主要科研成果: [1] Dai, W., Yang, J., Wiercigroch, M.: Vibration energy flow transmission in systems with Coulomb friction. International Journal of Mechanical Sciences, 214:106932.ISSN:0020-7403 (2022, SCI, Q1,影响因子:7.3) [2] Dai, W., Yang, J.: Vibration transmission and energy flow of impact oscillators with nonlinear motion constraints created by diamond-shaped linkage mechanism. International Journal of Mechanical Sciences, 194:106212.ISSN:0020-7403(2021, SCI, Q1,影响因子:7.3) [3] Dai W., Yang J., Shi B.Y.: Vibration transmission and power flow in impact oscillators with linear and nonlinear constraints. International Journal of Mechanical Sciences,168: 105234.ISSN:0020-7403 (2020, SCI, Q1,影响因子:7.3) [4] Shi, B., Dai, W., Yang, J. Performance analysis of a nonlinear inerter-based vibration isolator with inerter embedded in a linkage mechanism. Nonlinear Dynamics,109:419–442. ISSN:0924-090X (2022, SCI, Q1,影响因子:5.7) [5] Dai, W., Shi, B.Y., Yang, J., Zhu, X., Li, T.Y.: Enhanced suppression of longitudinal vibration transmission in propulsion shaft system using nonlinear tuned mass damper inerter. Journal of Vibration and Control,29(11-12):2528-2538.ISSN:1077-5463 (2022, SCI,Q3,影响因子:2.8) [6] Dai, W., Li, T.Y., Yang, J.: Energy flow and performance of a nonlinear vibration isolator exploiting geometric nonlinearity by embedding springs in linkages. Acta Mechanica, 233(4): 1663-1687.ISSN:0001-5970 (2022, SCI,Q3,影响因子:2.7) [7] Dai, W., Shi, B., Li, T., Zhu, X., Yang, J., 2023. Performance Enhancement by Exploiting Geometrical Nonlinearity of Inerters in a Two-Stage Vibration Isolator. International Journal of Applied Mechanics 15 (06), 2350045.ISSN:1758-8251 (2023,SCI Q3,影响因子:3.5) [8] Dai, W., Shi, B. & Yang, J. Vibration Isolation Performance Enhancement Using Hybrid Nonlinear Inerter and Negative Stiffness Based on Linkage Mechanism. Journal of Vibration Engineering & Technologies 12, 837–855. ISSN: 2321-3558 (2023,SCI Q3,影响因子:2.7) [9] Liu, Y., Dai, W. Shi, B.& Yang, J. Enhanced suppression of vibration response and power transfer by tailoring contact hysteresis friction. Nonlinear Dynamics. ISSN:0924-090X(2024, SCI, Q1,影响因子:5.7) [10] Shi, B., Dai, W., Yang, J.: Performance enhancement of vehicle suspension system with geometrically nonlinear inerters. Archive of Applied Mechanics, 94: 39–55. ISSN: 0939-1533 (2024,SCI Q3,影响因子:2.8) [11] Wan, Z., Zhu, X., Li, T., Guo, W., Dai, W., 2023. Vibration Analysis of a Plate Embedded or Attached with Acoustic Black Hole Using a Virtual Spring Energy Method. International Journal of Structural Stability and Dynamics 24 (09), 2450101. ISSN: 0219-4554 (2023,SCI Q3,影响因子:3.6). [12] Chao, C., Shi, B., Dai, W. et al. Performance Analysis of Frictional Inerter-Based Vibration Isolator. Journal of Vibration Engineering & Technologies 11, 2793–2817. ISSN: 2321-3558 (2023,SCI Q3,影响因子:2.7) [13] Chen, Z., Li, Z., Wu, J., Deng, C., Dai, W., 2022. Deep residual shrinkage relation network for anomaly detection of rotating machines. Journal of Manufacturing Systems 65, 579-590.ISSN:0278-6125 (2022,SCI Q1) [14] Dai W., Yang J.: Vibration analysis of a multi-DOF impact oscillator with multiple linear constraints. Advances in Nonlinear Dynamics, NODYCON Conference Proceedings Series, Springer, Cham.ISSN:2730-7689 (2021) [15] Dai W., Yang J.: Vibration force transmissibility of a rotor-stator system with potential rub-impact. Vibration Engineering for a Sustainable Future,Springer,Cham.ISBN:978-3-030-46465-3 (2019) [16] Dai W., Yang J.: Rotordynamic analysis of a permanent magnet synchronous motor considering nonlinear unbalanced magnetic pull. The 22nd International Conference on Electrical Machines and Systems,1-6.ISSN:2642-5513 (2019) [17] Dai W., Yang J.: Vibration analysis of a rotordynamic system with nonlinear bearing supports. The 26th International Congress on Sound and Vibration, Montreal, Canada.ISBN:978-1-5108-9269-9 (2019) [18]张帅,李天匀,朱翔,戴维.水下近水面锥柱组合壳声固耦合效应的半解析求解方法[J].声学学报,47(04):481-494.ISSN:0371-0025(2022) |