1. 2017.7,The 24th International Congress on Sound and Vibration, Acoustic time-frequency prediction simulation method in ship structure, Invited lecture ,London, UK
2. 2017.7,The 24th International Congress on Sound and Vibration, Investigation of elliptical sonic metamaterials, Invited lecture ,London, UK
3. 2016.8, 45th International Congress and Exposition on Noise Control Engineering. Underwater Noise Radiation Optimization of a Scientific Investigation Ship, Invited lecture ,Hamburg, Germany
4. 2016.8, 45th International Congress and Exposition on Noise Control Engineering. Experimental research on hydrodynamic noise of a Cone-cylinder combined structure, Invited lecture ,Hamburg, Germany
5. 2015.8, 44th International Congress and Exposition on Noise Control Engineering. The application of impedance analysis method in dynamic response analysis of ship, Invited lecture ,San Francisco, USA
6. 2015.8, 44th International Congress and Exposition on Noise Control Engineering.. Research on the acoustic radiation characteristics of the submarine ship structure, Invited lecture ,San Francisco, USA
7. 2014.8, 43rd International Congress on Noise Control Engineering. Research on vibration and sound radiation characteristics of ship stiffened composite plate structure, Invited lecture , Melbourne Australia
8. 2014.8,43rd International Congress on Noise Control Engineering.Moving boundary similarity method and its application on ship structural borne noise prediction, Invited lecture , Melbourne Australia
1. Pang F, Li H, Miao X, et al. A modified Fourier solution for vibration analysis of moderately thick laminated annular sector plates with general boundary conditions, internal radial line and circumferential arc supports[J]. Curved and Layered Structures, 2017, 4(1): 189-220. (SCI)
2. Fuzhen Pang, Haichao Li*, Kwangnam Choe, Dongyan Shi, Kwanghun Kim"Free and forced vibration analysis of airtight cylindrical vessels with doubly-curved shells of revolution by using Jacobi-Ritz Method", Shock and Vibration, 2017, (SCI)
3. Li H, Pang F*, Wang X, et al. Benchmark Solution for Free Vibration of Moderately Thick Functionally Graded Sandwich Sector Plates on Two-Parameter Elastic Foundation with General Boundary Conditions[J]. Shock and Vibration, 2017,(SCI)
4. Pang, Fu-Zhen* ; Wu, Chuang; Miao, Xu-Hong; Song, Hong-Bao. Tranferred boundary similarity method and application to the prediction of ship vibration and radiated noise[J]. Noise Control Engineering Journal, 2015, 63(4):318-330.(SCI)
5. Shi, Z., X. Yao, F. Pang* and Q. Wang (2017). "An exact solution for the free-vibration analysis of functionally graded carbon-nanotube-reinforced composite beams with arbitrary boundary conditions." Scientific Reports 7(1): 12909.(SCI)
6. Shi, Z., X. Yao, F. Pang* and Q. Wang (2017). "A semi-analytical solution for in-plane free vibration analysis of functionally graded carbon nanotube reinforced composite circular arches with elastic restraints." Composite Structures 182: 420-434. (SCI)
7. WU C, PANG F*. FREE VIBRATION CHARACTERISTICS OF THE CONICAL SHELLS BASED ON PRECISE INTEGRATION TRANSFER MATRIX METHOD[J]. Latin American Journal of Solids and Structures, 2017, 13. (SCI)
8. Yao, Xiong-Liang, Tang, Dong; Pang, Fu-Zhen*;Li, Shuo. Exact free vibration analysis of open circular cylindrical shells by the method of reverberation-ray matrix[J]. Journal of Zhejiang Universityence A, 2016, 17(4):295-316.(SCI)
9. Jin, Ye-qing; Pang, Fu-zhen*; Yang, Fei ; Li, Guang-ming. A General Model for Analysis of Sound Radiation from Orthogonally Stiffened Laminated Composite Plates[J]. China Ocean Engineering,2014,28(4):457-470. (SCI)
