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Active Low-frequency Vertical Vibration Isolation System for Precision Measurements 被引量:6
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作者 WU Kang LI Gang +1 位作者 HU Hua WANG Lijun 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2017年第1期164-169,共6页
Low-fi'equency vertical vibration isolation systems play important roles in precision measurements to reduce seismic and environmental vibration noise. Several types of active vibration isolation systems have been de... Low-fi'equency vertical vibration isolation systems play important roles in precision measurements to reduce seismic and environmental vibration noise. Several types of active vibration isolation systems have been developed. However, few researches focus on how to optimize the test mass install position in order to improve the vibration transmissibility. An active low-frequency vertical vibration isolation system based on an earlier instrument, the Super Spring, is designed and implemented. The system, which is simple and compact, consists of two stages: a parallelogram-shaped linkage to ensure vertical motion, and a simple spring-mass system. The theoretical analysis of the vibration isolation system is presented, including terms erroneously ignored before. By carefully choosing the mechanical parameters according to the above analysis and using feedback control, the resonance frequency of the system is reduced from 2.3 to 0.03 Hz, a reduction by a factor of more than 75. The vibration isolation system is installed as an inertial reference in an absolute gravimeter, where it improved the scatter of the absolute gravity values by a factor of 5. The experimental results verifies the improved performance of the isolation system, making it particularly suitable for precision experiments. The improved vertical vibration isolation system can be used as a prototype for designing high-performance active vertical isolation systems. An improved theoretical model of this active vibration isolation system with beam-pivot configuration is proposed, providing fundamental guidelines for vibration isolator design and assembling. 展开更多
关键词 vibration isolation vertical low frequency active
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Multi-layer quasi-zero-stiffness meta-structure for high-efficiency vibration isolation at low frequency
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作者 Jiahao ZHOU Jiaxi ZHOU +3 位作者 Hongbin PAN Kai WANG Changqi CAI Guilin WEN 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2024年第7期1189-1208,共20页
An easily stackable multi-layer quasi-zero-stiffness(ML-QZS)meta-structure is proposed to achieve highly efficient vibration isolation performance at low frequency.First,the distributed shape optimization method is us... An easily stackable multi-layer quasi-zero-stiffness(ML-QZS)meta-structure is proposed to achieve highly efficient vibration isolation performance at low frequency.First,the distributed shape optimization method is used to design the unit cel,i.e.,the single-layer QZS(SL-QZS)meta-structure.Second,the stiffness feature of the unit cell is investigated and verified through static experiments.Third,the unit