承擔項目: [1] 國家自然科學基金面上項目:考慮極化渦旋結構大範圍疇變的低維鐵電材料斷裂力學研究,參與 [2] 國家自然科學基金面上項目:輻照-熱-力環境下彌散型核燃料的宏-細觀斷裂相場法研究,參與 [3] 中核集團“十三五”預研項目:****裂紋擴展分析理論與試驗研究,參與 [4] 中核集團“十四五”預研項目: ****沖擊載荷下的斷裂失效仿真分析技術研究,參與 [5] “兩機”重大專項相關項目:複合材料振動分析及疲勞性能研究,參與 代表性論文(專著、教材): [1] Zhu Shuai, Yu Hongjun, Hao Liulei, et al. Exploring the dynamic fracture performance of epoxy/cement based piezoelectric composites with complex interfaces. Composite Structures, 305:116497, 2022. (TOP期刊) [2] Zhu Shuai, Yu Hongjun, Hao Liulei, et al. Influences of magneto-electro-elastic layer properties of piezoelectric/piezomagnetic composites on dynamic intensity factors. Applied Mathematical Modelling, 120:535-557, 2023. (TOP期刊) [3] Zhu Shuai, Yu Hongjun, Guo Licheng. Analysis of an interfacial crack between two nonhomogeneous piezoelectric materials using a new domain-independent interaction integral. Composite Structures, 331:117873, 2024. (TOP期刊) [4] Zhu Shuai, Yu Hongjun, Wu Xiaorong, et al. Interaction integral method for crack-tip intensity factor evaluations of magneto-electro-elastic materials with residual strain. Engineering Fracture Mechanics, 258:108084, 2021. (TOP期刊) [5] Zhu Shuai, Yu Hongjun, Wang Biao, et al. A domain-independent interaction integral for dynamic fracture in nonhomogeneous magneto-electro-elastic materials. Engineering Fracture Mechanics. 282:109162, 2023. (TOP期刊) [6] Zhu Shuai, Yu Hongjun, Zhang Yingbin, et al. Generalized dynamic domain-independent interaction integral in the transient fracture investigation of magneto-electro-elastic composites. Engineering Fracture Mechanics.292:109653, 2023. (TOP期刊) [7] Zhu Shuai, Yu Hongjun, Hao Liulei, et al. Interaction integral method for thermal fracture of nonhomogeneous magneto-electro-elastic materials. European Journal of Mechanics A-Solids, 98:104871, 2023. [8] Zhu Shuai, Yu Hongjun, Wu Xiaorong, et al. Dynamic fracture analysis in nonhomogeneous piezoelectric materials with a new domain-independent interaction integral. Theoretical and Applied Fracture Mechanics. 122:103614, 2022. [9] Zhu Shuai, Liu Haitao. Finite element analysis of the three-dimensional crack and defects in piezoelectric materials under electro-mechanical coupling field. Journal of Intelligent Material Systems and Structures, 32(15):1662-77, 2021. [10] Yu Hongjun, Zhu Shuai, Ma Haoyu, et al. Interface crack analysis of piezoelectric laminates considering initial strain. International Journal of Mechanical Sciences, 305:109104, 2024. (TOP期刊) [11] Yan Hongru, Yu Hongjun, Zhu Shuai, et al. Nonlinear properties prediction and inverse design of a porous auxetic metamaterial based on neural networks. Thin-Walled Structures, 197:111717, 2024. (TOP期刊) [12] Hao Liulei, Yu Hongjun, Zhu Shuai, et al. A mode-adjustable phase-field model for brittle fracture by regulating distortional crack driving energy. Engineering Fracture Mechanics. 