您的位置: 专家智库 > >

国家自然科学基金(11272203)

作品数:8 被引量:21H指数:3
相关作者:刘锦阳陈成谢永诚许艳涛更多>>
相关机构:上海交通大学技术公司更多>>
发文基金:国家自然科学基金国家科技重大专项更多>>
相关领域:理学自动化与计算机技术一般工业技术更多>>

文献类型

  • 8篇期刊文章
  • 4篇学位论文
  • 1篇会议论文

领域

  • 7篇理学
  • 4篇自动化与计算...
  • 2篇航空宇航科学...
  • 1篇一般工业技术

主题

  • 4篇多体系统
  • 3篇动力学建模
  • 3篇柔性多体系统
  • 2篇动力学
  • 2篇太阳帆
  • 2篇太阳帆板
  • 2篇模态
  • 2篇帆板
  • 2篇复合材料
  • 2篇FORMUL...
  • 2篇复合材
  • 1篇弹塑性
  • 1篇点接触
  • 1篇动力学研究
  • 1篇动态模型
  • 1篇应力
  • 1篇载荷
  • 1篇致动器
  • 1篇软接触
  • 1篇实验台

机构

  • 8篇上海交通大学
  • 1篇技术公司

作者

  • 3篇刘锦阳
  • 1篇许艳涛
  • 1篇陈鹏
  • 1篇谢永诚
  • 1篇陈成

传媒

  • 5篇Acta M...
  • 1篇上海交通大学...
  • 1篇核动力工程
  • 1篇动力学与控制...

