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杨建雷科研成果

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杨建雷
姓名 杨建雷 性别 杨建雷
学校 哈尔滨工业大学 部门 材料科学与工程学院(威海)
学位 杨建雷 学历 杨建雷
职称 教授 联系方式 18660337848
邮箱 jlyang@hit.edu.cn    
软件产品登记测试全国受理 软件著作权666元代写全部资料全国受理 实用新型专利1875代写全部资料全国受理
杨建雷

基本信息 科学研究 学生培养 论文专著 新建主栏目 基本信息 名称 杨建雷,教授/博士生导师、材料学院院长助理 主要从事难变形材料省力成形理论、技术及智能装备方面的研究工作。 承担国家基金委、国家部委、省级重点项目及课题级项目20余项。共发表学术论文100余篇,授权发明专利/软著5项,获省科技进步二等奖1项,江苏省泰州市"双创人才"等。近年来,聚焦于国家军事、交通运输及海洋船舶等行业需求广泛的轻量化镁合金、铝合金、钛合金及钨、铜合金材料,重点形成了“基于能场诱导的难变形材料省力成形理论及装备”、“大尺寸局部特征曲面构件刚柔复合介质省力胀形技术及装备”、“高密度难变形材料传力介质省力挤压成形技术”三大特色研究方向,并已逐步发展成为一种针对难变形材料精确塑性成形共性新技术。 联系方式: 电话(Tel):18660337848(同微信) Email:jlyang@hit.edu.cn 通讯地址:材料学院407室 邮编:264209 教育经历 名称 2006.09-2010.07 哈尔滨工业大学 材料科学与工程 学士 2012.09-2014.07 哈尔滨工业大学 材料加工工程(塑性加工) 硕士 2014.09-2018.10 哈尔滨工业大学 材料加工工程(塑性加工) 博士 2017.09-2018.09 韩国浦项科技大学 联合培养(合作导师:HyongSeop Kim 教授) 工作经历 名称 2022.03-至今 哈尔滨工业大学(威海)院长助理 2021.05-至今 哈尔滨工业大学(威海) 硕士生导师、博士生导师 2021.01-至今 哈尔滨工业大学(威海) 材料工程系副主任 2018.10-至今 哈尔滨工业大学(威海) 讲师、副教授、教授 主要任职及荣誉 名称 Guest Editor for Materials; 国家自然基金 通讯评审专家; 江苏省泰州市“双创人才”计划,2020; 哈工大优秀思想政治工作者,2023; 哈工大先进招生个人,2023; 大一年度项目优秀指导教师,2022 研究方向 名称 博士研究生:1~2人/年;硕士研究生:1~2人/年。 (1)超塑成形(胀形、锻造、超塑成形/固相连接); (2)能场辅助成形(电场、超声、磁场、激光等); (3)增量成形(旋压、能场诱导固相增材); (4)粉末一体化成形(钛基复合材料组织设计、钨合金材料粉-塑一体化成形等); (5)机器学习及跨尺度建模仿真 代表性项目 名称 2023年度: 1. 国家部委:XXXXXX; 2024.01-2025.12. 项目负责人 2. 国家部委:XXXXXX; 2024.01-2025.12. 课题负责人 2022年度: 1. 山东省重点研发计划:XXXXXX; 2022.11-2025.10. 项目负责人 2. 国家部委:XXXXXX; 2022.11-2025.12. 课题负责人 2021年度: 1. 山东省重大创新工程:2021.12-2023.12. 课题负责人 2. 国家自然基金青年项目: 2020.01-2022.12. 项目负责人 代表性论著 名称 奖项成果 名称 高性能钛基复合材料短流程制备及其高端紧固件智能制造关键技术, 山东省科技进步二等奖, 2021,(排名5/9). 复杂断面高性能镁合金低碳成形技术及应用, 新能源汽车技术(轻量化)创新拉力赛一等奖,2021,(排名1/5). 研究团队 名称 课题组负责人:张文丛 教授/博导 成员:于 洋 教授/博导 陈文振 教授/博导 杨建雷 副教授/硕导 崔国荣 副教授/硕导 王 刚 副教授/硕导 王文珂 助理研究员 徐海伟 工程师 赵盛杰 工程师 讲授课程 名称 研究生课程:金属强度与断裂的微观理论、塑性加工新技术讲座 本科生课程:体积成形原理、材料工程力学、液态成形工艺基础、轻合金 教学成果 名称 2021年度 “徕卡杯”全国金相技能大赛二等奖(指导教师) 2020年度 第三届“校长杯”课外学术科技作品竞赛三等奖(指导教师) 毕业学生去向 名称 博士研究生 2021级 李焕(博士在读,协助指导); 2020级 潘金启(博士在读,协助指导); 2019级 王松辉(博士毕业-副导师-安大航空锻造) 2. 硕士研究生 2024级 2023级 吴昊男(硕士在读),李文星(硕士在读), 2022级 翟宇翔(硕士在读),张赞(硕士在读),崔漪文(硕士在读); 2021级 李宇昕(硕士毕业-杭州智元院),李天民(硕士毕业-哈工大读博),赵城(硕士毕业-核九院); 2020级 谢汶卓(硕士毕业-哈工大读博),杨尚(硕士毕业-哈工大读博); 2019级 李焕(硕士毕业-哈工大读博),战立强(硕士毕业-哈工大读博) 2018级 潘金启(硕士毕业-哈工大读博) 3. 本科生 2024届 6人 (王梓涵、宋江豪、郑奕、王文彬、黎琨、任剑飞) 2023届 6人 (曹晓睿、曹哲铭、陈皓、吴晨毓、徐诺、严子沂); 2022届 5人(张利明、郑千泽、张正朴、曲作宇、王皓洋); 2021届 6人(祝梦俊、李宇昕、徐文昊、靳云浩、王思维、陈志斌); 2020届 7人(郭宏辉、陈乙嘉、尤雨晴、张振顺、满桐池、徐洁、张昊宇)。 代表性论文 名称 2024年: 1.Jianlei Yang, Jianghao Song, Jinqi Pan, Xiaobo Wang, Li Zhou, Guangda Sun, Wencong Zhang, Xueyan Jiao. Microstructure evolution and strengthening mechanisms of electron beam welded 2219 aluminum alloy plate after hot spinning and heat treatment[J]. Journal of Materials Research and Technology, (2024), 28, 411-419. 