姓名 | 周浩 | 性别 | 男 |
| |||
民族 | 汉 | 籍贯 | 江苏苏州 | ||||
出生年月 | 1983.05 | 政治面貌 | 无党派人士 | ||||
最高学历 | 研究生 | 最高学位 | 博士 | ||||
现任职务 | 教师 | 技术职称 | 教授 | ||||
通讯地址 | 江苏省常州市金坛区河海大道1915号河海大学,材料学院56号楼453房间,213200 | ||||||
电话 | 15651721260 | 20261044@hhu.edu.cn | |||||
个人简介: 2025年辽宁省杰出青年科学基金获得者,江苏省双创博士计划获得者,以负责人承担多项国家自然基金项目,以第一或通讯作者在Nature Mater., Science Adv.,Acta Mater.,IJP等期刊发表论文190余篇,论文累计引用10000余次,h因子55,担任MRL期刊学术编辑,以及Acta Mater., Scr. Mater.等期刊审稿人。以主要完成人获山西省自然科学二等奖, 教育部自然科学二等奖。 主要研究方向: 1)异构金属材料微观结构与强韧化; 2)原位透射电子显微学。 学术、社会兼职: 《Materials Research Letters》学术编辑 主持科研项目: 1)国家重点研发计划子课题,2021YFA1200203-2,非均匀纳米钛合金材料微观结构调控与强韧化机制,220万元,主持,在研。 2)国家自然基金面上项目,52571139,高性能ZK60/Mg-Y层状异构镁合金制备及其强韧化机制,50万元,主持,在研。 3)国家自然基金面上项目,52071178,溶质元素界面偏析诱导新型高强塑耐热纳米晶镁合金,69.6万元,主持,已结题。 4)国家自然科学基金青年基金,51601003,基于原位高分辨透射电镜Mg-Gd系合金时效析出行为及其强化机制研究,25万元,主持,已结题。 5)辽宁省青年科学基金项目A类(原省杰青),2025JH6/101100022,高强高韧非均匀层状异构镁合金原位变形及强韧化机理,100万元,主持,在研。 6)鞍钢集团, 北京研究院合作项目,高强韧纳米异构钛合金跨尺度计算及制备技术开发,180万元,主持,已结题。 7)宝钢集团,复相钢种的B2相析出行为研究,37万元,主持,在研。 8)宝钢集团,汽车用钢开发与应用技术国家重点实验室开放基金,纳米异构超高强汽车原型钢的研制,40万元,主持,已结题。 9)宝钢集团,二种复相钢中的析出和重熔行为研究,42万元,主持,已结题。 10)中科院力学研究所合作研究项目,新型中熵合金微观组织表征及变形机制研究,20万元,主持,已结题。 11)兵科院宁波分院合作研究项目,双金属带材力学性能分析,30万元,主持,已结题。 12)鞍钢集团, 北京研究院合作项目,纳米钛金属制备工艺研究,35万元,主持,已结题。 13)江苏省“双创计划”,世界名校类,双创博士,15万元,主持,已结题。 14)南京理工大学自主科研项目,Mg-Gd-Y系合金界面偏析及其形成机理研究,10万元,主持,已结题。 15)先进制造智能化技术教育部重点实验室开放课题基金,5万元,主持,已结题。 获奖: ²山西省科学技术奖,“大塑性变形制备高性能镁合金应用基础研究”,自然科学类,二等奖(排名第3) ²教育部科学研究优秀成果奖,“金属材料跨尺度异构设计与强韧化机理”,自然科学研究成果奖,二等奖(排名第3) 授权第一发明人专利 1)周浩,郭悦,王利,刘俊亮,高波,肖礼容。一种多相协同强韧化异构钢铁材料及其制备方法。中国发明专利:ZL 202311038057.6 2)周浩,马浩伟,肖礼容,潘在蘩,高波。一种异构钛合金的制屑烧结压制一体化装置及方法。中国发明专利:ZL 202310972083.X 3)周浩,潘在蘩,滕航,徐正祥,高波,刘亿,王胜青,范付军,徐旭,肖礼容。基于半固态铸造制备多尺度析出强化镁合金的方法。中国发明专利:ZL 202310925350.8 4)周浩,于翔,王利,高波,肖礼容。一种折叠锻压制备梯度叠层双相多级异构钢铁板材的方法。中国发明专利:ZL 202210875629.5 5)周浩,许梦凝,肖礼容,李玉胜,曹阳。一种基于凸轮轧制制备混晶异构材料的系统和方法。中国发明专利:ZL 202010205821.4 6)周浩,黄家喜,陈雪飞,许梦凝,瞿振宇,肖礼容,李玉胜,曹阳。一种利用复合冲压获得异构金属薄板的方法。中国发明专利:ZL 202010451758.2 7)周浩,黄家喜,高波,肖礼容,陈雪飞,曹阳,李玉胜,聂金凤。一种等离子熔覆制备异构材料的方法。中国发明专利:ZL 202010227753.1 8)周浩,许梦凝,陈雪飞,李磊,肖礼容,曹阳,李玉胜,聂金凤。制备异构镁合金棒材的连续编扭拉拔装置及方法。中国发明专利:ZL 201911411339.X 9)周浩,廖阳,许梦凝,陈雪飞,刘亿,徐涛,肖礼容,李玉胜,曹阳。一种制备多尺度析出得纳米异构镁合金板材得方法及系统。中国发明专利:ZL 202010179715.3 10)周浩,徐涛,高波,肖礼容。一种超高强度马氏体不锈钢的制备方法。中国发明专利:ZL202110359178.5 11)周浩,廖阳,许梦凝,陈雪飞,刘亿,徐涛,肖礼容,李玉胜,曹阳。一种层绕旋锻制备镁合金棒材的方法及系统。中国发明专利:ZL 202010258856.4 12)周浩,瞿振宇,陈雪飞,许梦凝,刘亿,肖礼容,徐涛,李玉胜,曹阳。一种铸造异构金属棒材的装置及方法。中国发明专利:ZL202010233809.4 13)周浩,任许乐,刘亿,许梦凝,陈雪飞,徐涛,肖礼容,李玉胜,曹阳。一种高强度高导电异构铜导线的制备系统及方法。中国发明专利:ZL202010179713.4 14)周浩,高波,赖庆全,潘志驿,杨明,陈雪飞,肖礼容。一种超高强度纳米异构低碳钢的制备方法。中国发明专利:ZL201910074939.5 15)周浩,潘志驿,高波,赖庆全,陈雪飞,曹阳,李玉胜。一种表面强塑性变形调控双相钢材料延韧性的加工方法。