as oxidation,low boiling point,and thermal ex...
关键词:Laser surface melting(LSM) Magnesium alloys MICROSTRUCTURE Laser processing parameters Spot size 
Recent advancements in the design of micro/nanostructured superhydrophobic surfaces on magnesium alloys
《Journal of Magnesium and Alloys》2025年第2期457-485,共29页Sihui Ouyang Fengyi Wang Jia She Liying Qiao Ao Fu Xianhua Chen Fusheng Pan 
supported by the National Natural Science Found for Distinguished Young Scholars(52225101);the Fundamental Research Funds for the Central Universities(WUT:104972024RSCbs0018 and 2023CDJYXTD-002);the Natural Science Foundation of Chongqing(CSTB2023NSCQ-MSX0527);the Chongqing Academician Special Fund(2022YSZXJCX0014CSTB).
As one of the lightest engineering materials,magnesium(Mg)alloy possesses excellent mechanical performance,meeting the needs of versatile engineering fields and holding the potential to address cutting-edge issues in ...
关键词:Magnesium alloy Biomimetic design Superhydrophobic surface Biomedical application. 
An ultra-high strength and toughness as-cast Mg-10Gd-1.7Y-1Zn-0.5Zr alloy
《Journal of Magnesium and Alloys》2025年第2期894-901,共8页Haijun Wang Renju Cheng Bin Jiang Mingbo Yang Daiyi Deng Zhihua Dong Jiangfeng Song Chuntang Yu Linjiang Chai Fusheng Pan 
supported by the National Natural Science Foundation of China(U21A2048,U2037601,U2241231);the Guangdong Major Project of Basic and Applied Basic Research(2020B0301030006);the National Key Research and Development Program of China(2021YFB3701100);the Science and Technology Research Program of the Chongqing Municipal Education Commission(KJZD-K202201108,KJQN202201136);The Cultivation Project of CQUT for Research and Innovation Group(2023TDZ006);the Academician in Chongqing Leaded Guidance Project of Science and Technology Innovation(CSTB2023YSZX-JCX0006).
An ultra-high strength and toughness as-cast Mg-10Gd-1.7Y-1Zn-0.5Zr(wt.%)alloy was prepared via special ultrasonic melt treatment,and the peak-aged(200℃for 48 h)ultimate tensile strength(UTS),yield strength(YS)and el...
关键词:Magnesium alloys Mechanical properties Strengthening mechanism Ultrasonic treatment 
Recent advances on the oxide film of ignition-proof magnesium alloys:A review
《Journal of Magnesium and Alloys》2025年第1期4-29,共26页Jiaxuan Han Bo Hu Zhenfei Jiang Fanjin Yao Zixin Li Dejiang Li Xiaoqin Zeng Wenjiang Ding 
supported by the National Key Research and Development Program of China(Grant No.2021YFB3501002);the National Natural Science Foundation of China(Grant No.52301059,No.52271009);the Shanghai Post-doctoral Excellence Program(Grant No.2023372).
Magnesium and its alloys offer lightweight advantage and have extensive development prospects,particularly in aerospace.However,their flammability poses a significant barrier on the development of Mg alloys.The igniti...
关键词:Magnesium alloys Ignition resistance Oxide film Layered structure Characterization methods 
Segregation behaviors in{101^(-)1}compressive twin boundaries of Mg-RE alloy under deformation at room temperature
《Journal of Magnesium and Alloys》2025年第1期330-337,共8页Yujie Cui Lili Guo Yunwei Gui Kenta Aoyagi Haotian Tong Qinqin Wei Fangzhou Liu Yuichiro Hayasaka Akihiko Chiba 
support from Interdisciplinary Research Project for Young Teachers of USTB Fundamental Research Funds for the Central Universities(Grant no.FRF-IDRY-23-030).
Solute atoms and precipitates significantly influence the mechanical properties of Mg alloys.Previous studies have mainly focused on the segregation behaviors of Mg alloys after annealing.In this study,we investigated...
