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分類:導(dǎo)師信息 來源:中國礦業(yè)大學(xué)(徐州) 2020-03-18 相關(guān)院校:中國礦業(yè)大學(xué)(徐州)
個人簡介
張金勇,男,2014年10月畢業(yè)于法國巴黎第六大學(xué)(Université Pierre et Marie CURIE),獲工學(xué)博士學(xué)位,F(xiàn)任職于中國礦業(yè)大學(xué)材料科學(xué)與工程學(xué)院。入選江蘇省“雙創(chuàng)人才”計劃、江蘇省“科技副總”、 江蘇省“蘇北發(fā)展特聘專家”、中國礦業(yè)大學(xué)青年教師“啟航計劃”培養(yǎng)對象。主要從事鈦基金屬材料的設(shè)計、力學(xué)性能與微觀機理研究等。主持國家自然科學(xué)青年基金,中國博士后科學(xué)基金,江蘇省雙創(chuàng)人才計劃項目,江蘇省產(chǎn)學(xué)研項目,北科大重點實驗室開放課題重點項目,西交大重點實驗室開放課題,華中科大重點實驗室開放課題,西工大重點實驗室開放課題和中央高;緲I(yè)務(wù)費等項目。目前在金屬材料領(lǐng)域期刊Acta Materialia, Materials Research Letters,Scripta Materialia,Journal of Alloys and Compounds,Materials Science and Engineering: A,Materials Characterization等期刊發(fā)表論文30余篇。
Email:jyzhang@cumt.edu.cn
研究領(lǐng)域
主要從事鈦合金等新型結(jié)構(gòu)材料的設(shè)計、力學(xué)性能與微觀機理研究,鈦基非晶合金及高熵合金,以及先進連接技術(shù)等。
科研項目
主持國家自然科學(xué)青年基金,中國博士后科學(xué)基金,江蘇省雙創(chuàng)人才計劃項目,江蘇省產(chǎn)學(xué)研項目,北科大重點實驗室開放課題重點項目,西交大重點實驗室開放課題,華中科大重點實驗室開放課題,西工大重點實驗室開放課題和中央高;緲I(yè)務(wù)費等項目。
(1)張金勇,國家自然科學(xué)基金青年基金,51601216,2017/01-2019/12,在研
(2)張金勇,江蘇省雙創(chuàng)博士項目,2016/09-2019/08,15萬,在研
(3)張金勇,中國博士后科學(xué)基金面上項目,2018M632414,2018/01-2020/12,在研
(4)張金勇,北京科技大學(xué)新金屬材料國家重點實驗室開放基金重點項目,2019-ZD03,2019/07-2021/06,在研
(5)張金勇,中央高?蒲袠I(yè)務(wù)費,2017XKQY009,2017/01-2019/12,在研,
(6)張金勇,中央高校科研業(yè)務(wù)費,2018GF13,2018/01-2020/12,在研
(7)張金勇,西安交通大學(xué)金屬材料強度國家重點實驗室開放課題,20182008, 2018/01-2020/12,在研
(8)張金勇,江蘇省產(chǎn)學(xué)研項目,2018/08-2019/09,30萬,結(jié)題
(9)張金勇,華中科技大學(xué)材料成形與模具技術(shù)國家重點實驗室開放課題,P2018008,2017/05-2019/05,結(jié)題
(10)張金勇,西北工業(yè)大學(xué)凝固技術(shù)國家重點實驗室開放課題,SKLSP201501, 2015/06-2017/06,結(jié)題
發(fā)表論文
目前在金屬材料領(lǐng)域期刊Acta Materialia, Materials Research Letters,Scripta Materialia,Journal of Alloys and Compounds,Materials Science and Engineering: A,Materials Characterization等期刊發(fā)表論文30余篇。代表作如下:
(1)Zhang, J. Y., G.F. Chen, Y.Y. Fu, Y. Fan, Z. Chen, J. Xu, H. Chang, Z.H. Zhang, J. Zhou, Z. Sun, B.L. Shen, F. Sun, Strengthening strain-transformable β Ti-alloy via multi-phase nanostructuration, Journal of Alloys and Compounds, 799 (2019) 389-397. (SCI 一區(qū)IF=4.175)
(2) J.Y. Zhang, F. Sun, Z. Chen, Y. Yang, B.L Shen, J. Li, and F. Prima. Strong and ductile beta Ti-18Zr-13Mo alloy with multimodal twinning, Materials Research Letters, 7(6) (2019) 251-257 (SCI 一區(qū)IF=7.44,它引1次).
