DOU Jin-xin, YAO Hong-liang, CAO Yan-bo, GUO Yu-liang. Theoretical and Experimental Research of BNES in Torsional Vibration Suppression of Rotor Systems[J]. Journal of Northeastern University(Natural Science), 2023, 44(6): 790-798.
[1]Haidar A M,Palacios J L.A general model for passive balancing of supercritical shafts with experimental validation of friction and collision effects[J].Journal of Sound and Vibration,2016,384:273-293. [2]Song Y S,Sun X T.Modeling and dynamics of a MDOF isolation system[J].Applied Sciences,2017,7(4):393. [3]Poplawski B,Mikuowski G,Wiszowaty R,et al.Mitigation of forced vibrations by semi-active control of local transfer of moments[J].Mechanical Systems and Signal Processing,2021,157(2):107733. [4]Ding H,Chen L Q.Designs,analysis,and applications of nonlinear energy sinks[J].Nonlinear Dynamics,2020,100(1):3061-3107. [5]Javad T,Morteza D,Hadi P M.Vibration mitigation of a nonlinear rotor system with linear and nonlinear vibration absorbers[J].Mechanism and Machine Theory,2018,128:586-615. [6]鲁正,王自欣,吕西林.非线性能量阱技术研究综述[J].振动与冲击,2020,39(4):1-16,26.(Lu Zheng,Wang Zi-xin,Lyu Xi-lin.A review on nonlinear energy sink technology[J].Journal of Vibration and Shock,2020,39(4):1-16,26.) [7]Zhang X P,Kang Z.Vibration suppression using integrated topology optimization of host structures and damping layers[J].Journal of Vibration and Control,2014,22:60-76. [8]Arrigan J,Pakrashi V,Basu B,et al.Control of flapwise vibrations in wind turbine blades using semi-active tuned mass dampers[J].Structural Control and Health Monitoring,2011,18(8):840-851. [9]Li X,Zhang Y W,Ding H,et al.Dynamics and evaluation of a nonlinear energy sink integrated by a piezoelectric energy harvester under a harmonic excitation[J].Journal of Vibration and Control,2018,25:851-867. [10]刘良坤,潘兆东,谭平,等.非线性能量阱系统受基底简谐激励的参数优化分析[J].振动与冲击,2019,38(22):36-43.(Liu Liang-kun,Pan Zhao-dong,Tan Ping,et al.Parameter optimization analysis of a nonlinear energy sink system under base harmonic excitation[J].Journal of Vibration and Shock,2019,38(22):36-43.) [11]Bab S,Khadem S E,Shahgholi M,et al.Vibration attenuation of a continuous rotor-blisk-journal bearing system employing smooth nonlinear energy sinks[J].Mechanical Systems and Signal Processing,2017,84:128-157. [12]曹焱博,李之傲,韩金超,等.非光滑NES在转子-叶片系统振动抑制中的应用[J].东北大学学报(自然科学版),2020,41(8):1103-1110.(Cao Yan-bo,Li Zhi-ao,Han Jin-chao,et al.Application of non-smooth NES in vibration suppression of rotor-blade systems[J].Journal of Northeastern University(Natural Science),2020,41(8):1103-1110.) [13]Yao H L,Wang Y W,Xie L Q,et al.Bi-stable buckled beam nonlinear energy sink applied to rotor system[J].Mechanical Systems and Signal Processing,2020, 138:106546. [14]Huang X,Yang B.Investigation on the energy trapping and conversion performances of a multi-stable vibration absorber[J].Mechanical Systems and Signal Processing,2021,160(4):107938. [15]Rezaei M,Talebitooti R,Liao W H.Exploiting bi-stable magneto-piezoelastic absorber for simultaneous energy harvesting and vibration mitigation[J].International Journal of Mechanical Sciences,2021,207:107938. [16]Haris A,Motato E,Mohammadpour M,et al.On the effect of multiple parallel nonlinear absorbers in palliation of torsional response of automotive drivetrain[J].International Journal of Non-linear Mechanics,2017,96:22-35. [17]Haris A,Alevras P,Mohammadpour M,et al.Design and validation of a nonlinear vibration absorber to attenuate torsional oscillations of propulsion systems[J].Nonlinear Dynamics,2020,100:33-49. [18]Liu C,Zhao R,Yu K,et al.In-plane quasi-zero-stiffness vibration isolator using magnetic interaction and cables:theoretical and experimental study[J].Applied Mathematical Modelling,2021,96:497-522.