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[1]吕平,陈凯华,黄微波,何鑫,何筱姗.环形阻尼结构设计及其阻尼层厚度的优化研究[J].防灾减灾工程学报,2016,36(02):290-294.
吕平, 陈凯华, 黄微波, et al. Research on Annular Damping Structure Design and Optimization of Damping Layer Thickness[J]. 2016, 36(2): 290-294.
[1]吕平,陈凯华,黄微波,何鑫,何筱姗.环形阻尼结构设计及其阻尼层厚度的优化研究[J].防灾减灾工程学报,2016,36(02):290-294. DOI: 10.13409/j.cnki.jdpme.2016.02.018.
吕平, 陈凯华, 黄微波, et al. Research on Annular Damping Structure Design and Optimization of Damping Layer Thickness[J]. 2016, 36(2): 290-294. DOI: 10.13409/j.cnki.jdpme.2016.02.018.
模拟地铁盾构隧道结构
设计了环形自由阻尼结构和环形约束阻尼结构。通过自由梁单点激振实验
探讨了阻尼层厚度对两种结构的复合损耗因子、振动加速度级等阻尼性能的影响规律
继而优化阻尼层厚度。环形自由阻尼结构实验结果显示:当阻尼层厚度在17 mm范围增加时
结构振动加速度幅值比无阻尼结构分别降低了1.1%65.6%;同时
各阶复合损耗因子及增幅均逐渐增加
振动加速度级逐渐降低。环形约束阻尼结构实验结果显示:当结构无阻尼、阻尼层厚度为1、3mm时
后者的复合损耗因子相对前者分别增加了18.75%、8.91%
而当阻尼层厚度增至3mm以上时
结构复合损耗因子变化不大。研究结果显示:环形自由阻尼结构的阻尼性能随阻尼层厚度的增加而增强
环形约束阻尼结构在阻尼层厚度为3mm时具有较好的阻尼性能。
Two kinds of damping structures
annular free damping structure and annular constrained damping structure
were designed to simulate the structure used in the damping system of subway shield tunnel.Through the free beam single-point excitation experiment
the effect law of the thickness of the damping layers on the damping performance
such as composite loss factor and vibration acceleration level
was discussed.Then
the optimal thicknesses of the damping layers of the two kinds of structures were found.The experiment results of annular free damping structure show that when the thickness of damping layer ranges from 1mm to 7mm
the vibration acceleration amplitude i
s reduced by 1.1%
6
5.6% respectively than the undamped structure.Meanwhile
the composite loss factor and its amplification increase
but the vibration acceleration level reduces gradually.The experiment results of annular constrained damping structure show that when the structure is undamped and the damping layer thickness of the damped structure are1 mm and 3mm
the composite loss factor of the latter are increased by 18.75%
8.91%respectively than the former.On the other hand
when the thickness increases to over 3mm
the composite loss factor changes little.Results of this research indicate that the damping performance of annular free damping structure increases with the increase of damping layer thickness.The annular constrained damping structure has better damping performance when its damping layer thickness is 3mm.
影响约束阻尼结构阻尼性能的因素 [J]. 吕平,高金岗,李晶,伯忠维. 噪声与振动控制 . 2014(05)
约束阻尼结构的双向渐进拓扑优化 [J]. 房占鹏,郑玲. 振动与冲击 . 2014(08)
阻尼层厚度对结构阻尼性能的影响 [J]. 吕平,盖盼盼,伯仲维,黄舰. 噪声与振动控制 . 2013(02)
青岛地铁减振降噪粘弹性阻尼材料及其约束阻尼结构研究 [D]. 张智超. 青岛理工大学 2014
粘弹阻尼减振降噪材料的阻尼性能及约束阻尼结构研究 [D]. 马学强. 青岛理工大学 2010
粘弹性夹层板振动特性的有限元分析 [D]. 张敬莹. 大连理工大学 2007
模态分析理论与试验[M]. 北京理工大学出版社 , (比)沃德·海伦(WardHeylen)等著, 2001
阻尼技术的工程应用[M]. 清华大学出版社 , 戴德沛主编, 1991
Vibration and dynamic stability of a traveling sandwich beam [J] . Wen-Pei Yang,Lien-Wen Chen,Ching-Cheng Wang. Journal of Sound and Vibration . 2004 (3)
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