2.Jinqi Pan, Wencong Zhang, Huan Li, Jianlei Yang*, Zan Zhang, Songhui Wang. Microstructure characteristics, yield asymmetry and fracture mechanism of the fine grained thin-wall Mg-6.03Zn-0.55Zr tubes fabricated by hot spinning[J]. Journal of Alloys and Compounds, (2024), 983,173841. 2023年: 1.Wencong Zhang, Jinqi Pan, Songhui Wang, Jianlei Yang*, Texture weakening and grain refinement behavior of the extruded Mg-6.03Zn-0.55Zr alloy during hot plane strain compression, Journal of Materials Research and Technology, (2023), 27, 3041-3053. 2. Songhui Wang, Wencong Zhang, Jianlei Yang*, Xeuyan Jiao, Jinqi Pan, Guannan Chu, Xiangyu Dai, Achieving Ultra?High?Strength and Good Ductility of the ZK60 Alloy Sheet by High Strain?Rate Rolling[J], Metals and Materials International, 2023, 29, 1195-1201. 3.Huan Li, Wencong Zhang, Jianlei Yang*, Jinqi Pan, Wenzhen Chen, Guorong Cui, Guofeng Wang, Guannan Chu, Microstructural evolution and mechanical properties of Ti-22Al-25Nb alloy fabricated by high pressure torsion under ageing, Journal of Materials Engineering and Performance, 2023, 32, 4902-4910. 4. 谢汶卓, 杨建雷*, 寇兆阳, 富壮, 高洪雷, 姜岩, 敦勃文, 李建成, 康明霞, 汽车底板前横梁内板热成形工艺, 塑性工程学报,2023,30 ( 1) : 37 -41. 2022年: 1. Liqiang Zhan,Guangjie XueJianlei YangWencong ZhangXueyan JiaoGang WangGuofeng Wang Superplastic behavior and microstructure evolution of a fine-grained. Mg-Nd-Zn-Zr alloy processed by hot extrusion. Materials Science & Engineering A 2022,846,143314 2. Jinqi PanWencong ZhangJianlei YangSonghui WangXiaoyu WangLiqiang ZhanWenzhen Chen Microstructural characterization and mechanical response of the extruded ZK61 magnesium alloy under dynamic and quasi-static loading Materials Characterization, 2022,189,111976 3. Songhui WangJianlei YangJinqi PanHaixuan WangWencong ZhangYouping SunXiangyu DaiWenzhen ChenGuorong CuiGuannan Chu Unveiling the mechanical response and deformation mechanism of extruded Mg-2.5Nd-0.5Zn-0.5Zr alloy sheet under high-temperature tensile Journal of Alloys and Compounds 2022,911,164987 2021年: 4. Songhui Wang, Jianlei Yang*,Wencong Zhang, Evolution of Microstructures, Texture, Damping and Mechanical Properties of Hot Extruded Mg-Nd-Zn-Zr Alloy[J]. Journal of Materials Engineering and Performance(2021.06) 5. Quantitative analysis on microstructure and high temperature fracture mechanism of TiBwTi6Al4V composites with equiaxed microstructure after heat treatment Journal of Central South University(2021.08) 6. Dissimilar