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1.
本文从力学的角度出发综述了摈睛为国内外在压力系统的非线线和混沌方面的主要成果和发展前景。首先,本文阐述了非线性动力系统发展的必要性,其欠,我们详细的综述了非线性振动和局部分叉,全局分叉和混沌,非线笥随机系统的振动和分叉,和某些应用基础理论问题等四个方面近期国内外的主要研究成果。  相似文献   

2.
运动柔性梁非线性振动主动控制的建模与分析   总被引:2,自引:0,他引:2  
采用运动参考系方法,根据Jourdain动力学普遍方程,导出了具有给定空间运动的弹性结构的有限元方程,进而得到其闭环振动控制方程,采用分段线性化的思想,由线性二次优化理论导出了有闭环反馈控制的以分段压电片作为执行器的运动柔性杆梁结构非线性振动的主动控制的分析方法,两个算例验证了所提方法的有效性。  相似文献   

3.
本文系统地总结了对复杂结构系统进行非线性振动分析时基于混合坐标法和模态综合法的自由度压缩技术,提出了局部非线性系统振动分析的具体接子结构的模态综合法,并给出了处例。最的指了利用非线性动力系统进行二次降低来研究超高自由度非线性系统复杂动力学行之一思路。  相似文献   

4.
本文提出了考虑炮口激波结构中的正激波强度、化学动力学和湍流射流混合的预测炮口二次燃烧点火的模型,得到了与实验相一致的结果。  相似文献   

5.
郭梓龙  王琳  倪樵  贾青青  杨文正 《力学学报》2021,53(6):1769-1780
输流管道广泛应用于机械、航空、核电和石油等重要工程领域.为防止管道结构因流致振动破坏造成的损失, 很有必要对其稳定性、动力学响应及其调控进行深入研究.本文提出一种由惯容器、弹簧和阻尼器并联组成的减振器模型, 研究了这种接地惯容减振器对悬臂输流管稳定性和非线性振动的影响. 首先, 基于哈密顿原理给出了带有接地惯容减振器非保守系统的非线性动力学模型; 然后, 利用高阶伽辽金方法对非线性方程进行离散化; 最后, 分别从线性和非线性角度分析了不同减振器参数下输流管道的被动控制效果, 着重讨论了惯容系数和减振器安装位置对悬臂管稳定性和动态响应的影响机制.线性理论模型的研究结果显示, 接地惯容减振器可显著影响悬臂管的失稳临界流速, 故通过调节减振器参数能有效提高输流管道的稳定性;惯容系数和弹簧刚度对系统稳定性的控制效果还与减振器的安装位置密切相关.非线性理论模型的分析结果显示, 惯容系数和减振器位置对输流管的非线性动态响应也有显著影响, 且这种影响还依赖于管道的流速取值; 在某些参数条件下, 减振器还可使输流管道由周期运动演化为复杂的混沌行为. 本文研究结果表明, 通过设计合理的惯容式减振器参数, 可提升悬臂输流管道的稳定性并有效抑制其颤振幅值.   相似文献   

6.
本文分析了结构振动控制系统的特点,提出了一种结构振动的非线性离散控制方案,该方案仅利用受控结构的输出信号,实现容易,对结构参数变化具有一定的鲁棒性,本文还建立了一套具有浮点运算功能的结构振动计算机控制装置,并就某受控结进行了试验,试验表明,该非线性控制方案是可行的,理论结果与试验结果具有良好的一致性。  相似文献   

7.
非线性振动一种稳定的模糊控制方法研究   总被引:2,自引:0,他引:2  
由于非线性振动系统的非线性本质,在于传统控制理论的线性控制器用于非线性振动控制效果不佳。本文针对非线性振动系统提出了一种模糊自适应滑模控制方案。  相似文献   

