代表性论文: [1] Lin, Xueqi; Wang, Bing*; Zhao Chenmin; Nsengiyumva, Walter; Zhong, Shuncong; Chen, Hui; Liu, Dianzi; Durability of viscoelastic fibre prestressing in a polymeric composite, Polymers, 2023, 15(4): 811. (中科院二区,IF: 4.967) [2] Chen, Hui; Yu, Folian; Wang, Bing*; Zhao Chenmin; Chen, Xiayu; Nsengiyumva, Walter; Zhong, Shuncong; Elastic fibre prestressing mechanics within a polymeric matrix composite, Polymers, 2023, 15(2): 431. (中科院二区,IF: 4.967) [3] Nsengiyumva, Walter; Zhong, Shuncong*; Luo, Manting; Wang, Bing; Terahertz spectroscopic characterization and thickness evaluation of internal delamination defects in GFRP composites, Chinese Journal of Mechanical Engineering, 2023, 36: 6. (国内顶刊,IF: 2.964) [4] Yang, Chao; Wang, Bing*; Zhong, Shuncong; Zhao, Chenmin; Liang, Wei; On tailoring deployable mechanism of a bistable composite tape-spring structure, Composites Communications, 2022, 32: 101171. (中科院二区,IF: 7.685) [5] Lin, Xueqi; Wang, Bing*; Zhong, Shuncong; Chen, Hui; Liu, Dianzi; Smart driving of a bilayered composite tape-spring structure, Journal of Physics: Conference Series, 2022, 2403: 012042. (EI收录) [6] Nsengiyumva, Walter; Zhong, Shuncong*; Wang, Bing; Zheng, Longhui; Zhang, Zhenhao; Zhang, Qiukun; Zhong, Jianfeng; Luo, Manting; Peng, Zhike; Terahertz spectroscopic study of optical and dielectric properties of typical electrical insulation materials, Optical Materials 2022, 123: 111837. (中科院三区,IF: 3.754) [7] Nsengiyumva, Walter; Zhong, Shuncong*; Zheng, Longhui; Wang, Bing; Lin, Xueqi; Fu, Xibin; Peng, Zhike; Theoretical and experimental analysis of the dielectric properties of 3D orthogonal woven GFRP composites in the terahertz frequency range, Optik 2022, 260: 169105. (中科院三区,IF: 2.840) [8] Wang, Bing*; Seffen, Keith A.; Guest, Simon D.; Folded strains of a bistable composite tape-spring. International Journal of Solids and Structures 2021, 233: 111221. (中科院二区,IF: 3.667) [9] Zhong Tang, Ben Zhang, Bing Wang*, Meilin Wang, Hui Chen, Yaoming Li. Breaking paths of rice stalks during threshing. Biosystems Engineering, 2021, 204: 346-357. (中科院一区TOP期刊,IF: 5.002) [10] Wang, Bing*; Seffen, Keith A.; Guest, Simon D.;Lee, Tung-Lik; Huang, Shi; Luo, Shifeng; Mi, Jiawei; In-situ multiscale shear failure of a bistable composite tape-spring. Composites Science and Technology 2020, 200: 108348. (中科院一区TOP期刊,IF: 9.879) [11] Bing Wang*, SC Zhong, TL Lee, KS Fancey, JW Mi. Non-destructive testing and evaluation of composite materials/structures: A state-of-the-art review. Advances in Mechanical Engineering 2020, 12(4): 1-28. (期刊特色文章,ESI高被引论文,中科院四区,IF: 1.566) [12] Bing Wang*, KA Seffen, SD Guest. Shape of a bistable composite tape-spring in folding. AIAA SciTech 2019 Forum, San Diego, US. DOI: 10.2514/6.2019-2276. (航空航天顶级国际会议) [13] Keith Seffen*, Bing Wang, Simon Guest. Folded orthotropic tape-springs. Journal of the Mechanics and Physics of Solids, 2019, 123: 138-148. (中科院一区TOP期刊,IF: 5.582) [14] Bing Wang and KS Fancey*. Visocoelastically prestressed polymeric matrix composites: An investigation into fibre deformation and prestress mechanisms. Composites Part A-Applied Science and Manufacturing 2018, 111: 106-114. (中科院一区TOP期刊,IF: 9.463) [15] Bing Wang, DY Tan, TL Lee, JC Khong, F Wang, D Eskin, T Connolley, K Fezzaa, JW Mi*. Ultrafast synchrotron X-ray imaging studies of microstructure fragmentation in solidification under ultrasound, Acta Materialia 2018, 144: 505-515. (中科院一区TOP期刊,IF: 9.209) [16] Bing Wang, C Ge, KS Fancey*. Snap-through behaviour of a bistable structure based on viscoelastically generated prestress. Composites Part B-Engineering 2017, 114: 23-33. (中科院一区TOP期刊,IF: 11.322) [17] Bing Wang and KS Fancey*. Application of time-stress superposition to viscoelastic behavior of nylon 6,6 fibre and its ‘true’ elastic