中国科技核心期刊

中文核心期刊

CSCD来源期刊

空间控制技术与应用 ›› 2022, Vol. 48 ›› Issue (1): 23-31.doi: 10.3969/j.issn.1674 1579.2022.01.004

• 论文与报告 • 上一篇    下一篇

轻质高刚仿生杆及其在柔性机构中的仿真分析

  

  1. 北京控制工程研究所
  • 出版日期:2022-02-26 发布日期:2022-03-07
  • 基金资助:
    国家自然科学基金资助项目(51805025)

Lightweight High rigid Bionic Rod and Its Simulation Analysis in Precision Flexible Mechanism

  1. Beijing Institute of Control Engineering
  • Online:2022-02-26 Published:2022-03-07
  • Supported by:

摘要: 轻质高刚结构是空间机构不断追求的目标,本研究基于对水生植物香蒲杆部结构的尺寸和力学测试,提出一种面向空间应用的轻质高刚仿生杆结构.具体以仿生杆在精密柔性机构中的应用为背景,分析了电磁力平衡传感器中柔性机构的铰链变形对测量结果的影响,求解了位置电磁力分别和载荷力、铰链弯矩的关系表达式.以直圆铰链为例计算了由位移检测误差引起的力测量误差.分析了精密柔性机构中载荷作用位置对测量结果的影响,指出当载荷作用线通过机构上、下连杆长度的中点时,机构仅发生Y向位移不产生旋转位移,采用仿生杆结构对一定几何尺寸的精密柔性机构进行了有限元仿真分析,结果表明传感器在初始位置平衡时平衡力和载荷力的值最大相差1.9×10-5N,相对误差为0.0038%,仿生杆力学性能良好,轻质高刚仿生杆结构可用于精密柔性机构或其他空间大型天线展开机构、空间站超长操作臂等领域.

关键词: 香蒲, 仿生杆, 柔性铰链, 误差分析

Abstract: Lightweight highrigid structure is the pursued goal of space mechanical structure mechanism. Based on the size and mechanical testing of the rod structure of Typha orientalis Presl, a light weight and high rigid bionic rod structure is proposed for space applications. Specifically, taking the application of the bionic rod in the precision flexible mechanism as the background, the influence of the hinge deformation of the flexible mechanism in the commonly used electromagnetic force balance sensor on the measurement result is analyzed. The relationships between the electromagnetic force at any equilibrium position, the hinge moment and the load force are solved respectively. Taking the straight circle chain as an example, the force measurement error caused by the displacement error is calculated. It is pointed out that when the load action line passes through the midpoint of the links, the mechanism only produces Y direction displacement. The bionic rod structure is used to perform finite element simulation analysis on the precise flexible mechanism with a certain geometric size. The simulation results show that the maximum difference between balance force and loading force is 1.9×10-5N and the error is 0.0038%. And the lightweight high rigid bionic rod structure can be used in precision flexible mechanisms, other large space expandable antenna mechanisms, in space station ultralong operating arms and other related fields.

Key words: typha, bionic rod, flexible hinge, error analysis

中图分类号: 

  • TH715