Theoretical and experimental study on a dual-stage variable stiffness friction damper for satellite flywheel

Mechanical Systems and Signal Processing - Tập 185 - Trang 109761 - 2023
Haiping Liu1,2, Longgan Mao1, Tian Wang1, Yongtao Hou3
1School of Mechanical Engineering, University of Science and Technology Beijing, Beijing 100083, China
2Shunde Innovation School, University of Science and Technology Beijing, Foshan, Guangdong 528300, China
3No.208 Research Institute of China Ordnance Industries, Beijing 102202, China

Tài liệu tham khảo

Stahl, 2014 T.T. Hyde, K.Q. Ha, J.D. Johnston, et al. Integrated modeling activities for the James Webb Space Telescope: optical jitter analysis. Proc. SPIE. International Society for Optics and Photonics, 2011. J.M. Hilkert, D.L. Amil. Structural effects and techniques in precision pointing and tracking systems: a tutorial overview. Conference on Automatic Target Recognition XX; Acquisition, Tracking, Pointing, and Laser Systems Technologies XXIV; and Optical Pattern Recognition XXI. Orlando, FL (US), 2010. Liu, 2013, Temperature adaptation of large aperture mirror assembly, Acta Optica Sin., 21, 3169 S.A. Uebelhart. Non-deterministic design and analysis of parameterized optical structures during conceptual design. Dissertation. Massachusetts Institute of Technology, 2007. Chi, 2020, A hybrid multi-degree-of-freedom vibration isolation platform for spacecrafts by the linear active disturbance rejection control, Appl. Math. Mech., 41, 127, 10.1007/s10483-020-2606-5 Chen, 2018, Spacecraft vibration suppression based on micro-gimbal moment of magnetically suspended flywheel with dynamic feedback and feedforward decoupling control, P. I. Mech. Eng. C-J. Mec., 232, 3881, 10.1177/0954406217745339 Huang, 2020, High-frequency disturbance force suppression mechanism of a flywheel equipped with a flexible dynamic vibration absorber, J. Vib. Control, 26, 2113, 10.1177/1077546320915340 C.S. Oh, W. Lee, H. Bang. Passive jitter isolation for reaction wheel of satellites. SICE-ICASE International Joint Conference. IEEE. Busan, Korea (South), 2006. K.J. Pendergast, J.S. Chris. Use of a passive reaction wheel jitter isolation system to meet the advanced X-ray astrophysics facility imaging performance requirements. Proc. SPIE 3356, Space Telescopes and Instruments V, 1998. Liu, 2017, Vibration isolator with relaxation type damping for micro-vibration isolation from satellite remote sensors, Optics Precis., 25, 2448, 10.3788/OPE.20172509.2448 Mehrkian, 2020, Mathematical modeling and optimization scheme for omnidirectional tuned liquid column dampers, J. Sound Vib., 484 Liu, 2018, Novel repeatable launch locking/unlocking device for magnetically suspended momentum flywheel, Mechatronics, 54, 16, 10.1016/j.mechatronics.2018.07.002 Shen, 2022, An inerter-based electromagnetic damper for civil structures: modeling, testing, and seismic performance, Mech. Syst. Signal PR., 173, 10.1016/j.ymssp.2022.109070 Tabrizikahou, 2022, Application and modelling of shape-memory alloys for structural vibration control: state-of-the-art review, Constr. Build Mater., 342, 10.1016/j.conbuildmat.2022.127975 Kalderon, 2022, Locally resonant metamaterials utilizing dynamic directional amplification: an application for seismic mitigation, Appl. Math. Model., 110, 1, 10.1016/j.apm.2022.05.037 Sujit, 2021, A state-of-the-art review on passive friction dampers and their applications, Eng. Struct., 235 Pall, 1982, Response of friction damped braced frames, J. Struct. Eng., 108, 1313 Zhu, 2008, Seismic analysis of concentrically braced frame systems with self-centering friction damping braces, J. Struct. Eng., 134, 121, 10.1061/(ASCE)0733-9445(2008)134:1(121) Santos, 2019, Analytical assessment of the friction dampers behavior under different loading rates, J. Constr. Steel Res., 158, 443, 10.1016/j.jcsr.2019.04.005 Aiken, 1990, Earthquake simulator testing and analytical studies of two energy-absorbing system for multistory buildings, Rep. No; CB/EERC, 90 Aiken, 1993, Testing of passive energy dissipation systems, Earthq. Spectra, 9, 335, 10.1193/1.1585720 Jarrahi, 2020, Optimal design of rotational friction dampers for improving seismic performance of inelastic structures, J. Build Eng., 27 M. Mirtaheri, A.P. Zandi, S.S. Samadi, et at. Numerical and experimental study of hysteresis behavior of cylindrical friction dampers. Eng. Struct. 33(2011): 3647-3656. Cavallaro, 2017, Experimental behavior of innovative thermal spray coating materials for FREEDAM joints, Compos. Part B Eng., 115, 289, 10.1016/j.compositesb.2016.09.075 Latour, 2015, Free from damage beam-to-column joints: Testing and design of DST connections with friction pads, Eng. Struct., 85, 219, 10.1016/j.engstruct.2014.12.019 Wang, 2017, Modeling and experimental investigation of a novel arc-surfaced frictional damper, J. Sound Vib., 389, 89, 10.1016/j.jsv.2016.11.019 Lu, 2020, Steel tubular friction damper and vibration reduction effects of double-layer reticulated shells, J. Constr. Steel Res., 169, 10.1016/j.jcsr.2020.106019 Westenenk, 2019, Self-centering frictional damper (SCFD), Eng. Struct., 197, 10.1016/j.engstruct.2019.109425 Aiken, 1992, Comparative study of four passive energy dissipation systems. Bull New Zealand Natl, Soc. Earthq. Eng., 25, 175 Zhang, 2020, Development of a novel deformation-amplified shape memory alloy-friction damper for mitigating seismic responses of RC frame buildings, Eng. Struct., 216, 10.1016/j.engstruct.2020.110751 Wang, 2020, Theoretical analysis and experimental investigation of hysteresis performance of self-centering variable friction damper braces, Eng. Struct., 217, 10.1016/j.engstruct.2020.110779 Chou, 2020, A novel steel lever viscoelastic wall with amplified damper force-friction for wind and seismic resistance, Eng. Struct., 210, 10.1016/j.engstruct.2020.110362 Guillen, 1999 Liu, 2020, Variable stiffness friction damper for dual-stage isolation of flywheel on satellite, Optics Precis. Eng., 28, 1539, 10.37188/OPE.20202807.1539 Ghaitani, 2019, Dynamic displacement calculation in beams structures considering the effect of nanoparticles as reinforcement phase, Int. J. Hydro., 2, 237 Sun, 2018, Nonlinear energy sink for a flywheel system vibration reduction, J. Sound Vib., 429, 305, 10.1016/j.jsv.2018.05.025 Wang, 2011, Parameter design and experimental study of a two state nonlinear isolator, J. Astronautics, 32, 7