(上接第782页) [4]Hong H,Zhang H,Jiao S.Microstructure and properties of S30403+Q345R roll-bonded clad steel plate for pressure vessels[J].Baosteel Technical Research,2017,11(1):40-48. [5]Yang X,Shi C G,Fang Z H,et al.Application countermeasures of the manufacturing processes of titanium-steel composite plates[J].Materials Research Express,2018,6(2):026519. [6]谢广明,骆宗安,王光磊,等.真空轧制不锈钢复合板的组织和性能[J].东北大学学报(自然科学版),2011,32(10):1398-1401.(Xie Guang-ming,Luo Zong-an,Wang Guang-lei,et al.Microstructure and properties of stainless steel clad plate by vacuum rolling cladding[J].Journal of Northeastern University(Natural Science),2011,32(10):1398-1401.) [7]Jiang J,Ding H,Luo Z A,et al.Interfacial microstructure and mechanical properties of stainless steel clad plate prepared by vacuum hot rolling[J].Journal of Iron and Steel Research International,2018,25(7):732-738. [8]张树才,姜周华,李花兵,等.超级奥氏体不锈钢654SMO的研究进展[J].钢铁研究学报,2019,31(2):132-144.(Zhang Shu-cai,Jiang Zhou-hua,Li Hua-bing,et al.Research and development progress of super austenitic stainless steel 654SMO[J].Journal of Iron and Steel Research,2019,31(2):132-144.) [9]Liu B X,An Q,Yin F X,et al.Interface formation and bonding mechanisms of hot-rolled stainless steel clad plate[J].Journal of Materials Science,2019,54(17):11357-11377. [10]Liu B X,Wang S,Chen C X,et al.Interface characteristics and fracture behavior of hot rolled stainless steel clad plates with different vacuum degrees[J].Applied Surface Science,2019,463: 121-131. [11]Li Q,Chen W,Du J,et al.Microstructure and coordination mechanism of interface of stainless steel/carbon steel cladding plate prepared by vacuum diffusion bonding[J].Materials Science and Engineering:A,2022,829: 142178. [12]Cao R,Ding Y,Yan Y,et al.Effect of heat treatment on interface behavior of martensite/austenite multilayered composites by accumulative hot roll bonding[J].Composite Interfaces,2019,26(12):1069-1085. [13]Ding Y,Du C,Wang X,et al.Microstructure and interfacial metallurgical bonding of 1Cr17Ni2/carbon steel extreme high-speed laser cladding coating[J].Advanced Composites and Hybrid Materials,2021,4(1):205-211. [14]Zhang S,Jiang Z,Li H,et al.Precipitation behavior and phase transformation mechanism of super austenitic stainless steel S32654 during isothermal aging[J].Materials Characterization,2018,137: 244-255. [15]程宝,邹德宁,刘小花,等.900℃时效条件下超级奥氏体不锈钢904L的析出相研究[J].材料导报,2014,28(22):92-95.(Cheng Bao,Zou De-ning,Liu Xiao-hua,et al.Study on precipitated phase in super austenitic stainless steel 904L aged at 900℃[J].Materials Review,2014,28(22):92-95.) [16]Astafurov S V,Maier G G,Melnikov E V,et al.The strain-rate dependence of the Hall-Petch effect in two austenitic stainless steels with different stacking fault energies[J].Materials Science and Engineering:A,2019,756: 365-372.