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===邵瀚波资料===『返回』
姓名: 邵瀚波    
职务: 职称: 讲师
办公电话: 15605185602 通讯地址: 逸夫楼7A424
电子邮箱: hanboshao@njfu.edu.cn 个人主页:
 教育背景与工作(挂职)经历:

时间

毕业院校

学历

2021.12-至今

南京林业大学

讲师

2015.9-2021.6

南京航空航天大学

博士(硕博连读)

师从陈国平教授

2019.10-2020.12

牛津大学

联合培养博士

博士导师:Robert. A Taylor    教授

2011.9-2015.6

南京航空航天大学

学士


 研究方向:

1.  声学超材料在噪声控制以及噪声测量中的应用

2.  声子晶体在振动控制中的应用

3.  压电型声子晶体对弹性波的自动控制

4.  SU-8光刻胶对光子晶体电磁波的自动控制

 科研项目:

序号

项目名称

项目性质

起止年度

1

静压环境下声学超材料结构-阻抗耦合变化机理与调控方法研究

国家自然科学基金青年项目

(主持)

2026-2029

2

声光超材料双负结构设计及协同吸波机理研究

江苏省自然科学基金青年项目

(主持)

2024-2027

3

一种新型声学超材料的设计及应用

装备预研领域基金一般项目

(参与)

2018-2019

4

考虑间隙和润滑的曲柄滑块机构动力学分析

江苏省研究生科研与实践创新计划(参与)

2018-2020

5

成飞某型号飞机动力学特性试验

企业横向项目(参与)

2015-2017

 论文与专著:

共发表学术论文20篇(19篇被SCI收录,1篇为EI):其中第一作者SCI论文14篇,发表专利3项。

 

论文发表情况(SCI):

[1] Shao H, Ying G, Lennon S A, et al. Purcell enhancement of a deterministically coupled quantum dot in an SU-8 laser patterned photonic crystal heterostructure [J]. Applied Physics Letters, 2020, 117(4): 043103.

[2] Shao H, He H, Chen Y, et al. A tunable metamaterial muffler with a membrane structure based on Helmholtz cavities [J]. Applied Acoustics, 2020, 157: 107022.

[3] Shao H B, He H, Chen Y, et al. A novel multi-cavity Helmholtz muffler [J]. Chinese Physics B, 2019, 28(5): 054303.

[4] Shao H, He H, Chen G, et al.  Two new designs of lamp-type piezoelectric metamaterials for active wave propagation control [J]. Chinese Journal of Physics, 2020.

[5] Shao H B, Chen G P, He H, et al. Simulation and experimental investigation of low-frequency vibration reduction of honeycomb phononic crystals[J]. Chinese Physics B, 2018, 27(12): 126301.

[6] Shao H, He H, He C, et al. Study on the band gap optimization and defect state of two- dimensional honeycomb phononic crystals [J]. Journal of Materials Research, 2020:1-10.

[7] Shao H, Chen G P, He H. Elastic wave localization and energy harvesting defined by piezoelectric patches on phononic crystal waveguide [J]. Physics letters A, 2021:1-6

[8] Shao H, He J C, Zhu J, et al. Low-frequency sound absorption of a tunable multi-layer composite structure [J]. Journal of Vibration and Control, 2021:1-7

[9] Shao H, Hang X C. A novel gradient phononic crystal-Helmholtz cavity structure for simultaneous noise and vibration reduction [J]. MRS communications,2023.

[10] Shao H, Chen W, Jiang D. Broaden noise reduction range in low frequency by a HR+ MPP structure based on impedance matching method [J]. Applied Acoustics, 2025, 232: 110572.

[11] Shao H, Hang X C , Jiang D .High Q factor of photonic cavity with SU-8 photoresist micro-disk for electromagnetic wave control[J].Physics Letters A, 2024, 523.

[12] Shao H, Hang X C, Jiang D. A novel gradient multi-Helmholtz cavities muffler for low-frequency broad bandgaps [J]. Modern Physics Letters B, 2025: 2550139.

[13] Shao H, Hang X C, Jiang D. Topological properties in a GaAs-SU8-Based phoxonic crystal with high Q factor and mechanics-optics coupling coefficient[J]. Photonics and Nanostructures-Fundamentals and Applications, 2025: 101435.

[14] Shao H, Yang Y, Di W, et al. Simultaneous Broadband Sound Absorption and Vibration Suppression in Gradient-Symmetric Multilayer Metamaterials[J]. Applied Sciences, 2025, 15(23): 12628.

[15] Mao Z, Shao H, Wu X. Broadband low-frequency sound absorption based on tube-bundle-embedded neck Helmholtz resonators[J]. Applied Acoustics, 2026, 243: 111146.

[16] Tan X, Chen G, Shao H. Modeling and Analysis of Spatial Flexible Mechanical Systems with a Spherical Clearance Joint Based on the LuGre Friction Model[J]. Journal of Computational and Nonlinear Dynamics, 2019, 15(1).

[17] Ying G H, Tristan Farrow, Shao H. Resonantly pumped bright-triplet exciton lasing in caesium lead bromide perovskites. Acs photonics [J], 2023.

[18] Xing Tan, Weiting Chen, Jincheng He, Hanbo Shao. Existence/nonexistence of instability regions in a parametrically excited linear gyroscopic system. Applied Mathematical Modelling [J], 2022, 112: 304-323.

[19] Weiting Chen, Xing Tan, Junhan An, Hanbo Shao. Analytical investigation on piezoelectric shunting circuit for resonance suppression of the nonlinear vibration system [J]. Nonlinear Dynamics, 2023.

[20] Weiting Chen, Guoping Chen, Tengfei Chen, Xing Tan, Hanbo Shao, Huan he. Dynamic response analysis of a typical time-varying mass system: A moving-interface pipe model, the WKB-recursive solution and experimental validation [J]. Applied Mathematical Modelling, 2024, 125:147-166.

 

论文发表情况:(EI)

[1] 邵瀚波,  陈国平, 何欢. 三维蜂窝状声子晶体的带隙优化研究[J]. 振动. 测试与诊断, 2019 (3):13.

 

专利:

[1] 一种薄膜型亥姆霍兹消声器。发明人:邵瀚波 陈岩 何欢 陈国平 何晋丞 陈腾飞。专利号CN201821983640.9,公开号:CN209488791U

[2] 一种基于声学黑洞的可调型压电声子晶体板。发明人:邵瀚波 陈岩 何晋丞 何欢 谭霄 陈腾飞。专利号:CN201821983360.8,公开号:CN210271768U

[3] 一种主动控制波传播路径的压电型声子晶体板。发明人:邵瀚波 陈岩 何晋丞 何欢 谭霄 。专利号:CN201811440946.4,公开号:CN109377977A

 教学工作:

工程力学、材料力学

 荣誉奖励:

2017-2022年多次评为南航校级科研先进个人

2021年获得科协访学资助奖励

2022年校优秀毕业论文。

2023-2025校优秀科研先进个人

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