cells are stacked one by one along the direction of vibration isolation,and thus the ML-QZS meta-structure is constructed.Fourth,the dynamic modeling of the ML-QZS vibration isolation metastructure is conducted,and the dynamic responses are obtained from the equations of motion,and verified by finite element(FE)simulations.Finally,a prototype of the ML-QZS vibration isolation meta-structure is fabricated by additive manufacturing,and the vibration isolation performance is evaluated experimentally.The results show that the vibration isolation performance substantially enhances when the number of unit cells increases.More importantly,the ML-QZS meta-structure can be easily extended in the direction of vibration isolation when the unit cells are properly stacked.Hence,the ML-FQZS vibration isolation meta-structure should be a fascinating solution for highly efficient vibration isolation performance at low frequency. 展开更多
关键词 quasi-zero stiffness(QZS) meta-structure high efficiency low frequency vibration isolation
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DESIGN AND ANALYSIS OF NOVEL ACTIVE ACTUATOR TO CONTROL LOW FREQUENCY VIBRATIONS OF SHAFT SYSTEM 被引量:1
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作者 YU Yilong LIU Changwen +2 位作者 YANG Yanxiang WANG Shuang ZHANG Junhong 《Chinese Journal of Mechanical Engineering》 SCIE EI CAS CSCD 2008年第6期41-47,共7页
Aiming at providing with high-load capability in active vibration control of large-scale rotor system, a new type of active actuator to simultaneously reduce the dangers of low frequency flexural and torsional vibrati... Aiming at providing with high-load capability in active vibration control of large-scale rotor system, a new type of active actuator to simultaneously reduce the dangers of low frequency flexural and torsional vibrations is designed. The actuator employs electro-hydraulic system and can provide a high and circumferential load. To initialize new research, the characteristics of various kinds of active actuators to control rotor shaft vibration are briefly introduced. The purpose of this paper is to introduce the preliminary results via presenting the structure, functions and operating principles, in particular, the working process of the electro-hydraulic system of the new actuator which includes a set of high speed electromagnetic valves and a series of sloping cone-shaped openings, and presenting the transmission relationships among the control parameters from control signals into the valves to active load onto shaft. The course of the work is dynamic, and a series of spatial forces and moments are put on the shaft to get an external resultant force to reduce excitations that induce vibration of shafts. By checking states of vibration, the actuator can control the impulse width and the interval of injection time for applying different control force to a vibration shaft in two circumference directions through the regulating action of a set of combination directional control valves. The results from simulating analysis and experiment show evidence of that this design can satisfy the case of active process of decreasing of flexural and torsional vibrations. 展开更多
