Applied Mathematics and Mechanics (English Edition) ›› 2020, Vol. 41 ›› Issue (3): 383-400.doi: https://doi.org/10.1007/s10483-020-2588-9
• Articles • Next Articles
Xiaofeng GENG1, Hu DING1, Kexiang WEI2, Liqun CHEN1
Received:
2019-10-31
Revised:
2019-12-23
Online:
2020-03-01
Published:
2020-02-17
Contact:
Hu DING
E-mail:dinghu3@shu.edu.cn
Supported by:
2010 MSC Number:
Xiaofeng GENG, Hu DING, Kexiang WEI, Liqun CHEN. Suppression of multiple modal resonances of a cantilever beam by an impact damper. Applied Mathematics and Mechanics (English Edition), 2020, 41(3): 383-400.
[1] | OMIDI, E., MAHMOODI, S. N., and SHEPARD, W. S. Multi positive feedback control method for active vibration suppression in lexible structures. Mechatronics, 33, 23-33(2016) |
[2] | KARAISKOS, G., PAPANICOLAOU, P. N., and ZACHAROPOULOS, D. Experimental investigation of jet pulse control on flexible vibrating structures. Mechanical Systems and Signal Processing, 76, 1-14(2016) |
[3] | BIAN, Y. S., LIANG, X. F., and GAO, Z. H. Vibration reduction for a flexible arm using magnetorheological elastomer vibration absorber. Shock and Vibration, 2018, 9723538(2018) |
[4] | NDEMANOU, B. P., FANKEM, E. R., and NBENDJO, B. R. N. Reduction of vibration on a cantilever Timoshenko beam subjected to repeated sequence of excitation with magnetorheological outriggers. Structural Design of Tall and Buildings, 26, e1393(2017) |
[5] | ZHOU, T. and CHENG, L. A resonant beam damper tailored with acoustic black hole features for broadband vibration reduction. Journal of Sound and Vibration, 430, 174-184(2018) |
[6] | GEORGIADES, F. and VAKAKIS, A. F. Dynamics of a linear beam with an attached local nonlinear energy sink. Communications in Nonlinear Science and Numerical Simulation, 12, 643-651(2007) |
[7] | LI, C., ZHUANG, T. Y., ZHOU, S. T., XIAO, Y. Q., and GANG, H. Passive vibration control of a semi-submersible floating offshore wind turbine. Applied Sciences-Basel, 7, 509(2017) |
[8] | TAO, T. Y., WANG, H., YAO, C. Y., and HE, X. H. Parametric sensitivity analysis on the buffeting control of a long-span triple-tower suspension bridge with MTMD. Applied SciencesBasel, 7, 359(2017) |
[9] | ROFFEL, A. J., NARASIMHAN, S., ASCE, M., and HASKETT, T. Performance of pendulum tuned mass dampers in reducing the responses of flexible structures. Journal of Structural Engineering, 139, 04013019(2013) |
[10] | GHAEMMAGHAMI, A., KIANOUSH, R., and YUAN, X. X. Numerical modeling of dynamic behavior of annular tuned liquid dampers for applications in wind towers. Computer-Aided Civil and Infrastructure Engineering, 28, 38-51(2013) |
[11] | LI, X., ZHANG, Y. W., DING, H., and CHEN, L. Q. Integration of a nonlinear energy sink and a piezoelectric energy harvester. Applied Mathematics and Mechanics (English Edition), 38(7), 1019-1030(2017) https://doi.org/10.1007/s10483-017-2220-6 |
[12] | LU, Z. Q., LI, K., DING, H., and CHEN, L. Q. Nonlinear energy harvesting based on a modified snap-through mechanism. Applied Mathematics and Mechanics (English Edition), 40(1), 167-180(2019) https://doi.org/10.1007/s10483-019-2408-9 |
[13] | TIAN, L., RONG, K. J., ZHANG, P., and LIU, Y. P. Vibration control of a power transmission tower with pounding tuned mass damper under multi-component seismic excitations. Applied Sciences-Basel, 7, 447(2017) |
