Dry friction damping mechanism of flexible microporous metal rubber based on cell group energy dissipation mechanism

Kou H N, Liu G Q, Yang J C, Bai H B. Microstructure and mechanical properties of stainless steel wires used for metal rubber. J Aero Mater 26(4): 24–28 (2006) (in Chinese)

Google Scholar 

Lu C Z, Li J Y, Zhou B Y. Effect of wire properties on fatigue properties of metal rubber. Journal of Vibration and shock 37(24): 154–159 (2018) (in Chinese)

Google Scholar 

Zhang W, Xue X, Bai H B. Mechanical and electrical properties of Cu-steel bimetallic porous composite with a double-helix entangled structure. Compos Struct 255: 112886 (2021)

Article  Google Scholar 

Ma Y H, Zhang Q C, Zhang D Y, Scarpa F, Liu B L, Hong J. The mechanics of shape memory alloy metal rubber. Acta Mater 96: 89–100 (2015)

Article  Google Scholar 

Ma Y H, Zhang Q C, Zhang D Y, Scarpa F, Liu B L, Hong J. A novel smart rotor support with shape memory alloy metal rubber for high temperatures and variable amplitude vibrations. Smart Mater Struct 23(12): 125016 (2014)

Article  Google Scholar 

Ma Y H, Tong X L, Zhu B, Zhang D Y, Hong J. Theoretical and experimental investigation on thermophysical properties of metal rubber. Acta Phys Sinica 62(4): 048101 (2013) (in Chinese)

Article  Google Scholar 

Li T, Bai H B. Compressive property of knitted-dapped metal rubber at different temperatures. Mater Mech Eng 42(10): 58–61 (2018) (in Chinese)

Google Scholar 

Li Z C, Zhao Y G B, Wang X R, Guo D X, Wang J Y, Zhu L Y. Experimental study on compression and high temperature performance of metallic rubber. Shanxi Archit 44(2): 113–114 (2018) (in Chinese)

Google Scholar 

Liu Z, Chen H, Wang G S, Lai L Y. Analysis of shock response accelerations of metal-net rubber vibration isolators. Noise and Vibration Control 38(2): 208–211 (2018) (in Chinese)

Google Scholar 

Wang S C, Deng Z Q. Impact performance test of damping materials for lunar lander. Missile and Space Launch Technology (1): 53–56 (2007) (in Chinese)

Google Scholar 

Cao X B, Wei C, Liang J Q, Wang L X. Design and dynamic analysis of metal rubber isolators between satellite and carrier rocket system. Mech Sci 10(1): 71–78 (2019)

Article  Google Scholar 

Xiao K, Bai H B, Xue X, Wu Y W. Energy dissipation characteristics and parameter identification of metal rubber coated pipe in high temperature environment. Ord Mater Sci Eng 42(01): 11–17 (2019) (in Chinese)

Google Scholar 

Zhao C. Design and mechanical properties of metal rubber pipeline shock absorber. Master Thesis. Harbin (China): Harbin Engineering University, 2018.

Google Scholar 

Jiang F, Ding Z Y, Wu Y W, Bai H B, Shao Y C, Zi B. Energy dissipation characteristics and parameter identification of symmetrically coated damping structure of pipelines under different temperature environment. Symmetry 12(8): 1283 (2020)

Article  Google Scholar 

Bai C Y, Wei W B, Dang X Q, Wang K Z. Cervical stability changes following metal rubber cervical disc replacement. Chinese Tissue Engineering Research 19(16): 2467–2472 (2015) (in Chinese)

Google Scholar 

Ao H R, Jiang H Y, Xia Y H, Ulanov A M. Simplified description method of elasto-hysteresis loop of metal rubber material. Journal of China University of Mining and Technology 33(4): 453–456 (2004) (in Chinese)

Google Scholar 

Li Y Y, Wang W. Generation mechanism and mechanical model of dry friction damping of metal rubber materials. Machinery Manufacturing and Automation 43(6): 158–160 (2014) (in Chinese)

MathSciNet  Google Scholar 

Wu R P, Bai H B, Lu C H. Study on influencing factors and meso model of compression properties of metal rubber. Sci Technol Eng 18(2): 66–71 (2018) (in Chinese)

Google Scholar 

Zou L Q, Cao Y W, Fu H L, Wang Y. Study on the mechanical model for hysteresis characteristics analysis of metal rubber materials. Noise and Vibration Control 39(6): 1–5, 199 (2019) (in Chinese)

Google Scholar 

Cao F L, Bai H B, Li D W, Ren G Q, Li G Z. A constitutive model of metal rubber for hysteresis characteristics based on a meso-mechanical method. Rare Met Mater Eng 45(1): 1–6 (2016) (in Chinese)

Article  Google Scholar 

Cao F L, Bai H B, Li D W, Lu C H, Li G Z. Research on mechanical model of metal rubber for hysteresis characteristic in the non-forming direction. J Mech Eng 51(2): 84–89 (2015) (in Chinese)

Article  Google Scholar 

Liu W, Wang S, Zhang Z, Xu Y Q, Wang Q. Analysis of dynamic mechanical characteristics of metal rubber damping pad. Mech Res 4: 238–248 (2019) (in Chinese)

Google Scholar 

Hou J F, Bai H B, Li D W. Damping capacity measurement of elastic porous wire-mesh material in wide temperature range. J Mater Process Technol 206(1–3): 412–418 (2008)

Article  Google Scholar 

Gadot B, Martinez O R, Roscoat S R D, Bouvard D, Rodney D, Orgéas L. Entangled single-wire NiTi material: A porous metal with tunable superelastic and shape memory properties. Acta Mater 96: 311–323 (2015)

Article  Google Scholar 

Ertas B, Luo H G, Hallman D. Dynamic characteristics of shape memory alloy metal mesh dampers. In: Proceedings of the 50th AIAA/ASME/ASCE/AHS/ASC Structures, Structural Dynamics, and Materials Conference, Palm Springs, USA, 2012.

Zhu M L, Long J, Xuan F Z. Fatigue life and mechanistic modeling of interior micro-defect induced cracking in high cycle and very high cycle regimes. Acta Materialia 157: 259–275 (2018).

Article  Google Scholar 

Ren Z Y, Shen L L, Huang Z W, Bai H B, Shen D, Shao Y C. Study on multi-point random contact characteristics of metal rubber spiral mesh structure. IEEE Access 7: 132694–132710 (2019)

Article  Google Scholar 

Budynas G B. Advanced Material Mechanics and Practical Stress Analysis. Beijing (China): Tsinghua University Press, 2001.

Google Scholar 

Zhang Y H, Liu H H, Wang D C. Spring Manual. Beijing (China): China Machine Press, 2008 (in Chinese)

Google Scholar 

Ren Z Y, Shen L L, Bai H B, Pan L, Zhong S C. Constitutive model of disordered grid interpenetrating structure of flexible microporous metal rubber. Mech Syst Signal Process 154: 107567 (2021)

Article  Google Scholar 

Ma Y H, Zhang Q C, Wang Y F, Hong J, Scarpa F. Topology and mechanics of metal rubber via X-ray tomography. Mater Des 181: 108067 (2019)

Article  Google Scholar 

Li L S. Differential geometry of hypersurfaces in N-dimensional Euclidean space. Master Thesis. Wuhan (China): Central China Normal University, 2007.

Google Scholar 

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