宋凯凯

个人信息Personal Information

教授 博士生导师 硕士生导师

性别:男

毕业院校:德国德累斯顿工业大学

学历:博士研究生毕业

学位:博士生

在职信息:在职

所在单位:机电与信息工程学院

入职时间:2015-03-19

学科:材料科学与工程
材料物理与化学

办公地点:山东省威海市文化西路180号

联系方式:songkaikai@sdu.edu.cn


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5. 2012年发表论文

[1] K. Song*, S. Pauly*, Y. Zhang, R. Li, S. Gorantla, N. Narayanan, U. Kühn, T. Gemming, J. Eckert, Triple yielding and deformation mechanisms in metastable Cu47.5Zr47.5Al5 composites, Acta Materialia 60 (2012) 6000-6012.

[2] K. Song*, S. Pauly*, B. Sun, Y. Zhang, J. Tan, U. Kühn, M. Stoica, J. Eckert, Formation of CuZrAlEr bulk metallic glass composites with enhanced deformability, Intermetallics 30 (2012) 132-138.

[3] K. Song*, P. Gargarella, S. Pauly*, G. Ma, U. Kühn, J. Eckert, Correlation between glass-forming ability, thermal stability, and crystallization kinetics of Cu-Zr-Ag metallic glasses, Journal of Applied Physics 112 (2012) 063503.

[4] Z. Liu, R. Li, G. Liu, K. Song, S. Pauly, T. Zhang, J. Eckert, Pronounced ductility in CuZrAl ternary bulk metallic glass composites with optimized microstructure through melt adjustment, AIP Advances 2 (2012) 032176.

[5] X. Wang, X. Bian, K. Song, X. Zhao, Y. Bai, Melt fragility of near-intermetallic composition, Journal of Applied Physics 112 (2012) 074902.

Ø 2011

[6] K. Song*, S. Pauly*, Y. Zhang, P. Gargarella, R. Li, N. Barekar, U. Kühn, M. Stoica, J. Eckert, Strategy for pinpointing the formation of B2 CuZr in metastable CuZr-based shape memory alloys, Acta Materialia 59 (2011) 6620-6630.

[7] K. Song*, S. Pauly*, Y. Zhang, S. Scudino, P. Gargarella, K. Surreddi, U. Kühn, J.J.I. Eckert, Significant tensile ductility induced by cold rolling in Cu47.5Zr47.5Al5 bulk metallic glass, Acta Materialia 19 (2011) 1394-1398.

[8] J. Tan, Y. Zhang, B. Sun, M. Stoica, C. Li, K. Song, U. Kühn, F. Pan, J. Eckert, Correlation between internal states and plasticity in bulk metallic glass, Applied Physics Letters 98 (2011) 151906.

[9] N. Barekar, P. Gargarella, K. Song, S. Pauly, U. Kühn, J. Eckert, Effect of Al and Ag addition on phase formation, thermal stability, and mechanical properties of Cu-Zr-based bulk metallic glasses, Journal of Materials Research 26 (2011) 1702-1710.