辛锋先准确信息,请访问个人主页:
https://gr.xjtu.edu.cn/en/web/fxxin
个人简介
辛锋先,男,固体力学博士,教授,博士生导师,青年拔尖人才计划,陕西省杰青,哈佛大学及MIT访问学者。研究方向为声波波动力学,主要研究软介质多场耦合力学、多孔介质减振降噪、水声材料多功能设计等,研究涉及固体力学、流体力学、声学、传热学等多学科交叉研究领域。主持基金委国际合作、面上、联合及国家基础加强等多个国家项目,入选西安交通大学青拔人才计划及青年教师跟踪支持计划,作为学术骨干参加国家基础研究计划973项目和国家自然科学基金创新群体项目。在固体JMPS、流体PoF、声学JASA、振动JSV、航空AST、航天AIAA、机械MSSP、复材CST、应物APL等各专业领域顶刊发表SCI论文100余篇(其中第一/通讯SCI论文90余篇),合作出版学术专著2部,申请/授权发明专利50余项。研究工作获得24位中外科学院/工程院院士及几十位国际学会Fellow高度认可与正面积极评价,应用技术成果获得型号装备应用。担任国家自然科学基金委数理学部、工材学部青、地、面及优青等项目评审专家。担任2个SCI国际学术期刊编委,国际会议分会场主席3次,国内外邀请报告10余次。获得全国百篇优秀博士论文提名奖、中国科协优秀科技论文奖和中国机械工业科学技术奖等。
教育经历
2006/09-2011/03,西安交通大学,固体力学,研究生/工学博士
2002/09-2006/07,西安交通大学,工程力学,本科/工学学士
工作经历
2020.12.14-至今,西安交通大学,航天航空学院,教授,博士生导师
2016.01-2020.12,西安交通大学,航天航空学院,副教授,博士生导师
2017.10-2017.11,麻省理工学院,机械工程系,访问学者
2015.01-2016.01,哈佛大学,工程与应用科学学院,访问学者
2014.01-2014.12,西安交通大学,航天航空学院,副教授,博士生导师
2011.04-2013.12,西安交通大学航天航空学院,讲师,硕士生导师
研究方向:
1. 固体力学
2. 前沿与交叉力学
3. 声波波动力学
4. 软介质多场耦合力学
5. 多孔介质减振降噪机理
6. 水声材料结构多功能设计
7. 超材料/超结构波动力学
8. 3D打印超材料波动力学设计
9. 细胞及生物组织力学
10. 微通道流体力学
11. 多功能复合材料结构设计
12. 超材料设计、性能表征及应用
主要研究声波波动力学,立足于固体力学,研究涉及流体力学、声学、传热学等多学科交叉领域。
讲授课程
本科生课程《工程力学》
本科生课程《结构设计原理及优化设计》
研究生课程《声学理论与工程应用》
代表性独立通讯文章:
Liu XW, Liu ML, Xin FX*. Sound absorption of a perforated panel backed with perforated porous material: Energy dissipation of Helmholtz resonator cavity. Mechanical Systems and Signal Processing, 2023, 185: 109762:1-14.
Zhang WT, Liu XW, Xin FX*. Normal incidence sound absorption of an acoustic labyrinthine metal-fibers-based porous metamaterial at high temperature. International Journal of Mechanical Sciences, 2023, 237: 107821:1-10.
Liu YF, Xin FX*. Nonlinear large deformation of a spherical red blood cell induced by ultrasonic standing waves. Biomechanics and Modeling in Mechanobiology, 2022, 21: 589-604.
Liu YF, Xin FX*. Characterization of red blood cell deformability induced by acoustic radiation force. Microfluidics and Nanofluidics, 2022, 26: 7:1-12.
Ke LW, Xu ZM, Liu YF, Xin FX*. Time-dependent deformation of biological tissue under ultrasonic irradiation. International Journal of Mechanical Sciences, 2022, 227: 107432: 1-8.
Zhang L, Zhang WT, Xin FX*. Sound absorption of two-dimensional rough tube porous materials. Physics of Fluids, 2022, 34(8): 083612:1-12. [PoF主编遴选Featured article].
Zhang L, Xin FX*. Perfect low-frequency sound absorption of rough neck embedded Helmholtz resonators. Journal of the Acoustical Society of America, 2022, 151(2): 1191-1199.
Xin FX*, Lu TJ. Acousto-thermo-mechanical deformation of hydrogels coupled with chemical diffusion. Proceedings of the Royal Society A: Mathematical, Physical and Engineering Sciences, 2018, 474(2217): 20180293:1-17.
Xin FX*. Signal response of rib-stiffened plates covered by decoupling coating layers. Journal of Sound and Vibration, 2015, 348: 206-223.
Xin FX*, Ma XW, Liu XW, Zhang Ch. A multiscale theoretical approach for the sound absorption of slit-perforated double porosity materials. Composite Structures, 2019, 223: 110919:1-12.
Xin FX*. An exact elasticity model for rib-stiffened plates covered by decoupling acoustic coating layers. Composite Structures, 2015, 119(1): 559-567.
Liu XW, Yu CL, Xin FX*. Gradually perforated porous materials backed with Helmholtz resonant cavity for broadband low-frequency sound absorption. Composite Structures, 2021, 263: 113647:1-9.
Liu XW, Ma XW, Yu CL, Xin FX*. Sound absorption of porous materials perforated with holes having gradually varying radii. Aerospace Science and Technology, 2022, 120: 107229:1-16.
Gong JQ, Xin FX*. External mean flow effect on sound transmission through composite sandwich structures filled with porous materials. Applied Mathematical Modelling, 2022,101: 729-747.
Liu YF, Xin FX*. Nonlinear deformation and bifurcation of a soft cantilever induced by acoustic radiation force. Europhysics letters, 2019, 127(2): 24003:p1-p7.
Zhou XD, Duan MY, Xin FX*. Low-frequency underwater sound absorption of hybrid metasurface using dissipative slow-sound. Physics Letters A, 2022, 450: 128361:1-6.
Liu XW, Duan MY, Liu ML, Xin FX*, Zhang Ch.. Acoustic labyrinthine porous metamaterials for subwavelength low-frequency sound absorption. Journal of Applied Physics, 2021, 129: 195103:1-8.
Liu YF, Xin FX*. Deformation dynamics of spherical red blood cells in viscous fluid driven by ultrasound. Physics of Fluids, 2023, 35(1): 012011:1-13.
Zhang WT, Liu XW, Xin FX*. Sound absorption performance of helically perforated porous metamaterials at high temperature. Materials & Design, 2023, 225: 111437:1-10.
Liu YF, Xin FX*. Mechanics of biconcave red blood cells deformed by acoustic tweezers. Mechanics of Materials, 2023, 178: 104565: 1-11.
Liu YF, Xin FX*. Modeling of red blood cell deformation in a microchannel driven by traveling surface acoustic waves. International Journal of Solids and Structures, 2023, 267: 112141:1-13.
诚聘: 硕士、博士研究生、博士后、青秀人才。
欢迎固体力学、流体力学、物理/声学、机械工程、能源动力等相关理工科专业优秀人才联系!
2023年研究生招生名额充足,欢迎各位保研、考研同学联系咨询!
联系方式:fxxin@mail.xjtu.edu.cn
个人主页:https://gr.xjtu.edu.cn/en/web/fxxin