• CN:11-2187/TH
  • ISSN:0577-6686

›› 2012, Vol. 48 ›› Issue (7): 23-29.

• 论文 • 上一篇    下一篇

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双层预紧式多分支六维力传感器及其结构稳定性分析

王志军;姚建涛;侯雨雷;赵永生   

  1. 燕山大学机械工程学院
  • 发布日期:2012-04-05

Pre-stressed Multi-limb Six-axis Force Sensor with Double-layer and Study on Its Structural Stability

WANG Zhijun;YAO Jiantao;HOU Yulei;ZHAO Yongsheng   

  1. College of Mechanical Engineering, Yanshan University
  • Published:2012-04-05

摘要: 提出一种双层预紧式多分支六维力传感器结构,并对其结构稳定性及工作有效性进行分析。由于所提出传感器采用单向约束的球面副,为保证结构稳定必须使传感器各测力分支在测量过程中始终受压,因此在使用之前需要对传感器施加一定的预紧力。应用凸分析理论确定出该类型六维力传感器可行的分支数目。通过对传感器静力平衡方程求解,将测力分支所产生的反作用力分为两部分,方程特解部分由六维外力产生,而通解部分只与预紧力有关;通过线性变换减少了通解中待确定参数的个数,并推导出外力在量程范围内时满足所有测力分支受压的预紧力确定方法。给出双层七分支和八分支结构六维力传感器预紧力的确定实例。研制出双层七分支结构六维力传感器样机并进行试验研究,试验结果与理论计算结果一致,从而验证了理论分析的正确性。

关键词: 单向约束, 六维力传感器, 双层, 线性变换, 预紧式

Abstract: A series of parallel pre-stressed multi-limb six-axis force sensor with double-layer architecture is proposed, the structure stability and the work validity of the sensor are analyzed. Since the proposed sensor uses sphere pair with unilateral constraint, the limbs of the sensor must be under pressure in the measurement process, so prior to measurement, a certain preload must be applied to the sensor. The viable limbs’ number of the pre-stressed six-axis force senor is determined by using the theorem of convex analysis. By solving the static equilibrium equation of sensor, the reacting forces on limbs are divided into two parts: the particular solution is generated by the external force, while the homogeneous solution is only concerned with the pre-tightening force. The number of parameters to be determined in homogeneous solution is decreased by linear transform, and the method for determining the pre-tightening force is derived to make all the limbs compressed when it is subjected to the expected range of external force. A numerical example to determine the pre-tightening force of the force sensor with seven limbs and eight limbs is performed. The sensor prototype with seven limbs is manufactured, and the experiment result is consistent well with the numerical example, which demonstrates the correctness of the theoretical analysis.

Key words: Double-layer, Linear transform, Pre-stressed, Six-axis force sensor, Unilateral constraint

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