diffusion bonding behaviour of Ti2AlNb alloy and TiBw/Ti64 composites using the Ti interlayer Science and Technology of Welding and Joining(2021.09) 7. Improving the ductility of Mg-2.5Nd-0.5Zn-0.5Zr alloy by multi-pass hot rolling Journal of Materials Research and Technology(2021.07) 8. High-temperature deformation behavior and microstructure evolution of TiBw/Ti6Al4V composites during hot shear-compression deformation Journal of Materials Research and Technology(2021.07) 9. AZ31 /7475 方形双金属复合管气压胀形-冷缩结合工艺 塑性工程学报 (2021.10) 10. Songhui Wang, Wencong Zhang, Haixuan Wang, Jianlei Yang*, Wenzhen Chen, Guorong Cui, Guofeng Wang. Microstructures evolution, texture characteristics and mechanical properties of Mg-2.5Nd-0.5Zn-0.5Zr alloy during the high strain rate hot-rolling[J]. Materials Science & Engineering A 803 (2021) 140488 2020年及以前: 11. 战立强,王刚,杨建雷*,孔得红,张文丛. AZ31/7475方形双金属复合管气压胀形-冷缩结合工艺研究. 塑性工程学报.2020. 12. Liqiang Zhan, Gang Wang, Jianlei Yang*, Dehong Kong, Wencong Zhang, and Guofeng Wang. Study on Gas Bulging Forming and Contradictive Cooling Bonding of AZ31/Al7475 Bimetal Composite Tube[J]. JMEPEG (2020) 29:4652–4658 13. Jianlei Yang, Guofeng Wang*, Jeong Min Park, Hyoung Seop Kim**. Microstructural behavior and mechanical properties of nanocrystalline Ti-22Al-25Nb alloy processed by high-pressure torsion[J]. Materials Characterization. 2019,151: 129-136. 14. Xueyan Jiao, Wenzhen Chen, Jianlei Yang*, Wencong Zhang, Guofeng Wang. Microstructure evolution and high-temperature tensile behavior of the powder extruded 2.5?vol% TiBw/TA15 composites[J]. Materials Science and Engineering: 2019,754:353-359. 15. Xueyan Jiao, Dongjun Wang, Jianlei Yang, Zhiqiang Liu, Gang Liu*. Microstructure analysis on enhancing mechanical properties at 750?°C and room temperature of Ti-22Al-24Nb-0.5Mo alloy tubes fabricated by hot gas forming.Journal of Alloys and Compounds. 2019,789: 639-646. (SCI 收录) 16. Xiao Li, Guofeng Wang, Yibin Gu, Jianlei Yang. Electrically assisted diffusion bonding of Ti2AlNb alloy sheet using CP-Ti foil interlayer: Microstructural characterization and mechanical tests.Materials Science and Engineering: A, 2019,744: 733-745. (SCI 收录) 17. Guofeng Wang,Qing Liu, Jianlei Yang, Xiao Li, Yongkang Liu. Synthesis and thermal stability of a nanocrystalline MoNbTaTiV refractory high-entropy alloy via mechanical alloying. International Journal of Refractory Metals and Hard Materials. 2019,84: 104988. (SCI 收录) 18. Qing Liu, Guofeng Wang, Xiaochong Sui, Yongkang Liu, Jianlei Yang. MoNbTaTiV refractory high-entropy alloy fabricated by spark plasma sintering.Journal of Materials Science & Technology. 