(3) J.Y. Zhang, J.S. Li, G.F. Chen, L. Liu, Z. Chen, Q.K. Meng, B.L. Shen, F. Sun, F. Prima, Fabrication and characterization of a novel β metastable Ti-Mo-Zr alloy with large ductility and improved yield strength, Materials Characterization (2018) 139, 421-427.(IF=3.22,它引5次)
(4) J.Y. Zhang, J.S. Li, Z. Chen, Q.K. Meng, P. Zhang, F. Sun, Shen BL. The development of new beta titanium alloys combined high strength, large ductility and improved strain-hardening behavior due to TRIP/TWIP effects. Rare Metal Materials and Engineering,(2018)47:2787-2792
(5)Zhang JY, Li JS, Chen Z, Meng QK, Sun F, Shen BL. Microstructural evolution of a ductile metastable β titanium alloy with combined TRIP/TWIP effects. Journal of Alloys and Compounds. 2017;699:775-82. (SCI 一區(qū)IF=4.175,它引13次)
(6)Sun F, Zhang JY, Vermaut P, Choudhuri D, Alam T, Mantri SA, et al. Strengthening strategy for a ductile metastable β-titanium alloy using low-temperature aging. Materials Research Letters, (2017) 5,547-553(SCI 一區(qū) IF=7.44,它引13次)
(7)Sun, F. , J. Y. Zhang, M. Marteleur, C. Brozek, E. F. Rauch, M. Veron, P. Vermaut, P. J. Jacques & F. Prima. A new titanium alloy with a combination of high strength, high strain hardening and improved ductility. Scripta Materialia, (2015) 94, 17-20. (SCI 一區(qū) IF=4.539,IF=它引80次)
(8)F. Sun, J.Y. Zhang, C. Brozek, M. Marteleur, P. Vermaut, C. Curfs, P. J. Jacques, F. Prima. The Role of Stress Induced Martensite In Ductile Metastable Beta Ti-alloys Showing Combined TRIP/TWIP Effects. Materials today: proceedings, (2015) 2, 505–510
(9)Sun, F. , J.Y. Zhang, M. Marteleur, T. Gloriant, P. Vermaut, D. Laillé, P. Castany, C. Curfs, P. J. Jacques & F. Prima. Investigation of early stage deformation mechanisms in a metastable β titanium alloy showing combined twinning-induced plasticity and transformation-induced plasticity effects. Acta Materialia, (2013) 61, 6406-6417. (SCI 一區(qū)IF=7.293,它引140次)
(10)Zhang, J. Y., F. Sun, Y. L. Hao, N. Gozdecki, E. Lebrun, P. Vermaut, R. Portier, T. Gloriant, P. Laheurte & F. Prima. Influence of equiatomic Zr/Nb substitution on superelastic behavior of Ti–Nb–Zr alloy. Materials Science And Engineering: A, (2013) 563, 78-85. (IF=4.081,它引50次)
(11)L.C. Feng, Z. Chen*, Y. Fan, J.Y. Zhang*, X.Q. Yang, B.L. Shen, Relation between undercooled solidification and solid-state grain growth accompanying dynamic segregation, Vacuum 161 (2019) 71-80. (IF=2.515,通訊作者)
指導(dǎo)學(xué)生情況
目前指導(dǎo)研究生3名,畢業(yè)1名(校級優(yōu)秀畢業(yè)生)
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