8.
针对具有局部非线性的结构振动主动控制问题,首先,利用Newmark-β法推导了局部非线性结构动力响应的时域显式递推表达式。然后,基于该表达式,一方面建立了局部非线性结构振动预测模型,并借鉴模型的线性化思想对非线性环节进行处理,提出考虑局部非线性结构振动的模型预测控制算法;另一方面,在获取各仿真时刻的预测初始状态时,为避免直接对非线性动力学方程所有维度的完全迭代求解,推导了时域显式降维迭代方法,从而使在线计算效率得到显著提高。最后,分别以局部非线性弹簧振子系统在简谐激励作用下的无控动力学分析和含粘滞阻尼器毗邻框架建筑结构在地震激励作用下的受控振动为例,进行数值仿真,结果表明,本文算法计算准确且控制效果较好。  相似文献   

9.
计算非线性振动系统高阶渐近解的Normal Form方法   总被引:1,自引:0,他引:1  
利用非线性振动理论,计算非一笥振动系统的高阶渐近解,从理论上讲无任何障碍,但由于计算工作需要进行积分等十分繁琐冗长的运算,使得人们只能非线性振动系统的一阶和二阶近似,而为了研究在退化情况下,非线性动力系统的复杂动力学行为、分岔特性,必须计算该系统的高阶近似解,本文给出了一种Normal Form方法计算高阶渐近解的实用方法,利用这种方法可非常方便地计算出非线性振动系统的七阶近似解。  相似文献   

10.
基于"三心重合"的设计思想和飞行器的姿态需求,建立了含立方项非线性刚度的惯组小系统动力学模型。提出了惯组小系统存在系统动刚度和减振器动刚度的"双层级"概念。利用龙格-库塔法求解渐软非线性系统对正弦扫频激励的响应,得出减振器动刚度存在对激励幅值和激励频率的敏感区域,采用动刚度曲线表征了减振器的非线性软化特性。利用虚弧长延拓法计算惯组小系统的非线性频响函数和传递特性,预示了高量级振动下减振器的动力失稳现象。通过惯组小系统传递特性试验,验证了减振器具有渐软刚度的非线性特性。扫频法计算结果与正弦扫频试验结果的吻合度达到96.5%,检验了构建模型的正确性。所建立的模型工程应用简便,对惯组小系统非线性特性的预示具有较高的精度,可供飞行器姿控系统设计时参考。  相似文献   

11.
吕嘉琳  牛江川  申永军  杨绍普 《力学学报》2021,53(11):3124-3133
研究了线性动力吸振器复合非线性能量阱对线性镗杆在外部简谐激励下的振动控制. 忽略镗杆系统中的非线性因素, 建立了附加线性动力吸振器和非线性能量阱的镗杆系统的三自由度运动方程, 研究了附加复合式动力吸振器的镗杆系统的受迫振动. 通过平均法得到了附加复合式动力吸振器的镗杆系统的近似解析解, 并利用数值解验证了近似解析解的准确性, 两者具有很好的一致性. 利用近似解析解详细分析了线性动力吸振器和非线性能量阱的参数对镗杆振动抑制性能的影响. 对给定质量的复合式动力吸振器进行了参数优化, 其中线性动力吸振器参数采用H优化方法的近似解析解进行了优化, 非线性能量阱的阻尼利用系统的近似解析解进行了优化. 分析结果表明, 线性动力吸振器与非线性能量阱组合可以有效抑制线性镗杆系统的振动, 而且采用参数优化后的复合式动力吸振器可以获得更好的减振效果. 通过附加非线性能量阱, 不但可以提高线性动力吸振器的振动抑制效果, 而且还可以提高振动控制系统的鲁棒性.   相似文献   

12.
Abstract

In this paper, details of the design work for a tuned vibration absorber to be used on a hollow cylindrical structure is presented. The vibration problem is of resonant type and the tuned vibration absorber is designed to suppress the displacement vibration response of the free end of the slender hollow structure dominated by the contribution of its lowest transverse vibration modes. The structure is modeled using a commercial finite element software. Finite element model of the structure is verified using experimentally obtained frequency response functions and modal parameters. Effective parameters of the tuned vibration absorber design are then determined based on finite element analysis simulations of the vibration suppression performance of the tuned vibration absorber as it is used on the structure. Details of the tuned vibration absorber design are determined and a prototype is fabricated. Prototype tuned vibration absorber is then characterized experimentally both as a standalone system and also as it is used on the main structure. Vibration reduction performance of the physical prototype of the tuned vibration absorber is also compared with its vibration reduction performance estimated from finite element analysis simulations so that the analysis based design process can be validated.