中国发明专利:ZL201810990501.7 16)周浩,陈雪飞。一种多尺度析出强化镁合金材料的制备方法。中国发明专利:ZL201711246681.X 17)周浩,魏康,赵永好,高波,陈雪飞,曹阳,李玉胜。一种异构高熵合金材料及其制备方法。中国发明专利:ZL 201810657004.5 18)周浩,肖礼容,沙学超,王立华,毛圣成,韩晓东,张泽。一种小变形量制备大块纳米晶镁合金的方法。中国发明专利:ZL 201610589439.1 19)周浩,王帅卓,李玉胜,肖礼容。一种透射电子显微镜原位拉伸的夹持装置。中国发明专利:ZL 201811564270. X 20)周浩,许梦凝,高波,陈雪飞,戴文宇,曹阳,李玉胜,聂金凤。一种制备异构铜导线的装置及方法。中国发明专利:ZL 201911388085.4. 21)周浩,王渠东. 扭转式往复挤压装置及其加工方法. 中国发明专利: ZL 201010289359.7. 22)周浩,王渠东,郭炜. 多向复合式循环镦压装置及镦压方法. 中国发明专利: ZL 201010595910.0. 23)周浩,王渠东, 郭炜. 带背压式四向往复镦压装置及其加工方法. 中国发明专利:ZL 201010533770.4 代表性论文: 1)H. Zhou, X.L. Wu*, David Srolovitz, Y.T. Zhu*, Designing heterostructured materials, Nature Materials, 2026,(一区TOP)https://doi.org/10.1038/s41563-025-02444-y. 2)B. Gao#, Q.Q. Lai#, Y. Cao, R. Hu, L.R. Xiao, Z.Y. Pan, N.N. Liang, Y.S. Li, G. Sha, M.P. Liu, H. Zhou*, X.L. Wu*, Y.T. Zhu*, Ultrastrong low-carbon nanosteel produced by heterostructure and interstitial mediated warm rolling, Science Advances, 2020, 6, 39: 8169. (一区TOP) 3)B. Gao, X.X. Dong, L.R. Xiao, Y. Liu, D.D. Yin*, H. Zhou*, Y.T. Zhu*, Inter-zone synergetic strengthening and ductilization in an optimized dual-phase heterostructure via dispersed micro-shear bands. Acta Materialia, 2026, 312:122232. (一区TOP) 4)R. Ni, C.J. Boehlert, B. Chen, Y.S. Zhang, Y. Zeng, J. Zheng, H. Zhou*, Q.D. Wang, D.D. Yin*, Temperature-dependent interplay of intra- and inter-granular deformation mechanisms in Mg-10Y: Statistical analysis from an HRDIC perspective. Acta Materialia, 2025, 296: 121256. (一区TOP) 5)K. Wei#, R. Hu#, D.D. Yin, L.R. Xiao, S. Pang, Y. Cao, H. Zhou*, Y.H. Zhao*, Y.T. Zhu*, Grain size effect on tensile properties and slip systems of pure magnesium, Acta Materialia, 2021, 206: 116604. (ESI高被引论文)(一区TOP) 6)L.R. Xiao, Y. Cao, S. Li, H. Zhou*, X.L. Ma, L. Mao, X.C. Sha, Q.D. Wang, Y.T. Zhu, X.D. Han*, The formation mechanism of a novel interfacial phase with high thermal stability in a Mg-Gd-Y-Ag-Zr alloy, Acta Materialia, 2019, 162:214-225. (一区TOP) 7)H. Zhou, G.M. Cheng, X.L. Ma, W.Z. Xu, S.N. Mathaudhu, Q.D. Wang*, Y.T. Zhu*, Effect of Ag on interfacial segregation in Mg-Gd-Y-(Ag)-Zr alloy, Acta Materialia, 2015, 95: 20-29. (一区TOP) 8)D.D. Yin*, C.J. Boehlert, L.J. Long, G.H. Huang, H. Zhou*, J. Zheng, Q.D. Wang, Tension-compression asymmetry and the underlying slip/twinning activity in extruded Mg-Y sheets, International Journal of Plasticity, 2021, 136: 102878. (ESI高被引论文)(一区TOP) 9)S.Z. Wang, Z.H. Hu, Z.W. Huang, B. Gao, X.F. Chen, J.J. Hu, Y.T. Zhu, Y.S. Li*, H. Zhou*, New deformation mechanism and strength-ductility synergy