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陈岩

阅读次数:     发布时间:2022-11-18

   

陈岩,博士

Emailchenyan1992@njtech.edu.dn

办公地址:999策略白菜手机论坛网页版(南京市江北新区浦珠南路30号),崇德楼B-410

个人主页:https://orcid.org/0000-0002-8820-9583


个人简介

2010年至2022年在南京航空航天大学攻读本科、硕士及博士学位,博士期间在耶鲁大学公派出国留学一年半,以访问学者身份从事摩擦颗粒分子动力学仿真项目研究;20228月至今受聘于999策略白菜手机论坛全讯导航力学系,现从事相关科研、教学工作。


研究领域

复杂结构动力学分析、声学超常材料


代表性研究成果:

科技论文

[1] Chen Y, Li G, Sun R, Chen G. Wave Dispersion in One-Dimensional Nonlinear Local Resonance Phononic Crystals with Perturbation Method. Crystals 2021;11:774.

https://doi.org/10.3390/cryst11070774.

[2] Chen Y, Chen G, Li G, He H. Modal analysis of flexural band gaps in a membrane acoustic metamaterial (MAM) and waveguides affected by shape characteristics. Phys Lett A 2021;414:127635.

https://doi.org/10.1016/j.physleta.2021.127635.

[3] Chen Y, Chen GP, He H. Simulation of a folded airbag inflating underwater with IMM method. IOP Conf Ser Mater Sci Eng 2019;531.

https://doi.org/10.1088/1757-899X/531/1/012004.

[4] Gen Li, Yan Chen, Weiting Chen, Jinming Liu, Huan He. Local resonance – Helmholtz lattices with simultaneous solid-borne elastic waves and air-borne sound waves attenuation performance. Applied Acoustics, Volume 186, 2022, 108450, ISSN 0003-682X.

https://doi.org/10.1016/j.apacoust.2021.108450.

[5] Sun R, Carreira SC, Chen Y, Xiang C, Xu L, Zhang B, et al. Stretchable Piezoelectric Sensing Systems for Self-Powered and Wireless Health Monitoring. Adv Mater Technol 2019;4:1–11.

https://doi.org/10.1002/admt.201900100.

[6] Shao H, He H, Chen Y, Tan X, Chen G. A tunable metamaterial muffler with a membrane structure based on Helmholtz cavities. Appl Acoust 2020;157.

https://doi.org/10.1016/j.apacoust.2019.107022.

[7] Tan X, Chen G, Sun D, Chen Y. Dynamic Analysis of Planar Mechanical Systems With Clearance Joint Based on LuGre Friction Model. J Comput Nonlinear Dyn 2018;13:1–9.

https://doi.org/10.1115/1.4039877.

专利

1陈岩; 邵瀚波; 何晋丞. 基于永磁铁斥力作用的可调双层薄膜板声学超材料结构 CN201811485208.1(实用新型)

2 邵瀚波; 陈岩; 何晋丞等. 主动控制波传播路径的压电型声子晶体板及其应用 CN201811440946.4(实用新型)

3 何晋丞; 朱启航; 陈岩. 一种电梯井防坠落绳索 CN201822032653.4(实用新型)


基金项目

1、声学超材料与周期结构材料的设计,2017江苏省科创基金,项目编号:KYCX18_0249




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