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1.
柔性多体系统动力学研究现状与展望   总被引:4,自引:0,他引:4  
对柔性多体系统动力学的研究现状进行了概括和总结,主要从柔性体建模方法、刚柔耦合动力学、接触碰撞问题、多物理场耦合、微分代数方程求解技术、控制方法、设计优化及软件开发和实验研究等几个研究方向进行总结,并对未来的研究方向做了展望.  相似文献   

2.
柔性多体系统动力学研究动态   总被引:1,自引:0,他引:1  
本文主要对国外在柔性多体系统动力学领域中进行的研究进行了简要综述和介绍,同时也介绍了一些国内的情况,并提出了该领域中存在的问题。  相似文献   

3.
柔性多体系统动力学通用算法研究   总被引:4,自引:0,他引:4  
柔性多本系统运动学动力学仿真通用软件可广泛服务于工程领域,基于Kane方程建立一种开发该类软件的一般算法,通过定义的辨识函数解决束识别问题,利用振型描述构件的弹性变形,建立了递推格式的运动学模型,提出了计算偏带度、偏角速度和运动微分方程系数矩阵的“0-1”法,最后给出的算例表明所建立的算法是可行的。  相似文献   

4.
柔性多体系统的计算策略   总被引:1,自引:0,他引:1  
对柔性多体系统计算建模的研究现状和近期进展进行了总结. 重点讨论了柔性多体 动力学的以下内容: 柔性构件的建模, 约束建模, 求解技术, 控制策略, 耦合问 题, 设计和实验的研究. 对柔性多体系统建模的浮动坐标系,转动坐标系和惯性系 等3种坐标系的特点进行了对比. 指出了未来的研究方向, 包括柔性多体系统的新 的应用,如微观力学系统和超微观力学系统等; 提高这些模型的计算精度和效率的 技巧和策略; 以及可以用于改善柔性多体系统的工具. 本综述文章引用了877篇参 考文献.  相似文献   

5.
柔性多体系统动力学研究及存在的问题   总被引:7,自引:0,他引:7  
覃正  叶尚辉 《力学进展》1994,24(2):248-256
本文对柔性多体系统动力学研究领域中动力学模型的建立、求解以及该领域中存在的问题进行了简要综述。  相似文献   

6.
考虑刚弹耦合作用的柔性多体连续系统动力学建模   总被引:1,自引:0,他引:1  
基于Hamilton原理建立起一般柔性体连续系统的动力学建模方法,进而以水平面内作大范围回转运动的柔性梁为例,在Euler-Bernoulli梁模型的假设前提下,根据轴向不可伸长的柔性梁的几何约束条件;推导出作大范围刚体运动的柔性梁连续系统的一致线性化振动微分方程.采用假设模态法对其离散化,导出考虑刚弹耦合作用的柔性梁有限维离散化动力学模型.最后给出仿真算例,验证了该方法的有效性.  相似文献   

7.
多体系统动力学碰撞问题研究综述   总被引:12,自引:1,他引:12  
董富祥  洪嘉振 《力学进展》2009,39(3):352-359
对近年来多体系统碰撞动力学研究进展进行了评述,包括碰撞动力学建模理论、数值算法和实验方面的进展情况.根据各自不同假设条件将建模方法分为冲量动量法、连续碰撞力模型和基于连续介质力学的有限元方法,比较了各种建模方法在碰撞过程描述和数值性态方面的优势和局限性;对碰撞动力学实验在非接触式测量方面取得的最新进展进行了介绍,总结了实验对以上建模理论的验证研究,展示了实验研究方面的一些新发现.最后基于工程实际的需求提出多体系统碰撞动力学面临的新挑战.   相似文献   

8.
多柔体系统碰撞动力学研究综述   总被引:27,自引:3,他引:27  
刘才山  陈滨 《力学进展》2000,30(1):7-14
多柔体系统碰撞动力学研究具有重要的研究价值和工程实际意义,本文针对多柔体系统碰撞动力学研究中的几个基本问题进行了全面的分析和评述,其中包括多柔体系统动力学方程的描述、碰撞模型的建立、铰接间隙引起的碰撞问题、数值算法、实验研究、控制等几个方面,并根据目前的发展现状和研究中存在的问题,指出了今后多柔体系统动力学碰撞研究中的发展方向   相似文献   

