研究方向 · 复合材料结构 · 结构疲劳与断裂 · 结构性能提升与加固 科研项目 · 国家自然科学基金青年项目,疲劳荷载作用下复材夹芯结构的Ⅰ/Ⅱ混合型界面剥离机理与寿命预测,2022.01-2024.12,主持 · 江苏省自然科学基金青年项目,纤维增强复合材料夹芯结构界面疲劳剥离机理与寿命预测,2020.07-2023.06,主持 · 江苏省高校自然科学研究面上项目,复合材料夹芯结构界面Ⅰ/Ⅱ混合型剥离机制研究,2019.09-2021.08,主持 · 苏州科技大学自然科学基金青年项目,GFRP-轻木夹芯受弯构件界面剥离性能研究,2020.01-2021.12,主持 · 山东省土木工程防灾减灾重点实验室开放课题,复合材料夹芯结构界面裂纹扩展及剥离损伤研究,2019.07-2021.06,主持 代表性论著 [1] Weng Xuwei, Shi Huiyuan*, Xia Zhiyuan, Pei Tao, Tang Baijian, Fang Hai. Study on interface performance of GFRP-Balsa sandwich beam under fatigue load[J]. Composite Structures, 2025, 357: 118935. [2] Xia Zhiyuan, Tang Baijian, Shi Huiyuan*, Chen Peng, Chen Xin, Gu Sheng. Model updating of engineering structures based on modified subset simulation methods and measured data[J]. Measurement Science and Technology, 2025, 36:015053. [3] Cao Yan, Fang Hai, Shi Huiyuan*, Li Benen, Xie Honglei, Cai Wei. Experimental and numerical studies on shear behavior of lattice-web reinforced PET foam sandwich panels[J]. Engineering Structures, 2023, 290: 116316. [4] Zhu Zhihao, Fang Hai, Shi Huiyuan*, Yang Chen, Han Juan, Chen Chen. Flexural property study of multiaxial fiber reinforced polymer sandwich panels with pultruded profile cores[J]. Thin-Walled Structures, 2023, 189: 110910. [5] Shi Huiyuan, Wei Xuan, Fang Hai*, Yang Chen, Tang Baijian. Shear Behavior of Multi-axial Fiber Reinforced Composite Sandwich Structures with Pultruded Profile Core[J]. Case Studies in Construction Materials, 2022, 17: e01652. (SCI/EI) [6] Tang Baijian, Wang Jiawei, Shi Huiyuan*, Xia Zhiyuan, Zhang Yongjie, Chen Li. Numerical Simulation Methodology for Prefabricated Shear Walls Considering Stochastic Defects in Grouting Materials [J]. Buildings, 2022, 12:1859. [7]Huiyuan Shi*, Hai Fang, Weiqing Liu, Zhiyuan Xia. Flexural fatigue behavior and life prediction of web reinforced GFRP-balsa sandwich beams[J]. International Journal of fatigue, 2020, 136:105592. [8] Chen Yang, Xiaolong Li, Hai Fang*, Huiyuan Shi*, Weiqing Liu, Dian Zhu. An experimental investigation of static and fatigue behaviour of GFRP sandwich beams with a web reinforced wood core [J]. Construction and Building Materials, 2020, 136:105592. [9] Huiyuan Shi, Weiqing Liu*, Hai Fang. Damage characteristics analysis of GFRP-Balsa sandwich beams under four-point fatigue bending[J]. Composites Part A: Applied Science and Manufacturing, 2018, 109: 564-577. [10]Huiyuan Shi, Weiqing Liu*, Hai Fang, Yu Bai, David Hui. Flexural responses and pseudo-ductile performance of lattice-web reinforced GFRP-wood sandwich beams[J]. Composites Part B: Engineering, 2017, 108: 364-376. [11] 史慧媛, 刘伟庆*, 方海, 霍瑞丽. GFRP复合材料-轻木夹芯梁弯曲疲劳性能试验[J]. 复合材料学报, 2018, 35(5): 1114-1122. [12]史慧媛, 刘伟庆*, 方海. 复合材料夹层结构的疲劳损伤性能[J]. 南京工业大学学报, 2017, 39(5): 1-6. [13] 徐子恒, 史慧媛, 方海, 等. 基于BP神经网络的木芯复合材料结构疲劳寿命预测[J].南京工业大学学报(自然科学版),2024,46(04):436-444. [14] Hai Fang, Weiqing Liu, Huiyuan Shi, Fubin Zhang. Composite Sandwich Structure[M]. 科学出版社, 2020. [15] 方海, 刘伟庆, 张富宾, 史慧媛. 格构增强复合材料夹芯结构[M]. 科学出版社, 2020.
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