10. Ye, Xi; Pang, Fu-Zhen; Zhang, A-Man*. Acoustic radiation induced by bubble motion in compressible fluid[J]. Applied Mathematics and Mechanics(English Edition),2014, 35(2):177-190.( SCI)
11. Li L, Li H, Pang F, et al. The modified Fourier-Ritz approach for the free vibration of functionally graded cylindrical, conical, spherical panels and shells of revolution with general boundary condition[J] ,2017,Mathematical Problems in Engineering (SCI)
12. Pang, Fuzhen ; Shen, Zhe ; Wu, Chuang ; Li, Haichao .The acoustic time-frequency complex prediction method of ship and ocean structure [C]. 45th International Congress and Exposition on Noise Control Engineering: Towards a Quieter Future, INTER-NOISE 2016.2016.8.21-2016.8.24. Hamburg, Germany.pages:6622-6632.(EI)
13. Pang, Fuzhen; Shen, Zhe; Li, Haichao ; Xue, Yanzhuo.Research on ice-breaking induced vibration characteristic of a Ship[C]. 45th International Congress and Exposition on Noise Control Engineering: Towards a Quieter Future, INTER-NOISE 2016.2016.8.21-2016.8.24. Hamburg, Germany. pages:6633-6639.(EI)
14. Pang, Fu-Zhen; Song, Hong-Bao; Wang, Xue-Ren ; Wu, Chuang .The application of impedance analysis method in dynamic response analysis of ship[C]. 44th International Congress and Exposition on Noise Control Engineering, INTER-NOISE 2015.2015.8.9-2015.8.12. San Francisco, CA, United states .(EI)
15. Pang, Fu-Zhen ; Song, Hong-Bao ; Wang, Xue-Ren ; Wu, Chuang.Research on the acoustic radiation characteristics of the submarine ship structure[C]. 44th International Congress and Exposition on Noise Control Engineering, INTER-NOISE 2015.2015.8.9-2015.8.12. San Francisco, CA, United states .(EI)
16. Pang, Fuzhen ; Wu, Chuang ; Wang, Qingshan ; Song, Hongbao.Analysis of acoustic radiation of a ring-stiffened cylindrical shell in underwater based on precise integration transfer matrix method[C] 43rd International Congress on Noise Control Engineering: Improving the World Through Noise Control, INTERNOISE 2014 .2014.11.16-2014.11.19. Melbourne, VIC, Australia. (EI)
17. Pang, Fu-Zhen ; Miao, Xu-Hong ; Tang, Dong ; Song, Hong-Bao.Moving boundary similarity method and its application on ship structural borne noise prediction[C]. 43rd International Congress on Noise Control Engineering: Improving the World Through Noise Control, INTERNOISE 2014,2014.11.16-2014.11.19, Melbourne, VIC, Australia(EI)
18. 龐福振,吳闖*,繆旭弘,王雪仁,賈地. 設備振動內源參數識別方法[J]. 振動工程學報,2017,30(02):325-332.(EI)
19. 龐福振,宋紅寶*,繆旭弘,王雪仁.阻抗分析法在船舶結構動力響應分析中的應用研究[J]. 振動與沖擊,2016,35(18):17-22. (EI)
20. 龐福振*,陳林,繆旭弘,姚熊亮. 無限大正交加筋層合板的隔聲性能分析[J]. 上海交通大學學報,2014,48(8):1090-1096.(EI)
21. 龐福振*,姚熊亮,繆旭弘,賈地. 設備對船體結構的激勵力及其應用研究[J]. 工程力學,2012,29(7):283-290.(EI)
22. Jia, Di*; Pang, Fu-Zhen; Yin, Xu-Chao ; Ye, Xi. Study on the Vibro-Acoustic Characteristics of a Vibration Isolation Mass Structure with Composite Braces[C]. 2011 International Conference on Applied Mechanics, Materials and Manufacturing ,ICAMMM Shenzhen, 2011.China. 117-119:85-88. (EI)
23. Wang, Qingshan*; Pang, Fuzhen ; Qin, Bin ; Liang, Qian. A unified formulation for free vibration of functionally graded carbon nanotube reinforced composite spherical panels and shells of revolution with general elastic restraints by means of the Rayleigh–Ritz method[J]. Polymer Composites, 2017.(EI)
24. 龐福振,吳闖,繆旭弘,等. 設備振動內源參數識別方法[J]. 振動工程學報, 2017, 325-332.
25. 龐福振,姚熊亮,繆旭弘等,加筋球殼結構穩定性及其優化研究,機械強度,2012,34(3):30-38
26. 龐福振, 姚熊亮, 賈地等,吸聲尖劈對板柱組合結構水下聲學特性影響的試驗研究,船舶力學, 2011, 15(5): 570-576
27. 龐福振, 姚熊亮,聲學覆蓋層對潛艇抗水下爆炸能力的影響研究,振動與沖擊, 2011, 30(4): 103-108
28. 龐福振, 姚熊亮, 朱理,船舶結構高階動力分析的模型簡化方法研究,船舶力學, 2010, 14(11): 1263-1275
29. 龐福振, 姚熊亮, 繆旭弘等,設備對船體結構的激勵力及其應用研究,工程力學, 2012, 29(7): 283-290
30. 龐福振, 康逢輝, 孫龍泉等,復雜錐柱結構中頻水下聲輻射特性研究,哈爾濱工業大學學報, 2011 (S1): 42-46
31. 龐福振, 姚熊亮, 孫龍泉等,敷設吸聲尖劈的聲納平臺水下聲學特性試驗研究,華中科技大學學報: 自然科學版, 2011, 39(4): 106-109
32. 朱理,龐福振,康逢輝. 螺旋槳激勵力下的艦船振動特性分析[J]. 中國造船,2011,52(02):8-15