9.
柔性多体系统动力学的若干热点问题   总被引:20,自引:2,他引:20  
于清  洪嘉振 《力学进展》1999,29(2):145-154
全面综述了柔性多体系统动力学近年来的研究成果.对建模方法、模态选取及模态综合、动力刚化及柔性多体系统动力学中微分-代数方程的数值方法等研究热点进行了详细的阐述,并简要展望了柔性多体系统动力学今后的发展趋势   相似文献   

10.
本文在简要回顾柔性多体系统动力学的发展现状基础上,讨论了这门交叉性、边缘性学科向深层次研究的几个关键问题的认识,最后,对未来的研究提出看法.  相似文献   

11.
The impact dynamics of a flexible multibody system is investigated. By using a partition method, the system is divided into two parts, the local impact region and the region away from the impact. The two parts are connected by specific boundary conditions, and the system after partition is equivalent to the original system. According to the rigid-flexible coupling dynamic theory of multibody system, system's rigid-flexible coupling dynamic equations without impact are derived. A local impulse method for establishing the initial impact conditions is proposed. It satisfies the compatibility con- ditions for contact constraints and the actual physical situation of the impact process of flexible bodies. Based on the contact constraint method, system's impact dynamic equa- tions are derived in a differential-algebraic form. The contact/separation criterion and the algorithm are given. An impact dynamic simulation is given. The results show that system's dynamic behaviors including the energy, the deformations, the displacements, and the impact force during the impact process change dramatically. The impact makes great effects on the global dynamics of the system during and after impact.  相似文献   

12.
Based on the deformation theory of elastic beams, the coupling effect between the coupling displacements of a point on the middle line of beam and large overall motion is presented. The “coupling matrix library” and Jourdain's variation principle and single direction recursive formulation method are used to establish the general coupling dynamical equations of flexible multibody system. Two typical examples show the coupling effect between coupling displacements and large overall motion on the dynamics of flexible multibody system consisting of beams. The project supported by the National Natural Science Foundation of China (No. 19832040).  相似文献   

13.
14.
柔性多体系统产生动力刚化原因的研究   总被引:5,自引:0,他引:5  
传统的柔性多体系统建模理论由于对柔性体的变形及其与大范围运动产生惯性力之间的耦合处理得过于简单,所以在分析存在高速大范围运动柔性多体系统的动力学性态时会得到完全错误的结论。本文将通过对作大范围运动弹性薄板的讨论来揭示产生这种错误的及探讨对传统性多体系统建模理论作出改进的对策  相似文献   

15.
In this paper a new method is developed for the dynamic analysis of contact conditions in flexible multibody systems undergoing a rolling type of motion. The relative motion between the two contacting bodies is treated as a constraint condition describing their kinematic and geometric relations. Equations of motion of the system are presented in a matrix form making use of Kane's equations and finite element method. The method developed has been implemented in a general purpose program called DARS and applied to the simulation and analysis of a rotating wheel on a track. Both the bodies are assumed flexible and discretized using a three dimensional 8-noded isoparametric elements. The time variant constraint conditions are imposed on the nodal points located at the peripheral surfaces of the bodies under consideration. The simulation is carried out under two different boundary conditions describing the support of the track. The subsequent constraint forces associated with the generalized coordinates of the system are computed and plotted. The effects of friction are also discussed.  相似文献   

