姓名:陈继兵
职称:副教授
邮箱:280362692@qq.com
个人基本情况
陈继兵,博士,副教授,硕士生导师。 2006年和2013年分别获得华中科技大学材料加工工程专业硕士和博士学位,主要从事轻合金材料增材制造技术、电子封装技术、功率器件可靠性等方向的研究工作,担任湖北省机械工程学会增材制造专委会理事和湖北省机械工程学会塑性工程专业委员会理事。以第一作者或通讯作者在Progress in Materials Science、International Journal of Extreme Manufacturing(2篇)、Rare Metals、Virtual and Physical Prototyping、Biofabrication、Journal of Manufacturing Processes、J. Mater. Res. & Technol.、Trans. Nonferr. Metals Soc. China、Antioxidants(2篇)、Mater. Charact.和Prog. Nat. Sci. Mater. Int.(2篇)等国内外知名期刊发表SCI学术论文50余篇,ESI前1%高被引论文和热点论文各1篇,影响因子大于6的论文18篇,H指数为13。授权发明专利16项,出版“十四五”普通高等院校机械类规划教材4部,指导大学生参加国家/省级大赛分别获得一、二和三等奖共10余项,主持或参与国家级、省部级科研项目10余项,担任Rare Metals、Progress in Natural Science: Materials International和Electronics and Signal Processing等期刊青年编委,还担任International Journal of Extreme Manufacturing、Journal of the American Chemical Society、Comprehensive Reviews in Food Science and Food Safety、Rare Metals、Virtual and Physical Prototyping、IEEE Transactions on Industrial Informatics、MedComm、IEEE Transactions on Neural Networks and Learning Systems、IEEE Transactions on Transportation Electrification、IEEE Transactions on Power Electronics、Superconductor Science and Technology、Food Bioscience和Advanced Healthcare Materials等20余种SCI一区Top期刊审稿人。
主要研究方向
增材制造技术(轻合金材料和食品)
功率器件可靠性
电子封装技术
开设课程
材料成形原理(双语)、增材制造技术、工程材料、机械制造基础、模具CAD/CAM等
近3年的科研项目、学术论文、教材/专著和发明专利
(1)主持或参与的科研项目
1)科技成果转化横向项目 “电子信息技术发明专利成果转让”,项目编号:whpu-2022-kj091,时间:2022年6月.
2)湖北省国际科技合作计划项目“钛合金管高频感应焊接关键技术及产业化”,项目编号:2022EHB020,时间:2022.09-2024.9.
3)湖北省科技厅农业农村领域重点专项项目“个性化富硒粞食品增材制造与智能化加工装备研制”,项目编号:2023BBB096,时间:2024.01-2025.12.
4)科技成果转化横向项目“一种锻造设备发明专利成果转让项目”,项目编号:02225023,时间:2025.04-2025.06.
5)科技成果转化横向项目“一种复合材料增材制造成果转化项目”,项目编号:02224136,时间:2024.11-2024.12.
6)武汉轻工大学ESI学科工程领域重点建设项目,时间:2025.01-2025.12.
7)武汉轻工大学ESI学科工程领域一般建设项目,时间:2026.01-2026.12.