[14] | YAMADA, K. Complete passive vibration suppression using multi-layered piezoelectric element, inductor, and resistor. Journal of Sound and Vibration, 387, 16-35(2017) |
[15] | PALAZZO, B., CASTALDO, P., and MARINO, I. The dissipative column:a new hysteretic damper. Building, 5, 163-178(2015) |
[16] | DING, H., ZHU, M. H., and CHEN, L. Q. Dynamic stiffness method for free vibration of an axially moving beam with generalized boundary conditions. Applied Mathematics and Mechanics (English Edition), 40(7), 911-924(2019) https://doi.org/10.1007/s10483-019-2493-8 |
[17] | SHEN,Y. J., XING, Z. Y., YANG, S. P., and SUN, J. Q. Parameters optimization for a novel dynamic vibration absorber. Mechanical Systems and Signal Processing, 133, 106282(2019) |
[18] | SHEN, Y. J., PENG, H. B., LI, X. H., and YANG, S. P. Analytically optimal parameters of dynamic vibration absorber with negative stiffness. Mechanical Systems and Signal Processing, 85, 193-203(2017) |
[19] | AHMADABADI, Z. N. and KHADE, S. E. Nonlinear vibration control of a cantilever beam by a nonlinear energy sink. Mechanism and Machine Theory, 50, 134-149(2012) |
[20] | CHEN, J. E., HE, W., ZHANG, W., YAO, M. H., LIU, J., and SUN, M. Vibration suppression and higher branch responses of beam with parallel nonlinear energy sinks. Nonlinear Dynamics, 91, 885-904(2018) |
[21] | RAGNI, L., DEZI, L., DALLASTA, A., and LEONI, G. HDR devices for the seismic protection of frame structures, experimental results and numerical simulations. Earthquake Engineering and Structural Dynamics, 38, 1199-1217(2009) |
[22] | ZHANG, R., ZHAO, Z. P., and DAI, K. S. Seismic response mitigation of a wind turbine tower using a tuned parallel inerter mass system. Engineering Structures, 180, 29-39(2019) |
[23] | JIN, X. L., CHEN, M. Z., and HUANG, Z. L. Minimization of the beam response using inerterbased passive vibration control configurations. International Journal of Mechanical Sciences, 119, 80-87(2016) |
[24] | DING, H. and CHEN, L. Q. Nonlinear vibration of a slightly curved beam with quasi-zero-stiffness isolators. Nonlinear Dynamics, 95, 2367-2382(2019) |
[25] | ZHENG, L., WANG, Z. X., ZHOU, Y., and LU, X. L. Nonlinear dissipative devices in structural vibration control:a review. Journal of Sound and Vibration, 423, 18-49(2018) |
[26] | LI, K. and DARBY, A. P. An experimental investigation into the use of a buffered impact damper. Journal of Sound and Vibration, 291, 844-860(2006) |
[27] | YANG, Y. Q. and WANG, X. Investigation into the linear velocity response of cantilever beam embedded with impact damper. Journal of Vibration and Control, 25, 1365-1378(2019) |
[28] | CHENG, C. C. and WANG, J. Y. Free vibration analysis of a resilient impact damper. International Journal of Mechanical Sciences, 45, 589-604(2003) |
[29] | AFSHARFARD, A. and FARSHIDIANFAR, A. Free vibration analysis of nonlinear resilient impact dampers. Nonlinear Dynamics, 73, 155-166(2013) |
[30] | DEHGHANNIRI, E., ZAHRAI, S. M., and ROD, A. F. Numerical studies of the conventional impact damper with discrete frequency optimization and uncertainty considerations. Scientia Iranica, 19, 166-178(2012) |
[31] | BAPAT, C. N. and SANKAR, S. Single unit impact damper in free and forced vibration. Journal of Sound and Vibration, 99, 85-94(1985) |
