期刊论文: 1.Bing Wang*, Keith Seffen, Simon Guest, Tung-Lik Lee, Shi Huang, Shifeng Luo, Jiawei Mi.In-situ multiscale shear failure of a bistable composite tape-spring.Composites Science and Technology2020, 200: 108348. 2.Bing Wang*, Shuncong Zhong, Tung-Lik Lee, Kevin S Fancey, Jiawei Mi. Non-destructive testing and evaluation of composite materials/structures: A state-of-the-art review.Advances in Mechanical Engineering2020, 12(4): 1-28 (受邀为期刊特色文章发表,主编推荐与对我团队采访以社论文章发表于DOI:10.1177/1687814020921745). 3.Keith Seffen*,Bing Wang, Simon Guest.Folded orthotropic tape-springs.Journal of the Mechanics and Physics of Solids, 2019, 123: 138-148. 4.Bing Wang and Kevin Fancey*. Visocoelastically prestressed polymeric matrix composites: An investigation into fibre deformation and prestress mechanisms.Composites Part A-Applied Science and Manufacturing2018, 111: 106-114. 5.Bing Wang,Dongyue Tan, Tung Lik Lee, Jia Chuan Khong, Feng Wang, Dmitry Eskin, Thomas Connolley, Kamel Fezzaa, Jiawei Mi*.Ultrafast synchrotron X-ray imaging studies of microstructure fragmentation in solidification under ultrasound,Acta Materialia2018, 144: 505-515. 6.Bing Wang, Dongyue Tan, Tung Lik Lee, Jia Chuan Khong, Feng Wang, Dmitry Eskin, Thomas Connolley, Kamel Fezzaa, Jiawei Mi*. Data and videos for ultrafast synchrotron X-ray imaging studies of metal solidification under ultrasound.Data in Brief2018, 17: 837-841. 7.Bing Wang, Chao Ge, Kevin Fancey*. Snap-through behaviour of a bistable structure based on viscoelastically generated prestress.Composites Part B-Engineering2017, 114: 23-33. 8.Bing Wang and Kevin Fancey*. Application of time-stress superposition to viscoelastic behavior of nylon 6,6 fibre and its ‘true’ elastic modulus.Journal of Applied Polymer Science2017, 134(24): 1-9. 9.Chao Ge,Bing Wang, Kevin Fancey*. An evaluation of the scanning electron microscope mirror effect to study viscoelastically prestressed polymeric matrix composites.Materials Today Communications2017, 12: 79-87. 10.Bing Wang and Kevin Fancey*. Towards optimisation of load-time conditions for producing viscoelastically prestressed polymeric matrix composites.Composites Part B-Engineering2016, 87: 336-342. 11.Bing Wang and Kevin Fancey*. A bistable morphing composite using viscoelastically generated prestress. Materials Letters2015, 158: 108-110. 出版英文专著: 1.Bing Wang*, Keith Seffen, Simon Guest. Folding of bistable composite tape-springs. Department of Engineering, University of Cambridge. Jan 2019 (Monograph 99 pages). 2.Bing Wang*. Viscoelastically prestressed composites: towards process optimisation and application to morphing structures. School of Engineering, University of Hull. July 2016 (Monograph242 pages). 特邀学术讲座及国际会议报告: 1.特邀国际会议大会报告(Invited Speaker):双稳态复合材料结构的多尺度剪切失效机理(Multiscale shear failure mechanisms of a bistable composite tape-spring). 3rd International Conference on Material Strength and Applied Mechanics. 2020年12月6-9日,地点:中国澳门。 2.特邀学术讲座:双稳态复合材料结构技术(Bistable Composite Technologies).英国杜伦大学工程学院(Department of Engineering, Durham University);2020年2月26日,地点:英国杜伦。 3.特邀学术讲座:智能形变复合材料结构技术(Morphing Composite Technologies). Clare Hall Cambridge Postdctoral Symposium. 2018年11月4日,地点:英国剑桥。 4.特邀国际会议报告:用于大型飞机起落架系统的双稳态复合材料结构(Bistable composite tape-springs for aircraft landing gear). 5thCambridge Materials Network Meeting –Materials Challenges for Future Aerospace;2019年4月2日–3日,地点:英国剑桥。 5.国际会议报告:双稳态复合材料结构在折叠过程中的形变特性研究(Shape of a bistable composite tape-spring in folding);AIAA SciTech 2019 Forum and Exposition;2019年1月7日–11日,地点:美国圣地亚哥。 6.国际会议报告:双稳态复合材料结构的折叠机理研究(Folding of a bistable tape-spring structure based on plain-woven composite). 26thInternational Conference on Composites/Nano Engineering;2018年7月16日–20日,地点:法国巴黎。 7.国际会议报告:基于黏弹性预应力技术的新型可形变双稳态复合材料结构Shape-changing bistable composites based on viscoelastically generated prestress). 10thInternational Conference on Composite Science and Technology);2015年9月1日–4日,地点:葡萄牙里斯本。 会议论文: 1.Bing Wang*, Keith Seffen, Simon Guest. Shape of a bistable composite tape-spring in folding.AIAA SciTech Forum 2019, San Diego, US. DOI: 10.2514/6.2019-2276. 2.Bing Wang*, Keith Seffen, Simon Guest. Folding of a bistable tape-spring structure based on plain-woven composite.26th International Conference on Composites/Nano Engineering Proceeding. 2018, Paris. DOI: 10.17863/CAM.36526. 3.Peng Xu,Bing Wang*, Kevin Fancey, Xudong Zhao, Xiaoli Ma. Feasibility investigation of a bonding method for fibrous materials and aluminium sheets employed in evaporative cooling systems.16thInternational Conference on Sustainable Energy Technologies(SET 2017). 2017, Bologna. 4.Bing Wangand Kevin Fancey*. Shape-changing (bistable) composites based on viscoelastically generated prestress.10th International Conference on Composite Science and Technology Proceeding (ICCST/10). 2015, Portugal. Doi: 10.13140/RG.2.1.1735.6249. 5.Chao Ge,Bing Wang, Kevin Fancey*. Techniques to investigate viscoelastically generated prestress in polymeric composites.10th International Conference on Composite Science and Technology Proceeding (ICCST/10). 2015, Portugal. Doi: 10.13140/RG.2.1.2784.2004. 专利: 1.一种预应力双稳态复合材料结构及其制造方法,2020.05,中国 |