in pure titanium with high density twin, International Journal of Plasticity, 2024, 174: 103908. (ESI高被引论文)(一区TOP) 10)R. Ni, Z.W. Jiang, C. Boehlert, J. Zheng, H. Zhou*, Q.D. Wang, D.D. Yin*. Unveiling asymmetric precipitation strengthening during tension and compression via statistical slip activity analysis for an untextured Mg-10Gd-3Y-0.5Zr alloy, International Journal of Plasticity, 2025, 189: 104354. (一区TOP) 11)R. Ni, C.J. Boehlert, X.H. Zheng, Y.M. Ran, S.J. Huang, Y. Zeng, J. Zheng, Q.D. Wang, H. Zhou*, D.D. Yin*, Revisiting tension-compression asymmetry in a Mg alloy: insights from statistical strain partitioning and intra-/inter-granular mechanisms at the nanoscale. International Journal of Plasticity, 2025, 194:104463.(一区TOP) 12)L.Y. He, J. Zheng*, M.N. Xu, T.J. Li, D.D. Yin, B. Jiang, F.S. Pan, H. Zhou*, Towards extraordinary strength-ductility synergy in pure Mg via dislocation transmutation, International Journal of Plasticity, 2024, 184:104160. (一区TOP) 13)X.X. Dong, B. Gao, L.R. Xiao, J.J. Hu, M.N. Xu, Z.Y. Li, J.Q. Meng, X.D. Han, H. Zhou*, Y.T. Zhu*, Heterostructured Metallic Structural Materials: Research Methods, Properties, and Future Perspectives, Advanced Functional Materials, 2024: 2410521. (ESI高被引论文)(一区TOP) 14)L.R. Xiao*, X.J. Chen, B. Gao*, X.X. Dong, Z.F. Pan, H. Zhou*, Current progress on solute segregation at interfaces in Mg alloys, Materials Research Letters, 2026,https://doi.org/10.1080/21663831.2026.2619451.(一区TOP) 15)J.Q. Meng, X.F. Chen, Z.B. An, Y.H. Zhao*, H. Zhou*, X.D. Han*, Negative mixing enthalpy approach for advanced multi-component alloys: a perspective for high strength yet ductile alloy development. Materials Research Letters, 2025, 13: 903-916. (一区TOP) 16)B. Gao#, X.X. Dong#, X.F. Chen, L.R. Xiao, Q. Zhou, X.D. Han, D.D. Yin*, H. Zhou*, Y.T. Zhu*, Heterostructure enables new deformation mechanisms to enhance strength and work hardening. Materials Research Letters, 2025, 13: 917-927. (一区TOP) 17)H. Zhou, C.X. Huang, X.C. Sha, L.R. Xiao, X.L. Ma, H.W. Hoppel, M. Goken, X.L. Wu, K. Ameyama, X.D. Han*, Y.T. Zhu*, In-situ observation of dislocation dynamics near heterostructured interfaces, Materials Research Letters, 2019, 376-382. (一区TOP) 18)Y. Liu#, M.N. Xu#, L.R. Xiao, X.F. Chen, Z.H. Hu, B. Gao, N.N. Liang, Y.T. Zhu, Y. Cao*, H. Zhou*, Dislocation array reflection enhances strain hardening of a dual-phase heterostructured high-entropy alloy, Materials Research Letters, 2023, 11, 8: 638-647.