16.
刚-柔耦合多体系统动力学建模与数值仿真   总被引:17,自引:1,他引:17  
柔性多体系统动力学传统的混合坐标建模方法忽略了变形位移的高次耦合变形量,是一种零次近似方法,其适用范围受到限制。本文以中心刚体、柔性粱及末端质量组成的刚柔耦合系统为对象,考虑了有粘性阻尼及风阻的情况。在柔性粱的纵向变形位移中计及了横向位移引起的轴向变形,并采用有限元方法和Hamilton变分原理导出了系统的刚柔耦合一次近似的动力学方程。该方程充分计及了中心刚体的大范围运动与柔性粱的弹性变形运动的相互耦合,并采用一致的方法引入了阻尼因素。文中最后提供了一个比“动力刚化”问题更具有一般性的仿真计算反例,进一步说明了零次近似方法在处理某些刚一柔耦合动力学问题时的缺陷,同时表明了由一次近似模型可得到正确合理的结论。  相似文献   

17.
Impact processes between flexible bodies often lead to local stress concentration and wave propagation of high frequency. Therefore, the modeling of flexible multi-body systems involving impact should consider the local plastic deformation and the strict requirements of the spa-tial discretization. Owing to the nonlinearity of the stiffness matrix, the reduction of the element number is extremely important. For the contact-impact problem, since different regions have different requirements regarding the element size, a new subregion mesh method is proposed to reduce the number of the unnecessary elements. A dynamic model for flexible multibody systems with elastic-plastic contact impact is established based on a floating frame of reference formulation and complete Lagrange incremental nonlin-ear finite-element method to investigate the effect of the elastic-plastic deformation as well as spatial discretization. Experiments on the impact between two bodies are carried out to validate the correctness of the elastic-plastic model. The proposed formulation is applied to a slider-crank system with elastic-plastic impact.  相似文献   

18.
In this paper,by defining new state vectors and developing new transfer matrices of various elements moving in space,the discrete time transfer matrix method of multi-rigid-flexible-body system is expanded to study the dynamics of multibody system with flexible beams moving in space.Formulations and numerical example of a rigidflexible-body three pendulums system moving in space are given to validate the method.Using the new method to study the dynamics of multi-rigid-flexible-body system moving in space,the global dynamics equations of system are not needed,the orders of involved matrices of the system are very low and the computational speed is high,irrespective of the size of the system.The new method is simple,straightforward,practical,and provides a powerful tool for multi-rigid-flexible-body system dynamics.  相似文献   

19.
The inverse dynamics problem for articulated structural systems such as robotic manipulators is the problem of the determination of the joint actuator forces and motor torques such that the system components follow specified motion trajectories. In many of the previous investigations, the open loop control law was established using an inverse dynamics procedure in which the centrifugal and Coriolis inertia forces are linearized such that these forces in the flexible model are the same as those in the rigid body model. In some other investigations, the effect of the nonlinear centrifugal and Coriolis forces is neglected in the analysis and control system design of articulated structural systems. It is the objective of this investigation to study the effect of the linearization of the centrifugal and Coriolis forces on the nonlinear dynamics of constrained flexible mechanical systems. The virtual work of the inertia forces is used to define the complete nonlinear centrifugal and Coriolis force model. This nonlinear model that depends on the rate of the finite rotation and the elastic deformation of the deformable bodies is used to obtain the solution of the inverse dynamics problem, thus defining the joint torques that produce the desired motion trajectories. The effect of the linearization of the mass matrix as well as the centrifugal and Coriolis forces on the obtained feedforward control law is examined numerically. The results presented in this investigation are obtained using a slider crank mechanism with a flexible connecting rod.  相似文献   

20.
基于开放式工程与科学计算集成化软件平台SiPESC,研发了用于多体系统动力学时程分析的一类通用求解算法构架。该构架的核心思想是算法与数据相分离,整个构架由五个基本类及子类组成。本文重点阐述基本类的抽象过程,利用插件技术设计求解器的构架,进一步应用该构架实现了Newmark方法,HHT(Hilber-Hughes-Taylor)方法,Generalized α方法,Bathe方法及祖冲之类Symplectic方法等微分-代数方程组(DAEs)求解器的开发。研究工作表明,本文所提出的DAEs求解算法构架对多体系统动力学的时程分析具有良好的开放性和通用性,可方便进行各种新的DAEs求解算法的动态扩展。  相似文献   

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