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Biography

        胡丽娜,教授、博导,山东大学材料科学与工程学院副院长。2006年获山东大学工学博士学位,其博士期间的优异表现被收录到《山大女杰》书中。2007年获得山东省优秀博士论文奖。获全国百篇优秀博士论文提名奖。2006年去丹麦Aalborg大学化学系作博士后研究。2007年底回国开展教学和科研工作。曾挂职临沭县科技副县长,兼任中国金属学会非晶分会副秘书长、中国材料研究学会凝固科学与技术分会理事、丹麦奥尔堡大学人力资源学术委员会外国专家、国际知名学术期刊《Journal of Non-Crystalline Solids》主编,并担任《Physical Review Letters》《Acta Materialia》《Journal of Alloys and Compounds》等30余个国际知名期刊审稿人。

        长期致力于金属液体性质和先进合金材料设计与开发研究,在非晶合金、高熵合金及特种合金设计领域取得重大突破。研究成果发表于《Physical Review Letters》《Acta Materialia》《Advanced Science》《Journal of Materials Science & Technology》等材料领域TOP期刊,累计发表高水平论文100余篇。多次受邀在国际/国内学术会议作特邀报告,学术影响力显著。相关研究成果获山东省、教育部自然科学二等奖,撰写《液态金属及遗传性》等书籍。积极开展与行业头部企业的横向课题研究并获得多项发明专利授权。主持/参与国家自然科学基金、国家重点研发计划十余项,承担省部级课题和横向课题十余项。

       认真开展各项教育教学工作,积极参与教学改革与课程建设,承担学生课程教学和实践教学任务,认真做好研究生培养工作等。其在教书育人的工作中表现突出,荣获首届山东大学青年教师讲课比赛一等奖,山东大学第五届“教学能手”,山东大学优秀班主任,2015年山东大学课堂教学质量优秀教师,首届山东省高等学校教师微课比赛二等奖以及第二届山东省高校青年教师讲课大赛优秀奖等。并在2016年被评为“山东大学最受喜爱的教师”, 2018年及2024年两次“山东大学三八红旗手”。在本科实践环节,多次指导本科生进行科技实践、生产实习和创新创业活动。其指导的科技创新团队项目多次获科技创新及挑战杯创业大赛奖励。其指导的本科生杨秀南大四期间在2015年亚洲材料大会上获得最佳海报奖。其指导的本科生王彩玮等五名同学也在大四期间发表了国际英文论文,并被SCI收录。其担任2010基地班班主任期间,带领全班同学努力学习,不断进取,树立了积极向上的班级风貌,最终全班同学全部出国或进入985大学进行深造。被评为山东大学优秀班主任。2015-2017期间指导的研究生有三人在国际会议上获得最佳poster奖。与英国剑桥、丹麦奥尔堡大学等海外多所大学具有长期合作关系,并先后推送进10名学生进入香港城市/理工大学进行学习深造。


Education Background
  • 2001-09-01-2006-06-01
    山东大学
    材料加工工程
  • 1996-09-01-2000-06-01
    山东大学
    高分子材料与工程
  • 1993-09-01-1996-06-01
    山东城一中
Work Experience
  • 2006-07 — Now
    山东大学材料科学与工程学院
Social Affiliations
  • 国际知名杂志《非晶态固体》主编
  • 国际玻璃大会的中国组织代表
  • 多个国际知名杂志审稿人
  • 中国硅酸盐学会山东玻璃分会副会长
  • 中国金属学会非晶分会副秘书长
Publication
Research direction
Papers

(1)王建峰. FeZrB基金属玻璃的强脆转变行为及其对玻璃形成能力的影响机制 .ACTA PHYSICA SINICA .2025

(2)刘敏. 非晶合金中液态强脆转变与流变单元关联的研究进展 .Scientia Sinica Physica, Mechanica & Astronomica .2025

(3)刘敏. Viscosity in metallic supercooled liquids obtained by fast scanning calorimetry and its application to thermoplastic forming .《Science China: Physics, Mechanics and Astronomy》 .2025 ,68 (6)