(一区TOP) 19)X.F. Chen, F.P. Yuan, H. Zhou*, X.L. Wu*, Structure motif of chemical short-range order in a medium-entropy alloy, Materials Research Letters, 2022, 10(3): 149-155. (一区TOP) 20)J.Q. Meng, Y.H. Zhao*, Y. Liu, Z.Y. Li, B. Gao, M.N. Xu, W.H. Xia, X.F. Chen, H. Zhou*, Y.T. Zhu*,Impact of gradient microstructure on strain hardening via activation of multiple deformation mechanisms in CoCrNi medium entropy alloy, Materials Futures, 2024, 3:041002. (一区) 21)B. Gao, T. Xu, L. Wang, J.L. Liu, Y. Zhang, Y.D. Sui, W.W. Sun, X.F. Chen, L.R. Xiao*, H. Zhou*, Achieving a superior combination of tensile properties and corrosion resistance in AISI420 martensitic stainless steel by low-temperature tempering, Corrosion Science, 2023, 111551. (一区TOP) 22)H. Zhou, H.Y. Ning, X.L. Ma, D.D. Yin, L.R. Xiao, X.C. Sha, Y.D. Yu, Q.D. Wang*, Y.S. Li*, Microstructural evolution and mechanical properties of Mg-9.8Gd-2.7Y-0.4Zr alloy produced by repetitive upsetting. Journal of Materials Science & Technology, 2018, 34: 1067-1075. (一区TOP) 23)B. Gao#, R. Hu#, Z.Y. Pan, X.F. Chen, Y. Liu, L.R. Xiao, Y. Cao, Y.S. Li, Q.Q. Lai*, H. Zhou*. Strengthening and ductilization of laminate dual-phase steels with high martensite content. Journal of Materials Science & Technology, 2021, 65: 29-37. (一区TOP) 24)K. Wei, L.R. Xiao, B. Gao, L. Li, Y. Liu, Z.G. Ding, W. Liu, H. Zhou*, Y.H. Zhao*. Enhancing the strain hardening and ductility of Mg alloy by introducing stacking faults. Journal of Magnesium and Alloys, 2020, 8:1221-1227. (一区TOP) 25)L.R. Xiao, X.F. Chen, H.Y. Ning, P. Jiang, Y. Liu, B. Chen, D.D. Yin*, H. Zhou*, Y.T. Zhu. Unexpected high-temperature brittleness of a Mg-Gd-Y-Ag alloy. Journal of Magnesium and Alloys, 2022, 10, 9: 2510-2515.(一区TOP) 26)Z. Peng#, Y. Liu#, L.R. Xiao, Y. Yang, B. Gao, M.N. Xu, Z.H. Hu, Y.D. Yu, X.F. Chen*, H. Zhou*. Formation mechanism of co-axial grain boundaries in a Mg alloy. Journal of Magnesium and Alloys, 2023, 11, 3: 1094-1101.(一区TOP) 27)L.R. Xiao, X.F. Chen, K. Wei, Y. Liu, D.D. Yin, Z.H. Hu, H. Zhou*, Y.T. Zhu*, Effect of dislocation configuration on Ag segregation in subgrain boundary of a Mg-Ag alloy, Scripta Materialia, 2021, 191: 219-224. 28)Q.L. Huo, X.F. Chen*, J.Q. Meng, M.P. Liu, X.X. Dong, F. Wang, R. Luo*, H. Zhou*, Y.T. Zhu, Ultrafine κ-Phase and De-faulting mechanisms enables 2GPa strength with ductility in a VCoNi alloy via ultra-fast heat treatment. Scripta Materialia, 2025, 267: 116824. 29)L.R. Xiao, X.F. Chen, Y. Cao, H. Zhou*, X.L. Ma, D.D. Yin, B. Ye, X.D. Han*, Y.T. Zhu, Solute segregation assisted nanocrystallization of a cold-rolled Mg-Ag alloy during annealing, Scripta Materialia, 2020, 177:69-73. 