English  
姓名: 王毅泽
性别:
英文名: WANG Yi-Ze
人才称号: 优秀青年基金
职称: 教授、博导
职务: 专业: 固体力学
所在机构: 机械工程学院力学系 个人主页:
邮箱: wangyize@tju.edu.cn 办公地点: 力学楼(36教学楼)512
传真: 办公电话:
主要学历: 2000.09-2004.06,哈尔滨工程大学,航天与建筑工程学院,学士
2004.09-2006.07,哈尔滨工业大学,航天学院,硕士
2006.09-2009.07,哈尔滨工业大学,航天学院,博士

主要学术经历: 2009.11-2011.11,日本东京工业大学,日本学术振兴会(JSPS)研究员
2013.06-2014.05,德国弗莱贝格工业大学,洪堡学者
2011.12-2015.12,哈尔滨工业大学,航天学院,副教授
2015.12-2018.12,北京交通大学,力学系,教授
2019.01-至今, 天津大学,力学系,教授

主要研究方向: 固体力学中的弹性波理论及应用,包括声子晶体与弹性波超材料、新型材料与结构的波动特性等。

主要讲授课程: 材料力学

主要学术兼职:

主要学术成就: 力学学会青年科技奖(2019)
全国优秀博士学位论文提名奖(2011)

主要科研项目: 国家自然科学基金青年基金11002045,项目负责人
国家自然科学基金面上项目11372090,项目负责人
国家自然科学基金面上项目11772039,项目负责人

代表性论著: 1. Wang, Y.Z., Li, F.M., Huang, W.H., Wang, Y.S., 2007. Effects of inclusion shapes on the band gaps in two-dimensional piezoelectric phononic crystals. Journal of Physics: Condensed Matter 19, 496204 (9pp).
2. Wang, Y.Z., Li, F.M., Huang, W.H., Wang, Y.S., 2008. The propagation and localization of Rayleigh waves in disordered piezoelectric phononic crystals. Journal of the Mechanics and Physics of Solids 56, 1578–1590.
3. Wang, Y.Z., Li, F.M., Huang, W.H., Jiang, X.A., Wang, Y.S., Kishimoto, K., 2008. Wave band gaps in two-dimensional piezoelectric/piezomagnetic phononic crystals. International Journal of Solids and Structures 45, 4203–4210.
4. Wang, Y.Z., Li, F.M., Kishimoto, K., Wang, Y.S., Huang, W.H., 2009. Elastic wave band gaps in magnetoelectroelastic phononic crystals. Wave Motion 46, 47–56.
5. Wang, Y.Z., Li, F.M., Kishimoto, K., 2010. Flexural wave propagation in double-layered nanoplates with small scale effects. Journal of Applied Physics 108, 064519.
6. Wang, Y.Z., Li, F.M., Kishimoto, K., 2012. Effects of axial load and elastic matrix on flexural wave propagation in nanotube with nonlocal Timoshenko beam model. ASME Journal of Vibration and Acoustics 134, 031011.
7. Wang, Y.Z., Li, F.M., 2014. Nonlinear primary resonance of nano beam with axial initial load by nonlocal continuum theory. International Journal of Non-Linear Mechanics 61, 74–79.
8. Wang, Y.Z., 2014. Effects of Maxwell stress on interfacial crack between two dissimilar piezoelectric solids. ASME Journal of Applied Mechanics 81, 101003.
9. Wang, Y.Z., Kuna, M., 2014. Screw dislocation in functionally graded magnetoelectroelastic solids. Philosophical Magazine Letters 94, 72–79.
10. Wang, Y.Z., Kuna, M., 2014. Time-harmonic dynamic Green’s functions for two-dimensional functionally graded magnetoelectroelastic materials. Journal of Applied Physics 115, 043518.
11. Wang, Y.Z., Kuna, M., 2015. General solutions of mechanical-electric-magnetic fields in magneto-electro-elastic solid containing a moving anti-plane crack and a screw dislocation. ZAMM-Zeitschrift fuer Angewandte Mathematik und Mechanik 95, 703–713.
12. Wang, Y.Z., 2015. Influences of imperfect interface on effective magnetoelectric properties in multiferroic composites with elliptical fibers. Smart Materials and Structures 24, 045021.
13. Wang, Y.Z., Wang, Y.S., 2018. Active control of elastic wave propagation in nonlinear phononic crystals consisting of diatomic lattice chain. Wave Motion 78, 1–8.
14. Li, Z.N., Wang, Y.Z.*, Wang, Y.S.*, 2018. Nonreciprocal phenomenon in nonlinear elastic wave metamaterials with continuous properties. International Journal of Solids and Structures 150, 125–134.
15. Ning, L., Wang, Y.Z.*, Wang, Y.S., 2019. Active control of elastic metamaterials consisting of symmetric double Helmholtz resonator cavities. International Journal of Mechanical Sciences 153–154, 287–298.
16. Li, Z.N., Yuan, B., Wang, Y.Z.*, Shui, G.S., Zhang, Ch., Wang, Y.S.*, 2019. Diode behavior and nonreciprocal transmission in nonlinear elastic wave metamaterial. Mechanics of Materials 133, 85-101.

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