Communicated by Dumitru Caruntu.  相似文献   

13.
时滞非线性动力吸振器的减振机理   总被引:4,自引:1,他引:3  
赵艳影  徐鉴 《力学学报》2008,40(1):98-106
对一个带有时滞非线性动力吸振器的两自由度结构,采用多尺度法研究了时滞非线性动力吸振器对主系统的减振性能,得到了主系统的振幅-时滞响应曲线.研究结果表明,对时滞非线性动力吸振器,可以通过调节反馈增益系数和时滞控制主系统的振动. 研究还发现,对确定的反馈增益系数,可以存在时滞的一些调节区域,时滞非线性动力吸振器可以减小主系统的振动. 并且在时滞的这些可调区域里,存在一个``最大减振点'对应这一反馈增益系数下主系统振幅的最小值.对不同的反馈增益系数,``最大减振点'对应的主系统的振幅也不同.因此能够找到一组反馈增益系数和时滞量的最佳值,最大程度地减小主系统的振动.研究结果表明,当反馈增益系数和时滞量调到最佳值时,主系统的振动较无时滞非线性动力吸振器可以减少90{\%}左右, 数值模拟也证实了解析结果的正确性.   相似文献   

14.
动力吸振器作为一种振动控制单元被广泛运用于各种工程场合,但传统的线性吸振器只能实现窄带振动控制.文章在线性吸振器的基础上引入对称水平弹簧构建线性刚度与非线性刚度相结合的组合刚度非线性吸振器,以提升吸振器的吸振性能.考虑实际工程中可能的安装方式,分别建立水平弹簧接地安装和不接地安装的组合刚度非线性吸振器模型,利用谐波平衡法结合弧长延拓法解析求解动力学响应,并与数值结果相互验证,证明了求解结果的准确性.随后分析比较两种组合刚度非线性吸振器与线性吸振器以及非线性能量阱之间的吸振性能,发现水平弹簧接地安装类型的组合刚度非线性吸振器在保留线性吸振器优势的同时又改善其吸振频带窄的缺点,且与非线性能量阱相比在主共振频率附近的较宽频内吸振性能更优.在此基础上,讨论了水平弹簧参数以及吸振器阻尼对主结构振动幅频响应和稳定性的影响,最后观察分析主结构幅频响应曲线不稳定区内的复杂动力学行为.研究结果表明合适的设计参数能够使得主结构振动峰值较低的同时,频响曲线不稳定运动区域的范围也较小.  相似文献   

15.
This paper analytically investigates the nonlinear dynamics of order-tuned vibration absorbers applied to cyclic rotating flexible structures under traveling wave (TW) engine-order excitation. The primary cyclic structure is assumed to be governed by linear vibrations and the nonlinear absorber response arises from large amplitude kinematic effects. These dynamics are captured by a lumped-parameter model that consists of N blades with one blade mode and one absorber per blade, which are arranged with cyclic symmetry on a rotating disk. The governing equations of motion are formulated for arbitrary absorber paths to allow investigation of the absorber path design for nonlinear response. This paper extends previous work by the authors, which considered the linearized blade and absorber dynamics of a similar system. Several intriguing features of the dynamics were uncovered, most notably the existence of an absorber tuning range that avoids resonance at any rotation speed. Of particular interest is the existence and stability of the steady-state TW response to TW excitation, as experienced in turbomachinery, and how these are affected by selection of the absorber paths, which fix the linear and nonlinear tuning characteristics. It is shown that the TW response, which is unique for the linearized system, also exists for the weakly nonlinear model and can be captured by an equivalent two degree of freedom model obtained using the symmetry of the excitation and system response. The forced response exhibits the usual characteristics of a weakly nonlinear system, specifically, bistability and the attendant hysteresis near resonance. More significantly, it does not experience any additional instabilities associated with the symmetry. That is, the desired TW response is robust to nonlinear effects in the absorber, which allows use of the simple equivalent model for selection of absorber tuning parameters. For good performance and robustness, the linear absorber tuning should be in the “no-resonance zone” described by the linear theory and the absorber paths should have a slightly softening nonlinear characteristic.  相似文献   

