徐仰立
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副教授
硕士生导师
- 性别:男
- 出生日期:1991-11-24
- 学历:博士研究生
- 学位:工学博士学位
- 入职时间:2019-07-01
- 所在单位:机电学院/制造工程研究院
- 办公地点:综合实验大楼A314
- 电子邮箱:248502f1b8f326c296937c13884c60bd44017dbd19b139935cf04c4e5be078df4767ba4f7ddd8b8f7b68115536642b88491d0a323d2a448a3bc9b4fea81ee6fa6f9c4926d7c676137ce5a375ef146f0f3f0c1bbb9e36ae3b1f32e11aac7a9b2d94746f680bf88b5a3e48d83fd5dbad5cac4e708ce72436aee244a110b83c498c
- 在职信息:在岗
- 职务:无
- 学科:机械制造及其自动化
- 2023-05-03曾获荣誉当选:泉州市第三层次人才
- 2023-05-01曾获荣誉当选:厦门市高层次人才(C类)
- 2022-12-01曾获荣誉当选:福建省高层次人才(C类)
访问量:
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[1]【一作-SCI3区】Properties Evaluations of Topology Optimized Functionally Graded Lattice Structures Fabricated by Selective Laser Melting.Materials,2023,16(4):1700.
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[2]【一作-SCI1区】Compressive properties of Ti6Al4V Functionally Graded Lattice Structures via topology optimization design and selective laser melting fabrication.Materials Science and Engineering: A,2022,860:144265.
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[3]【一作-SCI1区】Microstructural tailoring of As-Selective Laser Melted Ti6Al4V alloy for high mechanical properties.Journal of Alloys and Compounds,2020,816:152536.
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[4]【一作-EI刊源】Effect of Excimer Laser Irradiation on the Surface Wettability of Selective Laser Melted Ti6Al4V Alloy, Surface Technology.Surface Technology,2020,49(9):191-197.
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[5]【一作-EI刊源】Unit Cell Size Effect on Mechanical Properties of Ti6Al4V Porous Structure.Rare Metal Materials and Engineering,2020,49(5):1736~1742.
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[6]【一作-SCI3区】Compressive Properties of 316L Stainless Steel Topology‐Optimized Lattice Structures Fabricated by Selective Laser Melting.Advance Engineering Materials,2020,23(3):2000957.
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[7]【一作-SCI2区】Mechanical properties tailoring of topology optimized and selective laser melting fabricated Ti6Al4V lattice structure.Journal of the Mechanical Behavior of Biomedical Materials,2019,99:225-239.
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[8]【一作-EI刊源】Improvement of Tensile Properties of Ti6Al4V Alloy by Selective Laser Melting, Surface Technology.Surface Technology,2019,48(5):108-115.
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[9]【一作-SCI2区】Study on topology optimization design, manufacturability, and performance evaluation of Ti6Al4V porous structures fabricated by selective laser melting (SLM).Materials,2017,10(9):1048.