
姓 名:周小强
职 称:教授、博士生导师
电子邮箱:zhou_xq@hust.edu.cn
联系方式:+086 18986017332
办公地点:南五楼352
一、个人情况
工学博士/博后,华中科技大学和美国普渡大学联合培养博士,入选武汉市英才优秀青年人才项目。2017年博士毕业于华中科技大学机械学院,并进入华中科技大学土木工程与力学学院从事博士后研究。2019年3月出站后,担任华中科技大学副教授,2025年2月起担任教授。目前兼任《复合材料学报》青年编委、Polymers期刊青年编委和特刊编辑。国际大学生工程力学竞赛优秀指导教师。主持国家自然科学基金青年和面上基金、国防173项目、省部级和企业委托项目等多项。
二、研究兴趣
l 复合材料与结构动力学。开展树脂基复合材料设计与本构模型构建、罩壳类结构增强增韧、振动冲击控制、屈曲/后屈曲、弹性波耗散衰减等研究。
l 弹性波动力学。开展复杂弹性波在大型复合结构中的传播、散射、衰减等机理研究。
l 结构振动与声学。开展大型复合结构随机/受迫振动及声振特性研究。
l 声学超材料/结构。开展声子晶体与复合超材料/结构设计。
l 数据驱动计算力学。开展基于数据驱动与机器学习增强算法的复合结构动力学、振动与声学、弹性波动力学、结构声振耦合等研究。
三、科研成果
在国内外高水平知名期刊Advances in Applied Mechanics、Composites Part B Engineering、Composite Structures、Thin-walled Structures、Aerospace Science and Technology等上共发表论文近50篇,h指数17;第一/唯一通讯作者SCI论文近40篇,其中,中科院一区Top期刊论文24篇(IF>10论文共计5篇)。现主持/参与国家级纵向项目7项、省部级项目3项,横向企业项目10余项。
四、代表性论著(近五年来)
[1] Hua FF, Zhou XQ*. Wave dispersion responses of graphene platelets reinforced polymer composite plates with mounted piezoelectric layers. Thin-Walled Structures. 2025;211:113077.
[2] Huang QY, Wang L, Hua FF, You QQ, He WK, Zhou H, Zhou XQ*. Random and harmonic responses of plain woven carbon fiber reinforced conical-conical shell based on machine learning multiscale modelling. Thin-Walled Structures. 2024;203:112220.
[3] Huang QY, Hua FF, You QQ, Gao J, Zhou XQ*. A data-driven enhanced generalized differential quadrature algorithm in free vibration analysis of shells of revolution with free-form meridian and their combined structures. Thin-Walled Structures. 2024:111975.
[4] Hua FF, You QQ, Huang QY, Fu WB, Zhou XQ*. Exploring guided wave propagation in composite cylindrical shells with an embedded delamination through refined spectral element method. Thin-Walled Structures. 2024;194:111326.
[5] Huang QY, Gao Y, Hua FF, Fu WB, You QQ, Gao J, Zhou XQ*. Free vibration analysis of carbon-fiber plain woven reinforced composite conical-cylindrical shell under thermal environment with general boundary conditions. Composite Structures. 2023:117340.
[6] Hua FF, Fu WB, You QQ, Huang QY, Abad F, Zhou XQ*. A refined spectral element model for wave propagation in multiscale hybrid epoxy/carbon fiber/graphene platelet composite shells. Aerospace Science and Technology. 2023:108321.
[7] Hua FF, Fu WB, Zhou XQ*. Wave propagation analysis of sandwich plates with graphite particles filled viscoelastic material core in hygrothermal environments. Composite Structures. 2022:115380.
[8] Hua FF, Fu WB, You QQ, Zhou XQ*. Wave dispersion characteristics of laminated carbon fiber reinforced polymer composite shells resting on viscoelastic foundations under thermal field. Composite Structures. 2022:116225.
[9] Zhou XQ, Yu DY, Zhang S. Homogenous asymptotic analysis on vibration energy dissipation characteristics of periodical honeycomb reinforced composite laminate filled with viscoelastic damping material. Composite Structures. 2021;258:113307.
[10] Zhou XQ, Zhang SQ*, Lin WW. Sound radiation characteristics analysis for the honeycomb reinforced laminated structures with viscoelastic material fillers through the asymptotic homogenous method. Composite Structures. 2020;245:112266.
[11] Zhou XQ, Yu DY. Elastic wave propagation energy dissipation characteristics analysis on the viscoelastic damping material structures embedded with acoustic black hole based on semi-analytical homogeneous asymptotic method. Applied Mathematical Modelling. 2019;70:221-45.
[12] Zhou XQ, Wang L. Low-velocity impact response of viscoelastic material filled FG honeycomb reinforced laminate plate in hygrothermal environments. Composites Part B: Engineering. 2019;165:255-71.
[13] Zhou XQ, Yu DY, Barrera O. Chapter Three - Mechanics constitutive models for viscoelastic solid materials: Development and a critical review. Advances in Applied Mechanics: Elsevier; 2023. p. 189-321.
实时论文更新:
https://scholar.google.com.sg/citations?user=j2vOW3IAAAAJ&hl=zh-CN
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