关键词 Actuators low frequency vibration active control Large-scale rotation shafts System development
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Dynamics Analysis of Active Variable Stiffness Vibration Isolator for Whole-Spacecraft Systems Based on Nonlinear Output Frequency Response Functions 被引量:3
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作者 Kefan Xu Yewei Zhang +2 位作者 Yunpeng Zhu Jian Zang Liqun Chen 《Acta Mechanica Solida Sinica》 SCIE EI CSCD 2020年第6期731-743,共13页
In order to improve the harsh dynamic environment experienced by heavy rockets during different external excitations,this study presents a novel active variable stiffness vibration isolator(AVS-VI)used as the vibratio... In order to improve the harsh dynamic environment experienced by heavy rockets during different external excitations,this study presents a novel active variable stiffness vibration isolator(AVS-VI)used as the vibration isolation device to reduce excessive vibration of the whole-spacecraft isolation system.The AVS-VI is composed of horizontal stiffness spring,positive stiffness spring,parallelogram linkage mechanism,piezoelectric actuator,acceleration sensor,viscoelastic damping,and PID active controller.Based on the AVS-VI,the generalized vibration transmissibility determined by the nonlinear output frequency response functions and the energy absorption rate is applied to analyze the isolation performance of the whole-spacecraft system with AVS-VI.The AVS-VI can conduct adaptive vibration suppression with variable stiffness to the whole-spacecraft system,and the analysis results indicate that the AVS-VI is efTective in reducing the extravagant vibration of the whole-spacecraft system,where the vibration isolation is decreased up to above 65%under different acceleration excitations.Finally,different parameters of AVS-VI are considered to optimize the whole-spacecraft system based on the generalized vibration transmissibility and the energy absorption rate. 展开更多
关键词 vibration isolation active variable stiffness vibration isolator Nonlinear output frequency response functions(NOFRFs) TRANSMISSIBILITY
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Low-frequency characteristics extension for vibration sensors 被引量:2
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作者 杨学山 高峰 候兴民 《Earthquake Engineering and Engineering Vibration》 SCIE EI CSCD 2004年第1期139-146,共8页
Traditional magneto-electric vibration sensors and servo accelerometers have severe shortcomings when used to measure vibration where low frequency components predominate.A low frequency characteristic extension for v... Traditional magneto-electric vibration sensors and servo accelerometers have severe shortcomings when used to measure vibration where low frequency components predominate.A low frequency characteristic extension for velocity vibration sensors is presented in this paper.The passive circuit technology,active compensation technology and the closed- cycle pole compensation technology are used to extend the measurable range and to improve low frequency characteristics of sensors.Thses three types of low frequency velocity vibration sensors have been developed and widely adopted in China. 展开更多