(2)发表的代表性学术论文
[1] High-temperature fatigue strength behavior of titanium alloys by laser powder bed additive manufacturing. Progress in Materials Science. 2027, 164: 101775. (一区顶级期刊,IF=42.9)
[2] From exotic sound field manipulation to intelligent systems: Design, fabrication, and applications of acoustic metamaterials. International Journal of Extreme Manufacturing. 2026. (一区Top期刊,IF=25.1)
[3] Synergistic effect of high strength-grain refinement and suppression of Al6Fe phase coarsening in additively manufactured Al-Fe-Sc-Zr alloys via Mg addition. Rare Metals. 2026.(一区Top期刊,IF=12.1)
[4] Synergistic effect of crystallographic orientation and porosity: Multi-mode corrosion mechanism of additive manufacturing Al-Fe-Mn-Sc-Zr alloy. Virtual and Physical Prototyping. 2026, 21(1): e2698982.(一区Top期刊,IF=9.8)
[5] Enhancement and optimization of supported catalysts: a review of current research status and applications in the oxygen reduction reaction. Molecular Catalysis. 2026, 598: 115979.(二区Top期刊,IF=4.3)
[6] Dietary Supplements in Pregnancy and Postpartum: Evidence, Safety Challenges, and a Precision Nutrition Framework (GAPSS). Antioxidants. 2026, 15(1): 57.(二区Top期刊,IF=8.2)
[7] ZIF-8 based materials for CO2 capture: synthesis, functionalization, and adsorption performance. Coordination Chemistry Reviews. 2026, 563: 218015.(中科院一区Top期刊,IF=25)
[8] Fabrication and development of mechanical metamaterials via additive manufacturing for biomedical applications: A review. International Journal of Extreme Manufacturing. 2025, 7(1): 012001.(一区Top期刊,IF=21. 3)
[9] Microstructure and high-temperature performance of a novel heat-resistant Al-Fe-Mn alloy by laser powder bed fusion. Transactions of Nonferrous Metals Society of China. 2025, 35(7): 2183-2200.(中科院一区期刊,IF=4.7)
[10] Mechanistic Insights and Analytical Advances in Food Antioxidants: A Comprehensive Review of Molecular Pathways, Detection Technologies, and Nutritional Applications. Antioxidants. 2025, 14(4): 438.(中科院二区期刊,IF=6.6)
[11] Advances in ZIF-8 variants: Synthesis, design, and applications in gas sensing. Coordination Chemistry Reviews. 2025, 539: 216733.(中科院一区Top期刊,IF=23.5)
[12] Design and Validation of Superhard and Hard-to-be-Machined Mo-V High-Speed Steel for Mill Roll Ring Based on Digital Simulation. Engineering Computations. 2025, 43(1): 363-381.(中科院四区,IF=1.9)
[13] A review of development and applications of SiC power devices in packaging and interconnect technology. Soldering & Surface Mount Technology. 2025, 38(1): 86-110. (中科院四区,IF=1.8)
[14] Investigation of microstructure, mechanical performance, and corrosion resistance of thin-walled titanium welded pipe by annealing process. Materials Characterization. 2024, 218: 114579.(中科院二区,IF=4.8)
[15] Study on microstructure and mechanical properties for L-PBF iron matrix composites reinforced by epoxy resin. Journal of Reinforced Plastics and Composites. 2025, 45(5-6): 1477-1488.(中科院四区,IF=2.2)
[16] Additively manufactured fine-grained Al-Fe-Cu-Sc-Zr alloy with resistance to brittleness under high temperature. Journal of Materials Research and Technology. 2024,33: 7310-7324.(中科院二区Top期刊,IF=6.2)
[17] Restraint of intermetallic compound and improvement of mechanical performance of Ti/Al dissimilar alloy by rotary friction welding based on laser powder bed fusion. Journal of Manufacturing Processes. 2024, 131: 440-454.(中科院一区Top期刊,IF=6.1)
[18] Application of additively manufactured bone scaffold: a systematic review. Biofabrication. 2024, 16(2): 022007.(中科院一区,IF=9.0)
[19] Study on Polystyrene Powder Materials for Selective Laser Sintering. Iranian Polymer Journal 2024. 22: 1-14.(中科院三区,IF=3.1)
[20] Effect of forming angle on the microstructure and properties of GH3536 nickel-based superalloy formed by SLM. Rapid Prototyping Journal. 2024, 30(2), 393-403.(中科院四区,IF=3.9)
[21] Selective laser sintering of acrylonitrile butadiene styrene polymer and post-processing enhancement: an experimental study. Iranian Polymer Journal 2023, 32, 1537-1550.(中科院三区,IF=3.1)
招生信息:
本课题组长期与新加坡南阳理工大学、瑞典皇家理工学院、上海交通大学、华中科技大学、西安交通大学、中南大学、四川大学和电子科技大学等国内外顶尖高校课题组互派学生交流学习!
热烈欢迎勤奋上进的学术和专业硕士研究生申报加入课题组开展航空航天/汽车/生物医疗等金属材料的增材制造技术、功率器件可靠性、电子封装技术的科学研究和设计工作!