[32] | CHATTERJEE, S., MALLIK, A. K., and GHOSH, A. On impact damper for non-linear vibrating systems. Journal of Sound and Vibration, 187, 403-420(1995) |
[33] | BLAZEJCZYK-OKOLEWSKA, B. Analysis of an impact damper of vibrations. Chaos Solitons and Fractals, 12, 1983-1988(2001) |
[34] | PETERKA, F. and BLAZEJCZYK-OKOLEWSKA, B. Some aspects of the dynamical behavior of the impact damper. Journal of Vibration and Control, 11, 459-479(2005) |
[35] | LI, X. H., SHEN, Y. J., SUN, J. Q., and YANG, S. P. New periodic-chaotic attractors in slow-fast Duffing system with periodic parametric excitation. Scientific Reports, 9, 11185(2019) |
[36] | YIN, S., WEN, G. L., SHEN, Y. K., and XU, H. D. Instability phenomena in impact damper system:from quasi-periodic motion to period-three motion. Journal of Sound and Vibration, 391, 170-179(2017) |
[37] | AOKI, S. and WATANABE, T. An investigation of an impact vibration absorber with hysteresis damping. Journal of Pressure Vessel Technology-Transactions of the ASME, 128, 508-515(2006) |
[38] | GHARIB, M., KARKOUB, M., and GHAMARY, M. Numerical investigation of linear particle chain impact dampers with friction. Mechanical Systems and Signal Processing, 3, 34-40(2016) |
[39] | GHARIB, M., ASCE, A. M., and KARKOUB, M. Experimental investigation of linear particle chain impact dampers in free-vibration suppression. Journal of Structural Engineering, 143, 04016160(2017) |
[40] | IWATA, Y., KOMATSUZAKI, T., KITAYAMA, S., and TAKASAKI, T. Study on optimal impact damper using collision of vibrators. Journal of Sound and Vibration, 361, 66-77(2016) |
[41] | ZINJADE, P. B. and MALLIK, A. K. Impact damper for controlling friction-driven oscillations. Journal of Sound and Vibration, 306, 238-251(2007) |
[42] | BAPAT, C. N. The general motion of an inclined impact damper with friction. Journal of Sound and Vibration, 184, 417-427(1995) |
[43] | WOUW, N. V. D., BOSCH, V. D., KRAKER, D. A., and CAMPEN, D. H. V. Experimental and numerical analysis of nonlinear phenomena in a stochastically excited beam system with impact. Chaos Solitons and Fractals, 9, 1409-1428(1998) |
[44] | CHENG, J. L. and XU, H. Inner mass impact damper for attenuating structure vibration. International Journal of Solids and Structures, 43, 5355-5369(2000) |
[45] | RYU, B. J., HAN, H. H., LEE, G. S., AHN, K. Y., and LEE, C. R. Dynamic response analysis of a cantilevered beam due to an elastic impact. International Journal of Precision Engineering and Manufacturing, 11, 539-547(2010) |
[46] | VINAYARAVI, R., KUMARESAN, D., JAYARAJ, K., ASRAFF, A. K., and MUTHUKUMAR, R. Experimental investigation and theoretical modelling of an impact damper. Journal of Sound and Vibration, 332, 1324-1334(2013) |
[47] | JAM, J. E. and AFSHARFARD, A. Application of single unit impact dampers to reduce undesired vibration of the 3R robot arms. International Journal of Aerospace Sciences, 2, 49-54(2013) |
[48] | DU, Y. C. and WANG, S. L. Modeling the fine particle impact damper. International Journal of Mechanical Sciences, 52, 1015-1022(2010) |
[49] | JADHAV, T. A. and AWASARE, P. J. Enhancement of particle damping effectiveness using multiple cell enclosure. Journal of Vibration and Control, 22, 1516-1525(2016) |