关键词 vibration sensor low frequency characteristic extension passive circuit technology active compensation technology closed-cycle pole compensation
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A vibration isolator with a controllable quasi-zero stiffness region based on nonlinear force design
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作者 Xinyu LIAN Bing LIU +1 位作者 Huaxia DENG Xinglong GONG 《Applied Mathematics and Mechanics(English Edition)》 SCIE EI CSCD 2024年第8期1279-1294,共16页
To achieve stability optimization in low-frequency vibration control for precision instruments,this paper presents a quasi-zero stiffness(QZS)vibration isolator with adjustable nonlinear stiffness.Additionally,the str... To achieve stability optimization in low-frequency vibration control for precision instruments,this paper presents a quasi-zero stiffness(QZS)vibration isolator with adjustable nonlinear stiffness.Additionally,the stress-magnetism coupling model is established through meticulous theoretical derivation.The controllable QZS interval is constructed via parameter design and magnetic control,effectively segregating the high static stiffness bearing section from the QZS vibration isolation section.Furthermore,a displacement control scheme utilizing a magnetic force is proposed to regulate entry into the QZS working range for the vibration isolation platform.Experimental results demonstrate that the operation within this QZS region reduces the peak-to-peak acceleration signal by approximately 66.7%compared with the operation outside this region,thereby significantly improving the low frequency performance of the QZS vibration isolator. 展开更多
关键词 low frequency NONLINEAR vibration isolator quasi-zero stiffness(QzS)
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抗密频线谱干扰的实时次级通路辨识方法研究
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作者 李彦 尹天齐 +1 位作者 张能 黄晋 《振动与冲击》 北大核心 2025年第4期151-164,共14页
次级通路模型的辨识误差对自适应有源控制算法的稳定性具有显著影响,因此需要准确的次级通路模型。然而,由于难以去除密频干扰的影响,次级通路辨识通常在初级振源关闭、背景噪声较低的情况下进行。但实际工程中,次级通路传递特性是时变... 次级通路模型的辨识误差对自适应有源控制算法的稳定性具有显著影响,因此需要准确的次级通路模型。然而,由于难以去除密频干扰的影响,次级通路辨识通常在初级振源关闭、背景噪声较低的情况下进行。但实际工程中,次级通路传递特性是时变的,模型与实际工作状态存在较大差异,导致自适应控制效果不佳、甚至失稳。为解决这一难题,首先提出了一种基于二阶时频滤波方法的低运算量、高精度辨识次级通路频响函数实部和虚部的方法。然后,分析了有密频干扰情况下实时辨识实部和虚部参数的波动特性规律。最后,提出了抗密频干扰的实时次级通路辨识方法,去除密频干扰引起的辨识参数波动,并获得了稳定、高精度的实时次级通路辨识结果。通过该研究,提供了一种抗密频干扰的实时次级通路辨识方法,可以有效提高隔振装置的自适应控制性能。该研究具有高精度、低运算量等优点,因此在实际工程的时变环境中能快速提供可信的辨识结果,具有较高的实用价值和推广前景。 展开更多
关键词 主被动隔振 自适应控制算法 次级通路实时辨识 相位误差 密频干扰
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调谐黏滞质量阻尼器-浮置板轨道低频隔振性能
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作者 程志宝 张佳硕 石志飞 《河北工业大学学报》 2025年第1期55-63,共9页
传统浮置板轨道结构将浮置板置于隔振器之上形成质量-弹簧系统,该系统可有效隔离1.4倍其特征频率以上的振动,但对低频振动具有放大作用。为改善传统浮置板轨道系统的低频隔振性能,将调谐黏滞质量阻尼器引入浮置板轨道并研究其低频减隔... 传统浮置板轨道结构将浮置板置于隔振器之上形成质量-弹簧系统,该系统可有效隔离1.4倍其特征频率以上的振动,但对低频振动具有放大作用。为改善传统浮置板轨道系统的低频隔振性能,将调谐黏滞质量阻尼器引入浮置板轨道并研究其低频减隔振性能。经理论推导给出浮置板轨道结构传递函数,考虑工程实际中轨道谱的随机性,应用H2优化理论推导了调谐黏滞质量阻尼器的最优参数解析解;搭建车辆-轨道耦合系统瞬态响应仿真系统并验证其正确性,进一步应用其研究移动车辆荷载下的车轨动力响应。研究结果表明:附加调谐黏滞质量阻尼器的浮置板轨道,其固有频率附近的振动得到有效抑制,浮置板加速度峰值衰减率达到78%;浮置板轨道结构在低频区段(小于30 Hz)的隔振性能得到明显提升;传往基础的弹簧支反力有所降低;且不会对列车运行的安全性和稳定性产生影响。该技术可有效解决传统浮置板轨道结构低频隔振性能差的问题。 展开更多
关键词 浮置板轨道 调谐黏滞质量阻尼器 H2优化 车轨耦合 低频隔振
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仿生肢状准零刚度隔振系统的振动特性研究