关键词:Magnesium alloys Compression test Scanning/transmission electron microscopy(STEM) SEGREGATION Twin boundaries 
Smart gradient coating suitable for bone growth prepared on plasma-electrolytically oxidised Mg and its sequential degradation behaviour
《Journal of Magnesium and Alloys》2025年第1期356-378,共23页Jiaping Han Kai Fu Zhiqiang Jiang Hao Zhang Hongshan San Hui Chen Xiaopeng Lu Carsten Blawert Mikhail.L.Zheludkevich 
support from Mobility Programme of the Sino-German Center(M-0056);National Natural Science Foundation of China(52101286);Natural Science Foundation of Liaoning Province(2022-YGJC-16);Fundamental Research Funds for the Central Universities(N2302017)Supported by Sichuan Science and Technology Program 2023ZYD0115,and Shenyang Young and Middle-aged Science and Technology Innovation Talent Support Program(RC231178).
A gradient coating containing collagen and inorganic strontium/calcium phosphate(Sr/CaP)was fabricated on plasma-electrolytically oxidised magnesium via one-step cathodic electrodeposition.First,Sr-doped dicalcium pho...
关键词:Biomedical magnesium alloys Gradient coating Sequential degradation Barrier property Bone formation BIOCOMPATIBILITY 
Enhancing the room-temperature plasticity of magnesium alloys:Mechanisms and strategies
《Journal of Magnesium and Alloys》2024年第12期4741-4767,共27页Lu Zhang Qian Yuan Jun Tan Quan Dong Hao Lv Fanglei Wang Aitao Tang Jürgen Eckert Fusheng Pan 
financially supported by the National Natural Science Foundation of China(Grant No.U2167213);the Chongqing Special Project of Science and Technology Innovation of China(CSTB2023YSZX-JCX0006)。
The room-temperature plasticity of magnesium and its alloys is limited primarily by their hexagonal close-packed(HCP)crystal structure,which restricts the number of active slip systems available at room temperature.Th...
关键词:Magnesium alloys Room-temperature plasticity Slip TWINNING Stacking faults Strength-plasticity synergy 
Grain growth stagnation at 525℃by nanoparticles in a solid-state additively manufactured Mg-4Y-3RE alloy
《Journal of Magnesium and Alloys》2024年第12期4976-4987,共12页Xingjian Zhao Daniel Olden Brady Williams Abhishek Pariyar Dalong Zhang Matthew Murphy Philippa Reed Paul Allison Brian Jordon Jiahui Qi W.Mark Rainforth Dikai Guan 
supported by the UKRI Future Leaders Fellowship,[MR/T019123/2]。
Ultrafine-grained(UFG)materials exhibit high strengths due to grain boundary strengthening,but grains can grow rapidly if post heat treatment is required,making it challenging to achieve grain boundary and precipitati...
关键词:Grain growth Magnesium alloys Ultrafine grained microstructure NANOPARTICLES Additive friction stir deposition 
The role of different electromagnetic fields in magnesium alloys direct-chill casting:Numerical simulation and experimental investigation
《Journal of Magnesium and Alloys》2024年第12期5005-5023,共19页Yonghui Jia Xingrui Chen Qichi Le Yunchang Xin 
financially supported by the National Natural Science Foundation of China(Grant No.51974082);Jiangsu Funding Program for Excellent Postdoctoral Talent(Grant No.2023ZB644);China Postdoctoral Science Foundation(Grant No.2023M741655)。
Based on the magnetic-fluid-thermal multiphysics transient coupling numerical simulation results of the magnesium alloy direct-chill(DC)casting,the effects of conventional vibration electromagnetic field(VMF),differen...
关键词:Electromagnetic field DC casting Magnesium alloy Flow and temperature fields Solidification structure MACROSEGREGATION 
Unraveling the impact of purification and alloying elements on corrosion performance and passivation of magnesium alloys
《Journal of Magnesium and Alloys》2024年第12期4808-4827,共20页Arash Fattah-alhosseini Razieh Chaharmahali Alireza Askari Sajad Alizad Mosab Kaseem 
The passivation of magnesium(Mg)-based alloys is an electrochemical behavior.The formation of a protective surface film results in passivation.The composition of this surface layer is influenced by the substrate alloy...
关键词:Mg and its alloys Passive behavior PURIFICATION Alloying element 
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