2019,35: 2600-2607. (SCI 收录) 19. Guofeng Wang, Jianlei Yang, Xueyan Jiao. Microstructure and mechanical properties of Ti–22Al–25Nb alloy fabricated by elemental powder metallurgy [J]. Materials Science and Engineering: A 654 (2016) 69-76. (SCI 收录) 20. Jianlei Yang, Guofeng Wang, Wencong Zhang, Wenzhen Chen, Xueyan Jiao, Kaifeng Zhang. Microstructure evolution and mechanical properties of P/M Ti-22Al-25Nb alloy during hot extrusion [J]. Materials Science and Engineering: A, 699 (2017) 210-216. (SCI 收录) 21. Jianlei Yang, Guofeng Wang, Xueyan Jiao, Xiao Li, Chao Yang. Hot deformation behavior and microstructural evolution of Ti-22Al-25Nb-1.0B alloy prepared by elemental powder metallurgy [J]. Journal of Alloys and Compounds. 695 (2017) 1038-1044. (SCI 收录) 22. Jianlei Yang, Guofeng Wang, Xiaoyan Jiao You Li, Qing Liu. High temperature deformation behavior of the extruded Ti-22Al-25Nb alloy fabricated by powder metallurgy [J]. Materals Characterization. 137 (2018) 170-179, (SCI 收录) 23. Jianlei Yang, Xueyan Jiao, Wenzhen Chen, Wencong Zhang,Guofeng Wang. A Novel Extrusion for Manufacturing TiBw/Ti6Al4V Composite Tubes with a Quasi-Continuous Reinforced Structure [J]. Materials 2017, 10, 375; (SCI收录) 24. Jianlei Yang, Guofeng Wang, Xiao Li, Xuesong Wu. Current auxiliary hot-stamping of advanced high-strength steel and experimental evaluation [J]. Materials Science and Technology. 33 (2017) 355-362. (SCI 收录) 25. Jianlei Yang, Guofeng Wang, Xueyan Jiao, You Li, Kaifeng Zhang. Dynamic spheroidization behavior of the lamellar Ti-22Al-25Nb alloy during hot compression [J]. Materials Science and Technology. 2018, (DOI: https://doi.org/10.1080/02670836.2017.1415013, (SCI 收录)). 26. Xueyan Jiao, Wenzhen Chen, Jianlei Yang?, Wencong Zhang, Guofeng Wang Microstructure evolution and high-temperature tensile behavior of the powder extruded 2.5vol% TiBw/TA15 composites Materials Science & Engineering A,745 (2019)353-359. (SCI 收录) 27. Jianlei Yang, Guofeng Wang, JeongMin Park, HyoungSeop Kim. Microstructural behavior and mechanical properties of nanocrystalline Ti-22Al-25Nb alloy processed by high-pressure torsion[J]. Materials Characterization, 151 (2019) 129-136. (SCI 收录) 28. 杨建雷,曾婷,王国峰, 李骁,张凯锋. 粉末冶金Ti-22Al-25Nb合金高温变形本构模型[J]. 热加工工艺2017,. 29. Jianlei Yang, Guofeng Wang, Xueyan Jiao, Yibin Gu, Qing Liu, You Li. Current-assisted diffusion bonding of the extruded Ti-22Al- 25Nb alloy by spark plasma sintering: interfacial microstructure and mechanical Properties [J]. Journal of Materials Engineering and Performance. 2017 (SCI收录). (Accept). 