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作者 刘海超 闫明 +3 位作者 金映丽 孙自强 王开平 杨宁 《振动工程学报》 北大核心 2025年第1期29-38,共10页
在低频隔振领域,针对线性系统存在承载能力不足及传统准零刚度隔振系统存在刚度硬化,非线性跳跃导致系统失稳的问题,以仿生肢状结构作为负刚度元件与正刚度弹簧并联建立了仿生肢状准零刚度隔振系统的力学模型,分析了系统的静力学特性;... 在低频隔振领域,针对线性系统存在承载能力不足及传统准零刚度隔振系统存在刚度硬化,非线性跳跃导致系统失稳的问题,以仿生肢状结构作为负刚度元件与正刚度弹簧并联建立了仿生肢状准零刚度隔振系统的力学模型,分析了系统的静力学特性;基于拉格朗日方程建立动力学模型,采用谐波平衡法进行解析求解;通过理论分析和试验研究对比分析了线性、传统准零刚度隔振系统和仿生肢状准零刚度隔振系统隔振特性,以及激励幅值对系统隔振性能和稳定特性的影响规律。结果表明:相比线性系统和传统准零刚度隔振系统,仿生肢状准零刚度隔振系统不仅保证了系统具有较高的承载能力,而且通过结构参数设计有效降低了位移传递率,拓展了隔振频宽,提高了系统在复杂激励环境中的稳定性和隔振性能。 展开更多
关键词 低频隔振 仿生肢状结构 准零刚度 位移传递率 被动隔振
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新型凸轮-滚轮式准零刚度隔振器特性研究
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作者 王雨桐 张涛 +1 位作者 陈昊天 黄梦婷 《舰船科学技术》 北大核心 2025年第3期55-63,共9页
针对低频振动对舰船筏架及设备造成的危害,基于准零刚度原理,提出一种船用新型弹簧-凸轮-滚轮式非线性隔振器。基于平均法进行求解,计算出隔振器的幅频特性和振动传递特性;从理论计算和试验验证两方面对其动力学特性进行研究。结果表明... 针对低频振动对舰船筏架及设备造成的危害,基于准零刚度原理,提出一种船用新型弹簧-凸轮-滚轮式非线性隔振器。基于平均法进行求解,计算出隔振器的幅频特性和振动传递特性;从理论计算和试验验证两方面对其动力学特性进行研究。结果表明,设计的隔振器的起始隔振频率显著低于线性隔振器,表现出更好的低频隔振性能;该含零刚度区间的非线性隔振器在2~16 Hz范围内均有明显的隔振效果。因此,该非线性隔振器可作为一种超低频隔振储备技术应用于舰船筏架及设备低频减振。 展开更多
关键词 超低频隔振 准零刚度 非线性隔振器 平均法
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组合周期十字减振沟带隙特性及减振性能
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作者 王海洋 翟春鑫 +2 位作者 王珠 冯晋昊 张小毛 《中国安全科学学报》 北大核心 2025年第2期118-126,共9页
为有效抑制工程实践中低频振动,在分析其能带结构及带隙形成机制的基础上,采用有限元方法研究组合周期十字减振沟带隙特性的影响因素,并结合模型试验分析其减振性能。结果表明:组合周期十字减振沟带隙特性主要受周期常数、减振沟深度、... 为有效抑制工程实践中低频振动,在分析其能带结构及带隙形成机制的基础上,采用有限元方法研究组合周期十字减振沟带隙特性的影响因素,并结合模型试验分析其减振性能。结果表明:组合周期十字减振沟带隙特性主要受周期常数、减振沟深度、土体弹性模量和充填介质等因素影响;随着周期常数的增大,组合周期十字减振沟更易获得低频带隙,但是带宽变窄,而通过增大十字减振沟深度获得较大带宽的低频带隙,且带隙数量增多;随着弹性模量的增加,带隙的边界频率同步向高频迁移,通过填充介质获得更为低频且带隙较宽的带隙。试验结果显示,带隙范围内的加速度最大衰减幅度达到0.00124 m/s^(2),带隙频段内的平均振幅衰减系数为0.2062,且最大衰减程度达到98.45%,组合周期十字减振沟具有显著的减振性能。 展开更多
关键词 组合周期 十字减振沟 带隙特性 减振性能 振幅衰减系数 低频带隙
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一种多层曲梁单元的准零刚度隔振器
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作者 肖望强 刘钧 戴宇 《厦门大学学报(自然科学版)》 北大核心 2025年第2期297-306,共10页
[目的]针对传统被动隔振器低频隔振性能不足的问题,提出了一种具有准零刚度(quasi-zero stiffness,QZS)特性的曲梁单元,并将其纵向并联构成一种新型QZS隔振器.[方法]首先,对该隔振器进行静力学分析,建立无量纲力-位移和无量纲刚度-位移... [目的]针对传统被动隔振器低频隔振性能不足的问题,提出了一种具有准零刚度(quasi-zero stiffness,QZS)特性的曲梁单元,并将其纵向并联构成一种新型QZS隔振器.[方法]首先,对该隔振器进行静力学分析,建立无量纲力-位移和无量纲刚度-位移关系式,并研究设计参数对隔振器刚度的影响,进一步得出隔振器在平衡位置处具有零刚度特性的参数条件;其次通过静力学仿真分析不同参数下的零刚度特性.最后,通过动态试验分析了隔振器的隔振效果.[结果]QZS隔振器隔振起始频率为10 Hz,隔振率达到88.78%,其既能兼顾主承载方向的性能又能在低频起良好的隔振性能.[结论]通过对曲梁单元QZS元件进行纵向并联构成一种新型QZS隔振器,保证大承载的情况下,仍具备低频隔振效果. 展开更多
关键词 低频隔振 QZS隔振器 曲梁屈曲理论 多层曲梁单元
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Characterization of an Electromagnetic Vibration Isolator 被引量:1
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作者 Naibiao Zhou Kefu Liu 《Journal of Electromagnetic Analysis and Applications》 2011年第12期519-528,共10页
A novel vibration isolator is constructed by connecting a mechanical spring in parallel with a magnetic spring in order to achieve the property of high-static-low-dynamic stiffness (HSLDS). The HSLDS property of the i... A novel vibration isolator is constructed by connecting a mechanical spring in parallel with a magnetic spring in order to achieve the property of high-static-low-dynamic stiffness (HSLDS). The HSLDS property of the isolator can be tuned off-line or on-line. This study focuses on the characterization of the isolator using a finite element based package. Firstly using the single physics solver, the stiffness behaviours of the mechanical and magnetic springs are determined, respectively. Then using the weakly coupled multi-physics method, the stiffness behaviours of the passive isolator and the semi-active isolator are investigated, respectively. With the found stiffness models, a nonlinear differential equation governing the dynamics of the isolator is solved using the time-dependent solver. The displacement transmissibility ratios of the isolator are obtained. The study confirms that the isolation region of the isolator can be widened through off-line or on-line tuning. 展开更多
关键词 High-Static-low-Dynamic STIFFNESS SPRING SEMI-active vibration ISOLATOR Magnetic SPRING Coupling of Structural MECHANICS and MAGNETICS
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低频大幅隔振器设计及实验 被引量:2
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作者 孙秀婷 孙英超 +1 位作者 钱佳伟 徐鉴 《动力学与控制学报》 2024年第2期59-67,共9页
为了突破传统隔振器刚度和承载能力之间的矛盾,需要隔振器具有高的静态刚度,低动态刚度的特性.如今的准零刚度隔振器技术可以实现低频微幅隔振,但是对于大幅振动,隔振效果并不明显甚至失效,因此突破宽幅隔振成为隔振领域亟待解决的问题... 为了突破传统隔振器刚度和承载能力之间的矛盾,需要隔振器具有高的静态刚度,低动态刚度的特性.如今的准零刚度隔振器技术可以实现低频微幅隔振,但是对于大幅振动,隔振效果并不明显甚至失效,因此突破宽幅隔振成为隔振领域亟待解决的问题.为此,我们利用多稳态折纸通过并联装配的方式,构造具有宽幅零刚度区间的折纸型隔振器,以解决传统隔振器振动抑制幅值较低的问题.本文建立了宽零刚度隔振器模型,提出宽幅零刚度的设计方法,并通过动力学分析分析了模型的隔振效果.最后搭建试验样机,验证了理论的正确性.这种设计打破了传统准零刚度隔振器单点准零的设计准则,能够在一个大幅范围内保证稳定性,同时实现零刚度,极大拓宽了隔振器的适用范围.这种设计理念能够被用在新隔振材料设计和航空、船舶等大幅低频动态环境中. 展开更多
关键词 宽范围零刚度 高静低动系统 非线性隔振 低频激励
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基于准零刚度支撑结构的低频主动隔振平台研究
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作者 李青 何柯达 +4 位作者 杨鸿杰 薛羽竣 马超 王天舒 刘磊 《振动与冲击》 EI CSCD 北大核心 2024年第16期84-91,117,共9页
针对量子科学试验、精密制造等先进应用对亚赫兹微振动的抑制需求,研究基于准零刚度支撑结构和分离式音圈作动器的低频主动隔振技术。首先,给出一种低频主动隔振平台设计方法,考虑准零刚度结构的等效动力学特性,采用牛顿-欧拉方法建立... 针对量子科学试验、精密制造等先进应用对亚赫兹微振动的抑制需求,研究基于准零刚度支撑结构和分离式音圈作动器的低频主动隔振技术。首先,给出一种低频主动隔振平台设计方法,考虑准零刚度结构的等效动力学特性,采用牛顿-欧拉方法建立平台的动力学模型;然后,基于所建立动力学模型分析多自由度耦合下平台的扰动传递特性并设计主动隔振算法;最后,研制低频主动隔振平台进行试验验证。试验结果表明,所开发主动隔振平台能够在三个线自由度上实现优于98.3%的微振动抑制效果,在0.1~10.0 Hz内载荷z方向微振动小于1.3×10^(-8) g。 展开更多
关键词 低频微振动 主动隔振 准零刚度结构 音圈作动器
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Low frequency vibration tests on a floating slab track in an underground laboratory 被引量:5
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作者 De-yun DING Wei-ning LIU +2 位作者 Ke-fei LI Xiao-jing SUN Wei-feng LIU 《Journal of Zhejiang University-Science A(Applied Physics & Engineering)》 SCIE EI CAS CSCD 2011年第5期345-359,共15页
Low frequency vibrations induced by underground railways have attracted increasing attention in recent years. To obtain the characteristics of low frequency vibrations and the low frequency performance of a floating s... Low frequency vibrations induced by underground railways have attracted increasing attention in recent years. To obtain the characteristics of low frequency vibrations and the low frequency performance of a floating slab track (FST), low frequency vibration tests on an FST in an underground laboratory at Beijing Jiaotong University were carried out. The FST and an unbalanced shaker SBZ30 for dynamic simulation were designed for use in low frequency