276:108920, 2022. (TOP期刊) [13] Yan Hongru, Yu Hongjun, Zhu Shuai, et al. Machine learning based framework for rapid forecasting of the crack propagation [J]. Engineering Fracture Mechanics. 2024; 307. (TOP期刊) [14] Hao Liulei, Yu Hongjun, Shen Zhen, Zhu Shuai, et al. Determination of mode-II critical energy release rate using mixed-mode phase-field model. Theoretical and Applied Fracture Mechanics. 125:103840, 2023. [15] Shen Zhen, Yu Hongjun, Guo Licheng, Hao Liulei, Zhu Shuai, Huang Kai. A modified 3D G-criterion for the prediction of crack propagation under mixed mode I-III loadings. Engineering Fracture Mechanics. 281:109082, 2023. (TOP期刊) [16] Liu Haitao, Zhu Shuai. Dynamic analysis of two collinear permeable Mode-I cracks in piezoelectric materials based on non-local piezoelectricity theory[J]. Multidiscipline modeling in materials and structures, 15(6):1274-1293, 2019. 授權專利: [1] 求解壓電壓磁複合材料熱斷裂問題的相互作用積分方法[P]. 發明專利,授權号:ZL202210551909.0. [2] 求解磁電彈性材料熱斷裂問題的相互作用積分方法[P]. 發明專利,授權号:ZL202210551418.6. [3] 一種求解磁電彈性材料的界面裂紋尖端場的解析法[P]. 發明專利,授權号:ZL202310428519.9. [4] 可控間距及面積占比的帶殼顆粒随機分布的生成方法[P]. 發明專利,授權号:ZL202310534409.0. [5] 求解壓電複合材料動态斷裂強度因子的相互作用積分方法[P]. 發明專利,授權号:ZL202210551419.0. [6] 一種求解回轉體裂紋應力強度因子的相互作用積分方法[P]. 發明專利,授權号:ZL202311614435.0. [7] 一種包含微結構效應的斷裂相場仿真方法[P]. 發明專利,授權号:ZL202310441617.6. [8] 一種自相似層級組裝的負泊松比結構設計方法[P]. 發明專利,授權号:ZL 2023 1 0177866.9. [9] 一種考慮拉扭耦合效應的動态斷裂相場計算方法[P]. 發明專利,授權号:ZL202311317591.0. 學術會議: [1] 15th World Congress on Computational Mechanics (WCCM-XV) & 8th Asian Pacific Congress on Computational Mechanics (APCOM-VIII) (第十五屆世界計算力學大會&第八屆亞太計算力學大會),日本橫濱,2022.07.31-08.05. [2] 15th International Conference on Fracture (ICF15) (第十五屆國際斷裂力學大會),美國亞特蘭大,2023.06.11-06.16. [3] The 6th International Conference on Materials and Reliability (第六屆國際材料與可靠性會議),日本山口,2022.12.07-12.09. [4] International Conference on Intelligent Material Design (世界智能材料設計國際會議), 浙江杭州,2023.04.28-04.30. [5] 第二十一屆全國疲勞與斷裂學術會議,山東青島,2022.08.21-08.24. [6] 中國力學大會-2021+1,四川成都,2022.11.04-11.10. [7] 第三屆全國力學博士生學術論壇, 遼甯大連,2023.01.07-01.08. [8] 第四屆全國熱應力大會,重慶,2023.03.31-04.02. [9] 第五屆東北地區力學博士生論壇,黑龍江哈爾濱,2023.07.22-07.23. [10] 中國計算力學大會2023,遼甯大連,2023.08.20-08.23. [11] 第一屆中國智能材料與結構系統大會,江蘇蘇州,2023.10.27-10.29. [12] 第十四屆全國爆炸力學學術會議,廣西南甯,2023.11.17-11.19. [13] 全國固體力學學術會議,江蘇南京,2024.03.29-04.01. [14] 第五屆中國國際複合材料科技大會,新疆烏魯木齊,2024.07.25-07.28. [15] 全國沖擊動力學前沿論壇,湖北宜昌,2024.09.06-09.08. 獲獎情況: [1] 2023年10月,博士研究生國家獎學金 [2] 2024年05月,黑龍江省“優秀畢業生” [3] 2024年05月,哈爾濱工業大學“優秀畢業生” [4] 2024年06月,哈爾濱工業大學優秀博士學位論文提名 |