30. Wenzhen Chen, Jianlei Yang, Wencong Zhang, Mengmeng Wang, Dandan Du. Influence of TiBw volume fraction on microstructure and hightemperature properties of in situ TiBw/Ti6Al4V composites with TiBw columnar reinforced structure fabricated by pre-sintering and canned extrusion [J]. Advanced Powder Technology 28 (2017) 2346-2356. (SCI 收录) 31. KyongHo Sim, Guofeng Wang, JongMin Ju, Jianlei Yang, Xiao Li. Microstructure and mechanical properties of a Ti22Al25Nb alloy fabricated from elemental powders by mechanical alloying and spark plasma sintering [J]. Journal of Alloys and Compounds 704 (2017) 425-433. (SCI 收录) 32. You Li, Guofeng Wang, Siyu Liu, Jianlei Yang, Chao Yang, Kaifeng Zhang. Drawability and size effects for micro-arrayed deep drawing of Ni-Co/GO nanocomposite foils [J]. Journal of Materials Processing Tech. 249 (2017) 221-228. (SCI 收录) 33. Guofeng Wang, You Li, Siyu Liu, Jianlei Yang, Mo Yang. Micro deep drawing of T2 copper foil using proportional decreased tools [J]. The International Journal of Advanced Manufacturing Technology, 2017, (SCI 收录) 34. Wenke Wang, Wencong Zhang, Wenzhen Chen, Jianlei Yang, Lixin Zhang, Erde Wang. Homogeneity improvement of friction stir welded ZK61 alloy sheets in microstructure and mechanical properties by multi-pass loweredtemperature rolling [J]. Materials Science & Engineering A 703 (2017) 17–26. (SCI 收录) 35. Yang Yu, Wencong Zhang, Wenqian Dong, Jianlei Yang, Yangju Feng. Effects of pre-sintering on microstructure and properties of TiBw/Ti6Al4V composites fabricated by hot extrusion with steel cup [J]. Materials Science & Engineering A 638 (2015) 38-45. (SCI 收录) 36. Wencong Zhang, Xueyan Jiao, Yang Yu, Jianlei Yang, Yangju Feng. Microstructure and Properties of 3.5 vol.% TiBw/Ti6Al4VComposite Tubes Fabricated by Hot-hydrostatic Extrusion [J]. J. Mater. Sci. Technol., 2014, 30(7), 710-714. (SCI 收录) 37. Wencong Zhang, Yangju Feng, Wenzhen Chen, Jianlei Yang. Effects of heat treatment on the microstructure and mechanical properties of in situ inhomogeneous TiBw/Ti6Al4V composite fabricated by preesintering and canned powder extrusion [J]. Journal of Alloys and Compounds 693 (2017) 1116-1123. (SCI 收录) 38. 于洋、冯养巨、张文丛、杨建雷. 包套热挤压M32粉末冶金高速钢的组织性能研究 [J]. 粉末冶金技术. 2013,31(04):243-247. 专利及获奖 名称 专利: 1. 张文丛、王松辉,杨建雷 一种超高强度镁合金板材的制备方法;202010206296.8 2. 杨建雷,张文丛,李焕 一种难变形材料超细晶制备装置及方法;202010206299.1 3. 陈文振,杨建雷,张文丛、王松辉-镁合金棒材塑变表面处理专利;202010640294.X 4. 王文珂、陈文振、张文丛、杨建雷、崔国荣. 一种柔性调控镁或镁合金织构的挤压加工方法及装置. 5. 王文珂、陈文振、张文丛、杨建雷、崔国荣. 一种镁或镁合金板带材输送辊道补温方法和装置. 6. 王刚、杨建雷、王如月、战立强. 一种由金属管材直接热成形双金属复合管件的方法及装置. 7. 崔国荣、陈文振、张文丛、杨建雷. 一种高塑性钛基复合材料制备方法. 8. 张文丛、陈文振、杨建雷、于洋、冯养巨. 准连续网状结构TiBw/Ti-6Al-4V复合材料棒材的制备方法. 获奖: