人物經(jīng)歷
學習經(jīng)歷
2007.3-2010.8 韓國浦項工科大學鋼鐵學院,計算金屬材料實驗室,博士
2003.9-2005.7 哈爾濱工業(yè)大學材料科學系材料學,碩士
1998.9-2002.7哈爾濱工業(yè)大學材料工程系材料成型及控制,本科
工作經(jīng)歷
2015.1至今東北大學軋制及連軋自動化國家重點實驗室教授
2012.12-2014.12 東北大學軋制及連軋自動化國家重點實驗室副教授
2010.8-2012.12 萊蕪鋼鐵集團技術(shù)中心先進鋼鐵材料研究所副所長;集團公司科學技術(shù)委員會委員
2005.7-2007.1中國汽車工程研究院材料與工藝研究部,助理工程師
社會兼職
2017.9~至今:育材堂(蘇州)材料科技有限公司董事長&首席科學家
教學課程
金屬學與熱處理 (本科生)
學術(shù)成果
科研項目
1)2018.1-2020.12(負責人)高強韌汽車鋼,項目來源:國家自然科學基金優(yōu)秀青年科學基金,項目批準號:51722402,依托單位:東北大學,批準金額:130萬
2)2016.1-2019.12(負責人)低密度、高彈性模量、高強韌性鋼的理論與技術(shù)基礎研究,項目來源:國家自然科學基金(鋼鐵聯(lián)合基金重點項目),項目批準號:U1560204,依托單位:東北大學,批準金額:280.2萬
3)2018.1-2019.6(負責人)納米析出2GPa高韌性熱沖壓鋼的生產(chǎn)技術(shù)開發(fā),項目來源:河鋼股份有限公司唐山分公司,金額:170萬
4)2017.2-2018.1(負責人)Materials design for improving ductility of HPF1800 steels based on Q&DP,項目來源:POSCO,金額:5萬美元
5)2016.12-2018.3(負責人)22MnB5熱沖壓成型鋼技術(shù)開發(fā),項目來源:河鋼股份有限公司唐山分公司,金額:90萬
6)2016.5-2018.5(負責人)新型高強韌低密度Delta-TRIP780鋼設計與開發(fā),項目來源:本鋼板材股份有限公司,金額:100萬
7)2016.5-2018.5(負責人)基于連退時效處理工藝下的新型淬火-配分QP980鋼設計與開發(fā),項目來源:本鋼板材股份有限公司,金額:75萬
8)2015.9-2017.12(負責人)新型1800MPa級鋼板、Al-Si鍍層鋼板熱沖壓成形關(guān)鍵工藝及焊接技術(shù)開發(fā),項目來源:東風(武漢)實業(yè)有限公司,金額:80萬
9)2015.7-2016.6(負責人)Effect of Partitioning of Mn and Al on mechanical property of middle Mn steel(中Mn-TRIP鋼中Mn-Al配分對力學性能的影響),項目來源:POSCO,金額:5萬美元
10)2015.1-2016.12(負責人)新一代低密度超高強韌性汽車鋼設計與開發(fā),項目來源:鞍鋼股份有限公司,金額:125萬
11)2014.10-2016.12(負責人)PHS1500PHS1800熱沖壓成形用鋼開發(fā),項目來源:本鋼板材股份有限公司,金額:80萬
12)2013.8-2014.6(負責人)熱沖壓成形材料高溫FLD、材料抗高溫氧化性能研究,項目來源:中國汽車工程研究院,金額:48.8萬
13)2013.6-2015.5(負責人)Novel alloy designfor the high performance steel for hot stamping: Quenching & dynamicpartitioning(合金設計和基礎理論研究),項目來源:POSCO,金額:10萬美元
14)2013.1-2015.12 (負責人)一種新的齒輪鋼的高溫臨界區(qū)滲碳細化晶粒技術(shù)及其機理研究,國家自然科學基金(青年基金),依托單位:東北大學,批準金額:25萬
發(fā)表論文
1)P. J. Du, D. P. Yang, M. K. Bai, X. C. Xiong, D. Wu, G. D. Wang andH. L. Yi*: Austenite Stabilization by Two-Step Partitioning of Manganese and Carbon in Mn-TRIP Steels,Materials Science and Technology(IF 1.803),online available.
2)Z. R. Hou, T. Opitz, X. C. Xiong, X. M. Zhao andH. L. Yi*: Bake-Bake-partitioning in a Press-hardening Steel,Scripta Materialia (IF 4.163),
3)王寶剛,易紅亮*,王國棟,駱智超,黃明欣:原位生成鐵基復合材料中TiB2的三維形貌重構(gòu),金屬學報,
4)D. P. Yang, D. Wu andH. L. Yi*: Reverse transformation from martensite into austenite in a medium-Mn steel,Scripta Materialia (IF 4.163),
5)H. L. Yi*, L. Sun and X. C. Xiong, Critical assessment: Challenges in the formability of the next generation of automotive steel sheets.Materials Science and Technology(IF 1.803),
6)Z. R. Hou, X. M. Zhao, W. Zhang, H. L. Liu andH. L. Yi*. A Medium Manganese Steel Designed for Water Quenching and Partitioning.Materials Science and Technology,
7)P. Chen, G. D. Wang, A. V. Ceguerra, A. J. Breen, S. P. Ringer, X. C. Xiong, Q. Lue, J. F. Wang andH. L. Yi*, Yield Strength Enhancement by Carbon Trapping in Ferrite of the Quenching and Partitioning Steel.Metallurgical and Materials Transactions A,
8)J. C. Pang, B. Y. Xu, G. D. Wang, Q. Lu, J. F. Wang andH. L. Yi*,Effect of Silicon and Aluminum in Ferrite on Tensile and Impact Properties,Materials Science and Technology,
9)P. Chen, X. C. Xiong, G. D. Wang andH. L. Yi*, The origin of the brittleness of high aluminum pearlite and the method for improving ductility,Scripta Materialia,
10)M. K. Bai, J. C. Pang, G. D. WangandH. L. Yi*, Martensitic Transformation Cracking in High Carbon Steels for Bearings. Materials Science and Technology,(特邀論文"Recent developments in bearing steels").
11)P. Chen, G. D. Wang, X. C. Xiong andH. L. Yi*, Abnormal expansion due to pearlite-to-austenite transformation in high aluminium-added steels,Materials Science and Technology,
12)X. C. Xiong, L. Sun, J. F. Wang, X. Y. Jin, L. Wang, B. Y. Xu, P. Chen, G. D. Wang andH. L. Yi*, Properties Assessment of the First Industrial Coils of Low-density Duplex δ-TRIP Steel.Materials Science and Technology,
13)M. X. Huang, B. B. He, X. Wang andH. L. Yi*, Interfacial plasticity of a TiB2-reinforced steel matrix composite fabricated by eutectic solidification.Scripta Materialiasity: The concept and current progress (review paper),JOM,(特邀論文: "processing-structure-property correlation of low density steels")
15)H. L. Yi*, P. Chen and H. K. D. H. Bhadeshia, Optimising the morphology and stability of retained austenite in a δ-TRIP steel,Metallurgical and Materials Transactions A,
16)H. L. Yi*, H. L. Cai, Z. Y. Hou, J. C. Pang, D. Wu and G.D. Wang, Low density steel 1·2Cu20131·5Cru20135Al designed for bearings,Materials Science and Technology,
17)H. L. Yi*, P. Chen, Z.Y. Hou, N. Hong, H.L. Cai, Y.B. Xu, D. Wu and G.D. Wang, A novel design: Partitioning achieved by quenching and tempering (Qu2013T & P) in an aluminium-added low-density steel.Scripta Materialia,
18)H. L. Yi*, Z. Y. Hou, Y. B. Xu, D. Wu and G. D. Wang, Acceleration of spheroidization in eutectoid steels by the addition of aluminum.Scripta Materialia,
19)H. L. Yi,K. Y. Lee and H. K. D. H. Bhadeshia, Extraordinary Ductility in Al-bearing Delta-TRIP Steel.Proceedings of the Royal Society A, (被該雜志評為2011年度引用排名第二的文章
20)H. L. Yi, J. H. Ryu, H. K. D. H. Bhadeshia, H. W. Yen and J. R. Yang, Low-alloy duplex (alpha+gamma) directly-quenched TRIP-steel,Scripta Materialia,
21)H. L. Yi, K. Y. Lee and H. K. D. H. Bhadeshia, Mechanical Stabilisation Phenomenon of Retained Austenite in δ-TRIP Steel,Materials Science & Engineering A, doi:10.1016j.msea.2011.03.111.
22)H. L. Yi, K. Y. Lee and H. K. D. H. Bhadeshia, Stabilisation of Ferrite in Hot Rolled δ-TRIP Steel.Materials Science &Technology,
23)H. L. Yi, K. Y. Lee and H. K. D. H. Bhadeshia, Spot Weldability of δ-TRIP Steel Containing 0.4 wt% C.Science and Technology of Welding & Joining,
24)H. L. Yi*, S. Ghosh and H. K. D. H. Bhadeshia, Dual-Phase Hot-Press Forming Alloy.Materials Science & Engineering A,
25)H. L. Yi*, Full Pearlite Obtained by Slow Cooling in Medium Carbon Steel,Materials Science & Engineering A, msea.
26)H. L. Yi, S. K. Ghosh, W. J. Liu, K. Y. Lee and H. K. D. H. Bhadeshia, Non-equilibrium Solidification and Ferrite in δ-TRIP Steel.Materials Science & Technology, 26 (2010)
申請專利
1)易紅亮,劉宏亮,常智淵,吳迪,黃建,王國棟,熱沖壓成形用鋼材、熱沖壓成形工藝及熱沖壓成形構(gòu)件,2016.7.8專利授權(quán)(PCT申請)
2)易紅亮,許寶玉,趙飛宇,吳迪,王國棟,熱軋納米貝氏體鋼和其生產(chǎn)方法以及汽車大梁的制造方法,2017.01.25,X 專利授權(quán)
3)易紅亮,杜鵬舉,熱沖壓成形用鋼板、熱沖壓成形工藝及熱沖壓成形構(gòu)件,2015.2.16,(PCT申請)
4)易紅亮,龐佳琛,用于制造軸承的鋼材、對其進行熱處理的方法和成型件,2016.1.15,(PCT申請)
5)易紅亮,杜鵬舉,楊達朋,熊小川,用于沖壓成形的鋼材及其成形構(gòu)件與熱處理方法,2015.12.4,專利授權(quán)PCT申請
6)易紅亮,陳蓬,王國棟,高強度高韌性低密度鋼及其制造方法,2016.7.5, 專利授權(quán)
7)熊小川,易紅亮,王建峰,Low DensityZinc-Coated Steel Produced by Austenitizing and Quench Process,專利申請
8)熊小川,易紅亮,王建峰,Low Density Zinc-Coated TRIP-Assisted Steel and Fabrication Method,專利申請
9)易紅亮,杜鵬舉,用于獲得梯度化性能的處理工藝及其構(gòu)件,2016.6.20, 專利申請(PCT申請)
10)易紅亮,李崢先,王義斌,高憲臣,賀東方,帶有涂鍍層的鋼工件的電阻點焊工藝方法,2017.8.3,專利申請
11)易紅亮,韓學飛,王義斌,高憲臣,賀東方,熱沖壓成形用鋼板、熱沖壓成形構(gòu)件及梯度力學性能控制方法,2017.9.15,專利申請
12)易紅亮,趙飛宇,王國棟,一種鋼材料及其制備方法,2017.11.23,專利申請
獲得榮譽
2017獲得國家自然科學基金“優(yōu)青青年基金”
2018獲蘇州工業(yè)園區(qū)第十二屆科技領軍人才
入選《Materials Science and Technology》編委(英國老牌國際學術(shù)期刊,SCI影響因子1.803)