年份

  • 4篇2020
  • 1篇2018
  • 1篇2017
  • 5篇2016
  • 2篇2013
8 条 记 录,以下是 1-10
排序方式:
考虑复杂空间热流的复合材料太阳帆板的刚-柔-热耦合研究
卫星在轨运行时,依靠太阳帆板接受到的各种空间热流发电提供能量。由于卫星长期暴露在太空中,热辐射会引起太阳帆板振动。卫星在姿态机动过程中,太阳帆板接受到的热流不断发生变化,引起太阳帆板上下表面及内部的温度场不断改变,太阳帆...
左亚帅
关键词:复合材料太阳帆板稳定性
文献传递
控制棒驱动机构的步跃冲击响应分析被引量:2
2016年
基于柔性多体系统动力学理论建立了控制棒驱动机构(CRDM)三维实体有限元离散的刚-柔耦合动力学模型,用于计算CRDM在步跃冲击载荷下的响应。模型的方程采用模态缩减方法降低变形坐标维数,可以比非线性有限元方法更为高效地计算CRDM的运动曲线、冲击载荷和应力响应。此外,模型采用三维实体有限单元离散比杆单元离散方法具有更高的计算精度,不仅能准确地计算出大范围运动结果,而且可用于分析CRDM各部件的应力分布,找出局部应力偏大的部位。
陈成刘锦阳许艳涛谢永诚
关键词:控制棒驱动机构
Effective enhanced model for a large deformable soft pneumatic actuator被引量:1
2020年
Soft pneumatic actuators have been widely used for implementing sophisticated and dexterous movements,due to numerous fascinating features compared with their rigid counterparts.Relatively speaking,modeling and analysis of an entire soft pneumatic actuator considering contact interaction between two adjacent air chambers is extremely rare,which is exactly what we are particularly interested in.Therefore,in order to establish an accurate mechanical model and analyze the overall configuration and stress distribution for the soft pneumatic actuator with large deflection,we consider the contact interaction of soft materials rather than hard materials,to produce an effective enhanced model for soft contact of a large deformable pneumatic actuator.In this article,a multiple-point contact approach is developed to circumvent the mutual penetration problem between adjacent air chambers of the soft actuator that occurs with the single-point contact approach employed in linear elastic rigid materials.In contrast to the previous simplified rod-based model that did not focus on contact interaction which was adopted to clarify the entire deformation of the actuator,the present model not only elaborates nonlinear large deformation and overall configuration variations,but also accurately delineates stress distribution law inside the chamber structure and the stress concentration phenomenon.By means of a corresponding static experiment,a comparison of the simulation results with experimental data validates the effectiveness and accuracy of this model employing a multiple-point contact approach.Excellent simulation of the actual bending deformation of the soft actuator is obtained,while mutual penetration is successfully circumvented,whereas the model with single-point contact cannot achieve those goals.Finally,as compared with the rod-based model,the results obtained using the proposed model are more consistent with experimental data,and simulation precision is improved.
Qiping XuJinyang Liu
An improved dynamic model for a silicone material beam with large deformation被引量:7
2018年
Dynamic modeling for incompressible hyperelastic materials with large deformation is an important issue in biomimetic applications. The previously proposed lower-order fully parameterized absolute nodal coordinate formulation(ANCF) beam element employs cubic interpolation in the longitudinal direction and linear interpolation in the transverse direction, whereas it cannot accurately describe the large bending deformation. On this account, a novel modeling method for studying the dynamic behavior of nonlinear materials is proposed in this paper. In this formulation, a higher-order beam element characterized by quadratic interpolation in the transverse directions is used in this investigation. Based on the Yeoh model and volumetric energy penalty function, the nonlinear elastic force matrices are derived within the ANCF framework. The feasibility and availability of the Yeoh model are verified through static experiment of nonlinear incompressible materials. Furthermore,dynamic simulation of a silicone cantilever beam under the gravity force is implemented to validate the superiority of the higher-order beam element. The simulation results obtained based on the Yeoh model by employing three different ANCF beam elements are compared with the result achieved from a commercial finite element package as the reference result. It is found that the results acquired utilizing a higher-order beam element are in good agreement with the reference results,while the results obtained using a lower-order beam element are different from the reference results. In addition, the stiffening problem caused by volumetric locking can be resolved effectively by applying a higher-order beam element. It is concluded that the proposed higher-order beam element formulation has satisfying accuracy in simulating dynamic motion process of the silicone beam.
Qiping XuJinyang Liu
关键词:动态模型线性插值
Contact-impact formulation for multi-body systems using component mode synthesis被引量:5
2013年
The efficiency and accuracy are two most concerned issues in the modeling and simulation of multi-body systems involving contact and impact. This paper proposed a formulation based on the component mode synthesis method for planar contact problems of flexible multi-body systems. A flexible body is divided into two parts: a contact zone and an un-contact zone. For the un-contact zone, by using the fixed-interface substructure method as reference, a few low-order modal coordinates are used to replace the nodal coordinates of the nodes, and meanwhile, the nodal coordinates of the local impact region are kept unchanged, therefore the total degrees of freedom (DOFs) are greatly cut down and the computational cost of the simulation is significantly reduced. By using additional constraint method, the impact constraint equations and kinematic constraint equations are derived, and the Lagrange equations of the first kind of flexible multi-body system are obtained. The impact of an elastic beam with a fixed half disk is simulated to verify the efficiency and accuracy of this method.
Peng ChenJin-Yang LiuJia-Zhen Hong
关键词:柔性多体系统模态综合法拉格朗日方程
卫星—复合材料太阳帆板多体系统刚-柔-热耦合动力学建模
传统的针对卫星—太阳帆板的结构与热耦合动力学分析,局限于各向同性材料。本文针对复合材料层合板构成的太阳帆板—卫星系统,提出了一种通用的分析其在宇宙空间多种热流作用下的刚-柔-热耦合动力学特性的新的建模方法。在推导太阳帆板...
刘锦阳; 左亚帅;
文献传递
基于SPH的充液刚体刚-液耦合动力学建模被引量:3
2020年
本文考虑刚-液耦合效应,基于SPH方法建立充液刚体动力学模型,该动力学模型不仅适用于微幅晃动问题,还适用于大幅晃动问题.首先建立了非惯性系下液体晃动的方程,其中,边界条件采用镜像虚粒子法.通过计算各流体粒子的绝对加速度,得到粒子惯性力对刚体质心的主矢和主矩,用达朗贝尔原理计算得到向质心简化的晃动力和晃动力偶矩,并引入刚体的约束方程,建立了考虑刚-液耦合的充液刚体的动力学方程.首先对给定周期性运动的充液刚体的液面振荡进行数值仿真,验证了建模方法的有效性;然后通过对受周期性激励力作用的充液刚体的运动和液面振荡进行数值仿真,分析了不同参数下系统的刚-液耦合特性.
张诗琪刘锦阳
关键词:动力学建模
基于绝对节点坐标法的大变形软体结构动力学研究
软体机器人是一种由软材料制成的新型连续体仿生机器人,是大变形多气腔复杂软体结构,其研究日渐受到关注并已成为一个新的研究课题和热点。由于软体结构自身的材料非线性、运动过程中产生的几何非线性、气腔结构的复杂性以及在数值计算中...
徐齐平
关键词:动力学建模
A new subregion mesh method for the investigation of the elastic-plastic impact in flexible multibody systems被引量:1
2017年
Impact processes between flexible bodies often lead to local stress concentration and wave propagation of high frequency. Therefore, the modeling of flexible multibody systems involving impact should consider the local plastic deformation and the strict requirements of the spatial 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 nonlinear 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.
Peng ChenJin-Yang LiuGuang-Can Lu
关键词:MULTIBODYDYNAMICSELASTIC-PLASTICIMPACTMESHEXPERIMENT
Geometric nonlinear formulation for thermal-rigid-flexible coupling system
2013年
This paper develops geometric nonlinear hybrid formulation for flexible multibody system with large deformation considering thermal efect. Diferent from the conventional formulation, the heat flux is the function of the rotational angle and the elastic deformation, therefore, the coupling among the temperature, the large overall motion and the elastic deformation should be taken into account. Firstly,based on nonlinear strain–displacement relationship, variational dynamic equations and heat conduction equations for a flexible beam are derived by using virtual work approach,and then, Lagrange dynamics equations and heat conduction equations of the first kind of the flexible multibody system are obtained by leading into the vectors of Lagrange multiplier associated with kinematic and temperature constraint equations. This formulation is used to simulate the thermal included hub-beam system. Comparison of the response between the coupled system and the uncoupled system has revealed the thermal chattering phenomenon. Then, the key parameters for stability, including the moment of inertia of the central body, the incident angle, the damping ratio and the response time ratio, are analyzed. This formulation is also used to simulate a three-link system applied with heat flux. Comparison of the results obtained by the proposed formulation with those obtained by the approximate nonlinear model and the linear model shows the significance of considering all the nonlinear terms in the strain in case of large deformation. At last, applicability of the approximate nonlinear model and the linear model are clarified in detail.
Wei FanJin-Yang Liu
关键词:刚柔耦合系统非线性模型柔性多体系统拉格朗日乘子热传导方程
共2页<12>
聚类工具0