一、基本信息
姓名:许春雨
性别:男
职称:讲师
所在系所:应用力学系
所在梯队:弹性波与计算力学梯队
办公地点:理化楼207
办公电话:
电子邮件:xuchy@ustb.edu.cn
本科生课程:工程力学
研究生课程:
研究领域:弹性波理论;声镊操控
二、教育经历
2013-2017,河北大学,建筑与工程学院,学士
2017-2020,石家庄铁道大学,工程力学系,硕士
2020-2024,北京科技大学,应用力学系,博士
三、工作经历
2024-2026,北京大学力学与工程科学学院,博士后
2026年至今,北京科技大学,数理学院,讲师
四、科研业绩
代表性论著
1. Chunyu Xu, Peijun Wei, Zibo Wei, Xiao Guo, Shear horizontal wave propagation on a piezoelectric semiconductor substrate under slight ridge or thin metal strip gratings, Thin-Walled Structures, 191, 2023,111059.
2. Chunyu Xu, Peijun Wei, Zhengyang Li, Xiao Guo, Shear horizontal wave propagation on a piezoelectric substrate with periodic gradient local resonant metasurfaces, Applied Mathematical Modelling, 2025, 137: 115733.
3. Chunyu Xu, Peijun Wei, Zibo Wei, Xiao Guo, Effects of corrugated boundaries on Rayleigh waves in a piezoelectric semiconductor substrate covered with a metal layer, Applied Mathematical Modelling, 125, 2024, 110-124.
4. Chunyu Xu, Peijun Wei, Zibo Wei, Xiao Guo, Shear horizontal wave in a piezoelectric semiconductor substrate covered with a metal layer with consideration of Schottky junction effects, Applied Mathematical Modelling, 109, 2022,509-518.
5. Chunyu Xu, Yu Pang, Wenjie Feng, Bragg reflection of Bleustein-Gulyaev(BG) waves in a magneto-electro-elastic substrate with a periodically inertial load surface. Mechanics of Materials, 2021; 162:104037.
6. Chunyu Xu, Peijun Wei, Zibo Wei, Xiao Guo, Shear horizontal wave in a p-type Si substrate covered with a piezoelectric semiconductor n-type ZnO layer with consideration of PN heterojunction effects, Acta Mechanica.2023.
7. Chunyu Xu, Peijun Wei, Zibo Wei, Xiao Guo, Effects of Schottky junction on surface waves in a piezoelectric semiconducting film over a metal substrate. Mathematics and Mechanics of Solids. 2023.
8. Chunyu Xu, Peijun Wei, Zibo Wei, Xiao Guo, Rayleigh wave in layered piezoelectric semiconductor with consideration of PN junction effects. Mathematics and Mechanics of Solids. 2023;28(8):1817-1833.
9. Duo Xu, Lin Wu, Yuyang Lin, Chunyu Xu, Yongmao Pei. Velocity-controlled acoustic tweezers based on beat-frequency modulated surface acoustic waves for programmable particle manipulation. Extreme Mechanics Letters. 2026, 83: 102451.
科研项目
1. 2026-2028,国家自然科学基金青年科学基金项目(C类),1250020370,颗粒溶液环境中压电薄膜层状结构高频波动力学模型与颗粒操控机理研究,30万,主持
2. 2024-2026,北京大学博雅博士后项目,考虑尺寸效应的压电半导体层状结构中的导波,主持
五、获得奖励
1. 北京科技大学优秀博士学位论文奖
2. 北京市普通高等学校优秀博士毕业生