vibration experiments. Vibration measurements were performed on the bogie of the unbalanced shaker, the rail, the slab, the tunnel invert, the tunnel wall, the tunnel apex, and on the ground surface at distances varying from 0 to 80 m from the track. Measurements were also made on several floors of an adjacent building. Detailed results of low frequency vibration tests were reported. The attenuation of low frequency vibrations with the distance from the track was presented, as well as the responses of different floors of the building. The experimental results could be regarded as a reference for developing methods to control low frequency vibrations and for adopting countermeasures. 展开更多
关键词 low frequency vibrations Laboratory tests Floating slab track (FST) vibration isolation efficiency
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基于几何负刚度弹簧结构的超低频有源垂直隔振系统研制
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作者 伍康 徐子涵 +3 位作者 周铁生 要佳敏 郭梅影 张嵘 《地球物理学报》 SCIE EI CAS CSCD 北大核心 2024年第12期4515-4521,共7页
绝对重力仪在地球物理、精密计量、资源勘探等科学研究和工程技术领域有广泛应用.地面振动噪声严重制约绝对重力测量精度.超低频垂直隔振系统可以显著提高绝对重力测量精度.本文研制的超低频有源垂直隔振系统,利用几何负刚度弹簧结构静... 绝对重力仪在地球物理、精密计量、资源勘探等科学研究和工程技术领域有广泛应用.地面振动噪声严重制约绝对重力测量精度.超低频垂直隔振系统可以显著提高绝对重力测量精度.本文研制的超低频有源垂直隔振系统,利用几何负刚度弹簧结构静刚度大、动刚度小的优点,以其替代经典垂直隔振系统中的负载支撑弹簧,通过精密位移检测和伺服反馈控制实现超长的谐振周期.本文详细介绍了该系统的等效物理模型和控制模型,推导了闭环系统的传递函数.所研制的样机闭环周期超过20 s,相关试验验证了系统可以支撑绝对重力仪实现微伽级高精度测量,并且可以在实验室环境下长期稳定工作.该系统的负载安装在结构顶部,适用于激光干涉和原子干涉两种体制的绝对重力仪. 展开更多
关键词 垂直隔振 超低频 几何负刚度 绝对重力仪
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准零刚度非线性低频隔振器理论研究及应用
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作者 张建润 余康凡 卢熹 《机械制造与自动化》 2024年第6期1-11,共11页
隔振器在各行业中得到广泛应用,传统线性隔离器因其简单、低廉、高可靠性和鲁棒性被广泛应用于工业中,然而由于其仅能够在激励频率大于√2倍固有频率时才能有效抑制振动,故存在静态承载能力和低频隔振性能之间的固有矛盾。近几十年来发... 隔振器在各行业中得到广泛应用,传统线性隔离器因其简单、低廉、高可靠性和鲁棒性被广泛应用于工业中,然而由于其仅能够在激励频率大于√2倍固有频率时才能有效抑制振动,故存在静态承载能力和低频隔振性能之间的固有矛盾。近几十年来发展起来的非线性准零刚度(QZS)隔振器可以在保证高承载能力的前提下降低动刚度,从而将隔振频带拓宽到低频区域。从QZS隔振器的构造方法、优化与改进设计和工程应用等方面综述QZS隔振的主要研究进展,总结现有研究的不足,展望未来发展方向,为相关领域的研究人员提供参考。 展开更多
关键词 非线性隔振 低频振动控制 准零刚度隔振器 工程应用 发展趋势
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新型准零刚度空气悬架系统的设计与分析
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作者 孙丽琴 吴海萌 《噪声与振动控制》 CSCD 北大核心 2024年第5期1-7,43,共8页
为提高商用汽车在低频外部激励环境下的隔振性能以及行驶平顺性,基于准零刚度理论,采用正负刚度并联的方式,将负刚度碟形弹簧组与正刚度空气弹簧相结合,设计一种新型准零刚度悬架系统。通过静力学特性分析,建立力位移和刚度位移表达式,... 为提高商用汽车在低频外部激励环境下的隔振性能以及行驶平顺性,基于准零刚度理论,采用正负刚度并联的方式,将负刚度碟形弹簧组与正刚度空气弹簧相结合,设计一种新型准零刚度悬架系统。通过静力学特性分析,建立力位移和刚度位移表达式,得到系统达到准零刚度的参数条件;通过动力学特性分析,建立系统的二自由度模型和简谐力作用下的非线性运动微分方程,得到力传递率特性曲线并对其进行分析。结果表明新结构的低频隔振性能显著提升。基于刚度位移表达式建立2自由度1/4悬架模型,分别对准零刚度系统与传统系统的垂向加速度、悬架动行程和轮胎动载荷等平顺性指标的差异性进行分析,仿真结果表明,该准零刚度系统的平顺性改善效果亦优于传统结构。 展开更多
关键词 振动与波 准零刚度 碟形弹簧 低频隔振 动态特性分析 平顺性
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仿生隔振器设计方法研究进展 被引量:1
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作者 肖国栋 孙秀婷 《动力学与控制学报》 2024年第2期4-22,共19页
基于仿生学的思想,通过模仿生物系统的结构几何构成特性,创新优化隔振模型是当今隔振领域的热门问题.本文基于仿生灵感来源的不同,对现有的仿生隔振器进行了系统的分类,并对不同设计原理的仿生隔振器恢复力本构与隔振性能做了详细的阐... 基于仿生学的思想,通过模仿生物系统的结构几何构成特性,创新优化隔振模型是当今隔振领域的热门问题.本文基于仿生灵感来源的不同,对现有的仿生隔振器进行了系统的分类,并对不同设计原理的仿生隔振器恢复力本构与隔振性能做了详细的阐述和对比,旨在通过隔振器隔振频带的横向对比厘清几何构型与可调参数的影响,以此厘清隔振器几何设计和隔振性能的关系.并且,本文展望了未来仿生隔振器的发展前景和研究方向. 展开更多
关键词 仿生隔振器 低频隔振 非线性恢复力 可调控参数
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