30)Y. Liu, M.P. Liu*, X.F. Chen, Y. Cao, H.J. Roven, M. Murashkin, R.Z. Valiev, H. Zhou*. Effect of Mg on microstructure and mechanical properties of Al-Mg alloys produced by high pressure torsion, Scripta Materialia, 2019, 159:137-141. 31)B. Gao, L. Wang, Y. Liu, J.L. Liu, Y.D. Sui, W.W. Sun, X.F. Chen, L.R. Xiao*, H. Zhou*. In-situ TEM investigation on deformation mechanisms of a fine-grained 316L stainless steel, Scripta Materialia, 2023, 234:115538. 32)J.Q. Meng, Y.H. Zhao*, Y. Liu, Z.Y. Li, X.F. Chen, Y.T. Zhu, R.Y. Liang*, H. Zhou*, Achieving strength-ductility synergy in CoCrNi medium-entropy alloys via multi-step annealing induced heterostructuring, Materials Science and Engineering: A, 2025, 947: 149171. 33)B. Gao, Y. Liu, X.F. Chen, Y.D. Sui, W.W. Sun, L.R. Xiao*, H. Zhou*, Heterogeneous plastic deformation and HDI strengthening of the heterostructured dual-phase steels investigated by in-situ SEM-DIC, Materials Science & Engineering A, 2024, 893: 146149. 34)B. Gao, L. Wang, Y. Liu, J.L. Liu, L.R. Xiao, Y.D. Yu, W.W. Sun, X.F. Chen*, H. Zhou*, Achieving ultrahigh strength by tuning the hierarchical structure of low-carbon martensitic steel, Materials Science & Engineering A, 2023, 881: 145370. 35)L. Li, B. Gao, K. Wei, Z.H. Hu, Y.D. Yu, W.W. Sun, Y.D. Sui, L.R. Xiao*, X.F. Chen*, H. Zhou*. Improved impact toughness of laminate heterogeneous AZ31/GW103K alloys by interface delamination. Materials Science & Engineering A 2023, 871: 144882. 36)Z.R. Fu, B. Gao, X.F. Li, C. Li, H.J. Pan, H.D. Niu, Y.T. Zhu, H. Zhou*, X.K. Zhu*, H.J. Wu, C. Liu. Improved strength-ductility combination of pure Zr by multi-scale heterostructured effects via rotary swaging and annealing. Materials Science & Engineering A2023, 864: 144584. 37)L. Li, L.R. Xiao, D.K. Zhang*, Z.G. Sun, B. Gao, K. Wei, Y.D. Yu, X.F. Chen*, H. Zhou*. Ductilization of a diffusion-bonded heterostructured AZ31/GW103K/AZ31 alloy by interfacial reinforcement.Materials Science & Engineering A2022, 852: 143691. 38)M.N. Xu, N. Li, X.C. Sha, Y. Liu, B. Gao, L.R. Xiao, X.F. Chen*, H. Zhou*. In-situ TEM observations on interaction of basal dislocations and β' phases in a Mg-Gd binary alloy. Materials Science & Engineering A 2022,841: 143017. 39)J.X. Huang, Y. Liu, T. Xu, X.F. Chen, Q.Q. Lai, L.R. Xiao, Z.Y. Pan, B. Gao*, H. Zhou*, Y.T. Zhu. Dual-phase hetero-structured strategy to improve ductility of a low carbon martensitic steel. Materials Science & Engineering A2022, 834: 142584. 