• CN:11-2187/TH
  • ISSN:0577-6686

›› 2011, Vol. 47 ›› Issue (1): 36-42.

• 论文 • 上一篇    下一篇

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模拟柔顺机构中柔顺杆件末端特征的2R伪刚体模型

冯忠磊;余跃庆;王雯静   

  1. 北京工业大学机械工程与应用电子技术学院
  • 发布日期:2011-01-05

2R Pseudo-rigid-body Model of Compliant Mechanisms with Compliant Links to Simulate Tip Characteristic

FENG Zhonglei;YU Yueqing;WANG Wenjing   

  1. College of Mechanical Engineering and Applied Electronics Technology, Beijing University of Technology
  • Published:2011-01-05

摘要: 柔顺机构是一种新型机构,其中包含的柔顺杆件会因为产生大变形而导致分析起来十分复杂。伪刚体模型能够简化柔顺杆件的大变形分析。基于伪刚体模型的原理,针对柔顺机构中的柔顺杆件,提出以末端转角参数化近似方法为基础的2R伪刚体模型。该模型用两个不同劲度系数的扭转弹簧连接3个不同长度的刚性杆件,并用特征半径系数表征刚性杆件的长度,用刚度系数表征扭簧的扭转能力,通过二维搜索得到模型的最优特征半径系数,应用线性回归方法得到模型的刚度系数。该模型能准确模拟柔顺机构中柔顺杆件的末端变形轨迹和变形角度。推导柔顺杆件和伪刚体模型变形时的应变能公式,通过数值对比,从能量角度评价伪刚体模型储存应变能的能力。

关键词: 参数化近似, 柔顺机构, 伪刚体模型, 应变能

Abstract: Compliant mechanism is a kind of new type mechanism and its analysis is very complex because compliant links often under large deflections which introduce geometry nonlinearities. Pseudo-rigid-body model (PRBM) can simplify large- deflection analysis of compliant links. Based on PRBM, a 2R model is proposed for the compliant mechanisms with compliant links and a parametric approximation is made to the deflection angle of a compliant link. This model comprises three rigid links of different length which are connected by two torsional springs of different stiffness coefficient. The characteristic radius factor is used to indicate the length of the rigid links and the stiffness coefficient is used to indicate the torsion capability of torsion springs. A two-dimensional optimization for the optimal characteristic radius factors and a linear regression for the spring stiffness coefficient are presented. This model can simulate accurately both the deflection path and angle of the compliant link. Finally, the expression of strain energy of compliant link and that of PRBMs are derived. The ability of strain energy storage of PRBM is investigated through a comparison study in strain energy among PRBMs.

Key words: Compliant mechanism, Parametric approximation, Pseudo-rigid-body model, Strain energy

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