[50] | LI, S. L. and TANG, J. On vibration suppression and energy dissipation using tuned mass particle damper. Journal of Vibration and Acoustics, 139, 011008(2017) |
[51] | SNOUN, C. and TRIGUI, M. Design parameters optimization of a particles impact damper. International Journal on Interactive Design and Manufacturing, 12, 1283-1297(2018) |
[52] | DJEMAL, F., CHAARI, R., GAFSI, W., CHAARI, F., and HADDAR, M. Passive vibration suppression using ball impact damper absorber. Applied Acoustics, 147, 72-76(2019) |
[53] | THEURICH, T., GROSS, J., and KRACK, M. Effects of modal energy scattering and friction on the resonance mitigation with an impact absorber. Journal of Sound and Vibration, 442, 71-89(2019) |
[54] | MISRA, A. and CHEUNG, J. Particle motion and energy distribution in tumbling ball mills. Powder Technology, 105, 222-227(1999) |
[55] | JANKOWSKI, R. Analytical expression between the impact damping ratio and the coefficient of restitution in the non-linear viscoelastic model of structural pounding. Earthquake Engineering and Structural Dynamics, 35(4), 517-524(2016) |
[56] | YE, S. Q., MAO, X. Y., DING, H., JI, J. C., and CHEN, L. Q. Nonlinear vibrations of a slightly curved beam with nonlinear boundary conditions. International Journal of Mechanical Sciences, 168, 105294(2020) |
[57] | CHEN, H. Y., MAO, X. Y., DING, H., and CHEN, L. Q. Elimination of multimode resonances of composite plate by inertial nonlinear energy sinks. Mechanical Systems and Signal Processing, 135, 106383(2020) |
[1] | Guilin WEN, Yu LIN, Junfeng HE. A quasi-zero-stiffness isolator with a shear-thinning viscous damper [J]. Applied Mathematics and Mechanics (English Edition), 2022, 43(3): 311-326. |
[2] | Ming LIU, Zhi LI, Xiaodong YANG, Wei ZHANG, C. W. LIM. Dynamic analysis of a deployable/retractable damped cantilever beam [J]. Applied Mathematics and Mechanics (English Edition), 2020, 41(9): 1321-1332. |
[3] | M. HAJHOSSEINI, M. RAFEEYAN. Modeling and analysis of piezoelectric beam with periodically variable cross-sections for vibration energy harvesting [J]. Applied Mathematics and Mechanics (English Edition), 2016, 37(8): 1053-1066. |
[4] | Yanmei YUE, Xiaofen YE, Kaiyu XU. Analytical solutions for plane problem of functionally graded magnetoelectric cantilever beam [J]. Applied Mathematics and Mechanics (English Edition), 2015, 36(7): 955-970. |
[5] | Junhua ZHU, Renhuai LIU. Sensitivity analysis of pull-in voltage for RF MEMS switch based on modified couple stress theory [J]. Applied Mathematics and Mechanics (English Edition), 2015, 36(12): 1555-1568. |
[6] | HU Ming-Yong;WANG An-Wen;ZHANG Xiang-Ming. Approximate analytical solutions and experimental analysis for transient response of constrained damping cantilever beam [J]. Applied Mathematics and Mechanics (English Edition), 2010, 31(11): 1359-1370. |
[7] | HE Xiao-ting;CHEN Shan-lin. BIPARAMETRIC PERTURBATION SOLUTIONS OF LARGE DEFLECTION PROBLEM OF CANTILEVER BEAMS [J]. Applied Mathematics and Mechanics (English Edition), 2006, 27(4): 453-460 . |
[8] | CHIEN Wei-zang . SECOND ORDER APPROXIMATION SOLUTION OF NONLINEAR LARGE DEFLECTION PROBLEMS OF YONGJIANG RAILWAY BRIDGE IN NINGBO [J]. Applied Mathematics and Mechanics (English Edition), 2002, 23(5): 493-506. |
Viewed | ||||||
Full text |
|
|||||
Abstract |
|
|||||