主持科技部国家磁约束核聚变能研究发展专项(2015-2019, 300万),国家自然科学基金(2015-2017, 28万),教育部留学回国人员启动基金,黄山青年学者启动基金(2014-2016)。
论文、成果、著作等
| 近年发表学术论文50篇,其中SCI论文37篇。在国际国内会议上作口头报告、张贴墙报30余次。 1. F. Sun, Y.F. Gu, J.B. Yan, Z.H. Zhong, M. Yuyama. Phenomenological and microstructural analysis of intermediate temperatures creep in a Ni-Fe-based alloy for advanced ultra-supercritical fossil power plants. Acta Mater. Accepted, 2015. 2. 谷月峰,崔传勇,袁勇,钟志宏. 一种高性能航空涡轮盘用铸锻合金的研究进展. 金属学报,已录用, 2015. 3. Z.H. Zhong, Y.F. Gu, Y. Yuan, Z. Shi. Tensile properties and deformation characteristics of a Ni–Fe-base superalloy for steam boiler applications. Metall. Mater. Trans. A, 45:343–350, 2014. 4. Z.H. Zhong, Y.F. Gu, Y. Yuan, Z. Shi. A new wrought Ni–Fe-base superalloy for advanced ultra-supercritical power plant applications beyond 700 oC. Mater. Lett., 109:38–41, 2013. 5. Z.H. Zhong, Y.F Gu, Y. Yuan, T. Yokokawa, H. Harada. On the low cycle fatigue behavior of a Ni-base superalloy containing high Co and Ti contents. Mater. Sci. Eng. A, 552:434–443, 2012. 6. Z.H. Zhong, Y.F Gu, Y. Yuan, C.Y. Cui, T. Yokokawa, H. Harada. Fatigue crack growth behavior of a newly developed Ni-Co-base superalloy TMW-2 at elevated temperatures. Mater. Sci. Eng. A, 552:464–471, 2012. 7. Z.H. Zhong, Y.F Gu, Y. Yuan, T. Yokokawa, H. Harada. Mechanical properties and fracture modes of an advanced Ni-Co base disk superalloy at elevated temperatures. Mater. Charact, 67:101–111, 2012. 8. Y. Yuan, Y.F. Gu, T. Osada, Z.H. Zhong, T. Yokokawa, H. Harada. Deformation mechanisms in a new disc superalloy at low and intermediate temperatures. Scripta Mater, 67:137–140, 2012. 9. Z.H. Zhong, T. Hinoki, A. Kohyama. Microstructure and mechanical strength of diffusion bonded joint between silicon carbide and F82H steel. J. Nucl. Mater., 417:395–399, 2011. |
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