modulus. Journal of Applied Polymer Science 2017, 134(24): 1-9. (中科院三区,IF: 3.057) [18] Chao Ge, Bing Wang, Kevin Fancey*. An evaluation of the scanning electron microscope mirror effect to study viscoelastically prestressed polymeric matrix composites. Materials Today Communications 2017, 12: 79-87. (中科院三区,IF: 3.662) [19] Bing Wang and KS Fancey*. Towards optimisation of load-time conditions for producing viscoelastically prestressed polymeric matrix composites. Composites Part B-Engineering 2016, 87: 336-342. (中科院一区TOP期刊,IF: 11.322) [20] Bing Wang and KS Fancey*. A bistable morphing composite using viscoelastically generated prestress. Materials Letters 2015, 158: 108-110. (中科院三区,IF: 3.574) 英文专著/章节: [1] Chenmin Zhao, Bing Wang*, Shuncong Zhong, Md. Akhtaruzzaman, Wei Liang, Hui Chen. Polymer-based nanoscale materials for surface coating, Chapter 12: NDT studies of nanoscale polymeric coatings. ELSEVIER, 2023 (in press). [2] Bing Wang*, Keith Seffen, Simon Guest. Folding of bistable composite tape-springs. Department of Engineering, University of Cambridge. Jan 2019 (Monograph 99 pages). [3] Bing Wang*. Viscoelastically prestressed composites: towards process optimisation and application to morphing structures. School of Engineering, University of Hull. July 2016 (Monograph 242 pages). 特邀学术讲座及国际会议报告: [1] 特邀报告(Invited Speaker):Foldable mechanical hinge based on bistable composite tape-springs. 2022 International Conference on Mechanical and Electronics Engineering, 中国西安, 2022-11-21至2022-11-23。 [2] 大会主旨报告(Keynote Speech):Structural and functional integration of foldable mechanical composite hinges. 2022 International Conference on Mechanical, Aerospace Technology and Materials Application. 线上国际会议,2022-9-23至2022-9-25。 [3] 大会主旨报告(Keynote Speech):Bistable composite technologies for foldable mechanical hinge design. 2nd International Conference on Mechanical, Electronics and Electrical and Automation Control. 线上国际会议,2022-01-07至2022-1-9。 [4] 特邀报告:双稳态复合材料结构力学及其无损检测,福建省力学学会2021年学术年会,线上会议,2021-12-19。 [5] 特邀报告:双稳态复合材料结构的原位多尺度剪切失效机理. 第八届材料与结构强度青年工作论坛暨中国机械工程学会材料分会青年工作年会,中国,江苏无锡,2021-6-25至2021-6-27。 [6] 特邀报告(Invited Speaker):Multiscale shear failure mechanisms of a bistable composite tape-spring. 3rd International Conference on Material Strength and Applied Mechanics. 2020-12-6至2020-12-9,地点:中国澳门。 [7] 特邀学术讲座:Bistable Composite Technologies. 英国杜伦大学工程学院(Department of Engineering, Durham University);2020-2-26,地点:英国杜伦。 [8] 特邀学术讲座: Morphing Composite Technologies). Clare Hall Cambridge Postdctoral Symposium. 2018-11-4,地点:英国剑桥。 [9] 特邀报告:Bistable composite tape-springs for aircraft landing gear. 5th Cambridge Materials Network Meeting –Materials Challenges for Future Aerospace;2019-4-2至2019-4-3,地点:英国剑桥。 [10] 国际会议报告:Shape of a bistable composite tape-spring in folding. AIAA SciTech 2019 Forum and Exposition. 2019-1-7至2019-1-11,地点:美国圣地亚哥。 [11] 国际会议报告:Folding of a bistable tape-spring structure based on plain-woven composite. 26th International Conference on Composites/Nano Engineering. 2018-7-16至2018-7-20,地点:法国巴黎。 [12] 国际会议报告:Shape-changing bistable composites based on viscoelastically generated prestress. 10th International Conference on Composite Science and Technology. 2015-9-1至2015-9-4,地点:葡萄牙里斯本。 专利: [1] 王冰; 赵陈敏; 余佛链; 林学旗; 钟舜聪, 复合材料卷尺及层合板结构预应力调控装置, 2022-5-9, 中国, 202210495900.2. (实审) [2] 王冰; 吴涛; 赵陈敏; 钟舜聪; 基于多稳态复合材料薄壳的手性可变形结构及其制造方法, 2022-1-14, 中国, 202210039743.4. (实审) [3] 王冰; 杨潮; 钟舜聪; 复合材料薄壳平面折展装置及收展方法, 2021-10-25, 中国, 202111237526.8. (实审) [4] 王冰; 钟舜聪; 一种预应力双稳态复合材料结构及其制造方法, 2020-5-29, 中国, 202010473673.4. (已公开) [5] 王冰; 赵陈敏; 余佛链; 林学旗; 钟舜聪, 复合材料结构预应力调控装置, 2022-05-09, 中国, ZL202221086435.9. (授权) [6] 王冰; 吴涛; 赵陈敏; 钟舜聪, 一种基于多稳态复合材料薄壳的手性可变形结构, 2022-01-14, 中国, ZL202220088319.4. (授权) [7] 王冰; 杨潮; 钟舜聪, 复合材料薄壳平面折展装置, 2021-10-25, 中国, ZL202122559039.5. (授权) |