(4)蔚锦华. Interatomic potential controlled glass forming processes of binary CuZr melts .Journal of Non-Crystalline Solids: X .2023 ,17

(5)孟森宽. Temporal fractal characteristics of activation events during relaxation in disordered materials .《Science China: Physics, Mechanics and Astronomy》 .2025 ,68 (10)

(6)胡丽娜. 非晶固体中液态金属的遗传及性能调控 .《中国科技成果》 .2024 ,25 (3):72-73

(7)孟森宽. Near-perfect replication on amorphous alloys through active force modulation based on machine learning/neural network parameter prediction .《Science China: Physics, Mechanics and Astronomy》 .2023 ,68 (1)

(8) Property evolution and service life prediction of novel metallic materials for future lunar bases .Rare Metals .2023

(9)白延文. The influence of the cluster connection modes on the soft magnetic properties in the Fe78Si9B13 amorphous ribbon .Journal Of Non-Crystalline Solids .2024 ,624

(10)王玲玲. Rejuvenation to relaxation transition and liquid memory effect in La-based metallic glasses with different energy states .Intermetallics .2023 ,156

(11)楚威. Entropy-driven atomic activation in supercooled liquids and its link to the fragile-to-strong transition .SCIENCE CHINA-PHYSICS MECHANICS & ASTRONOMY .2023 ,66 (4)

(12)刘敏. Fragile-to-strong transition and the conversion of structural motifs in Ge-Se glass-forming liquids .Journal Of Non-Crystalline Solids .2023 ,603

(13)Li, Lu. Liquid-liquid transition and inherited signatures in Zr-Cu-Ni-Al metallic glasses .Journal Of Non-Crystalline Solids .2023 ,600

(14)张明智. Enhanced mechanical performance of gradient-structured CoCrFeMnNi high-entropy alloys induced by industrial shot-blasting .RARE METALS Journal .2023 ,42 (3):982

(15)邵安辰. Revealing mechanism of non-Arrhenius viscosity change in metal melts based on Wulff cluster model .Scripta Materialia .2023 (234)

(16)王玲玲. Rejuvenation to relaxation transition and liquid memory effect in La-based metallic glasses with different energy states .Intermetallics .2023 (156)

(17)楚威. Entropy-driven atomic activation in supercooled liquids and its link to the fragile-to-strong transition .《Science China: Physics, Mechanics and Astronomy》 .2023 (66)

(18)刘敏. Fragile-to-strong transition and the conversion of structural motifs in Ge-Se glass-forming liquids .Journal Of Non-Crystalline Solids .2023 (603)

(19)楚威. A fractal structural feature related to dynamic crossover in metallic glass-forming liquid .Physical Chemistry Chemical Physics .2023 (25)

(20)袁旭东. Enhanced mechanical properties of Zr65Cu15Ni10Al10 bulk metallic glass by simultaneously introducing surface grooves and multiple shear bands .Journal of Materials Research and Technology .2022 ,21 (21):1490

(21)颜瑶. Microstructural Features and Mechanical Behaviors of Al0.5Cr0.8CoFeNi2.5V0.2 High-Entropy Alloys Fabricated by Selective Laser Melting Technique .ACTA METALLURGICA SINICA-ENGLISH LETTERS .2022 (169):1

(22)李鹭. Liquid-liquid transition and inherited signatures in Zr-Cu-Ni-Al metallic glasses .Journal Of Non-Crystalline Solids .2023 (122029)

(23)王玲玲. Evolution path of metallic glasses under extensive cryogenic thermal cycling: Rejuvenation or relaxation? .Materials Science & Engineering A .2022 (143551)

(24)翟雪婷. The connection between the fragile-to-strong transition and the liquid-liquid transition in a binary alloy system .ACTA MATERIALIA .2022 (118246)

(25)白延文. General role of rare earth elements in dynamic characteristic of series of FeB-based bulk-glass-forming liquids .Journal Of Non-Crystalline Solids .2021 ,572 (121119)

(26)Xue, Lin. Liquid dynamics and glass formation of Gd55Co20Al25 metallic glass with minor Si addition .Journal of Materials Science and Technology .2021 ,77 :28

(27)白延文. General role of rare earth elements in dynamic characteristic of series of FeB-based bulk-glass-forming liquids .Journal Of Non-Crystalline Solids .2021 ,572 (0)

(28)楚威. Generality of abnormal viscosity drop on cooling of CuZr alloy melts and its structural origin .ACTA MATERIALIA .2020 ,196 (0):690

(29)赵云波. Predicting the glass-forming ability of rare earth-contained Fe-based alloys by features of dynamic transition in their melts .Journal Of Non-Crystalline Solids .2020 ,537 (120020)

(30)胡丽娜. Generality of abnormal viscosity drop during cooling of CuZr alloy melts and its structural origin .ACTA MATERIALIA .2020 (196)

(31)胡丽娜. predicting the glass-forming ability of rare earth-contained Fe-based alloys by features of dynamic transition in their melts .Journal Of Non-Crystalline Solids .2020 (537)

(32)任楠楠. revealing a hidden dynamic signature of the non-Arrhenius crossover in metallic glass-forming liquids .scripta materialia .2020 (0)

(33)商继祥. 高温金属熔体黏度突变探索 .物理学报 .2018 (10)

(34)任楠楠,任楠楠. General structural and dynamic characteristics beneficial to glass-forming ability of Fe-based glass-forming liquids .J Non Cryst Solids .2018 ,481 :116

(35)Zhao, Xi. The role of liquid-liquid transition in glass formation of CuZr alloys .Physical chemistry chemical physics .2017 ,19 (24):15962

(36)Lina Hu. Fragile-to-strong transition in metallic glass-forming liquids .ACTA PHYSICA SINICA .2017 ,66 (17)

(37)Zheng, Haijiao. Poor glass-forming ability of Fe-based alloys: Its origin in high-temperature melt dynamics .Journal Of Non-Crystalline Solids .2017 ,471 :120

(38)Lina Hu. Structural evolution during fragile-to-strong transition in CuZr(Al) glass-forming liquids .THE JOURNAL OF CHEMICAL PHYSICS .2015

(39)Lina Hu. 金属玻璃液体中的强脆转变现象 .ACTA PHYSICA SINICA .2017 ,66 (17):234

(40)Lina Hu. Abnormal sub-Tg enthalpy relaxation in the CuZrAl metallic glasses far from equilibrium .APPLIED PHYSICS LETTERS .2011 ,98 (8):081904

(41)Lina Hu. Thermodynamic anomaly of the sub-Tg relaxation in hyperquenched metallic glasses .Journal of Chemical Physics .2013

(42)Lina Hu. Indication of liquid-liquid transition in CuZr-based melts .APPLIED PHYSICS LETTERS .2013 ,103 :171904

(43)Lina Hu. Fragile-to-strong transition in Al-Ni-M (M=La, Pr, Nd) metallic glasses .chinese physics letters .2010 ,27 :116401

(44)Lina Hu. Correlation between supercooled liquid relaxation and glass poisson's ratio .THE JOURNAL OF CHEMICAL PHYSICS .2015

(45)Lina Hu. Revealing the connection between the slow b relaxation and sub-Tg enthalpy relaxation in metallic glasses .JOURNAL OF APPLIED PHYSICS .2016

(46)Lina Hu. Thermodynamic evidence for cluster ordering in Cu46Zr42Al7Y5 .Sci. Bull. .2016

(47)Lina Hu. Investigation of Viscosity Measurements of Molten Cu-Zr-Al Alloys .Materials science forum .2013

(48)Lina Hu. Sub-Tg relaxation patterns in Cu-based metallic glasses far from equilibrium .Journal of Chemical Physics .2014

(49)Lina Hu. Anomalous Crystallization as a Signature of the Fragile-to-Strong Transition in Metallic Glass-Forming Liquids .JOURNAL OF PHYSICAL CHEMISTRY B .2014

(50)Lina Hu. 一种煤基还原炼铁新工艺与实践 .工业加热 .2014

(51)Lina Hu. A Direct Link between the Fragile-to-Strong Transition and Relaxation in Supercooled Liquids .Journal of Physical Chemistry Letters .2014

(52)Lina Hu. Secondary relaxation in metallic glass formers: Its correlation with the genuine Johari-Goldstein relaxation .Journal of Physical Chemistry C .2009 ,113 (33):15001

(53)Lina Hu. A new threshold of uncovering the nature of glass transition——the slow relaxation in glassy states .Chinese science bulletin .2010 ,55 (6):457

(54)Lina Hu. Structural evolution during the sub-Tg relaxation of hyperquenched metallic glasses .APPLIED PHYSICS LETTERS .2010 ,96 :221809

(55)Lina Hu. 研究玻璃转变的新起点-玻璃态的慢beta弛豫 .科学通报 .2010

(56)Zhao, Xi. The role of liquid-liquid transition in glass formation of CuZr alloys .Physical chemistry chemical physics .2017 , 19 (24):15962

(57)任楠楠. General structural and dynamic characteristics beneficial to glass-forming ability of Fe-based glass-forming liquids .J Non Cryst Solids .2018 ,481 :116

(58)商继祥. 高温金属熔体黏度突变探索 .物理学报 .2018 (10)

(59)Zheng, Haijiao. Poor glass-forming ability of Fe-based alloys: Its origin in high-temperature melt dynamics .Journal Of Non-Crystalline Solids .2017 , 471 :120

(60)Lina Hu. A new threshold of uncovering the nature of glass transition——the slow relaxation in glassy states .Chinese science bulletin .2010 ,55 (6):457

(61)Lina Hu. Structural evolution during the sub-Tg relaxation of hyperquenched metallic glasses .Applied physics letters .2010 ,96 :221809

(62)Lina Hu. Fragile-to-strong transition in Al-Ni-M (M=La, Pr, Nd) metallic glasses .chinese physics letters .2010 ,27 :116401

(63)Lina Hu. Abnormal sub-Tg enthalpy relaxation in the CuZrAl metallic glasses far from equilibrium .Applied physics letters .2011 ,98 (8):081904

(64)Lina Hu. Secondary relaxation in metallic glass formers: Its correlation with the genuine Johari-Goldstein relaxation .JOURNAL OF PHYSICAL CHEMISTRY C .2009 ,113 (33):15001

(65)Lina Hu. Revealing the connection between the slow b relaxation and sub-Tg enthalpy relaxation in metallic glasses .Journal of applied physics .2016

(66)Lina Hu. Thermodynamic evidence for cluster ordering in Cu46Zr42Al7Y5 .Sci. Bull. .2016

(67)Lina Hu. Correlation between supercooled liquid relaxation and glass poisson's ratio .THE JOURNAL OF CHEMICAL PHYSICS .2015

(68)Lina Hu. Structural evolution during fragile-to-strong transition in CuZr(Al) glass-forming liquids .THE JOURNAL OF CHEMICAL PHYSICS .2015

(69)Lina Hu. 一种煤基还原炼铁新工艺与实践 .工业加热 .2014

(70)Lina Hu. Sub-Tg relaxation patterns in Cu-based metallic glasses far from equilibrium .Journal of Chemical Physics .2014

(71)Lina Hu. Anomalous Crystallization as a Signature of the Fragile-to-Strong Transition in Metallic Glass-Forming Liquids .JOURNAL OF PHYSICAL CHEMISTRY B .2014

(72)Lina Hu. A Direct Link between the Fragile-to-Strong Transition and Relaxation in Supercooled Liquids .Journal of Physical Chemistry Letters .2014

(73)Lina Hu. Indication of liquid-liquid transition in CuZr-based melts .Applied physics letters .2013 ,103 :171904

(74)Lina Hu. 研究玻璃转变的新起点-玻璃态的慢beta弛豫 .《科学通报》 .2010

(75)Lina Hu. Investigation of Viscosity Measurements of Molten Cu-Zr-Al Alloys .Materials science forum .2013

(76)Lina Hu. Thermodynamic anomaly of the sub-Tg relaxation in hyperquenched metallic glasses .Journal of Chemical Physics .2013

(77)Lina Hu. 金属玻璃液体中的强脆转变现象 .《物理学报》 .2017 ,66 (17):234

(78)Lina Hu. Fragile-to-strong transition in metallic glass-forming liquids .ACTA PHYSICA SINICA .2017 , 66 (17)

Patents
Research Projects

1. 未来产业与高端材料类学科专业结构优化及多育并举人才培养模式改革, 2024-12-01-2026-11-30

2. 金属熔体性质与液态成形技术攻关-1, 2024-06-03-2027-06-02

3. 宽幅超薄纳米晶材料与高频大容量低损耗铁芯制备技术, 2022-11-01-2026-10-31

4. 液态金属在非晶固体中的遗传性及性能调控, 2021-12-02-2023-12-31

5. 定向氧化-真空挥发-调控结晶纯化硒的基础研究, 2020-01-01-2023-12-31

6. 快速方式还原炉在不同矿石冶炼过程中的应用, 2013-09-06-2015-09-06

7. 不同温度区间金属玻璃液体性质异常转折的相互联系研究及其非晶固体的宏观性能调控, 2019-08-16-2023-12-31

8. 铝合金熔体绿色高效洁净化处理技术, 2001-06-06-2003-12-30

9. 多元Al-Fe基熔体的微观不均匀结构及快凝过程中组织遗传效应研究, 2007-01-01-2009-12-30

10. 高性能轻质非晶态合金的成分设计, 2007-07-01-2008-12-31

11. 磁约束高温熔体粘度仪, 2014-01-01-2016-12-01

12. 特种非晶软磁合金原子团簇与宏观性能关联及性能调控机理研究, 2016-12-01-2020-12-30

13. 金属玻璃异常Sub-Tg弛豫行为及其与液体动力学性质的相关性研究, 2015-08-17-2019-12-31

14. 利用熔融还原炼铁工艺冶炼镍铁合金, 2012-04-24-2012-12-31

15. 金属玻璃液体的强脆转变特性研究及其对应热焓弛豫模型的建立, 2012-01-01-2015-12-31

16. 熔融还原炼铁新工艺技术研究, 2011-07-14-2011-12-31

17. 金属玻璃液体的强脆转变及其与团簇的相关性研究, 2010-11-01-2013-11-01

18. 金属过热溶体的脆性及其非晶控制, 2009-01-01-2011-12-31

19. 金属过冷液体β弛豫的动力学特征及其热力学模型的建立, 2009-01-01-2011-12-30

Research Group
Name of Research Group:
亚稳态材料团队
Description of Research Group:
团队包含教授5名,高工1名,讲师1名,中级实验员1名。
Members:
Student Information
  • 包晓妮  2023-09-23 Hits:[] Times
  • 沈毓雯  2023-09-23 Hits:[] Times
  • 王玲玲  2023-09-23 Hits:[] Times
  • 王先睿  2023-09-23 Hits:[] Times
  • 李洪锋  2023-09-23 Hits:[] Times
  • 朱瑞松  2023-09-23 Hits:[] Times
  • 石飞龙  2023-09-23 Hits:[] Times
  • 史禄鑫  2023-09-23 Hits:[] Times
  • 李阳阳  2023-09-23 Hits:[] Times
  • 王玲玲  2023-09-23 Hits:[] Times
  • 蔚锦华  2023-09-23 Hits:[] Times
  • 翟雪婷  2020-03-20 Hits:[] Times
  • 楚威  2020-03-20 Hits:[] Times
  • 邵安辰  2019-04-18 Hits:[] Times
  • 丁奕钧  2019-04-18 Hits:[] Times
  • 赵云波  2019-04-18 Hits:[] Times
  • 商继祥  2019-04-18 Hits:[] Times
  • 赵茜  2019-04-18 Hits:[] Times
  • 王春震  2019-04-17 Hits:[] Times
  • 郑海姣  2019-04-17 Hits:[] Times
  • 任楠楠  2019-04-17 Hits:[] Times
  • 孙启静  2019-04-17 Hits:[] Times
  • 周超  2019-04-17 Hits:[] Times
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