梁宁宁 Ningning Liang

来源:材料科学与工程学院/格莱特研究院发布时间:2020-06-22点击:392


姓名

梁宁宁

性别

出生年月

1988.11

籍贯

山东邹城

邮箱

lnn@njust.edu.cn

联系电话


通信地址

南京理工大学材料学院/格莱特研究院340205

邮编

210094

所属学科

材料科学与工程

职称

讲师

研究方向

1. 纳米结构金属材料,高熵合金

2. 微观组织与性能关系

所在系


 

个人简介

2018至今,南京理工大学材料学院/格莱特研究院讲师

2013.12-2014.06,纽约州立大学&卡尔蔡司美国,访问学习;

2010.09-2018.08,南京理工大学材料学院,获得材料学博士学位;

2006.09-2010.06,南京理工大学材料科学与工程系,获得学士学位;

 

 

代表性成果

[1] N.N. Liang, Y.H. Zhao, Y. Li,   T. Topping, Y.T. Zhu, R.Z. Valiev, E.J. Lavernia, Influence of microstructure   on thermal stability of ultrafine grained Cu processed by equal channel   angular pressing, J. Mater. Sci. 53 (2018) 13173-13185.

[2] N.N. Liang, J.Z. Liu, S.C.   Lin, Y. Wang, J.T. Wang, Y.H. Zhao, Y.T. Zhu, A multiscale architectured   CuCrZr alloy with high strength, electrical conductivity and thermal   stability, J. Alloys Compd. 735 (2018) 1389-1394.

[3] N.N. Liang, Y.H. Zhao, J.T.   Wang, Y.T. Zhu, Effect of grain structure on Charpy impact behavior of   copper, Sci. Rep. 7 (2017) 44783.

[4] L.L.   Tang, Y.H. Zhao, N.N. Liang,   R.K. Islamgaliev, R.Z. Valiev, Y.T. Zhu, Localized deformation via multiple   twinning in a Mg–Gd–Y–Zr alloy processed by high-pressure torsion, Mater.   Sci. Eng. A 677 (2016) 68-75.

[5] X.Z.   Gao, Y.P. Lu, B. Zhang, N.N. Liang,   G.Z. Wu, G. Sha, J.Z. Liu, Y.H. Zhao, Microstructural origins of high strength   and high ductility in an AlCoCrFeNi2.1 eutectic high-entropy alloy, Acta   Mater. 141 (2017) 59-66.

[6] T. Hu,   W.L. Chen, N. Yan, N.N. Liang,   J.Z. Liu, On the morphology and crystallography of the strengthening   precipitates in an aged Cu-Ni-P alloy, J. Alloys Compd. 729 (2017) 84-88.

[7] B.   Zhang, F. Xue, S.L. Li, X.T. Wang, N.N.   Liang, Y.H. Zhao, G. Sha, Non-uniform phase separation in ferrite of   a duplex stainless steel, Acta Mater. 140 (2017) 388-397.

[8] J.N.   Zhao, X.H. Zhang, Y.Y. Huang, J.Y. Zou, T. Liu, N.N. Liang, F.P. Yu, Z.J. Pan, Y.T. Zhu, M.H. Miao, Q.W.   Li, A comparison of the twisted and untwisted structures for one-dimensional   carbon nanotube assemblies, Mater. Des. 146 (2018) 20–27.

[9] Z.W.   Huang, P.L. Yong, N.N. Liang,   Y.S. Li, Slip, twinning and twin-twin interaction in a gradient structured   titanium, Mater. Charact. 149(2019)52-62.

[10]G.B.   Shan, Y.Z. Chen, N.N. Liang,   H. Dong, W.X. Zhang, T. Suo, F. Liu, Irradiation resistance of a thermally   stable nanocrystalline Fe-1 at.% Zr alloy, Mater. Lett. 2382019261-263.

[11]D. Song,   C. Li, N.N. Liang, F.L.   Yang, J.H. Jiang, J.P. Sun, G.S. Wu, A.B. Ma, X.L. Ma, Simultaneously   improving corrosion resistance and mechanical properties of a magnesium alloy   via equal-channel angular pressing and post water annealing, Mater. Des. 166   (2019) 107621.

[12]J. Liu,   P. Wang, M.Y. Wang, R. Xu, J. Zhang, J.Z. Liu, D. Li, N.N. Liang, Y.W. Du, G. Chen, G.D. Tang, Achieving high   thermoelectric performance with Pb and Zn codoped polycrystalline SnSe via   phase separation and nanostructuring strategies, Nano Energy, 53 (2018)   683–689.

[13]D. Song,   J. H, F.L. Yang, Y.D. Chen, N.N.   Liang, Y.Y. Wu, J.C. Zhang, H. Ma, E.E. Klu, B. Gao, Y.X. Qiao, J.P.   Sun, J.Y. Jiang, Corrosion behavior and mechanism of Cr–Mo alloyed steel:   Role of ferrite/bainite duplex microstructure, J. Alloys Compd. 809 (2019)   151787.

[14]G.W.   Wang, D. Song, Z.K. Zhou, E.E. Klu, Y. Liu, N.N. Liang, J.H. Jiang, J.P. Sun, A.B. Ma, Effect of   Ultrafine Grains on the Coating Reaction and Anticorrosion Performance of   Anodized Pure Aluminum, Coatings, 10. 216.

[15] B.   Zhang, F. Xue, S.L. Li, X.T. Wang, N.N.   Liang, Y.H. Zhao, G. Sha, Effect of Thermal Aging on Microstructural   Evolution in Ferrite of Duplex Stainless Steel in Nuclear Power Plant   Applications, Mater. Sci. Forum 898 (2017) 818-825. (EI)

科研项目

纳米晶铜铬锆合金低能晶界与溶质偏析相互作用机理及热稳定性研究,江苏省青年基金

学术/社会兼职


获奖、荣誉称号



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邮编:210094

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