40)H. Zhou, Q.D. Wang*, B. Ye, W. Guo. Hot deformation and processing maps of as-extruded Mg-9.8Gd-2.7Y-0.4Zr Mg alloy. Materials Science & Engineering A 2013, 576: 101-107. 41)Z.X. Wu, K.F. Han, Y.J. Gao, H. Chen, R.Y. Liang*, L.R. Xiao*, H. Zhou*, In-situ tensile deformation of multiphase stainless steel. Journal of Materials Research and Technology, 2026, 41: 1644-1653 42)K. Wei#, Y.H. Zhao#, *, L.R. Xiao, Y.Z. Guo, Y. Liu, L. Li, D.D. Yin, H. Zhou*. Mechanical behavior and deformation mechanisms of Mg-5Y alloy under dynamic compressive impact. Journal of Materials Research and Technology, 2025, 35: 4249-4264. 43)B. Gao, L. Wang, Y. Liu, J.L. Liu, L.R. Xiao, Y.D. Sui, W.W. Sun, X.F. Chen*, H. Zhou*. Enhanced strength and ductility of the low-carbon steel with heterogeneous lamellar dual-phase structure produced by cyclic intercritical rolling. Journal of Materials Research and Technology, 2023, 23: 6230-6243. 44)H. Liu, B. Gao, Y. Yang, M.N. Xu, X.F. Li, C. Li, H.J. Pan, J.R. Yang, H. Zhou*, X.K. Zhu*, Y.T. Zhu. Strain hardening behavior and microstructure evolution of gradient-structured Cu-Al alloys with low stack fault energy. Journal of Materials Research and Technology, 2022, 19: 220-229. 45)K. Wei, L.R. Xiao, B. Gao, Q.Z. Mao, Y. Liu, L. Li, W.W. Sun, Y.D. Sui, H. Zhou*, Y.H. Zhao*, Effect of aging temperature on the hardening behavior and precipitation evolution of Mg-10Gd alloy. Materials Characterization, 2023, 196:112580. 46)C. Wang, Y.D. Yu*, L. Li, H. Zhou*, Underlying mechanism of interfacial evolution in laminate IN625/TC4 composites for enhanced mechanical properties, Materials Characterization, 2024, 210: 113795. 47)M.N. Xu, H.W. Ma, L.R. Xiao, B. Gao, X.F. Chen, Y.D. Sui*, H. Zhou*, Heterogeneous plastic deformation and crack passivation behaviors influenced by phase morphology in Mg-Li alloys, Materials Characterization, 2025, 228:115360. 48)H. Zhou, Q.D. Wang*, W. Guo, B. Ye, W.W. Jian, W.Z. Xu, X.L. Ma, J. Moering, Finite element simulation and experimental investigation on homogeneity of Mg-9.8Gd-2.7Y-0.4Zr magnesium alloy processed by repeated-upsetting, Journal of Materials Processing Technology, 2015, 225: 310-317. 49)J. J. Hu, D.M. Zhang, Z.H. Hu, S.Z. Wang, L.R. Xiao, B. Gao, D.D. Yin, H. Zhou*, Y.H. Zhao*,Improving the uniform elongation of ultrafine-grained pure titanium through judicious allocation of work hardening, Journal of Materials Processing Technology, 2024, 330:118484. 50)J.J. Hu, D.M. Zhang, Z.H. Hu, S.Z. Wang, B. Gao, Y.D. Sui, W.W. Sun, L.R. Xiao, H. Zhou*, Y.H. 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