16.
Super-harmonic resonances may appear in the forced response of a weakly nonlinear oscillator having cubic nonlinearity, when the forcing frequency is approximately equal to one-third of the linearized natural frequency. Under super-harmonic resonance conditions, the frequency-response curve of the amplitude of the free-oscillation terms may exhibit saddle-node bifurcations, jump and hysteresis phenomena. A linear vibration absorber is used to suppress the super-harmonic resonance response of a cubically nonlinear oscillator with external excitation. The absorber can be considered as a small mass-spring-damper oscillator and thus does not adversely affect the dynamic performance of the nonlinear primary oscillator. It is shown that such a vibration absorber is effective in suppressing the super-harmonic resonance response and eliminating saddle-node bifurcations and jump phenomena of the nonlinear oscillator. Numerical examples are given to illustrate the effectiveness of the absorber in attenuating the super-harmonic resonance response.  相似文献   

17.
A passive vibration absorber, termed the nonlinear tuned vibration absorber (NLTVA), is designed for the suppression of chatter vibrations. Unlike most passive vibration absorbers proposed in the literature for suppressing machine tool vibrations, the NLTVA comprises both a linear and a nonlinear restoring force. Its linear characteristics are tuned in order to optimize the stability properties of the machining operation, while its nonlinear properties are chosen in order to control the bifurcation behavior of the system and guarantee robustness of stable operation. In this study, the NLTVA is applied to turning machining.  相似文献   

18.
Ashour  O. N.  Nayfeh  A. H. 《Nonlinear dynamics》2002,28(3-4):309-322
A nonlinear adaptive vibration absorber to control the vibrations offlexible structures is investigated. The absorber is based on thesaturation phenomenon associated with dynamical systems possessingquadratic nonlinearities and a two-to-one internal resonance. Thetechnique is implemented by coupling a second-order controller with thestructure through a sensor and an actuator. Energy is exchanged betweenthe structure and the controller and, near resonance, the structure'sresponse saturates to a small value.Experimental results are presented for the control of a rectangularplate and a cantilever beam using piezoelectric ceramics andmagnetostrictive alloys as actuators. The control technique isimplemented using a digital signal processing board and a modelingsoftware. The control strategy is made adaptive by incorporating anefficient frequency-measurement technique. This is validated bysuccessfully testing the control strategy for a nonconventionalproblem, where nonlinear effects hinder the application of thenonadaptive controller.  相似文献   

19.
时变参数时滞减振控制研究   总被引:6,自引:5,他引:1  
时滞动力吸振器对谐波激励有着良好的减振控制效果,但对随机激励的减振控制效果却并不明显,具体表现为时滞动力吸振器对随机激励的减振控制效果与被动吸振器几乎相同。针对上述问题,本文提出了一种新的时变参数时滞减振控制方法。在原有时滞减振控制方法的基础上,首先将时滞增益系数由定值形式变为时间函数形式,然后通过时变优化得到多组时滞控制参数并使其以一定时间周期循环作用于减振控制过程,通过这种方法进一步改善了时滞动力吸振器减振性能。本文最后以二自由度时滞动力吸振器减振模型为例,以主系统的振动响应为仿真对象,运用精细积分法求解了具有时变时滞参数的时滞动力学方程,以此得到了在谐波激励和随机激励作用下主系统振动的时域仿真结果。研究结果表明,在时变参数时滞动力吸振器的控制下,主系统无论是受谐波激励作用还是受随机激励作用,其振动位移、振动速度和振动加速度均比在定值参数时滞动力吸振器控制下时有大幅的减少,时滞动力吸振器的减振性能有了明显的改善。   相似文献   

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