5123导航取五湖之利取四-欢迎莅临

职称:教授

E-mail address:chencq(a)tsinghua.edu.cn

个人简介

陈常青,工学博士,清华大学工程力学系教授、系主任。

教育背景

1989–1997,西安交通大学,工程力学,工学学士

1993–1997,西安交通大学,力学,工学博士

工作履历

1997–2001,剑桥大学工程系,Research Associate, Senior Research Associate

2001–2009,西安交通大学,教授

2009–至今,清华大学,教授

学术兼职

曾任《International Journal of Mechanical Sciences》、《Acta Mechanica Sinica》(力学学报英文版)、《固体力学学报》等期刊副主编。现为中国力学学会对外交流与合作委员会主任,以及多个中外期刊编委。

研究领域

多功能材料与结构力学,包括电磁机敏材料多场耦合特性、多孔材料与结构宏观性能表征、具有信息处理能力的认知型力学超材料和拓扑力学等。

研究概况

长期从事多功能材料与结构研究,授权发明专利10余项,先后获国家自然科学二等奖1项和省部级一等奖4项等奖励。近期主要研究兴趣包括:

(1) 具有信息处理能力的认知型力学超材料。

(2) 非线性和开放系统的拓扑保护行为及其表征理论。

(3) 基于机器学习的材料和结构力学行为表征理论及其应用。

奖励与荣誉

2012,国家自然科学二等奖(排名第2)

2009,中国青年科技奖

2009,陕西省科学技术一等奖(排名第1)

2006,中国力学学会青年科技奖

2004,国家杰出青年科学基金

2004,霍英东基金高校青年教师奖(研究类)

2002,教育部跨世纪优秀人才

2000,全国百篇优秀博士论文奖

学术成果

在J. Mech. Phys. Solids、Nature Communications、Science Advances等国内外学术期刊发表论文150多篇。

近期代表性论文

[1] Wang AX, Meng ZQ, Chen CQ, 2023. Non-Hermiticity in static mechanical metamaterials. Science Adv. 9, adf7299. (Featured image article)

[2] Wang AX, Zhou Y, Chen CQ, 2023. Topological mechanics beyond wave dynamics. J. Mech. Phys. Solid 173, 105197.

[3] Meng ZQ, Qin WK, Mei T, Chen CQ, 2023. Bi-material sinusoidal beam-based temperature responsive multistable metamaterials. Int. J. Solids Struct. 277–278, 112343.

[4] Yi JL, Meng ZQ, Chen JL, Chen CQ, 2023. Dispersive higher harmonic generation and enhancement in mechanical metamaterials. Int. J. Mech. Sci. 246, 108146.

[5] Meng ZQ, Yan HJ, Liu MC, Yan HJ, Qin WK, Genin GM, Chen CQ, 2023. Encoding and storage of information in mechanical metamaterials. Adv. Sci. 10, 2301581. (Featured article)

[6] Wang XY, Meng ZQ, Chen CQ, 2023. Robotic materials transformable between elasticity and plasticity. Adv. Sci. 10, 2206637. (Cover article)

[7] Meng ZQ, Liu MC, Yan HJ, Genin GM, Chen CQ, 2022. Deployable mechanical metamaterials with multi-step programmable transformation. Science Adv. 8, abn5460.

[8] Li LF, Chen CQ, 2022. Equilibrium-based convolution neural networks for constitutive modeling of hyperelastic materials. J. Mech. Phys. Solids 164, 104931.

[9] Mei T, Meng ZQ, Zhao KJ, Chen CQ, 2021. A mechanical metamaterial with reprogrammable logical functions. Nature Commun. 12, 7234.

[10] Zhou Y, Zhang YF, Chen CQ, 2021. Amplitude-dependent boundary modes in topological mechanical lattices. J. Mech. Phys. Solids 153, 104482.

[11] Wang YJ, Chen CQ, 2021. The effective electromechanical properties of three-dimensional piezoelectric fiber networks. Int. J. Mech. Sci. 196, 106306

[12] Meng ZQ, Liu MC, Zhang YF, Chen CQ, 2020. Multi-step deformation mechanical metamaterials. J. Mech. Phys. Solids 144, 104095.

[13] Zhang YF, Li B, Zheng QS, Genin GM, Chen CQ, 2019. Programmable and robust static topological solitons in mechanical metamaterials. Nature Commun. 10, 5605. (Top 50 NC physics articles)

[14] Liu MC, Suo S, Wu J, Gan YX, Hanaor DAH, Chen CQ. 2019. Tailoring porous media for controllable capillary flow. J. Colloid Interface Sci. 539, 379–387.

[15] Zhang YF, Wang YJ, Chen CQ, 2019. Ordered deformation localization in cellular mechanical metamaterials. J. Mech. Phys. Solids 123, 28–40.

[16] Fu CY, Wang B, Zhao TF, Chen CQ, 2018. High efficiency and broadband acoustic diodes. Appl. Phys. Lett. 112, 051902.

论文列表:

ORCID: 0000-0002-1561-0798

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